Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling
Hand Tools
AMP CERTI-CRIMP Hand Tools are our top-of-the-line
crimping tools featuring the original ratcheted crimp control. All tools are designed to exacting specifications, and
manufactured using high quality materials to provide long
service life. Recommended for low production runs, repairs
and prototype work, and applications requiring consistent,
highly-reliable terminations. See Catalog 65780 for further
information.
Hand Tool Kit for SMA and Blindmate
Connectors
Part Number 59981-1
Typical CERTI-CRIMP Hand Tools with Integral
(Non-Interchangeable) Dies
Part Number 69477-1
for 50 Ohm BNC
Dual Crimp MIL Type
Connectors
5
RF Connectors
Part Number 220015-1
for 50 Ohm N Connectors
Part Numbers
CERTI-CRIMP Hand Tool with Interchangeable Dies
Item Description
Part Number 69710
Hand Tool
Plug Locator
(without Center Contact)
Plug Locator
(with Center Contact)
Jack Locator
Die Set for RG-402/U Cable
(.141 [3.58] O.D.)
Die Set for RG-405/U Cable
(.086 [2.18] O.D.)
Cutoff Fixture
Cable Dressing Fixture
Trimmer Tool
Cable Bend Fixture Assembly
Includes following 6 items:
Bend Segment, RG-402/U
(.125 [3.18] Radius)
Bend Segment, RG-402/U
(.250 [6.35] Radius)
Bend Segment, RG-405/U
Tool Holder
Limiting Pin
Conforming Block
Hex Wrench
Carrying Case
Insert, Case
59980-1
Military
(M22520/)
36-01
220220-2
36-06
AMP
220221-2
36-04
220222-2
36-05
312253-1
36-03
312253-2
36-02
311395-1
311396-1
312317-1
36-09
36-07
36-08
220224-1
36-10
311386-1
36-11
311386-2
36-12
311386-3
311392-1
307581-1
312067-1
21027-6
13126-1
13127-1
36-13
—
—
—
—
—
—
453
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling (Continued)
Solder Assembly Kit
Brass SMA Connectors
AMP
Part No.
Item Description
AMP Kit Part Number
1055420-1
M/A-COM Kit Part Number
2098-5066-54
For installation of SMA
connectors to .035 [0.89]
and .141 [3.58] diameter
semi-rigid cable
Center Contact Holder
Dielectric Insert Tool
Dielectric Recess Tool
Fixture Sub-Assembly
Inserts — .085 [2.16] (2)
Inserts — .141 [3.58] (2)
Inserts
Locator Tools
Locator Tool
Retainer Ring Pliers
Solder Gauge .010 [0.25]
Solder Gauge .015 [0.38]
Solder Gauge .018 [0.46]
Dielectric Insert Tool
1055454-1
1055448-1
1055447-1
1055450-1
1055439-1
1055441-1
1055440-1
1055442-1
1055443-1
1055446-1
1055451-1
1055449-1
91362-6
91362-1
91362-2
M/A-COM
Part No.
(Ref. Only)
2098-5221-10
2098-5215-02
2098-5214-02
2098-5217-54
2098-5206-54
2098-5208-54
2098-5207-54
2098-5209-02
2098-5210-02
2098-5213-02
2098-5218-02
2098-5216-54
2098-5516-02
2098-5212-02
2098-5211-02
Solder Gauge
Dielectric Recess Tool
Fixture Sub-Assembly
Retainer Ring Pliers
Center Contact Holder
Universal Compression
Crimp Tool
AMP Kit Part Number
1055835-1
M/A-COM Kit Part Number
2598-5200-54
AMP Universal Compression
Crimp Tool offers the ability
to rapidly produce cable
assemblies using solderless
compression crimp connectors with semi-rigid cables.
This universal assembly tool
kit will attach SMA, OSP, N
and TNC series connectors
to .141 [3.58], .085 [2.16]
and .250 [6.35] cable
quickly and consistently
with excellent mechanical
and electrical results.
The tool kit permits single
hand assembly. Anvils and
cable supports can be
quickly changed. Crimp
lengths can be adjusted
from .001 [.025] to 1.000
[25.4] in increments of .001
[.025]. Sharp radius bends
in cables are easily accommodated. The kit contains:
Crimp Frame
Anvil
Cable Supports
Description
Crimp Frame
Calibration Gauge
.141 [3.58] Cable Support
.085 [2.16] Cable Support
SMA Plug Anvil
SMA Jack Anvil
Type N Plug Anvil
Type N Jack Anvil
TNC Plug Anvil
TNC Jack Anvil
OSP Plug Anvil
OSP Jack Anvil
Gauge
AMP Part No.
1055831-1
1055832-1
1055833-1
1055834-1
1055836-1
1055837-1
1055838-1
1055839-1
1055840-1
1055841-1
1055842-1
1055843-1
M/A-COM Part No. (Ref. Only)
2598-5196-54
2598-5197-54
2598-5198-54
2598-5199-54
2598-5201-54
2598-5202-54
2598-5203-54
2598-5204-54
2598-5205-54
2598-5206-54
2598-5207-54
2598-5208-54
All tools may be purchased separately.
454
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling (Continued)
The kit contains:
MIL-C-22520/10-01
Equivalent Hex Crimp Kit
Description
AMP Kit Part Number
1055236-1
Crimp Tool
Die Change Tool
Hex Die — A, B, C
Hex Die — D, E
M/A-COM Kit Part Number
2098-0105-54
For military specified applications requiring quick and
efficient cable to connector
attachment. Five popular
hex die sizes are available
to crimp the outer cable
conductor to connector
housings.
AMP
Part Number
1060713-1
1060716-1
1060714-1
1060715-1
M/A-COM
Part Number
(Ref. Only)
9098-5105-54
5698-5014-54
5698-5015-54
5698-5016-54
All tools may be purchased separately.
For the assembly of SMA connectors,
Accessory Kit Part Number 1055421-1 is required.
Die Change Tool
Hex Die
Crimp Tool
A basic instruction sheet, included with the kit, aids in proper die selection
AMP
Hex Die
Part Number
M/A-COM
Hex Die
Part Number
(Ref. Only)
Hex Size
±.003 [0.08]
Die
1060714-1
5698-5015-54
B
C
D
1060715-1
5698-5016-54
E
5
178B & 196A
RF Connectors
.105
2.67
.213
5.41
.128
3.25
.178
4.52
.255
6.48
A
For Use With
RG/U Cable
55B, 58C, 141A, 142B,
223, 303, & 400
174, 174B, 179, 187A,
188A, & 316
180B, 195A, & 122
59, 62A, 71B, 210, & 302
Additional Dies Available
AMP
Hex Die
Part Number
M/A-COM
Hex Die
Part Number
(Ref. Only)
Hex Size
±.003 [0.08]
For Use With
RG/U Cable
1055270-1
2098-0323-54
.151
3.84
RD316 Double Braid
The kit contains:
SMA Crimp Tool
Accessory Kit
Description
AMP Kit Part Number
1055421-1
M/A-COM Kit Part Number
2098-5067-54
For installation of SMA
connectors to flexible
braided cable. Crimp type
SMA connectors require
Hex Crimp Kit Part Number
1055236-1.
Center Contact
Holder
Locator Tool
Locator Tool
Solder Gauge
.015 [0.38]
AMP
Part Number
M/A-COM Part Number
(Ref. Only)
1055454-1
2098-5221-10
1055446-1
1055451-1
2098-5213-02
2098-5218-02
91362-1
2098-5212-02
All tools may be purchased separately.
Locator Tool
Solder Gauge
Center Contact Holder
455
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling (Continued)
Stripping Tools
Semi-Rigid Cable Tooling
The hand-operated AMP Coaxial Cable Stripper features
interchangeable, color-coded blade cassettes and V-blocks
to accommodate 2- or 3-step stripping for cable diameters
ranging from 2.54 [.10] through 7.62 [.30]. You strip cable
by simply clamping and rotating the tool around the cable.
See Instruction Sheet IS 2766 for further information.
The tools listed here are designed specifically to strip and
terminate semi-rigid cable. These tools operate basically the
same as the flexible cable tools, in that they produce uniform
terminations time after time, without heat damage from
soldering.
For Use With
Connector Type
BNC Single Crimp
BNC Commercial and
UHF Miniature
UHF Standard
BNC MIL Type Dual Crimp
BNC Commercial Dual Crimp
Cable Benders for
Semi-Rigid Cable
Part Number 59980-1
Frame only — does not include
dies and locator
Tool No.
603995-1
603995-2
603995-3
603995-5
603995-6
Manual Trim and Point Tool
Tyco Electronics offers a
manual tool that performs
both trimming and pointing
operations. Tools are available for .141 [3.58] and .085
[2.16] diameter semi-rigid
cable. These hand-operated
tools are ideally suited for
engineering, small production runs or field use. They
feature tungsten carbide
cutters for durability up to
30 times longer than the life
of a high speed steel cutter.
Replacement cutters are
interchangeable and may
be purchased separately.
Hand Tool for BNC and TNC
Semi-Rigid Cable Connectors
AMP Tool
Part Number
M/A-COM Tool
Part Number
(Ref. Only)
1055811-1
2598-5116-54
1055815-1
2598-5120-54
1055823-1
2598-5137-54
1055824-1
2598-5138-54
Cable
Trim Length
RG-402/U
(.141 [3.58])
RG-405/U
(.085 [2.16])
RG-402/U
(.141 [3.58])
RG-405/U
(.085 [2.16])
.085 Fixed
2.16
.070 Fixed
1.78
Adjustable*
Adjustable*
*Adjustable trim length from .050 [1.27] to .140 [3.56].
Replacement Cutters
Trimmer: Part Number
1055813-1
Pointer: Part Number
1055814-1
Description
Cable Bender for
RG-405/U (.085 [2.16])
Cable Bender for
RG-402/U (.141 [3.58])
Replacement Collets
AMP
Part Number
M/A-COM Part Number
(Ref. Only)
1055825-1
2598-5145-54
1055827-1
2598-5167-54
Cable
RG-402/U
(.141 [3.58])
RG-405/U
(.085 [2.16])
AMP
Part Number
M/A-COM Part Number
(Ref. Only)
Bend Radius*
1055479-1
2098-5287-54
1/4 [6.4] 3/8 [9.8]
1055478-1
2098-5286-54
3/8 [9.8] 1/2 [12.7]
*Radius of the bend is measured from the centerline of the cable.
Cable Bender
Trimming Tools for
Semi-Rigid Cable
For soldered semi-rigid
cable connectors using the
cable center conductor as
its contact. These tools are
optional for most installations but recommended
for optimum connector
performance.
Description
Trim Tool
Trim Tool for SMA Connectors
RG-402/U (.141 [3.58])
Trim Tool for SSMA Connectors
RG-405/U (.085 [2.16])
AMP
Part Number
M/A-COM
Part Number
(Ref. Only)
1055455-1
2098-5272-02
1055465-1
2098-5269-02
456
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling (Continued)
Cable Trimmers
Cable Trimmers for
Production
Description
Tyco Electronics cable
trimmers are designed for
production trimming of
RG-402/U (.141 [3.58]) and
RG-405/U (.085 [2.16])
coaxial cables in preparation
for connector installation.
The trimming operation produces an unusually clean,
burr-free cut with minimum
smear. The length and
depth of cut are adjustable.
Replacement hardware can
be used with either tool.
RG-402/U (.141 [3.58])
RG-405/U (.085 [2.16])
AMP
Part Number
1055526-1
1055530-1
M/A-COM Part Number
(Ref. Only)
2098-5676-54
2098-5686-54
AMP
Part Number
1055524-1
M/A-COM Part Number
(Ref. Only)
2098-5674-54
1055527-1
2098-5678-54
1055528-1
2098-5679-54
Replacement Hardware
Description
Saw Blade
Trim Saw Block
(.141 [3.58])
Trim Saw Block
(.085 [2.16])
Cable Pointers for
Production
5
RF Connectors
Tyco Electronics cable
pointers are designed to
point straight and bent
cables and are adjustable
for desired center conductor length. The cable pointers cut 90° point on copper
as well as copper-clad
center conductors.
Cable Pointers
AMP
Part Number
Number
M/A-COM
Part Number
(Ref. Only)
Single Pointer
1055525-1
2098-5675-54
Single Pointer
1080269-1
2098-5685-54
Description
Cable
AMP
Replacement
Cutter
Part Number
M/A-COM
Replacement
Cutter
Part Number
(Ref. Only)
RG-402/U
(.141 [3.58])
RG-405/U
(.085 [2.16])
1055529-1
2098-5681-54
Interface Inspection Gauges
Tyco Electronics offers
Connector Interface
Gauges. They have shock
proof and fully jeweled dial
indicators. The rugged construction of the dial mechanism minimizes the need for
repair or replacement.
spindle allowing for precise
measurements.
Like the gauge heads, the
plungers are specially
designed to provide
strength and durability.
Connector
Type
AMP
Gauge Kit
Part Number
SMA
Jack
Plug
1055496-1
1055497-1
The gauge heads are
manufactured from a corrosion resistant, hardening
stainless steel which is heat
treated for longer life. All
critical surfaces are ground
and lapped for precision fit
and superior surface finish.
The heads are securely
fastened onto the dial
indicator for no movement
between the gauge head
and the dial indicator
M/A-COM
Gauge Kit
Part Number
(Ref. Only)
2098-5455-54
2098-5456-54
SMA Interface Example
457
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Application Tooling (Continued)
For installation of SSMA
connectors to .070 [1.78]
and .085 [2.16] diameter
semi-rigid cable.
SSMA Connectors
AMP Kit Part Number
1055466-1
M/A-COM Kit Part Number
2098-5270-54
AMP
Part No.
Item Description
Center Contact Holder
Dielectric Insert Tool
Dielectric Recess Tool
Fixture Sub-Assembly
Inserts — .070 [1.78] (2)
Inserts — .085 [2.16] (2)
Inserts
Locator Tool
Retainer Ring Pliers
Solder Gauge .015 [0.38]
Locator Tools
1055463-1
1055458-1
1055459-1
1055460-1
1055439-1
1055547-1
1055441-1
1055461-1
1055464-1
1055456-1
1055457-1
1055449-1
91362-1
M/A-COM
Part No.
(Ref. Only)
2098-5237-10
2098-5233-02
2098-5234-02
2098-5235-54
2098-5206-54
2098-5831-54
2098-5208-54
2098-5236-02
2098-5238-02
2098-5231-02
2098-5232-02
2098-5216-54
2098-5212-02
All tools may be purchased separately.
Dielectric Insert Tool
Solder Gauge
Retainer
Ring Pliers
Dielectric Recess Tool
Fixture Sub-Assembly
Center Contact Holder
Econo-Crimp Assembly Kit
AMP Kit Part Number
1055779-1
M/A-COM Kit Part Number
2598-5005-54
For quick and efficient cable
to connector attachment.
Five popular hex die sizes
are available to crimp the
outer cable conductor to
connector housings.
Item Description
AMP
Part No.
Crimp Tool
Hex Die — A, B, C
Hex Die — D, E
1055780-1
1055781-1
1055782-1
M/A-COM
Part No.
(Ref. Only)
2598-5006-54
2598-5007-54
2598-5008-54
All tools may be purchased separately.
For the assembly of SMA connectors, Accessory Kit Part Number
2098-5067-54 is required. For SSMA connectors, Accessory Kit Part Number
2098-5272-54 is required.
AMP
Hex Die
Part Number
Crimp Tool
M/A-COM
Hex Die
Part Number
(Ref. Only)
Hex Size
±.003 [0.08]
Die
.105
2.67
.213
5.41
.128
3.25
.178
4.52
.255
6.48
A
1055781-1
2598-5007-54
B
C
Hex Die
D
1055782-1
2598-5008-54
E
For Use With
RG/U Cable
178B & 196A
55B, 58C, 141A, 142B,
223, 303, & 400
174, 174B, 179, 187A,
188A, & 316
180B, 195A, & 122
59, 62A, 71B, 210, & 302
SSMA Crimp Tool Accessories
AMP Kit Part Number 1055467-1
Locator Tool
M/A-COM Kit Model Number T-550
For installation of SSMA
connectors to flexible
braided cable. Crimp type
SSMA connectors require
Hex Crimp Kit Part Number
1055779-1.
Center Contact Holder
AMP
Part Number
M/A-COM Part Number
(Ref. Only)
Center Contact
Holder
1055463-1
2098-5237-10
Locator Tool
1055461-1
1055464-1
2098-5236-02
2098-5238-02
Description
All tools may be purchased separately.
458
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application
Theory and Application
As a leading manufacturer of RF products, Tyco Electronics
produces a large variety of coaxial connectors. The proper
selection and application of these connectors requires a knowledge of factors not involved in other types of connectors and
terminals. The following paragraphs have been prepared to
improve understanding of the theory behind RF connectors:
Basic RF Theory1
RF energy travels by electromagnetic waves, and it is primarily the frequency of these waves that we are interested
in. Briefly, if an oscillating voltage source is connected to a
cable, a continuous electromagnetic wave will propagate
along the cable. A sensor placed at some point on the
cable would indicate a varying voltage (E field) as well as a
current and magnetic field (H field) as the wave travels past
it. This is called an electromagnetic wave because both
electric and magnetic fields are varying. The wave shape is
initially determined by the variation of the source with time.
The majority of the technical terms, relative to RF and coaxial cable and
connectors, used here-in and throughout this catalog are defined in the
Glossary (Appendix E) starting on page 470.
1
Frequency or
Wavelengths
Sine Waves
An RF wave is a sine wave, meaning that it smoothly swings
from zero to a positive peak value, then back down past zero
to a negative peak value, then back to zero to complete a
360 electrical degree cycle. The positive and negative
peaks are always equal in amplitude. The two qualities
which characterize this type of wave are amplitude and frequency (f). Figure 8 shows these two characteristics.
Amplitude refers to the peak value attained by the wave and
corresponds to voltage. Frequency refers to the number of
oscillations per second. For example, the sign wave in
Figure 8(B) has completed 12 cycles in one second.
Therefore, we would say that this wave has a frequency of 12
cycles per second or 12 Hertz. The time for one complete
cycle is defined as the period (T). The relationship between
the period and frequency is given by the equation:
f = 1 / T in Hertz
Peak
Positive
Amplitude
Peak
Negative
Amplitude
One Cycle
Designation
Applications
VLF
(Very Low
Frequency)
Commercial AC electricity, deep
depth sounders, ultrasonic
grinders, sonic oscillators
30 - 299.9
KHz
LF
(Low sonar
Frequency)
Shallow-to-medium depth sounders
300 - 2999.9
KHz
MF
(Medium
Frequency)
Commercial AM radio broadcasting,
marine radio telephone, direction
finders
1 Second
3 - 29.9
MHz
HF
(High
Frequency)
Citizen band radio, amateur radio,
international broadcasting
Figure 8
30 - 299.9
MHz
VHF
(Very High
Frequency)
VHF television (Channels 2 thru
13), commercial FM radio
broadcasting, amateur radio, fire
and police radio
300 - 2999.9
MHz
UHF
(Ultra-high
Frequency)
UHF television (Channels 14 thru
83), microwave ovens, aeronautical
radionavigation
3 - 29.9
GHz
SHF
(Super High
Frequency)
Microwave communications, marine
radar, aircraft tracking and
airborne radars
30 - 299.9
GHz
EHF
(Extremely High
Frequency)
Space communications, radio
astronomy
0 - 29.9
KHz
Notes:
1. KHz = Kilohertz (1 thousand cycles per second)
2. MHz = Megahertz (1 million cycles per second)
3. GHz = Gigahertz (1 billion cycles per second)
Figure 7
Radiant Energy Spectrum
5
A
RF Connectors
Figure 7 shows the radiant energy spectrum. Visible light,
radio, television, x-rays and Gamma rays are all phenomenon of electromagnetic waves at different frequencies. This
introduction will treat only those that are generated by an
electrical source and propagated along a physical cable or
other transmission media. That is, frequencies above zero
and up to about 50 gigahertz.
In the following paragraphs we will discuss waves in greater
detail, including the relationship of frequency and wave length,
how pulses are formed and used, how each differs from the
other and the problems involved in their transmission.
B
No. of Cycles
1
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
9
9
10
10
11
11
12
12
Typical Sine Wave Characteristics
The wave travels away from the generator at speeds approaching the speed of light. When an electromagnetic wave travels in
a medium other than air or vacuum, the speed for the wave is
reduced by a factor of the square root of the dielectric constant
( ε. The velocity (v) of the propagation of a signal is given by:
c
__
v= ε
Where c is the speed of light, 3 x 108 m/sec or 1.18 x 1010
in/sec, and ε is the dielectric constant of the medium.
(See Table 1 for dielectric constants of various materials)
The wavelength of a signal is given by the formula
10
c
1.18 x 10
λ = v/f = __________ _________ inches
ε x f (GHz)
ε x f (GHz)
See Figure 9
459
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application (Continued)
Notice that rise time is the time required for the pulse to rise
from 10% to 90% of its amplitude — not from zero to maximum. Rise and fall time is perhaps the single most important characteristic of a pulse in today’s high-speed digital
equipment. Figure 11 shows that the faster the rise and fall
time, the more pulses will fit in a given time frame.
Inches
1000
Wavelengths
100
A
10
1
0.1
Time
.001 GHz .01 GHz
.1 GHz
1 GHz
10 GHz
100 GHz
B
Frequency (MHZ)
(MHZ)
FREQUENCY
TEFLON (E=2.03)
AIR (E=1.00)
Figure 9
Table 1.
Properties of Insulating Materials
Dielectric
Material
_________
TFE
Polyethylene
Nylon
TPX
Polypropylene
Acetal
Dielectric
Constant
_________
2.03
2.3
4.6-4.0
2.12
2.25
3.7
Operating
Temperature Range
__________________
-70 +250°C
-60 +80°C
-40 +120°C
-65 +85°C
-40 +105°C
-65 +85°C
Pulses
The sine wave is most often used for communication
purposes where intelligence is imposed on the wave by a
variation in amplitude (amplitude modulation, AM) or by a
variation in frequency (frequency modulation, FM).
Pulses, on the other hand, are primarily used in computers
and digital instrumentation. Since pulses are generally used
for triggering purposes, the pulse rise/fall time, amplitude
and width are the most important. Figure 10 shows a pulse
and identifies these characteristics.
Width
90%
90%
Amplitude
10%
10%
Fall Time
Repetition
Rate
Rise
Time
Time
Figure 11
Pulse Rise and Fall Time
The bit rate for a system is the maximum rate of pulses per
second that a system can process without causing data
errors. The maximum performance can also be specified in
terms of baud rate. The baud rate is defined as the number
of characters (bytes) that are transmitted per second.
Generally a character represents 10 bits (7 bits for the information, one parity bit, and two for start and stop, totalling 10).
Now that we know why fast pulses are required, the next
problem is how to obtain faster rise times. A pulse is made
up of a great number of different frequencies, and the more
high frequencies a pulse contains, the faster will be its rise
time and the flatter will be its peak. To better understand
this, refer to Figure 12. At A, you will see a fundamental frequency (1), its third harmonic (3), and the resultant waveform (S3), which is a combination of 1 and 3. Although this
does not yet resemble a square wave, you will note that the
rise time is decreased, and a dip appears at the peak. At
B of Figure 12, we have added the fifth harmonic. Rise
time is further decreased, and the peak is beginning to flatten out. At C the seventh harmonic has been included, and
the resultant wave S7 begins to resemble a square wave.
As more high frequency harmonics are added to the waveform, it will more closely resemble a square wave, and the
squarer it becomes, the faster will be the rise time.
Figure 10
Pulse Characteristics
460
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
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Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application (Continued)
Fast rise times and short pulse widths require high frequency components.
Two frequent causes of digital signal degradation can be
(1) high capacitance of the transmission line and (2)
impedance mismatches of connector transmission line or
I/0 devices. Selection of an impedance-matched connector on a digital line, especially if short cable assemblies are
used, can be as important as connector selection for an RF
modulated line. Reflected pulses out of phase with the
original pulse can cause false signals or high error
rates in a digital system.
Signal Integrity and Propagation
To explain how to maintain signal integrity, it is necessary to
review how the signal is configured in a cable and how it
propagates. Ignoring digital signals for this discussion we
will identify the issues that deal with the integrity of a sine
wave. Consider a coaxial cable consisting of an inner conductor surrounded by a dielectric material and then an
outer conductor (See Figure 13). The outer conductor may
be a braid, a foil, or a solid metal.
Since pulses with fast rise times are necessary in highspeed computers, any circuit element which could reduce
or attenuate high frequency response is undesirable.
Outer
Conductor
A
S3=1+3
d
D
5
1
Center
Conductor
RF Connectors
Dielectric
Material
Figure 13
3
Diagram of a Cable
S3
B
S5=1+3+5
An electromagnetic wave traveling in a coaxial cable produces an electric and a magnetic field between the inner
conductor and the outer conductor (Figure 14). The electric
(E field) is radial and varies in time. An alternating current
flows along the inner conductor and the outer conductor. An
oscillating magnetic field (H field) circles the inner conductor.
E
H
V
5
Figure 14
S5
C
S7=1+3+5+7
7
Electric field (E) and magnetic field (H)
belonging to the principal mode in a coaxial line.
The alternating current on a conductor is not spread throughout the conductor but is strongest at the surface and decays
exponentially at points further into the conductor. This is
called the skin effect. At a frequency of 1MHz, three skin
depths is 0.0078” (95% of the current is within three skin
depths of the surface) and at 10GHz three skin depths is
0.00078”. As a result, the current is on the outer surface of
the inner conductor and the inner surface of the outer conductor over the entire range of interest for most RF systems.
The dimensions and material beyond several skin depths
have no effect on the wave; gold plated plastic will propagate
as well as gold plated copper at sufficiently high frequencies.
Figure 12
Development of a Square Wave
461
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application (Continued)
Attenuation
Reflections
A wave loses energy (attenuates) in several ways: (1) The
resistance of the inner and outer conductors is small but
can be significant over long lengths and will produce some
heat. (2) The dielectric may be lossy; its resistance is high
but not infinite, and some energy is lost. (3) Electromagnetic
energy radiates at high frequencies; significant energy losses are caused by radiation of electromagnetic energy (the
cable acts like an antenna). (4) Energy is reflected due to
impedance mismatches. The combination of these four
types of losses are referred to as the insertion loss of a
transmission line system. Connectors have similar losses.
When the characteristic impedance changes in a transmission line system, part of an incident wave is reflected. The
reflection coefficient can be calculated as:
Vi
ZR - ZO
Reflection Coefficient = ρ= _____ = _______
VR
ZR + ZO
Where Vi and ZO are the incident voltage and impedance
of the first media. VR and ZR represent the reflected voltage
and impedance of the media that caused the reflection.
The decibel loss due to reflection is given by:
Characteristic Impedance
A parameter which defines the behavior of a cable,
connector, or any propagating system is Characteristic
Impedance, Zo. The characteristic impedance of a lossless cable is related to the inductance per unit length, L,
and the capacitance per unit length, C, as follows:
Zo =
L/C in ohms
The equivalent circuit of a transmission line is shown in Figure
15. R represents the conductor resistance for a unit length
For a coaxial cable the characteristic impedance is given by:
D
Zo = 138 x Log10
ε
d
in ohms
where D is the inner diameter of the outer conductor and
d is the outer diameter of the inner conductor, respectively.
Similar equations apply for other geometries such as two
parallel wires.
1
Return Loss = 10 Log10 ( ____ ) dB
1-ρ 2
VSWR
The traditional way to determine the
reflection coefficient is to measure
the standing wave caused by the
superposition of the incident wave
and the reflected wave. Traditionally
the voltage is measured at a series
of points using a slotted line. The
ratio of the maximum divided by the
minimum is the Voltage Standing
Wave Ratio (VSWR). The VSWR is
infinite for total reflections because
the minimum voltage is zero. If no
reflection occurs the VSWR is 1.0.
VSWR and reflection coefficient are
related as follows:
VSWR = (1 + ρ)/(1 - ρ)
L
R
Most present instrumentation
measures the reflection coefficient
and calculates the VSWR.
Figure 16 represents the direct
relationship between VSWR and its
equivalent in return loss
(expressed in dB).
C
Z0
Figure 15
Typical Transmission Line Schematic
Figure 16
The maximum power is transferred between two systems if
they have the same impedance. This is called impedance
matching. However, impedance variations that are short
compared to a wavelength can have a negligible effect on
signal loss.
Standard impedances are 50 ohm, 75 ohm and 93-125
ohm. Most systems use 50 ohm because it is a compromise between maximum power transmission and minimum
line loss. The telephone industry and the broadcast industry use 75 ohm for minimum line attenuation. The need for
low capacitance instrumentation cable has produced the
93-125 ohm systems. The higher impedances are generally
achieved by changing the conductor diameters and by
modifying the dielectric material to add air.
VSWR vs. Return Loss
Multiple Reflections
If there is a series of impedance changes, each one will
have a reflection coefficient. The total reflection coefficient
is the vector addition of each of the individual coefficients
accounting for the distance between reflections and the
reflection of any reflected waves. Even though the calculations are difficult, a total VSWR can still be measured.
Multiple reflections can produce a resonance phenomenon
that is unique to wave theory. Properly understood some serious difficulties can be avoided. An example will make the
point clear. Consider an electromagnetic wave with a wave-
462
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application (Continued)
length of 4 inches traveling on a cable that changes from 50
ohms to 25 ohms. The reflection coefficient is -.33, which
means that one third of the incident voltage is reflected
toward the source. Assume that one inch (one quarter wavelength) down the cable the impedance changes back to 50
ohm. Again, one third of the wave is reflected, but without
any phase shift. It travels back to the first interface where one
third of this reflected wave is reflected back toward the second interface. Two thirds of the wave is transmitted through
the interface and travels back to the source. Since the first
(reflected) wave is shifted 180 degrees at the reflection, and
the second (transmitted-reflected-transmitted) wave is shifted
180 degrees because it traveled the one inch separation
twice, the two waves are in phase. The net result is that the
VSWR is much larger because the length of the 25 ohm section was just the right length to cause a resonance. If the
length of the 25 ohm section had been one half wavelength, the two waves would have interfered and the VSWR
would be at a minimum.
50 Ω
25 Ω
50 Ω
V out
f = 0.35/rise time
where
f = GHz when “t” is in nanoseconds
Attenuation of the frequencies necessary to support the short
risetime will produce a slower rise and possibly prohibit the
pulse from ever reaching the detector. This ‘slurring’ of the
pulse is similar to the behavior of an RC circuit and the
attenuation is sometimes called capacitive attenuation.
A series of pulses can demonstrate resonance. If a portion of
a pulse is reflected at each interface, it is possible for them to
come together and add up to form a new phantom pulse.
5
Cut-off Frequency
.44V
.33V
A single pulse can be thought of as a combination of high
frequency sine waves. The maximum frequency component
in a square wave pulse can be calculated by this equation:
RF Connectors
λ/
4
.66V
1 V out
The previous discussions dealing with attenuation,
reflections and standing waves can apply to digital signals
with some extra thought.
The critical frequency here is the bit rate. Think of a sine
wave with a frequency the same as the bit rate; if it will
resonate in the cable, the pulses will also. Extra pulses
caused by resonance might easily result in an error signal
from the receiving system requesting a retransmittal. The
final result would be a communication system that is much
slower than intended.
λ/
4
V in
Reflections of Digital Signals
The cut-off frequency of a coaxial transmission line is the
frequency at which modes of energy transmission, other
than the “TEM” mode, can be generated.
.22V
7.5
7.5
fco
(in GHz)
GHz)
fco =
= ______ (in
εε(D+d)
(D+d)
.07V
.15V
(D and d are measured in inches)
Types of Transmission Lines
Impedance
Mismatch
V in = 1 Volt VR =.48 Volt
V out =.52 Volt
Figure 17
Multiple Wave Reflections
(Caused by Impedance Mismatch)
In summary, avoid cable lengths, printed circuit board paths,
or connectors that are multiple of one quarter (λ/4, 3λ/4, etc.)
of the intended signal transmission wavelength. Coaxial
cables, when manufactured, also have periodic variations in
diameter that result in periodic changes in impedance (Zo),
that can cause significant levels of reflected signal (high
return loss) at specific frequencies.
Twin Lead transmission cable is generally used where
impedance matching alone is important, since it provides
only minimal shielding. Impedance values of 300 ohms and
600 ohms are common. Lower impedance values require
closer spacing of the conductors and are not normally available in this type of cable. A typical application for twin lead
cable is in antenna lead wire for television sets.
Twisted Pair is a variation of the twin lead type. It consists
of two lengths of ordinary hookup wire twisted together. A
twisted pair provides relatively constant impedance plus
better magnetic shielding than twin lead cables. It is flexible, inexpensive, easy to terminate and is used extensively
by the computer industry. However, it should not be used
when maximum shielding is required.
463
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix A - Theory and Application (Continued)
Shielded Twisted Pair Cable is used to eliminate inductive
and capacitive coupling. Twisting cancels out inductive
coupling, while the shield eliminates capacitive coupling.
Most applications for this cable are between equipment,
racks and buildings.
Flexible (Braided) Coaxial Cable is by far the most
common type of closed transmission line because of its
flexibility. It is a coaxial cable, meaning that both the signal
and the ground conductors are on the same center axis.
The outer conductor is made from fine braided wire, hence
the name “braided coaxial cable”. This type of cable is
used in practically all applications requiring complete
shielding of the center conductor. The effectiveness of the
shielding depends upon the weave of the braid and the
number of braid layers. Tyco Electronics manufacturers
connectors for cable sizes ranging from less than 1/8 in.
diameter, for low power applications of around 50 watts, to
over 1/2 in. diameter for power of 850 watts at 100 MHz and
voltages up to 5000. In addition to power handling capabilities, cables are available for high frequency applications,
high and low temperature applications, severe environmental applications and many other specialized uses.
Triaxial Cable is used when higher “shielding” efficiency
characteristics are required in applications similar to those
using shielded twisted pair cable.
Signal
Conductors
Outer Conductor
Insulation
Outer Conductor
Dielectric
Dielectric
Semi-rigid Coaxial Cable uses a solid tubular outer
conductor rather than the braided type, so that all the RF
energy is contained within the cable. One of the drawbacks of braided cable is that the shielding is not 100%
effective, especially at higher frequencies. This is because
the braided construction can permit small amounts of short
wavelength (high frequency) energy to radiate. Normally
this does not present a problem; however, if a higher
degree of shielding is required, semi-rigid coaxial cable is
recommended. For applications using frequencies higher
than 30 GHz a miniature semi-rigid cable is recommended.
Various connectors are available from Tyco Electronics to
terminate these cables.
Ribbon Coaxial Cable is a relatively recent Tyco
Electronics innovation which combines the advantages of
both ribbon cable and coaxial cable. Tyco Electronics currently provides both the cable and the insulation displacing
coaxial connector to terminate the cable. Each individual
coaxial cable consists of the signal conductor, dielectric, a
foil shield and a drain wire which is in continuous contact
with the foil. The entire assembly is then covered with an
outer insulating jacket. The unique manufacturing feature of
this cable is the precise placement of the drain wires to permit gang stripping of the outer jacket and foil. The major
advantage of this cable is the speed and ease with which it
can be mass terminated with the AMP insulation displacement technique. They can also be separated into individual
coaxial lines and terminated with standard coaxial connectors as required.
Middle Conductor
Dielectric
Insulation
Signal
Conductors
Often you will hear the term “shielded cable”. This is very
similar to coaxial cable except the spacing between center
conductor and shield is not carefully controlled during manufacture, resulting in non-constant impedance.
Figure 18
Twin Conductor and Triaxial Cable
-1000
9
8
7
6
5
4
So
lid
Sh
ea
th
-300
-200
Triax
-100
-80
Double Braid
-60
-40
Single Copper Braid
-30
-20
-10
.01 GHz
1 GHz
.1 GHz
10 GHz
Figure 19
Shielding Efficiencies
464
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
METRIC
RF Connectors
Catalog 1308940
Dimensions are millime-
Issued 4-02
Appendix B - Typical Coaxial Cable Specifications
Abbreviations
SCCad Br......Silver covered cadmium bronze
GS.................Galvanized steel
TCCS ............Tin copper covered steel
SSC ..............Silver covered strip
HR.................High resistance wire
SA .................Silver covered alloy
Dielectric
PE .................Solid polyethylene
PTEE .............Solid polytetrafluoroethylene
PIB ................Polyisobutylene, Type B, per MIL-C-17
Rubber ..........Per MIL-C-17D
Sil .................Silicone rubber
PS .................Polystyrene
Jacket Material
PVC-I ............Black polyvinylchloride, contaminating, Type I, per MIL-C-17D
PVC-II ...........Gray polyvinylchloride, noncontaminating, Type II, per MIL-C-17D
PVC-IIA.........Black polyvinylchloride, noncontaminating, Type IIA, per MIL-C-17D
PE-III.............Clear polyethylene
PE-IIIA ..........High molecular weight, black polyethylene, Type IIIA, per MIL-C-17D
FG Braid V ....Fiberglass, impregnated, Type V, per MIL-C-17D
FEP-IX ..........Fluorinated ethylene propylene, Type IX, per MIL-C-17D
PUR ..............Polyurethane, black specific compounds
SIL/DAC-VI...Dacron braid over silicone rubber, Type VI, per MIL-C-17D
Rubber ..........Per MIL-C-17D
Conductors and Braid Materials
AL .................Aluminum
SCAAI ...........Silver covered copper covered aluminum
BC.................Bare copper
SC.................Silver covered copper
CCS ..............Copper covered steel
TC .................Tinned copper
SCCS ............Silver covered copper covered steel
RG/U
Type
Cable
8
9
9A
9B
11
11A
55
55A
55B
58
58A
58B
58C
59
59A
59B
Nom.
Imped.
(Ohms)
Nom.
Cap
pf/ft
Max.
Operating
Temp. (C°)
Max.
Operating
Voltage
(Volts RMS)
Comments
.106
52
29.5
⫺40 ⫹80
4000
Use RG213
10.29
.405
.106
52
29.5
⫺40 ⫹80
5000
Use RG213
PVC-II
10.67
.420
.140
51
30.0
⫺40 ⫹80
4000
Use RG214
2/SC
PVC-II
10.67
.420
.140
51
30.0
⫺40 ⫹80
4000
Use RG214
7.11
.280
2/SC
PVC-IIA
10.67
.420
.150
50
30.8
⫺40 ⫹80
5000
Use RG214
PE
7.24
.285
1/BC
PVC-I
10.29
.405
.096
75
20.6
⫺40 ⫹80
4000
Use up to
100 MHz
PE
7.24
.285
1/BC
PVC-IIA
10.29
.405
.096
75
20.6
⫺40 ⫹80
5000
Use up to
1000 Mhz
PE
2.95
.116
2.95
.116
2.95
.116
2.95
.116
2.95
.116
2.95
.116
2/TC
PE-III
.032
53.5
28.5
⫺55 ⫹80
1900
Use RG55B
2/SC
PVC-IIA
.034
50
30.8
⫺40 ⫹80
1900
2/TC
PE-IIIA
.033
53.5
28.5
⫺55 ⫹80
1900
Use RG223
Use up to
1000 MHz
1/TC
PVC-I
.029
53.5
28.5
⫺40 ⫹80
1900
Use RG58B
1/TC
PVC-I
.029
52
28.5
⫺40 ⫹80
1900
1/TC
PVC-IIA
5.08
.200
5.08
.200
5.08
.200
4.95
.195
4.95
.195
4.95
.195
.029
53.5
28.5
⫺40 ⫹80
1900
Use RG58C
Use up to
1000 MHz
Dielectric
Material
DOD
Number/Type
of Shielding
Braids
Jacket
Material
PE
7.24
.285
1/BC
PVC-I
10.29
.405
PE
7.24
.285
.285
1/BC
PVC-IIA
PE
7.11
.280
2/Inner SC
Outer BC
PE
7.11
.280
PE
2.17
.0855
7/0.72 BC
.0285
2.17
.0855
7/0.72 BC
.0285
2.17
.0855
7/0.72 SC
.0285
2.17
.0855
7/0.72 SC
.0285
2.17
.0855
7/0.72 SC
.0285
1.21
.0477
7/0.4 TC
.0159
1.21
.0477
7/0.4 TC
.0159
0.81 BC
.0320
.0.89 SC
.0350
0.81 SC
.0320
0.81 BC
.0320
0.9
.0355
0.81 BC
.0320
0.9
.0355
19/0.8 TC
.0071
0.64 CCS
.0253
0.64 CCS
.0253
0.58 CCS
.0230
PE
PE
PE
PE
PE
O.D. Weight
(lb/ft)
PE
2.95
.116
1/TC
PVC-IIA
4.95
.195
.029
50
30.8
⫺40 ⫹80
1900
PE
3.71
.146
3.71
.146
3.71
.146
1/BC
PVC-I
.032
73
21.0
⫺40 ⫹80
2300
1/BC
PVC-IIA
.032
73
21.0
⫺40 ⫹80
2300
1/BC
PVC-IIA
6.15
.242
6.15
.242
6.15
.242
.032
75
20.6
⫺40 ⫹80
2300
PE
PE
5
RF Connectors
8A
Inner
Conductor
Extra Flexible
Version RG58B
Use RG59B
Use RG59B
Use up to
1000 MHz
465
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
METRIC
RF Connectors
Catalog 1308940
Dimensions are millime-
Issued 4-02
Appendix B - Typical Coaxial Cable Specifications
Nom.
Imped.
(Ohms)
Nom.
Cap
pf/ft
Max.
Operating
Temp. (C°)
Max.
Operating
Voltage
(Volts RMS)
Comments
.038
93
13.5
⫺40 ⫹80
750
Capacitance
6.15
.242
.038
93
13.5
⫺40 ⫹80
750
Extra Flexible
RG62A
6.22
.245
6.22
.245
6.22
.245
.046
93
13.5
⫺40 ⫹80
750
Use RG71B
.046
93
13.5
⫺55 ⫹80
750
Use RG71B
.046
93
13.5
⫺55 ⫹80
750
Low
Capacitance
PVC-IIA
4.06
.160
.016
50
29.4
⫺40 ⫹80
1900
Use up to
1000 MHz
FG
Braid-V
6.1
.240
5.92
.233
4.83
.190
4.83
.190
4.95
.195
4.95
.195
4.95
.195
.210
73
20.3
⫺55 ⫹250
2300
Use RG140
RG/U
Type
Cable
Inner
Conductor
Dielectric
Material
DOD
Number/Type
of Shielding
Braids
Jacket
Material
62A
0.64 CCS
.0253
0.61
.0240
7/0.2 CCS
.0080
0.64 CCS
.0253
0.64 CCS
.0253
0.64 CCS
.0253
0.76
.0300
7/0.13 TC
.0050
0.64 TCCS
.0253
0.64 SCCS
.0250
0.91 SCCS
.0359
0.99 SCCS
.0390
0.91 SCCS
.0359
0.99 SCCS
.0390
0.99 SCCS
.0390
0.48
.0189
7/0.16 CCS
.0063
0.3
.0120
7/0.1 SCCS
.0040
0.3
.0120
7/0.1 SCCS
.0040
0.3
.0120
7/0.1 SCCS
.0040
0.3
.0120
7/0.1 SCCS
.0040
0.51
.0201
7/0.17 SCCS
.0067
0.51
.0201
7/0.17 SCCS
.0067
0.3
.0120
7/0.1 SCCS
.004
0.64 SCCS
.0253
2.26
.0888
7/0.75 BC
.0296
2.26
.0888
7/0.75 SC
.0296
Air-space
PE
3.71
.146
1/BC
PVC-IIA
6.15
.242
Air-space
PE
3.71
.146
1/BC
PVC-IIA
Air-space
PE
Air-space
PE
Air-space
PE
3.71
.146
3.71
.146
3.71
.146
2/TC
PVC-I
2/TC
PE-III
2/TC
PE-IIIA
PE
2.44
.096
1/TC
Taped
PTFE
3.43
.135
3.71
1.46
2.95
.116
2.95
.116
2.95
.116
2.95
.116
2.95
.116
1/TC
1/SC
FG Braid-V
2/SC
FG Braid-V
PE
62B
71
71A
71B
122
124
140
141
141A
142
142A
142B
174
178
178B
179
180B
188
188A
195A
210
213
214
PTFE
PTFE
PTFE
PTFE
1/SC
1/SC
FG Braid-V
FG Braid-V
O.D. Weight
(lb/ft)
.056
75
19.5
⫺55 ⫹250
2300
See RG302 for
FEP Jacket
.036
50
29.4
⫺55 ⫹250
1900
Use RG141A
.036
50
29.4
⫺55 ⫹250
1900
See RG303 for
FEP Jacket
.047
50
29.4
⫺55 ⫹250
1900
Use RG142A
See RG142B for
FEP Jacket
Standard Center
Cond. Available
.047
50
29.4
⫺50 ⫹250
1900
.047
50
29.4
⫺55 ⫹250
1900
2.54
.100
.008
50
30.8
⫺40 ⫹80
1500
Miniature Data
Transmission
KEL-F
1.83
.072
.0054
50
29.4
⫺40 ⫹150
1000
Use RG178B
1/SC
FEP-IX
1.83
.072
.0054
50
29.4
⫺55 ⫹200
1000
High Strength
Cond. Available
1.45
.057
1/SC
KEL-F
2.54
.100
.010
70
20.4
⫺55 ⫹150
1200
Use RG179B
PTFE
2.59
.102
1/SC
KEP-IX
3.56
.140
.019
95
15.4
⫺55 ⫹200
1500
High Strength
Cond. Available
PTFE
1.52
.060
1/SC
PTFE
2.67
.105
.011
50
29.4
⫺55 ⫹250
1200
Use RG316
PTFE
1.52
.060
1/SC
PTFE
2.67
.105
.011
50
29.4
⫺55 ⫹250
1200
Use RG316
PTFE
2.59
.102
1/SC
PTFE
3.68
.145
.020
95
15.4
⫺55 ⫹250
1500
Use RG180B
Air-Space
PTFE
3.71
.146
1/SC
FG Braid-V
6.15
.242
.040
93
13.5
⫺55 ⫹250
750
High Temp.
Low Capacitance
PE
7.24
.285
1/BC
PVC-IIA
10.29
.405
.099
50
30.8
⫺40 ⫹80
5000
Use up to
1000 MHz
PE
7.24
.285
2/SC
PVC-IIA
10.0
.425
.126
50
30.8
⫺40 ⫹80
5000
Use up to
10,000 MHz
PTFE
2/SC
FG
2/SC
FEP
1.52
.060
1/TC
PVC
PTFE
0.91
.036
1/SC
PTFE
0.86
.034
PTFE
PTFE
466
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
METRIC
RF Connectors
Catalog 1308940
Dimensions are millime-
Issued 4-02
Appendix B - Typical Coaxial Cable Specifications (Continued)
RG/U
Type
Cable
216
223
225
302
303
316
400
Inner
Conductor
Nom.
Cap
pf/ft
Max.
Operating
Temp. (C°)
Max.
Operating
Voltage
(Volts RMS)
Comments
.114
75
20.6
⫺40 ⫹80
5000
Use up to
1000 MHz
5.36
.211
.034
50
30.8
⫺40 ⫹80
1900
Use up to
10,000 MHz
FG Braid-V
10.92
.430
.180
50
29.4
⫺55 ⫹250
5000
See RG393 for
FEP Jacket
1/SC
FEP-IX
.030
75
19.5
⫺55 ⫹200
2300
1/SC
FEP-IX
5.11
.201
4.32
.170
.088
50
29.4
⫺55 ⫹200
1900
FEP Jacketed
RG140
FEP Jacketed
RG141A
1.52
.060
1/SC
FEDP-IX
2.59
.102
.012
50
29.4
⫺55 ⫹200
1200
FEP Jacketed
RG188A
PTFE
2.95
.116
2/SC
FEP-IX
4.95
.195
.050
50
29.3
⫺55 ⫹200
1900
—
None
3.58
.141
.032
50
29.3
⫺40 ⫹125
2500
Semi-rigid
None
2.19
.0865
.015
50
29.4
⫺40 ⫹125
1500
Semi-rigid
DOD
Number/Type
of Shielding
Braids
Jacket
Material
PE
7.24
.285
2/BC
PVC-IIA
10.8
.425
PE
2.95
.116
2/SC
PVC-IIA
PTFE
7.24
.285
2/SC
PTFE
PTFE
3.71
.146
2.95
.116
PTFE
1.21
.0477
7/0.75 BC
.0159
0.89 SC
.035
2.38
.0936
7/0.79 SC
.0312
0.64 SCCS
.0250
0.99 SCCS
.0390
0.51
.0201
7/0.17 SCCS
.0067
0.98
.0385
19/0.2 SPC
.0077
402
0.91 SCCS
.0360
PTFE
3.02
.119
405
0.51 SCCS
.0201
PTFE
1.68
.066
3.58 OD
.141
Copper Tube
2.18 OD
.086
Copper Tube
O.D. Weight
(lb/ft)
5
RF Connectors
Nom.
Imped.
(Ohms)
Dielectric
Material
467
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix C - Maximum Power Handling Capabilities for Cables
Average Input Power in Watts
RG/U
Type Cable
5, 5A, 5B
8, 8A, 10A, 213, 215
9, 9A, 9B, 214
11, 11A, 12, 12A, 13, 13A, 216
217
22, 22B
55, 55A, 55B, 223
58, 58B
58A, 58C
59, 59A, 59B
62, 62A, 71, 71A, 71B
62B
115, 115A, 165, 225, 393
108, 108A
122
140, 141, 141A, 142, 142B, 302, 303, 400, 402
143, 143A
144
161, 179, 179A, 179B, 187, 187A
174, 174A
178, 178A, 178B, 196, 196A
180, 180A, 180B, 195, 195A
188, 188A, 316
210
10
2,000
3,700
3,700
2,500
6,000
1,700
800
730
650
1,300
1,300
1,150
25,000
340
540
9,000
11,500
25,000
1,600
170
710
2,500
1,250
8,500
50
800
1,300
1,300
1,000
2,000
650
310
280
225
480
480
420
9,500
145
205
3,500
4,600
9,500
780
72
340
1,100
600
3,300
100
550
850
850
650
1,200
430
205
180
170
310
310
280
6,300
100
140
2,400
3,200
6,300
570
50
240
800
450
2,300
200
350
540
540
400
800
280
137
125
110
200
200
180
4,300
70
90
1,600
2,100
4,300
420
36
170
570
330
1,600
Frequency in MHz
400
230
350
350
260
480
190
90
85
75
135
135
120
2,800
50
60
1,100
1,450
2,800
310
25
123
400
240
1,100
1,000
125
190
190
150
260
110
53
50
44
77
77
69
1,700
30
35
650
850
1,700
200
16
78
250
160
620
3,000
60
95
95
70
120
50
28
25
22
40
40
35
880
15
18
350
460
880
110
—
41
135
80
310
5,000
40
65
65
50
85
38
20
17
15
27
27
25
620
—
12
245
330
620
76
—
28
93
57
220
10,000
22
37
37
26
50
20
10
—
—
15
15
14
350
—
—
140
190
350
41
—
14
50
30
140
Note: Values above 3 GHz vary considerably depending on construction.
Conditions:
Ambient — 40°C
Altitude — Sea level
Center Conductor Temperature — 80°C for polyethylene, 200°C for PTFE
468
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix D - Nominal Loss Characteristics for Cables
Decibels per Hundred Feet
RG/U
Type Cable
50
1.40
1.50
1.50
1.50
1.00
2.80
3.00
3.10
3.30
2.30
1.90
2.10
1.40
5.20
4.40
2.70
1.80
1.00
7.90
6.50
10.00
4.20
7.90
.58
100
2.90
2.20
2.20
2.20
1.40
4.20
4.30
4.60
4.90
3.30
2.80
3.00
2.10
7.50
6.90
3.90
2.50
1.60
9.80
8.90
13.30
5.10
11.50
.85
200
4.30
3.20
3.20
3.20
2.10
6.30
6.00
7.00
7.30
4.70
3.70
4.30
3.10
11.00
11.00
5.50
3.80
2.30
12.70
12.00
20.00
7.30
15.00
1.30
Frequency in MHz
400
6.40
4.60
4.60
4.60
3.10
9.50
8.80
10.00
11.00
6.70
5.20
6.10
4.50
16.00
16.60
8.00
5.70
3.80
15.80
17.50
27.50
10.40
20.00
1.90
1,000
11.00
9.00
9.00
9.00
5.80
—
16.50
17.50
20.00
11.50
8.50
10.50
7.50
26.20
29.20
13.00
9.70
7.00
25.00
31.00
45.00
16.50
30.00
3.10
3,000
22.00
19.00
19.00
19.00
13.00
—
36.00
38.00
41.00
25.50
18.40
23.50
14.00
54.00
57.20
26.00
18.10
15.10
43.00
64.30
78.00
36.00
58.00
6.50
5,000
30.00
28.00
28.00
28.00
19.00
—
51.00
—
—
41.00
29.50
36.00
21.00
—
89.00
36.00
26.10
—
62.50
97.00
115.00
49.50
79.00
9.00
10,000
52.00
47.00
47.00
—
31.00
—
85.00
—
—
—
—
—
35.00
—
—
62.00
40.70
—
135.00
185.00
172.00
89.00
133.00
15.00
5
RF Connectors
5, 5A, 5B
8, 8A, 10A, 213, 215
9, 9A, 9B, 214
11, 11A, 12, 12A, 13, 13A, 216
217
22, 22B
55, 55A, 55B, 223
58, 58B
58A, 58C
59, 59A, 59B
62, 62A, 71, 71A, 71B
62B
115, 115A, 165, 225, 393
108, 108A
122
140, 141, 141A, 142, 142B, 302, 303, 400, 402
143, 143A
144
161, 179, 179A, 179B, 187, 187A
174, 174A
178, 178A, 178B, 196, 196A
180, 180A, 180B, 195, 195A
188, 188A, 316
210
10
.80
.66
.66
.66
.41
1.20
1.35
1.20
1.40
1.10
.90
.90
.60
2.30
1.60
1.20
.85
.38
5.00
3.80
5.30
3.10
3.80
.23
Note: Values above 3 GHz vary considerably depending on construction.
Conditions
Ambient — 20°C
469
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix E - Glossary of Terms
A
amplitude The magnitude of variation in a changing quantity from its zero
value. The word requires modification — as with adjectives such as peak,
maximum, rms, etc. — to designate the specific amplitude in question.
arc voltage voltage that continues to pass through a surge protector during activation of GDT(approx. 20 volts )
attenuation A reduction in power. It occurs naturally during wave travel
through lines, waveguides, space or a medium such as water. It may be produced intentionally by placing an attenuator in a circuit. The amount of
attenuation is generally expressed in decibels per unit of length.
B
back mounted A connector attached to the inside of a panel or box with
its mounting flanges inside the equipment.
bellmouth Flared at the mouth. The rear of a properly crimped wire barrel
will have a slight flare (bellmouth) to relieve the strain on the wire strands as
they leave the area of high compression and take their natural “lay”. A bellmouth condition may also be present in front of the wire barrel.
BNC Connector A radio frequency connector covered by Military
Specification. It has an impedance of 50 or 75 ohms, and is designed to
operate in the 0 to 4 GHz frequency range. It features quick connect/disconnect by pin and cam bayonet coupling.
body Main or largest portion of a connector to which other portions are
attached.
braid A weave of metal fibers used as a shield covering for an insulated
conductor or group of insulated conductors. When flattened it may be used
as a grounding strap.
broad-band E Interference generated over a wide range of frequencies
(e.g., automotive ignition noise).
bulkhead A term used to define a mounting style of connectors. Bulkhead
connectors are designed to be inserted into a panel cutout from the rear
(component side) of the panel.
C
capacitance The property of an electrical conductor (dielectric in a capacitor) that permits the storage of energy as a result of electrical displacement.
The basic unit of capacitance is the farad, however, measurement is more
commonly in microfarads or picofarads.
cavity A metallic enclosure in some types of tubes and circuits within
which resonant fields may be excited at the microwave frequency to which
the cavity is tuned. Usually referred to as resonant cavity. See also: contact
cavity.
characteristic impedance The ratio of voltage to current at any point
along a transmission line on which there are no standing waves.
circular mil area (CMA) A unit of area equal to the area of a circle
whose diameter is 1 mil (0.001 inch). Used chiefly in specifying crosssectional areas of conductors. (See AMP Brochure No. 4402-8, Computing
Circular Mil Area for AMP Terminals and Splices).
closed entry contact A female contact designed to prevent the entry of a
pin or probing device having a cross-sectional dimension (diameter) greater
than the mating pin.
coaxial cable A transmission line consisting of two conductors concentric with and insulated from each other. In its flexible form it consists of
either a solid or stranded center conductor surrounded by a dielectric. A
braid is then woven over the dielectric to form an outer conductor. A weatherproof plastic covering, usually vinyl, is placed on top of the braid.
contact durability The number of insertion and withdrawal cycles that a
connector must be capable of withstanding while remaining within the performance levels of the applicable specification.
contact engaging and separating force Force required to either
engage or separate contacts. Values are generally established for maximum
and minimum forces.
contact inspection hole A hole, perpendicular to the cylindrical rear portion of screw machined contacts, used to check the depth to which wire has
been inserted into the barrel.
contact resistance Measurement of electrical resistance of mated contacts when assembled in a connector under typical service use. Electrical
resistance is determined by measuring from the rear of the electrical area of
one contact to the rear of the contact area of the mating contact (excluding
both crimps) while carrying a specified test current.
contact, two-piece A contact made of two separate parts joined by
swedging, brazing or other means of fastening to form a single contact.
While this provides the mechanical advantages of two metals, it also has the
inherent electrical disadvantage of difference in conductivity.
corona A discharge of electricity appearing as a bluish-purple glow on the
surface of, and adjacent to, a conductor when the voltage gradient exceeds a
certain critical value. It is caused by the ionization of surrounding air by high
voltage.
crimp The final configuration of a terminal barrel after the necessary compression forces have been applied to cause a functional union between the
terminal barrel and the wire.
crimp height A top to bottom measurement of the crimped barrel, using a
crimp height comparator in the prescribed manner. (Refer to AMP Instruction
Sheet 7424).
crimping dies A term used to identify the shaping tools that, when moved
toward each other, produce a certain desirable shape to the barrel of the terminal or contact that has been placed between them. Crimping dies are often
referred to as die sets or as die inserts.
crimping head Tooling containing jaws and linkage for use in pneumatic
or hydraulic powered units to crimp loose-piece contacts/terminals that may
be too large for hand tool applications.
crimping tool A term commonly used to identify a hand held mechanical
device that is used to crimp a contact, terminal or splice.
crosstalk A magnetic or electrostatic coupling which causes the unwanted
transfer of energy from one circuit (disturbing circuit) to another circuit (disturbed circuit)
current rating The maximum continuous electrical flow of current recommended for a given situation. It is expressed in amperes.
cycle One complete sequence of values of an alternating quantity, including a rise to maximum in one direction and return to zero; a rise to maximum
in the opposite direction and return to zero. The number of cycles occurring
in one second is called the frequency.
D
dB Abbreviation — see decibel.
D.C. sparkover voltage defined as the maximum voltage across a device
before it discharges the energy to ground when subjected to a slowly rising
voltage ramp. A rate of rise of 100V/s is usually chosen for testing purposes.
decibel A unit expressing the ratio of two voltages, currents or powers.
It is equal to 20 times the common logarithm of the ratio of two voltages
across or two currents through equal loads, or 10 times the common logarithm of the two powers. One decibel is approximately the smallest change in
audible power that can be recognized by the human ear.
470
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix E - Glossary of Terms (Continued)
die closure Term used to designate a crimping area (crimping chamber)
when the dies are fully closed or bottomed. Die closure is checked with
go/no go plug gage to insure that the crimp produced by the tooling satisfies
the crimp height specification.
dielectric A material that serves as an insulator. The amount of resistance
to voltage in a given insulation.
dielectric withstanding voltage The maximum potential gradient that a
dielectric material can withstand without failure.
discontinuity Rated interconnection: a broken connection (open circuit) or
the loss of a specified connection characteristic. Transient phenomena: Short
term (temporary) interruption or unacceptable variation in current or voltage.
dissipation Unusable or lost energy, such as the production of unused
heat in a circuit.
distortion An unwanted change or addition to a signal or waveform when
it is amplified. This definition excludes noise which is an extraneous signal
superimposed on the desired signal.
dummy load A dissipative device used at the end of a transmission line or
waveguide to convert transmitted energy into heat, so essentially no energy
is radiated outward or reflected back to its source.
F
feedthrough A connector or terminal block, usually having double-ended
terminals, which permits distribution and bussing of electrical circuits. Also
used to describe a bushing in a wall or bulkhead, separating compartments
at different pressure levels, with terminations on both sides.
ferrule A short tube used to make solderless connections to shielded or
coaxial cable. Also molded into the plastic inserts of multiple contact connectors to provide strong, wear-resistant shoulders on which contact retaining springs can bear.
frequency modulation (fm) A scheme for modulating a carrier frequency in which the amplitude remains constant but the carrier frequency is displaced in frequency proportionally to the amplitude of the modulating signal.
An fm broadcast is practically immune to atmospheric and man-made
interference.
fretting corrosion A form of excellerated oxidation that appears at the
interface of contacting materials undergoing slight cyclic relative motion. All
non-nobel metals (tin) are susceptible to some degree of fretting corrosion
and will suffer contact resistance increases.
front mounted A connector is said to be front mounted when it is attached
to the outside of the mating side of a panel. A front mounted connector can
only be installed or removed from the outside of the equipment.
H
heat-shrinkable A type of plastic material that has been cross-linked. A
term describing tubes, sleeves, caps, boots, films or other forms of plastic
which shrink to encapsulate, protect or insulate connections, splices, terminations and other configurations.
hermetic Airtight, impervious to external influence, as in a hermetic package. Often used to describe metal-to-metal solder or weld-sealed packages.
hermetic seal Hermetically sealed connectors are usually multiple contact
connectors where the contacts are bonded to the connector by glass or other
materials and permits maximum leakage rate of gas through the connector of
1.0 micron ft./hr. at one atmosphere pressure for special applications.
hertz (Hz) International standard term for cycles per second. Named after
the German physicist Heinrich R. Hertz (e.g., 60 cycles per second is equal
to 60 hertz or 60 Hz).
5
RF Connectors
E
electromagnetic compatibility (EMC) The ability of an electronic
device to operate in its intended environment without its performance being
affected by EMI and without generating EMI that will affect other equipment.
electromagnetic interference (EMI) Unwanted electrical or electromagnetic energy that causes undesirable responses, degrading performance
or complete malfunctions in electronic equipment. See also: noise.
electromotive force (emf) See voltage.
environmentally sealed A unit is provided with gaskets, seals, grommets, potting or other means to keep out moisture, dust, air or dirt which
might reduce or impair its performance.
G
giga A prefix meaning one billion (109).
gigahertz (GHz) One billion cycles per second (109 cps).
ground A connection, intentional or accidental, between an electrical
circuit and the earth or some conducting body (e.g. chassis) serving in
place of earth.
I
impedance (Z) The total opposition offered by a component or circuit to
the flow of alternating or varying current. Impedance is expressed in ohms
and is similar to the actual resistance in a direct current circuit. In computations, impedance is handled as a complex ratio of voltage to current.
impedance match A condition in which the impedance of a component
or circuit is equal to the internal impedance of the source, or the surge
impedance of a transmission line. This gives maximum transfer of energy
from the source to the load, as well as minimum reflection and distortion.
impulse discharge current
I
1-0
B
is defined as the peak current of an
0-9
impulse which the device can withstand ten times (5 of each polarity at 0-5
A
fixed time intervals) without sub0-1
0 0
stantially affecting device performt
T
1
T
1 = 1.25T
ance. The test normally used to
T
1
T
2
determine this capacity uses the
8/20ms waveform as depicted below
where T1=8ms and T2=20ms.
V
impulse sparkover voltage
1.0
8
defined as the maximum level
0.9
of voltage across a device before it
discharges the energy to ground when 0.5 A
0.3
subjected to a voltage impulse. The
three common waveform profiles used 0 0
t
1 T
T =1.67T
T
2
to determine this capacity are:
T
L
T
2
inductance One cause of reactance. An electromagnetic phenomenon in
which the expanding and collapsing of a magnetic field surrounding a conductor or device tends to impede changes in current. The effects of inductance become greater as frequencies increase. The basic unit for inductance
is the henry.
471
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix E - Glossary of Terms (Continued)
input impedance The impedance that exists between the input terminals
of an amplifier or transmission line when the source is disconnected. The
circuit, signal level and frequency must be specified.
insertion loss The loss in load power due to the insertion of a component, connector or device at some point in a transmission system. Generally
expressed in decibels as the ratio of the power received at the load before
insertion of the apparatus, to the power received at the load after insertion.
insulation crimp The area of a terminal splice or contact that has been
formed around the insulation of a wire.
insulation grip The ability of certain crimped terminals to hold firmly in
place both the conductor and a small portion of insulation. This prevents
the conductor from being exposed due to insulation receding away from
the terminal.
insulation resistance The electrical resistance between two conductors
separated by an insulating material.
interface The two surfaces of a multiple-contact connector that face each
other when the connector is assembled.
interference An electrical or electromagnetic disturbance that causes
undesirable response in electronic equipment.
J
jack A connecting device into which a plug can be inserted to make circuit
connections. The jack may also have contacts which open or close to perform switching functions when the plug is inserted or removed. See also:
receptacle.
L
line impedance Impedance as measured across the terminals of a transmission line; frequently the characteristic impedance of the line.
M
matched impedance The coupling of two circuits in such a way that the
impedance of one circuit equals the impedance of the other.
mate Two join two connectors in a normal engaging mode.
maximum discharge current defined as the peak current of an impulse
which the device can withstand once without substantially affecting device
performance.
mega (M) A prefix meaning one million (106).
Military Specification Military requirements. The demand imposed upon
a system to meet a military operational need.
mismatch The condition in which the impedance of a source does not
match or equal the impedance of the connected load. This reduces power
transfer by causing reflection.
N
narrow-band EMI generated from a device operating at a specific and limited range of frequencies. See also: electromagnetic interference (EMI).
N Connector A large radio frequency connector covered by Military
Specification. It has an impedance of 50 ohms and is designed to operate in
the 0 to 11 GHz frequency range. It has a threaded coupling and is physically
larger than a TNC connector.
noise An extraneous signal in an electrical circuit, capable of interfering
with the desired signal. Classes of noise include burst of popcorn noise,
intermediate frequency noise at low audio frequencies, white (thermal) noise,
etc. Signals from power supply or ground line coupled into an amplifier output may be considered noise.
O
“O” crimp An insulation support crimp for open barrel terminals and contacts. In its crimped form it resembles an “O” and conforms to the shape of
the round wire insulation. “O” crimp is also used to describe the circumferential crimps used on COAXICON ferrules.
ohm The unit of measurement for electrical resistance. A circuit is said to
have a resistance of one ohm when an applied emf of one volt causes a current of one ampere to flow.
P
panel mount A method of fixing a connector to a board, panel or frame.
The mounted connector is usually the receptacle or female connector. The
plug or male connector is usually the removable portion.
permeability (chemical) The passage or diffusion (or rate of passage)
of a gas, vapor, liquid or solid through a barrier without physically or chemically affecting it.
permeability (magnetic) The measure of how much better a material is
than air as a path for magnetic lines of force. Air is assumed to have a permeability of 1.
plug In coaxial RF connectors the plug is usually the movable portion, and
is usually attached to a cable or removable assembly. Plugs mate with receptacles, jacks, outlets, etc.
printed circuit board (pcb) An insulating board serving as a base for a
printed circuit. When the printing process is completed, the board may
include printed components, as well as printed wiring.
propagation delay Time required for an electronic digital device, or
transmission network to transfer information from its input to its output.
propagation delay time The time between the application of a digital
input waveform and the corresponding change in input waveform. It is measured between reference points on the waveforms. The time is generally different for positive-going and negative-going waveforms.
pulse A change in the level, over a relatively short period of time, of a signal whose value is normally constant.
pulse width The length of time that the pulse voltage is at the transient
level. Electronic pulse widths are usually in the millisecond (10-3),
microsecond (10-6) or nanosecond (10-9) range.
R
receptacle In coaxial RF connectors, the receptacle is usually the fixed
or stationary portion that is mounted to the panel. In shell-type, multiplecontact connectors the receptacle usually contains the pin contacts and
is mounted on the “cold” side of a circuit such as in a drawer or black
box. Receptacles mate with plugs. See also: jack.
residual impulse defined as the voltage that will pass through the device
prior to activation of the GDT.
residual voltage defined as the small amount of voltage left on the line
after an impulse passes.
resonance A frequency at which captive reactance and inductive reactance
are equal and therefore cancel one another’s effects.
472
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Appendix E - Glossary of Terms (Continued)
RF Abbreviation for radio frequency.
RG/U Symbol used to designate coaxial cables that are made to Government
Specification (e.g., RG-58U; in this designation the “R” means radio frequency, the “G” means Government, the “58” is the number assigned to the government approval, and the “U” means it is a universal specification).
rise time The time required for a component or logic circuit to change from
the quiescent to the transient state when an input is applied. (i.e. elapsed time
between application of input and attainment of full output level).
root mean square (rms) The effective value of an alternating current, corresponding to the direct current value that will produce the same heating effect.
U
UG Symbol used to describe coaxial connectors that were made to a
Government specification. This specification is now obsolete.
ultra-high frequency (uhf) A Federal Communications Commission
designation for the band from 300 to 3000 MHz on the radio spectrum. In
television — channels 14 to 83 or 470 to 890 MHz.
5
RF Connectors
S
semi-rigid A cable containing a flexible inner core and a relatively inflexible sheathing.
sheath The outer covering of a jacket over the insulated conductors to provide mechanical protection for the conductors. Also known as the external
conduction surface of a shielded transmission line.
shield/shielding (cable) A conducting envelope, composed of metal
strands, which enclose a wire, group of wires or cable so constructed that
substantially every point on the surface of the underlying insulation is at
ground potential or at some predetermined potential with respect to ground.
shield/shielding (circuit) The metal sleeving surrounding one or more
of the conductors in a wire circuit to prevent interference, interaction or current leakage. Shielding protects a circuit against crosstalk.
shock (mechanical) (1) An abrupt impact applied to a stationary object.
(2) An abrupt or nonperiodic change in position, characterized by suddenness, and by the development of substantial internal forces.
SHV Abbreviation for standard high voltage.
sine wave A wave which can be expressed as the sine of a linear function
of time, space or both. A waveform, often viewed on an oscilloscope, of a
pure alternating current or voltage.
skin effect The tendency of alternating currents to flow near the surface of
the conductor, thus being restricted to a small part of the total cross-sectional area. This effect increases the resistance and becomes more marked as the
frequency rises.
sleeve The insulated or metallic covering over the barrel of a terminal.
solder contact A contact or terminal having a cup, hollow cylinder, eyelet
or hook to accept a wire for a conventional soldered termination.
standard high voltage (SHV) A quick connect/disconnect connector
series employing a bayonet lock coupling and designated to operate safely
up to 5000 volts AC. It is the industry standard connector specified by the
National Bureau of Standards (NBS) for high voltage use by the Atomic
Energy Commission (AEC).
standing-wave Distribution of current and voltage on a transmission line,
resulting from two sets of waves traveling in opposite directions.
standing wave ratio The ratio between maximum and minimum current or
voltage along a line. It is a measure of the mismatch between the load and the
line. It is equal to 1 when the line impedance is perfectly matched to the load.
(In which case the maximum and minimum are the same, as current and voltage do not vary along the line). The perfect match would be a 1 to 1 ratio.
super high frequency (shf) The Federal Communications Commission
designation for the band from 3,000 to 30,000 MHz in the radio spectrum.
tensile strength The greatest longitudinal stress that a substance or
union can bear without tearing or pulling apart. In crimped terminations, it is
the greatest longitudinal stress that a terminal can bear without the wire separating from the terminal.
thermal shock The effect of heat or cold applied at such a rate that
nonuniform thermal expansion or contraction occurs within a given material
or combination materials. The effect can cause inserts and other insulation
materials to pull away from metal parts.
time-delay A circuit that delays the transmission of an impulse for a definite and desired period of time.
TNC Connector A radio frequency connector covered by Military
Specification. It has an impedance of 50 ohms and is designed to operate in
a 0 to 11 GHz frequency range. Reliability is assured by a threaded coupling
that can be safely wired to prevent accidental disconnect.
V
very high frequency (vhf) A Federal Communications Commission
designation for the band from 30 to 300 MHz on the radio spectrum.
voice-frequency (vf) Any frequency within that part of the radio frequency range essential to speech transmission of a commercial quality (i.e., 300
to 3400 Hz). Also referred to as telephone frequency.
volt (V) The unit of measurement for electromotive force (emf). It is equivalent to the force required to produce 1 ampere through a resistance of 1 ohm.
voltage (E) The term most often used to designate electrical pressure that
exists between two points and is capable of producing a flow of current when a
closed circuit is connected between the two points. Voltage is measured in
volts, millivolts, microvolts and kilovolts. The terms electromotive force (emf),
potential, potential difference and voltage drop are often referred to as voltage.
voltage drop The voltage developed across a component or conductor by
the flow of current through the resistance or impedance of that component or
conductor.
voltage hold over refers to the maximum line voltage at which recovery
of the GDT to its inactive state will take place within a specified period of
time (normally 150ms) after an induced lightning pulse (normally
10/1000ms) has been applied.
VSWR Abbreviation for voltage standing wave ratio. Also see: standing
wave ratio.
W
wavelength The distance between two points which are in phase on adjacent waves. It is the distance traveled by the wave in the same span of one
cycle. Electromagnetic waves (both light and radio) have a speed in space of
about 300,000,000 meters (186,000 miles) per second. Thus wavelength in
meters is equal to 300,000,000 divided by frequency.
T
tensile The amount of axial load (longitudinal stress) required to break or
pull the wire from the crimped barrel of the terminal, splice or contact.
Z
Z Letter symbol used to represent impedance in ohms.
473
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Cross Reference
Military Part Number
M39012/01B0012
M39012/01B0013
M39012/01B007
M39012/01B008
M39012/02B008
M39012/03B0004
M39012/03B0005
M39012/05B0002
M39012/05B0002
M39012/05B0003
M39012/16B0004
M39012/16B0007
M39012/16B0008
M39012/17B0004
M39012/17B0008
M39012/19-0102
M39012/19B0003
M39012/19B0007
M39012/26B0005
M39012/26B0006
M39012/26B0007
M39012/26B0016
M39012/27B0005
M39012/27B0006
M39012/27B0015
M39012/27B0016
M39012/29B0005
M39012/55-3006
M39012/55-3007
M39012/55-3008
M39012/55-3009
M39012/55-3010
M39012/55-3025
M39012/55-3026
M39012/55-3027
M39012/55-3028
M39012/55-3029
M39012/55-3106
M39012/55-3107
M39012/55-3108
M39012/55-3109
M39012/55-3110
M39012/55-3125
M39012/55-3126
M39012/55-3127
M39012/55-3128
M39012/55-3129
M39012/55-3502
M39012/55-3602
M39012/55-4026
M39012/55-4027
M39012/55-4028
M39012/55-4029
M39012/55-4126
M39012/55-4127
M39012/55-4128
M39012/55-4129
M39012/55B3011
M39012/55B3012
M39012/55B3013
M39012/55B3014
M/A-COM Part Number
2031-8006-92
2031-8007-92
2031-8008-92
2031-8009-92
2031-8010-92
2031-8025-92
2031-8026-92
2031-8027-92
2031-8028-92
2031-8029-92
2031-8106-92
2031-8107-92
2031-8108-92
2031-8109-92
2031-8110-92
2031-8125-92
2031-8126-92
2031-8127-92
2031-8128-92
2031-8129-92
2031-8052-92
2031-8162-92
2031-8011-92
2031-8012-92
2031-8013-92
2031-8014-92
Tyco Part Number
225092-7
51692-4
225092-2
225092-1
225093-2
225094-2
225094-1
225014-2
225389-2
225014-3
2-331350-1
2-331350-9
331350
2-331351-1
331351
221313-2
1-331693-1
331693
225550-2
225550-6
225550-3
225550-1
225551-2
225551-6
225551-5
225551-1
225348-2
1051757-1
1051759-1
1051760-1
1051762-1
1051763-1
1051780-1
1051782-1
1051783-1
1051785-1
1051787-1
1051789-1
1051791-1
1051792-1
1051794-1
1051795-1
1051810-1
1051812-1
1051813-1
1051815-1
1051816-1
1051788-1
1051817-1
1532129-5
1532129-7
1532129-9
1-1532129-1
1532129-6
1532129-8
1-1532129-0
1-1532129-2
1051764-1
1051766-1
1051767-1
1051768-1
Military Part Number
M39012/55B3015
M39012/55B3016
M39012/55B3017
M39012/55B3018
M39012/55B3019
M39012/55B3019
M39012/55B3020
M39012/55B3021
M39012/55B3021
M39012/55B3022
M39012/55B3022
M39012/55B3023
M39012/55B3023
M39012/55B3024
M39012/55B3024
M39012/55B3111
M39012/55B3112
M39012/55B3113
M39012/55B3114
M39012/55B3115
M39012/55B3116
M39012/55B3117
M39012/55B3118
M39012/55B3119
M39012/55B3120
M39012/55B3121
M39012/55B3122
M39012/55B3123
M39012/55B3124
M39012/56-3006
M39012/56-3007
M39012/56-3008
M39012/56-3009
M39012/56-3010
M39012/56-3025
M39012/56-3026
M39012/56-3027
M39012/56-3028
M39012/56-3029
M39012/56-3106
M39012/56-3107
M39012/56-3108
M39012/56-3109
M39012/56-3110
M39012/56-3125
M39012/56-3126
M39012/56-3127
M39012/56-3128
M39012/56-3129
M39012/56-3502
M39012/56-3602
M39012/56B3011
M39012/56B3012
M39012/56B3013
M39012/56B3014
M39012/56B3015
M39012/56B3016
M39012/56B3017
M39012/56B3018
M39012/56B3019
M39012/56B3019
M/A-COM Part Number
2031-8015-92
2031-8016-92
2031-8017-92
2031-8018-92
2031-8019-92
2031-8020-92
2031-8021-92
2031-8022-92
2031-8023-92
2031-8024-92
2031-8111-92
2031-8112-92
2031-8113-92
2031-8114-92
2031-8115-92
2031-8116-92
2031-8117-92
2031-8118-92
2031-8119-92
2031-8120-92
2031-8121-92
2031-8122-92
2031-8123-92
2031-8124-92
2037-8006-92
2037-8007-92
2037-8008-92
2037-8009-92
2037-8010-92
2037-8025-92
2037-8026-92
2037-8027-92
2037-8028-92
2037-8029-92
2037-8106-92
2037-8107-92
2037-8108-92
2037-8109-92
2037-8110-92
2037-8125-92
2037-8126-92
2037-8127-92
2037-8128-92
2037-8129-92
2037-8052-92
2037-8162-92
2037-8011-92
2037-8012-92
2037-8013-92
2037-8014-92
2037-8015-92
2037-8016-92
2037-8017-92
2037-8018-92
2037-8019-92
Tyco Part Number
1051769-1
1051770-1
1484541-1
1051771-1
225532-4
1056413-1
1051774-1
225532-1
1051775-1
225532-3
1051776-1
1-225532-0
1051777-1
225532-9
1051778-1
1051796-1
1051797-1
1051798-1
1051799-1
1051800-1
1051801-1
1051802-1
1051803-1
1051804-1
1051805-1
1051806-1
1051807-1
1051808-1
1051809-1
1052149-1
1052151-1
1052152-1
1052154-1
1052155-1
1052171-1
1052173-1
1052174-1
1052176-1
1052177-1
1052179-1
1052181-1
1052182-1
1052184-1
1052185-1
1052201-1
1052203-1
1052204-1
1052206-1
1052207-1
1052178-1
1086723-1
1052156-1
1052157-1
1052158-1
1052159-1
1052160-1
1052161-1
1052162-1
1052163-1
225609-4
1052165-1
474
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Cross Reference (Continued)
M/A-COM Part Number
2037-8020-92
2037-8021-92
2037-8022-92
2037-8023-92
2037-8024-92
2037-8111-92
2037-8112-92
2037-8113-92
2037-8114-92
2037-8115-92
2037-8116-92
2037-8117-92
2037-8118-92
2037-8119-92
2037-8120-92
2037-8121-92
2037-8122-92
2037-8123-92
2037-8124-92
2032-8006-92
2032-8007-92
2032-8008-90
2032-8009-90
2032-8010-90
2032-8025-92
2032-8026-92
2032-8027-92
2032-8028-92
2032-8029-92
2032-8052-92
2032-8011-92
2032-8012-92
2032-8013-92
2032-8014-92
2032-8015-92
2032-8016-92
2032-8017-92
2032-8018-92
2032-8019-92
2032-8020-92
2032-8021-92
2032-8022-92
2032-8023-92
2032-8024-92
2036-8006-92
2036-8007-92
2036-8008-90
2036-8009-90
2036-8010-90
2036-8025-92
2036-8026-92
2036-8027-92
2036-8028-92
2036-8029-92
2036-8052-92
2036-8011-92
2036-8012-92
2036-8013-92
2036-8014-92
Tyco Part Number
1052166-1
225609-1
1052167-1
225609-3
1052168-1
1052169-1
1052170-1
1052186-1
1052187-1
1052188-1
1052189-1
1052190-1
1052191-1
1052192-1
1052193-1
1052194-1
1052195-1
1052196-1
1052197-1
1052198-1
1052199-1
1090174-1
1051900-1
1051901-1
1051902-1
1051903-1
1051918-1
1051919-1
1051920-1
1051921-1
1051922-1
1051923-1
1051904-1
1051905-1
1051906-1
1051907-1
1051908-1
1051909-1
1051910-1
1051911-1
1051912-1
1051913-1
1051914-1
1051915-1
1051916-1
1051917-1
1052037-1
1052038-1
1052039-1
1052040-1
1052041-1
1052046-1
1052047-1
1052048-1
1052049-1
1052050-1
1052051-1
1052042-1
1254028-1
1484499-1
1484500-1
Military Part Number
M39012/58B3015
M39012/58B3016
M39012/58B3017
M39012/58B3018
M39012/58B3019
M39012/58B3020
M39012/58B3021
M39012/58B3022
M39012/58B3023
M39012/58B3024
M39012/59-3006
M39012/59-3007
M39012/59-3008
M39012/59-3009
M39012/59-3010
M39012/59-3025
M39012/59-3026
M39012/59-3027
M39012/59-3028
M39012/59-3029
M39012/59-3502
M39012/59-4026
M39012/59-4027
M39012/59-4028
M39012/59-4029
M39012/59B3011
M39012/59B3012
M39012/59B3013
M39012/59B3014
M39012/59B3015
M39012/59B3016
M39012/59B3017
M39012/59B3018
M39012/59B3019
M39012/59B3020
M39012/59B3021
M39012/59B3022
M39012/59B3023
M39012/59B3024
M39012/60-3001
M39012/60-3002
M39012/61-3001
M39012/61-3002
M39012/79-3007
M39012/79-3008
M39012/79-3107
M39012/79-3108
M39012/79-3207
M39012/79-3207
M39012/79-3208
M39012/79-3307
M39012/79-3307
M39012/79-3308
M39012/79-3308
M39012/79-3311
M39012/79B3001
M39012/79B3002
M39012/79B3002
M39012/79B3003
M39012/79B3003
M39012/79B3003
M/A-COM Part Number
2036-8015-92
2036-8016-92
2036-8017-92
2036-8018-92
2036-8019-92
2036-8020-92
2036-8021-92
2036-8022-92
2036-8023-92
2036-8024-92
2034-8006-92
2034-8007-92
2034-8008-90
2034-8009-90
2034-8010-90
2034-8025-92
2034-8026-92
2034-8027-92
2034-8028-92
2034-8029-92
2034-8052-92
2034-8011-92
2034-8012-92
2034-8013-92
2034-8014-92
2034-8015-92
2034-8016-92
2034-8017-92
2034-8018-92
2034-8019-92
2034-8020-92
2034-8021-92
2034-8022-92
2034-8023-92
2034-8024-92
2052-8001-92
2052-8002-92
2056-8011-92
2058-8012-92
2001-8007-92
2001-8008-92
2001-8107-92
2001-8108-92
2001-8207-92
2001-8208-92
2001-8307-92
2001-8308-92
2001-8311-92
2001-8001-92
2001-8002-92
2001-8002-92
2001-8003-92
2001-8991-92
2001-8203-92
Tyco Part Number
1052043-1
1484501-1
1484502-1
1052044-1
1484503-1
1484504-1
1484505-1
1052045-1
1484506-1
1484507-1
1051981-1
1051982-1
1051983-1
1051984-1
1051985-1
1051992-1
1051994-1
1051995-1
1051996-1
1051997-1
1051999-1
1-1532129-3
1-1532129-4
1-1532129-5
1-1532129-6
1362216-1
1051986-1
1083993-1
1331293-1
1253627-1
1221165-1
1484542-1
1051987-1
1051988-1
1484543-1
1087842-1
1051989-1
1051990-1
1051991-1
1052924-1
1052926-1
1053118-1
1484516-1
1050781-1
1050783-1
1050789-1
1050790-1
228639-3
1050793-1
1050794-1
228639-1
1050800-1
228634-1
1050801-1
1050803-1
1050774-1
1058590-1
1050776-1
1050777-1
1050813-1
1089686-1
5
RF Connectors
Military Part Number
M39012/56B3020
M39012/56B3021
M39012/56B3021
M39012/56B3022
M39012/56B3022
M39012/56B3023
M39012/56B3024
M39012/56B3111
M39012/56B3112
M39012/56B3113
M39012/56B3114
M39012/56B3115
M39012/56B3116
M39012/56B3117
M39012/56B3118
M39012/56B3119
M39012/56B3120
M39012/56B3121
M39012/56B3122
M39012/56B3123
M39012/56B3124
M39012/57-3006
M39012/57-3007
M39012/57-3008
M39012/57-3009
M39012/57-3010
M39012/57-3025
M39012/57-3026
M39012/57-3027
M39012/57-3028
M39012/57-3029
M39012/57-3502
M39012/57B3011
M39012/57B3012
M39012/57B3013
M39012/57B3014
M39012/57B3015
M39012/57B3016
M39012/57B3017
M39012/57B3018
M39012/57B3019
M39012/57B3020
M39012/57B3021
M39012/57B3022
M39012/57B3023
M39012/57B3024
M39012/58-3006
M39012/58-3007
M39012/58-3008
M39012/58-3009
M39012/58-3010
M39012/58-3025
M39012/58-3026
M39012/58-3027
M39012/58-3028
M39012/58-3029
M39012/58-3502
M39012/58B3011
M39012/58B3012
M39012/58B3013
M39012/58B3014
475
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Cross Reference (Continued)
Military Part Number
M39012/79B3004
M39012/79B3004
M39012/79B3101
M39012/79B3102
M39012/79B3103
M39012/79B3103
M39012/79B3103
M39012/79B3103
M39012/79B3104
M39012/79B3104
M39012/79B3104
M39012/80-3005
M39012/80-3006
M39012/80-3007
M39012/80-3008
M39012/80-3105
M39012/80-3106
M39012/80-3107
M39012/80-3108
M39012/80-3207
M39012/80-3207
M39012/80-3307
M39012/80-3308
M39012/80-3308
M39012/80B3001
M39012/80B3002
M39012/80B3003
M39012/80B3004
M39012/80B3101
M39012/80B3102
M39012/80B3103
M39012/80B3104
M39012/81-3005
M39012/81-3006
M39012/81-3007
M39012/81-3008
M39012/81-3207
M39012/81-3208
M39012/81B3001
M39012/81B3002
M39012/81B3003
M39012/81B3003
M39012/81B3004
M39012/81B3004
M39012/82-3005
M39012/82-3006
M39012/82-3007
M39012/82-3008
M39012/82-3207
M39012/82-3208
M39012/82B3001
M39012/82B3002
M39012/82B3003
M39012/82B3003
M39012/82B3004
M39012/82B3004
M39012/83-3005
M39012/83-3006
M39012/83-3007
M39012/83-3008
M39012/83-3207
M/A-COM Part Number
2001-8004-92
2001-8204-92
2001-8101-92
2001-8102-92
2001-8103-92
2001-8303-92
2001-8981-92
2001-8104-92
2001-8304-92
2007-8005-92
2007-8006-92
2007-8007-92
2007-8008-92
2007-8105-92
2007-8106-92
2007-8107-92
2007-8108-92
2007-8001-92
2007-8002-92
2007-8003-92
2007-8004-92
2007-8101-92
2007-8102-92
2007-8103-92
2007-8104-92
2002-8005-90
2002-8006-90
2002-8007-92
2002-8008-92
2002-8207-92
2002-8208-92
2002-8001-90
2002-8002-90
2002-8003-92
2002-8203-92
2002-8004-92
2002-8204-92
2006-8005-90
2006-8006-90
2006-8007-92
2006-8008-92
2006-8207-92
2006-8208-92
2006-8001-90
2006-8002-90
2006-8003-92
2006-8203-92
2006-8004-92
2006-8204-92
2004-8005-90
2004-8006-90
2004-8007-92
2004-8008-92
2004-8207-92
Tyco Part Number
1050779-1
1050792-1
1050785-1
1050786-1
227868-1
1050787-1
1050797-1
1050812-1
227743-1
1050788-1
1050799-1
1051165-1
1051166-1
1051168-1
1051170-1
1051175-1
1051176-1
1051177-1
1051178-1
228583-3
228583-5
228583-1
228626-1
228626-5
1051160-1
1051161-1
1051163-1
1051164-1
1051171-1
1051172-1
1051173-1
1051174-1
1050926-1
1050928-1
1050929-1
1050931-1
1050934-1
1050935-1
1050923-1
1050924-1
1084643-1
1050932-1
1050925-1
1050933-1
1051091-1
1051092-1
1051093-1
1051094-1
1051097-1
1051098-1
1051087-1
1051088-1
1051089-1
1051095-1
1051090-1
1051096-1
1051026-1
1051027-1
1051028-1
1051029-1
1051032-1
Military Part Number
M39012/83-3208
M39012/83B3001
M39012/83B3002
M39012/83B3003
M39012/83B3003
M39012/83B3004
M39012/83B3004
M39012/92-3201
M39012/92-3301
M39012/92-3301
M39012/92-3301
M39012/92B3001
M39012/92B3001
M39012/92B3001
M39012/92B3101
M39012/92B3101
M39012/92B3101
M39012/92B3101
M39012/93-3001
M39012/93-3002
M39012/93-3003
M39012/94-3001
M39012/94-3002
M39012/94-3003
M55339/02-30001
M55339/28-30001
M55339/28-30002
M55339/29-30001
M55339/29-30101
M55339/31-30001
M83517/1-31001
M83517/1-31002
M83517/1-31003
M83517/1-31004
M83517/1-32001
M83517/1-32002
M83517/1-32003
M83517/1-32004
M83517/2-31001
M83517/2-31002
M83517/2-31003
M83517/2-31004
M83517/2-32001
M83517/2-32002
M83517/2-32003
M83517/2-32004
M83517/3-31001
M83517/3-31002
M83517/3-31003
M83517/3-31004
M83517/3-31005
M83517/3-31006
M83517/3-31007
M83517/3-32001
M83517/3-32002
M83517/3-32003
M83517/3-32004
M83517/3-32005
M83517/3-32006
M83517/3-32007
M83517/4-31001
M/A-COM Part Number
2004-8208-92
2004-8001-90
2004-8002-90
2004-8003-92
2004-8203-92
2004-8004-92
2004-8204-92
2001-8201-92
2001-8301-92
2001-8921-92
2001-8901-92
2001-8941-92
2001-8911-92
2001-8931-92
2001-8951-92
2062-8001-90
2062-8002-90
2062-8003-90
2064-8001-90
2064-8002-90
2064-8003-90
2088-8001-92
2084-8001-92
2084-8002-92
2081-8001-92
2081-8101-92
2081-8001-92
2052-8003-92
2052-8004-92
2052-8005-92
2052-8006-92
2052-8003-90
2052-8004-90
2052-8005-90
2052-8006-90
2051-8001-92
2051-8002-92
2051-8003-92
2051-8004-92
2051-8001-90
2051-8002-90
2051-8003-90
2051-8004-90
2052-8007-92
2052-8008-92
2052-8009-92
2052-8010-92
2052-8011-92
2052-8012-92
2052-8013-92
2052-8007-90
2052-8008-90
2052-8009-90
2052-8010-90
2052-8011-90
2052-8012-90
2052-8013-90
2052-8014-92
Tyco Part Number
1051033-1
1051022-1
1051023-1
1051024-1
1051030-1
1051025-1
1051031-1
1050791-1
228635-1
228635-6
1050796-1
1050808-1
1050805-1
1484517-1
227531-1
1050807-1
1050809-1
1050810-1
1053372-1
1053374-1
1053376-1
1053396-1
1053398-1
1053400-1
1055091-1
1054986-1
1054988-1
1053765-1
1053767-1
1053633-1
1052928-1
1052930-1
1052932-1
1052934-1
1052927-1
1052929-1
1052931-1
1052933-1
1052409-1
1052411-1
1052413-1
1052415-1
1052408-1
1052410-1
1052412-1
1052414-1
1052936-1
1052938-1
1052940-1
1052942-1
1052944-1
1052946-1
1052948-1
1052935-1
1052937-1
1052939-1
1052941-1
1052943-1
1052945-1
1052947-1
1052950-1
476
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com
Catalog 1308940
RF Connectors
Issued 4-02
Cross Reference (Continued)
Military Part Number
M83517/4-31002
M83517/4-31003
M83517/4-31004
M83517/4-32001
M83517/4-32002
M83517/4-32003
M83517/4-32004
M83517/4-32005
M83517/5-31001
M83517/5-32002
M83517/6-31001
M83517/6-31002
M83517/6-32001
M83517/6-32002
M83517/7-31001
M83517/7-31002
M83517/7-32001
M83517/7-32002
M83517/8-31001
M83517/8-31002
M83517/8-32001
M83517/8-32002
M/A-COM Part Number
2052-8015-92
2052-8016-92
2052-8017-92
2052-8014-90
2052-8015-90
2052-8016-90
2052-8017-90
2052-8018-90
2051-8005-92
2051-8005-90
2066-8001-92
2066-8002-92
2066-8001-90
2066-8002-90
2067-8001-92
2067-8002-92
2067-8001-90
2067-8002-90
2068-8001-92
2068-8002-92
2068-8001-90
2068-8002-90
Tyco Part Number
1052952-1
1052954-1
1052956-1
1052949-1
1052951-1
1052953-1
1052955-1
1052957-1
1052417-1
1052416-1
1053423-1
1053425-1
1053422-1
1053424-1
1053429-1
1053431-1
1053428-1
1053430-1
1053451-1
1053453-1
1053450-1
1053452-1
Military Part Number
M83517/9-31001
M83517/9-31002
M83517/9-31003
M83517/9-31004
M83517/9-32001
M83517/9-32002
M83517/9-32003
M83517/9-32004
M83517/10-31001
M83517/10-31003
M83517/10-31003
M83517/10-31004
M83517/10-31005
M83517/10-31006
M83517/10-31015
M83517/10-31016
M83517/10-32001
M83517/10-32005
M83517/10-32006
M83517/10-32015
M83517/10-32016
M/A-COM Part Number
2070-8001-92
2070-8002-92
2070-8003-92
2070-8004-92
2070-8001-90
2070-8002-90
2070-8003-90
2070-8004-90
2052-8019-92
2052-8021-90
2052-8021-92
2052-8023-92
2052-8023-92
2052-8024-92
2052-8033-92
2052-8034-92
2052-8019-90
2052-8023-90
2052-8024-90
2052-8033-90
2052-8034-90
Tyco Part Number
1053476-1
1053478-1
1053480-1
1053482-1
1053475-1
1053477-1
1053479-1
1053481-1
1052959-1
1052961-1
1052962-1
1052963-1
1052963-1
1484518-1
1484519-1
1484520-1
1484521-1
1484522-1
1484523-1
1484524-1
1484525-1
5
RF Connectors
OSMP Cross Reference
Tyco
Part Number
1056526-1
1056527-1
1056553-1
1056554-1
1059829-1
1056745-1
1056743-1
1056744-1
1056721-1
M/A-COM
Part Number
2902 7947 62
2902 7985 62
2908 7947 62
2908 7985 62
2980 0000 62
2980 2240 00
2981 2241 00
2982 2240 00
2982 2241 00
Tyco
Part Number
1056722-1
1056724-1
1056729-1
1056731-1
1056749-1
1056726-1
1056734-1
1056736-1
1056750-1
M/A-COM
Part Number
2998 5001 02
2998 5002 02
2998 5003 02
2998 5005 02
2998 5022 94
2998 5028 02
2998 5030 02
2998 5033 02
2998 5035 02
Tyco
Part Number
1056751-1
1056752-1
1056728-1
1056706-1
1056702-1
1056707-1
1056708-1
M/A-COM
Part Number
2998 5043 02
2998 5044 02
2998 5045 02
2998 5049 02
2998 5054 94
2998 5055 94
2998 5056 94
Tyco
Part Number
1045568-1
1045582-1
1045621-1
1045630-1
1045632-1
1045637-1
1045576-1
1045578-1
1045586-1
1045672-1
1045677-1
1045573-1
1045607-1
1045598-1
1045651-1
1045647-1
M/A-COM
Part Number
1037 7188 02
1052 0000 00
1052 1132 00
1052 1200 12
1052 1201 02
1052 1300 02
1052 1302 02
1052 3121 00
1052 3355 02
1052 5013 00
1054 5005 02
1056 0000 02
1056 1100 02
1056 3100 00
1058 0000 02
1058 3100 00
Tyco
Part Number
1045643-1
1045645-1
1045646-1
1045725-1
1045593-1
1045633-1
1045642-1
1045701-1
1045704-1
1045708-1
1045723-1
1045747-1
1045369-1
1046477-1
1046479-1
1402389-1
M/A-COM
Part Number
1058 3121 00
1058 3122 00
1058 3123 00
1058 3203 00
1058 5014 00
1062 0000 00
1064 0000 00
1080 0000 02
1081 0000 02
1082 0000 02
1084 0000 02
1084 1100 00
1088 0000 02
1401 7985 00
1402 7985 00
1452 1201 02
SSMA Cross Reference
Tyco
Part Number
1045370-1
1045351-1
1045381-1
1045401-1
1045410-1
1045423-1
1045477-1
1045482-1
1045496-1
1045497-1
1045508-1
1045511-1
1045489-1
1045506-1
1045503-1
1045520-1
M/A-COM
Part Number
1001 5004 02
1001 7985 00
1001 7985 02
1002 7985 00
1004 7985 00
1006 7985 00
1007 7985 02
1031 5001 02
1031 5002 02
1031 7188 02
1032 5001 00
1032 5002 00
1034 7188 02
1034 7196 02
1037 5001 02
1037 5002 02
477
Products for Aerospace and
Defense Applications
Dimensions are in inches and
millimeters unless otherwise
specified. Values in brackets
are metric equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject to change.
Technical Support —
Refer to inside back cover.
www.tycoelectronics.com