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2.0 mm ERmet Hard Metric Connector System
2.0 mm ERmet
Acc. To IEC 61076-4-101
Catalog E 074484
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Table of Contents
Catalog E 074484
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Edition 9
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139
2.0 mm ERmet
Right Angle Female Monoblock Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .255
Vertical Male Monoblock Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .257
Dust Covers For Type A, B, AB, D, E and DE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .259
Coding Keys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .261
Guide Pin for ERmet 10 Row Type D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .262
Special Contacts for Type L, M and N . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .263
Modular press-fit tools for male and female connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .264
Press-In-Tools For The Female Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .265
Press-In-Tools For The Male Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .266
Toolholder . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .266
3U CompactPCI® Daughter Card Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .267
3U CompactPCI® Backplane Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .268
6U CompactPCI® Daughter Card Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .269
6U CompactPCI® Backplane Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .270
9U 10-Row 2mm Daughter Card Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .271
9U 10-Row 2mm Backplane Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .272
IEEE 1301 Daughter Cards for IEC 61076-4-101 2mm HM Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .273
IEEE 1301 Backplane Layouts For IEC 61076-4-101 2mm HM Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .274
VME64 Extensions Daughter Card . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .275
VME64 Extensions Backplane . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .276
64 Bit CompactPCI® System Slot Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .277
32 Bit CompactPCI® System Slot Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .279
32 Bit CompactPCI® Peripheral Slot Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .280
cPCI Computer Telephony P4 Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .281
cPCI Computer Telephony Safety Classifications for J4/P4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .282
cPCI Computer Telephony P5 Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .283
cPCI Computer Telephony Safety Classifications for J5/P5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .284
PXI Generic Peripheral Slot Pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .285
PXI System Slot Pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .286
PXI Star Trigger Slot Pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .287
VME64x on CompactPCI® J4/P4 and J5/P5 Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .288
Single PMC’s I/O Signal Mapping to CompactPCI® 3U J2 Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .289
PMC Mezzanine Card I/O Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .289
IP Mezzanine Module I/O Pin Assignments . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .291
Bellcore Lubrication . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .293
Glossary Of Terminology . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .294
2ERNI Customer Request Form . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .297
Applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .300
Right Angle Male Connectors Type A for Daughter Cards . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .301
Right Angle Male Connectors Type B for Daughter Cards . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .303
Right Angle Male Connectors Type C for Daughter Cards . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .305
ERmet Thru Hole Reflow (THR) Female Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .307
CompactPCI Connectors acc. to PIGMG 2.0 Rev. 3.0 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .309
ERmet® Power Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .315
Electrical and Mechanical Characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .316
Derating Curve and PTH Drawing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .318
Right Angle Male . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .319
Vertical Female . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .325
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2.0 mm ERmet Hard Metric Connector System
Introduction
The ERmet 2mm H.M. connector line from ERNI offers
unparalleled performance and flexibility for today’s high performance circuit designs. Since its introduction in 1993, this
product line has expanded and now offers almost every
module configuration possible in a board to backplane
interconnect system. Standard and reverse configurations
are available including shielded vertical females, stacking
designs, stamped power connectors. This connector system
has now become the standard for board to backplane
applications.
The ERmet 2mm H.M. connector system has achieved
widespread acceptance and popularity as the interconnect
system chosen for CompactPCI. It is also widely used by
OEMs serving the telecommunications and networking
industry segments. It has achieved this unparalleled
acceptance due to its high frequency per-formance, its wide
selection of modular components and its cost-benefit ratio.
This connector is supported by one of the industry’s most
comprehensive international connector standards, IEC
61076-4-101.
Whether you are developing a new backplane, a high
performance CPU or I/O card or integrating a sophisticated
hybrid system, ERNI has anticipated your needs. The ERNI
team stands ready to partner with you to develop the most
efficient solution to your design challenge.
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Catalog E 074484
Features
• Modular connectors with 2.0 mm signal contact pitch for
backplanes and daughter cards.
• High density board to backplane connector system.
• Up to 8 signal rows plus two shield rows for optimum performance.
• Three levels of sequential mating for front or rear hot
swap applications. 1.5 mm increments.
• 15 standard contacts available for any pin loading requirement.
• Complete line of complementary accessories to include
stamped power connectors, color coded coding keys,
latching shrouds, ground return shields, high frequency,
and high power contacts.
• Superior female connector contact design provides a uniform signal path.
• Comply to the international standard IEC 61076-4-101.
• For networking, telecommunications, high performance
computing and other demanding applications.
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2.0 mm ERmet Hard Metric Connector System
Product Overview
For circuit design versatility, the connectors are offered with a
selection of contacts including signal, high power, high
frequency and coaxial. They are available in 50mm, 44 mm,
38 mm, and 25mm modules for end-to-end stacking without
contact loss. The dual beam female contact design provides
equalized signal path lengths which results in virtually
identical propagation times for each contact row.
Type A Connector
• 110 signal contacts.
• 44 shield contacts.
• 50 mm long including the
multifunction area for coding keys.
• Integral pre-alignment guide and
polarizing pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
• 3 contact lengths for sequential
mating.
Type B Connector
• 125, 110 and 95 signal contacts.
• 50 shield contacts.
• 50 mm, 44 mm and 38 mm long
without the multifunction area.
• 3 contact lengths for sequential
mating.
Type C Connector
• 55 signal contacts.
• 22 shield contacts.
• 25 mm long.
• For end positions only.
• Pre-alignment guide pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
• 3 contact lengths for sequential
mating.
Type D Connector
• 176 signal contacts.
• 44 shield contacts.
• 50 mm long including the
multifunction area for coding keys.
• Integral pre-alignment guide and
polarizing pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
• Positions for optional early mate
ground pin.
• 3 contact lengths for sequential
mating.
Type E Connector
• 200 signal contacts.
• 50 shield contacts.
• 50 mm long without the
multifunction area.
• 3 contact lengths for sequential
mating.
Type F Connector
• 88 signal contacts.
• 22 shield contacts.
• 25 mm long.
• For end positions only
• Pre-alignment guide pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
• 3 contact lengths for sequential
mating.
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2.0 mm ERmet
ERmet 2mm H.M. connectors are a versatile, cost-effective
board-to-backplane solution for today’s high performance,
high density applications.
The ERmet 2mm H.M. line consists of 26 different module
types including matching shrouds for midplane, stacking
applications, power modules, upper and lower ground return
shields, coding keys.
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Product Overview
142
Type A Ground Return Shield
• Upper and lower shields for
Type A connectors.
• Upper shield available integrated
with female connector or as
separate component.
Type B Ground Return Shield
• Upper and lower shields for the Type
B female connectors.
• Upper shield available integrated
with female connector or as
separate component.
Type C Ground Return Shield
• Upper and lower shields for
Type C and M connectors.
• Upper shield available integrated
with female connector or as separate component.
Type D Ground Return Shield
• Upper and lower shields for
Type D connectors.
• Upper shield available integrated
with female connector or as
separate component.
Type E Ground Return Shield
• Upper and lower shields for the Type
E female connectors.
• Upper shield available integrated
with female connector or as
separate component.
Type F Ground Return Shield
• Upper and lower shields for
Type F connectors.
• Upper shield available integrated
with female connector or as separate component.
Type L Connector
• 6 special contact cavities.
• 50 mm long.
• Multifunction area for coding keys.
• Integral pre-alignment guide and
polarizing pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
Type M Connector
• 3 special contact cavities.
• 55 signal contacts.
• 50 mm long.
• Multifunction area for coding keys.
• Integral pre-alignment guide and
polarizing pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
Type N Connector
• 3 special contact cavities.
• 25 mm long.
• For end positions only
• Pre-alignment guide pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
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2.0 mm ERmet Hard Metric Connector System
Product Overview
2.0 mm ERmet
Type A Vertical Female Connector
• 110 signal contacts.
• 44 shield contacts.
• 50 mm long including the multifunction area for coding keys.
• Pre-alignment guide and integral
polarizing pins.
• Optional shields.
• Extended terminals and spacers
available.
Type B Vertical Female Connector
• 125, 110 and 95 signal contacts.
• 50, 44 and 38 shield contacts.
• 50 mm, 44 mm and 38 mm long
without a multifunction area.
• Optional shields.
• Extended terminals and spacers
available.
Type C Vertical Female Connector
• 55 signal contacts.
• 22 shield contacts.
• 25 mm long.
• For end positions only
• Pre-alignment guide pins.
• Optional locating pegs for printed
circuit board (PCB) mounting.
• Optional shields.
• Extended terminals and spacers
available.
Type AB25 Right Angle Female
• 125 signal contacts.
• 44 shield contacts.
• 50 mm long.
• Integral prealignment guide and
polarizing pins.
• AB compatible males also available.
Type AB22 Right Angle Female
• 110 signal contacts.
• 40 shield contacts.
• 44 mm long.
• Integral prealignment guide and
polarizing pins.
• AB compatible males also available.
Type AB19 Right Angle Female
• 95 signal contacts.
• 32 shield contacts.
• 38 mm long.
• Integral prealignment guide and
polarizing pins.
• AB compatible males also available.
Type DE Right Angle Female
• 200 signal contacts.
• 50 shield contacts.
• 50 mm long.
• Integral prealignment guide and
polarizing pins.
• DE compatible males also available.
Connector Coding System
• Up to 70 unique male and female coding keys.
• For use in the multifunction center of the Type A, D, L and M male or
female connectors.
• Low cost, industry standard design.
• Easy snap-in installation – no epoxy adhesive required.
• Bright colors for quick visual identification conform to industry standard.
• Crush resistant construction, exceeds IEC requirements.
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2.0 mm ERmet Hard Metric Connector System
Product Overview
Type D Vertical Female Connector
• 176 signal contacts.
• 44 shield contacts.
• 50 mm long including the multifunction area for coding keys.
• Pre-alignment guide and integral
polarizing pins.
• Optional shields.
144
Type E Vertical Female Connector
• 200 signal contacts.
• 50 shield contacts.
• 50 mm long without a multifunction
area.
• Optional shields.
Catalog E 074484
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Type F Vertical Female Connector
• 88 signal contacts.
• 22 shield contacts.
• 25 mm long.
• For end positions only
• Pre-alignment guide pins.
• Optional shields.
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2.0 mm ERmet Hard Metric Connector System
Complementary Components
2.0 mm ERmet
Type A Shroud
• 4 heights for printed circuit boards
(PCBs) 1.6 to 6.0 mm thick.
• 50 mm and 38 mm long.
• Multifunction area for coding keys.
Type B Shroud
• 4 heights for printed circuit boards
(PCBs) 1.6 to 6.0 mm thick.
• 50 mm, 44 mm and 38 mm long.
Type C Shroud
• 4 heights for printed circuit boards
(PCBs) 1.6 to 6.0 mm thick.
• 25 mm long.
• For end positions only.
Type AB 19 & AB 25 Shroud
• 38 mm and 50 mm respectively.
• Integral pre-alignment and guide
pins.
• 4 heights for printed circuit boards
(PCBs) 1.6 to 6.0 mm thick.
Type AB 22 Shroud
• 44 mm long.
• Integral pre-alignment and guide
pins.
• 4 heights for printed circuit boards
(PCBs) 1.6 to 6.0 mm thick.
Optional Latch Arm
• Can be added to standard ERmet
shroud body.
• Spring action latch.
• Easy installation, no tools required.
Monoblock Modules
• Male and Female monoblock modules.
• Optional integrated coding keys for
3.3V, 5.0V or Telecom applications.
• Multifunction area for coding keys.
• Available in a variety of configurations 94 or 100 mm long.
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Male & Female Power Module
• Closed entry female connector for
backplane.
• 3 pin levels for sequential mating.
• 8 ampere, per contact.
• Pressfit, flat rock assembly.
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2.0 mm ERmet Hard Metric Connector System
Comparsion of 2.0 mm Connectors
B = A = 17
23.8 .80
0 m mm
m
A 2.0 mm Connector For CompactPCI Needs To
Be Different. Here’s Why.
When you’re choosing a 2.0 mm connector for your product, it pays to give your choice a little extra thought. Just
knowing a connector is a 2.0 mm connector is not enough –
there are really three distinctly separate and non-intermateable
connector lines. They are the Futurebus style, the HDM style
and the Hard Metric style, such as the ERmet 2mm H.M. from
ERNI for CompactPCI architecture.
All three connector systems use a 2.0 mm grid and are
offered in modular formats, but there the similarity ends. Each
line has different printed circuit board hole sizes, contact sizes,
shield configurations, keying methods and electrical characteristics. In short, there are very few similarities beyond the 2.0
mm grids they share.
All three 2.0 mm connector designs consist of multi-row pin
headers on the backplane, right angle female connectors on
the daughter card and a 2.0 mm grid spacing. One immediate
difference is in terminal area design. The HDM style has
exposed terminals on the right angle daughter card female
connector, while the Futurebus and Hard Metric designs have
encapsulated terminals. The 5+2 row Hard Metric backplane
connector is 3.0 mm more narrow than the 5+2 row Futurebus
connector. The 7 (5+2) row Hard Metric connector is more narrow even than the 6 row HDM connector. The Hard Metric
design preserves more space on the backplane for components that must be placed between the connectors.
The mating distances also differ between the three product
lines. Mating distance is measured from the rear edge of the
daughter card to the front surface of the backplane when the
daughter card is fully seated. The Futurebus mating distance is
10 mm, while the mating distance for both Hard Metric and
HDM is 12.5 mm. The 12.5 mm measurement is important
because it matches the mating distance of the established DIN
41612 connectors and the 2.5 mm IEC 61076-4-100 connector.
Matching mating distances allows industries that use Eurocard packaging (IEC 273 or IEEE 1101 or 1101.10) to build
systems that combine the popular 96 pin DIN connectors and
the newer Hard Metric and HDM connectors. This supports
legacy architectures while allowing the addition of new features
that require the greater signal density of 2.0 mm connectors.
The VME64 Extensions committee chose the Hard Metric connector system for the P0/J0 connector because of this advantage.
m
.00 m
C = 10 7.00 mm
1
D=
B = A = 15
21.8 .80 m
0m m
m
B = A = 14
20.8 .8 –
– 21 15.4
.4 m mm
m
m
2.50 m
C = 1 0 mm
.0
5
1
D=
m
.50 m
C = 12 0 mm
.0
4
1
D=
ERmet 2mm H.M. Connectors
*Trademark of Teradyne Corporation
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2.0 mm ERmet Hard Metric Connector System
Comparsion of 2.0 mm Connectors
2.0 mm ERmet
Connector Lines
Design Criteria
HDM
TM
Futurebus
ERNI
Hard Metric
5+2/8+2
General Specification
Proprietary
IEC 1076-4-104
IEC 61076-4-101
Number of Rows (Signal and Ground)
6*
5+2
5+2/8+2
Total Contacts Per Linear Inch
76
88
88/127
Number of Standard Modules
3
7
6/15
Width of Male Housing
15.8 mm
17.8 mm
15.4 mm – 21.4 mm
Distance from Daughter Card Edge to Row A
2.50 mm
7.00 mm
1.50 mm
Mated Distance from Backplane Front to Row A
15.0 mm
17.0 mm
14.0 mm
Signal Mating Levels / Step Distance
3 levels, 0.50 mm each
5 levels, 0.75 mm each
3 levels 1.50 mm each
Yes
EMI Shielding
Yes
Yes+
Extended Guidance Features
See footnote +++
Add-On Module+
Integrated
Coding Locations
See footnote +++
Integrated
Integrated
Coding Combinations Per Location
8
3
70
Yes
Yes
Yes
Yes
Yes+
Yes+
Yes
Yes
Yes
Reverse Connector Configuration
Vertical Male
Standard Connector Configuration
Vertical Female
Power Contact Modules
Coaxial Contact Modules
Yes
Yes
Yes
Maximum Contact Resistance of Mated Pair
40 mΩ
50 mΩ
20 mΩ
Propagation Delay (max.)++
235 ps
210 ps
135 ps/190 ps
PCB Plated Hole Size
0.60 mm
0.70 mm
0.70 mm
Press-Fit
Daughter Card
Yes
Yes
Yes
Termination
Backplane
Yes
Yes
Yes
* Shield Pins Implemented Through Signal Pins
+ Not Defined in (IEC) Specification
++ Published Industry Test Results
+++ Integrated in Header and add-on module for female
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2.0 mm ERmet Hard Metric Connector System
Application Notes
The ERmet 2mm H.M. connector system now consists of
two basic signal module configurations. The original 5+2
design and the newer 8+2 design for higher pin count
requirements. Both connector systems consist of a daughter card mounted, right angle female connector featuring
the high performance, low skew patented ERmet leaf contact design and a versatile vertical male header mounted on
the backplane. Additionally, this arrangement is particularly
effective for midplane application and makes sequential
mating easy.
ERNI can provide 15 standard pins in any row or position
required for your design. This allows for three levels of
sequential mating in both the front and rear of the backplane, as well as two shorter terminal lengths for applications which don’t require rear feed through pins.
For midplane and rear I/O applications, ERNI offers complementary 2.0 mm shrouds, vertical female connectors and
latch accessories which are used in con-junction with the
long terminal lengths (R1, R2 and R3).
Backplane Connector
Specific contact loading configurations have already been
defined for standard applications and special needs like live
insertion on CompactPCI. However, to specify a custom
loading configuration, use the ERNI customer request forms
located in the back of the catalog. A form is provided for the
5+2 configuration and another form is available for the 8+2
configuration.
Features
• 3 step lengths in 1.5 mm increments ensure dependable
sequential mating.
• Both front and rear mating areas meet the same IEC performance level.
• 15 pin lengths defined by IEC 61076-4-101.
• Long terminal contacts (R1, R2 and R3) require the use of
rear shrouds.
Daughter Card Connector
Two outer rows for shielding purposes
Upper Shield
F
E
D
C
Centerline
Centerline
Row
RowBB
B
A
Printed Circuit Board (PCB)
Z
3 mm
Insulator
thickness
Two-sided contact
springs
Press-fit zone
Lower Shield
Press-fit zone
Backplane
Upper Shield
3 mm
Two-sided contact springs
Insulator thickness
I
H
G
F
E
D
Printed Circuit Board (PCB)
C
Centerline
Row B
Centerline
C
L
Row B
B
A
Z
Two-sided contact
springs
Press-fit zone
Lower Shield
Press-fit zone
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2.0 mm ERmet Hard Metric Connector System
Product Features
2.0 mm ERmet
AB Alignment Option (features)
The IEC 61076-4-101 connector standard only provides
for connector Types A, B, C, D, E, F, L, M and N. Many
customers require a connector with the density of a Type B
(25 columns) and with the pre-alignment guide pins of the
Type A, D, L and M connectors. This became a particular
issue within the CompactPCI computer architecture for rear
plug in applications where only B connectors were being
used. The problem is that if a plug in card only utilizes Type
B connectors, the cards will not have adequate vertical
alignment even in the most carefully constructed subrack.
The result can be pin stubbing and ultimately serious damage to both the backplane connectors and the female connectors on the daughter cards. For our customers who
need a solution to this situation or who need the additional
15 pins that a Type B connector provides, but who also
need the vertical alignment that the pre-alignment guide
pins afford, ERNI has developed the Type AB connector.
This new AB design, which does not allow for coding keys,
is now required for rP3 and rP5 shrouds by the current
draft PICMG Core specification (draft 3.0).
Coding Keys
CompactPCI® supports both conventional 5.0 V logic and 3.3 V logic.
To prevent damage to the system
resulting from incorrect insertion of
cards with differing logic, coding
keys are snapped into the multifunctional area of the male and
female connector. This is done with
the use of a plastic tool after the
connector has been pressed in. The unique, bright color of
the coding pairs allows for quick and easy visual identification and differentiation. For the 5.0 V logic, CompactPCI®
use brilliant blue coding keys, 3.3 V logic use cadmium
yellow and Telecom applications use strawberry red. The
IEC 61076-4-101 standard defines a unique configuration
and color for 70 different coding keys.
The ERNI design has special integral supports that exceed
the IEC requirements.
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2.0 mm ERmet Hard Metric Connector System
Product Features
2.5 mm minimum
wipe length
Male Contact Range
The ERmet 2mm H.M. Connector System has one of the
longest wipe areas of any connector system as defined in
IEC 61076-4-101. This ensures reliable contact mating
even under adverse mating conditions. Features include:
• 2.5 mm minimum wipe length for all three contact
lengths.
• The required wipe length for rear applications may be
achieved by selecting the proper rear shroud height for
the backplane thickness.
• IEC standardization completely defines tip blade and contact geometry, thus ensuring intermatability.
e
d
c
b
a
e
d
c
b
a
16.5
2.5
14
0.2 max.
z a b c d e f
z a b c d e f
Relation To IEEE 1101.10 And IEC 297.3
The ERmet 2mm H.M. Connector System has been chosen
by the PICMG for the CompactPCI bus architecture and the
VITA Standards Organization for the VME64 Extensions,
PO/JO connector. Both of these applications require this
connector to be used in 0.8” wide slots in accordance with
IEC 297.3 and IEEE 1101.10 mechanical chassis requirements. This chassis system defines the daughter card location within the card slot, relative to the interboard separation
planes. When the ERmet Connector System is used within
such a chassis system, the dimensions shown in the drawing will be observed. ERNI has designed the lower shield to
avoid any interference with the interboard separation plane.
This ensures that the daughter card and shield assembly
will not snag or interfere with high components in the adjacent slot during installation or removal.
Interboard Separation Plane
6.85
8.63
20.32
15.4
B Row Centerline
B Row Centerline
4.07
Interboard Separation Plane
14.0
1.33
Male Contact Selection Options
The ERmet 2mm H.M. Connector System offers 15 standard
contact lengths that utilize the proven pressfit assembly
technique. Within the 15 contact lengths are 3 mating levels,
achievable on both the plug-in and rear I/O side. Note you
always keep 1.5 mm spacing between levels, for enhanced
sequential mating.
On the plug-in side, the 3 contact levels are: 8.2 mm, 9.7 mm
and 11.2 mm. On the rear I/O side there are 5 pressfit terminal
length options: P1, P2, R1, R2, and R3. The P1 and P2
terminal lengths are for standard backplane applications with
terminal lengths of 3.7 mm and 4.5 mm respectively. The R1,
R2 and R3 terminal lengths are for rear I/O applications with
lengths of 13.0 mm, 14.5 mm and 16.0 mm respectively.
The optimum terminal length is determined by the printed
circuit board thickness, rear shroud height and the desired
mating level.
For contact plating information, refer to the Mechanical
Specifications. To specify custom loading configurations, use
the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
2.0 mm ERmet
Compliant Pressfit Pins
The ERmet 2mm H.M. connector line utilizes the proven
pressfit assembly method. This design was chosen because
it is an efficient assembly method that offers a number of
benefits over soldering including higher reliability, easier
inspection and repairability, and easier installation. In addition,
the pressfit method avoids exposing the high layer count
printed circuit boards (PCBs) to the additional thermal stress
of soldering.
Design Requirements For Printed Circuit Boards
Plated Through-hole For Pressfitting Signal Contacts, Power Contacts And Shielding Contacts
All ERmet 5+2 row and 8+2 row signal contacts are pressfit.
In addition, the bladed ERmet power connectors are also
pressfit and share the same board plated hole requirements
as the male and female signal connectors. The ERmet 2mm
H.M. Connectors have been used successfully with reflowed
tin-lead, plated tin-lead, immersion tin, organic coatings over
bare copper and immersion gold hole plating regimes.
The hole recommendations and press in force information
shown in this catalog are for reflowed tin-lead and plated tinlead. Additional test data for other hole plating regimes are
available through customer service.
0,7
Durchmesser des
metallisierten Loches
Diameter of finished
plated-through hole
0,6
Bohrungsdurchmesser
des Loches
Diameter of drilled hole
0,02
0,05
min. 0,05
Restringbreite
Restring width
max. 15 µm
1)
Sn / SnPb
min. 25 µm Cu
Plated Through-hole For Pressfitting High-current Contacts (Special Contacts For Modules L, M And N)
The ERmet Type L, M and N connectors have provisions
for high frequency coaxial and high current circular contacts. These contacts have a variety of different plated
through-hole requirements. For these, please consult ERNI
Customer Service.
However, ERNI does offer both 20 Amp and 40 Amp high
power pressfit contacts for the L, M, and N connectors,
which have the specific plated through-hole requirements
shown to the right.
Bohrungsdurchmesser
3,1 -0,03
Durchmesser des
metallisiertes Loches
+0,04
des Loches
Diameter of drilled hole
3 -0,06
Diameter of finished
plated-through hole
Restringbreite
min. 0.8
restring width
min. 25 µm Cu
max. 15 µ
m
Sn/SnPb
3,6 -0,03
Durchmesser des
metallisierten Loches
Diameter of finished
plated-through hole
1)
Bohrungsdurchmesser
des Loches
Diameter of drilled hole
+0,04
3,5 -0,06
min. 0.8
Restringbreite
Restring width
min. 25 µm Cu
Maximum Circuit Density
The dense ERmet 2.0 mm grid spacing utilizes a 0.6 mm
plated through via. This via diameter, together with an
appropriate plated annular ring, leaves a 1.0 mm minimum
space between adjacent annular rings for trace routing.
This space allows for either two equally spaced conductor
traces of 0.2 mm (.008") wide or three equally spaced
conductors 0.14 mm (.006") wide, as shown in the drawing
to the right. This layout can be used to bus two or three
rows of the connector on each layer respectively. Many
designers bus each row on a separate layer with a ground
or power layer between for best signal integrity.
max. 15 µm
Sn/SnPb
1)
2.0
0.2 (.008")
2 traces between pads
2.0
2.0
0.14 (.006")
3 traces between pads
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2.0 mm ERmet Hard Metric Connector System
Alignment Tolerance
Allowed Misalignment
Allowed Angular Inclination
The pre-alignment pins ensure accurate alignment, eliminating the possibility of pin stubbing on the female insulator.
When modules with the pre-alignment feature are used, the
following mating tolerances can be accommodated:
• Up to 2.0 mm of vertical or horizontal misalignment.
• Up to 2 degrees of vertical or horizontal angular inclination.
Midplane and Stacking Applications
Midplane – inline
The most common configuration for mid plane applications
is to have a rear shroud over long terminals. The rear
shroud is oriented so that the shroud's "a" row lines up
with the "a" row of the male connector on the front side of
the backplane. In this configuration, the card guides in the
front of the backplane line up exactly with those behind the
backplane.
Midplane – out of line
This less common configuration has the "a" row of the
shroud aligned with the "e" row of the male connector on
the front side of the backplane. In this configuration, the
card that plugs into the rear side has the same appearance
as the board that plugs into the front side of the backplane.
This usually requires a more complex card guide arrangement than the inline configuration.
Parallel stacking
This configuration has a vertical female connector on a
mezzanine board mating into a rear shroud on the rear of a
backplane. This is a very popular method often used to
connect two or more slots with a PCB which is parallel to
the backplane. This is a common solution for switched fabrics such as Raceway or for modular dedicated bused lines
such as a special processor to board memory bus. The
ERmet vertical female is also available with long tails to
allow two levels of stacking. The ERNI vertical female has
shields so all male pins can be contacted. Vertical females
with long terminals are available for additional levels of
stacking.
152
Catalog E 074484
Right Angle
Female
Shroud
Shroud
Male Header
Right Angle
Female
Male Header Right Angle
Female
Right Angle
Female
Shroud
Male Header
Right Angle
Female
Vertical
Female
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2.0 mm ERmet Hard Metric Connector System
Shroud Selection Information
8.5
8.0
7.5
7.0
6.0
(Dimensions illustrated below)
Y-Backplane Thickness (mm)
6.5
5.5
5.0
4.5
4.0
3.5
Examples:
• For a backplane thickness of 2.5 mm and the need to
accommodate all three rear mating lengths (terminals R1,
R2 and R3), a shroud base thickness of 6.1 mm must be
used.
• With a 5.0 mm thick backplane and a shroud with a
5.3 mm base thickness, only the R1 and R2 terminal
length pins may be used. The R3 terminal would be too
short to ensure the proper wipe length for reliable mating.
• With a 3.0 mm thick backplane and a shroud with a
5.3 mm base thickness any R1, R2 and R3 terminal
length pin may be used.
3.0
2.5
2.0
1.5
Height:
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_ _ _ _ _R1
____________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
___________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_ _ _ _ _R2
____________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
_________________
_ _ _ _ _R1
____________________________________
_________________________________________
_________________________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
___________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
___________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
_______
_________________________________________
_________________________________________
_________________________________________
_________________________________________
_ _ _ _ _R3
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_________________
_________________________________________
_ _ _ _ _R2
____________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
_________________
_________________________________________
_ _ _ _ _R1
____________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R3
___________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_______
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
___________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
_______
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R3
_________________
_________________________________________
_________________________________________
_ _ _ _ _R3
____________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R1
_________________
_ _ _ _ _R2
____________________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R3
_______
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R3
___________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_______
_ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
___________________________
_________________________________________
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R3
_ _ _ _ _ _ _ _ _ _ R1
_______
_________________________________________
_ _ _ _ _R3
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ R2
_________________
_________________________________________
_________________________________________
_________________________________________
_________________________________________
14.35 mm
14.95 mm
15.75 mm
16.55 mm
3.9 mm
4.5 mm
5.3 mm
6.1 mm
H-Shroud Base Thickness (mm)
(Dimensions illustrated below)
3.9
4.5
5.3
6.1
Male
Connector
Level 3
Level 2
Level 1
11.2 9.7
2.0 mm ERmet
After the backplane has been designed and its final overall
thickness is determined, it is often challenging to select the
proper shroud. Furthermore, a design may specify sequential mating in the rear which requires several different terminal lengths.
To accommodate a wide range of backplane thicknesses
and up to 3 rear mating levels, ERNI offers shrouds with 4
different base thicknesses. Which base thickness you select
depends on both the backplane thickness and the number
of terminal lengths you need. Note that due to the extremely
long contact wipe length (2.5 mm), several different combinations of pin terminal lengths and shroud base thicknesses
may be used to achieve the same functional result.
The chart at right shows for each of the four shroud base
thicknesses, which connector terminal lengths (R1, R2 or
R3) may be used for any specific backplane thickness
(1.5 mm to 8.0 mm).
8.2
3.0
Y Backplane
R3=13.0
H
3.9
R2=14.5
Shroud Base
Thickness
R1=16.0
10.5
Rear
Shroud
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2.0 mm ERmet Hard Metric Connector System
Ordering Information Shroud Selection Chart
Description
Type A25 Shroud
Base Thickness (mm)
Length (A) (mm)
Shroud Part #
Tool for Press*
Assembly
3.9
49.9
114436
914070
4.5
49.9
054795
914070
5.3
49.9
054794
914070
6.1
49.9
054793
914070
3.9
37.9
NA
914079
®
CompactPCI
rP1 and rP4 positions
Type A19 Shroud
Type AB25 Shroud
Type AB22 Shroud
CompactPCI®
rP2 and rP5 positions
Type AB19 Shroud
CompactPCI®
rP3 position
Type B25 Shroud
Type B22 Shroud
Type B19 Shroud
Type C11 Shroud
4.5
37.9
923109
914079
5.3
37.9
923108
914079
6.1
37.9
923107
914079
3.9
49.9
114482
914690
4.5
49.9
114483
914690
5.3
49.9
114484
914690
6.1
49.9
114485
914690
3.9
43.9
114425
914691
4.5
43.9
114426
914691
5.3
43.9
114427
914691
6.1
43.9
114428
914691
3.9
37.9
114487
914692
4.5
37.9
114488
914692
5.3
37.9
114489
914692
6.1
37.9
114490
914692
3.9
49.9
114437
914069
4.5
49.9
054797
914069
5.3
49.9
054798
914069
6.1
49.9
054799
914069
3.9
43.9
114619
914083
4.5
43.9
064692
914083
5.3
43.9
064693
914083
6.1
43.9
064694
914083
3.9
37.9
114618
914084
4.5
37.9
064622
914084
5.3
37.9
064623
914084
6.1
37.9
064624
914084
3.9
24.55
114438
914068
4.5
24.55
064172
914068
5.3
24.55
064171
914068
6.1
24.55
064170
914068
Tool for Manual Assembly
–
–
064202
–
Latch Arm
–
–
064219
–
Replacement Locking Wafers
–
–
–
054521
Dimensions shown are for reference purposes only. All dimensions are in millimeters (mm) unless otherwise noted.
*The tools are the same tools used to pressfit the equivalent male connectors. The tools listed will only accommodate pins
extending no more than 8.7 mm from the inside floor of the shroud. Calculated as follows: [8.7 mm > 16.0 mm – (BP thickness
(mm) + shroud base thickness (mm))]
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2.0 mm ERmet Hard Metric Connector System
2.0 mm ERmet
Connector System Modularity And Configuration
Modularity
The ERmet 2mm H.M. connector has been designed in
accordance with IEC 61076-4-101, with eleven basic connector types: A, B, AB, C, D, E, DE, F, L, M and N. These
connectors can be assembled end to end in a great variety
of combinations but certain guidelines must be followed:
You cannot mix 5+2 and 8+2 versions except under some
very special situations.
Type B connectors cannot be used alone. A Type B connector must be used in conjunction with a module containing a pre-alignment guide such as connector types A, AB,
C, L, M or N.
Type E connectors cannot be used alone. A Type E connector must be used in conjunction with a module containing a
pre-alignment guide such as connector types D, DE or F.
Type C, N and F connectors must be assembled at the
lower end of a connector stack.
Each end of the connector is designed so that the modules
"nest" together. This provides additional support for the side
walls and makes for a very neat appearance.
When shrouds are used on the rear side of a backplane,
care must be taken to align the shrouds properly. The correct orientation will depend upon the configuration of the
rear plug in cards. For most applications following the
"inline" configuration, the rear shrouds will have the convex
end detail facing down which is opposite to the arrangement depicted in the detailed drawing on this page. The "a"
row of the shroud will match the "a" row of the male connector.
0
L
D
D
25
50
B
A
E
75
100
A
B
DE
125
150
F
B
M
175
200
N
B
Male Connector Stacking And Connector End
Details
225
250
The ERmet 2mm H.M. Connector System is a modular system designed to be assembled on a 2.0 mm grid. The connectors are designed with a unique locking feature which
ties the sidewalls together. This ensures that any stress is
shared across an entire connector stack when assembled
as a group. The connector’s convex top end and concave
bottom end fit together, maintaining the dense 2.0 mm grid.
The bottom of the VME64 Extensions JO connector is the
one exception. It is molded flat across as it is not designed
for modular stacking and would otherwise interfere with the
DIN 41612 connectors. It can be used in a modular stacking configuration but will not benefit from interlocking sidewalls.
A
275
300
AB
325
350
C
375
Connector Bottom
Nests With
Connector Tops.
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Stack Height in mm
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2.0 mm ERmet Hard Metric Connector System
Mechanical Specifications and Performance
General Connector Specifications
Connector Pitch
2.0 mm
Temperature Range
Performance level 3 per 61076-4-101
Performance level 2 per IEC 61076-4-101
-55°C to +125°C
≥ 50 mating cycles
≥ 250 mating cycles
Performance level 1 per IEC 61076-4-101
Pressfit pin insertion
(male or female)
≥ 500 mating cycles
36 Newtons (N) typical
0.55 mm hole
0.65 mm hole
25 Newtons (N) typical
Contact Normal Force
Contact
Shield
Insulation Resistance IEC 512-2 Test 3a
Mating and with drawal force
per IEC 512-7, Test 13a
Withdrawal force per contact IEC 512-7,
Test 16e
0.8 Newtons (N)/contact
104 MΩ min @ 100DC
104 MΩ min @ 100 DC
Contact
Ground pin to shield
Contact
n x 0.75 Newtons (N) maximum (n=number of contacts)
n x 1 Newtons (N) maximum (n=number of contacts)
0.15 Newtons (N) minimum
Ground pin to shield
0.15 Newtons (N) minimum
Contact insertion force (per pin) IEC 352-5 paragraph 3.2.2.2
Flammability
36.3 Newtons (N) average (male or female)
UL 94 V-0
Hole requirements for daughter card and backplane
Contact Resistance per IEC 512-2. Test 2a
0.6 mm ± 0.05 mm after plating
20 mΩ maximum
Male Contact and Housings
Housing Material (8+2) and (5+2)
CTI value per IEC 112
Contact Material
Contact Plating/Performance Level
P1, P2
Contact Plating/Performance Level
R1, R2, R3
Contact area
PBT 30% glass filled
CTI 250 - 399
Phosphor bronze
Gold plated
Compliant area
Rear terminal
Sn
Sn
Contact area
Gold plated
Rear terminal
Gold plated
Right Angle Female Contact and Housings
Type 1
Type 2
Housing Material (8+2)
LCP 30% glass filled
Housing Material (5+2)
Wafer (8+2) and (5+2)
LCP 30% glass filled
PBT 30% glass filled
CTI value per IEC 112
Contact Material
CTI 175
Contact Plating/Performance Level
n/a
PBT 30% glass filled
PBT 30% glass filled
CTI 250 - 399
Phosphor bronze
Contact area
Compliant area
Gold plated
Sn
Contact Normal Force
0.8 Newtons (N)/contact
Vertical Females
Wafer (8+2) and (5+2) Material
LCP 30% glass filled
CTI value per IEC 112
Contact Material
Contact Plating/Performance Level
156
CTI 175
Phosphor bronze
Contact area
Compliant area
Extended Terminals
Catalog E 074484
Gold plated
Sn
Gold plated
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2.0 mm ERmet Hard Metric Connector System
Mechanical Specifications and Performance
2.0 mm ERmet
Ground Return Shields for Right Angle Female Connectors
Base material
Contact plating per
IEC 512 Test 9A
Performance level 2 per IEC 61076-4-101
Copper alloy
Gold plated
Contact fingers
≥ 250 mating cycles
Hole requirements for daughter card
0.6 ±0.05 mm after plating
Ground Return Shields for Vertical Female Connectors
Base material
Copper alloy
Contact plating per
IEC 512 Test 9A
Contact fingers
Gold plated
Terminal plating per
Extended terminals
IEC 512 Test 9A
Performance level 2 per IEC 61076-4-101
Gold plated
≥ 250 mating cycles
Hole requirements for daughter card
0.6 ±0.05 mm after plating
Shrouds
Temperature range
-55°C to +125°C
Housing material
Flammability
PBT 30% glass filled
UL 94 V-O
Coding Keys
Temperature range
Housing material
Flammability
Mechanical strength
Weight
-55°C to +125°C
Polycarbonate 30% glass filled
UL 94 HB
≥ 300 Newtons (N)
0.3 Grams (G) average
Latch Arm
Temperature range
-65°C to +125°C
Housing material
Flammability
LCP 2000 30% glass filled
UL 94 V-O
Cable Connectors
Female contact housing
Over molding
Material
Flammability
30% glass filled LCP
UL94VO
Material
30% glass filled LCP
Flammability
Material
Shield
Material
Plating
UL94VO
30% glass filled LCP
1.0 grams
phosphor bronze
Gold plated
Contact
Material
Plating
phosphor bronze
Gold plated
Locking combs
Total weight of plastic material
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2.0 mm ERmet Hard Metric Connector System
7-Row Electrical Performance
In the Time Domain Reflectometry (TDR) plot shown
below, note the connector exhibits an almost ideal, 50 ohm
characteristic impedance. This smooth, discontinuity-free,
impedance progression is due, in part, to both the uniform
contact spacing and constant cross section, as well as the
uniform dielectric constant. This is a result of the encapsulated terminals of the right angle female connector.
The ERmet line of 2mm H.M. connectors set a new,
higher standard for 2.0 mm electrical performance. A collection of test reports is available which completely characterizes the connectors’ mechanical and high frequency performance. In addition, ERNI can provide a SPICE (Simulator
Program for Integrated Circuit Emulation) model to customers, utilizing advanced circuit simulation methods.
116Ω 0.4
Z r
93Ω 0.3
a
b
c
d
e
Stripline
75Ω 0.2
61Ω 0.1
50Ω
0
41Ω 0.1
33Ω 0.2
SMAconnector
signalinput
Stripline
Stripline
Connector
Via
Via
21Ω 0.4
25.2780 ns
25.7780 ns
t
SMA
Connector
signal
ground
27Ω 0.3
26.2780 ns
TDR plot showing the impedance progression from a 2mm H.M. connector. Signal ground pattern as shown.
High Frequency Characteristics
The chart below summarizes the electrical characteristics
of a test board with similar pin assignments. Note the
remarkably low propagation delay (132 ps) and low total
skew (a-e = 46 ps).
parameter
connector pin row
a
b
c
d
e
capacitance C (f = 100 MHz) 2.5 pF
2.8 pF
2.9 pF
3.1 pF
3.2 pF
inductance L (f = 100 MHz) 6.8 nH
7.6 nH
8.3 nH
8.7 nH
10.5 nH
characteristic impedance 52 Ω
propagation delay*
These factors, combined with the low capacitance and
low inductance of the connector, make the ERmet 2mm
H.M. Connector the best choice for demanding, high speed
applications.
111 ps
(86) ps
signal skew
52 Ω
53 Ω
53 Ω
57 Ω
119 ps
126 ps
141 ps
157 ps
a
b
c
d
e
Stripline
(94) ps (101) ps (116) ps (132) ps
8 ps
9 ps
14 ps
15 ps
maximum 46 ps
crosstalk
57 dB
(f = 100 MHz)
Reflection factor
(50 Ω and f = 100 MHz)
VSWR (f = 100 MHz)
Reflection loss [dB]
(f = 100 MHz)
ground
53 dB
0.02
0.02
1.04
1.04
34
34
0.03
0.03
0.065
1.06
1.06
1.14
30.5
30.5
24
* The higher value of the propagation delay is measured from solder-side to solder-side (rear side). The
signal
SMA
Connector
The measurement values are based on
this pin configuration.
value in parenthesis is calculated from component-side to component-side (front side).
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2.0 mm ERmet Hard Metric Connector System
7-Row Electrical Performance
2.0 mm ERmet
Current Rating For Various
Contact Mounting Configurations
Curve C –
alternate rows,
every other
position
(chessboard
pattern)
A
3
Current Carrying Capacity
The specifications for contact current rating, dielectric
withstanding voltages and creepage and clearance distances are all dependent on the contact loading configuration. For example, if contacts are loaded in a “chessboard
pattern,” each contact can carry more current than if every
contact is loaded.
2.5
2
Curve B –
all rows, every
other position
1.5
1
Curve A –
every position
0.5
20
40 60 80 100 120 140
Ambient Temperature
°C
Dielectric Withstanding Voltage
Contact/Contact:
Row Designation
Row a + c + e
Row b + d
Row a + b + c
Fully Loaded
Every Other Position
Chessboard Pattern
–
Within the row
750Veff
1500Veff
Between the rows
1500Veff
1500Veff
–
Within the row
750Veff
1500Veff
1500Veff
Between the rows
750Veff
750Veff
1200Veff
Row a + b + c + d
Row a + b + c + d + e
Contact to grounding rows or shielding frame: 750Veff
Creepage Distances And Clearances Dependent On Contact Layout
Contact/Contact:
Fully Loaded
Every Other Position
Chessboard Pattern
Backplane Daughter Card Backplane Daughter Card Backplane Daughter Card
Male
Female
Male
Female
Male
Female
Connector
Connector
Connector
Connector
Connector
Connector
Row Designation
Row a + c + e
Row b + d
Row a + b + c
Within the row
0.8
0.6
2.5
2.5
–
Between the rows
2.5
2.5
2.5
2.5
–
–
–
Within the row
0.8
0.6
2.5
2.5
2.5
2.5
Between the rows
0.8
0.6
0.8
0.6
1.5
1.2
Row a + b + c + d
Row a + b + c + d + e
Creepage and clearance distances for contacts in the outer contact rows (A and E) to shielding rows (optional) is 0.8 mm.
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2.0 mm ERmet Hard Metric Connector System
10-Row Electrical Performance
In the Time Domain Reflectometry (TDR) plot shown
below, note the connector exhibits an almost ideal, 50 ohm
characteristic impedance. This smooth, discontinuity-free,
impedance progression is due, in part, to both the uniform
contact spacing and constant cross section, as well as the
uniform dielectric constant. This is a result of the encapsulated terminals of the right angle female connector.
The ERmet line of 2mm H.M. connectors set a new,
higher standard for 2.0 mm electrical performance. A collection of test reports is available which completely characterizes the connectors’ mechanical and high frequency performance. In addition, ERNI can provide a SPICE (Simulator
Program for Integrated Circuit Emulation) model to customers, utilizing advanced circuit simulation methods.
High Frequency Characteristics
low inductance of the connector, make the ERmet 2mm
H.M. Connector the best choice for demanding, high speed
applications.
The chart below summarizes the electrical characteristics of a test board with similar pin assignments.
These factors, combined with the low capacitance and
parameter
capacitance C [pF]
f = 300 MHz
inductance L [nH]
connection pin row
d
e
a
b
c
f
g
h
1.9
2.3
2.5
2.7
2.8
2.8
3.7
4.0
5.4
6.3
6.9
7.5
8.1
8.9
11.9
15.5
characteristic impedance
z = √ L/C
53
52
53
53
54
56
57
62
propagation delay [ps]
110
120
130
140
150
160
175
f = 100 MHz
10
signal skew [ps]
VSWR
f = 300 MHz
Reflection loss [dB]
f = 300 MHz
b
c
d
e
f
190
15
10
34.9
Reflection factor 50 Ohm
f = 300 MHz
a
10
10
crosstalk [dB] f=300 MHz
z
10
15
32.7
30.2
-28.61
0.03
0.02
0.02
0.03
0.04
0.06
0.06
0.11
1.06
1.04
1.04
1.06
1.08
1.13
1.13
1.25
30.5
34.0
34.0
30.5
28.0
24.4
24.4
19.2
g
h
i
10
9
8
7
6
5
4
3
2
1
ground
signal pin
shielding pin
The measurement values are based on this pin configuration.
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2.0 mm ERmet Hard Metric Connector System
10-Row Electrical Performance
2.0 mm ERmet
Current Rating For Various
Contact Mounting Configurations
Curve C –
alternate rows,
every other
position
(chessboard
pattern)
A
3
Current Carrying Capacity
The specifications for contact current rating, dielectric
withstanding voltages and creepage and clearance distances are all dependent on the contact loading configuration. For example, if contacts are loaded in a “chessboard pattern,” each contact can carry more current
than if every contact is loaded.
2.5
2
Curve B –
all rows, every
other position
1.5
1
Curve A –
every position
0.5
20
40 60 80 100 120 140
Ambient Temperature
°C
Dielectric Withstanding Voltage
Contact/Contact:
Row Designation
Row a+c+e+g
Within the row
Row b+d+f+h
Between the rows
Row a+b+c
Row a+b+c+d
Within the row
Row a+b+c+d+e
Row a+b+c+d+e+f
Row a+b+c+d+e+f+g
Between the rows
Row a+b+c+d+e+f+g+h
Contact to grounding rows or shielding frame: 750Veff
Fully Loaded
Every Other Position
Chessboard Pattern
750Veff
1500Veff
1500Veff
1500Veff
–
–
750Veff
1500Veff
1500Veff
750Veff
750Veff
1200Veff
Creepage Distances And Clearances Dependent On Contact Layout
Contact/Contact:
Fully Loaded
Every Other Position
Chessboard Pattern
Backplane Daughter Card Backplane Daughter Card Backplane Daughter Card
Male
Female
Male
Female
Male
Female
Connector
Connector
Connector
Connector
Connector
Connector
Row Designation
Row a+c+e+g
Row b+d+f+h
Row a+b+c
Row a+b+c+d
Row a+b+c+d+e
Row a+b+c+d+e+f
Row a+b+c+d+e+f+g
Row a+b+c+d+e+f+g+h
Within the row
Between the rows
0.8
2.5
0.6
2.5
2.5
2.5
2.5
2.5
–
–
–
–
Within the row
0.8
0.6
2.5
2.5
2.5
2.5
Between the rows
0.8
0.6
0.8
0.6
1.5
1.2
Creepage and clearance distances for contacts in the outer contact rows (A and E) to shielding rows (optional) is 0.8 mm.
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2.0 mm ERmet Hard Metric Connector System
Approval Certificates, Performance Levels And Ordering Information
Approval Certificates
UL Approved by the American approvals authority (Underwriters Laboratories Inc.) File number E 84703.
ISO 9001 All ERmet connectors are designed and produced in fully approved ERNI ISO 9001 facilities.
Bellcore GR 1217 CORE ERmet connectors are available
that meet the requirements of Bellcore GR-1217-CORE for
large systems in uncontrolled environments.
ECTF ERmet connectors are also available to meet the
requirements of the Enterprise Computer Telephony
Forum’s (ECTF) H.110 specification.
Performance Levels
207 Conforms to the requirements of IEC 61076-4-101
performance level 2 (≥ 250 mating cycles) in the
contact area.
For detailed information, see Mechanical
Specifications and Performance.
IEC 917 And IEC 61076-4-101 The ERmet Connector
System meets the requirements of IEC 61076-4-101 which
was developed in accordance with the requirements of IEC
917 the standard for for Hard Metric mounting systems.
IEEE 1301 And IEEE 1101 And IEEE 1101.10 ERmet
connectors were developed to meet the demanding board
to backplane physical architecture of IEEE 1301 and have
been adapted to meet the requirements of IEEE 1101 and
IEEE 1101.10.
PICMG ERmet connectors have been adapted to meet the
requirements of the CompactPCI specification as defined
by the PICMG. Special length connectors with the required
loading have been molded and assembled for these
applications. Type AB connectors have been developed for
rear transition card applications.
201
Conforms to the requirements of IEC 61076-4-101
performance level 2 (≥ 250 mating cycles) in both
contact and terminal areas.
For additional performance levels, consult ERNI
Customer Service.
Ordering Information
All ERNI ERmet 2mm H.M. Connectors for CompactPCI
and VME64 Extensions are assigned a six digit part number.
The following pages contain part numbers, along with product descriptions of many popular ERNI 2mm H.M. Connectors, complementary components, application, repair
and installation tooling. In addition to the configurations
listed in this catalog, others are available. Please consult
ERNI customer service for more information.
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type A for Daughter Cards
2.0 mm ERmet
110 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type A female connector provides 110 contacts
in a 5 row x 25 position (3 positions used by multifunction
cavity), fully loaded configuration. This connector is used in
the J1 and J4 positions of the CompactPCI® daughter
card. The connector is designed for gas tight, pressfit
installation and is provided in two different configurations:
with integrated upper ground return shields and without
integrated upper ground return shields. Lower ground
return shields are available separately.
The ERmet type A female connector has a multifunction
cavity that incorporates pre-alignment guides and accepts
optional coding keys. This connector is designed to be
used alone or in conjunction with either a type B, C, L, M
or N ERmet connector. The type A female is also available
with a locating and strain relief peg that helps secure the
connector to the printed circuit board (PCB).
Dimensional drawings and board hole pattern
25
15
11
1
Catalog E 074484
8
2
4*2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
2
e
d
c
b
a
10 * 2 =
Compliant zone for
thru hole
0.6 ± 0.05
2
20
8
10 * 2 =
20
3-
50 max
1 max
0.4
2
10.8
- 0.2
20.65
- 0.2
1.7 +- 0.05
1 max
11.4
3.2
Id.-Nr.
class
date
12.25
Board hole pattern
( Component mounting side )
4
10 * 2 = ( 20 )
0.6 +- 0.05
plated thru,
drill hole 0.7
4
10 * 2 =
( 20 )
2
2 + 0.05 nicht
not plated thru
± 0.02
15
13
11
1
2
25
5*2=
( 10 )
f
e
d
c
b
a
1.5
0.1
all holes
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type A for Daughter Cards
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
J1, J4
110
044146
110
044766
Type A Without Shield, Without Peg
25
15
11
1
e
d
c
b
a
Type A Without Shield, With Peg
25
15
11
1
e
d
c
b
a
Type A With Shield, Without Peg
25
15
11
1
e
d
c
b
a
J1, J4
110
064176
e
d
c
b
a
J4 Telecom
90
104512
rJ4 Telecom
90
104697
Type A With Split Shield, Partially Loaded
25
15
11
1
Type A With Split Shield, Partially Loaded
25
21
18
15
11
1
e
d
c
b
a
Lower Shield For Type A And AB
J1, J4
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type A for Backplanes
2.0 mm ERmet
110 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type A vertical male connector provides 110 signal
contacts and 44 ground shield contacts in 5+2 row x 25
position (3 positions used by multifunction cavity), fully
loaded configuration. This connector is used in the P1 and
P4 positions of a CompactPCI® backplane. With 15 different
standard pin lengths to choose from, this is one of the most
versatile connectors available. The connector is designed
for gas tight pressfit installation.
The ERmet type A male connector has a multifunction cavity
that incorporates pre-alignment guides and accepts optional
coding keys. This connector is designed to be used alone
or in conjunction with either type B, C, L, M or N ERmet
connectors.
Dimensional drawings and board hole pattern
class
date
Id.-Nr.
0.1
3-
13.45
2
10x2= 20
8
10x2= 20
4x2=
8
compliant zone for thru hole
0.6‘0.0±0.05
25
15
11
1
z
a
b
c
d
e
f
1 max
1 max
50 max
Board hole pattern
(Component mounting side)
4
10 x 2 = ( 20 )
0.6 +- 0.05
0.1
all holes
4
10 x 2 =
2
not plated thru
plated thru
drill hole 0.7
±0.02
15
13
11
1
z
a
b
c
d
e
f
( 12 )
2
25
( 20 )
2 + 0.05
6x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Catalog E 074484
2
- 0.1
15.4
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165
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type A for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
110
043136
110
043190
110
043477
110
044148
110
044149
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type A Without Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type A for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
154
053007
154
054034
154
054185
154
054528
154
064097
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
P1 Per PICMG
2.0 R2.1
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type A for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
2
3
1
z
a
b
P4
154
064688
P4
154
103968
P4
154
103975
P4 Telecom
100
923160
P1
154
923190
c
d
e
f
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A Without Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type A With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
168
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type A for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A With Peg And Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
P1 Special
154
923197
P4 Telecom
100
923212
P1
154
923342
P4
132
923347
c
d
e
f
Type A Without Peg And With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type A Without Peg And With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type A With Extended Terminals For Shrouding
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type A
110 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type A vertical female connector provides 110
contacts in a 5 row x 22 position fully loaded configuration.
Versions with optional “z” and “f” row shields are available
as well as extended terminals for use in stacking applications
with rear shrouds.
Two spacer heights are also available: 3.1 mm and 9.6 mm
to provide additional component clearance.
The ERmet type A female connector has a multifunctional
cavity that incorporates pre-alignment pins and optional
coding keys. The pressfit terminals provide a convenient
and reliable gas tight connection.
This connector may be used alone or in conjunction with
Type B and C vertical female connectors.
Dimensional drawings and board hole pattern
12.25
Id.-Nr.
Anforderungsstufe
class
11.4
170
12
XXXX
1 max.
0.6
3
1
11
3.7 ±0.2
50 max.
1 max.
15
25
a
b
2
c
d
8
e
3.65
10 x 2 =
20
8
Lochbild für Leiterplatte
(Bestückungsseite)
10 x 2 =
0.6
2
10 x 2 =
4x2=
2
20
Board hole pattern
(Component mounting side)
alle Löcher
8
( 20 )
10 x 2 =
( 20 )
-all holes
0.05
±0.05
2
durchkontaktiert,
Bohrloch 0.7
±0.02
plated thru,
drill hole 0.7
±0.02
a
2
b
c
d
1
11
15
25
(8)
e
4x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3
Datum
date
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type A
2.0 mm ERmet
* Termination + Board To Board Distance
Version 5
Version Without Shield
Version 3
Version 4
9.6
3.1
1
15-16.5
2
15-16.5
3
18.4-20
4
18.4-20
5
25-26.5
3.7 ±0.2
13 ±0.2
Board To Board
Distance *
Board To Board
Version
Distance
13 ±0.2
3.7 ±0.2
3.7 ±0.2
Version 2
3.1
Version 1
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
Version 10
Version With Shield
Version 8
15-16.5
8
18.4-20
9
18.4-20
10
25-26.5
9.6
3.7 ±0.2
3.1
16 ±0.2
Distance
15-16.5
7
Board To Board
Board To Board
Distance *
6
13 ±0.2
3.7 ±0.2
13 ±0.2
16 ±0.2
3.7 ±0.2
Note: All dimensions in mm.
Version
Version 9
Version 7
3.1
Version 6
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type A
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A Without Shield, Without Peg Version 1 *
110
104702
110
114007
110
114009
110
114011
110
114013
XXXX
Type A Without Shield, Without Peg Version 2 *
XXXX
ERNI
114007
2
Type A Without Shield, Without Peg Version 3 *
XXXX
ERNI
114009
2
Type A Without Shield, Without Peg Version 4 *
XXXX
ERNI
114011
2
Type A Without Shield, Without Peg Version 5 *
XXXX
172
ERNI
114013
2
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type A
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type A With Shield, Without Peg Version 6 *
1
XXXX
ERNI
104112
2
110
104112
110
114008
110
114010
110
114012
110
114014
25
Type A With Shield, Without Peg Version 7 *
1
XXXX
ERNI
114008
2
25
Type A With Shield, Without Peg Version 8 *
1
XXXX
ERNI
114010
2
25
Type A With Shield, Without Peg Version 9 *
1
XXXX
ERNI
114012
2
25
Type A With Shield, Without Peg Version 10 *
1
XXXX
Catalog E 074484
ERNI
04/10
114014
2
25
Edition 9
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type B for Daughter Cards
125 signal contacts
50 mm without multifunction block
The ERmet type B female connector provides 125 contacts
in a 5 row x 25 position fully loaded configuration.
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with integrated ground return shields and without integrated upper
ground return shields. Lower ground return shields are
available separately.
The ERmet type B female connector has an uninterrupted
pin field with no multifunction cavity. This connector is not
designed to be used alone, but is intended to be used in
conjunction with either a type A, C, L, M or N ERmet connector.
Dimensional drawings and board hole pattern
25
1
174
8
Compliant zone for
thru hole
0.6 ± 0.05
4*2=
2
24 * 2 =
48
3-
50 max
1 max
0.4
2
10.8
- 0.2
20.65
- 0.2
1.7 +- 0.05
1 max
11.4
Id.-Nr.
class
date
Board hole pattern
( Component mounting side )
24 * 2 =
0.6
( 48 )
+ 0.05
-
2
plated thru,
drill hole 0.7
± 0.02
25
1
2
( 10 )
f
e
d
c
b
a
1.5
0.1
all holes
5*2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
2
e
d
c
b
a
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type B for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B Without Shield, Without Peg
25
1
e
d
c
b
a
125
044767
e
d
c
b
a
125
064179
Type B With Upper Shield, Without Peg
25
1
Type B Without Shield, Without Peg
22
1
e
d
c
b
a
J2, J5
110
914797
e
d
c
b
a
J2, J5
110
064785
e
d
c
b
a
J3
95
914794
e
d
c
b
a
J3
95
064784
Type B With Upper Shield
22
1
Type B Without Shield, Without Peg
19
1
Type B With Upper Shield
19
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type B for Daughter Cards
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Lower Shield For Type B
044452
Lower Shield For Type B
J2, J5
064783
J3
064782
Lower Shield For Type B
176
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
2.0 mm ERmet
125 signal contacts
50 mm without multifunction block
The ERmet CompactPCI type B vertical male connector
provides 125 signal contacts and 50 ground shield contacts
in a 5+2 row x 25, fully loaded configuration. With 15 different standard pin lengths to choose from, this is one of the
most versatile connectors available. The connector is
designed for gas tight pressfit installation.
The ERmet type B vertical male connector has an uninterrupted pin field with no multifunction cavity. This connector
is not designed to be used alone, but it is intended to be
used in conjunction with either a type A, C, L, M or N
ERmet connector.
Dimensional drawings and board hole pattern
15.4
3-
13.45
2
2
24 x 2 =
4x2=
48
8
compliant zone for thru hole
0.6‘0.0±0.05
1
25
z
a
b
c
d
e
f
1 max
1 max
50 max
Board hole pattern
(Component mounting side)
24 x 2 =
0.1
0.6
all holes
48
+ 0.05
-
2
plated thru,
drill hole 0.7
±0.02
1
25
( 12 )
2
z
a
b
c
d
e
f
6x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
0.1
date
- 0.1
Id.-Nr.
class
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
125
043137
125
053088
175
053008
175
054293
175
054392
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
178
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
125
043476
175
054186
175
064522
P2, P5
154
914796
P5 Telecom
154
923162
Type B With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B
22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B
22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B With Extended Terminals
22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
P2, P5
154
064690
P2
154
923131
P5 Telecom
132
923339
P2
154
923340
P2
132
923345
Type B With Extended Terminals For Shrouding
22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type B (AB Compatible) With Extended Terminals For Shrouding
22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
C C
f
Type B (AB Compatible) With Extended Terminals For Shrouding
22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
C C
z
a
b
c
d
e
C C
f
Type B (AB Compatible) With Extended Terminals For Shrouding
22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
C C
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
180
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B
19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
P3
133
103670
P3
133
914793
P3
133
923132
P3
133
923341
P3
114
923346
d
e
f
Type B With Extended Terminals
19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type B With Extended Terminals For Shrouding
19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type B (AB Compatible) With Extended Terminals For Shrouding
19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type B (AB Compatible) With Extended Terminals For Shrouding
19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type B for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B
16 15 14 13 12 11 10
9
8
7
6
5
4 3
2
1
z
a
112
b
064766
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
182
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type B
2.0 mm ERmet
125 signal contacts
50 mm without multifunction block
The ERmet type B vertical female connector provides 125
contacts in a 5 row x 25 position fully loaded configuration.
Versions with optional “z” and “f” row shields are available
as well as extended terminals for use in stacking applications with rear shrouds.
Two spacer heights are also available: 3.1 mm and 9.6 mm
to provide additional component clearance.
The ERmet type B vertical female connector has an uninterrupted contact field and no multifunction cavity. This connector is not designed to be used alone, but is intended to
be used with either a Type A or C female ERmet connector.
Dimensional drawings and board hole pattern
Anforderungsstufe
class
11.4
XXXX
50 max.
0.6
1 max.
3.7 ±0.2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Catalog E 074484
Id.-Nr.
12
Datum
date
1 max.
1
25
a
b
2
c
d
8
e
24 x 2 =
Lochbild für Leiterplatte
(Bestückungsseite)
4x2=
2
48
Board hole pattern
(Component mounting side)
alle Löcher
24 x 2 =
0.6
( 48 )
-all holes
0.05
±0.05
2
durchkontaktiert,
Bohrloch 0.7
±0.02
plated thru,
drill hole 0.7
±0.02
a
2
b
c
d
25
4x2=
1
(8)
e
04/10
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Seite 184
2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type B
* Termination + Board To Board Distance
Version 5
Version 3
Version 4
9.6
3.1
15-16.5
2
15-16.5
3
18.4-20.0
4
18.4-20.0
5
25-26.5
3.7 ±0.2
13 ±0.2
Board To Board
Distance *
1
Board To Board
Version
Distance
13 ±0.2
3.7 ±0.2
3.7 ±0.2
Version 2
3.1
Version 1
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
Version 10
Version 8
184
15-16.5
8
18.4-20.0
9
18.4-20.0
10
25-26.5
9.6
3.1
3.7 ±0.2
16 ±0.2
Distance
15-16.5
7
Board To Board
Board To Board
Distance *
6
13 ±0.2
3.7 ±0.2
13 ±0.2
16 ±0.2
3.7 ±0.2
Note: All dimensions in mm.
Version
Version 9
Version 7
3.1
Version 6
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
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Seite 185
2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type B
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B Without Shield, Without Peg Version 1 *
XXXX
125
104703
125
114015
125
114017
125
114019
125
114021
Type B Without Shield, Without Peg Version 2 *
XXXX
ERNI
114015
2
Type B Without Shield, Without Peg Version 3 *
XXXX
ERNI
114017
2
Type B Without Shield, Without Peg Version 4 *
XXXX
ERNI
114019
2
Type B Without Shield, Without Peg Version 5 *
XXXX
Catalog E 074484
ERNI
04/10
114021
2
Edition 9
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type B
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B With Shield, Without Peg Version 6 *
1
XXXX
ERNI
104113
2
125
104113
125
114016
125
114018
125
114020
125
114022
25
Type B With Shield, Without Peg Version 7 *
1
XXXX
ERNI
114016
2
25
Type B With Shield, Without Peg Version 8 *
1
XXXX
ERNI
114018
2
25
Type B With Shield, Without Peg Version 9 *
1
XXXX
ERNI
114020
2
25
Type B With Shield, Without Peg Version 10 *
1
186
XXXX
ERNI
114022
2
25
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type B
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type B With Shield, Without Peg Version 6 *
1 XXXX
ERNI
114114
2
22
110
114114
110
114134
95
114111
95
114112
95
114133
Type B With F-row Shield, Without Peg Version 6 *
1 XXXX
ERNI
114134
2
P2 / P4
22
Type B Without Shield, Without Peg Version 1 *
114111
XXXX
Type B With Shield, Without Peg Version 6 *
1
XXXX
ERNI
114112
2 19
Type B With F-row Shield, Without Peg Version 6 *
1
XXXX
Catalog E 074484
ERNI
114133
04/10
P2 / P4
2 19
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type AB for Daughter Cards
125 signal contacts
50 mm without multifunction block
The ERmet type AB female connector provides 125 contacts
in a 5 row x 25 fully loaded configuration,110 contacts in a
5 row x 22 position fully loaded configuration or 95 pins in a
5 row x 19 position configuration. The 19 position connector
is used in the rJ3 location and the 22 position connector is
used in the rJ2 and rJ5 locations of the CompactPCI® rear
transition card. The connector is designed for gas tight,
pressfit installation and is provided in two different configurations: with integrated ground return shields and without
integrated upper ground return shields. Lower ground
return shields are available separately.
The ERmet type AB female connector has an uninterrupted
pin field with no multifunction cavity but does have integral
pre-alignment guides. This connector can be used alone or
in conjunction with either a type A, B or C ERmet connector.
This connector will provide the necessary alignment for rear
transition applications.
Dimensional drawings and board hole pattern
25
8
2
e
d
c
b
a
Compliant zone for
thru hole
0.6 ± 0.05 ± 0.05
4x2=
2
24 x 2 =
48
3-
50 max
1 max
0.4
2
3
10.8
- 0.2
20.65
- 0.2
1.7 +- 0.05
1 max
11.4
Id.-Nr.
class
date
13.85
Board hole pattern
(Component mounting side)
24 x 2 =
0.1
0.6
all holes
48
+ 0.05
-
2
plated thru,
drill hole 0.7
±0.02
1
25
( 12 )
2
z
a
b
c
d
e
f
6x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
188
114160
1
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type AB for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type AB Without Shield, Without Peg
25
1
e
d
c
b
a
125
114154
e
125
114538
rJ2, rJ5
110
104933
rJ2, rJ5
110
114809
rJ3
95
114529
rJ3
95
114810
Type AB With Shield, Without Peg
25
1
d
c
b
a
Type AB Without Shield, Without Peg
22
1
e
d
c
b
a
Type AB With Shield, Without Peg
22
1
e
d
c
b
a
Type AB Without Shield, Without Peg
1
19
e
d
c
b
a
Type AB With Shield, Without Peg
1
19
e
d
c
b
a
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type AB for Daughter Cards
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Lower Shield For Type A And AB
044446
Lower Shield For Type A And Type AB
114231
Lower Shield For Type A And Type AB
923110
190
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type AB for Backplanes
2.0 mm ERmet
125 signal contacts
50 mm without multifunction block
The ERmet type AB vertical male connector provides 125
signal contacts and 44 ground shield contacts in 5+2 row x
25 position, fully loaded configuration. This connector is
used in the P1 and P4 positions of a CompactPCI® backplane. With 15 different standard pin lengths to choose
from, this is one of the most versatile connectors available.
The connector is designed for gas tight pressfit installation.
The ERmet type AB male connector has an uninterrupted
pin field with pre-alignment guides, but does not accept
coding keys. This connector can be used alone, or it can be
used with either type A, C, L, M or N ERmet connectors.
Dimensional drawings and board hole pattern
Id.-Nr.
class
date
0.1
3-
13.45
2
2
24 x 2 =
6x2=
48
12
compliant zone for thru hole
0.6‘0.0±0.05
1
25
z
a
b
c
d
e
f
1 max
1 max
50 max
Lochbild fuer Leiterplatte
Board hole pattern
(Bestueckungsseite)
(Component mounting side )
24 x 2 =
0.1
(48 )
alle Löcher
0,6
all holes
0,05
durchkontaktiert
Bohrloch 0.7 ±0.02
2
plated thru
drill hole 0.7±0.02
(12)
z
a
b
6x2=
c
d
e
f
2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Catalog E 074484
- 0.1
15.4
04/10
25
15
Edition 9
11
1
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type AB for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type AB Without Shield, Without Peg
R3
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
R2
125
114236
169
114153
169
114539
R1
Type AB With Shield, Without Peg
R3
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
R2
R1
Type AB With Shield, Without Peg
R3
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
R2
R1
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type C for Daughter Cards
2.0 mm ERmet
55 signal contacts
25 mm extension module
The ERmet type C female connector provides 55 contacts
in a 5 row x 11 position fully loaded configuration.
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with integrated upper ground return shields and without integrated
upper ground return shields. Lower ground return shields
are available separately.
The ERmet type C female connector has pre-alignment
guides. This connector can be used alone or in conjunction
with either a type A, B, L, M or N ERmet connector, however, it can only be installed at the lower end of a connector
row.
The type C female is also available with a locating and strain
relief peg that helps secure the connector to the printed circuit board (PCB).
Dimensional drawings and board hole pattern
11
1
Catalog E 074484
Compliant zone for
thru hole
0.6 ± 0.05
2
4*2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
8
2
e
d
c
b
a
10 * 2 =
20
3-
25 max
1 max
0.4
2
1.6
10.8
- 0.2
20.65
- 0.2
1.7 +- 0.05
3.95
11.4
class
date
Id.-Nr.
12.25
Board hole pattern
( Component mounting side )
10 * 2 =
0.1
( 20 )
2
2 + 0.05
all holes
not plated thru
0.6
f
e
d
c
b
a
1
5*2=
2
11
± 0.02
1.5
3
( 10 )
+ 0.05
-
plated thru,
drill hole 0.7
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type C for Daughter Cards
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type C Without Shield, Without Peg
11
1
e
55
044145
55
064198
e
d
c
b
a
55
044768
e
d
c
b
a
55
064556
d
c
b
a
Type C With Shield, Without Peg
11
1
e
d
c
b
a
Type C Without Shield, With Peg
11
1
Type C With Shield, With Peg
11
1
Lower Shield For Type C
044458
194
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type C for Backplanes
2.0 mm ERmet
55 signal contacts
25 mm extension module
The ERmet type C vertical male connector provides 55 signal contacts and 22 ground shield contacts in 5+2 row x 11
position, fully loaded configuration. With 15 different standard
pin lengths to choose from, this is one of the most versatile
connectors available. The connector is designed for gas
tight pressfit installation.
The ERmet type C vertical male connector incorporates
pre-alignment guides but has no multi function cavity. This
connector is designed to be used alone or in conjunction
with either type B, L, M or N ERmet connectors, however it
can only be installed at the lower end of a connector row.
Dimensional drawings and board hole pattern
Id.-Nr.
class
date
Catalog E 074484
13.45
2
2
10 x 2 =
4x2=
20
8
compliant zone for thru hole
0.6‘0.0±0.05
1
11
z
a
b
c
d
e
f
3.7
1 max
25 max
Board hole pattern
(Component mounting side)
10 x 2 =
0.1
all holes
2
2 + 0.05
not plated thru
3
11
0.6
+ 0.05
-
plated thru
1 drill hole 0.7
±0.02
z
a
b
c
d
e
f
( 12 )
2
( 20 )
6x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3-
0.1
- 0.1
15.4
04/10
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type C for Backplanes
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type C Without Shield, With Peg
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
55
043138
55
044147
77
054546
77
053009
Type C Without Shield, With Peg
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type C With Shield, Without Peg
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Type C With Shield, With Peg
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
196
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type C for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type C Without Shield, With Peg And With Extended Terminals
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
55
054129
77
064550
77
064572
77
103926
Type C With Shield, With Peg And With Extended Terminals
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type C With Shield, With Peg And With Extended Terminals
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Type C With Shield, With Peg And With Extended Terminals
11 10 9 8 7 6 5 4 3 2 1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type C
55 signal contacts
25 mm extension module
The ERmet type C vertical female connector provides 55
contacts in a 5 row x 11 position fully loaded configuration.
Versions with optional “z” and “f” row shields are available
as well as extended terminals for use in stacking applications with rear shrouds.
Two spacer heights are also available: 3.1 mm and 9.6 mm
to provide necessary component clearance.
The ERmet type C vertical female has no multifunctional
cavity but is equipped with pre-alignment guides. The
pressfit terminals provide a convenient and reliable gas tight
connection.
This connector may be used alone or in conjunction with
either a type A or B vertical female connector, however it
can only be installed at the lower end of a connector row.
Dimensional drawings and board hole pattern
198
Anforderungsstufe
class
12.25
11.4
12
1.6
Id.-Nr.
XXXX
8
3.7 ±0.2
25 max.
4 max.
1
4x2=
1 max.
11
2
a
b
c
d
e
2
10 x 2 =
20
Lochbild für Leiterplatte
(Bestüeckungsseite)
Board hole pattern
(Component mounting side)
alle Löcher -all holes
10 x 2 =
( 20 )
0.05
2
0.6
±0.05
durchkontaktiert,
Bohrloch 0.7
±0.02
plated thru,
drill hole 0.7
±0.02
2
a
b
c
d
1
11
( 8)
e
4x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Datum
date
Catalog E 074484
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type C
2.0 mm ERmet
* Termination + Board To Board Distance
Version 5
Version Without Shield
Version 3
Version 4
9.6
3.1
15-16.5
2
15-16.5
3
18.4-20
4
18.4-20
5
25-26.5
3.7 ±0.2
13 ±0.2
Board To Board
Distance *
1
Board To Board
Version
Distance
13 ±0.2
3.7 ±0.2
3.7 ±0.2
Version 2
3.1
Version 1
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
Version 10
Version With Shield
Version 8
15-16.5
8
18.4-20
9
18.4-20
10
25-26.5
9.6
3.7 ±0.2
3.1
16 ±0.2
Distance
15-16.5
7
Board To Board
Board To Board
Distance *
6
13 ±0.2
3.7 ±0.2
13 ±0.2
16 ±0.2
3.7 ±0.2
Note: All dimensions in mm.
Version
Version 9
Version 7
3.1
Version 6
* based on contact level 1
other board to board distances for
remaining levels on request
(Please contact our Customer Service)
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type C
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type C Without Shield, Without Peg Version 1 *
XXXX
55
104704
55
114023
55
114025
55
114027
55
114029
Type C Without Shield, Without Peg Version 2 *
XXXX ERNI 114023 2
Type C Without Shield, Without Peg Version 3 *
XXXX ERNI 114025 2
Type C Without Shield, Without Peg Version 4 *
XXXX ERNI 114027 2
Type C Without Shield, Without Peg Version 5 *
XXXX ERNI 114029 2
200
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type C
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type C With Shield, Without Peg Version 6 *
55
104114
55
114024
55
114026
55
114028
55
114030
XXXX
Type C With Shield, Without Peg Version 7 *
XXXX ERNI 114024 2
Type C With Shield, Without Peg Version 8 *
XXXX ERNI 114026 2
Type C With Shield, Without Peg Version 9 *
XXXX
ERNI 114028 2
Type C With Shield, Without Peg Version 10 *
XXXX ERNI 114030 2
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type D for Daughter Cards
176 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type D female connector provides 176 signal
contacts and 44 ground shield contacts in a 8 row x 25
position (3 positions used by multifunction cavity), fully
loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with integrated upper ground return shields and without integrated
upper ground return shields.
The ERmet type D female connector has a multifunction
cavity that incorporates pre-alignment guides and accepts
optional coding keys. This connector is designed to be
used by itself or in conjunction with either a type E or F
ERmet 2mm H.M. connector.
The type D female is also available with locating and strain
relief peg that helps secure the connector to the printed
circuit board (PCB).
Dimensional drawings and board hole pattern
- assemble
25
15
11
1
202
7*2=
2
Compliant zone for
thru hole 0.6 ±0.05
2
10 * 2 =
20
8
10 * 2 =
20
3-
50 max.
0.4
- 0.2
10.8
- 0.2
22.95
10.5
5
1.7 +- 0.05
1 max.
7*1.5=
1 max.
3
Id.-Nr.
class
17.4
date
18.25
Board hole pattern
( Component mounting side )
4
10 * 2 = ( 20 )
0.6 +- 0.05
0.05
all holes
10 * 2 =
( 20 )
2
2 + 0.05
not plated thru
± 0.02
1.5
( 10.5 )
z/y
h
g
f
e
d
c
b
a
25
15
13
11
1.5
1.75
plated thru,
drill hole 0.7
4
1
7 * 1.5 =
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
14
2
h
g
f
e
d
c
b
a
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Seite 203
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type D for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type D Without Shield, With Peg
25
15
11
1
h
g
f
e
d
c
b
a
176
104086
176
104935
176
104415
Type D With Shield, Without Peg
25
15
11
1
h
g
f
e
d
c
b
a
Type D With Upper Shield, With Peg
25
15
11
1
h
g
f
e
d
c
b
a
Lower Shield For Type D And DE
103847
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type D for Backplanes
176 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type D vertical male connector provides up to
176 signal contacts and 44 ground shield contacts in 8+2
row x 25 position (3 positions used by multifunction cavity),
fully loaded configuration. With 15 different standard pin
lengths to choose from, this is one of the most versatile
connectors available. The connector is designed for gas
tight pressfit installation.
The ERmet type D male connector has a multifunction
cavity that incorporates pre-alignment guides and accepts
optional coding keys. This connector is designed to be
used alone or in conjunction with either type E, DE or F
ERmet 2mm H.M. connectors.
Dimensional drawings and board hole pattern
date
204
2
10x2= 20
8
2
10x2= 20
9x2=
compliant zone for thru hole
0.6‘0.0±0.05
15
25
11
18
1
z
a
b
c
d
e
f
g
h
y
1 max
1 max
50 max
Board hole pattern
(Component mounting side)
Lochbild fuer Leiterplatte
(Bestueckungsseite)
4
10 x 2 = ( 20 )
0.6 +- 0.05
0.05
all holes
plated thru
drill hole 0.7
4
10 x 2 =
( 20 )
2
2 + 0.05
not plated thru
±0.02
( 18 )
z
a
b
c
d
e
f
g
h
y
2
9x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3-
0.1
21.4
- 0.1
Id.-Nr.
13.45
class
25
15
13
11
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Connectors Type D for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type D With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
220
104152
220
104517
220
933008
Type D With Peg
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Type D With Peg and Extended Terminals
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type D
176 signal contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type D vertical female connector provides 176
signal contacts in a 8 row x 25 position (3 positions used by
multifunction cavity), fully loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with and
without integrated ground return shields.
The ERmet type D vertical female connector has a multifunction cavity that incorporates pre-alignment guides and
accepts optional coding keys. This connector is designed to
be used by itself or in conjunction with either a type E or F
ERmet 2mm H.M. connector.
Dimensional drawings and board hole pattern
18.25
Id.-Nr.
Anforderungsstufe
class
17.4
206
124093
12
ERNI
2
50 max.
1 max.
0.6
3
1
11
3.7 ±0.2
XXXX
1 max.
15
25
a
14
b
2
c
7x2=
d
e
f
g
h
2
3.65
10 x 2 =
20
8
Lochbild für Leiterplatte
(Bestückungsseite)
10 x 2 =
0.6
20
Board hole pattern
(Component mounting side)
8
( 20 )
2
10 x 2 =
10 x 2 =
alle Löcher
( 20 )
-all holes
0.05
±0.05
2
durchkontaktiert,
Bohrloch 0.7
±0.02
plated thru,
drill hole 0.7
±0.02
( 14)
a
b
c
e
f
g
7x2=
d
2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3
Datum
date
h
1
11
15
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2.0 mm ERmet Hard Metric Connector System
Vertical Female Connectors Type D
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type D Without Shield, Without Peg
XXXX
ERNI
124093
176
124093
176
124094
2
Type D With Shield, Without Peg
1 XXXX
ERNI
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Seite 208
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type E for Daughter Cards
200 signal contacts
50 mm without multifunction block
The ERmet type E female connector provides 200 signal
contacts and 50 ground shield contacts in a 8 row x 25
position fully loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with integrated upper ground return shields and without integrated
upper ground return shields.
The ERmet type E female connector has an uninterrupted
pin field with no multifunction cavity. This connector is not
designed to be used alone, but is intended to be used in
conjunction with either a type D, DE or F ERmet 2mm H.M.
connector.
Dimensional drawings and board hole pattern
25
1
208
Compliant zone for
thru hole 0.6 ±0.05
2
24 * 2 =
48
3-
50 max.
0.4
- 0.2
10.8
- 0.2
22.95
10.5
5
1.7 +- 0.05
1 max.
7*1.5=
1 max.
Id.-Nr.
class
17.4
date
Board hole pattern
( Component mounting side )
24 * 2 =
0.05
0.6
all holes
( 48 )
+ 0.05
-
2
± 0.02
z/y
h
g
f
e
d
c
b
a
1
1.5
( 10.5 )
25
1.5
1.75
plated thru,
drill hole 0.7
7 * 1.5 =
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
7*2=
14
2
h
g
f
e
d
c
b
a
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Seite 209
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type E for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type E Without Shield, Without Peg
25
1
h
g
f
e
d
c
b
a
200
104087
200
104416
Type E With Upper Shield, Without Peg
25
1
h
g
f
e
d
c
b
a
Lower Shield For Type E
103849
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Conneactors Type E for Backplanes
200 signal contacts
50 mm without multifunction block
The ERmet type E vertical male connector provides 200
signal contacts and 50 ground shield contacts in an 8+2
row x 25 position fully loaded configuration. This connector
is also available in an 8+2 row x 22 positions and 8+2
row x 19 positions. With 15 different standard pin lengths to
choose from, this is one of the most versatile connectors
available. The connector is designed for gas tight pressfit
installation.
The ERmet type E vertical male connector has an uninterrupted pin field with no multifunction cavity. This connector
is not designed to be used alone, but is intended to be
used in conjunction with either type D, DE or F ERmet 2mm
H.M. connectors.
Dimensional drawings and board hole pattern
date
210
2
24 x 2 =
2
48
9x2=
compliant zone for thru hole
0.6‘0.0±0.05
18
1
25
z
a
b
c
d
e
f
g
h
y
1 max
1 max
50 max
Board hole pattern
(Component mounting side)
24 x 2 =
0.05
all holes
0.6
+ 0.05
-
48
plated thru
drill hole 0.7
2
±0.02
( 18 )
z
a
b
c
d
e
f
g
h
y
2
9x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3-
0.1
21.4
- 0.1
Id.-Nr.
13.45
class
25
1
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Seite 211
2.0 mm ERmet Hard Metric Connector System
Verticale Male Conneactors Type E for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type E Without Peg
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
200
104518
250
104153
250
933007
Type E Without Peg
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Type E Without Peg, With Extended Terminals
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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211
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2.0 mm ERmet Hard Metric Connector System
Verticale Female Connectors Type E
200 signal contacts
50 mm without multifunction block
The ERmet type E vertical female connector provides 200
signal contacts in a 8 row x 25 position fully loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with and
without integrated ground return shields.
The ERmet type E vertical female connector has an uninterrupted pin field with no multifunction cavity. This connector
is not designed to be used alone, but is intended to be
used in conjunction with either a type D or F ERmet 2mm
H.M. connector.
Dimensional drawings and board hole pattern
212
Anforderungsstufe
class
124095
12
ERNI
17.4
2
50 max.
1 max.
0.6
3.7 ±0.2
XXXX
Id.-Nr.
1 max.
1
25
a
14
b
2
c
7x2=
d
e
f
g
h
2
24 x 2 =
Lochbild für Leiterplatte
(Bestückungsseite)
24 x 2 =
0.6
48
Board hole pattern
(Component mounting side)
alle Löcher
( 48 )
-all holes
0.05
±0.05
2
durchkontaktiert,
Bohrloch 0.7 ±0.02
plated thru,
drill hole 0.7
±0.02
(14)
a
b
c
e
f
g
7x2=
d
2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Datum
date
h
1
25
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2.0 mm ERmet Hard Metric Connector System
Verticale Female Connectors Type E
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type E Without Shield, Without Peg
XXXX
ERNI
124095
2
200
124095
200
124096
Type E With Shield, Without Peg
1 XXXX
ERNI
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Seite 214
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type DE for Daughter Cards
200 signal contacts
50 mm without multifunction block
The ERmet type DE female connector provides 200 signal
contacts and 25 ground shield contacts in an 8 row x 25
position fully loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with integrated upper ground return shields and without integrated
upper ground return shields.
The ERmet type DE female connector has an uninterrupted
pin field and integral pre-alignment guide. This connector
can be used alone or in conjunction with type D, E or F
ERmet 2mm H.M. connector.
Dimensional drawings and board hole pattern
25
1
2
h
14
g
f
214
d
c
b
a
EE-Zone für
durchkontaktierte
2
24 x 2 =
±0.05
Löcher Ø 0.6
Compliant zone for
48
thru hole Ø 0.6
±0.05
3 -0.4
50 max.
1 max.
10.5
3
10.8 -0.2
22.95
-0.2
1.7 ±0.05
5
7x1.5=
1 max.
Anforderungsstufe
class
Id.-Nr.
Datum
date
17.4
19.85
24 x 2 =
0.05
0.6
alle Löcher
all holes
(48 )
±0.05
2
durchkontaktiert,
Bohrloch 0.7 ±0.02
±0.02
1.5
h
g
f
e
d
c
b
a
25
1.5
plated thru,
drill hole 0.7
7 x 1.5 = ( 10.5)
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
7x2=
e
1
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Seite 215
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type DE for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type DE Without Shield, Without Peg
25
1
h
g
f
e
200
114281
200
124118
d
c
b
a
Type DE With Shield, Without Peg
25
1
h
g
f
e
d
c
b
a
Lower Shield For Type D And DE
103847
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Seite 216
2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type DE for Backplanes
200 signal contacts
50 mm without multifunction block
The ERmet type DE vertical male connector provides 200
signal contacts and 44 ground shield contacts in a 8+2 row
x 25 position fully loaded configuration. With 15 different
standard pin lengths to choose from, this is one of the most
versatile connectors available. The connector is designed
for gas tight pressfit installation.
The ERmet type DE vertical male connector has an uninterrupted pin field with pre-alignment guides but does not
accept coding keys. This connector can be used alone, or it
can be used with either type D or F ERmet connectors.
Dimensional drawings and board hole pattern
-0.1
3 -0.1
ERNI
114279
2
2
2
24 x 2 =
48
9x2=
18
EE-Zone für durchkontaktierte
Löcher Ø0.6±0.05
compliant zone for thru hole
Ø0.6±0.05
25
1
z
a
b
c
d
e
f
g
h
y
1max
1max
50 max
Lochbild fuer Leiterplatte
(Bestueckungsseite)
Board hole pattern
(Component mounting side)
24 x 2 =
0.05
alle Loecher
all holes
0.6
±0.05
durchkontaktiert
Bohrloch 0.7
plated thru
drill hole 0.7
( 48 )
2
±0.02
±0.02
z
a
(18 )
b
c
d
9x2=
e
f
g
h
y
2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
21.4
date
XXXX
216
Datum
Id.-Nr.
13.45
Anforderungsstufe
class
25
1
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Seite 217
2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type DE for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type DE Without Peg
25
24
23
22
21
20
19
18
17
16
15
14
13
12 11
10
9
8
7
6
5
4
3
2
1
z
a
b
c
d
244
114279
200
124335
e
f
g
h
y
Type DE Without Peg
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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217
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Seite 218
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type F for Daughter Cards
88 signal contacts
25 mm extension module
The ERmet type F female connector provides 88 signal
contacts and 22 ground shield contacts in an 8 row x 11
position fully loaded configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with and
without integrated ground return shields.
The ERmet type F female connector has integral pre-alignment guides but no multifunction cavity.
The type F female is also available with optional locating
and strain relief pegs that help secure the connector to the
printed circuit board (PCB). This connector is designed to
be used alone or with either type D, DE or E ERmet connectors, however it can only be installed at the lower end of
a connector field.
Dimensional drawings and board hole pattern
11
1
218
7*2=
Compliant zone for
thru hole 0.6 –0.05
2
10 * 2 =
20
3-
25 max.
- 0.2
1.6
10.5
10.8
- 0.2
22.95
0.4
5
1.7 +- 0.05
1 max.
7*1.5=
3.95
Id.-Nr.
class
17.4
date
18.25
Board hole pattern
( Component mounting side )
10 x 2 =
0.05
( 20 )
2
2 + 0.05
all holes
not plated thru
0.6
3
+ 0.05
-
± 0.02
1.5
( 10.5 )
z/y
h
g
f
e
d
c
b
a
11
1.5
1.75
plated thru,
drill hole 0.7
1
7 x 1.5 =
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
14
2
h
g
f
e
d
c
b
a
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Seite 219
2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type F for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type F Without Shield, With Peg
11
1
h
g
f
e
d
c
b
a
88
104088
88
104417
Type F With Shield, With Peg
11
1
h
g
f
e
d
c
b
a
Lower Shield For Type F
103851
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2.0 mm ERme Hard Metric Connector System
Verticale Male Connectors Type F for Backplanes
88 signal contacts
25 mm extension module
The ERmet type F vertical male connector provides 88 signal contacts and 22 ground shield contacts in a 8+2 row x
11, fully loaded configuration. With 15 different standard
pin lengths to choose from, this is one of the most versatile
connectors available. The connector is designed for gas
tight pressfit installation.
The ERmet type F vertical male connector incorporates
pre-alignment guides but has no multifunction cavity. This
connector is designed to be used alone. The type F connector can also be used in conjunction with either a type D,
E, or DE ERmet connector, however, it can only be installed
at the lower end of a connector row.
Dimensional drawings and board hole pattern
0.1
3-
13.45
2
10 x 2 =
20
9x2=
compliant zone for thru hole
0.6‘0.0±0.0
11
18
1
z
a
b
c
d
e
f
g
h
y
3.7
1 max
25 max
Board hole pattern
(Component mounting side)
10 x 2 =
0.05
all holes
( 20 )
2
2 + 0.05
not plated thru
3
0.6
+ 0.05
-
plated thru
drill hole 0.7
±0.02
( 18 )
z
a
b
c
d
e
f
g
h
y
2
9x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
220
2
- 0.1
21.4
date
Id.-Nr.
class
11
1
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Seite 221
2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type F for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type F With Peg
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
88
104519
110
104154
110
933006
Type F With Peg
11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Type F With Peg And Extended Terminals
Bestueckungsplan 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
g
h
y
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
Catalog E 074484
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Edition 9
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221
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Seite 222
2.0 mm ERmet Hard Metric Connector System
Verticale Female Connectors Type F
88 signal contacts
25 mm extension module
The ERmet type F vertical female connector provides 88
signal contacts and in an 8 row x 11 position fully loaded
configuration.
The connector provides for a gas tight, pressfit installation
and is designed for two different configurations: with and
without integrated ground return shields.
The ERmet type F vertical female connector has integral
pre-alignment guides but no multifunction cavity. This connector is designed to be used alone or with either type D or
E ERmet connectors, however it can only be installed at the
lower end of a connector field.
Dimensional drawings and board hole pattern
222
Anforderungsstufe
class
XXXX ERNI 124097 2
17.4
3.7 ±0.2
25 max.
1 max.
18.25
12
1.6
Id.-Nr.
4 max.
1
11
2
a
14
b
c
7x2=
d
e
f
g
h
2
10 x 2 =
20
Lochbild für Leiterplatte
(Bestückungsseite)
10 x 2 =
Board hole pattern
(Component mounting side)
alle Löcher
( 20 )
-all holes
0.05
2
0.6
±0.05
durchkontaktiert,
Bohrloch 0.7 ±0.02
plated thru,
drill hole 0.7
±0.02
( 14)
a
b
c
2
d
e
f
g
7x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Datum
date
h
1
11
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2.0 mm ERmet Hard Metric Connector System
Verticale Female Connectors Type F
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type F Without Shield, Without Peg
XXXX ERNI 124097 2
88
124097
88
124098
Type F With Shield, Without Peg
XXXX ERNI 124098 2
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type L for Daughter Cards
6 special contacts
50 mm with multifunction block (for positioning and coding)
The ERmet type L female is an insulator that provides up to
6 contact positions for special power or coax contacts in a
fully loaded configuration.
The ERmet type L female connector has a multifunction
cavity that incorporates pre-alignment guides and accepts
optional coding keys. This connector is designed to be
used alone or in conjunction with either a type B, C, M or N
ERmet connector.
The type L female is also available with a locating and strain
relief peg that helps secure the connector to the printed circuit board (PCB).
Dimensional drawings and board hole pattern
2 * 7.5 =
15
12.5
2 * 7.5 =
7.5
15
7.5
3.75 max
224
3.7
12.8
- 0.2
20.65
- 0.2
3.7
+ 0.05
-
50 max
3.2
Id.-Nr.
11.4
datum
12.25
Board hole pattern
( Component mounting side )
for free wiring
7.5
7.5
6.25
6.25
7.5
- all holes
7.5
0.1
2.5
2 + 0.1
not plated thru
2
2.5
2.5
2.5
3.5
6.
24
20
16
13
10
6
2
1.3 + 0.1
plated thru
Board hole pattern
( Component mounting side )
for press - fitting
8
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
4.8
3.75 max
24
20
16
13
10
6
2
3.5 -+ 0.04
0.06
plated thru
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type L for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type L with 6 cavities for special contacts
044579
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type L for Backplanes
6 special contacts
50 mm with multifunction block
The ERmet type L male connector is an insulation body that
could be loaded with up to 6 special power or coax contacts in a fully loaded configuration. The ERmet type L male
connector has a multifunction cavity that incorporates prealignment guides and accepts optional coding keys. This
connector is designed to be used alone or in conjunction
with either a type B, C, M, or N ERmet connector.
The type L male is available with a locating peg that helps
secure the connector to the printed circuit board (PCB).
Dimensional drawings and board hole pattern
0.1
3-
13.45
4.8
5.35
2 x 7.5 =
15
12.5
2 x 7.5 =
15
7.5
z
2
d
f
3.75 max
3.75 max
50 max
Board hole pattern
(Component mounting side)
for free wiring
7.5
7.5
6.25
all holes
7.5
6.25
7.5
0.1
6.1 min - not plated thru
5.9 +0.2 -
2 + 0.05
plated thru
5.5
3.75
24
20
16
13
10
6
2
4.5
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
226
- 0.1
15.4
date
Id.-Nr.
Cavaties optional for
an additional fixation
Board hole pattern
(Component mounting side)
for press fitting
0.04
3.5 -+ 0.06
plated thru
24
20
16
10
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2
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type L for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type L with 6 cavities for special contacts
z
104146
d
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type M for Daughter Cards
The ERmet type M female connector provides 55 contacts
in a 5 row x 11 position (3 positions used by multifunction
cavity), and also 3 contact positions for special power or
coax contacts in a fully loaded configuration.
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with and
without integrated upper ground return shields. Lower
ground return shields are also available separately.
The ERmet type M female connector has a multifunction
cavity that incorporates pre-alignment guides and accepts
optional coding keys. This connector can be used alone or
in conjunction with either a type A, B, C, L, or N ERmet
connector.
The type M female is also available with a center pair of
locating and strain relief pegs that help secure the connector to the printed circuit board (PCB).
3 special and 55 signal contacts
50 mm with multifunction block
228
15
8
2
4*2=
e
d
c
b
a
10 * 2 =
7.5
20
2 * 7.5 =
3.75 max
15
Compliant zone for
thru hole
0.6 ± 0.05
50 max
3-
0.4
2
10.8
- 0.2
20.65
- 0.2
1.7 +- 0.05
1 max
11.4
3.2
Id.-Nr.
class
date
12.25
Board hole pattern
( Component mounting side )
for solder termination
all holes
6.25
4
10 * 2 = ( 20 )
0.6 +- 0.05
0.1
7.5
7.5
2
1.5
2
± 0.02
all holes
2.5
2.5
not plated thru
2.5
plated thru,
drill hole 0.7
0.1
2.5
2 + 0.1
2
f
e
d
c
b
a
( 10 )
25
15
13
10
6
2
1.3 + 0.1
plated thru
5*2=
Board hole pattern
( Component mounting side )
for high current contacts
with press-fit termination
8
f
e
d
c
b
a
25
15
13
10
6
2
0.04
3.5 -+ 0.06
plated thru
2
Board hole pattern
( Component mounting side )
for coax contacts
with press-fit termination
2.5
2
2
2
f
e
d
c
b
a
8
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
2
25
4.8
Dimensional drawings and board hole pattern
25
15
13
10
6
2
0.09
1 -+ 0.06
plated thru
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type M for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type M With 3 Cavities For Special Contacts
25
15
e
d
c
b
a
55-3
053792
55-3
103804
Type M With 3 Cavities For Special Contacts With
Upper Shield With Peg
25
15
e
d
c
b
a
Lower Shield For Type M
054354
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type M for Backplanes
The ERmet male connector type M provides a maximum of
77 contacts in 7 rows by 11 positions. The two outer rows,
z and f are for the shielding contacts of the male connector,
along with 3 contact positions for special power or coax
contacts. This type contains a multifunction cavity for coding and pre-alignment in the center position. This connector
is designed to be used alone or in conjunction with either a
type B, C, L, or N ERmet connector.
The type M male is available with a locating peg that helps
secure the connector to the printed circuit board (PCB).
3 special and 55 signal contacts
50 mm with multifunction block
Dimensional drawings and board hole pattern
15.4
date
230
2
13.45
2
10 x 2 =
20
4x2=
8
compliant zone for thru hole
0.6‘0.0±0.05
25
15
z
a
b
c
d
e
f
1 max
3.75 max
50 max
Board hole pattern
(Component mounting side)
all holes
10 x 2 =
0.1
0.6
plated thru
drill hole 0.7
7.5
all holes
7.5
+ 0.05
-
0.1
6.1 min - not plated thru
5.9 +0.2 - plated thru
3.75
2
+ 0.05
±0.02
5.5
z
a
b
c
d
e
f
25
15
13
10
6
2
4.5
2
( 12 )
6.25
4
( 20 )
2
6x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
3-
0.1
Id.-Nr.
- 0.1
class
Cavaties optional for
an additioal fixation
Board hole pattern
(Component mounting side)
for press-fitting
3.5 +- 0.04
0.06
plated thru
25
15
13
10
6
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2
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type M for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type M With 3 Cavities For Special Contacts
25 24 23 22 21 20 19 18 17 16 15
13
10
6
2
z
a
b
77-3
054087
55-3
064671
c
d
e
f
Type M With 3 Cavities For Special Contacts
25 24 23 22 21 20 19 18 17 16 15
13
10
6
2
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type N for Daughter Cards
3 cavities for special contacts
25 mm extension module
The ERmet female connector type N is a connector housing
with 3 contact positions for special power or coax contacts.
The type N female is available with a locating and strain
relief peg that helps secure the connector to the printed circuit board (PCB).
Dimensional drawings and board hole pattern
2 * 7.5 =
15
7.5
max
3.75 max
232
3.7
12.8
- 0.2
20.65
- 0.2
3.7
+ 0.05
-
25 max
1.6
11.4
12.25
Id.-Nr.
date
Board hole pattern
( Component mounting side )
for free wiring
5.25
7.5
all holes
7.5
0.1
2.5
2 + 0.1
not plated thru
2
2.5
2.5
2.5
3.5
6.
10
6
2
1.3 + 0.1
plated thru
Board hole pattern
( Component mounting side )
for press - fitting
8
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
4.
6.25
10
6
2
0.04
3.5 -+ 0.06
plated thru
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Connectors Type N for Daughter Cards
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Type N With 3 Cavities For Special Contacts
044581
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type N for Backplanes
3 cavities for special contacts
25 mm extension module
The ERmet type N male connector is a connector housing
with 3 contact positions for special coax or high power contacts.
The type N male is available with a locating and strain relief
peg that helps secure the connector to the printed circuit
board (PCB).
Dimensional drawings and board hole pattern
0.1
34.8
5.35
2 x 7.5 =
15
7.5
z
2
d
f
max
3.75 max
25 max
Board hole pattern
(Component mounting side)
for free wiring
5.25
7.5
all holes
7.5
0.1
3.75
2 + 0.05
6.1 min not plated thru
5.9 + 0.2 plated thru
5.5
6.25
10
6
2
4.5
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
234
- 0.1
15.4
Datum
13.45
Id.-Nr.
Cavaties optional for
an additional fixation
Board hole pattern
(Component mounting side)
for press-fitting
0.04
3.5 -+ 0.06
plated thru
10
6
2
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2.0 mm ERmet Hard Metric Connector System
Verticale Male Connectors Type N for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
3 cavities for special contacts
z
104147
d
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type A for Backplanes
The ERmet shroud type A is possible for a maximum of 175
contacts in 7 rows by 25 positions. The two outer rows, z
and f are for the shielding contacts of the female connector.
This type contains a multifunction block for coding and prealignment which uses 3 positions.
For CompactPCI applications the shroud type A is used on
the position rP1 and rP4.
Dimensional drawings
14.8
H
3.9
14.35
11.6
49.9
2
3.15
2
10 x 2 =
Note: All dimensions in mm.
H
236
20
8
6x2=
12
3.8
2
10 x 2 =
20
Ident-Nr. / Part No.
14.35
114436
14.95
054795
15.75
054794
16.55
054793
Catalog E 074484
Sammelzeichnung
Combination Drawing
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type A for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
Type A Shroud 25 Positions
rP1, rP4
114436
rP1, rP4
054795
rP1, rP4
054794
rP1, rP4
054793
Height 14.95
Type A Shroud 25 Positions
Height 15.75
Type A Shroud 25 Positions
04/10
Part Number
Height 14.35
Type A Shroud 25 Positions
Catalog E 074484
No. of
Pins
Height 16.55
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type A for Backplanes
Ordering Information
Configuration
Type A Shroud 19 Positions
Used For
No. of
Pins
Part Number
Height 14.35
124312
Type A Shroud 19 Positions
Height 14.95
923109
Type A Shroud 19 Positions
Height 15.75
923108
Type A Shroud 19 Positions
Height 16.55
923107
238
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type B for Backplanes
2.0 mm ERmet
The ERmet™ shroud type B is possible for a maximum of
175 contacts in 7 rows by 25 positions. The two outer
rows, z and f are for the shielding contacts of the female
connector. For this type , without multifuntion block for
coding and pre-alignment, we recommend use only in combination with types A or C.
Dimensional drawings
14.8
H
3.9
14.35
11.6
2
6x2=
12
49.9
2
24 x 2 =
Note: All dimensions in mm.
H
Catalog E 074484
Ident-Nr. / Part No.
14.35
114437
14.95
054797
15.75
054798
16.55
054799
04/10
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Combination Drawing
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type B for Backplanes
Ordering Information
Configuration
Type B Shroud 25 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114437
Type B Shroud 25 Positions
Height 14.95
054797
Type B Shroud 25 Positions
Height 15.75
054798
Type B Shroud 25 Positions
Height 16.55
054799
240
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type B for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
Height 14.35
Type B Shroud 22 Positions
a
114619
Type B Shroud 22 Positions
Height 14.95
a
064692
Type B Shroud 22 Positions
Height 15.75
a
064693
Type B Shroud 22 Positions
Height 16.55
a
064694
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type B for Backplanes
Ordering Information
Configuration
Type B Shroud 19 Positions
Used For
No. of
Pins
Part Number
Height 14.35
a
114618
Type B Shroud 19 Positions
Height 14.95
a
064622
Type B Shroud 19 Positions
Height 15.75
a
064623
Type B Shroud 19 Positions
Height 16.55
a
064624
242
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type C for Backplanes
2.0 mm ERmet
The ERmet shroud type C is possible for a maximum of 77
contacts in 7 rows by 11 positions with the length of 25
mm. The two outer rows, z and f are for the shielding contacts of the female connector.
Dimensional drawings
14.8
H
3.9
14.35
11.6
2
6x2=
12
24.55
2
10 x 2 =
Note: All dimensions in mm.
H
Catalog E 074484
Ident-Nr. / Part No.
14.35
114438
14.95
064172
15.75
064171
Sammelzeichnung
064170
Combination Drawing
16.55
04/10
20
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type C for Backplanes
Ordering Information
Configuration
Type C Shroud 11 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114438
Type C Shroud 11 Positions
Height 14.95
064172
Type C Shroud 11 Positions
Height 15.75
064171
Type C Shroud 11 Positions
Height 16.55
064170
244
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type AB for Backplanes
2.0 mm ERmet
The ERmet shroud type AB is possible for a maximum of
169 contacts in 7 rows by 25 positions. The two outer
rows, z and f are for the shielding contacts of the female
connector. This type has pre-alignment flanges but no multifunction block for coding.
The male shroud type AB, is also available in a smaller version for planned CompactPCI applications, it is used at the
locations rP2 and rP5 with 154, respectively,110 contacts at
22 positions and on location rP3 with 133 respectively, 95
contacts at 19 positions.
Dimensional drawings
H
3.9
14.35
11.6
14.8
2
6x2=
15.4
12
43.9
2
21 x 2 =
Note: All dimensions in mm.
H
Catalog E 074484
Ident-Nr. / Part No.
14.35
114425
14.95
114426
15.75
114427
16.55
114428
04/10
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Combination Drawing
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type AB for Backplanes
Ordering Information
Configuration
Type AB Shroud 25 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114482
Type AB Shroud 25 Positions
Height 14.95
114483
Type AB Shroud 25 Positions
Height 15.75
114484
Type AB Shroud 25 Positions
Height 16.55
114485
246
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type AB for Backplanes
2.0 mm ERmet
Ordering Information
Configuration
Used For
Type AB Shroud 22 Positions
rP2, rP5
114425
rP2, rP5
114426
rP2, rP5
114427
rP2, rP5
114428
Height 14.95
Type AB Shroud 22 Positions
Height 15.75
Type AB Shroud 22 Positions
04/10
Part Number
Height 14.35
Type AB Shroud 22 Positions
Catalog E 074484
No. of
Pins
Height 16.55
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type AB for Backplanes
Ordering Information
Configuration
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
248
Used For
No. of
Pins
Part Number
Height 14.35
rP3
114487
rP3
114488
rP3
114489
rP3
114490
Height 14.95
Height 15.75
Height 16.55
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type D for Backplanes
2.0 mm ERmet
The ERmet shroud type D is possible for a maximum of 220
contacts in 10 rows by 25 positions with the length of 50
mm. The two outer rows, z and y are for the shielding contacts of the female connector. This type contains a multifunction block for coding and pre-alignment which uses 3
positions
Dimensional drawings
20,8
14,35
3,9
H
17,6
49,9
10 x 2 =
20
8
10 x 2 =
20
2
2
9x2=
18
2
Note: All dimensions in mm.
H
Ident-Nr. / Part No.
14.35
114467
14.95
114468
15.75
114469
16.55
114470
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type D for Backplanes
Ordering Information
Configuration
Type D Shroud 25 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114467
Type D Shroud 25 Positions
Height 14.95
114468
Type D Shroud 25 Positions
Height 15.75
114469
Type D Shroud 25 Positions
Height 16.55
114470
250
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type E for Backplanes
2.0 mm ERmet
The ERmet shroud type E is possible for a maximum of 220
contacts in 10 rows by 25 positions with the length of 50
mm. The two outer rows, z and y are for the shielding contacts of the female connector. For this type; without multifunction block for coding and pre-alignment, we recommend use only in combination with types D or F.
Dimensional drawings
20,8
14,35
3,9
H
17,6
49,9
24 x 2 =
48
2
9x2=
18
2
Note: All dimensions in mm.
H
Ident-Nr. / Part No.
14.35
114472
14.95
114473
15.75
114474
16.55
114475
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type E for Backplanes
Ordering Information
Configuration
Type E Shroud 25 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114472
Type E Shroud 25 Positions
Height 14.95
114473
Type E Shroud 25 Positions
Height 15.75
114474
Type E Shroud 25 Positions
Height 16.55
114475
252
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type F for Backplanes
2.0 mm ERmet
The ERmet shroud type F is possible for a maximum of 110
contacts in 10 rows by 11 positions with the length of 25
mm. The two outer rows, z and y are for the shielding contacts of the female connector.
Dimensional drawings
20,8
14,35
3,9
H
17,6
24,55
10 x 2 =
20
2
9x2=
18
2
Note: All dimensions in mm.
H
Ident-Nr. / Part No.
14.35
114477
14.95
114478
15.75
114479
16.55
114480
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2.0 mm ERmet Hard Metric Connector System
Shrouds Type F for Backplanes
Ordering Information
Configuration
Type F Shroud 11 Positions
Used For
No. of
Pins
Part Number
Height 14.35
114477
Type F Shroud 11 Positions
Height 14.95
114478
Type F Shroud 11 Positions
Height 15.75
114479
Type F Shroud 11 Positions
Height 16.55
114480
254
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Monoblock Modules
2.0 mm ERmet
220 signal contacts
94 mm with multifunction block
The ERmet™ female monoblock connector integrates the
type A and the type B modules into one single piece. The
monoblock provides a maximum of 220 contacts in 5 rows
by 44 positions. The monoblock has integrated pre-centering and as an option integrated coding, acc. to PICMG
Spec. for 3.3V or 5.0V, which requires 3 positions. For
applications requiring the use of shielding, the female connector is supplied with a with an upper shield. Lower shield
may be ordered separately. The monoblock has been
designed especially for CompactPCI applications for the
positions P1/P2 and for the positions P4/P5. The
monoblock has a length of 94mm (3U) and can also be
used for other applications in 19" rack systems.
Dimensional drawings
47
1
e
d
2
c
b
EE-Zone für
durchkontaktierte
Löcher Ø 0.6 ± 0.05
4x2=
2
10 x 2 =
20
8
32 x 2 =
Compliant zone for
thru hole
Ø 0.6 ± 0.05
64
3 -0.4
Abschirmbleche - shieldings
2
1.7 ±0.05
max.
XXXX
94
ERNI
104732
2
1
10.8 -0.2
21
47
3
11.4
Id.-Nr.
Anforderungsstufe
Datum
class
Lochbild für Leiterplatte
(Bestückungsseite)
10 x 2 =
0.1
0.6
alle Löcher
all holes
12.25
date
( 20 )
8
Board hole pattern
(Component mounting side)
32 x 2 =
(64 )
±0.05
2
durchkontaktiert,
Bohrloch 0.7 ± 0.02
plated thru,
drill hole 0.7
± 0.02
f
d
c
1.5
e
b
2
( 10)
a
1
47
5x2=
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
8
a
2
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2.0 mm ERmet Hard Metric Connector System
Right Angle Female Monoblock Modules
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
J4/J5
308
104732
J4/J5
308
104733
J4/J5
308
104734
Monoblock With Shield, Without Peg
47
1
e
d
c
b
a
Monoblock With Shield, Without Peg, With Cadmium Yellow Coding Key
47
1
e
d
c
b
a
Monoblock With Shield, Without Peg, With Brillant Blue Coding Key
47
1
e
d
c
b
a
256
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Monoblock Modules
2.0 mm ERmet
220 signal contacts
94 mm with multifunction block
The ERmet™ vertical male monoblock connector integrates
the type A and the type B in one single piece. The
monoblock provides a maximum of 308 contacts in 7 rows
by 44 positions. The two outer rows, z and f are for the
shielding contacts of the female connector. The monoblock
has integrated pre-centering and as option integrated coding acc. to PICMG Spec. for 3.3V or 5.0V, which requires 3
positions. The monoblock has been designed especially for
CompactPCI applications. Available are versions with standard pin length for the positions P1 and P2 and versions
with extended terminals for rear I/O for the positions P4 and
P5. The monoblock has a length of 94mm (3U) and can
also be used for other applications in 19" rack systems.
Dimensional drawings
15,4
3 -0,1
2
2
2
10 x 2 =
20
8
32 x 2 =
13,45 -0,1
2
104735
ERNI
64
6x2=
12
EE Zone fuer durchkontaktierte
Loecher Ø0.6 ±0.05
compliant zone for thru hole
Ø 0.6±0.05
47
37
33
1
z
a
b
c
d
e
f
1 max
1 max
94
Lochbild für Leiterplatte
Bord hole pattern
(Component mounting side)
(Bestückungsseite)
10 x 2 =
0,6
plated thru
drill hole
0.7 ±0.02
max
4
(20 )
4
32 x 2 =
(64 )
+0,05
0,05
2
nicht durchkontaktiert
2
not plated thru
durchkontaktiert
Bohrloch 0.7±0.02
(12)
z
a
6x2=
b
c
d
e
2
Note: The numbering on the connectors themselves is in accordance with the IEC 61076-4-101 standard. All dimensions in mm.
Datum
date
Id.-Nr.
XXXX
Anforderungsstufe
class
Catalog E 074484
f
37
47
04/10
33
1
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2.0 mm ERmet Hard Metric Connector System
Vertical Male Monoblock Modules
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
P1/P2
308
104735
P1/P2
308
104736
P1/P2
308
104737
P1 Per PICMG
2.0 R 2.1
P2
308
104765
P1 Per PICMG
2.0 R 2.1
P2
308
104766
Monoblock With Peg, With Shield
47 46 45 44 43 42 41 40 39 38 37
33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Monoblock With Shield, Without Peg, With Cadmium Yellow Coding Key
47 46 45 44 43 42 41 40 39 38 37
33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Monoblock With Shield, Without Peg, With Brillant Blue Coding Key
47 46 45 44 43 42 41 40 39 38 37
33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Monoblock With Peg, With Shield And With Extended Terminals
47 46 45 44 43 42 41 40 39 38 37
33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Monoblock With Peg, With Shield And With Extended Terminals
47 46 45 44 43 42 41 40 39 38 37
33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
z
a
b
c
d
e
f
Contact versions
ERNI can accommodate any pattern of male connector
contact loading.
For shield rows z and f (7 row connectors) or z and y (10
row connectors), level 3 contacts should be specified. For
rear I/O and shrouds, choose contacts with the R1, R2 or
R3 terminal length. Each contact has a unique letter designation. Use this letter designation when filling in the contact
loading requirements on the ERNI Customer Request Form.
258
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2.0 mm ERmet Hard Metric Connector System
Dust Covers For Type A, B, AB, D, E and DE
2.0 mm ERmet
The dust and protection cover for the male connectors for
the ERmet™ 2.0 mm connector system acc. to IEC 610764-101 protect the mating area at the frontside of the backplane and what is more important the transfer area on the
rearside of the backplane against damage of the contacts.
They are also a protection for transportation and against
dust. The dust and protection cover is available in two versions for type A, B, AB and for type D, E, DE with or without
grip.
Dimensional Drawings
49,94
12,45
14,8
11,6
Note: All dimensions in mm
11,15
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2.0 mm ERmet Hard Metric Connector System
Dust Covers For Type A, B, AB, D, E and DE
Ordering Information
Configuration
Used For
No. of
Pins
Part Number
A, B, AB Dust Cover Without Handle For Vacuum Pickup
104070
D, E, DE Dust Cover Without Handle For Vacuum Pickup
104939
A, B, AB Dust Cover With Handle For Hand Placement
114039
D, E, DE Dust Cover With Handle For Hand Placement
114040
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2.0 mm ERmet Hard Metric Connector System
Coding Keys
2.0 mm ERmet
Ordering Information
Coding keys for male connectors and shrouds
Coding keys for female connectors
Coding Key
Coding Key
Code Colour
No.
Catalog E 074484
Part Number
Code Colour
No.
Part Number
Pastel Orange
3568 RAL 2003
Fincke 00233197
043342
Pastel Orange
1247 RAL 2003
Fincke 00233197
043332
Steel Blue
3478 RAL 5011
Fincke 00251197
043343
Steel Blue
1256 RAL 5011
Fincke 00251197
043333
Slate Grey
3467 RAL 7015
Fincke 00235197
043344
Slate Grey
1258 RAL 7015
Fincke 00235197
043334
Cadmium Yellow
3456 RAL 1021
Fincke 00252197
043345
Cadmium Yellow
1278 RAL 1021
Fincke 00252197
043335
Reseda Green
2578 RAL 6011
Fincke 00237197
043346
Reseda Green
1346 RAL 6011
Fincke 00237197
043336
Brilliant Blue
1567 RAL 5007
Fincke 00245197
043347
Brilliant Blue
2348 RAL 5007
Fincke 00245197
043337
Blue/Lilac
1356 RAL 4005
Fincke 00246197
043348
Blue/Lilac
2478 RAL 4005
Fincke 00246197
043338
Ocher Yellow
4678 RAL 1024
Fincke 00313197
043349
Ocher Yellow
1235 RAL 1024
Fincke 00313197
043339
Strawberry Red
1248 RAL 3018
Fincke 00312197
043350
Strawberry Red
3567 RAL 3018
Fincke 00312197
043340
Nut Brown
1236 RAL 8011
Fincke 00272197
043351
Nut Brown
4578 RAL 8011
Fincke 00272197
043341
Mounting Device
For Coding-Keys
053593
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2.0 mm ERmet Hard Metric Connector System
Guide Pin for ERmet 10 Row Type D
The optional applicable guide pin for the 10 row ERmet type
D connector made of stainless steel is suited for the secure
pre-centering when mating. The guide pin will be screwed
with the connector and the pcb after the male connector
has been pressed-in.
Ordering Information
Description
Guide Pin
Toothed Lock Washer
Hexagon Nut #2-56 UNC-2A
Kit (Including Guide Pin, Toothed Lock Washer and Hexagon Nut)
262
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10/07
Part Number
104790
104788
104789
104791
Edition 8
www.erni.com
2.0 mm ERmet Hard Metric Connector System
Special Contacts for Type L, M and N
2.0 mm ERmet
Ordering Information For Coax Contacts
Characteristic Impedance
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
50 Ohm
75 Ohm
75 Ohm
75 Ohm
Contact Version
Male; Crimp-Version
Female; Crimp-Version
Male; PCB-Solder-Version; Right Angle
Female; Crimp-Version
Male; Crimp-Version
Female; Crimp-Version
Male; Press-Fit-Version; Right Angle
Female; Crimp-Version
Male; Crimp-Version
Female; PCB-Solder-Version
Male; PCB-Solder-Version; Right Angle
Male; Crimp-Version
Female; Crimp-Version
Cable Type
RG 178 B/U; RG 196 A/U
RG 178 B/U; RG 196 A/U
RG 316 Protected
RG 316 Protected
RG 174 /U; RG 188 A/U; RG 316 /U
RG 174 /U; RG 188 A/U; RG 316 /U
RG 174 /U; RG 188 A/U; RG 316 /U
RG 179 B/U; RG 187 A/U
RG 179 B/U; RG 187 A/U
Part Number
013686
013687
053299
053395
053400
054238
104875
594207
594213
914382
053306
053408
053410
Ordering Information for High Power Contacts
Max. Current
10 A
20 A
30 A
40 A
40 A
10 A
20 A
40 A
40 A
10 A
20 A
20 A
30 A
40 A
10 A
40 A
40 A
10 A
20 A
40 A
10 A
Catalog E 074484
Contact Version
Comments
Female; Crimp-Version
Female; Crimp-Version
Female; Crimp-Version
Female; Crimp-Version
Female; Press-Fit-Version R3
Female; Solder-Version
Female; Solder-Version
Female; Solder-Version
Female; Solder-Version; Right Angle
Male; Crimp-Version
Male; Crimp-Version
First Made Last Break; Only Usable With Part No. 044965
Male; Crimp-Version
Male; Crimp-Version
Male; Crimp-Version
Male; Press-Fit-Version R1
First Made Last Break
Male; Press-Fit-Version R1
First Made Last Break; Only Usable With Part No. 044965
Male; Press-Fit-Version R1
Male; Solder- Version
Male; Solder- Version
Male; Solder- Version
Male; Solder-Version
First Made Last Break; Only Usable With Part No. 044965
10/07
Edition 8
www.erni.com
Part Number
594178
594180
053452
594182
044965
594172
594174
594176
053298
594227
053430
594229
033319
594231
103855
044846
044847
594221
594223
594225
053444
263
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2.0 mm ERmet Hard Metric Connector System
Tools
Modular press-fit tools for male and female connectors
264
Modular press-fit tool male connector modules 5+2
Modular press-fit tool for female connector modules 5+2
ERmet connectors can be end to end mounted in modular
layout. To be able to press-fit the selected connector layout
for your application in a rationalized way, we have designed
the necessary press-fit tools to be modular too. This is true
of the tools both for male connectors and for female connectors. The tool bases, also termed anvils, are fixed in a
tool holder. Each connector module requires an appropriately sized tool module.
The standard tool holders are designed for two 50 mm
modules (modules A, B, L and M), press-fitting a total module length of 100 mm. Due to the modular tool configuration, press-fitting can be carried out in any order. Using filler
elements, it is also possible to press-fit just individual modules.
For details on how to order press-fit tools, please contact
the factory.
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2.0 mm ERmet Hard Metric Connector System
Tools
2.0 mm ERmet
Press-In-Tools For The Female Connectors
Ordering Information
Design
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Female
Vertical Fem.
Vertical Fem.
Vertical Fem.
Vertical Fem.
Vertical Fem.
Vertical Fem.
Vertical Fem.
Vertical Fem.
Module
A
B/AB
C
L
L
M
M
M
N
N
A
B/AB
C
M
M
A
A/AB
C
D
E/DE
F
D
E/DE
F
D
E/DE
F
B19/AB19
B19/AB19
B19/AB19
B22/AB22
B22/AB22
B22/AB22
A
B
B19
B22
C
D
E
F
Catalog E 074484
04/10
Upper Tools
220006
220006
220007
220008
220008
220009
220009
220009
220010
220010
220093
220093
220096
220322
220322
220436
220436
220453
220253
220253
220254
220256
220256
220257
220455
220455
220457
220175
220179
220449
220183
220187
220451
220204
220204
220356
220357
220341
220477
220477
220478
Edition 9
Lower Tools
220020
220021
220022
220023
220402
220024
220323
220415
220025
220287
220020
220021
220022
220024
220323
220437
220437
220454
220250
220251
220252
220250
220251
220252
220458
220456
220458
220176
220176
220450
220184
220184
220452
220026
220027
220174
220182
220028
220247
220248
220249
www.erni.com
Comments
Standard
Standard
Standard
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
Standard; Coax-Contact, Solder
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
Upper Shield
Upper Shield
Upper Shield
Upper Shield ; High Power Contact, Press-fit
Upper Shield ; Coax- Contact, Press-fit
Lower Shield
Lower Shield
Lower Shield
Standard
Standard
Standard
Upper Shield
Upper Shield
Upper Shield
Lower Shield
Lower Shield
Lower Shield
VME/64
VME/64 Upper Shield
VME/64 Lower Shield
PCI
PCI Upper Shield
PCI Lower Shields
Standard
Standard
VME/64
PCI
Standard
Standard
Standard
Standard
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2.0 mm ERmet Hard Metric Connector System
Tools
Press-In-Tools For The Male Connectors
Ordering Information
Design
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Male
Module
A
A
B
AB25
AB22
AB19
C
L
L
M
M
N
N
B19
B22
D
E
F
DE
Upper Tools
220011
220469
220012
220376
220401
220400
220013
220014
220420
220015
220422
220016
220424
220173
220181
220244
220245
220246
220410
Lower Tool
220026
220026
220027
220027
220182
220174
220028
220029
220421
220030
220423
220031
220425
220174
220182
220247
220248
220249
220248
Comment
Standard
Standard; Integrated Coding
Standard
Standard
Standard
Standard
Standard
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
Standard; High Power Contact, Press-fit
Standard; Coax-Contact, Press-fit
VME/64
PCI
Standard
Standard
Standard
Standard
Toolholder
Ordering Information
266
Description
Holder Upper Tool
Holder Upper Tool
Holder Upper Tool
Holder Upper Tool
Holder Upper Tool
Holder Upper Tool
Part Number
220001
220002
220188
220003
220004
220005
Length
100mm long
100 mm long
150 mm long
150 mm long
250 mm long
250 mm long
Comment
with monting pivot Ø 20
with quick change
with monting pivot Ø 20
with quick change
with monting pivot Ø20
with quick change
Holder Lower Tool
Holder Lower Tool
Holder Lower Tool
220191
220267
220268
100 mm long
150 mm long
250 mm long
for lowerable table
for lowerable table
for lowerable table
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2.0 mm ERmet Hard Metric Connector System
3U CompactPCI® Daughter Card Layout
2.0 mm ERmet
connectors from the bottom up. Manufacturers and users
should note that the connectors themselves are labeled in
accordance to IEC 61076-4-101 and prevailing industry
practice from the top down.
The 3U CompactPCI® backplane and daughter card layouts are provided to clarify the contact numbering and
connector nomenclature used within the specification.
As is typical of some telecommunication applications, the
CompactPCI® specification numbers the signals and
+0
160.0-0.3
3.57
1.5 ± 0.1
0.1
5.55
2
J2
Part # 064 785
88.9+0.1
-0.1
TOP VIEW
2
J1
Part # 064 176
22
4.0
0.6 ± 0.05
THRU PLATED
(Rows A to F)
1
100.0
25
DRILLED TO
0.7 ± 0.02
15
8
2.0 ± 0.05
11
2
4.0
1
5.55
FEDCBA
Note that the backplane and daughter card are numbered in accordance with the CompactPCI® specification. The numbering on the connectors themselves is different and in accordance with the IEC 61076-4-101 standard.
All dimensions are in millimeters (mm) unless otherwise noted.
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2.0 mm ERmet Hard Metric Connector System
3U CompactPCI® Backplane Layout
nectors from the bottom up. Manufacturers and users
should note that the connectors themselves are labeled in
accordance to IEC 61076-4-101 and prevailing industry
practice from the top down.
The 3U CompactPCI® backplane layout is provided to clarify the contact numbering and connector nomenclature
used within the specification.
As is typical of some telecommunication applications, the
CompactPCI® specification numbers the signals and con-
0.0
n x 20.32-0.3
0.00
9.16 -0.30
Non-Accumulative
20.32
10.16
15.25±0.03
1.55
0.1
2
Part # 914 796
22
2
P2
TOP VIEW
0.6 ± 0.05
THRU PLATED
(Rows Z to F)
1
25
128.70 +0.00
-0.30
2.0 ± 0.05
Part # 064 097
DRILLED TO
0.7 ± 0.02
8
122.50±0.03
P1
2
15
11
1
ZABCDEF
ZABCDEF
ZABCDEF
Note that the backplane is numbered in accordance with the CompactPCI® specification. The numbering on the connectors
themselves is different and in accordance with the IEC 61076-4-101 standard.
All dimensions are in millimeters (mm) unless otherwise noted.
268
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2.0 mm ERmet Hard Metric Connector System
6U CompactPCI® Daughter Card Layout
2.0 mm ERmet
The 6U CompactPCI® backplane layout is provided to clarify the contact numbering and connector nomenclature
used within the specification.
As is typical of some telecommunication applications, the
CompactPCI® specification numbers the signals and connectors from the bottom up. Manufacturers and users
should note that the connectors themselves are labeled in
accordance to IEC 61076-4-101 and prevailing industry
practice from the top down.
In many applications, the J3, J4 and J5 connectors are
used for user I/O. The J3 connector matches the VME64
extensions P0 connector exactly and falls symmetrically on
the centerline of the daughter card. Designers should note
that this connector is not on the same grid as the J1, J2, J4
and J5 connectors.
+0
160.0-0.3
2
0.1
3.57
4.0
J5
15
J4
11
2
1
19
TOP VIEW
2.675
233.35 +0
-0.3
CL
J3
Part # 064 784
2.0 +0.05
-0.00
8
Part # 064 176
1
25
88.9 +0.1
-0.1
44.45
Part # 064 785
22
1
22
J2
Part # 064 785
J1
Part # 064 176
2.675
2
0.6 ± 0.05
THRU PLATED
(Rows A to F)
88.9+0.1
-0.1
1
25
DRILLED TO
0.7 ± 0.02
2.0 +0.05
-0.00
15
8
11
2
4.0
FEDCBA
5.55
1.5
1
± 0.1
Note that the daughter card is numbered in accordance with the CompactPCI® specification. The numbering on the connectors themselves is different and in accordance with the IEC 61076-4-101 standard.
All dimensions are in millimeters (mm) unless otherwise noted.
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2.0 mm ERmet Hard Metric Connector System
6U CompactPCI® Backplane Layout
The 6U CompactPCI® backplane layout is provided to clarify the contact numbering and connector nomenclature
used within the specification.
As is typical of some telecommunication applications, the
CompactPCI® specification numbers the signals and connectors from the bottom up. Manufacturers and users
should note that the connectors themselves are labeled in
accordance to IEC 61076-4-101 and prevailing industry
practice from the top down.
In many applications, the P3, P4 and P5 connectors are
designed for user I/O. Therefore connectors with 16 mm
rear tails are used with shrouds installed on the rear side.
The P3 connector matches the VME64 extensions J0 connector exactly, and falls symmetrically on the centerline of
the backplane. Designers should note that this connector is
not on the same grid as the P1, P2, P4 and P5 connectors.
0.0
n x 20.32-0.3
0.00
9.16 -0.30
20.32
Non-Accumulative
15.25±0.03
0.1
10.16
1.55
2
Part # 064 690
22
P5
2.0 ± 0.05
Part # 914 793
2
CL
15
P4
11
1
19
2.675
TOP VIEW
8
Part # 064 688
1
25
255.85
P3
262.05 +0.0
-0.3
1
22
Part # 914 796
2
0.6 ±0.05
THRU PLATED
(Rows Z to F)
2.675
P2
8
2.0 ± 0.05
2
ZABCDEF
ZABCDEF
ZABCDEF
ZABCDEF
Part # 064 097
1
25
DRILLED TO
0.7 ± 0.02
P1
ZABCDEF
ZABCDEF
15
11
ZABCDEF
ZABCDEF
1
3.10
Note that the backplane is numbered in accordance with the CompactPCI® specification. The numbering on the connectors
themselves is different and in accordance with the IEC 61076-4-101 standard.
All dimensions are in millimeters (mm) unless otherwise noted.
270
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2.0 mm ERmet Hard Metric Connector System
9U 10-Row 2mm Daughter Card Layout
2.0 mm ERmet
This 9U eurocard compatible daughtercard layout is provided for designers who need over 1400 signal pins in a
eurocard format. This is one of the highest I/O densities
that is currently available in a eurocard format. This design
is to be used with the ERmet 8+2 row connectors.
+0
160.0 -0.3
0.1
3.57
1.75 (Row H to I only)
1.5
5.55
J8
E22
4.0
Part # 933 052
Needs Shield
1
J7
15
D25
11
2
25
1
J6
E19
2.675
44.45
Part # 933 054
Needs Shield
2.0 +0.05
-0.00
8
Part # 104 415
22
1
88.9 +0.1
-0.1
2.675
J5
E22
2
0.6 ± 0.05
22
1
11
J4
15
D25
TOP VIEW
2.0 +0.05
-0.00
8
2
25
1
J3
E19
J2
E22
Part # 933 052
Needs Shield
D25
Part # 104 415
2.675
44.45
Part # 104 415
366.70 +0
-0.3
DRILLED TO
0.7 ± 0.02
Part # 933 054
Needs Shield
THRU PLATED
(Rows A to Y)
88.9+0.1
-0.1
Part # 933 052
Needs Shield
19
1
11
1
2.675
2
0.6 ± 0.05
THRU PLATED
(Rows A to Y)
88.9+0.1
-0.1
22
1
DRILLED TO
0.7 ± 0.02
2.0 +0.05
-0.00
11
8
15
J1
2
5.55
IHGFEDCBA
25
1.5 ±0.1
2mm 45° angle
Note that the numbering scheme conforms with the Type V numbering as defined in VITA30-199x Draft 0.5 dated 9 June
1999 and is from the top down. This numbering scheme is identical to the numbering established for the connector within
the IEC 61076-4-101 standard.
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2.0 mm ERmet Hard Metric Connector System
9U 10-Row 2mm Backplane Layout
used with the ERmet 8+2 row connectors. Note that the
backplane connectors have a 5HP or 25.4 mm slot to slot
spacing.
This 9U eurocard compatible backplane layout is provided
for designers who need over 1400 signal pins in a eurocard
format. This is one of the highest I/O densities that is currently available in a eurocard format. This design is to be
80.28mm
0.00
9.16 -0.30
25.4
25.4
15.25±0.03
2
0.1
25.4
10.16
3.10
1.55
P8
Part # 933 048
1
P7
2.0 +0.05
-0.00
15
25
1
2.675
358.7
389.2
395.4
P6
Part # 933 049
11
8
Part # 104 152
22
1
2.675
P5
0.6 ± 0.05
THRU PLATED
(Rows Z to I)
Part # 933 048
19
1
2
11
8
P4
2.0 +0.05
-0.00
15
Part # 104 152
22
1
DRILLED TO
0.7 ± 0.02
2.675
P3
19
1
P2
Part # 933 048
P1
Part # 104 152
2.675
Part # 933 049
25
1
22
1
11
15
ZABCDEFGHI
ZABCDEFGHI
25
15.25±0.03
3.10
Note that the numbering scheme conforms with the Type V numbering as defined in VITA30-199x Draft 0.5 dated 9 June
1999 and is from the top down. This numbering scheme is identical to the numbering established for the connector
within the IEC 61076-4-101 standard.
272
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2.0 mm ERmet Hard Metric Connector System
IEEE 1301 Daughter Cards for IEC 61076-4-101 2mm HM Connectors
2.0 mm ERmet
1101 line of Eurocard Packaging, engineers still may occasionally need to layout daughter cards and backplanes to
this standard.
Note that this layout is drawn to show both the connector
grid for 5+2 row connectors and 8+2 row connectors.
The 2mm HM Connector was originally developed to be
used within subrack and backplanes designed in accordance with IEEE 1301 Standard for Metric Equipment
Practices for Microcomputers.
This was a standard that was popular with the large
telecommunication companies.
Although IEEE 1301 never became as popular as the IEEE
Ds - 15
4.0 +0
-0.15
5.0
5.0
2mm for 5+2 connectors (a – f rows)
1.5 ±0.1
7.5
FEDCBA
2.0
5+ 2
Connector
Pattern
USABLE
COMPONENT
SPACE
265 +0
-0.3
250
257
8+ 2
Connector
Pattern
2.0
I H G F E DC B A
5.0 1.5mm for 8+2 connectors (1.75mm for H to I)
DRILLED TO
2.75 +0.2
-0.0
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2.0 mm ERmet Hard Metric Connector System
IEEE 1301 Backplane Layouts For IEC 61076-4-101 2mm HM Connectors
1101 line of Eurocard Packaging, engineers
still may occasionally need to layout daughter cards and
backplanes to this standard.
Note that this layout is drawn to show both the connector
grid for 8+2 connectors and 5+2 row connectors. Although
this standard defines multiple heights, this drawing is for the
popular 12 SU height.
The 2mm HM Connector was originally developed to be
used within subrack and backplanes designed in
accordance with IEEE 1301 Standard for Metric Equipment
Practices for Microcomputers.
This was a standard that was popular with the large
telecommunication companies.
Although IEEE 1301 never became as popular as the IEEE
20.00
2.5
5.0
DRILLED TO
2.75 +0.2
-0.0
5.0 typical
ZABCDEF
ZABCDEF
ZABCDEF
ZABCDEF
5+ 2
250.00
295.00
285.00
8+ 2
ZABCDEFGHI
ZABCDEFGHI
5.0
ZABCDEFGHI
ZABCDEFGHI
5.0 typical DRILLED TO
2.75 +0.2
-0.0
2.5
25.00
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2.0 mm ERmet Hard Metric Connector System
VME64 Extensions Daughter Card
2.0 mm ERmet
in between the upper P1 and lower P2 connectors.
This connector is mounted 1.5 mm from the rear board
edge but the 160 pin VME64x connector is mounted 2.76
mm from the rear board edge.
The 6U VME64 Extensions document, IEEE 1101.10
defines the daughter card locations for a 2mm HM P0 connector.
This connector is the same connector defined as the J3
connector defined in the VITA 30 2mm equipment practice
and used for CompactPCI daughter cards.
Note that the 2mm HM connector is located symmetrically
+0
160.0-0.3
3.57
2.76
153.67
2.5
1
88.9 +0.1
-0.1
CL
P1
88.9 +0.1
-0.1
16
17
32
1
133.35 +0.1
-0.1
OPTIONAL
P0
USABLE
COMPONENT
SPACE
1.5
233.35 +0
-0.3
19
FEDCBA
1
88.9+0.1
-0.1
CL
P2
88.9+0.1
-0.1
16
17
50.0 +0.1
-0.1
32
5.5
DRILLED TO
2.7 ± 0.01
D C B A Z
DRILLED TO
2.8 ± 0.01
2.5
Note that the numbering of the P0 connector conforms to IEEE 1101.1 and 1101.10 and is from the top down. This also is the
same numbering scheme established by the connector standard IEC 61076-4-101.
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2.0 mm ERmet Hard Metric Connector System
VME64 Extensions Backplane
The 6U VME64 Extensions backplane layout depicts the
nomenclature and numbering conventions used in the IEEE
1101.10 draft standard. The J0 center connector is the
same 19 position ERmet 2mm H. M. connector used in
CompactPCI®.
The design of this connector allows it to mate properly with
the J1 and J2 connectors which are in accordance with
0.0
n x 20.32-0.3
0.00
9.16 -0.30
DIN 41612. Note that there is a 1.85 mm
offset between the “C” row of the J0 connector and
the “B” row of the 2.54 mm (.100”) J1/J2 connectors.
On the daughter card, pin 10 of the P0 connector
falls exactly on the board’s centerline, and pin “A 1” is
placed 1.5 mm from the board’s edge.
10.16
20.32
Non-Accumulative
16.25
Z A B C D
Z A B C D
Z A B C D
Z A B C D
Z A B C D
Z A B C D
Z A B C D
Z A B C D
a1
2
4
6
8
0.3
10
a1
2
12
14
90±0.1
16
J1
Z
18
A
B
C
D
20
22
24
26
28
30
9.305
32
J0
43.35
ZABCDEF
ZABCDEF
ZABCDEF
ZABCDEF
ZABCDEF
ZABCDEF
Part # 914 793
CL
1
255.85
262.05 +0.0
-0.3
ZABCDEF
ZABCDEF
19
1.85
Z A B C D E F
a1
2
4
6
9.305
19
1.85
8
a1
2
10
12
14
90±0.1
J2
Z
16
18
A
B
C
D
4
20
22
24
26
28
30
32
2.54
16.25
Drilled To 1.15 ±0.02
+0.09
Plated To 1.0 -0.06
0.3
2.54
Note that the numbering of the P0 connector conforms to IEEE 1101.1 and 1101.10 and is from the top down. This also is the
same numbering scheme established by the connector standard IEC 61076-4-101.
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2.0 mm ERmet Hard Metric Connector System
64 Bit CompactPCI® System Slot Pin Assignments
2.0 mm ERmet
3U cards, 6U implementations provide optional P3, P4 and
P5 connectors, which all have undefined pins for user I/O.
6U CompactPCI® provides more user defined pins than
any other bus structure today.
In the case of the 64 bit CompactPCI®, both the P1 and P2
connectors are fully assigned with no pins available for user
defined I/O. For such systems, only 6U designs can have
rear panel I/O.
Although CompactPCI® is designed to be accomplished on
PIN
Z(10)
A
B
C
D
E
F
22
GND
GA4(6)
GA3(6)
GA2(6)
GA1(6)
GA0(6)
GND
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3(3)
2(3)
1(3)
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
CLK6
CLK5
GND
BRSVP2A18
BRSVP2A17
BRSVP2A16
BRSVP2A15
AD[35]
AD[38]
AD[42]
AD[45]
AD[49]
AD[52]
AD[56]
AD[59]
AD[63]
C/BE[5]#
V(I/O)(3)
CLK4
CLK2
CLK1
GND
GND
GND
BRSVP2B18
GND
BRSVP2B16
GND
AD[34]
GND
AD[41]
GND
AD[48]
GND
AD[55]
GND
AD[62]
GND
BRSVP2B4
GND
CLK3
GND
RSV
RSV
RSV(9)
BRSVP2C18
PRST#
DEG#
FAL#
AD[33]
V(I/O)(3)
AD[40]
V(I/O)(3)
AD[47]
V(I/O)(3)
AD[54]
V(I/O)(3)
AD[61]
V(I/O)(3)
C/BE[7]#
GNT3#
SYSEN#(4)
REQ1#
RSV
GND
RSV(9)
GND(8)
REQ6#
GND
REQ5#
GND
AD[37]
GND
AD[44]
GND
AD[51]
GND
AD[58]
GND
C/BE[4]#
GND
REQ4#
GNT2#
GNT1#
RSV
RSV
RSV(9)
BRSVP2E18
GNT6#
BRSVP2E16
GNT5#
AD[32]
AD[36]
AD[39]
AD[43]
AD[46]
AD[50]
AD[53]
AD[57]
AD[60]
PAR64
C/BE[6]#
GNT4#
REQ3#
REQ2#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL#
3.3V
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
IPMBSCL
GND
FRAME#
3.3V
AD[0]
5V(1)
AD[6]
M66EN (5)
AD[11]
GND(1)
PAR
GND(1)
STOP#
GND(2)
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z(10)
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ0#
BRSVP1A5
IPMB PWR
INTA#
TCK(8)
5V
A
AD[17]
GND
GND(2)
GND
AD[29]
GND
BRSVP1B5
HEALTHY#(7)
INTB#
5V
-12V
B
ENUM#
V(I/O)(3) (1)
AD[3]
3.3V(1)
AD[8]
V(I/O)(3)
AD[14]
3.3V
IPMBSDA
V(I/O)(1),(3)
IRDY#
KEY AREA
AD[16]
3.3V
AD[23]
V(I/O)(3)
AD[28]
3.3V(1)
RST#
V(I/O)(3)(1)
INTC#
TMS(8)
TRST#(8)
C
GND(1)
AD[20]
GND(1)
AD[25]
GND(1)
CLK0
GND(1)
INTP
5V(1)
TDO(8)
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT0#
INTS
INTD#
TDI(8)
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
P2
C
O
N
N
E
C
T
O
R
P1
C
O
N
N
E
C
T
O
R
Per CompactPCI® Specification 2.0 R3.0, October 1, 1999, Tabelle 15
(1) Early mate pins.
(2) Late mate pins.
(3) 3.3 V or 5.0 V.
(4) Grounded in system slot.
(5) Ground for a 33 MHz backplane. Bussed slot to slot in 66 MHz systems.
(6) Each slot may have a unique geographic address encoding. See the CompactPCI® specification for details.
(7) Backplane must leave pin open and provide # bypass capacitor.
(8) JTAG is being discouraged. These pins will be redefined.
(9) To be used for I2C bus.
(10) Daughtercards do not make use of “z” row grounds.
Note: Chart numbering conforms to the CompactPCI® specification. Connector numbering is from top to bottom in accordance with the IEC standard.
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Seite 278
2.0 mm ERmet Hard Metric Connector System
64 Bit CompactPCI® Peripheral Slot Pin Assignments
on 3U cards, 6U implementations provide
optional P3, P4 and P5 connectors, which all have
undefined pins for user I/O. 6U CompactPCI® provides
more user defined pins than any other bus structure today.
In the case of the 64 bit CompactPCI®, both the P1 and
P2 connectors are fully assigned with no pins available for
user defined I/O. For such systems, only 6U designs can
have rear panel I/O.
Although CompactPCI® is designed to be accomplished
PIN
Z(10)
A
B
C
D
E
F
22
GND
GA4(6)
GA3(6)
GA2(6)
GA1(6)
GA0(6)
GND
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3(3)
2(3)
1(3)
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
RSV
RSV
RSV
BRSVP2A18
BRSVP2A17
BRSVP2A16
BRSVP2A15
AD[35]
AD[38]
AD[42]
AD[45]
AD[49]
AD[52]
AD[56]
AD[59]
AD[63]
C/BE[5]#
V(I/O)(3)
RSV
RSV
RSV
RSV
RSV
RSV
BRSVP2B18
GND
BRSVP2B16
GND
AD[34]
GND
AD[41]
GND
AD[48]
GND
AD[55]
GND
AD[62]
GND
BRSVP2B4
GND
RSV
GND
RSV
RSV
RSV
BRSVP2C18
RSV
RSV
RSV
AD[33]
V(I/O)(3)
AD[40]
V(I/O)(3)
AD[47]
V(I/O)(3)
AD[54]
V(I/O)(3)
AD[61]
V(I/O)(3)
C/BE[7]#
RSV
UNC(4)
RSV
RSV
GND
RSV
GND
RSV
GND(8)
RSV
GND
AD[37]
GND
AD[44]
GND
AD[51]
GND
AD[58]
GND
C/BE[4]#
GND
RSV
RSV
RSV
RSV
RSV
RSV
BRSVP2E18
RSV
BRSVP2E16
RSV
AD[32]
AD[36]
AD[39]
AD[43]
AD[46]
AD[50]
AD[53]
AD[57]
AD[60]
PAR64
C/BE[6]#
RSV
RSV
RSV
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL#
3.3V
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
IPMBSCL
GND
FRAME#
3.3V
AD[0]
5V(1)
AD[6]
M66EN(4) (5)
AD[11]
GND(1)
PAR
GND(1)
STOP#
BD SEL#(2)
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z(10)
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ#
BRSVP1A5
IPMB PWR
INTA#
TCK(8)
5V
A
AD[17]
GND
IDSEL(2)
GND
AD[29]
GND
BRSVP1B5
HEALTHY(7)
INTB#
5V
-12V
B
ENUM#
V(I/O)(3) (1)
AD[3]
3.3V(1)
AD[8]
V(I/O)(3)
AD[14]
3.3V
IPMBSDA
V(I/O)(3)
IRDY#
KEY AREA
AD[16]
3.3V
AD[23]
V(I/O)(3)
AD[28]
3.3V(1)
RST#
V(I/O)(3) (1)
INTC#
TMS(8)
TRST#(8)
C
GND(1)
AD[20]
GND(1)
AD[25]
GND(1)
CLK
GND(1)
INTP
5V(1)
TDO(8)
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT#
INTS
INTD#
TDI(8)
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
P2
C
O
N
N
E
C
T
O
R
P1
C
O
N
N
E
C
T
O
R
Per CompactPCI® Specification 2.0 R3.0, October 1, 1999, Tabelle 13
(1) Early mate pins.
(2) Late mate pins.
(3) 3.3 V or 5.0 V.
(4) Grounded in system slot.
(5) Ground for a 33 MHz backplane. Bussed slot to slot in 66 MHz systems.
(6) Each slot may have a unique geographic address encoding. See the CompactPCI® specification for details.
(7) Backplane must leave pin open and provide # bypass capacitor.
(8) JTAG is being discouraged. These pins will be redefined.
(9) To be used for I2C bus.
(10) Daughtercards do not make use of “z” row grounds.
Note: Chart numbering conforms to the CompactPCI® specification. Connector numbering is from top to bottom in accordance with the IEC standard.
278
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04/10
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11.05.2010
14:45 Uhr
Seite 279
2.0 mm ERmet Hard Metric Connector System
32 Bit CompactPCI® System Slot Pin Assignments
2.0 mm ERmet
The CompactPCI® specification defines a 32 bit implementation. The 32 bit implementation makes the entire P2/J2
connector (upper) available for user defined I/O for slots 28. The controller card slot (usually slot 1) makes use of
some P2 pins for such functions as clock, arbitration,
grant/requests and some other system functions.
In many 32 bit systems, the backplane connector in the P2
position will have 16 mm rear tails and a shroud so I/O signals may pass through the backplane to rear mounted
cards or cable assemblies.
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
Z(6)
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
A
GA4(5)
CLK6#
CLK5#
GND
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
V(I/O)
CLK4
CLK2
CLK1
B
GA3(5)
GND
GND
GND
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
GND
CLK3
GND
C
GA2(5)
BP(I/O)
BP(I/O)
BP(I/O)(9)
BP(I/O)
PRST#
DEG#
FAL#
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
GNT3#
SYSEN# (10)
REQ1#
D
GA1(5)
BP(I/O)
BP(I/O)
BP(I/O)(9)
BP(I/O)
REQ6#
GND
REQ5#
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
REQ4#
GNT2#
GNT1#
E
GA0(5)
BP(I/O)
BP(I/O)
BP(I/O)(9)
BP(I/O)
GNT6#
BP(I/O)
GNT5#
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
GNT4#
REQ3#
REQ2#
F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL
3.3v
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
IPMBSCL
GND
FRAME#
3.3V
AD[0]
5V(1)
AD[6]
M66EN(4)
AD[11]
GND(1)
PAR
GND(1)
STOP#
GND(2)
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z(6)
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ0#
BRSVP1A5
IPMB PWR
INTA#
TCK(8)
5V
A
AD[17]
GND
GND(2)
GND
AD[29]
GND
BRSVP1B5
HEALTHY#(7)
INTB#
5V
-12V
B
ENUM#
V(I/O)(3) (1)
AD[3]
3.3V(1)
AD[8]
V(I/O)(3)
AD[14]
3.3V
IPMBSDA
V(I/O)(1),(3)
IRDY
KEY AREA
AD[16]
3.3V
AD[23]
V(I/O)(3)
AD[28]
3.3V(1)
RST#
V(I/O)(3) (1)
INTC#
TMS(8)
TRST#(8)
C
GND(1)
AD[20]
GND(1)
AD[25]
GND(1)
CLK
GND(1)
INTP
5V(1)
TDO(8)
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT0#
INTS
INTD#
TDI(8)
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
P2
C
O
N
N
E
C
T
O
R
P1
C
O
N
N
E
C
T
O
R
Per CompactPCI® Specification 2.0 R3.0, October 1, 1999, Tabelle 16
(1) Early mate pins.
(2) Late mate pins.
(3) 3.3 V or 5.0 V.
(4) Grounded in 33 MHz backplane. Bussed slot to slot in 66 MHz systems
(5) Each slot may have a unique geographic address encoding. See the CompactPCI® specification for details.
(6) Daughter cards do not make use of the “Z” row grounds.
(7) Backplane must leave pin open and provide # bypass capacitor.
(8) JTAG is being discouraged. These pins will be redefined.
(9) To be used for I2C bus.
(10) Grounded in system slot.
Notes: All P2 terminals should be 16 mm long with shroud installed unless they are used for a secondary bus.
Chart numbering conforms to the CompactPCI® specification. Connector numbering is from top to bottom in accordance with the IEC standard.
Catalog E 074484
04/10
Edition 9
www.erni.com
279
0.5_04ERmet 262-300
11.04.2010
11:58 Uhr
Seite 280
2.0 mm ERmet Hard Metric Connector System
32 Bit CompactPCI® Peripheral Slot Pin Assignments
grant/requests and some other system functions.
In many 32 bit systems, the backplane connector in the P2
position will have 16 mm rear tails and a shroud so I/O signals may pass through the backplane to rear mounted
cards or cable assemblies.
The CompactPCI® specification defines a 32 bit implementation. The 32 bit implementation makes the entire P2/J2
connector (upper) available for user defined I/O for slots
2-8. The controller card slot (usually slot 1) makes use of
some P2 pins for such functions as clock, arbitration,
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
Z(6)
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
A
GA4(5)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
B
GA3(5)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
C
GA2(5)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
D
GA1(5)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
E
GA0(5)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
BP(I/O)
F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL
3.3v
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
IPMBSCL
GND
FRAME#
3.3V
AD[0]
5V(1)
AD[6]
M66EN(4)
AD[11]
GND(1)
PAR
GND(1)
STOP#
BD SEL#(2)
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z(6)
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ#
BRSVP1A5
IPMB PWR
INTA#
TCK(8)
5V
A
AD[17]
GND
IDSEL(2)
GND
AD[29]
GND
BRSVP1B5
HEALTHY#(7)
INTB#
5V
-12V
B
ENUM#
V(I/O)(3) (1)
AD[3]
3.3V(1)
AD[8]
V(I/O)(3)
AD[14]
3.3V
IPMBSDA
V(I/O)(1),(3)
IRDY
KEY AREA
AD[16]
3.3V
AD[23]
V(I/O)(3)
AD[28]
3.3V(1)
RST#
V(I/O)(3) (1)
INTC#
TMS(8)
TRST#(8)
C
GND(1)
AD[20]
GND(1)
AD[25]
GND(1)
CLK
GND(1)
INTP
5V(1)
TDO(8)
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT#
INTS
INTD#
TDI(8)
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
P2
C
O
N
N
E
C
T
O
R
P1
C
O
N
N
E
C
T
O
R
Per CompactPCI® Specification 2.0 R3.0, October 1, 1999, Tabelle 14
(1) Early mate pins.
(2) Late mate pins.
(3) 3.3 V or 5.0 V.
(4) Grounded in 33 MHz backplane. Bussed slot to slot in 66 MHz systems
(5) Each slot may have a unique geographic address encoding. See the CompactPCI® specification for details.
(6) Daughter cards do not make use of the “Z” row grounds.
(7) Backplane must leave pin open and provide # bypass capacitor.
(8) JTAG is being discouraged. These pins will be redefined.
Notes: All P2 terminals should be 16 mm long with shroud installed unless they are used for a secondary bus.
Chart numbering conforms to the CompactPCI® specification. Connector numbering is from top to bottom in accordance with the IEC standard.
280
Catalog E 074484
04/10
Edition 9
www.erni.com
0.5_04ERmet 262-300
11.04.2010
11:58 Uhr
Seite 281
2.0 mm ERmet Hard Metric Connector System
cPCI Computer Telephony P4 Pin Assignments
2.0 mm ERmet
Mechanical Specifications - Backplane and Chassis
Pos#
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
Row Z
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
Row A
SGA4
GA4
+12V
PFSO#
-SELbat
NP
NP
VRG
NP
NP
-VBAT
L
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
CT_D29
CT_D27
CT_D24
CT_D21
CT_D19
CT_D16
CT_D13
CT_D11
CT_D8
CT_D4
CT_D0
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
L
M
Row B
Row C
Row D
SGA3
M
SGA2
M
SGA1
M
GA3
M
GA2
M
GA1
M
/CT_Reset
M
/CT_EN
S
-12v
M
RSVD
M
RSVD
M
RSVD
M
PFS1#
M
RSVD
M
RSVD
M
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
KEY AREA (keep unobstructed on backplane to ease routing constraints)
CT_D30
M
CT_D31
M
V(I/O)
L
+3.3V
M
CT_D28
M
+5V
L
CR_D25
M
CT_D26
M
GND
L
CT_D22
M
CT_D23
M
+5V
L
+5V
M
CT_D20
M
GND
L
CT_C17
M
CT_D18
M
GND
L
CT_D14
M
CT_D15
M
+3.3V
L
+5V
M
CT_D12
M
+3.3V
L
CT_D9
M
CT_D10
M
GND
L
CT_D5
M
CT_D6
M
CT_D7
M
+3.3V
M
CTP_D1
M
CT_D2
M
Row E
SGA0
GAO
CT_MC
RSVD
SELVbatRtN
NP
NP
VRGTN
NP
NP
VBATRTN
/CT_FRAME_A
/CT_FRAME_B
/FR_COMP
CT_C8_A
CT_C8_B
CT_NETREF_1
CT_NETREF_2
SCLK
SCLK-D
GND
CT_D3
L
Row F
FG
FG
FG
FG
FG
NP
NP
NP
NP
NP
NP
M
M
M
M
M
M
M
M
M
L
M
GND
GND
GND
GND
GND
GND
GND
GND
GMD
GND
GND
M
M
M
M
L
M
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
Per CompactPCI® Specification PICMG 2.5 R1.0, April 3, 1998, Table 1
Key to P4 Pin Assignments
Ct_name
+5V
+3.3V
GND
V(I/O)
FG
RSVD
NP
-SELVbat
SELVbatRtn
-Vbat
VbatRtn
SGA0-SGA4
GA0-GA4
VRG
VRGRtn
PFS0#-PFS1#
KEY AREA
S
M
L
= H.110 TDM bus signals
= +5V power
= +3.3V power
= LOGIC GROUND
= I/O cell power
= Frame Ground
= reserved for future use
= a pin and pad to Not be Populated
= short loop battery
= short loop battery return
= telecom power distribution bus
= return bus pin for -Vbat
= shelf enumeration bus signals
= slot ID signals; not bussed
= bus for ringing voltage
= bus for ringing voltage
= busses for power fail sense
= area utilized for key
= Short (Level 1) front side pins
= Medium (Level 2) front side pins
= Long (Level 3) front side pins
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2.0 mm ERmet Hard Metric Connector System
cPCI Computer Telephony Safety Classifications for J4/P4
Pos#
25
24
23
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
Row Z
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
NP
Row A
NP
NP
NP
NP
NP
NP
NP
NP HAZ
NP
NP
NP HAZ
NP
NP
NP
NP
NP
NP
NP
NP
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
Row B
NP
IN/C
IN/C
IN/C
IN/C
NP
NP
IN/C-NP
NP
NP
IN/C-NP
Row C
IN/C
IN/C
IN/C
SELV
IN/C
IN/C
NP
NP
IN/C-NP
NP
NP
IN/C-NP
Row D
IN/C
IN/C
IN/C
IN/C
IN/C
NP
NP
IN/C-NP
NP
NP
IN/C-NP
S
S
S
S
S
Row E
IN/C
IN/C
IN/C
IN/C
IN/C
NP
NP
NP HAZ
NP
NP
NP HAZ
Row F
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
NP
NP
NP
NP
NP
NP
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
GND-INC
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
KEY AREA (keep unobstructed on backplane to ease routing constraints)
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
SELV
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IIN/C
S
S
S
S
S
S
S
S
L
L
L
L
L
L
L
L
Per CompactPCI® Computer Telephony Specification PICMG 2.5 R1.0, April 3, 1998, Table 11
282
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2.0 mm ERme Hard Metric Connector System
cPCI Computer Telephony P5 Pin Assignments
Row Z
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
Np-IN/C
NP-In/C
NP-IN/C
NP-In/C
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
U
Row A
T1
R1
T2
R2
T3
R3
T4
R4
R5
T6
R6
T7
R7
T8
R8
IN/C
IN/C
Uo0
Ui0
Uo2
Ui2
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
M
M
M
M
Row B
T9
R9
T10
R10
T11
R11
T12
R12
R13
T14
R14
T15
R15
T16
R16
IN/C
IN/C
Uo1
Ui1
Uo3
Ui3
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
M
M
M
M
Row C
T17
R17
T18
R18
T19
R19
T20
R20
R21
T22
R22
T23
R23
T24
R24
IN/C
IN/C
GND_Ft
Uo4
Ui4
+5V_FT
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
M
M
M
M
Row D
T25
R25
T26
R26
T27
R27
T28
R28
R29
T30
R30
T31
R31
T32
R32
IN/C
IN/C
GND_Ft
Uo5
Ui5
+12V_FT
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
M
M
M
M
Row E
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
GND_Ft
Uo6
Ui6
-12V_FT
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
M
M
M
M
Row F
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-INC
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
2.0 mm ERmet
Pos#
22
21
20
19
18
17
16
15
13
12
11
10
9
8
7
6
5
4
3
2
1
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
Per CompactPCI® Computer Telephony Specification PICMG 2.5 R1.0, April 3, 1998, Table 3
Key to P5 Pin Assignments
Tn
Rn
IN/C
NP
NP-IN/C
GND-IN/C
+nV_FT
-nV_FT
GND_FT
Uin
Uon
U
= Tip
= Ring
= No Connect required for safety agency Insulation requirements
= a position required to be Not Populated (i.e., no conductive element
present
= a position which may be either Not Populated or Insulation No Connect
= a position which may be either LOGIC GROUND or Insulation No Connect
= positive supply voltage feed-through from CT Front Card
= negative supply voltage feed-through from CT Front Card
= logic ground feed-through from CT Front Card
= Universal Input - user defined input signal
(input to CT Front Card)
= Universal Output - user defined input signal
(output to CT Front Card)
= a pin of unspecified length
Catalog E 074484
04/10
Edition 9
S
M
L
= Short (Level 1) front side pins
= Medium (Level 2) front side pins
= Long (Level 3) front side pins
2.3.2.1. P5 Telephony I/O Pins
Tn - Tip - short (Level 1) pins for connecting to the nominally
positive side of a balanced pair telephony connection
Rn - Ring - short (Level 1) pins for connecting to the nominally
negative side of a balanced pair telephony connection
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2.0 mm ERmet Hard Metric Connector System
cPCI Computer Telephony Safety Classifications for J5/P5
Pos#
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
Row Z
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
NP-IN/C
Np-IN/C
NP-In/C
NP-IN/C
NP-In/C
Row A
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
Row B
Row C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
TNV3-SELV
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/CT
Row D
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
TNV1IN/C
IN/C
SELV
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IIN/C
SELVIN/C
IN/C
IN/C
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
S
Row E
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
IN/C
Row F
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
SELV
GND-INC
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
GND-IN/C
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
Per CompactPCI® Computer Telephony Specification PICMG 2.5 R1.0, April 3, 1998, Table 12
284
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2.0 mm ERmet Hard Metric Connector System
PXI Generic Peripheral Slot Pinout
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row E
PXI_RSVA22
PXI_LBRO
PXI_LBL4
PXI_LBL2
PXI_TRIG3
PXI_TRIG2
PXI_TRIG1
PXI_BRSVA15
AD[35]
AD[38]
AD[42]
AD[45]
AD[49]
AD[52]
AD[56]
AD[59]
AD[63]
C/BE[5]#
V[I/0]
PXI_LBR7
PXI_LBR11
PXI_LBL9
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL#
3.3V
Row D
PXI_RSVB22
GND
PXI_LBR5
GND
PXI_TRIG4
GND
PXI_TRIGO
GND
AD[34]
GND
AD[41]
GND
AD[48]
GND
AD[55]
GND
AD[62]
GND
PXI_BRSVB4
GND
PXI_LBR12
GND
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
SDONE
GND
FRAME#
Row B
PXI_RSVD22
PXI_LBR2
GND
PXI_LBL4
GND
PXI_STAR
GND
PXI_LBL6
GND
AD[37]
GND
AD[44]
GND
AD[51]
GND
AD[58]
GND
C/BE[4]#
GND
PXI_LBR9
PXI_LBL7
PXI_LBL11
3.3V
AD[0]
5V
AD[6]
M66EN
AD[11]
GND
PAR
GND
STOP#
GND
Row A
PXI_RSVE22
PXI_LBR3
PXI_LBL1
PXI_LBL5
PXI_TRIG6
PXI_CLK10
PXI_TRIG7
PXI-LBR6
AD[32]
AD[36]
AD[39]
AD[43]
AD[46]
AD[50]
AD[53]
AD[57]
AD[60]
PAR64
C/BE [6]#
PXI_LBR10
PXI_LBL8
PXI_LBL12
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
PMC Slot
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
AD[17]
GND
IDSEL
GND
AD[29]
GND
BRSVP1B5
GND
INTB#
5V
-12V
Row C
PXI_RSVC22
PXI_LBR1
PXI_LBLO
PXI_LBL3
PXI_TRIG5
PRST#
DEG#
FAL#
AD[33]
V(I/0)
AD[40]
V[I/0]
AD[47]
V[I/0]
AD[54]
V[I/0]
AD[61]
V[I/0]
C/BE[7]#
PXI_LBR8
SYSEN#
PXI_LBL10
ENUM#
V[1/0]
AD93]
3.3V
AD[8]
V[1/0]
AD[14]
3.3V
SBO#
V[I/0]
IRDY
Key Area
AD[16]
3.3V
AD[23]
V[I/0]
AD[28]
3.3V
RST#
V[I/0]
INTC#
TMS
TRST#
AD[8]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ#
BRSVP1A5
BRSVP1A4
INTA#
TCK
5V
GND
AD[20]
GND
AD[25]
GND
CLK
GND
INTP
5V
TDO
+12V
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT#
INTS
INTD#
TDI
5V
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
PIN
Row F
Row E
Row D
Row C
Row B
Row A
PMC Slot
2.0 mm ERmet
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
P2/J2
C
O
N
N
E
C
T
O
R
P1/J1
C
O
N
N
E
C
T
O
R
Per PXI Specification R1.0 August 20, 1997, Table 4.9
Signals in Bold are PXI specific
Catalog E 074484
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Edition 9
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2.0 mm ERmet Hard Metric Connector System
PXI System Slot Pinout
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
Z
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
A
PXI_RSVA22
CLK6
CLK5
GND
PXI_TRIG3
PXI_TRIG2
PXI_TRIG1
PXI_BRSVA15
AD[35]
AD[38]
AD[42]
AD[45]
AD[49]
AD[52]
AD[56]
AD[59]
AD[63]
C/BE[5]#
V[I/0]
CLK4
CLK2
CLK1
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL#
3.3V
B
PXI_RSVB22
GND
GND
GND
PXI_TRIG4
GND
PXI_TRIG0
GND
AD[34]
GND
AD[41]
GND
AD[48]
GND
AD[55]
GND
AD[62]
GND
PXI_BRSVB4
GND
CLK3
GND
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
SDONE
GND
FRAME#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ#
BRSVP1A5
BRSVP1A4
INTA#
TCK
5V
A
AD[17]
GND
IDSEL
GND
AD[29]
GND
BRSVP1B5
GND
INTB#
5V
-12V
B
C
PXI_RSVC22
RSV
RSV
RSV
PXI_TRIG5
PRST#
DEG#
FAL#
AD[33]
V[I/0]
AD[40]
V[I/0]
AD[47]
V[I/0]
AD[54]
V[I/0]
AD[61]
V[I/0]
C/BE[7]#
GNT3#
SYSEN#
REQ1#
ENUM#
V[1/0]
AD[3]
3.3V
AD[8]
V[I/0]
AD[14]
3.3V
SBO#
V[I/0]
IRDY#
Key Area
AD[16]
3.3V
AD[23]
V(I/O)
AD[28]
3.3V
RST#
V(I/O)
INTC#
TMS
TRST#
C
D
PXI_RSVD22
RSV
GND
RSV
GND
REQ6#
GND
REQ5#
GND
AD[37]
GND
AD[44]
GND
AD[51]
GND
AD[58]
GND
C/BE[4]#
GND
REQ4#
GNT2#
GNT1#
3.3V
AD[0]
5V
AD[6]
M66EN
AD[11]
GND
PAR
GND
STOP#
GND
E
PXI_RSVE22
RSV
RSV
RSV
PXI_TRIG6
GNT6#
PXI_TRIG7
GBT5#
AD[32]
AD[36]
AD[39]
AD[43]
AD[46]
AD[50]
AD[53]
AD[57]
AD[60]
PAR64
C/BE[6]#
GNT4#
REQ3#
REQ2#
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]
PERR#
LOCK#
TRDY#
F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
AD[20]
GND
AD[25]
GND
CLK
GND
INTP
5V
TDO
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD [27]
AD [31]
GNT#
INTS
INTD#
TDI
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
P2/J2
C
O
N
N
E
C
T
O
R
P1/J1
C
O
N
N
E
C
T
O
R
Per PXI Specification R1.0 August 20, 1997, Table 4.10
Signals in Bold are PXI specific
286
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2.0 mm ERmet Hard Metric Connector System
PXI Star Trigger Slot Pinout
Z
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
A
PXI_RSVA22
PXI_LBRO
PXI_LBR4
PXI_STAR2
PXI_TRIG3
PXI_TRIG2
PXI_TRIG1
PXI_BRSVA15
AD[35]
AD[38]
AD[42]
AD[45]
AD[49]
AD[52]
AD[56]
AD[59]
AD[63]
C/BE[5]#
V(I/O)
PXI_LBR7
PXI_LBR11
PXI_STAR9
5V
AD[1]
3.3V
AD[7]
3.3V
AD[12]
3.3V
SERR#
3.3V
DEVSEL#
3.3V
B
PXI_RSVB22
GND
PXI_LBR5
GND
PXI_TRIG4
GND
PXI_TRIG0
GND
AD[34]
GND
AD[41]
GND
AD[48]
GND
AD[55]
GND
AD[62]
GND
PXI_BRSVB4
GND
PXI_LBR12
GND
REQ64#
5V
AD[4]
GND
AD[9]
GND
AD[15]
GND
SDONE
GND
FRAME#
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Z
AD[18]
AD[21]
C/BE[3]#
AD[26]
AD[30]
REQ#
BRSVP1A5
BRSVP1A4
INTA#
TCK
5V
A
AD[17]
GND
IDSEL
GND
AD[29]
GND
BRSVP1B5
GND
INTB#
5V
-12V
B
C
PXI_RSVC22
PXI_LBR1
PXI_STARO
PXI_STAR3
PXI_TRIG5
PRST#
DEG#
FAL#
AD[33]
V[I/0]
AD[40]
V[I/0]
AD[47]
V(I/O)
AD[54]
V(I/O)
AD[61]
V(I/O)
C/BE[7]#
PXI_LBR8
SYSEN#
PXI_STAR10
ENUM#
V[I/0]
AD[3]
3.3V
AD[8]
V[I/0]
AD[14]
3.3V
SBO#
V(I/O)
IRDY#
Key Area
AD[16]
3.3V
AD[23]
V[I/0]
AD[28]
3.3V
RST#
V[I/0]
INTC#
TMS
TRST#
C
D
PXI_RSVD22
PXI_LBR2
GND
PXI_STAR4
GND
PXI_CLK10_IN
GND
PXI_STAR6
GND
AD[37]
GND
AD[44]
GND
AD[51]
GND
AD[58]
GND
C/BE[4]#
GND
PXI_LBR9
PXI_STAR7
PXI_STAR11
3.3V
AD[0]
5V
AD[6]
M66#N
AD[11]
GND
PAR
GND
STOP#
GND
E
PXI_RSVE22
PXI_LBR3
PXI_STAR1
PXI_STAR5
PXI_TRIG6
PXI_CLK10
PXI_TRIG7
PXILBR6
AD[32]
AD[36]
AD[39]
AD[43]
AD[46]
AD[50]
AD[53]
AD[57]
AD[60]
PAR64
C/BE[6]#
PXI_LBR10
PXI_STAR8
PXI_STAR12
5V
ACK64#
AD[2]
AD[5]
C/BE[0]#
AD[10]
AD[13]
C/BE[1]#
PERR#
LOCK#
TRDY#
F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
AD[20]
GND
AD[25]
GND
CLK
GND
INTP
5V
TDO
+12V
D
C/BE[2]#
AD[19]
AD[22]
AD[24]
AD[27]
AD[31]
GNT#
INTS
INTD#
TDI
5V
E
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
F
2.0 mm ERmet
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
PIN
P2/J2
C
O
N
N
E
C
T
O
R
P1/J1
C
O
N
N
E
C
T
O
R
Per PXI Specification R1.0 August 20, 1997, Table 4.11
Signals in Bold are PXI specific
Catalog E 074484
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Edition 9
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287
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2.0 mm ERmet Hard Metric Connector System
VME64x on CompactPCI® J4/P4 and J5/P5 Pin Assignments
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
8
7
6
5
4
3
2
1
A
ResU(1)
ResU(1)
GND
MPR
MCLK
GND
MSD
MMD
GND
MCTL
BCLR*
GND
BBSY*
BGOIN*
GND
BGOOUT*
BG1IN*
GND
BG1OUT*
BG2IN*
GND
BG2OUT*
BG3IN*
GND
BG3OUT*
BRO*
GND
BR1*
BR2*
GND
BR3*
LI/I*(1)
LI/0*(1)
B
+3.3V
ACFAIL*
SYSCLK
+3.3V
SYSFAIL
SYSRST*
+3.3V
AM5
WRITE*
+3.3V
AMO
AMI
+3.3V
AM2
AM3
GAP*
AM4
ResB[z13](2)
GA2*
RsvB[z15]
RsvB[z17]
+5V
RsvB[z19]
RsvB[z21]
+5V
RsvB[z23]
RsvB[z25]
+5V
SERA
SERB
-12V
SBB
SBA
IACK*
IRQ5*
GND
UD
UD
UD
UD
UD
UD
UD
UD
IACKIN*
IRQ4*
GND
UD
UD
UD
UD
UD
UD
UD
UD
PIN
A
B
C
DOO
+3.3V
D10
D03
+3.3V
D13
D06
+3.3V
A23
A22
+V1
A17
A16
-V1
A13
A05
GAO*
A10
A02
GA3*
A25
A26
+5V
A31
D16
+5V
D21
D22
+5V
D27
D28
VPC(2)
ResU(1)
Key Area
IACKOUT*
IRQ3*
GND
UD
UD
UD
UD
UD
UD
UD
UD
C
D
DO8
DO9
+3.3V
D11
D12
+3.3V
D14
D15
+3.3V
A21
A19
+V2
A15
A14
-V2
A12
A11
GA1*
A09
A08
GA4*
A27
A29
+5V
D17
D19
+5V
D23
D25
+12V
D29
D31
GND(3)
E
DO1
DO2
BERR*
D04
D05
RTRY1*
D07
LWORD*
DS1*
A20
A18
DSO*
A07
A06
DTACK*
A04
A03
AS*
A01
A24
RETRY*
A28
A30
RsvB[d19]
D18
D20
RsvB[d21]
D24
D26
RsvB[d23]
D30
ResB[d25](2)
ResB[z27](2)
F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
IRQ7*
IRQ2*
GND
UD
UD
UD
UD
UD
UD
UD
UD
IRQ6*
IRQ1*
GND
UD
UD
UD
UD
UD
UD
UD
UD
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
D
E
F
P5/J5
C
O
N
N
E
C
T
O
R
P4/J4
C
O
N
N
E
C
T
O
R
Per PICMG 2.2 R1.0 August 7, 1998, Table 1
Notes:
(1) These signals are not bused (feed through the backplane).
(2) ResB is the ResBus (reserved bused) signal pins
Connector Key is Reseda Green (ERNI P/N 043346 male, 043336 female)
288
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Seite 289
2.0 mm ERmet Hard Metric Connector System
PMC Mezzanine Card I/O Pin Assignments
2.0 mm ERmet
Single PMC’s I/O Signal Mapping to CompactPCI® 3U J2 Connector
PIN
Row F
Row E
Row D
22
GND
UD
UD
21
GND
UD
UD
20
GND
UD
UD
19
GND
UD
UD
18
GND
UD
UD
17
GND
UD
UD
16
GND
UD
UD
15
GND
UD
UD
14
GND
+5V
+5V
13
GND
1
2
12
GND
6
7
11
GND
11
12
10
GND
16
17
9
GND
21
22
8
GND
26
27
7
GND
31
32
6
GND
36
37
5
GND
41
42
4
GND
46
47
3
GND
51
52
2
GND
56
57
1
GND
61
62
PIN
Row F
Row E
Row D
Per PICMG 2.3 R1.0 August 7, 1998, Table 1
Notes: 1. Entries in table are of the PMC Jn4 pin number.
2. UD are the remaining user defined I/0 pins that can be used for other I/O functions.
Row C
UD
UD
UD
UD
UD
UD
UD
UD
+3.3V
3
8
13
18
23
28
33
38
43
48
53
58
63
Row C
Row B
UD
UD
UD
UD
UD
UD
UD
UD
+3.3V
4
9
14
19
24
29
34
39
44
49
54
59
64
Row B
Row A
UD
UD
UD
UD
UD
UD
UD
UD
+3.3V
5
10
15
20
25
30
35
40
45
50
55
60
VI/O
Row A
J2
C
O
N
N
E
C
T
O
R
Dual PMC Slot’s I/O Signal Mapping to CompactPCI® 6U J3/P3 & J4/P4 Connectors
PIN
9
8
7
6
5
4
3
2
1
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
Row B
GND
4
9
14
19
24
29
34
39
44
49
54
59
64
+3.3V
4
9
14
19
24
29
34
39
44
49
54
59
64
Row A
GND
5
10
15
20
25
30
35
40
45
50
55
60
VI/0
+3.3V
5
10
15
20
25
30
35
40
45
50
55
60
VI/O
PMC Slot
PIN
Row F
Row E
Row D
Row C
Row B
Per PICMG 2.3 R1.0 August 7, 1998, Table 2
Notes: 1. Entries in table are of the PMC Jn4 pin number.
Row A
PMC Slot
Catalog E 074484
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
04/10
Row E
GND
1
6
11
16
21
26
31
36
41
46
51
56
61
+5V
1
6
11
16
21
26
31
36
41
46
51
56
61
Row D
GND
2
7
12
17
22
27
32
37
42
47
52
57
62
+5V
2
7
12
17
22
27
32
37
42
47
52
57
62
Edition 9
Row C
GND
3
8
13
18
23
28
33
38
43
48
53
58
63
+3.3V
3
8
13
18
23
28
33
38
43
48
53
58
63
www.erni.com
A
A
A
A
A
A
A
A
A
A
A
A
A
A&B
B
B
B
B
B
B
B
B
B
B
B
B
B
J4
C
O
N
N
E
C
T
O
R
J3
C
O
N
N
E
C
T
O
R
289
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2.0 mm ERmet Hard Metric Connector System
PMC Mezzanine Card I/O Pin Assignments
Single PMC Slot’s I/O Signal Mapping to CompactPCI® J5/P5 Connector
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
PIN
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row F
Row E
1
6
11
16
21
16
31
36
41
46
51
1
6
11
16
21
26
31
36
41
46
51
Row E
Row D
2
7
12
17
22
17
32
37
42
47
52
2
7
12
17
22
27
32
37
42
47
52
Row D
Row C
3
8
13
18
23
18
33
38
43
48
53
3
8
13
18
23
28
33
38
43
48
53
Row C
Row B
4
9
14
19
24
19
34
39
44
49
54
4
9
14
19
24
29
34
39
44
49
54
Row B
Row A
5
10
15
20
25
30
35
40
45
50
55
5
10
15
20
25
30
35
40
45
50
55
Row A
J5
C
O
N
N
E
C
T
O
R
Per PICMG 2.3 R1.0 August 7, 1998, Table 3
Notes: 1. Entries in table are of the PMC Jn4 pin number.
2. UD are the remaining user defined I/0 pins that can be used for other I/O functions.
Dual PMC Slot’s I/O Signal Mapping to CompactPCI® J5/P5 Connector
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
PIN
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row F
Row E
1
6
11
16
21
16
31
36
41
46
51
1
6
11
16
21
26
31
36
41
46
51
Row E
Row D
2
7
12
17
22
17
32
37
42
47
52
2
7
12
17
22
27
32
37
42
47
52
Row D
Row C
3
8
13
18
23
18
33
38
43
48
53
3
8
13
18
23
28
33
38
43
48
53
Row C
Row B
4
9
14
19
24
19
34
39
44
49
54
4
9
14
19
24
29
34
39
44
49
54
Row B
Row A
5
10
15
20
25
30
35
40
45
50
55
5
10
15
20
25
30
35
40
45
50
55
Row A
PMC Slot
A
A
A
A
A
A
A
A
A
A
A
B
B
B
B
B
B
B
B
B
B
B
PMC Slot
J5
C
O
N
N
E
C
T
O
R
Per PICMG 2.3 R1.0 August 7, 1998, Table 4
Notes:
1. Entries in table are of the PMC Jn4 pin number.
290
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04/10
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11.04.2010
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Seite 291
2.0 mm ERmet Hard Metric Connector System
IP Mezzanine Module I/O Pin Assignments
2.0 mm ERmet
I/O Signal Mapping to CompactPCI® J2 Connector
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
PIN
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row F
Row E
B5
B10
B15
B20
B25
B30
B35
B40
B45
B50
+5V
A5
A10
A15
A20
A25
A30
A35
A40
A45
A50
+5V
Row E
Row D
B4
B9
B14
B19
B24
B29
B34
B39
B44
B49
+5V
A4
A9
A14
A19
A24
A29
A34
A39
A44
A49
+5V
Row D
Row C
B3
B8
B13
B18
B23
B28
B33
B38
B43
B48
+3.3V
A3
A8
A13
A18
A23
A28
A33
A38
A43
A48
+3.3V
Row C
Row B
B2
B7
B12
B17
B22
B27
B32
B37
B42
B47
+3.3V
A2
A7
A12
A17
A22
A27
A32
A37
A42
A47
+3.3V
Row B
Row A
B1
B6
B11
B16
B21
B26
B31
B36
B41
B46
+3.3V
A1
A6
A11
A16
A21
A26
A31
A36
A41
A46
+3.3V
Row A
IP Module
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
J2
C
O
N
N
E
C
T
O
R
IP Module
Per PICMG 2.4 R1.0 August 7, 1998, Table 1
Catalog E 074484
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2.0 mm ERmet Hard Metric Connector System
IP Mezzanine Module I/O Pin Assignments
I/O Signal Mapping to CompactPCI® J5 and J4 Connector
PIN
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
25
24
23
22
21
20
19
18
17
16
15
12 – 14
11
10
9
8
7
8
7
6
5
4
3
2
1
PIN
Row F
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row E
D5
D10
D15
D20
D25
D30
D35
D40
D45
D50
+5V
C5
C10
C15
C20
C25
C30
C35
C40
C45
C50
+5V
B5
B10
B15
B20
B25
B30
B35
B40
B45
B50
+5V
Row D
D4
D9
D14
D19
D24
D29
D34
D39
D44
D49
+5V
C4
C9
C14
C19
C24
C29
C34
C39
C44
C49
+5V
B4
B9
B14
B19
B24
B29
B34
B39
B44
B49
+5V
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
Row F
A5
A10
A15
A20
A25
A20
A25
A30
A35
A40
A45
A50
+5V
Row E
A4
A9
A14
A19
A24
A19
A24
A29
A34
A39
A44
A49
+5V
Row D
Row C
D3
D8
D13
D18
D23
D28
D33
D38
D43
D48
+3.3V
C3
C8
C13
C18
C23
C28
C33
C38
C43
C48
+3.3V
B3
B8
B13
B18
B23
B28
B33
B38
B43
B48
+3.3V
Key Area
A3
A8
A13
A18
A23
A18
A23
A28
A33
A38
A43
A48
+3.3V
Row C
Row B
D2
D7
D12
D17
D22
D27
D32
D37
D42
D47
+3.3V
C2
C7
C12
C17
C22
C27
C32
C37
C42
C47
+3.3V
B2
B7
B12
B17
B22
B27
B32
B37
B42
B47
+3.3V
Row A
D1
D6
D11
D16
D21
D26
D31
D36
D41
D46
+3.3V
C1
C6
C11
C16
C21
C26
C31
C36
C41
C46
+3.3V
B1
B6
B11
B16
B21
B26
B31
B36
B41
B46
+3.3V
IP Module
IP-D
IP-D
IP-D
IP-D
IP-D
IP-D
IP-D
IP-D
IP-D
IP-D
A2
A7
A12
A17
A22
A17
A22
A27
A32
A37
A42
A47
+3.3V
Row B
A1
A6
A11
A16
A21
A16
A21
A26
A31
A36
A41
A46
+3.3V
Row A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-A
IP-C
IP-C
IP-C
IP-C
IP-C
IP-C
IP-C
IP-C
IP-C
IP-C
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
IP-B
J5
C
O
N
N
E
C
T
O
R
J4
C
O
N
N
E
C
T
O
R
IP Module
Per PICMG 2.4 R1.0 August 7, 1998, Table 2
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2.0 mm ERmet
BELLCORE Requirements Summary
In accordance with Bellcore GR-1217
UNCONTROLLED ENVIRONMENT
CENTRAL OFFICE
Shocks and Vibration - 24 hr., 18 shocks
Temperature Life - 500 hr., 85°C
Humidity and Temp Cycle - 25°C – 65°C
MFG TEST - 10 days, less gas concentration
Shocks and Vibration - 24 hr., 18 shocks
Temperature Life - 1,000 hr., 105°C
Humidity and Temp Cycle - 5°C – 85°C
MFG TEST - 20 days, more gas concentration
Level I
• Commercial Grade
• Vendor Qualification Process
• Commercial Grade
• Vendor Qualification Process
Level II
Level I with:
• Tested for less than 1 in 1,000 failures over
10 year life
• Monitor parametric attributes
• Approved by OEM
• Ship to stock allowed
• Requalify every 5 years
Level I with:
• Tested for less than 1 in 1,000 failures over
10 year life
• Monitor parametric attributes
• Approved by OEM
• Ship to stock allowed
• Requalify every 5 years
Level III
Level II with:
• Tested for less than 1 in 10,000 failures over
25 year life
• Monitor parametric attributes
• Ship to stock allowed, provided that
connector manufacturer’s data are reviewed
on lot-on-lot basis
• Requalify every 3 years
Level II with:
• Tested for less than 1 in 10,000 failures over
25 year life
• Monitor parametric attributes
• Ship to stock allowed, provided that
connector manufacturer’s data are reviewed on
lot-on-lot basis
• Requalify every 3 years
Prequalification Tests for
Quality Level II, Level III
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Glossary Of Terminology
Annular Ring – The circular area around a hole that is measured by the difference between the radius of the wall of the
hole, subtracted from the radius of the clearance or pad
around the hole.
ANSI – Abbreviation for American National Standards Institute.
Artwork – The representation of the electrical layout of a
printed circuit on a transparency.
Attenuation – When a signal travels along the bus, its amplitude decreases due to energy losses from heating, radiation,
and so forth.
AWG – Abbreviation for American Wire Gage. A particular
series of specified diameters and thicknesses established as a
standard in the U.S.A. and used for nonferrous sheets, rods
and wires.
Backplane – (1) A wiring board usually constructed as a
printed circuit, used in micro and mini computers to provide the
required connections between logic, memory and I/O modules.
(2) A two-sided or multilayer printed circuit board into which
function cards can be plugged. The backplane transfers signals between the function cards. Mounted on the component
side of the backplane are connectors into which function cards
can be plugged.
On the solder side of the backplane are termination points
(studs, power bugs, quick disconnects) for the distribution of
power and ground.
Bellcore – Bell Research Corporation, originally the research
division for AT&T.
Conductor Spacing – The distance between
adjacent traces on a printed wiring board.
Crosstalk – (1) The interaction observed due to electromagnetic coupling of adjacent conductors.
(2) A false signal picked up by a signal line (in an inductive manner) from an adjacent signal line.
Current – The net transfer of electric charge, per unit time,
along a conductor. An amount equal to the voltage/resistance
and measured in Amperes.
Data Bus – A bus structure used specifically to transmit data,
or bits of information.
Date Code – Stamped or printed on a component the week
and year the component was made (i.e. 9023 is the 23rd week
of the year 1990, or June 3rd-7th, 1990).
Daughter Card – Same as function card or function board.
Decommitted – To physically remove material from an area of
a board so as to break the electrical connection to that plane.
Decouple – To prevent transfer or feedback of energy from
one circuit to another.
Dielectric – (1) A material which is an electrical insulator that
can sustain an electrical field with minimum power loss.
(2) Any insulating medium that intervenes between two conductors.
Dielectric Constant – The property of a material that governs
the propagation delay of a signal it surrounds, denoted by er.
Bus – A circuit over which data or power is transmitted.
Bus Structure – A set of rules governing the circuit design of a
system such as: CompactPCI®, VME, Multibus I, Multibus II
and Q-Bus, to name a few.
Characteristic Impedance – Impedance is referred to as Zo,
in ohms. It is the resistance seen by a digital signal and is measured between the signal line and the reference plane.
This impedance is a function of the signal line geometry and is
independent of the line length. Impedance is the key parameter
which interrelates all performance characteristics of the backpanel, including delay, noise and distributed capacitance.
CompactPCI ® – A bus structure developed by the PICMG
based on the desktop PCI architecture.
Compliant – A pin whose physical structure is designed to
elastically deform upon insertion into a hole.
Component Side – The side of a printed wiring board or
backplane into which connectors, resistors, capacitors and so
forth are inserted.
Component Density – The ratio of the number of components to a given area of a board.
DIN – (1) Stands for Deutsches Institut fur Normung, a German
organization which established many mechanical specifications
for connectors and packaging. (2) Vernacular for Standard
European connector having 96 pins arranged in 3 rows of 32
pins each. The rows are labeled A, B, C.
DIP – Abbreviation for Dual-In-line Package. A device that has
two rows or parallel pins. Usually the pins in each row are on
.100" centers.
Discrete Resistor – An individual resistor, as opposed to a
resistor network.
Distributed Capacitance – Distributed capacitance, referred
to as Co, is the amount of capacitance per unit length of a signal line.
ECL – Abbreviation for Emitter-Coupled-Logic, a form of current-mode logic in which the emitters of two transistors are
connected to a current carrying resistor in such a way that only
one will turn on at time.
ECTF – The Enterprise Computer Telephony Forum is a
trade association that has developed a number of specifications related to computer telephony. Their web address is:
http://www.ectf.org.
Conductor Width – The width of a given trace.
EIA – Electronics Industry Association.
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Glossary Of Terminology
Etch – To incise an area of a printed wiring board by immersing
the board in an acid batch. The parts of the board not covered
with an acid-resistant coating will be eroded.
ERNIPRESS – The particular compliant section design utilized by ERNI for many DIN 41612 and D-Sub pressfit contacts. This coined, elastic section provides a very reliable
gas tight connection with the plated through hole in the
backplane or daughter card.
Eye of the Needle – This is the compliant section design
utilized by ERNI for our 2 mm ERmet pressfit contacts. This
pierced and coined elastic section provides a very reliable
gas tight connection with the plated through hole in the
backplane or daughter card.
Function Card – A printed circuit board that plugs into a slot
position of a backplane. Function cards can be custom
designed by the user or bought as a standard off-the-shelf
item. A series of these cards can make up a system or subsystem to run machinery or many other electronic functions.
Microstrip – (1) The name given to a signal line referenced
above a single ground plane. (2) The outer etched portion of a
backplane transmission line.
Output – The current, voltage, power, or signal which a circuit
or device delivers.
Terminals where a device delivers its information.
Pad – The circular area that commits a hole to an uncommitted layer or trace.
PCMCIA – (Personal Computer Memory Card International
Association). A standard for removable cards.
PICMG – The PCI Industrial Computer Manufacturer’s
Group is a trade association that has developed a number
of specifications related to personal computer architectures
and CompactPCI. Their web address is
http://www.picmg.org.
Pin-out – A term used to describe the actual connections for
each pin of a connector on a printed wiring board.
GND – An abbreviation for ground. The potential referred to as
zero volts. An electrical connection between any circuit and the
reference potential.
Plated through-hole – A hole in a printed wiring board, used
to commit external or internal layers to one another produced
by electro deposition of a conductive pattern.
Ground Guard – The pair of traces which surround a third
conductor to minimize crosstalk.
Plating – To form a thin, adherent layer of material (usually
metal) on an object.
Ground Plane – A common conductive surface that receives
and returns power/signal transmissions.
PMC – PCI mezzanine card interface, defined by IEEE 1386
Ground Shield – A conductor (usually a plane), at some reference potential (e.g. zero volts), which surrounds some other
insulated conductor.
IEC 61076-4-101 – Global specification that governs 2mm
Hard Metric equipment practices.
IEC 917 (DIN 43355) – Defines a basic pitch of 0.5 mm, with n
x 0.5 mm as the multiple pitch, and a system unit of 25 mm.
This, in turn, relates to Hard Metric Equipment practices, IEE
1301 and DIN 43356, used for mechanical arrangement of
electrical/electronic equipment, including associated board layout and connections.
IEEE – Abbreviation for the Institute of Electronic and Electrical
Engineers.
Impedance – Resistance of a signal line measured in ohms.
One of the important electrical characteristics of a backplane,
impedance is determined by the physical dimensions of trace
width, dielectric thickness, dielectric constant, and so forth.
Inductance – The ratio of the voltage to the rate of change of
current in a circuit (V/∆L).
Layer – A plane in a printed wiring board which has a copper
covering in some specified pattern (e.g. plane, traces and pads).
04/10
Pressfit – An interference connection used in the assembly
process to eliminate the need for solder to make the electrical
connection.
Propagation Delay – (1) Referred to as tpd, commonly
expressed in nanoseconds per inch (ns/in.). It is the time
required for a pulse to travel through a transmission line system. (2) The time it takes for a signal to spread or distribute
across an entire circuit.
Rack – (See Subrack) – A sheet metal assembly that is made
up of mounting bars and side plates to which a backplane can
be mounted and printed wiring boards can be inserted
Resistance – The opposition that a material or device offers to
the flow of current, equal to the voltage drop across the element, divided by the current through the element.
I/O – Abbreviation for input/output.
Catalog E 074484
2.0 mm ERmet
EMI – Electromagnetic interference.
Edition 9
RFI – Radio Frequency Interference.
Risetime – Often designated as tr, in picoseconds. It is the
time it takes the signal to transition from 10 percent to 90 percent of its' final value.
Skew – The time difference between the arrival of two related
signals, often due to differences in their propagation paths.
Shroud – A male connector body designed to fit over the
extended tails of a long tail connector which allows a female
connector to be mated from the rear side for midplane or rear
I/O applications.
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Glossary Of Terminology
Signal – An electrical pulse which conducts across a backplane.
TTL – Transistor-Transistor Logic. A logic circuit containing two
transistors, for driving large output capacitances at high speed.
Solder or Extended Tail – A term used to specify the length
of the pins on any connector. Typically the pins will protrude
through the printed wiring board. Extended pins extend much
further.
Two Sided – A printed wiring board with only the outer layers
containing traces. This product may or may not contain plated
through holes.
Solder Mask – The coating on a printed wiring board, placed
there for protection. Also aids in assembly and soldering.
U – An EIA unit of measurement equal to 1.75" for equipment
racks.
Un-terminated – Any bussed trace that is not connected.
S-Parameters – A popular mathematical representation of
high frequency characteristics of a component such as a
connector utilized for signal integrity measurement and analytical techniques. Often utilized in applications where
SPICE modeling is not practical.
SPICE – Software Program for Integrated Circuit Emulation.
One of several computer based techniques for simulating
the electrical performance of various circuit components
such as connectors and integrated circuits within a actual or
theoretical circuit configuration.
Stripline – (1) The name given to a signal, referenced between
two ground planes, at a defined spacing.
(2) The etched portion of a backplane transmission line that is
between two ground planes in a multilayer printed circuit board.
Subrack – A card cage assembly, usually designed to support
a backplane, card guides and daughter cards.
Terminated – A line or trace is considered terminated at any
point there is a resistor connected to it.
Tolerance – The permissible variations in the dimensions of
manufactured parts or electrical components.
Trace – The conductor that physically joins two or more points
on a printed wiring board.
Vcc – Typically, the collector voltage level for a transistor. The
designation of the primary voltage level on a printed wiring
board, usually at the potential of +5 volts.
Via – A plated through-hole that is there for the sole purpose of
conducting a signal trace or potential from one layer of the
printed wiring board to another.
VITA – The VME International Trade Association is a trade
association that supports VME and other imbedded industry computer manufacturers. It also supports an ANSI recognized standards producing organization, the VSO. VITA’s
web address is http://www.vita.com
VME – The initials for the backplane bus architecture known as
Versa-Module -Europa.
Voltage – The electromotive force determined by the potential
difference between two conductors, measured in volts.
VSO – The VITA Standards Organization. An ANSI recognized standards producing organization concerned with
computer architectures. See VITA.
Wirewrap – A termination technique, used mainly to prototype
computers and computer systems, identifiable by the presence
of elongated pins to which signal wires and voltage and ground
connections can be created.
Transition Board - A perpendicular board assembly used
to plug into extended connector terminals on the rear side
of the backplane as in mid plane chassis designs or when it
is not desirable to utilize cables to interface to the rear connectors.
Transmission Line – A line is referred to as a transmission line
when its capacitance and inductance are distributed over the
line. Such a line will convey a signal without distortion and will
appear as a purely resistive input impedance.
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ERNI Customer Request Form
2.0 mm ERmet
If you need a specially loaded configuration for your application, please use this form. Fill out the grid diagram for the
connector style you desire (A, B, C, or M) and mark which
pin (A, B, C, D, E, F, K, L, M, N, P, Q, R, S or T) is required
in each position. Unloaded positions or rows may be left
blank.
Date Submitted
Connector Type A
Level 3
Level 2
Level 1
Top surface of backplane
Insulator
Thickness
Connector Type B
Sample Qty. Required
Date Samples Needed
Connector Type M
Connector Type C
Estimated Annual Usage
Special Markings or Other Requirements
■ Connector with location peg
■
Connector without location peg
Name:
Tel: _____________________________________ Ext. _____________
Title:
Fax:
Company:
E-mail:
Address: ________________________________________________________________________________________________________________
City: ____________________________________________________________ State: ___________________________ Zip: __________________
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2.0 mm ERmet Hard Metric Connector System
ERNI Customer Request Form
If you need a specially loaded configuration for your application, please use this form. Fill out the grid diagram for
the connector style you desire and mark which pin (A, B, C,
D, E, F, K, L, M, N, P, Q, R, S or T) is required in each position. Unloaded positions or rows may be left blank.
Date Submitted
Connector Type D
Level 3
Level 2
Level 1
Top surface of backplane
Insulator
Thickness
i
Connector Type E
Sample Qty. Required
Date Samples Needed
i
Connector Type F
Estimated Annual Usage
Special Markings or Other Requirements
i
■ Connector with location peg
■
Connector without location peg
Name:
Tel: _____________________________________ Ext. _____________
Title:
Fax:
Company:
E-mail:
Address: ________________________________________________________________________________________________________________
City: ____________________________________________________________ State: ___________________________ Zip: __________________
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2.0 mm ERmet Hard Metric Connector System
ERNI Customer Request Form
2.0 mm ERmet
If you need a specially loaded configuration for your application, please use this form. Fill out the grid diagram for
the connector style you desire and mark which pin (A, B, C,
D, E, F, K, L, M, N, P, Q, R, S or T) is required in each position. Unloaded positions or rows may be left blank.
Date Submitted
Monoblock Connector
Sample Qty. Required
Level 3
Level 2
Level 1
Top surface of backplane
Date Samples Needed
Insulator
Thickness
Estimated Annual Usage
Special Markings or Other Requirements
Name:
Tel: _____________________________________ Ext. _____________
Title:
Fax:
Company:
E-mail:
Address: ________________________________________________________________________________________________________________
City: ____________________________________________________________ State: ___________________________ Zip: __________________
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Applications
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Right Angle Male Connectors Type A for Daughter Cards
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with integrated
upper ground return shield and without integrated upper
ground return shield.
The ERmet type A right angle male connector has a multifunction cavity that incorporates pre-alignment guides and
accepts optional coding keys. This connector is designed to
be used alone or in conjunction with either a type B or C.
Sequential mating can be achieved by the use of the three
available configurations listed below. The available chicklet
configurations are denoted A, B, and C, to correspond with
the contact mating lengths found in ERmet 2mm male connectors. Within each chicklet, the contact mating length will
always be the same and the shield pins will always be Level 3.
All dimensions in mm
Dimensional Drawing
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The ERmet type A right angle male connector provides 110
contacts in a 5 row x 25 position (3 positions used by multifunction cavity), fully loaded configuration.
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Right Angle Male Connectors Type A for Daughter Cards
Ordering Information
Configuration
Shielding
Positions
Type A
without shield
25
923761
without shield
25
923760
without shield
25
923822
with shield
25
923763
with shield
25
923762
with shield
25
923823
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
Part Number
z
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
a
b
c
d
e
f
Type A
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
z
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
a
b
c
d
e
f
Type A
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
z
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
a
b
c
d
e
f
Type A
25 24 23 22 21 20 19 18 17 16 15
11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
8
7
6
5
4
3
2
1
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
z
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
a
b
c
d
e
f
Type A
25 24 23 22 21 20 19 18 17 16 15
z
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
a
b
c
d
e
f
Type A
25 24 23 22 21 20 19 18 17 16 15
11 10 9
z
C
C
C
C
C
C
302
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
a
b
c
d
e
f
Catalog E 074484
04/10
Edition 9
www.erni.com
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 303
2.0 mm ERmet Hard Metric Connector System
Right Angle Male Connectors Type B for Daughter Cards
The ERmet type B right angle male connector has an uninterrupted pin field with no multifunction cavity. This connector is
not designed to be used alone, but is intended to be used in
conjunction with either a type A or C ERmet connector.
Sequential mating can be achieved by the use of the three
available configurations listed below. The available chicklet
configurations are denoted A, B, and C, to correspond with
the contact mating lengths found in ERmet 2mm male connectors. Within each chicklet, the contact mating length will
always be the same and the shield pins will always be Level 3.
All dimensions in mm
Dimensional Drawing
Catalog E 074484
04/10
Edition 9
www.erni.com
303
2.0 mm ERmet
The ERmet type B right angle male connector provides 125
contacts in a 5 row x 25 position fully loaded configuration.
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with
integrated upper ground return shield and without integrated
upper ground return shield.
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 304
2.0 mm ERmet Hard Metric Connector System
Right Angle Male Connectors Type B for Daughter Cards
Ordering Information
Configuration
Shielding
Positions
Type B
without shield
25
923766
without shield
25
923764
without shield
25
923768
with shield
25
923767
with shield
25
923765
with shield
25
923769
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
Part Number
z
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
z
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
z
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
8
7
6
5
4
3
2
1
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
z
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
a
b
c
d
e
f
Type B
z
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
a
b
c
d
e
f
Type B
25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
z
C
C
C
C
C
C
304
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
a
b
c
d
e
f
Catalog E 074484
04/10
Edition 9
www.erni.com
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 305
2.0 mm ERmet Hard Metric Connector System
Right Angle Male Connectors Type C for Daughter Cards
The ERmet type C female connector has pre-alignment
guides. This connector can be used alone or in conjunction
with either a type A, B, L, M or N ERmet connector, however it
can only be installed at the lower end of a connector row.
Sequential mating can be achieved by the use of the three
available configurations listed below. The available chicklet
configurations are denoted A, B, and C, to correspond with
the contact mating lengths found in ERmet 2mm male connectors. Within each chicklet, the contact mating length will
always be the same and the shield pins will always be Level 3.
All dimensions in mm
Dimensional Drawing
Catalog E 074484
04/10
Edition 9
www.erni.com
305
2.0 mm ERmet
The ERmet type C male connector provides 55 contacts in a
5 row x 11 position fully loaded configuration.
The connector is designed for gas tight, pressfit installation
and is provided in two different configurations: with
integrated upper ground return shield and without integrated
upper ground return shield.
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 306
2.0 mm ERmet Hard Metric Connector System
Right Angle Male Connectors Type C for Daughter Cards
Ordering Information
Configuration
Shielding
Positions
Type C
without shield
11
923828
without shield
11
923830
with shield
11
923829
with shield
11
923831
with shield
11
923833
11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
Part Number
z
A
A
A
A
A
A
A
A
A
A
a
b
c
d
e
f
Type C
11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
B
z
B
B
B
B
B
B
B
B
B
B
a
b
c
d
e
f
Type C
11 10 9
8
7
6
5
4
3
2
1
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
A
A
A
A
A
C
11 10 9
8
7
6
5
4
3
2
1
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
B
B
B
B
B
C
8
7
6
5
4
3
2
1
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
z
A
A
A
A
A
C
A
A
A
A
A
C
a
b
c
d
e
f
Type C
z
B
B
B
B
B
C
B
B
B
B
B
C
a
b
c
d
e
f
Type C
11 10 9
z
C
C
C
C
C
C
306
C
C
C
C
C
C
C
C
C
C
C
C
a
b
c
d
e
f
Catalog E 074484
04/10
Edition 9
www.erni.com
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 307
2.0 mm ERmet Hard Metric Connector System
ERmet Thru Hole Reflow (THR) Female Connectors
2.0 mm ERmet
General
Technical Characteristics
In the case of modern boards with SMT population, 2.0 mm H.M.
ERmet thru hole reflow (THR) female connectors have been developed. The connectors have been designed for fully automatic
SMT assembly. Safe positioning before the SMT soldering process
is ensured by means of kinked terminations.
For fully automatic feed-in into the automatic assembly machines,
the connectors are supplied in a tray packaging. The high temperature resistant thermoplastic of the insulation body allows for the
use of all standard reflow processes.
•
•
•
•
•
•
Catalog E 074484
04/10
Edition 9
Pitch: 2.0 mm
Modules: A, B, C, AB
Current rating: 1.5 A (20 °C)
Air- and creepage distance: 0.6 mm
Mating cycles: > 250
Materials:
Insulator: LCP
Contact: Cu alloy
• Plating:
Mating area: Gold plated
Termination area: Sn
• PCB-Layout: conform to pressfit Female Connectors
• Tray packaging
www.erni.com
307
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 308
2.0 mm ERmet Hard Metric Connector System
ERmet Thru Hole Reflow (THR) Female Connectors
Ordering Information
Configuration
Number of Pins
Termination
Type A without Shield
110
THR
124698
Type A with Shield
110
THR
223214
Type AB without Shield
125
THR
123700
Type AB with Shield
125
THR
154876
Type AB 22 with Shield
110
THR
174402
Type B without Shield
125
THR
124699
Type B with Shield
125
THR
154875
Type B 22 without Shield
110
THR
123768
Type B 22 with Shield
110
THR
154872
Type B 19 without Shield
95
THR
154673
Type B 19 with Shield
95
THR
123796
Type C without Shield
55
THR
223385
Type C with Shield
55
THR
223386
308
Catalog E 074484
04/10
Edition 9
Partnumber
www.erni.com
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 309
2.0 mm ERmet Hard Metric Connector System
CompactPCI Connectors acc. to PIGMG 2.0 Rev. 3.0
Late in 1999 PCI Industrial Computer Manufacturers Group
(PICMG) introduced the new revision 3.0 of the CompactPCI Core Specification. Version 3.0 of this specification
comprises a.o. hot swap and computer telephony specifications such as pin sequencing. For CompactPCI, the
metric ERmet connectors are specified in accordance with
IEC 61076-4-101 which are available in build types A, B,
AB, and as monoblock versions. This new version of the
CompactPCI specification has the consequence a.o. that
for 3 HE backplanes on position P2 a male connector, build
type B with long connection pins for AB transfer and AB
Catalog E 074484
04/10
Edition 9
2.0 mm ERmet
General
shrouds are inserted into position rP2. At the rear card end,
on position rJ2, a sheilded female connector in build type
AB is specified. For 6 HE backplanes, on P3 and P5, the
male connector - build type B with long connection pins for AB transfer and AB shrouds have to be inserted into
positions rP3 and rP5. At the rear card end, on positions
rJ3 and rJ5, a shielded female connector, build type AB,
has been specified here. On P4, a blade contact strip, build
type A with long connection pins for A shroud and A shroud
frames, has been specified on position rP4. For the rear
card end, a shielded female connector, build type A, has
been defined on rJ4. For male connectors with shrouds in
build types A and B, the specification only requires a series
a grounding for the upper screening panel.
All necessary connectors required in accordance with the
new CompactPCI specification are available from ERNI. In
addition, for CompactPCI applications, ERNI also offers an
economic solution for a male connector with long terminal
pins, which is populated with shield contacts on row a only.
In addition to the new AB compatible male connectors for
CompactPCI, ERNI also supplies shrouds. Here, all shrouds
are available in four different heights (3.9 mm, 4.5 mm, 5.3
mm, and 6.1 mm) in order to adapt to the printed circuit
board thickness of the backplanes.
www.erni.com
309
0.5_ERmet-PowerM_301-327
11.04.2010
12:20 Uhr
Seite 310
2.0 mm ERmet Hard Metric Connector System
CompactPCI Connectors acc. to PIGMG 2.0 Rev. 3.0
Ordering Informations
Male Connectors For Backplanes
Location On
The PCB
Number Of
Positions*
Contact
Loading*
Part Number
Type A With Peg
Type A With Peg And Extended Terminals
For Shrouding
Type A Without Peg And With Extended Terminals
For Shrouding
Type B (AB Compatible) With Extended Terminals
For Shrouding
Type B (AB Compatible) With Extended Terminals
For Shrouding
Type B (AB Compatible) With Extended Terminals
For Shrouding
Type A With Extended Terminals For Shrouding
Type A With Peg And Extended Terminals
For Shrouding
Type A With Peg And Extended Terminals
For Shrouding
Type A Without Peg
Type A Without Peg And With Extended Terminals
For Shrouding
Type B (AB Compatible) With Extended Terminals
For Shrouding
Type B (AB Compatible) With Extended Terminals
For Shrouding
P1
25
CB---BC
923190
P1 Special
25
TP---PT
923197
P1
25
TS---ST
923342
P2, P5
22
TSSSSS-
923345
P3
19
TSSSSST
923341
P3
P4
19
25
TSSSSSS----ST
923346
923347
P4
25
TRRRRRT
064688
P4
P4 Telecom
25
25
TSSSSST
-------
103975
923160
P4 Telecom
25
-------
923212
P5 Telecom
22
-------
923339
P2, P5
22
TSSSSST
923340
Female Connectors For Daughter Cards
Location On
The PCB
Number Of
Positions*
Part Number
Type A With Shield, Without Peg
Type A With Split Shield, Partially Loaded
Type A With Split Shield, Partially Loaded
Type AB With Shield, Without Peg
Type AB With Shield, Without Peg
Type B With Upper Shield
Type B With Upper Shield
J1, J4
J4 Telecom
rJ4 Telecom
rJ2, rJ5
rJ3
J2, J5
J3
25
25
25
22
19
22
19
064176
140512
104697
114809
114810
064785
064784
Shrouds For Male Connectors
Location On
The PCB
Number Of
Positions*
Height
Part Number
Type A Shroud 25 Positions
Type A Shroud 25 Positions
Type A Shroud 25 Positions
Type A Shroud 25 Positions
Type AB Shroud 22 Positions
Type AB Shroud 22 Positions
Type AB Shroud 22 Positions
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
Type AB Shroud 19 Positions
rP1, rP4
rP1, rP4
rP1, rP4
rP1, rP4
rP2, rP5
rP2, rP5
rP2, rP5
rP3
rP3
rP3
rP3
25
25
25
25
22
22
22
19
19
19
19
14.35
14.95
15.75
16.55
14.95
15.75
16.55
14.35
14.95
15.75
16.55
114436
054795
054794
054793
114426
114427
114428
114487
114488
114489
114490
Code
Number
Color
Part Number
1567
3456
1248
2348
1278
3567
Brilliant Blue
Cadmium Yellow
Strawberry Red
Brilliant Blue
Cadmium Yellow
Strawberry Red
043347
043345
043350
043337
043335
043340
Coding Keys
Application
Coding Keys For Male Connectors And Shrouds
Coding Keys For Male Connectors And Shrouds
Coding Keys For Male Connectors And Shrouds
Coding Keys For Female Connectors
Coding Keys For Female Connectors
Coding Keys For Female Connectors
5.0 Volts P1
3.3 Volts P1
Telecom P4
5.0 Volts J1
3.3 Volts P1
Telecom J4
* Length = 50mm Pitch = 2.0mm => 50 / 2 = 25 Positions
**Cross Sectional Loading From Z To F
310
Catalog E 074484
04/10
Edition 9
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