AC Safety Certified
High Voltage SMT
High Capacitance
High Temperature
EMI Filters
SMPS Stacks
High Voltage Radials
Power Inductors
Planar Array
Discoidal
CapStrate ®
Custom Solutions
CH
EAnce
/Rplia
HSom
Ro C
Ceramic
Component Solutions
YOUR TECHNOLOGY PARTNER
The mission of the Johanson Companies is to
translate our customer needs into quality electronic
components, produced in factories that are models
of excellence, supported by innovative service. With
over 30 years of experience, Johanson Dielectrics
provides both standard and custom technology solutions tailored to your specific electronic applications.
Our standard product range includes High Voltage
and AC Safety Capacitors providing solutions for
Lighting, IT and Business Equipment designs. Our
X2Y® Capacitor line provides advanced EMI filtering and IC decoupling solutions and our High
Capacitance Tanceram® products provide the highest
capacitance values in the smallest cases sizes.
Customized solutions in the areas of High Temperature and High AC power ceramic capacitors are
available to customers who require a partnered technology solution.
Johanson Dielectrics design and manufacturing
operations are located in Sylmar, California and
Zhoaqing, PRC. Our quality minded management
system utilizes continuous improvement programs
focused on increased product reliability, manufacturing through-put, and product performance. Our
broad experience, applications support, and responsive service enhance our ability to drive down your
total cost of procurement and speed your time to
market.
HIGH FREQUENCY CERAMIC SOLUTIONS
Johanson Technology Inc., Camarillo CA. Products include High Q Capacitors, Ceramic and Wire-wound
Chip Inductors, and a broad range of LTCC based RF IPCs such as Antennas, Filters, Baluns, Couplers,
Matched Filter Baluns, etc.
www.johansontechnology.com
Johanson Dielectrics, Inc. reserves the right to make design and price changes without notice. All sales
are subject to the Johanson terms and conditions, including a limited warranty and remedies for nonconforming goods or defective goods. Download the Johanson terms and conditions from our website
at https://www.johansondielectrics.com/terms-and-conditions.
2
www.johanson dielectrics.com
INDEX OF PRODUCTS
SURFACE MOUNT CERAMIC CAPACITORS
Ceramic Capacitor Prototyping Kits
4-5
High Voltage Capacitors 250 - 6,000 VDC
Safety Capacitors 250 VAC, Y2, X1, X2
6-7
8-9
EMI Filter & Decoupling Capacitors
High Temperature 200°C Capacitors
10-13
14-15
High Capacitance Tanceram® Capacitors
16-17
SMT Multi-layer Ceramic Capacitors 10 - 200 VDC
18-19
LEADED CERAMIC CAPACITORS
SMPS Stacked Capacitors, 125°C & 200°C versions
20-21
Mini-SMPS Stacked Capacitors
BME Mini SMPS Capacitors
22-23
24-25
Switch-mode Radial Leaded Capacitors
High Voltage Radial Leaded Capacitors, 125°C, 200°C versions
26-27
28-29
Semi-shielded (Coated) & Shielded
Shielded LPM Series
30-37
39-42
POWER INDUCTORS
PLANAR CAPACITORS & CUSTOM CERAMIC SOLUTIONS
Planar Array Capacitors
43-44
CAPSTRATE & CUSTOMER CERAMIC SOLUTIONS
CapStrate® & Customer Ceramic Solutions
45-46
PART NUMBER, DIELECTRIC, PACKAGING SPECIFICATIONS, INDEX
Capacitor General Electrical Characteristics and PN breakdown
Capacitor Packaging
Index
www.johanson dielectrics.com
47
48
49
3
CERAMIC CAPACITOR ENGINEERING DESIGN KITS
Johanson Dielectrics, Inc. offers a variety of multi-layer chip capacitor
sample kits for proto-type design work. Each kit is grouped by type,
size, or voltage and contains a selection of popular values and
tolerances. The chips are individually packaged in labeled plastic
compartments for easy access. The general range of kit contents
is described below. Specific part number details may be found at
www.johansondielectrics.com
500 VDC Ceramic Chip Capacitor Kit
P/N: S-500
400 piece sample assortment of selected values from 33pF to 0.1µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0805 - 1812
500 VDC
NP0, X7R
33pF to 0.1µF
10-20 pcs
400 pcs
1000 VDC Ceramic Chip Capacitor Kit
P/N: S-1KV
400 piece sample assortment of selected values from 22pF to 0.1µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0805 - 2225
1000 VDC
NP0, X7R
22pF to 0.1µF
10-20 pcs
400 pcs
2000 VDC Ceramic Chip Capacitor Kit
P/N: S-2KV
300 piece sample assortment of selected values from 22pF to 0.022µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
1206 - 2225
2000 VDC
NP0, X7R
22pF to 0.022µF
10-20 pcs
300 pcs
X2 SAFETY CERTIFIED Ceramic Chip Capacitor Kit
P/N: S-SY3
240 piece sample assortment of selected values from 10pF to 1500 pF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
1808
3KV DC / 250 AC
NP0, X7R
10pF to 1500 pF
20 pcs
240 pcs
X1/Y2 SAFETY CERTIFIED Ceramic Chip Capacitor Kit
P/N: S-SY2
200 piece sample assortment of selected values from 10pF to 2200 pF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
1808 - 2220
5KV DC / 250 VAC
NP0, X7R
10pF to 2200pF
20 pcs
200 pcs
Johanson may from time-time adjust actual kit contents based on design demand trends.
Check the Johanson web site for design kit updates and kit content changes.
4
www.johanson dielectrics.com
CERAMIC CAPACITOR ENGINEERING DESIGN KITS
EMI FILTER Capacitor Kit - 0402 Size
P/N: S-X07CBK
600 piece sample assortment of selected values from 1.0pF to 0.01µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0402
10 - 50 VDC
NP0, X7R
1.0pF to 0.01µF
50 pcs
600 pcs
EMI FILTER Capacitor Kit - 0603 Size
P/N: S-X14CBK
700 piece sample assortment of selected values from 1.0pF to 0.01µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0603
50 - 100 VDC
NP0, X7R
1.0pF to 0.01µF
50 pcs
700 pcs
POWER BYPASS Capacitor Kit - 0603 Size
P/N: S-X14-PBP
300 piece sample assortment of selected values from 0.47nF to 0.220µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0603
6.3 - 100 VDC
X7R, X5R
0.47nF to 0.22µF
20 pcs
300 pcs
EMI FILTER Capacitor Kit - 0805 Size
P/N: S-X15-EMI
260 piece sample assortment of selected values from 1.0pF to 0.01µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0805
50 - 100 VDC
NP0, X7R
1.0pF to 0.01µF
20 pcs
260 pcs
AUTOMOTIVE QUALIFIED capacitor kit
P/N: S-X2Y-AEC
420 piece sample assortment of selected values from 100pF to 0.22µF
Chip Size
Voltage Rating
Dielectric
Capacitance Range
Qty / Value
Total Qty
0603, 0805, 1206
10 - 100 VDC
X7R
100pF to 0.22µF
30 pcs
420 pcs
Johanson may from time-time adjust actual kit contents based on design demand trends.
Check the Johanson web site for design kit updates and kit content changes.
www.johanson dielectrics.com
5
HIGH VOLTAGE SURFACE MOUNT MLCCS 250 - 6,000 VDC
These high voltage capacitors feature a special internal electrode
design which reduces voltage concentrations by distributing
voltage gradients throughout the entire capacitor.
This unique design also affords increased capacitance values in
a given case size and voltage rating. The capacitors are designed
and manufactured to the general requirement of EIA198 and
are subjected to a 100% electrical testing making them well
suited for a wide variety of telecommunication, commercial, and
industrial applications.
APPLICATIONS
• Analog & Digital Modems
• LAN/WAN Interface
• Lighting Ballast Circuits
• Voltage Multipliers
• DC-DC Converters
• Back-lighting Inverters
Polyterm® soft termination option for demanding environments &
processes available on select parts, please contact the factory.
CASE SIZE
JDI /EIA
R15/0805
R18/1206
S41/1210
R29/1808
CAPACITANCE SELECTION
INCHES
(MM)
L
W
T
E/B
.080 ±.010
.050 ±.010
.055 Max.
.020 ±.010
(2.03 ±.25)
(1.27 ±.25)
(1.40)
(0.51±.25)
L
W
T
E/B
.125 ±.010
.062 ±.010
.067 Max.
.020 ±.010
(3.18 ±.25)
(1.57 ±.25)
(1.70)
(0.51±.25)
L
W
T
E/B
.125 ±.010
.095 ±.010
.080 Max.
.020 ±.010
(3.18 ±.25)
(2.41 ±.25)
(2.03)
(0.51±.25)
L
W
T
E/B
.185 ±.020
.080 ±.010
.085 Max.
.020 ±.010
(4.70 ±.51)
(2.03 ±.25)
(2.16)
(0.51±.25)
RATED
VOLTAGE
250 VDC
500 VDC
630 VDC
1000 VDC
250 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
250 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
NP0 DIELECTRIC
MINIMUM
MAXIMUM
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
1.0
1.0
1.0
1.0
1.0
1.0
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
680
560
390
1500
1200
1000
220
82
3900
2700
1800
560
220
4700
3300
2200
820
470
180
75
75
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
X7R DIELECTRIC
MINIMUM
MAXIMUM
1000
1000
1000
100
1000
1000
1000
100
100
100
1000
1000
1000
100
100
100
1000
1000
100
100
100
100
47
47
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
pF
0.022
0.010
6800
2700
0.068
0.033
0.027
0.010
4700
1000
0.150
0.068
0.047
0.015
4700
1000
0.100
0.047
0.022
0.010
3300
1800
390
150
µF
µF
pF
pF
µF
µF
µF
µF
pF
pF
µF
µF
µF
µF
pF
pF
µF
µF
µF
µF
pF
pF
pF
pF
Available cap. values include these significant retma values and their multiples: 1.0 1.2 1.5 1.8 2.2 2.7 3.3 3.9 4.7 5.6 6.8 8.2
( 1.0 = 1.0, 10, 100, 1000, etc.) Consult factory for non-retma values and sizes or voltages not shown.
6
www.johanson dielectrics.com
HIGH VOLTAGE SURFACE MOUNT MLCCS 250 - 6,000 VDC
CASE SIZE
JDI /EIA
INCHES
CAPACITANCE SELECTION
(MM)
S43 / 1812
S49 / 1825
S47 / 2220
S48 / 2225
L
W
T
E/B
.177 ±.012
.125 ±.010
.110 Max.
.025 ±.015
(4.50 ±.30)
(3.18 ±.25)
(2.80)
(0.64±.38)
L
W
T
E/B
.180 ±.010
.250 ±.010
.140 Max.
.025 ±.015
(4.57 ±.25)
(6.35 ±.25)
(3.56)
(0.64±.38)
L
W
T
E/B
.225 ±.015
.200 ±.015
.150 Max.
.025 ±.015
(5.72 ±.38)
(5.08 ±.38)
(3.81)
(0.64±.38)
L
W
T
E/B
.225 ±.010
.255 ±.015
.160 Max.
.025 ±.015
(5.72 ±.25)
(6.48 ±.38)
(4.06)
(0.64±.38)
NP0 DIELECTRIC
MINIMUM
MAXIMUM
RATED
VOLTAGE
250 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
500 VDC
630 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
100 pF
100 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
100 pF
100 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
1000 pF
1000 pF
100 pF
100 pF
10 pF
10 pF
10 pF
10 pF
1000 pF
1000 pF
100 pF
100 pF
10 pF
10 pF
10 pF
10 pF
8200 pF
6800 pF
5600 pF
1800 pF
1000 pF
390 pF
150 pF
150 pF
0.018 µF
0.015 µF
0.012 µF
5600 pF
2200 pF
1200 pF
390 pF
390 pF
0.018 µF
0.018 µF
0.015 µF
5600 pF
2700 pF
1500 pF
470 pF
470 pF
0.027 µF
0.022 µF
0.018 µF
8200 pF
3300 pF
1800 pF
470 pF
470 pF
X7R DIELECTRIC
MINIMUM
MAXIMUM
0.010 µF
1000 pF
1000 pF
1000 pF
100 pF
100 pF
100 pF
100 pF
10 pF
0.01 µF
0.01 µF
1000 pF
100 pF
100 pF
100 pF
100 pF
100 pF
0.01 µF
0.01 µF
1000 pF
1000 pF
100 pF
100 pF
100 pF
100 pF
0.01 µF
0.01 µF
1000 pF
1000 pF
100 pF
100 pF
100 pF
100 pF
0.470 uF
0.330 uF
0.120 µF
0.100 µF
0.010 µF
4700 pF
1200 pF
820 pF
330 pF
0.390 µF
0.270 µF
0.180 µF
0.039 µF
8200 pF
2200 pF
1500 pF
820 pF
0.470 µF
0.270 µF
0.120 µF
0.039 µF
0.010 µF
2700 pF
1500 pF
820 pF
0.560 µF
0.390 µF
0.180 µF
0.056 µF
0.012 µF
3300 pF
2700 pF
1200 pF
Available cap. values include these significant retma values and their multiples: 1.0 1.2 1.5 1.8 2.2 2.7 3.3 3.9 4.7 5.6 6.8 8.2
( 1.0 = 1.0, 10, 100, 1000, etc.) Consult factory for non-retma values and sizes or voltages not shown.
ELECTRICAL CHARACTERISTICS
W
L
T
Meets the standard NP0 & X7R dielectric specifications listed on page 79
DIELECTRIC WITHSTANDING VOLTAGE
DWV = 1.5 X rated WVDC for ratings 500-999 WVDC,
E/B
DWV = 1.2 X rated WVDC for ratings ≥ 1,000 WVDC
NOTE: Capacitors may require a surface coating to prevent external arcing. Solder mask should not be used beneath
capacitors. For more information see JDI Tech Note “Surface Arc Season”
HOW TO ORDER HIGH VOLTAGE SURFACE MOUNT
P/N written: 202R18W102KV4E
202
R18
W
102
K
V
4
E
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
R15 = 0805
R18 = 1206
R29 = 1808
S41 = 1210
S43 = 1812
S47 = 2220
S48 = 2225
S49 = 1825
N = NP0
W = X7R
1st two digits are significant; third digit denotes
number of zeros.
102 = 1000 pF
104 = 0.10 µF
J = ± 5%
K = ± 10%
M = ± 20%
V = Ni Barrier with 100%
Sn Plating (Matte)
4 = Unmarked
6 = EIA Code
501
631
102
202
302
402
502
602
=
=
=
=
=
=
=
=
500 V
630 V
1000 V
2000 V
3000 V
4000 V
5000 V
6000 V
F = Polyterm
flexible termination
T = SnPb
www.johanson dielectrics.com
E
T
= Embossed 7”
= Punched 7”
No code = bulk
Tape specs.
per EIA RS481
7
AC SAFETY CAPACITORS
Johanson Dielectrics Type SC ceramic chip capacitors are
designed for AC voltage surge and lightning protection in lineto-ground interface applications in computer networks, modem,
facsimile and other equipment.
Johanson’s safety capacitor offering includes four different case
sizes in NP0 and X7R dielectric materials.
These devices are surface mount ready with barrier terminations
and tape and reel packaging.
Information on capacitor safety ratings and certification details
may be found below.
W
L
T
SAFETY
RATING
X2
E/B
Polyterm® soft termination
option for demanding
environments & processes
available on select parts,
please contact the factory.
VOLTAGE
RATING
WITHSTANDING
VOLTAGE
IMPULSE
VOLTAGE
CASE
SIZE
JOHANSON
ORDERING P/N
250 VAC
1,500 VAC
2,500 V
1808
302R29______V3E-****-SC
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484• UL File E472557 & E212609
X2
250 VAC
1,500 VAC
2,500 V
1812
302S43______V3E-****-SC
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484 • UL File E472557 & E212609
X1/Y2
250 VAC
1,500 VAC
5,000 V
1808
502R29______V3E-****-SC
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484 • UL File E472557
X1/Y2
250 VAC
1,500 VAC
5,000 V
1812
502S43______V3E-****-SC
X1/Y2
250 VAC
1,500 VAC
5,000 V
2211
502R30______V3E-****-SC
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484 • UL File E472557
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484 • UL File E472557
X1/Y2
250 VAC
1,500 VAC
5,000 V
2220
502S47______V3E-****-SC
STANDARDS: IEC/EN 60384-14:2013+A1:2016 • UL 60384-14 CERTIFICATIONS: TUV T 72210484 • UL File E472557
X Capacitors are defined as suitable for use in situations where failure of the capacitor would not lead to danger of electric shock.
Y Capacitors are defined as suitable for use in situations where failure of the capacitor could lead to danger of electric shock.
8
www.johanson dielectrics.com
R29 / 1808
X2
R29 / 1808
X1/Y2
S43 / 1812
X2
S43 / 1812
X1/Y2
R30 / 2211
X1/Y2
S47 / 2220
X1/Y2
L
W
T
E/B
.185 ±.015
.080 ±.010
.085 Max.
.020 ±.010
(4.70 ±.38)
(2.03 ±.25)
(2.16)
(0.51±.25)
L
W
T
E/B
.185 ±.015
.080 ±.015
.085 Max.
.020 ±.010
(4.70 ±.38)
(2.03 ±.38)
(2.16)
(0.51±.25)
L
W
T
E/B
.175 ±.010
.125 ±.010
.115 Max.
.025 ±.015
(4.45 ±.25)
(3.18 ±.25)
(2.92)
(0.64±.38)
L
W
T
E/B
.175 ±.010
.125 ±.010
.115 Max.
.025 ±.015
(4.45 ±.25)
(3.18 ±.25)
(2.92)
(0.64±.38)
L
W
T
E/B
.225 ±.016
.110 ±.010
.115 Max.
.020 ±.010
5.72 ±.40)
(2.80 ±.25)
(2.92)
(0.51±.25)
L
W
T
E/B
.225 ±.015
.200 ±.015
.150 Max.
.025 ±.015
(5.72 ±.38)
(5.08 ±.38)
(3.81)
(0.64±.38)
4700 pF
3300 pF
2700 pF
2200 pF
1800 pF
1500 pF
1200 pF
1000 pF
680 pF
560 pF
470 pF
330 pF
NP0
X7R
P/N written: 302R29W102MV3E-****-SC
R29
W
102
M
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
302 = 250VAC
[2500V Impulse]
R29=1808
R30=2211
S43=1812
S47=2220
AC2=2220
N = NP0
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros, R = decimal.
102 = 1000 pF
104 = 0.10 µF
5R0 = 5.0pF
J = ± 5%
K = ± 10%
M = ± 20%
502 = 250VAC
[5000V Impulse]
270 pF
DIELECTRIC
HOW TO ORDER AC SAFETY CAPACITORS
502
220 pF
180 pF
150 pF
120 pF
100 pF
68 pF
56 pF
47 pF
33 pF
27 pF
22 pF
18 pF
15 pF
(MM)
12 pF
INCHES
10 pF
SAFETY CERTIFIED
5 pF
AC SAFETY CAPACITORS
V
3
E
TERMINATION
MARKING
PACKING
V = NI Barrier with
100% Sn Plating
(Matte)
3 = Required E = Embossed 7”
Safety Mark U = Embossed 13”
F = Polyterm
flexible termination
www.johanson dielectrics.com
-****-SC
TYPE
SC = Safety
Certified
No code = bulk
Tape specs.
per EIA RS481
9
EMI FILTER & DECOUPLING CAPACITORS
®
EMI® filter capacitors employ a unique, patented low inductance design featuring two balanced capacitors
that are immune to temperature, voltage and aging performance differences.
These components offer superior decoupling and EMI filtering performance, virtually eliminate parasitics, and
can replace multiple capacitors and inductors saving board space and reducing assembly costs.
ADVANTAGES
•
•
•
•
•
APPLICATIONS
One device for EMI suppression or decoupling
Replace up to 7 components with one EMI
Differential and common mode attenuation
Matched capacitance line to ground, both lines
Low inductance due to cancellation effect
•
•
•
•
•
Amplifier Filter & Decoupling
High Speed Data Filtering
EMC I/O Filtering
FPGA / ASIC / µ-P Decoupling
DDR Memory Decoupling
222 4400pF 2200pF
472 9400pF 4700pF
.030µF .015µF
.044µF .022µF
.078µF .039µF
.094µF .047µF
0.20µF 0.10µF
0.36µF 0.18µF
103
153
223
393
473
104
184
50
50
50
50
50
50
16
0603 (X14)
25
25
16
10
0805 (X15)
1206 (X18)
X7R
NP0
100 100 100 100 100 100 50
NP0
X7R
1210 (X41)
X7R
1410 (X44)
X7R
1812 (X43)
X7R
10
100 100 100 100 100 100 100 50
X7R
NP0
50
100 100 100 100 100 100 100 100 50
X7R
1.0µF
152 3000pF 1500pF
50
2.0µF
102 2000pF 1000pF
.020µF .010µF
471
50
105
940pF 470pF
221
50
0.94µF 0.47µF
440pF 220pF
101
50
474
200pF 100pF
470
50
0.80µF 0.40µF
47pF
94pF
330
50
404
33pF
66pF
270
0402 (X07)
0.66µF 0.33µF
27pF
54pF
220
SIZE
334
22pF
44pF
100
50
Power Bypass
(2 Y-Caps.)
0.44µF 0.22µF
10pF
20pF
XRX
NP0
EMI Filtering
(1 Y-Cap.)
224
100 pF; 1kHz ±50Hz; 1.0±0.2 VRMS
C ≤ 100 pF; 1Mhz ±50kHz; 1.0±0.2 VRMS
TEST CONDITIONS:
OTHER:
1.0kHz±50Hz @ 1.0±0.2 Vrms
CB
See page 81 for additional dielectric specifications.
W
Cross-sectional View
Dimensional View
CB
G
A
EB
T
W
B
L
G
CASE SIZE
EB
0402 (X07)
IN
MM
0603 (X14)
IN
MM
0805 (X15)
IN
MM
1206 (X18)
L
IN
MM
T
1210 (X41)
IN
MM
1410 (X44)
IN
MM
1812 (X43)
IN
MM
L
0.045 ±
0.003
1.143 ±
0.076
0.064 ±
0.005
1.626 ±
0.127
0.080 ±
0.008
2.032 ±
0.203
0.124 ±
0.010
3.150 ±
0.254
0.125 ±
0.010
3.175 ±
0.254
0.140 ±
0.010
3.556 ±
0.254
0.174 ±
0.010
4.420 ±
0.254
W
0.025 ±
0.003
0.635 ±
0.076
0.035 ±
0.005
0.889 ±
0.127
0.050 ±
0.008
1.270 ±
0.203
0.063 ±
0.010
1.600 ±
0.254
0.098 ±
0.010
2.489 ±
0.254
0.098 ±
0.010
2.490 ±
0.254
0.125 ±
0.010
3.175 ±
0.254
T
0.020
max
0.508
max
0.026
max
0.660
max
0.040
max
1.016
max
0.050
max
1.270
max
0.070
max
1.778
max
0.070
max
1.778
max
0.090
max
2.286
max
EB
0.008 ±
0.003
0.203 ±
0.076
0.010 ±
0.006
0.254 ±
0.152
0.012 ±
0.008
0.305 ±
0.203
0.016 ±
0.010
0.406 ±
0.254
0.018 ±
0.010
0.457 ±
0.254
0.018 ±
0.010
0.457 ±
0.254
0.022 ±
0.012
0.559 ±
0.305
CB
0.012 ±
0.003
0.305 ±
0.076
0.018 ±
0.004
0.457 ±
0.102
0.022 ±
0.005
0.559 ±
0.127
0.040 ±
0.005
1.016 ±
0.127
0.045 ±
0.005
1.143 ±
0.127
0.045 ±
0.005
1.143 ±
0.127
0.045 ±
0.005
1.143 ±
0.127
www.johanson dielectrics.com
11
EMI FILTER & DECOUPLING CAPACITORS
THE EMI DESIGN - A BALANCED, LOW ESL, “CAPACITOR CIRCUIT”
The EMI capacitor design starts with standard 2 terminal MLC capacitor’s opposing electrode sets, A & B, and adds a third electrode set (G) which
surround each A & B electrode. The result is a highly vesatile three node capacitive circuit containing two tightly matched, low inductance capacitors
in a compact, four-terminal SMT chip.
EMI FILTERING:
The EMI component contains two shunt or “line-to-ground” Y capacitors. Ultra-low ESL (equivalent series
inductance) and tightly matched inductance of these capacitors provides unequaled high frequency
Common-Mode noise filtering with low noise mode conversion. EMI components reduce EMI emissions
far better than unbalanced discrete shunt capacitors or series inductive filters. Differential signal loss is
determined by the cut off frequency of the single line-to-ground (Y) capacitor value of an EMI.
POWER BYPASS / DECOUPLING
For Power Bypass applications, EMI’s two “Y” capacitors are connected in parallel. This doubles the total
capacitance and reduces their mounted inductance by 80% or 1/5th the mounted inductance of similar sized
MLC capacitors enabling high-performance bypass networks with far fewer components and vias. Low ESL
delivers improved High Frequency performance into the GHz range.
GSM RFI ATTENUATION IN AUDIO & ANALOG
GSM handsets transmit in the 850 and 1850 MHz bands using a TDMA pulse
rate of 217Hz. These signals cause the GSM buzz heard in a wide range of audio
products from headphones to concert hall PA systems or “silent” signal errors
created in medical, industrial process control, and security applications. Testing
was conducted where an 840MHz GSM handset signal was delivered to the
inputs of three different amplifier test circuit configurations shown below whose
outputs were measured on a HF spectrum analyzer.
1) No input filter, 2 discrete MLC 100nF power bypass caps.
2) 2 discrete MLC 1nF input filter, 2 discrete MLC 100nF power bypass caps.
3) A single EMI 1nF input filter, a single EMI 100nF power bypass cap.
EMI configuration provided a nearly flat response above the ambient and up to
10 dB imrpoved rejection than the conventional MLCC configuration.
AMPLIFIER INPUT FILTER EXAMPLE
In this example, a single Johanson EMI component was used to filter noise at the input of a DC
instrumentation amplifier. This reduced component count by 3-to-1 and costs by over 70% vs.
conventional filter components that included 1% film Y-capacitors.
Parameter
EMI
10nF
Discrete
10nF, 2 @ 220 pF
Comments
DC offset shift
< 0.1 µV
< 0.1 µV
Referred to input
Common mode rejection
91 dB
92 dB
Source: Analog Devices, “A Designer’s Guide to Instrumentation Amplifiers (2nd Edition)” by Charles Kitchin and Lew Counts
12
www.johanson dielectrics.com
EMI FILTER & DECOUPLING CAPACITORS
®
COMMON MODE CHOKE REPLACEMENT
• Superior High Frequency Emissions Reduction
• Smaller Sizes, Lighter Weight
• No Current Limitation
• Vibration Resistant
• No Saturation Concerns
See our website for a detailed application note with component
test comparisons and circuit emissions measurements.
Measured Common Mode Rejection
PARALLEL CAPACITOR SOLUTION
A common design practice is to parallel decade capacitance values to
extend the high frequency performance of the filter network. This causes an
unintended and often over-looked effect of anti-resonant peaks in the filter
networks combined impedance. EMI’s very low mounted inductance allows
designers to use a single, higher value part and completely avoid the antiresonance problem. The impedance graph on right shows the combined
mounted impedance of a 1nF, 10nF & 100nF 0402 MLC in parrallel in RED.
The MLC networks anti-resonance peaks are nearly 10 times the desired
impedance. A 100nF and 47nF EMI are plotted in BLUE and GREEN. (The
total capacitance of EMI (Circuit 2) is twice the value, or 200nF and 98nF in this
example.) The sigle EMI is clearly superior to the three paralleled MLCs.
EMI HIGH PERFORMANCE POWER BYPASS - IMPROVE PERFORMANCE, REDUCE SPACE & VIAS
Actual measured performance of two high performance SerDes FPGA designs demonstrate how a 13 component EMI bypass network
significantly out performs a 38 component MLC network.
www.johanson dielectrics.com
13
HIGH TEMPERATURE SURFACE MOUNT MLCCS 200°C
Johanson’s high temperature MLCC series exhibit stable performance
across an extended operating temperature range of -55°C to +200°C.
Both Class I and Class II parts are available with DC voltage ratings of
50,100 and 200V satisfying a wide range of demanding applications.
FEATURES
APPLICATIONS
• Stable 200°C Operation
• Deep Hole Drilling Electronics
• Compact SMD Chip
• High Temperature Modules
• Polyterm® Termination Option
• Industrial Equipment
• Sn-Pb Termination Option
• Automotive
• Avionics
ELECTRICAL CHARACTERISTICS
NP0
X7R
OPERATING RANGE:
-55 to +200°C
-55 to +200°C
TEMPERATURE
COEFFICIENT:
0±30ppm/°C
(-55to+125°C)
0±15% (-55to+125°C)
200°C CAP. DROP:
-0.5% max.
-45% max.
DISSIPATION FACTOR:
0.001 (0.1%) max.
0.020 (2.0%) max.
AGING RATE:
None
100GΩ or 1000ΩF (whichever
200°C IR >1ΩF or 100MΩ
is less)
WITHSTANDING VOLTAGE:
2.5 X WVDC for ratings ≤ 200 VDC
1.5 X WVDC for ratings 201-500 VDC
TEST CONDITIONS:
C > 100 pF; 1kHz ±50Hz; 1.0±0.2 VRMS
C ≤ 100 pF; 1Mhz ±50kHz; 1.0±0.2 VRMS
MECHANICAL CHARACTERISTICS
T07/0402
T14/0603
T15/0805
14
X7R Temp. Only
X7R Temp. & Rated Voltage (100%)
NP0 Temp. & Rated Voltage (100%)
RATED
VOLTAGE
L
W
T
E/B
Inches
.040 ±.004
.020 ±.004
.025 Max.
.008±.004
(mm)
(1.02 ±.10)
(0.51 ±.10)
(0.64)
(.20±.10)
L
W
T
E/B
Inches
.063 ±.008
.032 ±.008
.035 Max.
.010±.005
(mm)
(1.60 ±.20)
(0.81 ±.20)
(0.89)
(.25±.13)
L
W
T
E/B
Inches
.080 ±.010
.050 ±.010
.055 Max.
.020±.010
(mm)
(2.03 ±.25)
(1.27 ±.25)
(1.40)
(0.51±.25 )
25 VDC
50 VDC
NP0 DIELECTRIC
MINIMUM
MAXIMUM
10 pF
270 pF
10 pF
120 pF
X7R DIELECTRIC
MINIMUM
MAXIMUM
100 pF
4700 pF
100 pF
1500 pF
100 VDC
10 pF
82 pF
10 pF
390 pF
200 VDC
10 pF
50 pF
10 pF
100 pF
25 VDC
10 pF
820 pF
1000 pF
0.022 µF
50 VDC
10 pF
330 pF
1000 pF
0.010 µF
2200 pF
100 VDC
10 pF
220 pF
100 pF
200 VDC
10 pF
120 pF
100 pF
560 pF
25 VDC
100 pF
2200 pF
1000 pF
0.100 µF
50 VDC
100 pF
1500 pF
1000 pF
0.033 µF
100 VDC
100 pF
1000 pF
1000 pF
0.010 µF
200 VDC
10 pF
680 pF
100 pF
2200 pF
www.johanson dielectrics.com
HIGH TEMPERATURE SURFACE MOUNT MLCCS 200°C
MECHANICAL CHARACTERISTICS
T18/1206
T41/1210
T43/1812
T49/1825
T48/2225
W
RATED
VOLTAGE
L
W
T
E/B
Inches
.125 ±.010
.062 ±.010
.067 Max.
.020±.010
(mm)
(3.17 ±.25)
(1.57 ±.25)
(1.70)
(0.51±.25 )
L
W
T
E/B
Inches
.125 ±.010
.095 ±.010
.090 Max.
.020±.010
(mm)
(3.18 ±.25)
(2.41 ±.25)
(2.28)
(0.51±.25 )
L
W
T
E/B
Inches
.175 ±.010
.125 ±.010
.110 Max.
.025±.015
(mm)
(4.45 ±.25)
(3.17 ±.25)
(2.80)
(0.64±.38)
L
W
T
E/B
Inches
.180 ±.010
.250 ±.010
.140 Max.
.025±.015
(mm)
(4.57 ±.25)
(6.35 ±.25)
(3.56)
(0.64±.38)
L
W
T
E/B
Inches
.225 ±.010
.255 ±.015
.160 Max.
.025±.015
(mm)
(5.72 ±.25)
(6.48 ±.38)
(4.06)
(0.64±.38)
25 VDC
NP0 DIELECTRIC
MINIMUM
MAXIMUM
100 pF
6800 pF
X7R DIELECTRIC
MINIMUM
MAXIMUM
1000 pF
0.220 µF
50 VDC
100 pF
3300 pF
1000 pF
0.100 µF
100 VDC
100 pF
2200 pF
1000 pF
0.022 µF
200 VDC
100 pF
1500 pF
1000 pF
5600 pF
25 VDC
1000 pF
0.015 µF
0.047 µF
0.470 µF
50 VDC
1000 pF
5600 pF
0.047 µF
0.220 µF
100 VDC
100 pF
4700 pF
0.047 µF
0.056 µF
200 VDC
100 pF
3300 pF
0.0047 µF
0.015 µF
25 VDC
1000 pF
0.033 µF
0.047 µF
1.000 µF
50 VDC
1000 pF
0.012 µF
0.047 µF
0.470 µF
100 VDC
1000 pF
0.010 µF
0.047 µF
0.180 µF
200 VDC
1000 pF
8200 pF
0.047 µF
0.047 µF
25 VDC
1000 pF
0.033 µF
0.10 µF
2.200 µF
50 VDC
1000 pF
0.027 µF
0.10 µF
1.000 µF
100 VDC
1000 pF
0.022 µF
0.10 µF
0.560 µF
200 VDC
1000 pF
0.018 µF
0.10 µF
0.150 µF
25 VDC
1000 pF
0.100 µF
0.10 µF
3.300 µF
50 VDC
1000 pF
0.039 µF
0.10 µF
1.500 µF
100 VDC
1000 pF
0.033 µF
0.10 µF
0.820 µF
200 VDC
1000 pF
0.022 µF
0.10 µF
0.220 µF
L
T
E/B
See page 81 for additional dielectric specifications.
HOW TO ORDER 200°C MLCCS
500
VOLTAGE
250
500
101
201
=
=
=
=
25 V
50 V
100 V
200 V
T14
W
SIZE
T07 = 0402
T14 = 0603
T15 = 0805
T18 = 1206
T41 = 1210
T43 = 1812
T49 = 1825
T48 = 2225
P/N written: 500T14W103KV4E
103
K
V
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
N = NP0
W = X7R
1st two digits are significant; third digit denotes
number of zeros.
NP0
V = Ni Barrier w/
100% Sn Plating (150°C)
4 = Unmarked
(Not available)
102 = 1000 pF
103 = 0.01 µF
104 = 0.10 µF
J = ± 5%
K = ± 10%
X7R
K = ± 10%
M = ± 20%
T = Ni Barrier w/
95%Sn/5%Pb Plating (150°C)
E = Ni Barrier w/
100% Sn Plating (180°C)
4
E
PACKING
E = Embossed 7”
T = Punched 7”
No code = bulk
Tape specs.
per EIA RS481
P = Palladium Silver Pd-Ag
(200°C)
www.johanson dielectrics.com
15
TANCERAM CHIP CAPACITORS
®
TANCERAM® chip capacitors can replace tantalum capacitors
in many applications and offer several key advantages over
traditional tantalums. Because TANCERAM® capacitors exhibit
extremely low ESR, equivalent circuit performance can often be
achieved using considerably lower capacitance values. Low
DC leakage reduces current drain, extending the battery life of
portable products. TANCERAM® high DC breakdown voltage
ratings offer improved reliability and eliminate large voltage
de-rating common when designing with tantalums.
ADVANTAGES
• Low ESR
• Low DC Leakage
• Higher Surge Voltage
• Non-polarized Devices
• Reduced CHIP Size
• Improved Reliability
• Higher Insulation Resistance • Higher Ripple Current
APPLICATIONS
• Switching Power Supply Smoothing (Input/Output)
• Backlighting Inverters
• DC/DC Converter Smoothing (Input/Output)
• General Digital Circuits
HOW TO ORDER TANCERAM®
16
Part number written: 100R15X106MV4E
100
R15
X
106
M
V
4
E
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
6R3 = 6.3 V
100 = 10 V
160 = 16 V
250 = 25 V
500 = 50 V
101 = 100 V
See Chart
W = X7R
X = X5R
1st two digits are
significant; third digit
denotes number of
zeros.
105 = 1.00 µF
476 = 47.0 µF
107 = 100 µF
K = ±10%
M = ±20%
V = Nickel Barrier
with 100% Tin
Plating (Matte)
4 = Unmarked
Code Type Reel
E
Plastic 7”
T
Paper 7”
Tape specifications
conform to EIA
RS481
T = SnPb*
(*available on
select parts)
www.johanson dielectrics.com
DIELECTRIC
TANCERAM CHIP CAPACITORS
®
INCHES
(mm)
0201
R05
L
W
T
EB
.024 ±.001
.011 ±.001
.013 Max.
.004 Min.
(0.60 ±.03)
(0.28 ±.03)
(0.33 Max.)
(0.10 Min.)
0402
R07
L
W
T
EB
.039 ±.002
.020 ±.002
.022 Max.
.002 Min.
(0.99 ±.05)
(0.51 ±.05)
(0.55 Max.)
(0.05 Min.)
VDC
1.0 µF
Dielectric W
10
6.3
4
35
25
16
10
6.3
X
L
T
E/B
X (X5R)
CAPACITANCE SELECTION
EIA / JDI
W
W (X7R)
1.5 µF
2.2 µF
3.3 µF
4.7 µF
10 µF
22 µF
47 µF 100 µF 220 µF
W
W
W
W
W
W
W
X
X
X
X
X
X
X
X
X
4
50
35
25
16
10
6.3
50
35
25
16
10
6.3
4
50
35
25
16
10
6.3
50
35
25
16
10
6.3
0603
R14
L
W
T
EB
.063 ±.004
.031 ±.004
.037 Max.
.006 Min.
(1.60 ±.10)
(0.79 ±.10)
(0.93 Max.)
(0.15 Min.)
0805
R15
L
W
T
EB
.079 ±.012
.049 ±.008
.057 Max.
.008 Min.
(2.01 ±.30)
(1.24 ±.20)
(1.44 Max.)
(0.20 Min.)
1206
R18
L
W
T
EB
.126 ±.012
.063 ±.008
.071 Max.
.010 Min.
(3.20 ±.30)
(1.60 ±.20)
(1.80)
(0.25 Min.)
1210
S41
L
W
T
EB
.126 ±.012
.098 ±.012
.106 Max.
.012 Min.
(3.20 ±.30)
(2.49 ±.30)
(2.69 Max.)
(0.30 Min.)
1812
S43
L
W
T
EB
.177 ±.016
.126 ±.012
.118 Max.
.012 Min.
(4.50 ±.41)
(3.20 ±.30)
(2.99 Max.)
(0.30 Min.)
50
2220
S47
L
W
T
EB
.220 ±.016
.197 ±.016
.118 Max.
.012 Min.
(5.59 ±.41)
(3.20 ±.30)
(2.99 Max.)
(0.30 Min.)
50
25
25
“K” OR “M” TOLERANCE, 0201 ONLY AVALIABLE IN M
ONLY “M” TOLERANCE
ELECTRICAL CHARACTERISTICS
DIELECTRIC:
X7R
TEMPERATURE COEFFICIENT:
DISSIPATION FACTOR:
INSULATION RESISTANCE (MIN. @ 25°C, WVDC)
DIELECTRIC STRENGTH:
TEST CONDITIONS:
OTHER:
X5R
±15% (-55 to +125°C)
±15% (-55 to +85°C)
For ≥ 50 VDC: 5% max.
For ≤ 35 VDC: 10% max.
For ≥ 50 VDC: 5% max.
For ≤ 35 VDC: 10% max.
100 ΩF or 10 GΩ, whichever is less
2.5 X WVDC, 25°C, 50mA max.
Capacitance values ≤ 10 µF: 1.0kHz±50Hz @ 1.0±0.2 Vrms
Capacitance values > 10 µF: 120Hz±10Hz @ 0.5V±0.1 Vrms
See page 81 for additional dielectric specifications.
www.johanson dielectrics.com
17
102
391
331
271
221
181
151
121
101
820
680
560
470
390
330
270
220
180
150
120
100
821
50V
102
.063 ±.008
.032 ±.008
.035 Max.
.010±.005
(1005)
681
0603
25V
821
.040 ±.004
.020 ±.004
.025 Max.
.008 ±.004
(0.60 ±.03)
(0.30 ±.03)
(0.30 ±.03)
(0.15±.05)
681
0402
(0603)
561
L
W
T
EB
.024 ±.001
.012 ±.001
.012 ±.001
.006 ±.002
471
R14
L
W
T
EB
0201
561
R07
L
W
T
EB
(mm)
471
R05
Inches
0R5
JDI
AVAILABLE CAPACITANCE CODE
XRX
CASE SIZE
Voltage
SURFACE MOUNT MLCCS 10 - 200 VDC
16V
10V
(1.02 ±.10)
(0.51 ±.10)
(0.64)
(0.20±.10)
25V
(1608)
200V
16V
10V
(1.60 ±.20)
(0.81 ±.20)
(0.89)
(.25±.13)
100V
(2012)
200V
50V
25V
16V
R15
L
W
T
EB
0805
.080 ±.010
.050 ±.010
.050 Max.
.020±.010
(2.03 ±.25)
(1.27 ±.25)
(1.27)
(0.51±.25 )
100V
(3216)
200V
50V
25V
16V
R18
S41
L
W
T
EB
L
W
T
EB
1206
.125 ±.010
.062 ±.010
.050 Max.
.020 ±.010
1210
.125 ±.010
.095 ±.010
.065 Max.
.020 ±.010
(3.17 ±.25)
(1.57 ±.25)
(1.27)
(0.51 ±.25)
100V
(3224)
200V
50V
25V
(3.18 ±.25)
(2.41 ±.25)
(1.65)
(0.51 ±.25)
100V
(4532)
200V
NP0
X7R
50V
W
25V
L
16V
T
E/B
100V
50V
HOW TO ORDER - SURFACE MOUNT MLCC
391
331
271
221
181
151
121
101
820
680
Part number written: 100R07W104KV4E
100
R 07
W
104
K
V
4
E
VOLTAGE
SERIES/SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
R05 = 0201
R07 = 0402
R14 = 0603
R15 = 0805
R18 = 1206
S41 = 1210
S43 = 1812
N = NP0
W = X7R
X = X5R
1st two digits are
significant; third
digit denotes
number of zeros,
R = decimal.
V = Nickel Barrier
with 100% Tin
Plating (Matte)
3 = Special
4 = Unmarked
6 = EIA Code*
T = SnPb
*Not available
on sizes
≤ 0402
E = Embossed 7”
T = Punched 7”
U = Embossed 13”
R = Punched 13”
No code = bulk
100 = 10 V DC
160 = 16 V DC
250 = 25 V DC
500 = 50 V DC
101 = 100 V DC
201 = 200 V DC
18
560
470
390
330
270
220
180
25V
150
(4.45 ±.25)
(3.17 ±.25)
(2.16)
(0.64 ±.38)
120
.175 ±.010
.125 ±.010
.085 Max.
.025 ±.015
100
1812
0R5
L
W
T
EB
XRX
S43
5R6 = 5.6 pF
100 = 10 pF
102 = 1,000 pF
474 = 0.47 µF
* B = ± 0.10 pF
* C = ± 0.25 pF
* D = ± 0.50 pF
*F=±1%
* G = ± 2%
* J = ± 5%
* K = ± 10%
* M = ± 20%
*Values < 10 pF
only
www.johanson dielectrics.com
Tape specifications
on page 48. Not all
tape styles are available on all parts.
107
476
106
475
335
225
105
474
334
224
104
823
683
563
473
333
273
223
183
153
123
103
822
562
472
392
332
272
222
182
152
122
AVAILABLE CAPACITANCE CODE
NP0
X7R
X5R
Voltage
SURFACE MOUNT MLCCS 10 - 200 VDC
CASE
SIZE
25V
0201
R05
16V
10V
50V
25V
16V
0402
R07
10V
200V
100V
50V
25V
0603
R14
16V
200V
100V
50V
See Tanceram High
Capacitance Series
for values ≥ 1.0µF
25V
0805
R15
16V
200V
100V
50V
1206
R18
25V
200V
100V
50V
25V
1210
S41
16V
200V
100V
50V
1812
S43
107
476
106
475
335
225
105
474
334
224
104
823
683
563
473
333
273
223
183
153
123
103
822
562
472
392
332
272
222
182
152
122
25V
ELECTRICAL CHARACTERISTICS
Please refer to page 81 of the catalog or www.johansondielectrics.com
www.johanson dielectrics.com
19
STACKED SMPS CERAMIC CAPACITORS
Stacked Switch-Mode ceramic capacitors feature large
capacitance values and exhibit low ESR (equivalent series
resistance) and low ESL (equivalent series inductance) making
them well suited for high power and high frequency applications
where tantalum or aluminum electrolytic capacitors may not
be suitable. The P-Series feature mechanical and pin-out
configurations per DSCC 87106 and 88011 drawings while the
E-Series feature mechanical and pin-out configurations more
common in European design applications.
KEY FEATURES
• P-Series Approved to DSCC Drawings 87106 & 88011
MIL-PRF-49470
• New T-Series 200°C for downhole tools and aircraft engine
control applications.
• E-Series Common European Lead Styles available to
MIL-PRF-49470 requirements.
• NP0 & X7R Dielectrics, 50 to 500 VDC Ratings
• Low ESR / Low ESL, Ideal for SMPS Filtering Applications
• Custom Sizes, Voltages,
and Values Available
D
E
B A
CASE SIZE
F
.010"± .002
.250" MIN
.055" ± .010
STRAIGHT LEAD
.100" MAX
.025" MIN
D
.020" ± .002
C
L-LEAD
J-LEAD
.100" TYP
E
.070"±.010
F
.010"± .002
.250" MIN
.055" ± .010
.020" ± .002
.100" MAX
.025" MIN
C
.100" TYP
HOW TO ORDER STACKED
.050"SMPS
min
.070"±.010
Part number written: 201P03W275KJ4H
.050" min
201
P03
W
275
K
J
4
H
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
See Chart
N = NP0
B = BX
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros.
101 = 100 pF
102 = 1000 pF
103 = 0.01 µF
105 = 1.00 µF
J = ±5%
K= ±10%
L = ±15%
M = ±20%
N = ±30%
Z = +80% -20%
P = +100% -0%
J = “J” Leads
(formed in)
K = “J” Leads with
reduced height of
.045” ±.010”
L = “L” Leads
(formed out)
M = “L” Leads with
reduced height of
.045” ±.010”
N = Straight Lead
4 = Standard
3 = Specified
500
101
201
501
20
.050" min
.050" min
B A
=
=
=
=
50 V
100 V
200 V
500 V
www.johanson dielectrics.com
T = Tape and Reel
H = High Reliability
testing per customer
requirements
S = Special Part
STACKED SMPS CERAMIC CAPACITORS
P-SERIES DSCC STYLE X7R CAPACITANCE / VOLTAGE SELECTION
CASE
SIZE
CHIP
LAYERS
P05
P55
P04
P54
P03
P53
P01
P51
P02
P52
P06
P56
1
5
1
5
1
5
1
5
1
5
1
5
LEADS
/SIDE
X7R MAX CAPACITANCE (µF)
MECHANICAL SIZE RANGE (IN.)
LENGTH (D)
WIDTH (E)
3
0.275
0.300
4
0.425
0.440
10
1.075
0.500
20
2.075
0.500
15
1.535
0.870
20
2.075
1.350
TMAX (B)
.185
.715
.185
.715
.185
.715
.185
.715
.185
.715
.185
.715
50V
3.0
15
9.0
45
28
140
50
250
75
370
160
800
100V
200V
500V
2.2
11
6.5
32
20
100
40
200
55
270
110
550
1.0
5.0
3.0
15
9.5
47
19
95
25
125
50
250
0.50
2.5
1.5
7.5
4.7
23
9.4
46
14
70
25
125
Please refer to our website for complete offering including NP0 & BX capacitance ranges.
NEW 200°C T-SERIES CAPACITANCE / VOLTAGE SELECTION
CASE
SIZE
CHIP
LAYERS
T05
T55
T04
T54
T03
T53
1
5
1
5
1
5
LEADS
/SIDE
MAX CAPACITANCE (µF)
MECHANICAL SIZE RANGE (IN.)
LENGTH (D)
WIDTH (E)
3
0.275
0.300
4
0.425
0.440
10
1.075
0.500
TMAX (B)
50V
100V
200V
.185
.715
.185
.715
.185
.715
1.20
5.60
2.70
15.0
10.0
47.0
0.68
3.30
1.50
8.20
5.60
27.0
0.33
1.50
0.82
3.90
2.70
12.0
Please refer to our website for complete offering including NP0 capacitance ranges.
or contact our technical team @ https://johansondielectrics.com/ask-a-question
E-SERIES EUROPEAN STYLE X7R CAPACITANCE / VOLTAGE SELECTION
CASE
SIZE
CHIP
LAYERS
E24
E54
E26
E56
E21
E51
E28
E58
E29
E59
1
4
1
4
1
4
1
4
1
4
LEADS
/SIDE
X7R MAX CAPACITANCE (µF)
MECHANICAL SIZE RANGE (MM)
LENGTH (D)
WIDTH (E)
3
8.7
9.2
5
13.6
14.9
6
16.6
21.6
14
38.2
12.0
14
40.6
24.0
TMAX (B)
50V
100V
200V
500V
3.8
14.8
3.
14.8
3.8
14.8
3.8
14.8
3.8
14.8
5.0
20
16
64
30
120
35
140
75
300
4.0
16
12
48
22
88
25
100
50
200
2.5
10
7.5
30
14
56
16
64
35
140
1.0
4.0
3.3
13
6.0
24
7.0
28
16
64
Please refer to our website for complete offering including NP0 & BX capacitance ranges.
www.johanson dielectrics.com
21
MINI-SWITCH-MODE CAPACITORS
®
JDI’s Mini Switch-Mode® ceramic capacitors combine the
advantages of high capacitance found in tantalum capacitors
with very low ESR performance of ceramic capacitors. The “J”
and “L” lead configurations replace 1825 and 2225 SMT chips to
provide stress relief and prevent cracking due to thermal cycling
or mechanical board flexing. Another plus of the J-lead style is
that this configuration allows use of the same solder lands as
the SMT chips. See the Stacked Switch-Mode section for larger
values. See also the Technical Notes on soldering and handling
and suggested solder lands.
FEATURES
• High Capacitance, Small Size
• Low ESR/ESL
• Leadframe reduces thermal & mechanical stress due to
board flexure and TCE mismatch
APPLICATIONS
• DC-DC Converters
• Power Supply Input & Output Filters
CAPACITANCE SELECTION
22
NP0 Max Capacitance (uF)
X7R Max Capacitance (uF)
SIZE
CODE
EIA CHIP
SIZE
25V
50V
100V
200V
500V
25V
50V
100V
200V
500V
P09
1825
0.056
0.047
0.039
0.027
0.018
1.5
1.2
0.75
0.56
0.27
P29
1825
0.11
0.094
0.078
0.054
0.036
3.0
2.4
1.5
1.1
0.54
P39
1825
0.16
0.14
0.11
0.081
0.054
4.5
3.6
2.2
1.6
0.81
P49
1825
0.22
0.18
0.15
0.10
0.07
6.0
4.8
3.0
2.2
1.0
P08
2225
0.068
0.056
0.047
0.033
0.027
2.7
2.2
1.5
1.2
0.39
P28
2225
0.13
0.11
0.094
0.066
0.054
5.4
4.4
3.0
2.4
0.78
P38
2225
0.20
0.16
0.14
0.10
0.081
8.1
6.6
4.5
3.6
1.1
P48
2225
0.27
0.22
0.18
0.13
0.10
10
8.8
6.0
4.8
1.5
www.johanson dielectrics.com
MINI-SWITCH-MODE CAPACITORS
®
CASE SIZE
DIMENSIONS
APPLICABLE
TO ALL SIZES:
IN.
L
W
MM
H ± .010
.070 1.78
C TYP.
.100 2.54
P ± .015
.065 1.65
W
h
h
c
p
L
P09
P28
h
c
p
P08
T
T
T
T
h
L
W
L
W
c
p
P29
P38
c
p
P39
P48
P49
DIMENSIONS
APPLICABLE
TO SPECIFIC SIZES:
IN.
MM
IN.
MM
IN.
MM
IN.
MM
IN.
MM
IN.
MM
IN.
MM
IN.
MM
L MAX
.280
7.11
0.24
6.1
0.28
7.11
0.24
6.1
0.28
7.11
0.24
6.1
0.28
7.11
0.24
6.1
W MAX
.270
6.86
0.27
6.86
0.27
6.86
0.27
6.86
0.27
6.86
0.27
6.86
0.27
6.86
0.27
6.86
T MAX
.095
2.41 0.095 2.41
0.19
4.83
0.19
4.83 0.285 7.24 0.285 7.24
0.38
9.65
0.38
9.65
Note: J-Lead and L-Lead options are available on all sizes above
ELECTRICAL CHARACTERISTICS
DIELECTRIC:
NP0
TEMPERATURE COEFFICIENT:
0 ±30ppm/°C (-55 to +125°C)
±15% (-55 to +125°C)
0.1% max.
2.5% max.
None
-2.5% per decade hour
1000 ΩF or 100 GΩ, whichever is less
500 ΩF or 50 GΩ, whichever is less
DISSIPATION FACTOR:
AGING:
INSULATION RESISTANCE (MIN. @ 25°C, WVDC)
X7R
For 500V Ratings: 750VDC, 25ºC, 50mA max
For 200V Ratings: 2xWVDC, 25ºC, 50mA max
For 25-100V Ratings: 2.5xWVDC, 25ºC, 50mA max
DIELECTRIC STRENGTH:
1kHz ±50Hz;1.0±0.2 VRMS
TEST CONDITIONS:
See page 81 for additional dielectric specifications.
OTHER:
HOW TO ORDER - MINI SWITCHMODE®
Part number written: 500P28W395KJ4U
500
P28
W
395
K
J
4
U
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
See Chart
N = NP0
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros.
103 = 0.01 μF
105 = 1.0 μF
106 = 10 uF
J = ±5%
K = ±10%
M = ±20%
Z = +80% -20%
J = “J” Leads
(formed in)
L = “L” Leads
(formed out)
3 = Standard
4 = Unmarked
U = Tape and Reel
16mm, 13” Reel
NONE = Bulk pack
H = High Reliability
testing per customer
requirements
S = Special Part
250
500
101
201
501
=
=
=
=
=
25 V
50 V
100 V
200 V
500 V
www.johanson dielectrics.com
23
BME MINI-SWITCH-MODE CAPACITORS
®
This new series of miniature switchmode power supply filter
capacitors uses BME (Base Metal Electrode) construction to
achieve 300-400% capacitance increases and component size
reductions compared to their PME (Precious Metal Electrode)
counterparts per the comparison examples below.
BME Size / Capacitance Comparison
Technology
Chips
Volts
Max. Cap.
PME
1x 1825
50V
1.2µF
BME
1x 1812
50V
4.7µF
PME
2x 2225
100V
4.4µF
BME
2x 2220
100V
10µF
FEATURES
APPLICATIONS
• High Capacitance, Small SIze
• DC-DC Converters
• Low ESR/ESL
• Power Supply Input & Output Filters
• Leadframe reduces thermal & mechanical stress
due to board flexure and TCE mismatch
• High Capacitance Applications Where Increased
Reliability is Required
• Green / ROHS Compliant
CAPACITANCE / VOLTAGE
CASE SIZE / PART NUMBER
CAPACITANCE
RATING
DC VOLTAGE
RATING
SIZE P0A
1812 SINGLE STACK
SIZE P07
2220 SINGLE STACK
SIZE P2A
1812 DOUBLE STACK
2.2 µF
100V
101P0AW225MJ4U+RC
4.7 µF
50V
500P0AW475MJ4U+RC
4.7 µF
100V
101P07W475MJ4U+RC
10 µF
50V
500P07W106MJ4U+RC
10 µF
100V
22 µF
50V
101P2AW475MJ4U+RC
W
500P2AW106MJ4U+RC
H
h1
Dimensions
Applicable
to specific sizes:
L MAX:
W MAX:
H MAX:
IN.
MM
IN.
MM
IN.
p1
MM
0.217
0.157
0.118
5.5
4.0
3.0
0.256
0.217
0.118
6.5
5.5
3.0
0.217
0.157
0.236
5.5
4.0
6.0
Dimensions Applicable
to all sizes:
H1 TYP.
C TYP.
P1 TYP.
P2 ± 0.02
IN.
MM
.059
.100
.020
.065
1.50
2.54
0.50
1.65
L
p2IN.
c
L
p2
c
0.256
0.217
0.236
h1
p1
L
p2
c
Hwww.johanson dielectrics.com
p1
MM
6.5
5.5
6.0
H
H
h1
h1
101P27W106MJ4U+RC
500P27W226MJ4U+RC
W
W
W
24
SIZE P27
2220 DOUBLE STACK
BME MINI-SWITCH-MODE CAPACITORS
®
TYPICAL APPLICATION: DC-DC CONVERTER INPUT & OUTPUT FILTERING
Vin
Input
Filter
Capacitor
Vout
Output
Filter
Capacitor
Controller
ELECTRICAL CHARACTERISTICS
OPERATING RANGE:
-55 to +125°C
TEMPERATURE COEFFICIENT:
X7R, ±15%
DISSIPATION FACTOR:
0.020 (2.0%) max.
AGING RATE:
100GΩ or 1000 ΩF
whichever is less
WITHSTANDING VOLTAGE:
2.5 X WVDC for 50 VDC
2.0 X WVDC for 100 VDC
TEST CONDITIONS:
1kHz ±50Hz; 1.0±0.2 VRMS, 25°C
HOW TO ORDER - BME MINI SWITCH-MODE®
Part number written: 500P07W106MJ4U+RC
500
P07
W
106
M
J
4
U
+RC
VOLTAGE
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
ROHS CODE
500 = 50 V
101 = 100 V
See Chart
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros.
225 = 2.2 μF
106 = 10 uF
M = ±20%
J = “J” Leads
(formed in)
4 = Unmarked
U = Embossed
Tape 13” Reel per
EIA RS481
+RC = RoHS
Compliant
www.johanson dielectrics.com
25
SWITCH-MODE RADIAL LEADED CAPACITORS
KEY FEATURES
• Rated Working Voltages from 25 to 500 VDC
• Rugged Epoxy Coating Offers Increased Protection
• Hi-Rel Screened Versions Available
• Custom Sizes, Voltages, and Values Available
ADVANTAGES
CASE SIZE
H03
H04
H05
H06
• Power Supplies
• Surge Protection
• Voltage Multipliers
• Industrial Control Circuits
• Data Isolation
• Custom Applications
RATED
VOLTAGE
IN.
(MM)
W
H
T
S
LD
.300 max.
.300 max.
.200 max.
.200 nom.
.020 nom.
(7.62 max.)
(7.62 max.)
(5.08 max.)
(5.08 nom.)
(.510 nom.)
W
H
T
S
LD
.400 max.
.400 max.
.200 max.
.200 nom.
.020 nom.
(10.2 max.)
(10.2 max.)
(5.08 max.)
(5.08 nom.)
(.510 nom.)
W
H
T
S
LD
.500 max.
.500 max.
.200 max.
.400 nom.
.025 nom.
(12.7 max.)
(12.7 max.)
(5.08 max.)
(10.2 nom.)
(.635 nom.)
W
H
T
S
LD
.870 max.
.600 max.
.200 max.
.790 nom.
.032 nom.
(22.1 max.)
(15.2 max.)
(5.08 max.)
(20.1 nom.)
(.813 nom.)
NP0 CAPACITANCE (MAX.)
X7R CAPACITANCE (MAX.)
VALUE
CODE
VALUE
CODE
25 VDC
.070 µF
703
2.00 µF
205
50 VDC
.060 µF
603
1.60 µF
165
100 VDC
.050 µF
503
1.10 µF
115
200 VDC
.040 µF
403
.730 µF
734
500 VDC
.020 µF
203
.250 µF
254
25 VDC
.120 µF
124
5.10 µF
515
50 VDC
.100 µF
104
4.10 µF
415
100 VDC
.082 µF
823
2.70 µF
275
200 VDC
.050 µF
503
1.80 µF
185
500 VDC
.030 µF
303
.670 µF
674
25 VDC
.240 µF
244
8.70 µF
875
50 VDC
.200 µF
204
7.20 µF
725
100 VDC
.180 µF
184
4.80 µF
485
200 VDC
.110 µF
114
3.30 µF
335
500 VDC
.070 µF
703
1.10 µF
115
25 VDC
.750 µF
754
22.0 µF
226
50 VDC
.620 µF
624
17.0 µF
176
100 VDC
.560 µF
564
13.0 µF
136
200 VDC
.360 µF
364
8.00 µF
805
500 VDC
.240 µF
244
2.90 µF
295
See page 81 for additional dielectric specifications.
26
www.johanson dielectrics.com
SWITCH-MODE RADIAL LEADED CAPACITORS
CASE SIZE
IN.
H07
H08
H09
H10
(MM)
W
H
T
S
LD
1.10 max.
.600 max.
.200 max.
.980 nom.
.032 nom.
(27.9 max.)
(15.2 max.)
(5.08 max.)
(24.9 nom.)
(.813 nom.)
W
H
T
S
LD
1.10 max.
.600 max.
.350 max.
.980 nom.
.032 nom.
(27.9 max.)
(15.2 max.)
(8.89 max.)
(24.9 nom.)
(.813 nom.)
W
H
T
S
LD
.670 max.
.540 max.
.200 max.
.575 nom.
.025 nom.
(17 max.)
(13.7 max.)
(5.08 max.)
(14.6 nom.)
(.635 nom.)
W
H
T
S
LD
.930 max.
.720 max.
.250 max.
.800 nom.
.032 nom.
(23.6 max.)
(18.3 max.)
(6.35 max.)
(20.3 nom.)
(.813 nom.)
W
NP0 CAPACITANCE (MAX.)
VALUE
CODE
VALUE
CODE
25 VDC
.680 µF
684
35.0 µF
356
50 VDC
.560 µF
564
28.0 µF
286
100 VDC
.470 µF
474
19.0 µF
196
200 VDC
.330 µF
334
13.0 µF
136
500 VDC
.200 µF
204
4.60 µF
465
25 VDC
1.20 µF
125
70.0 µF
706
50 VDC
1.10 µF
115
56.0 µF
566
100 VDC
.820 µF
824
37.0 µF
376
200 VDC
.470 µF
474
26.0 µF
266
500 VDC
.300 µF
304
8.70 µF
875
25 VDC
.450 µF
454
13.0 µF
136
50 VDC
.360 µF
364
10.0 µF
106
100 VDC
.330 µF
334
7.20 µF
725
200 VDC
.240 µF
244
5.00 µF
505
500 VDC
.180 µF
184
1.70 µF
175
25 VDC
1.00 µF
105
38.0 µF
386
50 VDC
.900 µF
904
30.0 µF
306
100 VDC
.750 µF
754
20.0 µF
206
200 VDC
.470 µF
474
14.0 µF
146
500 VDC
.300 µF
304
5.80 µF
585
NOTE: Lead lengths are typically 1.25” for orders in bulk packaging. Leads are typically
1.00” for tape and reel packaging. Tape and reel packaging comes in 1000 piece reels.
Meniscus
Height
.050" Max
HOW TO ORDER SWITCH-MODE RADIALS
201
VOLTAGE
250
500
101
201
501
=
=
=
=
=
25 V
50 V
100 V
200 V
500 V
X7R CAPACITANCE (MAX.)
T
H
S
RATED
VOLTAGE
Part number written: 201H07W105KQ4
H07
W
105
K
Q
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
Q = Leaded &
Encapsulated
4 = Standard
3 = Specified
T = Tape and Reel
H = High Rel Testing
per customer
requirements
S = Special Part
See Chart
N = NP0
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros.
101 = 100 pF
102 = 1000 pF
103 = 0.01 µF
105 = 1.00 µF
J
K
M
Z
=
=
=
=
± 5%
± 10%
± 20%
+80% -20%
www.johanson dielectrics.com
4
T
27
HIGH VOLTAGE RADIAL LEADED CAPACITORS
KEY FEATURES
• Rated Working Voltages from 500 to 5000 VDC
• Rugged Epoxy Coating Offers Increased Protection
• Compact MLC Designs Smaller Than Film or Disc
• NEW 200°C Versions Available for Oil &
Geophysical Tool, Aircraft Engine Control Applications
• DSCC Drawing & Other Screened Versions Available
ADVANTAGES
CASE SIZE
IN.
H42
H47
H51
H62
H66
• Power Supplies
• Surge Protection
• Voltage Multipliers
• Industrial Control Circuits
• Data Isolation
• Custom Applications
RATED
VOLTAGE
(MM)
W
H
T
S
LD
0.250 Max
0.220 Max
0.270 Max
0.170 ±0.03
0.025 ±.002
(6.35 Max)
(5.59 Max)
(6.86 Max)
(4.32 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
0.370 Max
0.300 Max
0.270 Max
0.275 ±0.03
0.025 ±.002
(9.40 Max)
(7.62 Max)
(6.86 Max)
(6.99 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
0.470 Max
0.400 Max
0.320 Max
0.375 ±0.03
0.025 ±.002
(12.0 Max)
(10.2 Max)
(8.13 Max)
(9.53 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
0.570 Max
0.500 Max
0.320 Max
0.475 ±0.03
0.025 ±.002
(14.5 Max)
(12.7 Max)
(8.13 Max)
(12.1 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
0.670 Max
0.600 Max
0.320 Max
0.575 ±0.03
0.025 ±.002
(17.0 Max)
(15.2 Max)
(8.13 Max)
(14.6 ±0.76)
(0.64 ±0.05)
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
NP0 CAPACITANCE (MAX.)
X7R CAPACITANCE (MAX.)
VALUE
CODE
VALUE
CODE
4700 pF
1500 pF
680 pF
330 pF
150 pF
100 pF
.022 µF
3300 pF
1500 pF
680 pF
330 pF
220 pF
.056 µF
4700 pF
3300 pF
1500 pF
1000 pF
470 pF
.100 µF
.010 µF
6800 pF
3300 pF
2200 pF
1000 pF
.150 µF
.015 µF
.010 µF
4700 pF
3300 pF
2200 pF
472
152
681
331
151
101
223
332
152
681
331
221
563
472
332
152
102
471
104
103
682
332
222
102
154
153
103
472
332
222
.150 µF
.055 µF
9000 pF
2800 pF
630 pF
550 pF
.480 µF
.170 µF
.025 µF
.011 µF
1800 pF
940 pF
1.20 µF
.450 µF
.094 µF
.043 µF
.010 µF
4900 pF
2.20 µF
.804 µF
.240 µF
.073 µF
.028 µF
.013 µF
3.30 µF
1.20 µF
.440 µF
0.130 µF
.041 µF
.020 µF
154
553
902
282
631
531
484
174
253
113
182
941
125
454
943
433
103
492
225
804
244
733
283
133
335
125
444
134
413
203
See page 79 for additional dielectric specifications.
28
www.johanson dielectrics.com
HIGH VOLTAGE RADIAL LEADED CAPACITORS
CASE SIZE
IN.
H70
H72
H80
NP0 CAPACITANCE (MAX.)
RATED
VOLTAGE
(MM)
W
H
T
S
LD
0.770 Max
0.720 Max
0.320 Max
0.675 ±0.03
0.025 ±.002
(19.6 Max)
(18.3 Max)
(8.13 Max)
(17.1 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
0.870 Max
0.750 Max
0.320 Max
0.775 ±0.03
0.025 ±.002
(22.1 Max)
(19.1 Max)
(8.13 Max)
(19.7 ±0.76)
(0.64 ±0.05)
W
H
T
S
LD
1.450 Max
0.720 Max
0.320 Max
1.375 ±0.03
0.025 ±.002
(36.8 Max)
(18.3 Max)
(8.13 Max)
(34.9 ±0.76)
(.064 ±0.05)
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
500 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
CODE
VALUE
CODE
.220 µF
.022 µF
.015 µF
6800 pF
4700 pF
3300 pF
.330 µF
.100 µF
.056 µF
.033 µF
.010 µF
6800 pF
.470 µF
.150 µF
.082 µF
.047 µF
.015 µF
.010 µF
224
223
153
682
472
332
334
104
563
333
103
682
474
154
823
473
153
103
5.70 µF
2.10 µF
.620 µF
.190 µF
.054 µF
.026 µF
7.30 µF
2.80 µF
.800 µF
.250 µF
.080 µF
.041 µF
12.0 µF
4.60 µF
1.20 µF
.390 µF
.130 µF
.068 µF
575
215
624
194
543
263
735
285
804
254
803
413
126
465
125
394
134
683
T-SERIES 200°C
W
Johanson also offers two different series of high temperature radial leaded
capacitors for 200°C. These components feature rugged premolded cases
with Hi-Temp epoxy fill. The 200°C line is offered in voltage ratings of 25V to
4KV and maximum capacitance loss of -0.5% in NP0 and -45% in X7R. The
line is offered in voltage ratings of 50V & 100V with maximum capacitance
loss of -1.5% in NP0 and -55% in X7R. Please visit our website for complete
component selection & specifications
S
• Geophysical Probes
• Jet Engine Controls
HOW TO ORDER HIGH VOLTAGE RADIALS
VOLTAGE
=
=
=
=
=
=
500 V
1000 V
2000 V
3000 V
4000 V
5000 V
Meniscus
Height
.050" Max
NOTE: Lead lengths are
typically 1.25” for orders in
bulk packaging. Leads are
typically 1.00” for tape and
reel packaging. Tape and
reel packaging comes in
1000 piece reels.
• Oil Well Logging (Downhole)
501
102
202
302
402
502
T
H
APPLICATIONS
102
X7R CAPACITANCE (MAX.)
VALUE
Part number written: 102H42W101KQ4
H42
W
101
K
Q
SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
See Chart
N = NP0
W = X7R
1st two digits are
significant; third digit
denotes number of
zeros.
102 = 1000 pF
103 = 0.01 µF
105 = 1.00 µF
J = ± 5%
K = ± 10%
M = ± 20%
Z = +80% -20%
Q = Leaded &
Encapsulated
4 = Standard
3 = Specified
T = Tape and Reel
H = High Rel Testing
per customer
requirements
S = Special Part
www.johanson dielectrics.com
4
T
29
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
The Semi-shielded Power Inductor LPC Series are low profile
and high current power inductors. Several dimensions are
offered.
KEY FEATURES
• High Current Performance
• Small and Low Profile Inductors
• Magnetic shielding
• Available for automatic mounting in tape and reel package
APPLICATIONS
• DC/DC Converter
• Data Storage Devices
• Power Supplies
• Consumer Electronics
• Industrial
PRODUCT RANGE SUMMARY
SIZE
CODE
INDUCTANCE
RANGE
2410
RATED CURRENT RATED CURRENT
RANGE
RANGE
DC
RESISTANCE
RANGE
BASED ON
INDUCTANCE CHANGE
BASED ON
TEMPERATURE RISE
0.68 - 22.0 μH
0.40 - 2.60 A
0.40 - 2.50 A
60 mΩ - 1470 mΩ
3010
1.00 - 100.0 μH
0.15 - 2.30 A
0.18 - 2.30 A
50 mΩ - 5.00 Ω
3012
1.00 - 47.0 μH
0.23 - 1.90 A
0.35 - 1.71 A
45 mΩ - 1250 mΩ
3015
1.00 - 100.0 μH
0.25 - 2.30 A
0.30 - 2.30 A
28 mΩ - 2100 mΩ
4018
0.82 - 220.0 μH
0.30 - 4.70 A
0.28 - 4.00 A
16 mΩ - 2960 mΩ
4025
1.00 - 220.0 μH
0.20 - 3.00 A
0.20 - 3.00 A
12 mΩ - 2300 mΩ
5040
1.50 - 47.0 μH
1.10 - 6.00 A
0.90 - 3.60 A
15 mΩ - 270 mΩ
6045
1.00 - 220.0 μH
0.55 - 8.60 A
0.50 - 6.50 A
10 mΩ - 920 mΩ
1
OPERATING
TEMPERTURE
RANGE
-25ºC to +120ºC
-40ºC to +125ºC
1 Including self-generated heat
Consult Factory for values not listed in the product range
Electrical Schematic: No Polarity
TEST FREQUENCY: 100KHz, 1V
STORAGE TEMPERATURE: -10ºC to +40ºC, humidity 30 to 70% R.H.
MOISTURE SENSITIVITY LEVEL: MSL - 1
HOW TO ORDER
LPC
3015
2R2
M
E
INDUCTOR
POWER SEMI-SHIELDED
SIZE CODE
INDUCTANCE
TOLERANCE
PACKING
LPC
(Coated)
2410
3010
3012
3015
4018
4025
5040
6045
R68 = 0.68 μH
2R2 = 2.2 μH
220 = 22 μH
221 = 220 μH
M = ± 20%
N = ± 30%
See chart
Standard Termination Finish: Matte Tin(Sn)
Example P/N: LPC30152R2ME is semi-shielded power inductor 2.2 μH, 3015 size, ±20%, embossed tape & reel
30
www.johanson dielectrics.com
E = Embossed Tape & Reel
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
2410 SIZE
Units
L
W
T
max
Inches
mm
Part
Material
0.094
2.40
1
Ferrite Core
Ni-Zn Ferrite
±0.004
±0.10
2
Copper Wire
Cu / P180 Grd 1
0.094
2.40
3
Termination
Ag / Ni / Sn
±0.004
±0.10
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.039
1.00
Not marked
4
See page 69 for footprint
*1
Part
Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
LPC2410R68NE
0.68 μH, ±30%
2.60 A
Rated Current Based *2
on Temperature Rise
DC
Resistance
DC Resistance
Tolerance
2.50 A
60 mΩ
±30%
±30%
LPC24101R0NE
1.0 μH, ±30%
2.00 A
1.90 A
70 mΩ
LPC24101R5ME
1.5 μH, ±20%
1.50 A
1.50 A
110 mΩ
±20%
LPC24102R2ME
2.2 μH, ±20%
1.30 A
1.20 A
140 mΩ
±20%
LPC24103R3ME
3.3 μH, ±20%
1.05 A
1.00 A
220 mΩ
±20%
±20%
LPC24104R7ME
4.7 μH, ±20%
0.92 A
0.90 A
290 mΩ
LPC24106R8ME
6.8 μH, ±20%
0.75 A
0.65 A
410 mΩ
±20%
LPC2410100ME
10.0 μH, ±20%
0.60 A
0.55 A
690 mΩ
±20%
LPC2410150ME
15.0 μH, ±20%
0.50 A
0.45 A
1020 mΩ
±20%
LPC2410220ME
22.0 μH, ±20%
0.40 A
0.40 A
1470 mΩ
±20%
3010 SIZE
Units
L
W
T
max
Not marked
Inches
mm
Part
Material
0.118
3.00
1
Ferrite Core
Ni-Zn Ferrite
±0.004
±0.10
2
Copper Wire
Cu / P180 Grd 1
0.118
3.00
3
Termination
Ag / Ni / Sn
±0.004
±0.10
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.039
1.00
4
See page 69 for footprint
*1
Part
Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC30101R0NE
1.0 μH, ±30%
2.30 A
LPC30101R2NE
1.2 μH, ±30%
LPC30101R5NE
LPC30102R2ME
*2
DC
Resistance
DC Resistance
Tolerance
2.30 A
50 mΩ
±25%
1.90 A
2.10 A
62 mΩ
±30%
1.5 μH, ±30%
1.65 A
2.00 A
70 mΩ
±30%
2.2 μH, ±20%
1.30 A
1.90 A
80 mΩ
±20%
±20%
LPC30103R3ME
3.3 μH, ±20%
1.05 A
1.80 A
130 mΩ
LPC30104R7ME
4.7 μH, ±20%
0.85 A
1.70 A
175 mΩ
±20%
LPC30106R8ME
6.8 μH, ±20%
0.70 A
1.30 A
260 mΩ
±20%
LPC3010100ME
10.0 μH, ±20%
0.60 A
0.90 A
350 mΩ
±20%
LPC3010150ME
15.0 μH, ±20%
0.50 A
0.80 A
510 mΩ
±20%
LPC3010220ME
22.0 μH, ±20%
0.40 A
0.70 A
780 mΩ
±20%
LPC3010330ME
33.0 μH, ±20%
0.32 A
0.50 A
1.10 Ω
±20%
LPC3010470ME
47.0 μH, ±20%
0.28 A
0.35 A
1.60 Ω
±20%
LPC3010101ME
100.0 μH, ±20%
0.15 A
0.18 A
5.00 Ω
±20%
*1. Idc1: Based on inductance change (ΔL/Lo: ≤ -30%)
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
Notes: Inductance is measured in HP-4285A Precision LCR Meter.
RDC measured in DU-5011 milli ohm meter (or equivalent).
www.johanson dielectrics.com
www.johanson
dielectrics.com
31
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
3012 SIZE
Units
L
W
T
Inches
mm
Part
Material
0.118
3.00
1
Ferrite Core
Ni-Zn Ferrite
±0.004
±0.10
2
Copper Wire
Cu / P180 Grd 1
0.118
3.00
3
Terminals
Ag / Ni / Sn
±0.004
±0.10
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.047
max
Not marked
1.20
4
See page 69 for footprint
*1
Part Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC30121R0NE
1.0 μH, ±30%
1.90 A
*2
DC
Resistance
DC Resistance
Tolerance
1.71 A
45 mΩ
±20%
±20%
LPC30121R5NE
1.5 μH, ±30%
1.50 A
1.60 A
55 mΩ
LPC30122R2ME
2.2 μH, ±20%
1.25 A
1.37 A
60 mΩ
±20%
LPC30122R7ME
2.7 μH, ±20%
1.20 A
1.30 A
90 mΩ
±20%
LPC30123R3ME
3.3 μH, ±20%
1.05 A
1.21 A
90 mΩ
±20%
±20%
LPC30124R7ME
4.7 μH, ±20%
0.90 A
1.06 A
150 mΩ
LPC30126R8ME
6.8 μH, ±20%
0.70 A
0.89 A
190 mΩ
±20%
LPC3012100ME
10.0 μH, ±20%
0.60 A
0.72 A
270 mΩ
±20%
LPC3012150ME
15.0 μH, ±20%
0.50 A
0.57 A
450 mΩ
±20%
LPC3012220ME
22.0 μH, ±20%
0.40 A
0.50 A
550 mΩ
±20%
±20%
±20%
LPC3012330ME
33.0 μH, ±20%
0.30 A
0.41 A
900 mΩ
LPC3012470ME
47.0 μH, ±20%
0.23 A
0.35 A
1250 mΩ
3015 SIZE
Units
L
W
T
max
Inches
mm
Part
Material
0.118
3.00
1
Ferrite Core
Ni-Zn Ferrite
±0.004
±0.10
2
Copper Wire
Cu / P180 Grd 1
0.118
3.00
3
Termination
Ag / Ni / Sn
±0.004
±0.10
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.059
1.50
Not marked
4
See page 69 for footprint
Part Number
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC30151R0NE
1.0 μH, ±30%
2.30 A
*2
DC
Resistance
DC Resistance
Tolerance
2.30 A
28 mΩ
±30%
±30%
LPC30151R5NE
1.5 μH, ±30%
2.10 A
2.10 A
37 mΩ
LPC30152R2ME
2.2 μH, ±20%
1.62 A
2.00 A
58 mΩ
±20%
LPC30152R7ME
2.7 μH, ±20%
1.50 A
1.95 A
60 mΩ
±20%
LPC30153R3ME
3.3 μH, ±20%
1.35 A
1.80 A
75 mΩ
±20%
LPC30154R7ME
4.7 μH, ±20%
1.20 A
1.60 A
100 mΩ
±20%
LPC30155R6ME
5.6 μH, ±20%
1.00 A
1.40 A
120 mΩ
±20%
LPC30156R8ME
6.8 μH, ±20%
0.97 A
1.30 A
150 mΩ
±20%
LPC3015100ME
10.0 μH, ±20%
0.80 A
1.10 A
220 mΩ
±20%
LPC3015150ME
15.0 μH, ±20%
0.65 A
1.00 A
300 mΩ
±20%
*1. Idc1: Based on inductance change (ΔL/Lo: ≤ -30%)
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
32
*1
Inductance
@ 100KHz, 1V
Notes: Inductance is measured in HP-4285A Precision LCR Meter.
RDC measured in DU-5011 milli ohm meter (or equivalent).
www.johanson dielectrics.com
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
3015 SIZE (CONTINUED)
Part Number
Inductance
@ 100KHz, 1V
Rated Current Based *1
on Inductance Change
Rated Current Based
on Temperature Rise
LPC3015180ME
18.0 μH, ±20%
0.57 A
LPC3015220ME
22.0 μH, ±20%
LPC3015330ME
LPC3015390ME
*2
DC
Resistance
DC Resistance
Tolerance
0.90 A
410 mΩ
±20%
0.55 A
0.80 A
475 mΩ
±20%
33.0 μH, ±20%
0.45 A
0.70 A
650 mΩ
±20%
39.0 μH, ±20%
0.40 A
0.50 A
850 mΩ
±20%
LPC3015470ME
47.0 μH, ±20%
0.35 A
0.45 A
1100 mΩ
±20%
LPC3015680ME
68.0 μH, ±20%
0.30 A
0.35 A
1700 mΩ
±20%
LPC3015820ME
82.0 μH, ±20%
0.27 A
0.32 A
1900 mΩ
±20%
0.30 A
2100 mΩ
±20%
LPC3015101ME
100.0 μH, ±20%
0.25 A
4018 SIZE
Units
L
W
Inches
mm
0.157
4.00
±0.008
±0.20
0.157
4.00
±0.008
±0.20
T
(R82-2R7)
0.074
1.88
max
(3R3-221)
0.071
1.80
Part
Material
1
Ferrite Core
Ni-Zn Ferrite
2
Copper
Wire
Cu / P180 Grd 1
3
Termination
Ag / Ni / Sn
Adhesive
Silicon Base Resin
Magnetic
Powder
Ni-Zn Ferrite
Marked
4
See page 69 for footprint
*1
*2
Part Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
DC
Resistance
DC Resistance
Tolerance
Marking
LPC4018R82NE
0.82 μH, ±30%
4.20 A
4.00 A
16 mΩ
±30%
R82
LPC40181R0NE
1.0 μH, ±30%
4.70 A
3.70 A
19 mΩ
±30%
1R0
LPC40181R2NE
1.2 μH, ±30%
4.00 A
3.50 A
21 mΩ
±30%
1R2
LPC40181R5NE
1.5 μH, ±30%
3.50 A
3.10 A
27 mΩ
±30%
1R5
LPC40182R2ME
2.2 μH, ±20%
3.00 A
2.90 A
37 mΩ
±20%
2R2
LPC40182R7ME
2.7 μH, ±20%
2.40 A
2.30 A
43 mΩ
±20%
2R7
LPC40183R3ME
3.3 μH, ±20%
2.30 A
2.20 A
55 mΩ
±20%
3R3
LPC40184R7ME
4.7 μH, ±20%
2.00 A
1.90 A
70 mΩ
±20%
4R7
LPC40186R8ME
6.8 μH, ±20%
1.60 A
1.50 A
98 mΩ
±20%
6R8
LPC4018100ME
10.0 μH, ±20%
1.40 A
1.30 A
150 mΩ
±20%
100
±20%
150
LPC4018150ME
15.0 μH, ±20%
1.10 A
1.00 A
220 mΩ
LPC4018220ME
22.0 μH, ±20%
0.95 A
0.90 A
290 mΩ
±20%
220
LPC4018330ME
33.0 μH, ±20%
0.75 A
0.70 A
460 mΩ
±20%
330
LPC4018470ME
47.0 μH, ±20%
0.62 A
0.60 A
650 mΩ
±20%
470
LPC4018680ME
68.0 μH, ±20%
0.50 A
0.50 A
940 mΩ
±20%
680
LPC4018101ME
100.0 μH, ±20%
0.45 A
0.42 A
1330 mΩ
±20%
101
LPC4018151ME
150.0 μH, ±20%
0.35 A
0.32 A
2000 mΩ
±20%
151
LPC4018221ME
220.0 μH, ±20%
0.30 A
0.28 A
2960 mΩ
±20%
221
*1. Idc1: Based on inductance change (ΔL/Lo: ≤ -30%)
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
Notes: Inductance is measured in HP-4285A Precision LCR Meter.
RDC measured in DU-5011 milli ohm meter (or equivalent).
www.johanson dielectrics.com
33
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
4025 SIZE
Units
L
W
T
max
Inches
mm
Marked
Part
Material
0.157
4.00
1
Ferrite Core
Ni-Zn Ferrite
±0.008
±0.20
2
Copper Wire
Cu / P180 Grd 1
0.157
4.00
3
Terminals
Ag / Ni / Sn
±0.008
±0.20
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.098
4
2.50
See page 69 for footprint
*1
Part Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC40251R0NE
1.0 μH, ±30%
3.00 A
*2
DC
Resistance
DC Resistance
Tolerance
Marking
3.00 A
12 mΩ
±30%
1R0
LPC40251R2NE
1.2 μH, ±30%
2.75 A
2.75 A
18 mΩ
±30%
1R2
LPC40252R2NE
2.2 μH, ±30%
2.10 A
2.10 A
22 mΩ
±30%
2R2
LPC40253R3ME
3.3 μH, ±20%
1.60 A
1.60 A
30 mΩ
±20%
3R3
LPC40254R7ME
4.7 μH, ±20%
1.40 A
1.40 A
40 mΩ
±20%
4R7
LPC40256R8ME
6.8 μH, ±20%
1.20 A
1.20 A
70 mΩ
±20%
6R8
LPC4025100ME
10.0 μH, ±20%
0.97 A
0.97 A
85 mΩ
±20%
100
LPC4025150ME
15.0 μH, ±20%
0.77 A
0.77 A
120 mΩ
±20%
150
LPC4025220ME
22.0 μH, ±20%
0.67 A
0.67 A
195 mΩ
±20%
220
LPC4025330ME
33.0 μH, ±20%
0.50 A
0.50 A
305 mΩ
±20%
330
±20%
470
LPC4025470ME
47.0 μH, ±20%
0.40 A
0.40 A
495 mΩ
LPC4025680ME
68.0 μH, ±20%
0.35 A
0.35 A
710 mΩ
±20%
680
LPC4025101ME
100.0 μH, ±20%
0.30 A
0.30 A
1000 mΩ
±20%
101
LPC4025151ME
150.0 μH, ±20%
0.22 A
0.22 A
1600 mΩ
±20%
151
0.20 A
2300 mΩ
±20%
121
DC
Resistance
DC Resistance
Tolerance
Marking
LPC4025221ME
220.0 μH, ±20%
0.20 A
5040 SERIES
Units
L
W
T
max
Inches
mm
Part
Material
0.197
5.00
1
Ferrite Core
Ni-Zn Ferrite
±0.008
±0.20
2
Copper Wire
Cu / P180 Grd 1
0.197
5.00
3
Termination
Ag / Ni / Sn
±0.008
±0.20
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
.157
4.00
Marked
4
See page 69 for footprint
*2
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC50401R5NE
1.5 μH, ±30%
6.00 A
3.60 A
15 mΩ
±20%
1R5
LPC50402R2NE
2.2 μH, ±30%
4.60 A
3.50 A
17 mΩ
±20%
2R2
LPC50403R3ME
3.3 μH, ±20%
3.80 A
3.30 A
22 mΩ
±20%
3R3
±20%
4R7
LPC50404R7ME
4.7 μH, ±20%
3.30 A
3.10 A
29 mΩ
LPC50406R8ME
6.8 μH, ±20%
2.60 A
2.30 A
49 mΩ
±20%
6R8
LPC50408R2ME
8.2 μH, ±20%
2.40 A
2.20 A
54 mΩ
±20%
8R2
LPC5040100ME
10.0 μH, ±20%
2.30 A
2.10 A
56 mΩ
±20%
100
*1. Idc1: Based on inductance change (ΔL/Lo: ≤ -30%)
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
34
*1
Part Number
Notes: Inductance is measured in HP-4285A Precision LCR Meter.
RDC measured in DU-5011 milli ohm meter (or equivalent).
www.johanson dielectrics.com
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
5040 SIZE (CONTINUED)
Inductance
@ 100KHz, 1V
Part Number
*1
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
*2
DC
Resistance
DC Resistance
Tolerance
Marking
LPC5040150ME
15.0 μH, ±20%
2.00 A
1.80 A
80 mΩ
±20%
150
LPC5040220ME
22.0 μH, ±20%
1.60 A
1.40 A
126 mΩ
±20%
220
LPC5040270ME
27.0 μH, ±20%
1.40 A
1.30 A
165 mΩ
±20%
270
LPC5040330ME
33.0 μH, ±20%
1.30 A
1.20 A
180 mΩ
±20%
330
0.90 A
270 mΩ
±20%
470
DC
Resistance
DC Resistance
Tolerance
Marking
10 mΩ
±30%
1R0
LPC5040470ME
47.0 μH, ±20%
1.10 A
6045 SIZE
Units
L
W
T
max
Inches
mm
Part
Material
0.236
6.00
1
Ferrite Core
Ni-Zn Ferrite
±0.008
±0.20
2
Copper Wire
Cu / P180 Grd 1
0.236
6.00
3
Terminals
Ag / Ni / Sn
±0.008
±0.20
Adhesive
Silicon Base Resin
Magnetic Powder
Ni-Zn Ferrite
0.177
4.50
Marked
4
See page 69 for footprint
*1
*2
Part Number
Inductance
@ 100KHz, 1V
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
LPC60451R0NE
1.0 μH, ±30%
8.60 A
6.50 A
LPC60451R3NE
1.3 μH, ±30%
8.00 A
6.00 A
11mΩ
±30%
1R3
LPC60451R8NE
1.8 μH, ±30%
7.00 A
5.30 A
12 mΩ
±30%
1R8
LPC60452R2NE
2.2 μH, ±30%
6.10 A
5.00 A
13 mΩ
±30%
2R2
LPC60453R0NE
3.0 μH, ±30%
5.00 A
4.80 A
17 mΩ
±30%
3R0
LPC60453R3NE
3.3 μH, ±30%
4.50 A
4.50 A
17 mΩ
±30%
3R3
±30%
4R5
LPC60454R5NE
4.5 μH, ±30%
4.30 A
3.80 A
23 mΩ
LPC60454R7NE
4.7 μH, ±30%
4.00 A
3.70 A
23 mΩ
±30%
4R7
LPC60455R6NE
5.6 μH, ±30%
3.80 A
3.60 A
26 mΩ
±30%
5R6
LPC60456R3NE
6.3 μH, ±30%
3.80 A
3.60 A
26 mΩ
±30%
6R3
±30%
6R8
LPC60456R8NE
6.8 μH, ±30%
3.60 A
3.50 A
34 mΩ
LPC60458R2NE
8.2 μH, ±30%
3.20 A
3.10 A
41 mΩ
±30%
8R2
LPC6045100ME
10.0 μH, ±20%
3.10 A
3.00 A
45 mΩ
±20%
100
LPC6045150ME
15.0 μH, ±20%
2.30 A
2.30 A
80 mΩ
±20%
150
LPC6045220ME
22.0 μH, ±20%
1.90 A
1.90 A
112 mΩ
±20%
220
LPC6045330ME
33.0 μH, ±20%
1.50 A
1.50 A
170 mΩ
±20%
330
LPC6045470ME
47.0 μH, ±20%
1.30 A
1.30 A
210 mΩ
±20%
470
LPC6045560ME
56.0 μH, ±20%
1.20 A
1.20 A
270 mΩ
±20%
560
LPC6045680ME
68.0 μH, ±20%
1.00 A
1.00 A
325 mΩ
±20%
680
±20%
101
±20%
221
LPC6045101ME
100.0 μH, ±20%
0.90 A
0.90 A
460 mΩ
LPC6045221ME
220.0 μH, ±20%
0.55 A
0.50 A
920 mΩ
*1. Idc1: Based on inductance change (ΔL/Lo: ≤ -30%)
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
Notes: Inductance is measured in HP-4285A Precision LCR Meter.
RDC measured in DU-5011 milli ohm meter (or equivalent).
www.johanson dielectrics.com
35
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
ENVIRONMENTAL PERFORMANCE
SPECIFICATION
36
TEST PARAMETERS
VIBRATION
ΔL/Lo : ≤ ±10%
There shall be no
mechanical damage
Solder specimen inductor on the test printed circuit board. Apply vibrations in
each of the x, y and z directions for 2 house for a total of 6 hours.
Frequency : 10 to 50 Hz Amplitude : 1.5mm
SOLDERABILITY
The metalized area must
have 90% minimum
solder coverage.
Dip pads in flux and dip in solder pot (NP303) at 240ºC ±5ºC
HIGH
TEMPERATURE
RESISTANCE
ΔL/Lo : ≤ ±10%
There shall be no
mechanical damage or
electrical damage.
The sample shall be left for 96 hours in an atmosphere with a temperature of
85±2ºC and a normal humidity. Upon completion of the test, the measurement
shall be made after the sample has been left in a normal temperature and
normal humidity for 1 hour.
LOW
TEMPERATURE
ΔL/Lo : ≤ ±10%
There shall be no
mechanical damage or
electrical damage.
The sample shall be left for 96 hours in an atmosphere with a temperature of
–30±2ºC. Upon completion of the test, the measurement shall be made after
the sample has been left in a normal temperature and normal humidity for 1
hour.
MOISTURE
STORAGE
ΔL/Lo : ≤ ±10%
There shall be no
mechanical damage
The sample shall be left for 96 hours in a temperature of 40±2ºC and a
humidity(RH) of 90~95%. Upon completion of the test, the measurement shall
be made after the sample has been left in a normal temperature and normal
humidity more than 1 hour.
SUBSTRATE
BENDING
ΔL/Lo : ≤ ±10%
There shall be no
mechanical damage or
electrical damage
The sample shall be soldered onto the printed circuit board and a load applied
until the figure in the arrow direction is made approximately 3mm (keep time 5
±1 seconds).
THERMAL SHOCK
ΔL/Lo : ≤ ±10%
There shall be no damage
or problems.
The sample shall be subject to 5 continous cycles, such as shown in the
following temperature cycle. Measure the test items after leaving the inductors
at room temperature and humidity for 1 hour.
COMPONENT
ADHESION
(PUSH TEST)
10N Min (LPC 2410, 3010)
12N Min (LPC 3012, 3015,
4018, 4025, 5040, 6045)
The device should be reflow soldered (245 ±5ºC for 10 seconds) to a
copper substrate a dynamometer force gauge should be applied to the side
of the component the device must withstand a minimum force of 10N or 12N
without failure of the termination attached to the component.
www.johanson dielectrics.com
POWER INDUCTORS, SEMI-SHIELDED (COATED)
LPC SERIES
SOLDERING INFORMATION
RECOMMENDED FOOTPRINT:
SIZE CODES
Dimensions
A
B
C
Units
2410
3010
3012
3015
4018
4025
5040
6045
In
0.031
0.031
0.031
0.031
0.059
0.059
0.059
0.063
mm
0.800
0.800
0.800
0.800
1.500
1.500
1.500
1.600
In
0.079
0.079
0.106
0.106
0.142
0.142
0.157
0.244
mm
2.000
2.000
2.700
2.700
3.600
3.600
4.000
5.700
In
0.098
0.098
0.087
0.087
0.179
0.179
0.201
0.248
mm
2.500
2.500
2.200
2.200
4.550
4.550
5.100
6.300
RECOMMENDED SOLDER ATTACHMENT: REFLOW SOLDERING
Reflow: 2 times max
Peak Temperature: 255ºC
Max Time Above 217ºC: 90 sec max
If hand soldering must be used, follow these precautions:
Use solder iron of less than 30W when soldering.
Do not allow soldering iron tip to directly touch the ferrite body outside of the terminal electrode.
2 seconds maximum at 280ºC.
* This datasheet is subject to change without notice
www.johanson dielectrics.com
37
POWER INDUCTORS, SHIELDED
LPM SERIES
The Shielded Power LPM Series are low profile, surface-mount
inductors. They are designed for power applications or high
current applications.
KEY FEATURES
• High reliability and easy surface mount assembly
• Low loss due to design of low DC resistance
• Low profile with max thickness 3.0 mm
• Frequency Application Up to 3MHz
• Suitable for reflow soldering
• 100% Lead Free
APPLICATIONS
• Low profile and high current power supplies
• DC/DC Converters
PRODUCT RANGE SUMMARY
SIZE
CODE
INDUCTANCE
RANGE
RATED CURRENT
RANGE
RATED CURRENT
RANGE
BASED ON
INDUCTANCE CHANGE
BASED ON
TEMPERATURE RISE
DC RESISTANCE
RANGE
(TYPICAL)
0520
1.00 - 10.0 μH
2.10 - 8.00 A
2.30 - 7.50 A
16.80 mΩ - 140.00 mΩ
0530
0.60 - 5.6 μH
4.00 - 18.00 A
4.00 - 9.80 A
11.00 mΩ - 55.00 mΩ
0630
0.47 - 22 μH
2.50 - 20.50 A
2.50 - 16.50 A
3.50 mΩ - 152.00 mΩ
OPERATING
TEMPERATURE
RANGE
-55ºC to+125ºC
Consult Factory for values not listed in the product range
HOW TO ORDER
LPM
0520
INDUCTOR
POWER SHIELDED
SIZE CODE
APPLICATION
TYPE
LPM
(Shielded)
0520
0530
0630
LR = Power
application with lower DC
resistance and lower power
loss design requirement
HI = High performance
application with high
saturation current
requirement
LR
1R0
M
E
INDUCTANCE
TOLERANCE
PACKING
M = ± 20%
E = Embossed Tape & Reel
1R0 = 1.00 μH
See chart
Standard Termination Finish: Matte Tin(Sn)
Example P/N: LPM0520LR1R0ME is shielded power inductor, size 0520 for low power applications, 1.00μH, ±20%, embossed tape & reel
Note: See our website for Saturation Current and Heat Rating Current Performance graphs.
38
www.johanson dielectrics.com
POWER INDUCTORS, SHIELDED
LPM SERIES
0520 SIZE
Units
Inches
mm
L
0.220 ± 0.001
5.60 ± 0.35
W
0.205 ± 0.008
5.20 ± 0.20
H
0.079 ± 0.004
2.00 ± 0.10
A
0.039 ± 0.016
1.00 ± 0.40
A’
0.059 ± 0.004
1.50 ± 0.10
LR
HI
B
0.079 ± 0.012
2.00 ± 0.30
B’
0.098 ± 0.008
2.50 ± 0.20
Part
Number
LPM0520LR1R0ME
Marked
Application
Type
*1
*2
Marking
LR
1R0
1R0
DC Resistance
Inductance
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
SRF
(Typ)
Typ
Max
Marking
1.00 μH, ±20%
8.00 A
7.50 A
65 MHz
16.8 mΩ
18.5 mΩ
LR 1R0
LPM0520LR1R5ME
1.50 μH, ±20%
6.80 A
5.80 A
46 MHz
19.0 mΩ
24.0 mΩ
LR 1R5
LPM0520LR2R2ME
2.20 μH, ±20%
5.00 A
5.50 A
38 MHz
33.0 mΩ
36.0 mΩ
LR 2R2
LPM0520LR3R3ME
3.30 μH, ±20%
4.20 A
4.50 A
34 MHz
45.0 mΩ
50.0 mΩ
LR 3R3
LPM0520LR4R7ME
4.70 μH, ±20%
3.70 A
3.70 A
27 MHz
52.0 mΩ
58.0 mΩ
LR 4R7
LPM0520LR5R6ME
5.60 μH, ±20%
3.30 A
3.50 A
22 MHz
65.0 mΩ
75.0 mΩ
LR 5R6
LPM0520LR100ME
10.00 μH, ±20%
2.10 A
3.00 A
17 MHz
130.0 mΩ
145.0 mΩ
LR 100
LPM0520HI100ME
10.00 μH, ±20%
4.00 A
2.30 A
16 MHz
140.0 mΩ
150.0 mΩ
100
0530 SIZE
Units
Inches
mm
L
0.220 ± 0.001
5.60 ± 0.35
W
0.205 ± 0.008
5.20 ± 0.20
H
0.118
3.00 (max)
A
0.039 ± 0.016
1.00 ± 0.40
A’
0.059 ± .004
1.50 ± 0.10
B
0.079 ± 0.012
2.00 ± 0.30
B’
0.098 ± 0.079
2.50 ± 0.20
Part
Number
Marked
Application
Type
LR
HI
*1
*2
Inductance
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
SRF
(Typ)
LPM0530HIR60ME
0.60 μH, ±20%
18.00 A
9.80 A
LPM0530HIR68ME
0.68 μH, ±20%
16.00 A
9.50 A
LPM0530HIR82ME
0.82 μH, ±20%
12.50 A
LPM0530HI1R0ME
1.00 μH, ±20%
LPM0530HI1R2ME
1.20 μH, ±20%
Marking
LR
1R0
1R0
DC Resistance
Typ
Max
Marking
84 MHz
11.0 mΩ
12.0 mΩ
R60
63 MHz
11.0 mΩ
12.0 mΩ
R68
9.00 A
53 MHz
14.0 mΩ
15.0 mΩ
R82
14.00 A
7.00 A
52 MHz
13.0 mΩ
14.0 mΩ
1R0
13.00 A
6.80 A
48 MHz
15.5 mΩ
16.5 mΩ
1R2
20.0 mΩ
25.0 mΩ
1R5
LPM0530HI1R5ME
1.50 μH, ±20%
10.00 A
6.00 A
44 MHz
LPM0530HI2R2ME
2.20 μH, ±20%
9.00 A
5.50 A
30 MHz
29.0 mΩ
35.0 mΩ
2R2
LPM0530LR1R5ME
1.50 μH, ±20%
7.00 A
8.00 A
44 MHz
18.50 mΩ
20.0 mΩ
LR 1R5
*1. Isat: Based on inductance change (ΔL/Lo: -20% TYP.)
*2. Irms: Based on temperature rise (ΔT: 40ºC TYP.)
Notes: Inductance is measured in HP-4284A Precision LCR Meter.
RDC measured in HP 4338B milliohm meter ( or equivalent)
www.johanson dielectrics.com
39
POWER INDUCTORS, SHIELDED
LPM SERIES
0530 SIZE (CONTINUED)
Part
Number
*1
*2
DC Resistance
Inductance
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
SRF
(Typ)
Typ
Max
Marking
LPM0530LR2R2ME
2.20 μH, ±20%
5.50 A
7.00 A
38 MHz
24.0 mΩ
26.0 mΩ
LR 2R2
LPM0530LR3R3ME
3.30 μH, ±20%
5.00 A
6.50 A
28 MHz
32.0 mΩ
36.0 mΩ
LR 3R3
54.0 mΩ
60.0 mΩ
LR 4R7
55.0 mΩ
65.0 mΩ
LR 5R6
LPM0530LR4R7ME
4.70 μH, ±20%
4.50 A
4.50 A
25 MHz
LPM0530LR5R6ME
5.60 μH, ±20%
4.00 A
4.50 A
19 MHz
0630 SIZE
Units
Inches
mm
L
0.283 ± 0.012
7.20 ± 0.30
W
0.262 ± 0.008
6.65 ± 0.20
H
0.119
3.00 (max)
A
0.063 ± 0.016
1.60 ± 0.40
A’
0.079 ± 0.004
2.00 ± 0.10
LR
B
0.119 ± 0.013
3.00 ± 0.30
HI
B’
0.134 ± 0.008
3.40 ± 0.20
Part
Number
Marked
Application
Type
*1
*2
Inductance
Rated Current Based
on Inductance Change
Rated Current Based
on Temperature Rise
SRF
(Typ)
LPM0630LRR47ME
0.47 μH, ±20%
20.00 A
16.50 A
79 MHz
LPM0630LRR56ME
0.56 μH, ±20%
18.00 A
15.50 A
61 MHz
LPM0630LRR68ME
0.68 μH, ±20%
17.00 A
14.00 A
68 MHz
LPM0630LRR82ME
0.82 μH, ±20%
16.00 A
12.50 A
49 MHz
LPM0630LR1R0ME
1.00 μH, ±20%
15.00 A
12.00 A
52 MHz
Marking
LR
1R0
1R0
DC Resistance
Typ
Max
Marking
3.5 mΩ
4.1 mΩ
LR R47
4.7 mΩ
5.0 mΩ
LR R56
6.0 mΩ
6.5 mΩ
LR R68
7.0 mΩ
7.5 mΩ
LR R82
8.5 mΩ
9.0 mΩ
LR 1R0
10.5 mΩ
12.0 mΩ
LR 1R5
LPM0630LR1R5ME
1.50 μH, ±20%
14.00 A
10.00 A
30 MHz
LPM0630LR2R2ME
2.20 μH, ±20%
10.00 A
8.00 A
30 MHz
16.0 mΩ
18.5 mΩ
LR 2R2
LPM0630LR3R3ME
3.30 μH, ±20%
10.00 A
6.50 A
24 MHz
25.0 mΩ
28.0 mΩ
LR 3R3
LPM0630LR4R7ME
4.70 μH, ±20%
6.50 A
5.50 A
19 MHz
32.5 mΩ
35.0 mΩ
LR 4R7
32.5 mΩ
35.5 mΩ
LR 5R6
LPM0630LR5R6ME
5.60 μH, ±20%
5.00 A
6.00 A
17 MHz
LPM0630LR6R8ME
6.80 μH, ±20%
6.00 A
4.50 A
16 MHz
54.0 mΩ
60.0 mΩ
LR 6R8
LPM0630LR100ME
10.00 μH, ±20%
5.50 A
4.00 A
13 MHz
62.0 mΩ
68.0 mΩ
LR 100
LPM0630LR150ME
15.00 μH, ±20%
5.00 A
3.00 A
12 MHz
110.0 mΩ
120.0 mΩ
LR 150
LPM0630LR220ME
22.00 μH, ±20%
2.50 A
2.50 A
8 MHz
152.0 mΩ
167.0 mΩ
LR 220
LPM0630HI1R0ME
1.00 μH, ±20%
20.50 A
11.00 A
40 MHz
9.0 mΩ
10.00mΩ
1R0
LPM0630HI1R5ME
1.50 μH, ±20%
17.00 A
9.00 A
35 MHz
14.0 mΩ
15.0 mΩ
1R5
LPM0630HI2R2ME
2.20 μH, ±20%
14.00 A
8.00 A
29 MHz
18.0 mΩ
20.0 mΩ
2R2
LPM0630HI3R3ME
3.30 μH, ±20%
13.50 A
6.80 A
22 MHz
28.0 mΩ
30.0 mΩ
3R3
37.0 mΩ
40.0 mΩ
4R7
LPM0630HI4R7ME
4.70 μH, ±20%
10.00 A
5.50 A
17 MHz
LPM0630HI6R8ME
6.80 μH, ±20%
8.00 A
4.50 A
15 MHz
54.0 mΩ
60.0 mΩ
6R8
LPM0630HI8R2ME
8.20 μH, ±20%
7.50 A
4.00 A
16 MHz
64.0 mΩ
68.0 mΩ
8R2
LPM0630HI100ME
10.00 μH, ±20%
7.00 A
3.00 A
14 MHz
102.0 mΩ
105.0 mΩ
100
*1. Idc1: Based on inductance change
ΔL/Lo: -30% for LR
ΔL/Lo: -20% for HI
*2. Idc2: Based on temperature rise (ΔT: 40ºC TYP.)
40
Notes: Inductance is measured in HP-4285A Precision LCR Meter under 100KHz, 0.25V
RDC measured in HP 4338B milliohm meter (or equivalent).
www.johanson dielectrics.com
POWER INDUCTORS, SHIELDED
LPM SERIES
ENVIRONMENTAL PERFORMANCE
SPECIFICATION
TEST PARAMETERS
VIBRATION
ΔL/Lo : ≤ ± 5%
There shall be no
mechanical damage
Solder specimen inductor on the test printed circuit board. Apply vibrations in
each of the x, y and z directions for 2 house for a total of 6 hours.
Frequency : 10~55~10Hz in 60sec as a period Amplitude : 1.5mm
SOLDERABILITY
The metalized area must
have 90% minimum
solder coverage.
Preheating at 160±10ºC 90sec.
245ºC ±5ºC for 2 ±1sec.
HIGH
TEMPERATURE
STORAGE
ΔL/Lo : ≤ ± 5%
There shall be no
mechanical damage or
electrical damage.
The sample shall be left for 96 hours in an atmosphere with a temperature of
85±2ºC and a normal humidity. Upon completion of the test, the measurement
shall be made after the sample has been left in a normal temperature and
normal humidity for 1 hour.
LOW
TEMPERATURE
STORAGE
ΔL/Lo : ≤ ± 5%
There shall be no
mechanical damage or
electrical damage.
The sample shall be left for 96 hours in an atmosphere with a temperature of
–40±2ºC. Upon completion of the test, the measurement shall be made after
the sample has been left in a normal temperature and normal humidity for 1
hour.
MOISTURE
STORAGE
ΔL/Lo : ≤ ± 5%
There shall be no
mechanical damage
The sample shall be left for 96 hours in a temperature of 40±2ºC and a
humidity(RH) of 90~95%. Upon completion of the test, the measurement shall
be made after the sample has been left in a normal temperature and normal
humidity more than 1 hour.
SUBSTRATE
BENDING
ΔL/Lo : ≤ ± 5%
There shall be no
mechanical damage or
electrical damage
The sample shall be soldered onto the printed circuit board and a load applied
until the figure in the arrow direction is made approximately 2mm (keep time 5
±1 seconds).
THERMAL SHOCK
ΔL/Lo : ≤ ± 5%
There shall be no damage
or problems.
The sample shall be subject to 10 continous cycles, such as shown in the
following temperature cycle. Measure the test items after leaving the inductors
at room temperature and humidity for 1 hour.
www.johanson dielectrics.com
41
POWER INDUCTORS, SHIELDED
LPM SERIES
SOLDERING INFORMATION
RECOMMENDED FOOTPRINT:
SIZE CODES
Dimensions
A
B
C
Units
0520
0530
0630
In
0.236
0.236
0.331
mm
5.990
5.990
8.400
In
0.098
0.098
0.134
mm
2.500
2.500
3.400
In
0.087
0.087
0.146
mm
2.200
2.200
3.700
RECOMMENDED SOLDER ATTACHMENT: REFLOW SOLDERING
Peak Temperature: 260ºC max
Max Peak Temperature: -5ºC: 30sec max.
Max Time above 217ºC: 60sec ~150 sec max.
If hand soldering must be used, follow these precautions:
Use solder iron of less than 30W when soldering.
Do not allow soldering iron tip to directly touch the ferrite body outside of the terminal electrode.
2 seconds maximum at 260ºC.
* This datasheet is subject to change without notice
42
www.johanson dielectrics.com
PLANAR CAPACITOR ARRAYS FOR EMI FILTERING
Johanson Dielectrics is the premier supplier of Planar Capacitor EMI Filter
Arrays to the Filtered Connector Industry. Johanson filters exhibit excellent
RF performance, as well as high SRF’s (Series Resonant Frequency).
Planar Capacitors are the fundamental building block for filtered connectors
in Aerospace, Biomedical, Military, Satellite, Industrial and Communication
electronics.
Johanson offers NP0, X7R and MOV (Metal Oxide Varistor) Planar Arrays in
standard and custom solutions to fit your needs (1 to 150 pins).
MOV planar arrays can be used singularly to form low pass C filters with the
additional benefit of transient voltage protection. When combined together
with planar array capacitors, they can form balanced and unbalanced Pi
filters with transient voltage protection. The MOV technology enables
smaller connectors to be built when compared to other discrete voltage
protection component solutions, such as diodes.
We are eager to quote your custom requirements and unique products, in
addition to your commercial or Mil-Standard needs.
Each Johanson part is customized to meet specific customer needs.
CIRCULAR ARRAYS
EXAMPLE PHYSICAL
LAYOUT
DIELECTRIC
MATERIAL
AVAILABLE
CAPACITANCE
WORKING
VOLTAGE
DWV
VOLTAGE
MIL-1560
MIL-1554
MIL-1669
MIL-1651
MIL-1698
MIL-33702
MIL-AUDIO
X7R,
NP0 &
Selected MOV
47 pF
to
1000 nF
Up to
2,000
VDC
Up to
2,500V
VDC
RECTANGULAR ARRAYS (ARINC 404/600)
EXAMPLE PHYSICAL
LAYOUT
AR-010
Through
AR-150
DIELECTRIC
MATERIAL
AVAILABLE
CAPACITANCE
WORKING
VOLTAGE
DWV
VOLTAGE
X7R,
NP0 &
Selected MOV
47 pF
to
1000 nF
Up to
2,000
VDC
Up to
2,500V
VDC
DIELECTRIC
MATERIAL
AVAILABLE
CAPACITANCE
WORKING
VOLTAGE
DWV
VOLTAGE
X7R,
NP0 &
Selected MOV
47pF - 210nF
47pF - 100nF
47pF - 22.5nF
47pF - 3.0nF
47pF - 6.0nF
47pF - 120nF
47pF - 50nF
≤ 2,400
≤ 1,000
≤ 680
≤ 200
≤ 800
≤ 680
≤ 300
≤ 3,600
≤ 1,500
≤ 1,020
≤ 500
≤ 1,200
≤ 1,020
≤ 750
D-SUBMINATURE RECTANGULAR ARRAYS
EXAMPLE PHYSICAL
LAYOUT
Full Size
Mini-D
Micro-D
Nano-D
Combo-D
Power-D
Special
www.johanson dielectrics.com
43
PLANAR CAPACITOR ARRAYS FOR EMI FILTERING
CUSTOM ARRAYS
Johanson Dielectrics’s design expertise and CNC manufacturing process enable broad custom array capability. Many shapes,
configurations and geometries are possible. Share your requirements and we will create a solution!
DISCOIDAL CAPACITORS
Johanson Discoidal Feed-through Capacitors are the functional element
in widely used EMI feed-through filters. This capacitor configuration offers very low impedance and inductance. Discoidal capacitors are ideal
for by-pass, filtering, coupling, single line EMI/RFI suppression, and high
frequency applications.
• Capacitance values from 10 pF to 11.2 μF
• Test standards and procedures per MIL-STD-202 and MIL-C-123
• Voltage ratings from 50 to 3000 VDC and 50 to 240 VAC
• Low ESR and ESL, non-polar designs
Call us to discuss your special requirements!
EXAMPLE NOMINAL
O.D. (IN.)
0.100 ±.005
0.150 ±.005
0.335 ±.005
0.345 ±.005
0.376 ±.005
0.643 ±.005
0.840 ±.005
44
DIELECTRIC
MATERIAL
AVAILABLE
CAPACITANCE
INSIDE
DIAMETER (IN.)
THICKNESS (IN.)
RATED VOLTAGE
X7R,
NP0 &
Selected MOV
10 pF – 66 nF
10 pF – 200 nF
10 pF – 2.8 µF
10 pF – 6.0 µF
10 pF – 8.0 µF
10 pF – 15 µF
10 pF – 20 µF
0.025 ±0.048
0.037 ±0.058
0.034 ±0.088
0.040 ±0.085
0.050 ±0.075
0.063 ±0.080
0.050 ±0.075
0.025 ±0.070
0.025 ±0.070
0.040 ±0.110
0.055 ±0.110
0.065 ±0.125
0.055 ±0.150
0.080 ±0.130
Up to 200 VDC
Up to 200 VDC
Up to 500 VDC
Up to 750 VDC
Up to 750 VDC
Up to 750 VDC
Up to 1000 VDC
www.johanson dielectrics.com
CAPSTRATE CAPACITOR SUBSTRATES
®
Johanson CapStrate® products integrate bulk capacitance into a ceramic substrate eliminating large discrete
capacitive components which saves critical space and
simplifies the assembly process. Our design and manufacturing expertise in large format, custom geometries
provides innovative solutions that economically solve a
wide variety of your design challenges.
Discrete
Circuit
CapStrate
Circuit
ADVANTAGES
®
• Major Size & Weight Reduction
• Fewer Solder Joints
• Lower Assembly Cost
• Circuit Assembly Available
KEY FEATURES
• Integrated Capacitance in The Substrate
• Rated Working Voltages from 50V to 5,000V
• Temperature ranges: -55°C to 125°C (specials to 200°C and 250°C)
• Compact Designs Utilizing Military Grade Ceramics
• Custom Sizes, Values, and Voltages Available
SIZE / CAPACITANCE CAPABILITY EXAMPLES
SUBSTRATE SIZE
CapStrate 4
CapStrate 3
CapStrate 1
CapStrate 2
CapStrate 6
LENGTH
WIDTH
THICK
In
0.400
0.400
0.120
mm
10.2
10.2
3.1
In
0.450
1.00
0.120
mm
11.43
25.4
3.1
In
0.450
2.00
0.120
mm
11.4
50.8
3.1
In
0.800
1.50
0.120
mm
20.3
38.1
3.1
In
1.250
2.00
0.120
mm
31.8
50.8
3.1
Circular CapStrate® Capacitance Formula
NP0
50V
NP0
100V
NP0
200V
NP0
500V
X7R
50V
X7R
100V
X7R
200V
X7R
500V
0.22µF
0.15µF
0.12µF
0.07µF
9.0µF
6.0µF
3.0µF
1.5µF
0.70µF
0.50µF
0.39µF
0.22µF
28.0µF
20.0µF
9.0µF
4.7µF
1.40µF
1.00µF
0.75µF
0.44µF
50.0µF
40.0µF
18.0µF
9.4µF
2.00µF
1.40µF
1.00µF
0.60µF
75.0µF
55.0µF
25.0µF
14.0µF
4.00µF
2.80µF
2.00µF
1.20µF
150.0µF
110.0µF
50.0µF
28.0µF
1.3 -1.6
µF / In2
0.9 -1.1
µF / In2
0.7 -0.8 50 - 62 µF 35 - 45 µF 18 - 20 µF 1.3 -1.6
µF / In2
/ In2
/ In2
/ In2
µF / In2
9 -10
µF / In2
This chart is intended to provide capability examples. Not all possibilities are shown and we invite application specific inquiries. Circular
CapStrate® example lists available capacitance per area.
www.johanson dielectrics.com
45
CUSTOM CAPACITOR SOLUTIONS
Johanson’s extensive experience in design and
manufacture of large format, custom geometries allows us to develop unique and innovative
solutions which successfully solve a wide variety of our customer’s design challenges.
We’ll work pro actively with you to fully understand your requirements and recommend the
best solution possible.
KEY FEATURES
• Custom shapes to fit specific requirements
• Multiple capacitors in a single assembly
• NP0/COG and X7R solutions from -55°C to +125°C
• Multiple pin, lead-frame, and flying wire options
• Bare ceramic, epoxy coated, potted solutions
VARIABLE PITCH ASSEMBLIES
Another custom approach is our variable pitch
design. No longer are you limited to a vendor’s
standard catalogue offering or only square or
rectangular custom designs. We let you become your own capacitor designer by not only
telling us the desired capacitance and voltage,
but also the size, shape, and location of leads!
This process helps insure that the resulting
capacitor satisfies every aspect of your design
requirements.
ON-LINE PRODUCTS
200°C Radial Leaded Capacitors
Large Size MLC Capacitors
High Power AC Capacitors
46
www.johanson dielectrics.com
CAPACITOR GENERAL ELECTRICAL CHARACTERISTICS & PN BREAKDOWN
ELECTRICAL CHARACTERISTICS
PARAMETER
TEMPERATURE
COEFFICIENT:
NP0
X7R
0± 30 ppm/°C
-55 to +125°C
± 15%
0%
0%
0%
-20%
-20%
-40%
-40%
-40%
-60%
-60%
-60%
-80%
-55°C
-80%
-55°C
-25°C
0°C
25°C
50°C
75°C
100°C
125°C
-25°C
50°C
75°C
100°C
-80%
-55°C
125°C
-25°C
0°C
25°C
50°C
75°C
100°C
125°C
For Vrated ≥ 50 VDC, DF = 5% max
For Vrated ≤ 25 VDC: DF = 10% max
None
2.5% / decade hour
2.5 % / decade hour
1000ΩF or 100GΩ
whichever is less @ 25°C, WVDC
500ΩF or 50GΩ
whichever is less @ 25°C, WVDC
100ΩF or 10GΩ
whichever is less @ 25°C, WVDC
C > 100 pF; 1kHz ±50Hz;1.0±0.2
VRMS
C ≤ 100 pF 1Mhz ±50kHz; 1.0±0.2
VRMS
DWV = 2.5 X WVDC, 25°C, 50mA
max.
Capacitance values ≤ 10 µF:
1.0kHz±50Hz @ 1.0±0.2 Vrms
Capacitance values ≤ 10 µF:
1.0kHz±50Hz @ 1.0±0.2 Vrms
Capacitance values > 10 µF:
120Hz±10Hz @ 0.5V±0.1 Vrms
Capacitance values > 10 µF:
120Hz±10Hz @ 0.5V±0.1 Vrms
Tanceram IR = 100 ΩF or 10 GΩ
Tanceram DF for Vrated ≥ 50 VDC = 5% max.
Tanceram DF for Vrated ≤ 25 VDC, DF = 10% max
502
VOLTAGE
25°C
WVDC ≥ 50 VDC, DF = 2.5% max
WVDC = 25 VDC, DF = 3.0% max
WVDC = 16 VDC, DF = 3.5% max
PART NUMBER BREAKDOWN - SURFACE MOUNT
6R3 = 6.3 V DC
100 = 10 V DC
160 = 16 V DC
250 = 25 V DC
500 = 50 V DC
101 = 100 V DC
201 = 200 V DC
251 = 250 V DC
301 = 300 V DC
501 = 500 V DC
631 = 630 V DC
102 = 1000 V DC
202 = 2000 V DC
302 = 3000 V DC*
402 = 4000 V DC
502 = 5000 V DC*
ACJ = 250 VAC
* For Safety Caps
with -****-SC
P/N suffix only:
302 = 250VAC
[2500V Impulse]
502 = 250VAC
[5000V Impulse]
0°C
For Vrated = 6 - 200 VDC, DWV = 2.5 X WVDC, 25°C, 50mA max.
For Vrated = 201 - 499 VDC, DWV = 2.0 X WVDC, 25°C, 50mA max.
For Vrated = 500 - 999 VDC, DWV = 1.5 X WVDC, 25°C, 50mA max.
For Vrated = 1000+ VDC, DWV = 1.2 X WVDC, 25°C, 50mA max.
TEST
PARAMETERS:
-55 to +85°C
.001 (0.1%) max
AGING:
NOTES:
± 15%
20%
-20%
DISSIPATION
FACTOR:
DIELECTRIC
STRENGTH:
-55 to +125°C
20%
20%
INSULATION
RESISTANCE:
X5R
W
SERIES/SIZE
DIELECTRIC
CAPACITANCE
TOLERANCE
TERMINATION
MARKING
PACKING
N = NP0
W = X7R
X = X5R
1st two digits are
significant; third
digit denotes
number of zeros,
R = decimal.
* B = ± 0.10 pF
* C = ± 0.25 pF
* D = ± 0.50 pF
*F=±1%
* G = ± 2%
* J = ± 5%
* K = ± 10%
* M = ± 20%
* Y = +50 -20%
* Z = +80 -20%
V = Nickel Barrier
with 100% Tin
Plating (Matte)
3 = Special
4 = Unmarked
6 = EIA Code*
F = Polyterm
flexible termination
*Not available
on sizes
≤ 0402
E = Embossed 7”
T = Punched 7”
U = Embossed 13”
R = Punched 13”
=
=
=
=
=
=
=
ARRAY
LICC
F-T FILTER
MLCC
MLCC
HI TEMP MLCC
X2Y
5R6 = 5.6 pF
100 = 10 pF
102 = 1,000 pF
474 = 0.47 µF
475 = 4.7 µF
106 = 10 µF
_05=0201
_07=0402
_14=0603
_15=0805
_18=1206
_41=1210
_29=1808
_30=2211
_43=1812
_44=1410
_47=2220
_49=1825
_48=2225
K
3
R 29
A_ _
B_ _
F_ _
R_ _
S_ _
T_ _
X_ _
102
Part number written: 502R29W102KV3E-****-SC
*Values < 10 pF
only
V
G = Gold
E
No code = bulk
pack
Tape specifications
conform to EIA
RS481
T = SnPb
P = PdAg
Not all tape styles
are available on all
parts.
-****- SC
PART NUMBER MODIFIER
Used on select parts such as Safety Certified or
for customer specific requirements.
PLEASE NOTE: Not all combinations of JDI P/Ns are valid. Please refer to the “How to Order” detail section of the specific product or contact
your Sales Representative if you need assistance.
www.johanson dielectrics.com
47
CAPACITOR PACKAGING
Johanson capacitors are available taped per EIA
standard 481. Tape options include 7” and 13”
diameter reels. Johanson uses high quality, dust free,
punched 8mm paper tape and plastic embossed 8mm
tape for thicker MLCCs. Quantity per reel ranges are
listed in the tables below and are dependent on chip
thickness.
Feed Direction
Embossed Tape
.083 max.
(2.1)
Punched Tape
8mm Width; 4mm or 2mm Pitch
.059+.004-0.0
(1.5+0.1-0.0)
.157±.004
(4.0±0.1)
Sproket Holes
.012±.004
(0.3±0.1)
.067±.004
(1.7±0.1)
.055
max.(1.2)
.138±.002
(3.5±0.05)
.079±.020
(2.0±0.5)
Width
.315±.008
(8.0±0.2)
Bo
Ao
.083±.020
(21±0.5)
4E
JV
00
Cover Tape
.510±.020
(13±0.5)
.079±.002
(2.0±0.05)
Pitch = .157±.004 (4.0±0.1)
or .079±.004 (2.0±0.1)
Cover Tape
0
0R
50
1
7N
N
P/
1.97 min.
(50.0)
Embossed Tape
99
99
0-
01
t#
Lo
56
34
.#
F0
.098 max.
(2.5)
78
.012±.004
(0.3±0.1)
12mm Width; 8mm or 4mm Pitch
.059+.004-0.0
(1.5+0.1-0.0)
Sproket Holes .157±.004
(4.0±0.1)
Punched Tape
.067±.004
(1.7±0.1)
26
S.O
O1
.#
M
.O
M
Ao
.220±.004
(5.5±0.1)
Bo
7.0±.079
13.0±.079
(178±2.0) or (330±2.0)
Pitch = .314±.004 (8.0±0.1)
or .157±.004 (4.0±0.1)
.33+.059-0.0 or .488+.078-0.0
(8.4+1.5-0.0)
(12.4+2.0-0.0)
7” DIAMETER REEL
COMPONENT
R05 / 0201 MLCC
R07 / 0402 MLCC
R14 / 0603 MLCC
R15 / 0805 MLCC
R18 / 1206 MLCC
S41 / 1210 MLCC
R29 / 1808 MLCC
R30 / 2211 MLCC
S43 / 1812 MLCC
S47 / 2220 MLCC
S49 / 1825 MLCC
S48 / 2225 MLCC
X07 / 0402 X2Y
X14 / 0603 X2Y
X15 / 0805 X2Y
X18 / 1206 X2Y
X41 / 1210 X2Y
X44 / 1410 X2Y
X43 / 1812 X2Y
.079±.002
(2.0±0.05)
13” DIAMETER REEL
REEL QTY
TAPE TYPE
WIDTH / PITCH
CODE
REEL QTY
TAPE TYPE
15000
10000
4000
4000 / 3000
4000 / 3000
2000 - 4000
2000
1000 - 2000
500 - 1000
250 - 1000
250 - 1000
250 - 1000
4000
4000
4000
3000 - 4000
2000 - 3000
1000 - 2000
1000
Paper
Paper
Paper
8mm/2mm
8mm/2mm
8mm/4mm
8mm/4mm
8mm/4mm
8mm/4mm
12mm/4mm
12mm/4mm
12mm/8mm
12mm/8mm
12mm/8mm
12mm/8mm
8mm/2mm
8mm/4mm
8mm/4mm
8mm/4mm
8mm/4mm
8mm/4mm
12mm/8mm
T
T
T
T/E
T/E
E
E
E
E
E
E
E
T
T
E
E
E
E
E
N/A
N/A
10000
10000
10000
5000-10000
5000 - 8000
2000 - 5000
3000 - 5000
2000 - 5000
2000 - 4000
2000 - 4000
10000
10000
10000
10000
N/A
N/A
Paper
Paper / Embossed
Paper / Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Paper
Paper
Embossed
Embossed
Embossed
Embossed
Embossed
Paper / Embossed
Paper / Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Embossed
Paper
Paper
Embossed
Embossed
WIDTH / PITCH
CODE
8mm/4mm
8mm/4mm
8mm/4mm
8mm/4mm
12mm/4mm
12mm/4mm
12mm/8mm
12mm/8mm
12mm/8mm
12mm/8mm
8mm/2mm
8mm/4mm
8mm/4mm
8mm/4mm
N/A
N/A
R
R/U
R/U
U
U
U
U
U
U
U
R
R
U
U
Actual reel quantities based on part thickness and tape type. Contact sales for reel quantities of specific part numbers.
48
Width
.472±.008
(12.0±0.2)
www.johanson dielectrics.com
INDEX OF APPLICATION NOTES AVAILABLE AT JOHANSONDIELECRICS.COM
GENERAL
Ceramic Capacitor aging made simple
Capacitor Cracks: Still with us after all these years
Understanding Ceramic Capacitors termination
Capacitors Packaging & Marking
Electrical Characteristics
MLCC Storage and Handling Conditions
APPLICATION NOTES
AC Power Computations for DC Rated Capacitor
Arc Season and Board Design Observations
Corona Effects and their impact on PWB Layout induced Hipot failures
DC-DC Converter trends and Output Filter Capacitors
Impact of pad design and spacing on AC breakdown performance
Pb Free Application Notes
Polyterm® Flexible SMD Termination
Safety Certified Application Notes
Sn/Pb SMT Application Notes
Soldering and Handling precautions for Large Form Capacitors and Planar Arrays
Tantalum replacement MLC’s and ESR Curves
PROCESSING
Foward/Backward process compatability
Pb Free Application Notes
Peak Reflow times, temperature and the impact of MSL
Tin Wisker testing
X2Y APPLICATION NOTES
Amplifier Decoupling: EMI vs MLCC
GSM RFI Supression with EMI Filters
EMI Filter Evaluation and PCB design guide
Improve instrument amplifier performance with X2Y optimized input filter
EMI DC motor filtering basics
EMI power bypass mounting
EMI SerDes bypass example
www.johanson dielectrics.com
49
Your Technology Partner
High Voltage
High Capacitance
EMI Filters
AC Safety
High Temperature
AC Power
Power Inductors
SMPS &
Leaded
Planar Arrays &
Discodials
Custom Solutions
UNITED STATES:
HONG KONG:
HEADQUARTERS
4001 Calle Tecate,
Camarillo CA 93012
TEL (805) 389-1166
https://www.johansondielectrics.com
JOHANSON HONG KONG, LTD.
Unit 812, Heng Ngai Jewelry Ctr.,
44 Hok Yuen Street East, Hunghom,
Kowloon, Hong Kong
TEL +852 2334 6310
asiasales@johansondielectrics.com
© 2020 Publication JDI062822