XR2L2S103H [KYOCERA AVX]

Solder-In EMI Filters;
XR2L2S103H
型号: XR2L2S103H
厂家: KYOCERA AVX    KYOCERA AVX
描述:

Solder-In EMI Filters

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中文:  中文翻译
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A KYOCERA GROUP COMPANY  
AVX  
EMI Filters  
Introduction  
• Facility qualified to MIL-STD-790 during first round of  
audits for filter manufacturers.  
HIGH-REL EMI FILTERS  
Noise is the enemy of good engineering design. Properly  
installed EMI filters suppress such electromagnetic interfer-  
ence on power and signal lines, while allowing desired sig-  
nals to pass. For critical EMI filter applications, high reliability  
is of the utmost importance.  
• The first solder-in filter line to offer 400°C installation  
temperature.  
• The first filter line designed to meet the new MIL-Spec  
requirements for heat rise/reactive current in 125 VAC  
and 230 VAC 400 Hz applications.  
High reliability applications have diverse requirements, rang-  
ing from a need for a long operating life in medical or military  
systems to avoiding the prohibitive cost of replacing a faulty  
component in a satellite, undersea cable, or other inaccessi-  
ble system. High-rel filters satisfy application-critical require-  
ments in many environments:  
• The first to offer a filter line of hermetically sealed bolt  
style filters.  
CUSTOM AND SEMI-CUSTOM  
In addition to standard catalog and QPL EMI filters, AVX  
Filters produces two classes of these special products:  
Semi-custom and Custom. Semi-custom involves variations  
in electrical parameters, testing, and limited mechanical  
changes from standard product designs. Delivery is slightly  
longer and price is slightly higher than standard products  
• Space/Satellite Systems  
• Military Aircraft  
• Guidance Systems  
3
• Command, Control & Communications (C )  
• Missile Systems  
Custom products require longer lead time for design and  
manufacturing, but give designers freedom to specify non-  
standard mechanical and electrical filter designs.  
• Weapon Systems  
• Radar Systems  
• Electro Optical Systems  
• Electronic Countermeasures  
• Electronic Warfare  
• Pacemakers  
AVX Filters dedicates a unique internal part number to every  
semi-custom and custom component. This insures contin-  
ued configuration control for each part, allows future  
changes to be easily implemented, and provides assurance  
that the design always matches the customer requirements.  
• Medication Monitors  
ENGINEER TO ENGINEER  
HIGH-REL STANDARDS  
Our application engineering staff will assist in defining  
your filter requirements, while recommending advantages,  
reliability, quality assurance levels, and filter performance at  
the lowest practical cost. They will help in filter selection and  
specification, including meeting DESC requirements. SCD  
models are available to assist you in the design process.  
A custom filter part number will be assigned exclusively to  
your SCD. To obtain prompt, professional assistance, call  
(818) 767-6770.  
Reliability must be designed into an EMI filter. Every step in  
its manufacture from material selection through testing and  
characterization must be considered. To assure confor-  
mance to clearly-defined product and performance parame-  
ters, specifications have evolved for electrical performance,  
mechanical configurations, test methods, screening and  
qualification procedures.  
AVX Filters delivers high quality EMI filters which meet appli-  
cable portions of these high-reliability standards:  
• MIL-F-15733  
• MIL-F-28861  
• MIL-STD-220  
• MIL-Q-9858  
QUALITY ASSURANCE  
Quality assurance is built into every stage of manufacturing  
and testing. AVX Filters controls the entire process, from  
the capacitor's dielectric formulation through final filter  
test. This results in absolute traceability by lot number to a  
specific dielectric batch, as well as the subsequent materials,  
equipment and employees involved in the tightly-controlled  
manufacturing and testing process. In addition, critical  
processes are monitored using SQC, SPC techniques.  
• MIL-STD-202 • MIL-I-45208A  
• MIL-STD-790 • ISO 9000  
• MIL-C-123  
• EIA-RS-469  
AVX FILTERS AT THE LEADING EDGE  
AVX Filters Corporation continues to provide innovative  
solutions to the high performance needs of its customers. It  
has pioneered many breakthroughs which have advanced  
the state-of-the-art in this demanding discipline, including:  
• The first to qualify to the new High-Reliability Filter Spec,  
MIL-F-28861.  
AVX Filters Corporation  
Contents  
Filter Product Selector. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2  
Filter Design Guide. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3  
Solder-In Style. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7  
Bolt Style . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19  
Cylindrical Style . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29  
Military Qualified Products . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46  
Advanced Technology Filters . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 47  
Filter Plates . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 52  
How To Order . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54  
1
Filter Product Selector  
Application Notes  
Hermetically sealed on one end. This  
Unique construction provides 300°C  
installation protection against internal  
solder reflow. Ideal for assembly into  
filter arrays.  
solder-in series provides both C & L cir-  
cuit configurations with effective filtering  
in the microwave frequency spectrum  
from 10 MHz to 26 GHz and beyond.  
Most commonly used bolt-style filter pro-  
vides improved filtering in the HF through  
microwave frequency spectrum from 1  
MHz – 10 GHz.  
Highest cap values available in small size  
– 1.4 MFD. Lowest profile configuration  
in cylindrical style best suited for low  
moisture environments where hermetic  
seal is not required. Provides effective  
filtering from 500 KHz to 10 GHz.  
This hermetically sealed filter series  
provides the longest cases and most  
space available in a .375/.410 diameter  
cylindrical style. It also offers the greatest  
number of circuit options.  
The MIL-F-28861/2, 3, 4, 5 are the QPL  
equivalents of this series. This series  
offers effective filtering from 30 KHz to 10  
GHz.  
This series of custom assemblies utilizes  
AVX Filters' line of high temperature sol-  
der-in filters capable of 300°C installation  
temperature and can be designed and  
fabricated to your specified requirements  
or spec control drawings. They can be  
furnished 100% tested and burned-in  
prior to shipment. To satisfy your require-  
ments for military QPL product and to  
preclude the need for non-standard parts  
approval, these filter arrays may be  
supplied with MIL-F-28861/12,/14 or /15  
filters installed as available (see QPL  
Listings). If no QPL sources available, the  
arrays could be supplied with filters  
approved to DESC drawings 88010,  
84080, 84081, or 84082, respectively, or  
to the AVX Filters catalog equivalents  
designed to the requirements of the  
MIL-F-28861 slash sheets.  
2
Filter Design Guide  
High Reliability  
INSTALLATION, HANDLING, HARDWARE OPTIONS  
• Do not cut or form filter leads.  
GENERAL  
— Mechanical stress may be transmitted to the  
discoidal capacitor.  
Proper Electrical Operation Requires:  
• Good filter/case ground.  
— The glass hermetic seal may be damaged.  
• Design layout where filter is installed directly into  
conductive shield or enclosure.  
— Contact AVX Filters regarding custom lead lengths  
to accommodate your requirements.  
• Minimizing holes, slots, or other penetrations of the  
shield near the filter.  
Bolt-Style Filters  
• Do not exceed recommended nut mounting torques  
listed on next page. NOTE: it is preferable to keep to the  
low side of torque range when installing filters into  
threaded mounting holes.  
Installation Precautions  
• Although EMI/RFI filters can withstand temperature  
extremes, rapid heat-up or cool-down can crack the  
internal ceramic capacitor.  
• On epoxy sealed bolt-style units AVX Filters recom-  
mends conformal coating of the units after installation to  
improve moisture resistance.  
– Pre-heating of the filter prior to soldering should be  
performed whenever possible.  
– Forced-air cooling after soldering is not recommended.  
• Observe same precautions listed for hi-temp filter when  
soldering to filter center pin.  
Avoid Mechanical Stress  
• Do not bend filter center pin.  
• Do not use pliers or other gripping tools capable of  
exerting excessive pressure on filter case.  
Cylindrical-Style Filters  
• Do not alter the lead or terminal flag either before or  
after soldering.  
• Observe recommended nut mounting torque as per the  
table on next page.  
— BK, CK, GK – series filters (1/4-28 UNF-2A) require  
44 4 oz-in.  
SPECIFIC RECOMMENDATIONS  
— JD series (5/16-24 UNF-2A) require 60 4 oz-in.  
Hi-Temp Solder-In Style Filter  
• The terminal flags should not be subjected to mechanical  
stress during or after leadwire installation. The glass  
hermetic seal may be adversely affected.  
• Small case design sensitive to excessive heating.  
• 150°C preheat prior to solder installation using supplied  
solder preform highly recommended.  
• Use care in soldering to the terminal flags. An 18-30  
watt soldering iron is recommended. CAUTION: the use  
of a large wattage iron without temperature control may  
cause reflow of the high-temperature solder used to seal  
the terminal. This could result in the loss of hermeticity  
for the filter.  
• Vapor phase reflow (VPR) soldering with integral preheat  
is preferred.  
• Infrared (IR) and hot plate soldering may also be used.  
Temperature should be increased to solder temperature  
(300°C, max.) at a controlled rate of 2°C per second.  
• Time at max. temperature should be kept at a minimum  
and should never exceed 30 seconds.  
HARDWARE OPTIONS  
• When soldering leads using an iron:  
General  
— Iron tip temperature should not exceed 460°F (60/40  
solder recommended).  
• Necessary mounting hardware is supplied with all filters.  
• Hex nut and lockwasher plating will be as per filter case  
specified.  
— Use a small iron, 15-20 watts, and do not apply heat  
for longer than 10 seconds.  
• Refer to table for hardware selection. Standard hard-  
ware (“STD”) will be supplied unless otherwise requested.  
MIL-F-28861 filters will be shipped with MIL-F-28861  
hardware.  
— Use of heat sink clip when lead length permits is  
recommended.  
• Do not expose leads to torque stresses by moving wires  
after soldering to lead. The glass hermetic seal may be  
damaged.  
3
Screw & Locking Washer Table  
HEX NUT AND INTERNAL TOOTH LOCKWASHER  
THREAD  
A
B
C
D
HEX NUT  
WASHER  
Size Thread  
Hex Nut  
Lockwasher  
A
B
C
D
4-40 UNC-2B  
(.112-40)  
.187*  
.180  
.257  
.241  
.067*  
.057  
.083  
.073  
.225*  
.215  
.265  
.255  
.020*  
.010  
.018  
.012  
(STD)  
(ALT)  
8-32 UNC-2B  
(.164-32)  
.250*  
.241  
.313  
.307  
.083*  
.073  
.114  
.104  
.285*  
.275  
.336  
.325  
.025*  
.015  
.025  
.015  
(STD)  
(ALT)  
10-32 UNF-2B  
(.190-32)  
.250  
.241  
.345  
.336  
.080  
.070  
.130  
.120  
.311  
.300  
.381  
.370  
.023  
.013  
.027  
.017  
(STD)  
(ALT)  
12-32 UNEF-2B  
(.216-32)  
.250  
.241  
.250*  
.241  
.083  
.073  
.073*  
.063  
.383  
.372  
.383*  
.372  
.023  
.013  
.023*  
.013  
(STD)  
(ALT)  
1/4-28 UNF-2B  
(.250-28)  
.311*  
.308  
.096*  
.091  
.408*  
.396  
.021*  
.015  
5/16-24 UNF-2B  
(.312-24)  
.377*  
.365  
.096*  
.091  
.435*  
.425  
.027*  
.017  
*Used for MIL-F-28861 units.  
Thread  
Recommended Mounting Torque  
(.112-40)  
4-40 UNC-2A  
32 oz-in. 4 oz-in.  
(.164-32)  
64 oz-in. 4 oz-in.  
64 oz-in. 4 oz-in.  
64 oz-in. 4 oz-in.  
44 oz-in. 4 oz-in.  
60 oz-in. 4 oz-in.  
8-32 UNC-2A  
(.190-32)  
10-32 UNC-2A  
(.216-32)  
12-32 UNEF-2A  
(.250-28)  
1/4-28 UNF-2A  
(.312-24)  
5/16-24 UNF-2A  
4
Filter Types  
A feedthru is a low inductance device, acting as a bypass  
feedthru capacitor to ground. It works well with a high imped-  
ance load and source. For assured contact, it should be sol-  
dered directly to a bulkhead or a connector base.  
FEED-  
THRU  
FILTER  
C
L
π
T
C
This adds a series-inductive element to the bypass feedthru  
capacitor connected to ground. Because of the inductor, it can  
be connected to a low impedance source or load. This filter  
may be used to link a low impedance source to a high imped-  
ance load, or vice versa, with the feedthru capacitor facing the  
high impedance circuit.  
L1  
L2  
FILTER  
FILTER  
FILTER  
This filter contains two feedthru capacitors connected to  
ground with an inductor in-between. It presents a low imped-  
ance to both the source and load, and has a sharper roll-off  
than either the feed-thru or L-section designs. With feedthru  
capacitors as outer elements, this filter is best suited for high  
impedance load and source applications.  
Pi  
This filter forms a 'T' with two inductors and a feedthru capac-  
itor connected to ground. Like the π Filter, it has a sharper roll-  
off than a feedthru or an L-section design. With inductors as  
outer elements, the T-section is intended for applications with  
a low impedance load and source. It also finds application  
where transient conditions may occur (EMP, lighting, etc).  
T
I.L. vs. FREQUENCY  
(FOR VARIOUS FILTER CONFIGURATIONS)  
INSERTION LOSS  
100  
80  
60  
40  
20  
0
The insertion loss values specified throughout  
this catalog are based upon an industry standard  
of full load and balanced 50 ohm system in  
accordance with MIL-STD-220A (at +25°C). The  
actual attenuation performance in other circuits  
will vary significantly with different values of  
source and load impedance.  
π
T
L
C
The insertion loss values in this catalog may  
appear to be significantly lower than that of  
comparable filters in certain other competitor cat-  
alogs. The reason for this is that AVX Filters takes  
into account both component and circuit reso-  
nances and adjusts the table values such  
that the insertion loss will not drop below straight  
lines drawn between each data point in a  
semilog graph.  
10 KHz  
100 KHz  
1 MHz  
10 MHz  
100 MHz  
FREQUENCY  
5
Filter Design Guide  
High Reliability  
M28861 SCREENING  
The Group A sequence as outlined in MIL-F-28861 is  
performed on a 100% basis whenever Reliability Codes for  
Class S or Class B are specified by the customer. Differences  
between Class S and Class B screening are shown in the  
descriptions.  
S-CLASS, B-CLASS TESTING  
MIL-STD-202  
(method)  
Test  
Description  
Thermal Shock  
107, cond. A  
S-class: 5 cycles from -55°C to +125°C. Through-hole mounting required.  
B-class: as above except mounting not required.  
Burn-in  
108  
S-class: 168 hours minimum at 2.0X rated voltage, 125°C polarity reversal for the  
first 24-72 hours; fused B/I circuit for each filter.  
B-class: 164 4 hours at 2.0X rated voltage.  
Dielectric  
Withstanding Voltage  
301  
S-class, B-class: 2.5X rated DC voltage for 5 seconds minimum,  
1 minute maximum, 50 mA charging current.  
Insulation  
Resistance  
302, cond. A  
S-class: test at 100 VDC or rated, V, whichever is less. Pass/fail limits are  
also based upon 125°C reading from first 50 pieces.  
B-class: same as above, except omit pass/fail as per 50 piece calculation.  
Capacitance and D.F.  
Insertion Loss  
305  
S-class, B-class: test 1000 100 Hz, 0.1 to 1.2 VRMS  
S-class, B-class: per MIL-STD 220 at load, no-load as specified.  
S-class, B-class: test is optional if DC Voltage Drop Test performed.  
S-class, B-class: M28861 para. 4.6.6.1 (AC rated), para 4.6.6.2 (DC rated)  
S-class, B-class: 2 views required with 10X examination images.  
S-class: condition C, B-class: condition A or D  
DC Resistance  
Voltage Drop  
303  
Radiographic Inspect. 209  
Seal Test  
112  
Visual and  
Mechanical  
S-class: M28861 para 4.6.1.2 which includes element, subassembly,  
and pre-cap inspections, B-class: M28861 para 4.6.3 for external visual only.  
Solderability  
208  
S-class, B-class: 5 samples.  
R-LEVEL SCREENING  
The test sequence outlined below is performed whenever  
AVX Filters R-level screening is specified. Each filter lot is  
subjected to the tests in the order shown on a 100% basis.  
Summary data is provided for R-level Screening and is  
included with shipment.  
R-LEVEL TESTING  
MIL-STD-202  
(method)  
Test  
Description  
Thermal Shock  
Burn-in  
107, cond. A  
108, cond. A  
301  
5 cycles from -55°C to +125°C.  
100 hours at 1.4 times rated voltage, 125°C.  
Dielectric  
Withstanding Voltage  
Twice (2X) rated DC voltage for 5 1 sec at 25°C,  
50 mA maximum charging current.  
Insulation  
Resistance  
302, cond. A  
Testing performed at rated DC voltage.  
The 125°C value shall be 10% of the specified IR at 25°C.  
Seal Test  
112, cond. A  
Gross leak test. Not applicable to epoxy-sealed units.  
1 hour at 150°C. No voltage applied.  
Test signal 1KHz, 1.0 VRMS.  
Depolarization  
Capacitance  
and D.F.  
305  
DC Resistance  
Insertion Loss  
303  
DCR measured in lieu of voltage drop.  
Per MIL-F-15733 para 4.6.9.1 (check test)  
Per MIL-F-15733 para. 4.6.1  
Visual and  
Mechanical  
6
Solder-In Style High Temp EMI Filters  
ZZ Series – .118 Dia. – Circuits Available - C  
APPLICATIONS  
The ZZ series is intended for use as a  
high reliability alternative to a commonly  
available commercial filter type. Due to its  
smaller body diameter, capacitance is  
limited. It does provide effective filtering in  
the MICROWAVE frequency spectrum  
from 100 MHz through 26 GHz. Designed  
to be soldered into a package, bracket or  
bulkhead (and maintain hermeticity),  
it is ideal for high impedance circuits  
where large capacitance values are  
not practical.  
Alternate lead lengths or special capaci-  
tance values are available upon request.  
Custom packages or bracket assemblies  
utilizing this feedthru can be furnished to  
your specifications.  
CHARACTERISTICS  
• High temperature construction with-  
stands 300°C installation temperatures.  
• Glass hermetic seal on one end with  
epoxy seal on the opposite end.  
• Features rugged monolithic discoidal  
capacitor construction.  
• High purity gold plating provides excel-  
lent solderability or compatibility with  
thermal and ultrasonic wire bonding.  
SPECIFICATIONS  
1. Finish: Gold standard –  
STANDARD CONFIGURATION  
Silver and solder coat available  
(See Note 1)  
2. Material:  
Case: Cold rolled steel  
Leads: Alloy 52 steel  
3. Operating Temperature Range:  
-55°C to +125°C  
.118  
.002  
.020  
.005  
.030  
.002  
GLASS SEAL  
4. Insulation Resistance:  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
.110  
.005  
.140  
.020  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
.140  
.005  
.400  
.020  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
2.0 times rated DC voltage  
CIRCUIT DIAGRAMS  
Class B, Class S designs:  
2.5 times rated DC voltage  
6. DC Resistance (DCR): .01 ohm,  
maximum  
C
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 5 Amps, maximum  
ZZ1  
9. Maximum Installation Temperature:  
300°C  
millimeters (inches)  
10. Supplied with 60/40 solder preform for  
easy installation  
Notes:  
0.05 (.002)  
0.13 (.005)  
0.51 (.020)  
1.02 (.040)  
2.79 (.110)  
2.95 (.116)  
3.05 (.120)  
3.43 (.135)  
3.56 (.140)  
3.68 (.145)  
10.16 (.400)  
1. Glass seal on end opposite flange.  
2. Metric equivalent dimensions given  
for information only.  
(See Note 2)  
7
Solder-In Style High Temp EMI Filters  
ZZ Series – .118 Dia. – Circuits Available – C  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
1
10  
MHz  
100  
MHz  
1000  
MHz  
10  
GHz  
CKT  
C
Voltage  
Min.  
MHz  
ZZ1C3-250H  
ZZ1C3-500H  
ZZ1C3-101H  
ZZ1C3-102H  
ZZ1C3-152H  
ZZ1A3-250H  
ZZ1A3-500H  
ZZ1A3-101H  
ZZ1A3-102H  
ZZ1A3-152H  
ZZ1B3-250H  
ZZ1B3-500H  
ZZ1B3-101H  
ZZ1B3-102H  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
50  
50  
25  
4
5
4
5
4
1
10  
15  
20  
31  
42  
10  
15  
20  
36  
42  
10  
15  
20  
36  
15  
25  
30  
55  
55  
15  
25  
30  
55  
55  
15  
25  
30  
55  
C
50  
C
50  
100  
1000  
1500  
25  
3
C
50  
20  
21  
C
50  
C
100  
100  
100  
100  
100  
200  
200  
200  
200  
C
50  
1
C
100  
1000  
1500  
25  
3
C
18  
21  
C
C
C
50  
1
C
100  
1000  
3
C
18  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
8
Solder-In Style High Temp EMI Filters  
ZS/ZR Series – .128 Dia. – Circuits Available – C & L  
APPLICATIONS  
The ZS series provides effective filtering  
in the MICROWAVE frequency spectrum  
from 10 MHz through 26 GHz. Designed  
to be soldered into a package, bracket or  
bulkhead (and maintain hermeticity), it is  
ideal for high impedance circuits where  
large capacitance values are not practical.  
In the “L” section version an internal fer-  
rite bead element provides both induc-  
tance and series resistance (lossy charac-  
teristic) which improves insertion loss and  
provides superior transient performance.  
Alternate lead lengths or special capaci-  
tance values may be ordered.  
Custom packages or bracket assemblies  
utilizing this feedthru can be furnished to  
your specifications.  
CHARACTERISTICS  
• Meets or exceeds the applicable portions  
of MIL-F-28861/12. See QPL listings.  
• Glass hermetic seal on one end with  
epoxy seal on the opposite end.  
• High temperature construction with-  
stands 300°C installation temperatures.  
• High purity gold plating provides excel-  
lent solderability or compatibility with  
thermal and ultrasonic wire bonding.  
• Features rugged monolithic discoidal  
capacitor construction.  
SPECIFICATIONS  
1. Plating: Gold standard –  
STANDARD CONFIGURATION  
Silver and solder coat available  
.128  
.005  
.020  
.005  
2. Material:  
.030  
.002  
GLASS SEAL  
Case: Cold rolled steel  
Leads: Alloy 52 steel  
3. Operating Temperature Range:  
-55°C to +125°C  
.25  
A
4. Insulation Resistance:  
.03  
.156  
.005  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
B
CIRCUIT DIAGRAMS  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
FLANGE  
END  
GLASS  
SEAL  
END  
FLANGE  
END  
GLASS  
SEAL  
END  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
C
2.0 times rated DC voltage  
ZS1, ZR1  
ZS2 (See Note 3)  
ZR2  
Class B, Class S designs:  
2.5 times rated DC voltage  
Notes:  
millimeters (inches)  
6. DC Resistance (DCR): .01 ohm,  
maximum  
0.05 (.002) 3.25 (.128)  
0.13 (.005) 3.96 (.156)  
0.51 (.020) 5.08 (.200)  
0.76 (.030) 6.4 (.25)  
0.8 (.03) 15.88 (.625)  
2.79 (.110) 18.16 (.715)  
(See Note 4)  
1. Outline drawing shows stan-  
dard ZS configuration. Also  
available with glass seal at  
the opposite end, ZR reverse  
configuration.  
3. For ZS2 or ZR2 L-Section  
Filters inductor always posi-  
tioned at epoxy-filled end.  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 5 Amps, maximum  
4. Metric equivalent dimensions  
given for information only.  
9. Maximum Installation Temperature:  
300°C  
2. MIL-F-28861/12 style FS70  
equivalent to standard ZS  
configuration. Style FS71 is  
reverse ZR configuration.  
10. Supplied with 60/40 solder preform for  
easy installation  
MIL-F-28861/12 (See Note 2)  
11. Insertion Loss for the “C” and “L” circuits  
are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” becomes much more effective.  
Dimensions  
Dash No.  
001 through 016,  
033 and 034  
017 through 032,  
035 and 036  
Style  
FS70  
Circuit  
A
B
Diagram  
.005 Nom.  
L
.200  
.715  
FS71  
C
.110  
.625  
9
Solder-In Style High Temp EMI Filters  
ZS/ZR Series – .128 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
Min.  
500  
1
MHz  
10  
MHz  
100  
MHz  
1000  
MHz  
10  
GHz  
CKT  
C
C
C
C
C
C
C
L
Voltage  
KHz  
ZS1C2-501H  
ZS1C2-102H  
ZS1C2-122H  
ZS1C2-272H  
ZS1C2-502H  
ZS1C2-103H  
ZS1C2-153H  
ZS2C2-501H  
ZS2C2-102H  
ZS2C2-122H  
ZS2C2-272H  
ZS2C2-502H  
ZS2C2-103H  
ZS2C2-153H  
ZS1A2-101H  
ZS1A2-501H  
ZS1A2-102H  
ZS1A2-122H  
ZS1A2-272H  
ZS1A2-502H  
ZS1A2-103H  
ZS1A2-153H  
ZS2A2-100H  
ZS2A2-250H  
ZS2A2-101H  
ZS2A2-501H  
ZS2A2-102H  
ZS2A2-122H  
ZS2A2-272H  
ZS2A2-502H  
ZS2A2-103H  
ZS2A2-153H  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
50  
50  
500  
1000  
1200  
2700  
5000  
.010  
.015  
500  
4
7
4
7
4
7
4
7
4
15  
20  
20  
25  
30  
35  
40  
15  
20  
20  
25  
30  
38  
42  
3
30  
31  
35  
40  
45  
48  
50  
30  
33  
37  
40  
45  
50  
50  
20  
30  
31  
35  
40  
45  
48  
50  
5
50  
55  
55  
60  
60  
60  
60  
50  
55  
55  
60  
60  
60  
60  
30  
50  
55  
55  
60  
60  
60  
60  
10  
15  
30  
50  
55  
55  
60  
60  
60  
60  
50  
5
50  
10  
15  
20  
25  
50  
50  
50  
50  
L
50  
1000  
1200  
2700  
5000  
.010  
.015  
100  
4
L
50  
5
L
50  
10  
15  
20  
25  
L
50  
L
50  
L
50  
C
C
C
C
C
C
C
C
L
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
500  
15  
20  
20  
25  
30  
35  
40  
1000  
1200  
2700  
5000  
.010  
.015  
10  
4
5
10  
15  
20  
25  
L
25  
10  
20  
30  
33  
37  
40  
45  
50  
50  
L
100  
3
L
500  
15  
20  
20  
25  
30  
38  
42  
L
1000  
1200  
2700  
5000  
.010  
.015  
4
L
5
L
10  
15  
20  
25  
L
L
L
continued  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
10  
Solder-In Style High Temp EMI Filters  
ZS/ZR Series – .128 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
Min.  
500  
1
MHz  
10  
MHz  
100  
MHz  
1000  
MHz  
10  
GHz  
CKT  
C
C
C
C
C
C
C
L
Voltage  
KHz  
ZS1B2-100H  
ZS1B2-250H  
ZS1B2-101H  
ZS1B2-501H  
ZS1B2-102H  
ZS1B2-122H  
ZS1B2-272H  
ZS2B2-100H  
ZS2B2-250H  
ZS2B2-101H  
ZS2B2-501H  
ZS2B2-102H  
ZS2B2-122H  
ZS2B2-272H  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
10  
25  
4
10  
15  
30  
50  
55  
55  
60  
10  
15  
30  
50  
55  
55  
60  
10  
20  
30  
31  
35  
40  
5
100  
500  
1000  
1200  
2700  
10  
3
15  
20  
20  
25  
4
5
10  
L
25  
10  
20  
30  
33  
37  
40  
L
100  
500  
1000  
1200  
2700  
3
L
15  
20  
20  
25  
L
4
L
5
L
10  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
11  
Solder-In Style High Temp EMI Filters  
YS/YR Series – .165 Dia. – Circuits Available – C & L  
APPLICATIONS  
The YS series provides increased filtering  
in the MICROWAVE frequency spectrum  
from 1 MHz through 10 GHz. Previously  
unavailable in the industry as a solder-in  
device, this unique design offers higher  
values of capacitance than were previ-  
ously available. Designed to be soldered  
into a package, bracket or bulkhead (and  
maintain hermeticity), it is ideal for high  
impedance circuits where large capaci-  
tance values are not practical. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance.  
Alternate lead lengths or special capaci-  
tance values may be ordered.  
Custom packages or bracket assemblies  
utilizing this feedthru can be furnished to  
your specifications.  
CHARACTERISTICS  
• Meets or exceeds the applicable portions  
of MIL-F-28861/15. See QPL listings.  
• Glass hermetic seal on one end with  
epoxy seal on the opposite end.  
• High temperature construction with-  
stands 300°C installation temperatures.  
• High purity gold plating provides excel-  
lent solderability or compatibility with  
thermal and ultrasonic wire bonding.  
• Features rugged monolithic discoidal  
capacitor construction.  
SPECIFICATIONS  
1. Plating: Gold standard – Silver available  
STANDARD CONFIGURATION  
2. Material:  
.165  
.005  
.025  
.005  
Case: Cold rolled steel  
Leads: Alloy 52 steel  
.032  
.002  
GLASS SEAL  
3. Operating Temperature Range:  
-55°C to +125°C  
4. Insulation Resistance:  
.25  
A
.03  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
(2 PLC)  
.200  
.005  
B
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
FLANGE  
END  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
GLASS  
SEAL  
END  
FLANGE  
END  
GLASS  
SEAL  
END  
2.0 times rated DC voltage  
C
Class B, Class S designs:  
2.5 times rated DC voltage  
YS2 (See Note 3)  
YS1, YR1  
YR2  
6. DC Resistance (DCR): .01 ohm,  
maximum  
Notes:  
millimeters (inches)  
1. Outline drawing shows stan-  
dard YS configuration. Also  
available with glass seal at  
the opposite end, YR reverse  
configuration.  
3. For YS2 or YR2 L-Section  
Filters inductor always posi-  
tioned at epoxy-filled end.  
0.05 (.002) 4.19 (.165)  
0.13 (.005) 5.08 (.200)  
0.64 (.025) 6.35 (.250)  
0.8 (.03) 16.51 (.650)  
0.81 (.032) 19.05 (.750)  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 5 Amps, maximum  
4. Metric equivalent dimensions  
given for information only.  
9. Maximum Installation Temperature:  
300°C  
2. MIL-F-28861/15 style  
equivalent to standard YS  
configuration. Style is  
reverse YR configuration.  
A
10. Supplied with 60/40 solder preform for  
easy installation  
B
3.81 (.150)  
MIL-F-28861/15 (See Note 2)  
(See Note 4)  
Dash No.  
Config.  
11. Insertion Loss for the “C” and “L” circuits  
are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” becomes much more effective.  
001 through 004  
005 through 008  
A
B
Dimensions  
Circuit  
Diagram  
A
.005  
B
Ref.  
.750  
L
.250  
C
.150  
.650  
12  
Solder-In Style High Temp EMI Filters  
YS/YR Series – .165 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
Min.  
500  
KHz  
1
10  
MHz  
100  
MHz  
1000  
MHz  
10  
CKT  
C
C
C
C
C
C
C
C
C
L
Voltage  
MHz  
GHz  
YS1C2-152H  
YS1C2-502H  
YS1C2-103H  
YS1C2-153H  
YS1C2-203H  
YS1C2-273H  
YS1C2-503H  
YS1C2-753H  
YS1C2-104H  
YS2C2-152H  
YS2C2-502H  
YS2C2-103H  
YS2C2-153H  
YS2C2-203H  
YS2C2-273H  
YS2C2-503H  
YS2C2-753H  
YS2C2-104H  
YS1A2-152H  
YS1A2-502H  
YS1A2-103H  
YS1A2-153H  
YS1A2-203H  
YS1A2-273H  
YS1A2-503H  
YS1A2-753H  
YS2A2-152H  
YS2A2-502H  
YS2A2-103H  
YS2A2-153H  
YS2A2-203H  
YS2A2-273H  
YS2A2-503H  
YS2A2-753H  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
50  
50  
1500  
5000  
.010  
.015  
.020  
.027  
.050  
.075  
.1  
5
21  
34  
35  
40  
41  
42  
44  
46  
48  
22  
35  
36  
45  
46  
48  
50  
51  
52  
21  
34  
35  
40  
41  
42  
44  
46  
22  
35  
36  
45  
46  
48  
50  
51  
42  
50  
53  
55  
60  
65  
70  
70  
70  
48  
55  
57  
60  
62  
65  
70  
70  
70  
42  
50  
53  
55  
60  
65  
70  
70  
48  
55  
57  
60  
62  
65  
70  
70  
55  
60  
60  
60  
65  
70  
70  
70  
70  
55  
60  
60  
60  
65  
70  
70  
70  
70  
55  
60  
60  
60  
65  
70  
70  
70  
55  
60  
60  
60  
65  
70  
70  
70  
15  
20  
25  
27  
30  
35  
37  
38  
6
50  
4
50  
7
50  
8
50  
4
10  
15  
18  
20  
50  
9
50  
12  
14  
50  
50  
1500  
5000  
.010  
.015  
.020  
.027  
.050  
.075  
.1  
L
50  
15  
20  
25  
27  
30  
36  
37  
39  
5
L
50  
4
L
50  
7
L
50  
8
L
50  
4
10  
15  
18  
20  
L
50  
9
L
50  
12  
14  
L
50  
C
C
C
C
C
C
C
C
L
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
1500  
5000  
.010  
.015  
.020  
.027  
.050  
.075  
1500  
5000  
.010  
.015  
.020  
.027  
.050  
.075  
15  
20  
25  
27  
30  
35  
37  
6
4
7
8
10  
15  
18  
9
12  
L
15  
20  
25  
27  
30  
36  
37  
L
4
L
7
L
8
L
10  
15  
18  
L
9
L
12  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
continued  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
13  
Solder-In Style High Temp EMI Filters  
YS/YR Series – .165 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
Min.  
500  
KHz  
1
10  
MHz  
100  
MHz  
1000  
MHz  
10  
CKT  
C
C
C
C
C
C
L
Voltage  
MHz  
GHz  
YS1B2-152H  
YS1B2-502H  
YS1B2-103H  
YS1B2-153H  
YS1B2-203H  
YS1B2-273H  
YS2B2-152H  
YS2B2-502H  
YS2B2-103H  
YS2B2-153H  
YS2B2-203H  
YS2B2-273H  
5
5
5
5
5
5
5
5
5
5
5
5
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
1500  
5000  
.010  
.015  
.020  
.027  
1500  
5000  
.010  
.015  
.020  
.027  
4
4
5
21  
34  
35  
40  
41  
42  
22  
35  
36  
45  
46  
48  
42  
50  
53  
55  
60  
65  
48  
55  
57  
60  
62  
65  
55  
60  
60  
60  
65  
70  
55  
60  
60  
60  
65  
70  
15  
20  
25  
27  
30  
6
4
7
8
10  
L
15  
20  
25  
27  
30  
L
4
L
7
L
8
L
10  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
14  
Solder-In Style High Temp EMI Filters  
XS/XR Series – .250 Dia. – Circuits Available – C & L  
APPLICATIONS  
The XS series expands upon the YS  
offering by providing additional filtering in  
the HF through MICROWAVE frequency  
spectrum from 500 KHz up to 10 GHz.  
The larger diameter of the XS series  
means that even higher values of capaci-  
tance and a rated DC current of 10 Amps  
are available. Designed to be soldered  
into a package, bracket or bulkhead  
(and maintain hermeticity), it is ideal for  
medium to high impedance circuits  
where significant amounts of capacitance  
to ground can be tolerated. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance.  
Alternate lead lengths or special capaci-  
tance values may be ordered.  
Custom packages or bracket assemblies  
utilizing this feedthru can be furnished to  
your specifications.  
CHARACTERISTICS  
• Meets or exceeds the applicable portions  
of MIL-F-28861/14. See QPL listings.  
• Glass hermetic seal on one end with  
epoxy seal on the opposite end.  
• High temperature construction with-  
stands 300°C installation temperatures.  
• High purity gold plating provides excel-  
lent solderability or compatibility with  
thermal and ultrasonic wire bonding.  
• Features rugged monolithic discoidal  
capacitor construction.  
SPECIFICATIONS  
STANDARD CONFIGURATION  
1. Plating: Gold standard – Silver available  
.250  
.005  
.025  
.005  
2. Material:  
.032  
.002  
GLASS SEAL  
Case: Cold rolled steel  
Leads: Alloy 52 steel  
3. Operating Temperature Range:  
-55°C to +125°C  
.25  
A
.03  
4. Insulation Resistance:  
(2 PLC)  
.290  
.005  
B
REF  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
FLANGE  
END  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
GLASS  
SEAL  
END  
GLASS  
SEAL  
END  
FLANGE  
END  
C
2.0 times rated DC voltage  
XS2 (See Note 3)  
XR2  
XS1, XR1  
Class B, Class S designs:  
2.5 times rated DC voltage  
6. DC Resistance (DCR): .01 ohm,  
maximum  
Notes:  
millimeters (inches)  
1. Outline drawing shows stan-  
dard XS configuration. Also  
available with glass seal at  
the opposite end, XR reverse  
configuration.  
3. For XS2 or XR2 L-Section  
Filters inductor always posi-  
tioned at epoxy-filled end.  
0.05 (.002) 3.81 (.150)  
0.13 (.005) 6.35 (.250)  
0.64 (.025) 7.37 (.290)  
0.8 (.03) 16.51 (.650)  
0.81 (.032) 19.05 (.750)  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 10 Amps, maximum  
4. Metric equivalent dimensions  
given for information only.  
9. Maximum Installation Temperature:  
300°C  
2. MIL-F-28861/14 configuration  
A is equivalent to standard XS  
configuration. B is reverse XR  
configuration.  
(See Note 4)  
10. Supplied with 60/40 solder preform for  
easy installation  
MIL-F-28861/14 (See Note 2)  
Dash No.  
001 through 006  
007 through 012  
Config.  
A STD  
B REV  
11. Insertion Loss for the “C” and “L” circuits  
are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” becomes much more effective.  
Dimensions  
Circuit  
Diagram  
A
.005  
B
Ref.  
L
.250  
.750  
C
.150  
.650  
15  
Solder-In Style High Temp EMI Filters  
XS/XR Series – .250 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
CAP  
Min.  
500  
KHz  
1
10  
MHz  
100  
MHz  
1000  
MHz  
10  
CKT  
C
C
C
C
C
L
Voltage  
MHz  
GHz  
XS1C2-503H  
XS1C2-753H  
XS1C2-104H  
XS1C2-154H  
XS1C2-254H  
XS2C2-503H  
XS2C2-753H  
XS2C2-104H  
XS2C2-154H  
XS2C2-254H  
XS1A2-503H  
XS1A2-753H  
XS1A2-104H  
XS2A2-503H  
XS2A2-753H  
XS2A2-104H  
XS1B2-153H  
XS1B2-223H  
XS2B2-153H  
XS2B2-223H  
XS1L2-103H  
XS2L2-103H  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
50  
50  
.050  
.075  
.1  
9
12  
14  
17  
21  
9
15  
18  
20  
24  
31  
15  
18  
20  
26  
31  
15  
18  
20  
15  
18  
20  
5
35  
37  
38  
38  
40  
36  
37  
39  
40  
40  
35  
37  
38  
36  
37  
39  
25  
26  
25  
27  
20  
20  
44  
46  
48  
50  
55  
50  
51  
52  
53  
56  
44  
46  
48  
50  
51  
52  
40  
40  
45  
45  
35  
38  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
55  
58  
60  
65  
52  
55  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
60  
70  
60  
70  
60  
60  
50  
50  
.15  
50  
.25  
50  
.050  
.075  
.1  
L
50  
12  
14  
17  
21  
9
L
50  
L
50  
.15  
L
50  
.25  
C
C
C
L
100  
100  
100  
100  
100  
100  
200  
200  
200  
200  
300  
300  
.050  
.075  
.1  
12  
14  
9
.050  
.075  
.1  
L
12  
14  
L
C
C
L
.015  
.022  
.015  
.022  
.010  
.010  
2
8
5
L
2
8
C
L
3
3
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
16  
Solder-In Style High Temp EMI Filters  
WS/WR Series – .400 Dia. – Circuits Available – C & L  
APPLICATIONS  
The WS series expands greatly upon the  
XS and YS offerings by providing  
increased filtering in the HF through  
MICROWAVE frequency spectrum from  
500 KHz up to 10 GHz. The larger diam-  
eter of the WS series means even higher  
values of capacitance, a rated DC current  
of 15 Amps, plus 125 VAC/400 Hz rat-  
ings are available. Designed to be sol-  
dered into a package, bracket or bulk-  
head (and maintain hermeticity), it is ideal  
for low to medium impedance circuits  
where large amounts of capacitance to  
ground can be tolerated. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance.  
Alternate lead lengths or special capaci-  
tance values may be ordered.  
Custom packages or bracket assemblies  
utilizing this feedthru can be furnished to  
your specifications.  
CHARACTERISTICS  
• Meets or exceeds the applicable portions  
of MIL-F-28861/13. See QPL listings.  
• Glass hermetic seal on one end with  
epoxy seal on the opposite end.  
• High temperature construction with-  
stands 300°C installation temperatures.  
• High purity gold plating provides excel-  
lent solderability or compatibility with  
thermal and ultrasonic wire bonding.  
• Features rugged monolithic discoidal  
capacitor construction.  
SPECIFICATIONS  
1. Plating: Gold standard – Silver available  
STANDARD CONFIGURATION  
2. Material:  
.400  
.005  
.025  
.005  
.050  
.002  
Case: Cold rolled steel  
Leads: Alloy 52 steel  
GLASS SEAL  
3. Operating Temperature Range:  
-55°C to +125°C  
.25  
4. Insulation Resistance:  
A
.03  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
(2 PLC)  
.450  
.005  
B
REF  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
GLASS  
SEAL  
END  
FLANGE  
END  
2.0 times rated DC voltage  
C
Class B, Class S designs:  
2.5 times rated DC voltage  
WS2, WR2 (See Note 3)  
WS1, WR1  
Notes:  
millimeters (inches)  
6. DC Resistance (DCR): .01 ohm,  
maximum  
1. Outline drawing shows stan-  
dard WS configuration. Also  
available with glass seal at  
the opposite end, WR reverse  
configuration.  
3. For WS2 or WR2 L-Section  
Filters inductor always posi-  
tioned at epoxy-filled end.  
0.05 (.002) 6.35 (.250)  
0.13 (.005) 7.62 (.300)  
0.64 (.025) 10.16 (.400)  
0.8 (.03) 11.43 (.450)  
1.27 (.050) 17.78 (.700)  
5.08 (.200) 20.32 (.800)  
(See Note 4)  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 15 Amps, maximum  
4. Metric equivalent dimensions  
given for information only.  
9. Maximum Installation Temperature:  
300°C  
2. MIL-F-28861/13 configuration  
“A” is equivalent to standard  
WS configuration. “B” is  
reverse WR configuration.  
10. Supplied with 60/40 solder preform for  
easy installation  
MIL-F-28861/13 (See Note 2)  
Dash No.  
Config.  
Dimensions  
001 through 008  
009 through 016  
A
B
11. Insertion Loss for the “C” and “L” circuits  
are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” becomes much more effective.  
Circuit  
A
B
Diagram  
.005  
Ref.  
L
.300  
.800  
C
.200  
.700  
17  
Solder-In Style High Temp EMI Filters  
WS/WR Series – .400 Dia. – Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
1
AVX  
P/N  
Current  
AMP  
DC  
Voltage  
CAP  
Min.  
500  
KHz  
1
10  
MHz  
100  
MHz  
1000  
MHz  
10  
GHz  
Circuit  
MHz  
WS1C2-154H  
WS1C2-504H  
WS1C2-754H  
WS1C2-125H  
WS2C2-154H  
WS2C2-504H  
WS2C2-754H  
WS2C2-125H  
WS1N2-704H  
WS2N2-704H  
WS1A2-154H  
WS1A2-504H  
WS1A2-754H  
WS1A2-105H  
WS2A2-154H  
WS2A2-504H  
WS2A2-754H  
WS2A2-105H  
WS1L2-503H  
WS1L2-154H  
WS2L2-503H  
WS2L2-154H  
WS1E2-103H  
WS1E2-503H  
WS2E2-103H  
WS2E2-503H  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
C
C
C
C
L
50  
50  
.15  
.50  
17  
26  
31  
33  
17  
26  
31  
33  
30  
30  
17  
26  
31  
31  
17  
26  
31  
31  
7
24  
34  
37  
37  
26  
36  
40  
38  
36  
38  
24  
34  
37  
40  
26  
34  
40  
41  
15  
24  
15  
26  
4
38  
42  
43  
52  
40  
44  
44  
53  
41  
42  
38  
42  
43  
48  
40  
44  
44  
50  
34  
38  
34  
40  
20  
34  
20  
34  
50  
58  
62  
70  
53  
60  
64  
70  
60  
62  
50  
58  
62  
64  
53  
60  
64  
65  
42  
50  
44  
53  
34  
44  
35  
44  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
50  
70  
55  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
60  
70  
60  
70  
50  
.75  
50  
1.2  
50  
.15  
L
50  
.50  
L
50  
.75  
L
50  
1.2  
C
L
70  
.70  
70  
.70  
C
C
C
C
L
100  
100  
100  
100  
100  
100  
100  
100  
200*  
200*  
200*  
200*  
400  
400  
400  
400  
.15  
.50  
.75  
1.0  
.15  
L
.50  
L
.75  
L
1.0  
C
C
L
.050  
.15  
17  
7
.050  
.15  
L
17  
C
C
L
.010  
.050  
.010  
.050  
7
15  
4
L
7
15  
* Rated 200 VDC or 125 VAC/400 Hz.  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal  
opposite the flange end. All parts are capable of the reverse configuration with the glass  
seal at the flange end. All parameters are otherwise identical. The part number changes  
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).  
For special multi-unit assemblies see Multi-Component Filter Brackets section.  
18  
Bolt Style EMI Filters  
SA Series – 4-40 Thread - Epoxy Sealed –  
Circuits Available – C & L  
APPLICATIONS  
The SA series provides effective filtering  
in the RF and MICROWAVE frequency  
spectrums from 10 MHz through 26 GHz.  
Designed for mounting in a tapped  
bulkhead or with the standard nut and  
lockwasher provided, it is ideal for high  
impedance circuits where large capaci-  
tance values are not practical. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance. The  
SA series comes with a standard .020  
diameter beryllium copper lead. Alternate  
lead lengths, diameters of .016 or .026  
and alternate materials in steel or half-  
hard copper are available.  
CHARACTERISTICS  
• Meets or exceeds the applicable portions  
of MIL-F-28861/6. See QPL listings.  
• Features rugged monolithic discoidal  
capacitor construction.  
• Smallest screwbody filter available.  
• Epoxy seal on both ends.  
SPECIFICATIONS  
STANDARD CONFIGURATION  
1. Plating: Silver standard – Electro-tin or  
gold available  
A
.154  
.159  
.030  
MAX.  
.112-40 UNC-2A  
(4-40)  
2. Material:  
Case: Cold rolled steel  
.020 .002  
(Std. - See Note 1)  
Leads: Beryllium copper (steel or half/hard  
copper leads available)  
3. Operating Temperature Range:  
-55°C to +125°C  
.030  
MAX.  
A = .120 .005  
(See Note 2)  
.220  
.010  
4. Insulation Resistance:  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
.240  
.020  
.360  
.020  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
THRD  
END  
L2  
C
2.0 times rated DC voltage  
SA1  
SA2 (See Note 3)  
Class B, Class S designs:  
2.5 times rated DC voltage  
6. DC Resistance (DCR): .02 ohm,  
maximum  
Notes:  
millimeters (inches)  
0.05 (.002) 3.05 (.120)  
0.13 (.005) 3.68 (.145)  
0.25 (.010) 3.91 (.154)  
0.41 (.016) 4.04 (.159)  
0.51 (.020) 5.59 (.220)  
0.66 (.026) 6.10 (.240)  
0.76 (.030) 9.14 (.360)  
1. Standard catalog designs  
have .020" dia. lead. MIL-F-  
28861/6 calls for .026" dia.  
.026" dia. will not be supplied  
unless specified.  
3. All SA2 L-Section Filters have  
inductor (bead) at threaded  
end.  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 5 Amps, maximum  
4. Metric equivalent dimensions  
given for information only.  
9. Recommended Mounting Torque:  
32 oz-in. 4 oz-in.  
2. “A” dimension of .120 .005  
will satisfy M28861/6-003  
requirement for .145  
All “SA” series are supplied  
A = .120 .005.  
.030.  
10. Supplied with mounting nut and lock-  
washer - See Filter Design Guide Screw  
and Locking Washer Table  
2.84 (.112)  
(See Note 4)  
11. Insertion Loss for the “C” and “L” sections  
are equivalent due to the saturation  
characteristic of the ferrite bead element  
at rated current. At lower currents the “L”  
becomes much more effective.  
19  
Bolt Style EMI Filters  
SA Series – 4-40 Thread - Epoxy Sealed –  
Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
1
10  
100  
200  
1
10  
1
CKT  
C
CAP  
Voltage  
DCR  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
.02  
MHz  
MHz  
MHz  
MHz  
GHz  
GHz  
SA1C1-102  
SA1C1-502  
SA1C1-103  
SA1C1-273  
SA1C1-503  
SA2C1-102  
SA2C1-502  
SA2C1-103  
SA2C1-273  
SA2C1-503  
SA1A1-102  
SA1A1-502  
SA1A1-103  
SA1A1-273  
SA1A1-453  
SA2A1-102  
SA2A1-502  
SA2A1-103  
SA2A1-273  
SA2A1-453  
SA1B1-102  
SA1B1-502  
SA1B1-103  
SA2B1-102  
SA2B1-502  
SA2B1-103  
1000  
5000  
.01  
50  
50  
4
20  
34  
35  
39  
42  
20  
35  
35  
50  
45  
20  
35  
35  
39  
42  
20  
35  
35  
50  
45  
20  
34  
35  
20  
35  
35  
25  
41  
42  
43  
45  
27  
41  
44  
45  
45  
25  
41  
42  
43  
45  
27  
41  
44  
45  
45  
25  
41  
42  
27  
41  
44  
25  
42  
50  
65  
70  
30  
45  
50  
65  
70  
25  
42  
50  
65  
70  
30  
45  
50  
70  
70  
25  
42  
50  
30  
45  
50  
55  
55  
70  
70  
70  
60  
60  
70  
70  
70  
55  
55  
70  
70  
70  
60  
60  
70  
70  
70  
55  
55  
70  
60  
60  
70  
C
15  
21  
30  
35  
4
C
50  
4
C
.027  
.05  
50  
10  
15  
C
50  
L2  
L2  
L2  
L2  
L2  
C
1000  
5000  
.01  
50  
50  
15  
21  
30  
37  
4
50  
4
.027  
.05  
50  
10  
15  
50  
1000  
5000  
.01  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
200  
200  
200  
200  
200  
200  
C
15  
21  
30  
35  
4
C
4
C
.027  
.045  
1000  
5000  
.01  
10  
14  
C
L2  
L2  
L2  
L2  
L2  
C
15  
21  
30  
37  
4
4
.027  
.045  
1000  
5000  
.01  
10  
14  
C
15  
21  
4
C
4
L2  
L2  
L2  
1000  
5000  
.01  
15  
21  
4
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
20  
Bolt Style EMI Filters  
SB Series – 8-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
APPLICATIONS  
The SB series provides improved filtering  
in the HF through MICROWAVE frequency  
spectrums from 1 MHz through 10 GHz.  
Also designed for mounting in a tapped  
bulkhead or with the standard nut and  
lockwasher provided, it is ideal for medium  
to high impedance circuits where large  
capacitance values are not practical.  
In the “L” and “π” section versions an  
internal ferrite bead element provides  
both inductance and series resistance  
(lossy characteristic) which improves the  
insertion loss rolloff to 40 dB and 60 dB  
per decade respectively.  
CHARACTERISTICS  
• Designed to meet or exceed the applica-  
ble portions of MIL-F-28861/7. See QPL  
listings.  
• Features rugged monolithic discoidal  
capacitor construction.  
• Epoxy seal on both ends.  
π design offers steeper insertion loss  
rolloff.  
SPECIFICATIONS  
STANDARD CONFIGURATION  
1. Plating: Silver standard – Electro-tin or  
gold available  
.093  
.010  
.187  
.010  
2. Material:  
.164-32 UNC-2A  
(8-32)  
.040  
MAX.  
.045  
.005  
Case: Cold rolled steel  
Leads: Half/hard copper  
.032 .002  
(Std. - See Note 2)  
3. Operating Temperature Range:  
-55°C to +125°C  
.050  
.005  
4. Insulation Resistance:  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
.020  
.216  
.005  
.005  
(Std. - See Note 1)  
.312  
.031  
.890  
.013  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
THRD  
END  
L2  
2.0 times rated DC voltage  
C
Pi  
Class B, Class S designs:  
2.5 times rated DC voltage  
SB2 (See Note 3)  
SB3  
SB1  
6. DC Resistance (DCR): .01 ohm,  
maximum  
Notes:  
millimeters (inches)  
0.05 (.002) 1.14 (.045)  
0.13 (.005) 1.27 (.050)  
0.18 (.007) 1.85 (.073)  
0.25 (.010) 2.36 (.093)  
0.33 (.013) 4.17 (.164)  
0.38 (.015) 4.75 (.187)  
0.51 (.020) 5.49 (.216)  
0.64 (.025) 6.35 (.250)  
0.76 (.030) 7.11 (.280)  
0.79 (.031) 7.92 (.312)  
0.81 (.032) 22.61 (.890)  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 10 Amps, maximum  
1. Nailhead standard, straight  
lead available.  
3. All SB2 L-Section Filters have  
inductor (bead) at threaded  
end.  
2. Lead diameters other than  
.032" available.  
9. Recommended Mounting Torque:  
64 oz-in. 4 oz-in.  
4. Metric equivalent dimensions  
given for information only.  
10. Supplied with mounting nut and lock-  
washer - See Filter Design Guide Screw  
and Locking Washer Table  
11. Insertion Loss for the “C”, “L” and “π” cir-  
cuits are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
1.02 (.040)  
“L” and “π” become much more effective. (See Note 4)  
21  
Bolt Style EMI Filters  
SB Series – 8-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
1
10  
100  
200  
1
10  
1
CKT  
C
CAP  
Voltage  
DCR  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
MHz  
MHz  
MHz  
MHz  
GHz  
GHz  
SB1C1-102  
SB1C1-502  
SB1C1-103  
SB1C1-273  
SB1C1-503  
SB2C1-273  
SB2C1-503  
SB3C1-323  
SB1A1-102  
SB1A1-502  
SB1A1-103  
SB1A1-273  
SB1A1-503  
SB2A1-103  
SB2A1-273  
SB3A1-152  
SB3A1-123  
SB3A1-153  
SB1B1-102  
SB1B1-502  
SB2B1-102  
SB2B1-502  
SB3B1-202  
1000  
5000  
.01  
50  
50  
4
20  
34  
35  
39  
42  
50  
54  
60  
20  
34  
35  
39  
42  
35  
50  
20  
60  
37  
20  
34  
20  
35  
42  
25  
41  
40  
45  
50  
54  
60  
70  
25  
41  
40  
45  
50  
38  
54  
45  
70  
43  
25  
41  
27  
41  
58  
40  
50  
55  
65  
70  
65  
70  
70  
40  
50  
55  
65  
70  
65  
70  
70  
70  
70  
40  
50  
45  
55  
70  
50  
55  
60  
70  
70  
70  
70  
70  
50  
55  
60  
70  
70  
70  
70  
70  
70  
70  
50  
55  
70  
70  
70  
C
15  
21  
30  
35  
30  
36  
30  
4
C
50  
4
C
.027  
.05  
50  
10  
15  
10  
15  
12  
C
50  
L2  
L2  
π
.027  
.05  
50  
50  
.032  
1000  
5000  
.01  
50  
C
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
200  
200  
200  
200  
200  
C
15  
21  
30  
35  
21  
30  
8
C
4
C
.027  
.05  
10  
15  
4
C
L2  
L2  
π
.01  
.027  
1500  
.012  
.015  
1000  
5000  
1000  
5000  
2000  
10  
π
12  
17  
4
π
C
C
15  
4
L2  
L2  
π
15  
8
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
22  
Bolt Style EMI Filters  
SH Series – 10-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
APPLICATIONS  
The SH series provides intermediate  
filtering in the RF through MICROWAVE  
frequency spectrums from 100 KHz  
through 10 GHz. The larger hex size  
means that much higher values of capac-  
itance are available in the feedthru style  
circuits and that a 125 VAC/400 Hz rating  
is available in certain values. Also  
designed for mounting in a tapped bulk-  
head or with the standard nut and lock-  
washer provided, it is optimum in medium  
to low impedance circuits where significant  
amounts of capacitance to ground can  
be tolerated. In the “L” and “π” section  
versions an internal ferrite bead element  
provides both inductance and series  
resistance (lossy characteristic) which  
improves the insertion loss rolloff to 40 dB  
and 60 dB per decade respectively.  
Alternate lead diameters or lengths are  
available, both with and without a nailhead.  
CHARACTERISTICS  
• Equivalent to SB series π circuits and to  
π design offers steeper insertion loss  
SP series feedthru or “L” circuits.  
rolloff.  
• Conservatively rated for 125 VAC/400  
Hz in certain values.  
• Features rugged monolithic discoidal  
capacitor construction.  
• Epoxy seal on both ends.  
SPECIFICATIONS  
1. Plating: Silver standard – Electro-tin or  
STANDARD CONFIGURATION  
gold available  
.140  
.015  
2. Material:  
.228  
.004  
Case: Cold rolled steel standard,  
brass available  
.190-32 UNF-2A  
(10-32)  
.035  
MAX.  
.045  
.005  
.032  
Leads: Half/hard copper  
.002  
3. Operating Temperature Range:  
-55°C to +125°C  
4. Insulation Resistance:  
.020  
.005  
.234  
.015  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
.328  
.031  
.421  
.031  
(Std. - See Note 1)  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
CIRCUIT DIAGRAMS  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
THRD  
END  
L2  
2.0 times rated DC voltage  
C
Pi  
Class B, Class S designs:  
2.5 times rated DC voltage  
SH2 (See Note 2)  
SH3  
SH1  
Notes:  
millimeters (inches)  
6. DC Resistance (DCR): .01 ohm,  
maximum  
0.05 (.002) 3.56 (.140)  
0.10 (.004) 4.83 (.190)  
0.13 (.005) 5.79 (.228)  
0.38 (.015) 5.94 (.234)  
0.51 (.020) 8.33 (.328)  
0.79 (.031) 10.69 (.421)  
1. Nailhead standard, straight  
lead available.  
3. Metric equivalent dimensions  
given for information only.  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 10 Amps, maximum  
2. All SH2 L-Section Filters  
have inductor (bead) at  
threaded end.  
9. Recommended Mounting Torque:  
64 oz-in. 4 oz-in.  
0.81 (.032)  
10. Supplied with mounting nut and lock-  
washer - See Filter Design Guide Screw (See Note 3)  
and Locking Washer Table  
11. Insertion Loss for the “C”, “L” and “π” cir-  
cuits are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” and “π” become much more effective.  
23  
Bolt Style EMI Filters  
SH Series – 10-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
1
10  
100  
200  
1
10  
1
CKT  
C
CAP  
.12  
.2  
Voltage  
DCR  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
MHz  
MHz  
MHz  
MHz  
GHz  
GHz  
SH1C1-124  
SH1C1-204  
SH2C1-124  
SH2C1-204  
SH3C1-303  
SH1A1-503  
SH1A1-104  
SH2A1-503  
SH2A1-104  
SH3A1-123  
SH1L1-102  
SH1L1-502  
SH1L1-103  
SH1L1-253  
SH2L1-102  
SH2L1-502  
SH2L1-103  
SH3B1-202  
50  
50  
21  
28  
21  
28  
10  
15  
20  
15  
20  
38  
39  
38  
39  
28  
35  
38  
36  
39  
12  
4
49  
52  
52  
54  
58  
42  
48  
50  
52  
60  
20  
34  
35  
36  
20  
35  
36  
42  
60  
60  
70  
70  
70  
50  
53  
60  
65  
70  
25  
41  
38  
44  
27  
41  
40  
58  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
40  
45  
60  
64  
45  
55  
60  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
50  
55  
65  
70  
55  
65  
65  
70  
C
L2  
L2  
π
.12  
.2  
50  
50  
.03  
.05  
.1  
50  
C
100  
100  
100  
100  
100  
200*  
200*  
200*  
200*  
200*  
200*  
200*  
200  
C
L2  
L2  
π
.05  
.1  
.012  
C
1000  
5000  
.01  
C
15  
21  
28  
4
C
4
C
.025  
1000  
5000  
.01  
8
L2  
L2  
L2  
π
15  
21  
8
4
2000  
* Rated 200 VDC or 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
24  
Bolt Style EMI Filters  
SP Series – 12-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
APPLICATIONS  
The SP series provides increased filtering  
in the HF through MICROWAVE frequen-  
cy spectrums from 100 KHz through 10  
GHz. The larger hex size means that  
much higher values of capacitance are  
available and that a 125 VAC/400 Hz rat-  
ing is available in certain values. Also  
designed for mounting in a tapped bulk-  
head or with the standard nut and lock-  
washer provided, it is optimum in medium  
to low impedance circuits where significant  
amounts of capacitance to ground can  
be tolerated. In the “L” and “π” section  
versions an internal ferrite bead element  
provides both inductance and series  
resistance (lossy characteristic) which  
improves the insertion loss rolloff to 40 dB  
and 60 dB per decade respectively.  
Alternate lead diameters or lengths are  
available both with and without a nailhead.  
CHARACTERISTICS  
• Designed to meet or exceed the applica-  
ble portions of MIL-F-28861/9. See QPL  
listing.  
π design offers steeper insertion loss  
rolloff.  
• Features rugged monolithic discoidal  
capacitor construction.  
• Conservatively rated for 125 VAC/400  
Hz in certain values.  
• Epoxy seal on both ends.  
STANDARD CONFIGURATION  
SPECIFICATIONS  
.157  
.250  
.010  
1. Plating: Silver standard –  
.216 UNEF-2A  
.040  
Electro-tin or gold available  
(12-32)  
MAX.  
.045  
2. Material:  
.032 .002  
(Std. - See Note 2)  
Case: Cold rolled steel standard, brass  
available  
Leads: Half/hard copper  
.250  
.311  
3. Operating Temperature Range:  
-55°C to +125°C  
.020  
.005  
.343  
.020  
.921  
.020  
4. Insulation Resistance:  
(Std. - See Note 1)  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
min., whichever is less  
millimeters (inches)  
ALTERNATE CONFIGURATION (SC SERIES)  
0.05 (.002) 2.36 (.093)  
0.13 (.005) 3.99 (.157)  
0.18 (.007) 4.75 (.187)  
0.25 (.010) 5.49 (.216)  
0.51 (.020) 6.12 (.241)  
0.58 (.023) 6.35 (.250)  
0.79 (.031) 7.90 (.311)  
0.81 (.032) 8.71 (.343)  
1.02 (.040) 9.45 (.372)  
1.14 (.045) 9.73 (.383)  
1.60 (.063) 23.39 (.921)  
(See Note 5)  
12-32 UNEF-2A  
.187  
.005  
.093  
MAX.  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
min., whichever is less  
20 GAUGE  
(.032)  
5. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
.032  
.005  
.250  
.005  
2.0 times rated DC voltage  
.250 DIA.  
.005  
.311  
.005  
.157  
.005  
Class B, Class S designs:  
2.5 times rated DC voltage  
.343  
.020  
.921  
.020  
1.85 (.073)  
6. DC Resistance (DCR): .01 ohm,  
maximum  
(See Note 4)  
Notes:  
7. Dissipation Factor (DF): 3% maximum  
8. Rated DC Current: 10 Amps, maximum  
1. Nailhead standard, straight lead available.  
2. Lead diameters other than .032" available.  
4. Metric equivalent dimensions given for infor-  
mation only.  
5. Small-hex version may be specified for selected  
capacitance/voltage ratings. Contact AVX  
Filters Engineering for availability.  
3. SP2 L-Section Filters have inductor (bead) at  
threaded end.  
9. Recommended Mounting Torque:  
64 oz-in. 4 oz-in.  
10. Supplied with mounting nut and lock-  
washer - See Filter Design Guide Screw  
and Locking Washer Table  
CIRCUIT DIAGRAMS  
THRD  
END  
11. Insertion Loss for the “C”, “L” and “π” cir-  
cuits are equivalent due to the saturation  
characteristic of the ferrite bead element  
at full rated current. At lower currents the  
“L” and “π” become much more effective.  
L2  
C
Pi  
SP1  
SP2 (See Note 3)  
SP3  
25  
Bolt Style EMI Filters  
SP Series – 12-32 Thread - Epoxy Sealed –  
Circuits Available – C, L, π  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
1
10  
100  
200  
1
10  
1
CKT  
C
CAP  
.20  
Voltage  
DCR  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
MHz  
MHz  
MHz  
MHz  
GHz  
GHz  
SP1C1-204  
SP2C1-204  
SP3C1-124  
SP1A1-503  
SP1A1-104  
SP2A1-503  
SP3A1-753  
SP1L1-102  
SP1L1-502  
SP1L1-103  
SP1L1-253  
SP2L1-102  
SP2L1-502  
SP2L1-103  
SP3B1-152  
SP3B1-123  
50  
26  
26  
20  
15  
20  
15  
18  
39  
38  
38  
35  
38  
36  
38  
4
52  
65  
70  
38  
48  
54  
70  
20  
34  
35  
36  
20  
35  
35  
20  
60  
60  
70  
70  
50  
53  
60  
70  
25  
41  
40  
44  
27  
41  
38  
45  
70  
70  
70  
70  
70  
70  
70  
70  
40  
50  
55  
64  
45  
55  
65  
70  
70  
70  
70  
70  
70  
70  
70  
70  
50  
55  
60  
70  
70  
70  
70  
70  
70  
L2  
π
.20  
50  
.12  
50  
C
.05  
100  
100  
100  
100  
200*  
200*  
200*  
200*  
200*  
200*  
200*  
200  
200  
C
.10  
L2  
π
.05  
.075  
C
1000  
5000  
.01  
C
15  
21  
28  
4
C
4
C
.025  
1000  
5000  
.01  
8
L2  
L2  
L2  
π
15  
21  
8
4
1500  
.012  
π
12  
* Rated 200 VDC or 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
26  
Bolt Style EMI Filters  
SN Series – 12-32 Thread - Hermetically Sealed –  
Circuits Available – C, L, π  
APPLICATIONS  
The SN series offers effective filtering  
from 1 MHz to 10 GHz. Glass sealed on  
both ends for hermeticity, this series is  
impervious to high moisture, solvents, or  
other severe environmental conditions  
commonly encountered in military applica-  
tions. It is designed for bulkhead mounting  
with nut and lockwasher supplied.  
no-load to full rated load. They are most  
effective when placed in high impedance  
circuits. The π-section designs exhibit  
sharper roll-off in filter characteristic and  
perform effectively when used in medium  
to low impedance circuits.  
Alternate lead configurations or special  
capacitance values and voltage ratings  
may be ordered.  
The feedthru designs yield constant filter-  
ing as current level is increased from  
CHARACTERISTICS  
• The hermetic bolt-style design was  
developed to meet or exceed the  
applicable portions of MIL-F-28861/10.  
The filter is assembled with a glass her-  
metic seal on both ends. The rugged  
monolithic capacitor element is a low  
inductance design that yields superior  
bypass performance. The π-section  
design contains two capacitor elements  
together with a ferrite bead inductor.  
• Certain feedthru designs are rated for  
115 VAC/400 Hz applications. The 200  
VDC π-section design is rated for DC  
applications only.  
SPECIFICATIONS  
1. Plating: Silver standard – Electro-tin or gold  
available  
2. Material:  
STANDARD CONFIGURATION  
Case: Cold rolled steel standard, brass available  
Leads: Copper nailhead standard. Only available  
in .032" diameter. Beryllium copper lead  
available. Straight lead available.  
3. Operating Temperature Range:  
-55°C to +125°C  
.220  
MAX.  
.250  
.010  
.216-32 UNEF-2A  
(12-32)  
.040  
MAX.  
.032 .002  
4. Electrical Characteristics:  
A. Capacitance: Guaranteed Minimum Value  
(GMV) as listed  
B. Insulation Resistance:  
.250  
.005  
.311  
.005  
At 25°C: 1,000 megohm-microfarad  
min., or 100,000 megohms  
.343  
.020  
.921  
.020  
min., whichever is less  
At 125°C: 100 megohm-microfarad  
min., or 10,000 megohms  
CIRCUIT DIAGRAMS  
min., whichever is less  
C. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
2.0 times rated voltage  
Class B, Class S designs:  
L2  
C
Pi  
2.5 times rated voltage  
SN2  
SN1  
SN3  
D. DC Resistance (DCR): .01 ohm, maximum  
E. Voltage Drop: 0.1 volt, maximum  
F. Dissipation Factor (DF): 3% maximum  
G. Rated Current: 10 Amps, maximum  
5. Seal: In accordance with MIL-F-28861.  
Leakage rate for Class S designs shall not  
exceed 1 x 10-7 atm cc/sec.  
6. Marking: Standard (AVX symbol, AVX part  
number)  
7. Installation: Filter is supplied with mounting nut  
and lockwasher. The recommended mounting  
Notes:  
millimeters (inches)  
0.05 (.002) 1.85 (.073)  
0.13 (.005) 3.99 (.157)  
0.18 (.007) 5.49 (.216)  
0.25 (.010) 6.12 (.241)  
0.51 (.020) 6.35 (.250)  
0.58 (.023) 7.90 (.311)  
0.79 (.031) 8.71 (.343)  
0.81 (.032) 9.45 (.372)  
1.02 (.040) 9.73 (.383)  
1.14 (.045) 23.39 (.921)  
1. Metric equivalent dimensions  
given for information only.  
torque is 64 oz-in.  
4 oz-in. Refer to the  
“Installation and Handling” section for additional  
information.  
1.60 (.063)  
(See Note 1)  
27  
Bolt Style EMI Filters  
SN Series – 12-32 Thread - Hermetically Sealed –  
Circuits Available – C, L, π  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
1
10  
100  
200  
1
10  
1
CKT  
C
CAP  
.20  
Voltage  
50  
DCR  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
MHz  
MHz  
MHz  
MHz  
GHz  
GHz  
SN1C1-204  
SN2C1-204  
SN3C1-124  
SN1A1-503  
SN1A1-104  
SN2A1-503  
SN3A1-753  
SN1L1-102  
SN1L1-502  
SN1L1-103  
SN1L1-253  
SN2L1-102  
SN2L1-502  
SN2L1-103  
SN3B1-152  
SN3B1-123  
26  
26  
20  
15  
20  
15  
18  
39  
38  
38  
35  
38  
36  
38  
4
52  
65  
70  
42  
48  
54  
70  
20  
34  
35  
36  
20  
35  
35  
20  
60  
60  
70  
70  
50  
53  
60  
70  
25  
41  
40  
44  
27  
41  
38  
45  
70  
70  
70  
70  
70  
70  
70  
70  
40  
50  
55  
64  
45  
55  
65  
70  
70  
70  
70  
70  
70  
70  
70  
70  
50  
55  
60  
70  
70  
70  
70  
70  
70  
L2  
π
.20  
50  
.12  
50  
C
.05  
100  
100  
100  
100  
200*  
200*  
200*  
200*  
200*  
200*  
200*  
200  
200  
C
.10  
L2  
π
.05  
.075  
C
1000  
5000  
.01  
C
15  
21  
28  
4
C
4
C
.025  
1000  
5000  
.01  
8
L2  
L2  
L2  
π
15  
21  
8
4
1500  
.012  
π
12  
* Rated 200 VDC or 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
28  
Cylindrical Style EMI Filters  
BL Series – .375 Dia. – Button Epoxy Sealed –  
Circuits Available – C & L  
APPLICATIONS  
The BL series offers effective filtering from  
30 KHz up through 1 GHz. It offers epoxy  
resin seals on both ends in order to  
optimize volumetric efficiency and reduce  
cost. Where severe moisture environments  
exist the slightly larger companion BK  
series is recommended as it incorporates  
a glass to metal hermetic seal at both  
ends. The BL series is designed for bulk-  
head mounting in a slotted hole with nut  
and lockwasher supplied. This series is  
ideal for low to medium impedance  
circuits where large amounts of capaci-  
tance to ground can be tolerated. In the  
“L” section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss at lower  
current ratings and provides superior  
transient performance.  
Alternate lead configurations or special  
capacitance values may be ordered.  
Custom packages or filter arrays utilizing  
the BL series can be furnished.  
CHARACTERISTICS  
• Internal ferrite bead provides inductance  
for the L-section version.  
• High DC current rating: 15 Amps.  
SPECIFICATIONS  
1. Case/Terminal Plating:  
STANDARD CONFIGURATION  
Electro-tin standard – Gold or silver available  
2. Material:  
250-28 UNF-2A (1/4-28)  
.375  
.010  
.050  
Case: Brass Standard – Steel available  
End Seal: Epoxy  
Terminals: Copper nailhead standard  
3. Operating Temperature Range:  
-55°C to +125°C  
.040  
.010  
.060  
REF.  
4. Electrical Characteristics:  
A. Rated Voltage: See chart  
B. Insulation Resistance:  
.030  
.010  
.200  
.010  
.150  
.032  
*
.010  
At 25°C: 1,000 megohm-microfarad min.,  
or 50,000 megohms min.,  
whichever is less, at the rated  
DC voltage  
At 125°C: 100 megohm-microfarad  
min., or 5,000 megohms  
.150  
MAX.  
.280  
.032  
* = A FOR .187 .010 THREAD  
B FOR .312 THREAD  
(See Note 1)  
min., whichever is less  
CIRCUIT DIAGRAMS  
C. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
THRD  
END  
2.0 times rated DC voltage  
Class B designs:  
L2  
C
2.5 times rated DC voltage  
D. Capacitance: Values listed in chart are  
“guaranteed minimum value” (GMV)  
5. Marking:  
BL1  
BL2 (See Note 1)  
Notes:  
millimeters (inches)  
Standard Marking: AVX, AVX part number,  
lot code  
BL2 only: Letter “L” denotes ferrite bead  
inductor at threaded end  
1. All BL2 L-Section Filters have  
inductor (bead) at threaded  
end.  
2. Metric equivalent dimensions  
given for information only.  
.25 (.010) 2.54 (.100)  
.76 (.030) 3.81 (.150)  
.81 (.032) 4.57 (.180)  
1.02 (.040) 5.08 (.200)  
1.52 (.060) 9.53 (.375)  
See Reliability Codes section for definition of  
Reliability Level marking. See How to Order  
section for part number construction.  
6. Installation:  
(See Note 2)  
A. Mounting Torque:  
44 oz-in. 4 oz-in.  
B. Refer to “Installation, Handling, Hardware  
Options” section of the catalog.  
29  
Cylindrical Style EMI Filters  
BL Series – .375 Dia. – Button Epoxy Sealed –  
Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
30  
150  
300  
1
10  
100  
1
1
CKT  
C
CAP  
.75  
1.0  
1.2  
1.4  
.75  
1.0  
1.2  
1.4  
.50  
.75  
1.0  
1.2  
.50  
.75  
1.0  
1.2  
.01  
.075  
.15  
.01  
.075  
.15  
Voltage  
KHz  
KHz  
KHz  
MHz  
MHz  
MHz  
GHz  
BL1CA-754  
BL1CA-105  
BL1CA-125  
BL1CA-145  
BL2CA-754  
BL2CA-105  
BL2CA-125  
BL2CA-145  
BL1AA-504  
BL1AA-754  
BL1AA-105  
BL1AA-125  
BL2AA-504  
BL2AA-754  
BL2AA-105  
BL2AA-125  
BL1BA-103  
BL1LA-753  
BL1LA-154  
BL2BA-103  
BL2LA-753  
BL2LA-154  
50  
50  
11  
12  
15  
15  
11  
12  
15  
15  
6
24  
24  
28  
28  
24  
24  
28  
28  
19  
24  
24  
28  
19  
24  
24  
28  
30  
30  
33  
33  
30  
30  
33  
33  
25  
30  
30  
33  
25  
30  
30  
33  
40  
40  
40  
40  
40  
40  
40  
40  
36  
40  
40  
40  
36  
40  
40  
40  
2
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
20  
37  
40  
20  
37  
40  
64  
65  
70  
70  
64  
65  
70  
70  
60  
64  
65  
70  
60  
64  
65  
70  
40  
46  
52  
40  
51  
52  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
55  
70  
70  
55  
70  
70  
C
C
50  
C
50  
L2  
L2  
L2  
L2  
C
50  
50  
50  
50  
100  
100  
100  
100  
100  
100  
100  
100  
200  
200*  
200*  
200  
200*  
200*  
C
11  
12  
15  
6
C
C
L2  
L2  
L2  
L2  
C
11  
12  
15  
C
7
18  
26  
2
C
10  
16  
L2  
L2  
L2  
7
18  
26  
10  
16  
* Also rated 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
30  
Cylindrical Style EMI Filters  
BK Series – .375/.410 Dia. – Button Hermetically Sealed  
Circuits Available – C & L  
APPLICATIONS  
The BK series offers effective filtering  
from 500 KHz to 10 GHz. Glass sealed  
for hermeticity, this low profile series is  
impervious to high moisture, solvents, or  
other severe environmental conditions  
commonly encountered in military appli-  
cations. It is designed for bulkhead  
mounting in a slotted hole with nut and  
lockwasher supplied. This series is ideal  
for low to medium impedance circuits  
where large amounts of capacitance to  
ground can be tolerated. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance.  
Alternate lead configurations or special  
capacitance values may be ordered.  
Custom packages or filter arrays utilizing  
the BK series can be furnished.  
CHARACTERISTICS  
• .410 Dia. version (AK) meets or exceeds  
the applicable requirements of MIL-F-  
28861/1. See QPL listings.  
• Internal ferrite bead provides inductance  
for the L-section version.  
• High DC current rating: 15 Amps  
• Glass hermetic seal on both ends.  
SPECIFICATIONS  
1. Case/Terminal Plating:  
STANDARD CONFIGURATION  
Electro-tin standard – Silver or gold  
available  
2. Material:  
Case: Brass standard – Steel available  
End Seal: Mild steel  
.070 .010  
(2 PLC)  
.250-28 UNF-2A (1/4-28)  
.050  
.375 DIA.  
.010  
ALT. .410 DIA. MAX.  
See Note 4  
Terminals: Nickel-iron alloy  
3. Operating Temperature Range:  
-55°C to +125°C  
4. Electrical Characteristics:  
A. Rated Voltage: See chart  
B. Insulation Resistance:  
.115  
REF.  
.200  
.010  
.190  
MAX  
.160  
MAX.  
.170  
.010  
At 25°C: 1,000 megohm-microfarad  
min., or 50,000 megohms,  
whichever is less, at the rated  
DC voltage  
*
.010  
* = A FOR .187 THREAD  
B FOR .312 THREAD  
(See Note 1)  
At 125°C: 100 megohm-microfarad  
min., or 5,000 megohms,  
CIRCUIT DIAGRAMS  
whichever is less  
C. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
THRD  
END  
L2  
2.0 times rated DC voltage  
Class B, Class S designs:  
2.5 times rated DC voltage  
D. Capacitance: Values listed in chart are  
“guaranteed minimum value” (GMV)  
5. Marking:  
Standard Marking: AVX, AVX part number,  
lot code  
BK2 only: Letter “L” denotes ferrite bead  
inductor at threaded end  
C
BK1  
BK2 (See Note 2)  
Notes:  
millimeters (inches)  
.25 (.010) 4.75 (.187)  
1.27 (.050) 4.83 (.190)  
1.78 (.070) 5.08 (.200)  
2.92 (.115) 7.93 (.312)  
3.81 (.150) 9.53 (.375)  
1. Thread length option. Standard  
part numbers shown (e.g.,  
BK1CA-103) are .187" thread  
length. Optional .312 length  
available. (e.g., BK1CB-103).  
3. Metric equivalent dimensions  
given for information only.  
4. .410 Dia. (identified as AK) is  
required for all hi-rel tested  
parts (e.g., MIL-F-28861/1  
series).  
2. Ferrite bead inductor at thread-  
ed end (BK2 only).  
See Reliability Codes section for definition of  
Reliability Level marking. See How to Order  
section for part number construction.  
6. Installation:  
4.32 (.170)  
(See Note 3)  
(See Note 1)  
A. Mounting Torque:  
44 oz-in. 4 oz-in.  
B. Refer to “Installation, Handling, Hardware  
Options” section of the catalog.  
31  
Cylindrical Style EMI Filters  
BK Series – .375/.410 Dia. – Button Hermetically Sealed  
Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
DC  
30  
150  
300  
1
10  
100  
1
1
CKT  
C
CAP  
1.2  
1.2  
1.2  
1.2  
.7  
Voltage  
KHz  
KHz  
KHz  
MHz  
MHz  
MHz  
GHz  
BK1CA-125  
BK1CB-125  
BK2CA-125  
BK2CB-125  
BK1NA-704  
BK1NB-704  
BK2NA-704  
BK2NB-704  
BK1AA-103  
BK1AA-454  
BK1AB-454  
BK1AA-754  
BK1AA-105  
BK2AA-454  
BK2AB-454  
BK2AA-754  
BK2AA-105  
BK1HA-254  
BK1HB-254  
BK2HA-254  
BK2HB-254  
BK1LA-753  
BK1LA-154  
BK1LB-154  
BK2BA-203  
BK2LA-753  
BK2LA-154  
BK2LB-154  
50  
50  
15  
15  
15  
15  
10  
10  
10  
10  
28  
28  
28  
28  
24  
24  
24  
24  
33  
33  
33  
33  
30  
30  
30  
30  
40  
40  
40  
40  
40  
40  
40  
40  
2
40  
40  
40  
40  
40  
40  
40  
40  
20  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
37  
40  
40  
25  
37  
40  
40  
70  
70  
70  
70  
64  
64  
64  
64  
40  
60  
60  
64  
65  
60  
60  
64  
65  
56  
56  
56  
56  
46  
52  
52  
40  
51  
52  
52  
70  
70  
70  
70  
70  
70  
70  
70  
55  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
C
L2  
L2  
C
50  
50  
70  
C
.7  
70  
L2  
L2  
C
.7  
70  
.7  
70  
.01  
.45  
.45  
.75  
1.0  
.45  
.45  
.75  
1.0  
.25  
.25  
.25  
.25  
.075  
.15  
.15  
.02  
.075  
.15  
.15  
100  
100  
100  
100  
100  
100  
100  
100  
100  
150  
150  
150  
150  
200*  
200*  
200*  
200*  
200*  
200*  
200*  
C
6
19  
19  
24  
24  
19  
19  
24  
24  
14  
14  
14  
14  
25  
25  
30  
30  
25  
25  
30  
30  
20  
20  
20  
20  
7
36  
36  
40  
40  
36  
36  
40  
40  
31  
31  
31  
31  
18  
26  
26  
7
C
6
C
11  
12  
6
C
L2  
L2  
L2  
L2  
C
6
11  
12  
C
L2  
L2  
C
C
10  
10  
16  
16  
C
L2  
L2  
L2  
L2  
7
18  
26  
26  
10  
10  
16  
16  
* Also rated 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
32  
Cylindrical Style EMI Filters  
CK Series – .375 Dia. – Button Hermetically Sealed –  
Circuits Available – C & L  
APPLICATIONS  
The CK series offers effective filtering  
from 100 KHz to 10 GHz. Glass sealed  
for hermeticity, this medium profile series  
is impervious to high moisture, solvents,  
or other severe environmental conditions  
commonly encountered in military appli-  
cations. It is designed for bulkhead  
mounting in a slotted hole with nut and  
lockwasher supplied. This series is ideal  
for low to medium impedance circuits  
where large amounts of capacitance to  
ground can be tolerated. In the “L”  
section version an internal ferrite bead  
element provides both inductance and  
series resistance (lossy characteristic)  
which improves insertion loss and pro-  
vides superior transient performance.  
Alternate lead configurations or special  
capacitance values may be ordered.  
Custom packages or filter arrays utilizing  
the CK series can be furnished.  
CHARACTERISTICS  
• Meets or exceeds the applicable  
requirements of MIL-F-15733, and the  
environmental/test requirements of MIL-  
F-28861.  
for the L-section version.  
• High DC current rating: 15 Amps.  
• High capacitance values available.  
• Conservatively rated for 125 VAC/400  
Hz in certain values.  
• Glass hermetic seal on both ends.  
SPECIFICATIONS  
1. Case/Terminal Plating:  
• Internal ferrite bead provides inductance  
Electro-tin standard –  
Silver or gold available  
STANDARD CONFIGURATION  
2. Material:  
Case: Brass standard – Steel available  
End Seal: Mild steel  
.070 .010  
(2 PLC)  
.250-28 UNF-2A (1/4-28)  
.050  
.375 DIA.  
.010  
Terminals: Nickel-iron alloy  
3. Operating Temperature Range:  
-55°C to +125°C  
4. Electrical Characteristics:  
A. Rated Voltage: See chart  
B. Insulation Resistance:  
.115  
REF.  
.200  
.010  
At 25°C: 1,000 megohm-microfarad min.,  
or 50,000 megohms min.,  
whichever is less, at the rated  
DC voltage  
At 125°C: 100 megohm-microfarad  
min., or 5,000 megohms  
.190  
MAX  
.150  
MAX.  
.250  
.010  
*
.010  
* = A FOR .187 THREAD  
B FOR .312 THREAD  
(See Note 1)  
min., whichever is less  
C. Dielectric Withstanding Voltage (DWV):  
R-level designs:  
CIRCUIT DIAGRAMS  
2.0 times rated DC voltage  
Class B, Class S designs:  
2.5 times rated DC voltage  
D. Capacitance: Values listed in chart are  
“guaranteed minimum value” (GMV)  
5. Marking:  
Standard Marking: AVX, AVX part number,  
rated current, voltage, lot code  
B. CK2 only: Letter “L” to denote ferrite bead  
inductor at threaded end  
THRD  
END  
L2  
C
CK2 (See Note 2)  
CK1  
Notes:  
millimeters (inches)  
0.25 (.010) 4.83 (.190)  
1.27 (.050) 5.08 (.200)  
1.78 (.070) 6.35 (.250)  
2.92 (.115) 7.93 (.312)  
3.81 (.150) 9.53 (.375)  
1. Thread length option.  
EXAMPLE: CK1CA-103  
(.187 thrd. L)  
3. Metric equivalent dimen-  
sions given for informa-  
tion only.  
CK1CB-103  
(.312 thrd. L).  
C. See Reliability Codes section for definition  
of Reliability Level marking. See How to  
Order section for part number construc-  
tion.  
2. All CK2 L-Section Filters  
have inductor (bead) at  
threaded end.  
4.75 (.187)  
(See Note 3)  
6. Installation:  
A. Mounting Torque: 44 oz-in. 4 oz-in.  
B. Refer to “Installation, Handling, Hardware  
Options” section of the catalog.  
33  
Cylindrical Style EMI Filters  
CK Series – .375 Dia. – Button Hermetically Sealed –  
Circuits Available – C & L  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
DC  
30  
150  
500  
1
10  
100  
1
1
CKT  
C
CAP  
.75  
1.0  
1.4  
2.0  
.75  
1.0  
1.4  
2.0  
.5  
Voltage  
KHz  
KHz  
KHz  
MHz  
MHz  
MHz  
GHz  
CK1CA-754  
CK1CA-105  
CK1CA-145  
CK1CA-205  
CK2CA-754  
CK2CA-105  
CK2CA-145  
CK2CA-205  
CK1AA-504  
CK1AA-754  
CK1AA-105  
CK1AA-185  
CK2AA-504  
CK2AA-754  
CK2AA-105  
CK2AA-185  
CK1BA-103  
CK1LA-753  
CK1BA-104  
CK1LA-154  
CK1BA-304  
CK1BA-504  
CK2BA-103  
CK2LA-753  
CK2BA-104  
CK2LA-154  
CK2BA-304  
CK2BA-504  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
15  
50  
50  
11  
12  
15  
16  
11  
12  
15  
16  
24  
24  
28  
30  
24  
24  
28  
30  
16  
24  
24  
28  
16  
24  
24  
28  
30  
30  
33  
35  
30  
30  
33  
35  
26  
30  
30  
33  
26  
30  
30  
33  
40  
40  
40  
43  
40  
40  
40  
43  
34  
40  
40  
41  
36  
40  
40  
41  
2
40  
40  
40  
45  
40  
40  
40  
45  
42  
40  
40  
45  
44  
40  
40  
45  
20  
37  
38  
40  
40  
40  
20  
37  
38  
40  
40  
40  
64  
65  
70  
70  
64  
65  
70  
70  
58  
64  
65  
70  
60  
64  
65  
70  
40  
46  
50  
52  
56  
58  
40  
51  
50  
52  
56  
60  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
55  
70  
70  
70  
70  
70  
55  
70  
70  
70  
70  
70  
C
C
50  
C
50  
L2  
L2  
L2  
L2  
C
50  
50  
50  
50  
100  
100  
100  
100  
100  
100  
100  
100  
200  
200*  
200  
200*  
200  
200  
200  
200*  
200  
200*  
200  
200  
C
.75  
1.0  
1.8  
.5  
11  
12  
15  
C
C
L2  
L2  
L2  
L2  
C
.75  
1.0  
1.8  
.01  
11  
12  
15  
C
.075  
.1  
7
18  
24  
26  
32  
36  
2
C
14  
16  
23  
25  
C
.15  
.3  
10  
15  
19  
C
C
.5  
6
L2  
L2  
L2  
L2  
L2  
L2  
.01  
.075  
.1  
7
18  
24  
26  
32  
36  
14  
16  
23  
25  
.15  
.3  
10  
15  
19  
.5  
6
* Also rated 125 VAC/400 Hz  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
34  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia.  
Hermetically Sealed – Circuits Available – C, L, π, T  
APPLICATIONS  
The GK series offers effective filtering from  
30 KHz to 10 GHz. Glass sealed for  
hermeticity, this series is impervious to  
high moisture, solvents, or other severe  
environmental conditions commonly  
encountered in military applications. It  
is designed for bulkhead mounting in  
a slotted hole with nut and lockwasher  
supplied.  
inductor elements offer increased filter  
performance and protection against circuit  
transients. Data showing the actual  
inductance versus various levels of DC or  
AC bias current are available as well as the  
attenuation in any combination of source  
and load impedances.  
Alternate lead configurations or special  
capacitance/inductance values may be  
ordered.  
The “L” and “T” configurations are designed  
to provide effective attenuation over a wide  
range of circuit impedances. For current  
ratings under 10 Amps toroidal wound  
Custom packages or filter arrays utilizing  
the GK series can be furnished.  
CHARACTERISTICS  
• .410 Dia. version (HK) meets or exceeds the applicable  
requirements of MIL-F-28861/2,/3,/4,/5. See QPL listing.  
• High DC current rating: 15 Amps.  
• High capacitance values available.  
• Glass hermetic seal on both ends.  
• Wound toroidal inductor used in current ratings up through  
5 Amps. Ferrite bead inductor used in 10 and 15 Amp  
designs.  
SPECIFICATIONS  
1. Case/Terminal Plating:  
Electro-tin standard –  
Silver or gold available  
2. Material:  
Case: Brass standard – Steel available  
End Seal: Mild steel  
Terminals: Nickel-iron alloy  
3. Operating Temperature Range:  
-55°C to +125°C  
4. Electrical Characteristics:  
A. Rated Voltage and Current: See chart  
B. Insulation Resistance:  
C. Dielectric Withstanding Voltage  
See Reliability Codes section for definition of  
(DWV):  
R-level designs:  
Reliability Level marking. See How to Order  
section for part number construction.  
6. Installation:  
2.0 times rated DC voltage  
Class B, Class S designs:  
2.5 times rated DC voltage  
D. Capacitance: Total capacitance listed  
in chart for each filter type is “guar-  
anteed minimum value” (GMV)  
A. Mounting Torque: 44 oz-in. 4 oz-in.  
B. Refer to “Installation, Handling,  
Hardware Options” section of the  
catalog.  
5. Marking:  
Standard Marking: AVX, AVX part num-  
ber, rated current, voltage, lot code,  
schematic  
At 25°C: 1,000 megohm-microfarad  
min., or 50,000 megohms  
min., whichever is less, at  
NOTE: Schematic to indicate location of  
inductor (standard or reverse) for GK2  
L-Section Filters.  
the rated DC voltage  
At 125°C: 100 megohm-microfarad  
min., or 5,000 megohms  
min., whichever is less  
35  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia.  
Hermetically Sealed – Circuits Available – C, L, π, T  
STANDARD CONFIGURATION  
.070 .010  
(2 PLC)  
.250-28 UNF-2A (1/4-28)  
.050  
.375 DIA.  
.010  
ALT. .410 DIA. MAX.  
(See Note 3)  
.115  
REF.  
.200  
.010  
.190  
MAX  
.150  
MAX.  
L
.031  
* = A FOR .187 .010 THREAD  
B FOR .312 THREAD  
(See Note 1)  
*
.010  
CIRCUIT DIAGRAMS  
THRD  
END  
THRD  
END  
L1  
L2  
GK2 - Reverse  
GK2 - Standard  
T
Pi  
GK3  
GK4  
Notes:  
millimeters (inches)  
0.25 (.010) 4.75 (.187)  
0.79 (.031) 4.83 (.190)  
1.27 (.050) 5.08 (.200)  
1.78 (.070) 7.93 (.312)  
2.92 (.115) 9.53 (.375)  
3.81 (.150) 13.72 (.540)  
(See Note 2)  
1. Thread length option. Standard part  
3. All QPL MIL-F-28861, and Hi-rel, will  
be supplied with .410 diameter (HK).  
See applicable slash sheet for  
mechanical dimensions.  
* = A for .187 .010 Thread  
B for .312 Thread  
(See Note 1)  
numbers shown (e.g., GK2BA-S02)  
are .187" thread length. Optional .312  
length available (e.g., GK2BB-S02).  
2. Metric equivalent dimensions given  
for information only.  
36  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia. – Hermetically Sealed –  
Circuits Available – L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
10  
KHz  
30  
KHz  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
CKT  
L. dim  
DCR  
50 VDC, 1.4 µF  
GK2CA-S01  
GK2CA-S02  
GK2CA-S03  
GK2CA-S04  
GK2CA-S05  
GK2CA-S06  
GK2CA-S07  
GK2CA-S08  
GK2CA-S09  
GK2CA-S10  
GK2CA-S12  
GK3CA-P02  
GK3CA-P04  
GK3CA-P07  
GK3CA-P08  
GK3CA-P09  
GK3CA-P10  
GK3CA-P12  
GK4CA-T08  
GK4CA-T09  
GK4CA-T16  
GK4CA-T12  
.06  
.1  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.020  
1.020  
1.020  
1.020  
12  
10  
16  
15  
7
44  
34  
24  
25  
16  
15  
16  
15  
15  
15  
15  
44  
36  
24  
15  
15  
15  
15  
16  
15  
15  
17  
70  
62  
52  
53  
35  
33  
41  
31  
28  
28  
28  
70  
70  
66  
54  
40  
30  
28  
34  
26  
26  
27  
70  
70  
64  
65  
45  
44  
54  
42  
35  
34  
34  
70  
70  
70  
70  
60  
50  
34  
56  
37  
34  
34  
70  
70  
70  
70  
66  
65  
70  
63  
51  
45  
44  
70  
70  
70  
70  
70  
70  
40  
70  
61  
47  
44  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
52  
70  
70  
70  
70  
70  
70  
52  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
65  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
65  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
.15  
.25  
.30  
.45  
.50  
1.0  
2.0  
3.0  
10  
.1  
4
4
6
0.5  
0.3  
1
5
5
5
.25  
.063  
.027  
.008  
10  
5
5
5
5
12  
8
.25  
.5  
π
4
π
1
7
1
π
.25  
.063  
.027  
.008  
.5  
5
2
π
5
3
π
5
10  
1
π
5
T
5
2
T
.09  
.03  
.008  
5
4
T
5
10  
T
5
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes  
(e.g., L2 = GK2LA-S04, L1 = GK2LA-R04).  
37  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia. – Hermetically Sealed –  
Circuits Available – L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
15  
30  
50  
100  
150  
300  
1
10  
100  
1
1
CAP  
CKT L. dim  
DCR KHz KHz KHz KHz KHz KHz MHz MHz MHz GHz  
70 VDC, .7–1.4 µF  
GK2NA-S02  
GK2NA-S05  
GK2NA-S07  
GK2NA-S08  
GK2NA-S10  
GK2NA-S11  
GK2NA-S12  
GK3NA-P02  
GK3NA-P05  
GK3NA-P07  
GK3NA-P08  
GK3NA-P10  
GK3NA-P11  
GK3NA-P12  
GK4NA-T08  
GK4NA-T09  
GK4NA-T16  
GK4NA-T12  
.1  
.3  
.5  
1
L2  
L2  
L2  
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.7  
.7  
1.7  
.77  
.36  
.14  
.05  
.015  
.008  
1.7  
.77  
.36  
.14  
.05  
.015  
.008  
9
6
5
5
5
20  
15  
12  
11  
10  
29  
23  
19  
15  
14  
41  
35  
29  
21  
20  
14  
20  
69  
62  
56  
46  
17  
48  
42  
36  
26  
24  
17  
24  
79  
73  
67  
57  
36  
16  
28  
26  
20  
19  
19  
60  
54  
48  
36  
31  
24  
30  
80  
80  
80  
75  
51  
38  
34  
49  
32  
29  
28  
70  
70  
69  
55  
45  
36  
40  
80  
80  
80  
80  
80  
75  
40  
70  
55  
42  
38  
70  
70  
70  
70  
70  
60  
40  
80  
80  
80  
80  
80  
80  
52  
70  
70  
70  
55  
70  
70  
70  
70  
70  
70  
64  
80  
80  
80  
80  
80  
80  
80  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
80  
80  
70  
70  
70  
70  
.7  
.7  
3
.7  
5
.7  
10  
.1  
.3  
.5  
1
.7  
10  
36  
29  
21  
14  
50  
44  
37  
20  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
15  
π
π
π
3
π
5
π
10  
1
π
5
15  
10  
10  
9
20  
15  
13  
12  
12  
24  
21  
17  
15  
15  
T
1.020 .75  
1.020 .75  
1.020 .75  
1.020 .75  
2
T
4
T
10  
T
9
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes  
(e.g., L2 = GK2LA-S04, L1 = GK2LA-R04).  
38  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia. – Hermetically Sealed –  
Circuits Available – L, π  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
10  
KHz  
30  
KHz  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
1
CAP  
CKT L. dim  
DCR  
100 VDC, .45–1.4 µF  
GK2AA-S01  
GK2AA-S02  
GK2AA-S03  
GK2AA-S05  
GK2AA-S06  
GK2AA-S07  
GK2AA-S09  
GK2AA-S12  
GK3AA-P02  
GK3AA-P07  
GK3AA-P09  
GK3AA-P12  
GK4AA-T08  
GK4AA-T09  
GK4AA-T16  
GK4AA-T12  
GK2AA-S04  
GK3AA-P04  
GK2AA-S08  
GK3AA-P08  
GK2AA-S10  
GK3AA-P10  
GK2AA-S11  
GK3AA-P11  
.06  
.1  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.020  
1.020  
1.020  
1.020  
1.020  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.0  
1.0  
1.0  
1.0  
.75  
.75  
.75  
.75  
.45  
.90  
.45  
.90  
.45  
.90  
.45  
.90  
12  
15  
12  
7
44  
34  
24  
14  
14  
16  
15  
14  
40  
18  
9
70  
62  
52  
35  
33  
41  
28  
28  
70  
60  
36  
24  
25  
20  
19  
19  
38  
64  
23  
52  
18  
25  
17  
70  
70  
64  
45  
44  
54  
35  
33  
70  
70  
53  
29  
49  
32  
29  
28  
50  
80  
34  
70  
27  
51  
24  
38  
70  
70  
70  
66  
65  
70  
51  
44  
70  
70  
70  
40  
70  
56  
42  
39  
60  
80  
55  
80  
45  
80  
36  
75  
70  
70  
70  
70  
70  
70  
70  
52  
70  
70  
70  
70  
70  
70  
70  
58  
60  
80  
60  
80  
60  
80  
60  
80  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
65  
60  
80  
60  
80  
60  
80  
60  
80  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
65  
60  
80  
60  
80  
60  
80  
60  
80  
10  
.15  
.3  
4
.5  
.45  
.5  
.3  
1
2
.063  
.008  
10  
10  
.1  
12  
.5  
π
1
2
π
.063  
.008  
.5  
10  
1
π
9
T
10  
10  
10  
9
2
T
.09  
.03  
.008  
1.5  
1.5  
.25  
.25  
.05  
.05  
.015  
.015  
4
T
10  
.25  
.25  
1.0  
1.0  
3.0  
3.0  
5.0  
5.0  
T
L2  
π
L2  
π
L2  
π
L2  
π
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes  
(e.g., L2 = GK2LA-S04, L1 = GK2LA-R04).  
39  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia. – Hermetically Sealed –  
Circuits Available – L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
100  
KHz  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
1
CAP  
CKT  
L. dim  
DCR  
150 VDC, .25–.50 µF  
GK2HA-S02  
GK2HA-S05  
GK2HA-S07  
GK2HA-S08  
GK2HA-S10  
GK2HA-S11  
GK2HA-S12  
GK3HA-P02  
GK3HA-P05  
GK3HA-P07  
GK3HA-P08  
GK3HA-P10  
GK3HA-P11  
GK3HA-P12  
GK4HA-T08  
GK4HA-T09  
GK4HA-T16  
GK4HA-T12  
.1  
.3  
L2  
L2  
L2  
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.020  
1.020  
1.020  
1.020  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.50  
.50  
.50  
.50  
.50  
.50  
.50  
.25  
.25  
.25  
.25  
1.7  
.77  
36  
32  
25  
20  
12  
11  
8
39  
30  
26  
16  
15  
12  
12  
60  
53  
48  
40  
51  
44  
39  
26  
20  
20  
20  
70  
70  
66  
58  
38  
20  
15  
42  
32  
21  
21  
60  
60  
59  
48  
36  
32  
32  
80  
80  
80  
80  
70  
63  
35  
70  
50  
40  
28  
60  
60  
60  
60  
60  
60  
40  
80  
80  
80  
80  
80  
80  
60  
80  
70  
60  
44  
60  
60  
60  
60  
60  
60  
56  
80  
80  
80  
80  
80  
80  
80  
80  
80  
80  
60  
70  
70  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
80  
80  
80  
80  
80  
80  
.5  
1.0  
3.0  
5.0  
10.0  
0.1  
0.3  
0.5  
1.0  
3.0  
5.0  
10.0  
1
14  
.05  
.015  
.008  
1.7  
.77  
.36  
.14  
.05  
.015  
.008  
.5  
6
49  
43  
37  
28  
π
π
π
π
π
π
T
15  
9
23  
13  
10  
9
2
T
.09  
.03  
.006  
4
T
6
10  
T
200 VDC, .15–.36 µF  
AVX  
P/N  
Current  
AMP  
10  
30  
150  
300  
1
10  
100  
1
1
CAP  
CKT L. dim  
DCR  
10  
KHz  
KHz  
KHz  
50  
39  
29  
18  
15  
15  
15  
61  
52  
44  
30  
16  
KHz  
61  
51  
41  
28  
21  
21  
21  
70  
68  
63  
46  
33  
21  
20  
42  
24  
21  
21  
MHz  
MHz  
MHz  
GHz  
GK2BA-S02  
GK2BA-S04  
GK2BA-S07  
GK2BA-S08  
GK2BA-S09  
GK2BA-S10  
GK2BA-S12  
GK3BA-P02  
GK3BA-P04  
GK3BA-P07  
GK3BA-P08  
GK3BA-P09  
GK3BA-P10  
GK3BA-P12  
GK4BA-T08  
GK4BA-T09  
GK4BA-T16  
GK4BA-T12  
.1  
.25  
.5  
1
L2  
L2  
L2  
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.020  
1.020  
1.020  
1.020  
.15  
.15  
.15  
.15  
.15  
.15  
.15  
.36  
.36  
.36  
.36  
.36  
.36  
.36  
.15  
.15  
.15  
.15  
21  
11  
3
70  
70  
63  
49  
38  
31  
31  
70  
70  
70  
70  
63  
55  
30  
70  
48  
34  
31  
70  
70  
70  
70  
70  
70  
51  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
50  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
70  
70  
70  
70  
60  
.4  
1
.25  
.063  
.027  
.008  
10  
2
3
10  
.1  
.25  
.5  
1
21  
10  
π
4
π
1
π
.25  
.063  
.027  
.008  
.5  
2
π
3
π
10  
1
π
T
3
17  
12  
12  
12  
2
T
.09  
.03  
.008  
4
T
10  
T
3
1 Decimal point values indicate capacitance in microfarads. Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”. Insertion loss and other parameters are identical.  
Only the part number changes (e.g., L2 = GK2LA-S04, L1 = GK2LA-R04).  
40  
Cylindrical Style EMI Filters  
GK Series – .375/.410 Dia. – Hermetically Sealed –  
Circuits Available – L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
10  
KHz  
30  
KHz  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
1
CAP  
CKT L. dim  
DCR  
200 VDC (125 VAC/400 Hz) .15–.30 µF  
GK2LA-S02  
GK2LA-S07  
GK2LA-S09  
GK2LA-S12  
GK3LA-P02  
GK3LA-P07  
GK3LA-P10  
GK3LA-P12  
GK2LA-S04  
GK2LA-S08  
GK2LA-S10  
GK2LA-S11  
GK3LA-P04  
GK3LA-P08  
GK3LA-P10  
GK3LA-P11  
GK4LA-T08  
GK4LA-T09  
GK4LA-T16  
GK4LA-T12  
.1  
.5  
2
L2  
L2  
L2  
L2  
π
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
.540  
1.020  
1.020  
1.020  
1.020  
.15  
.15  
.15  
.15  
.3  
10  
14  
42  
23  
8
54  
35  
14  
14  
70  
56  
25  
20  
40  
24  
16  
14  
62  
50  
19  
70  
56  
30  
25  
70  
70  
54  
30  
60  
45  
30  
26  
80  
80  
59  
51  
66  
41  
27  
25  
70  
70  
70  
45  
70  
70  
70  
70  
60  
60  
60  
55  
80  
80  
80  
80  
70  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
70  
60  
60  
60  
55  
80  
80  
80  
80  
70  
70  
70  
70  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
70  
70  
80  
80  
80  
80  
70  
70  
70  
70  
1
.063  
.008  
10  
10  
.1  
.5  
3
8
21  
60  
40  
π
.3  
1
π
π
.3  
.027  
.008  
1.5  
.25  
.05  
.015  
1.5  
.25  
.05  
.015  
.5  
10  
.25  
1
.3  
L2  
L2  
L1  
L2  
π
.15  
.15  
.15  
.15  
.3  
6
28  
13  
8
3
5
8
.25  
1
8
44  
32  
π
.3  
3
π
.3  
5
π
.3  
1
T
.15  
.15  
.15  
.15  
10  
7
36  
18  
15  
15  
2
T
.09  
.03  
.008  
4
T
8
10  
T
8
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes  
(e.g., L2 = GK2LA-S04, L1 = GK2LA-R04).  
41  
Cylindrical Style EMI Filters  
JD Series – .690 Dia.  
Hermetically Sealed – Circuits Available – C, L, π, T  
APPLICATIONS  
The JD series offers effective filtering from  
14 KHz to 10 GHz. The large diameter,  
increased length, restricted capacitance  
values and conservative dielectrics of the  
JD series are particularly important  
design features for 400 Hz AC applica-  
tions where high reactive currents and  
the resultant heat dissipation must be  
controlled. Glass sealed on both ends for  
hermeticity, this series is impervious to  
high moisture, solvents, or other severe  
environmental conditions commonly  
encountered in military applications. It is  
designed for bulkhead mounting in a  
slotted hole with nut and lockwasher  
supplied.  
inductors offer significant performance  
advantages by suppressing and absorb-  
ing the EMP pulse over a very broad  
spectral range. Very high pulse currents  
will occur within the EMI filter, however,  
reradiation to sensitive electronic circuits  
is prevented by the fully shielded case  
design. In some cases a slight increase  
in the case length of the filter is required  
to provide space for the transient sup-  
pression device.  
The “L”, and the “T” designs are designed  
to provide effective attenuation over a  
wide range of circuit impedances. For  
current ratings under 15 Amps toroidal  
wound inductor elements offer increased  
filter performance and protection against  
circuit transients. Data showing the actual  
inductance versus various levels of DC or  
AC bias current are available as well as the  
attenuation in any combination of source  
and load impedance.  
CHARACTERISTICS  
• Designed to meet the require-  
ments of DESC drawings  
84083, 84084 and MIL-F-  
28861/16 and /17.  
The 230 VAC “T” section style is unique-  
ly capable of handling very high pulse  
inrush currents or overvoltage conditions  
typical of EMP.  
• Glass hermetic seal on both  
ends.  
In addition, transient voltage suppression  
devices can be added to any of the JD  
circuit designs to provide complete  
circuit protection against EMP, lightning,  
or voltage spikes such as MIL-STD-704.  
These devices when combined with high  
frequency attenuation characteristics of  
the discoidal capacitor and toroidal  
• Wound toroidal inductor used in  
designs up to 10 Amps. 15  
Amp designs incorporate ferrite  
bead inductor.  
Alternate lead configurations or special  
capacitance/inductance values may be  
ordered.  
• Superior heat dissipation for  
both 125 VAC and 230 VAC  
designs.  
Custom packages or filter arrays utilizing  
the JD series can be furnished.  
SPECIFICATIONS  
1. Case/Terminal Plating:  
Electro-tin standard –  
C. Insulation Resistance:  
At 25°C: 1,000 megohm-microfarad  
min., or 50,000 megohms  
min., whichever is less, at  
the rated DC voltage  
At 125°C: 100 megohm-microfarad  
min., or 5,000 megohms  
min., whichever is less  
D. Dielectric Withstanding Voltage  
(DWV):  
5. Marking:  
Standard Marking: AVX, AVX part  
number, rated voltage, current, lot  
number, schematic  
Silver or gold available  
2. Material:  
Case: Brass standard – Steel available  
End Seal: Mild steel  
Terminals: Nickel-iron alloy  
3. Operating Temperature Range:  
-55°C to +125°C  
NOTE: Schematic to indicate location of  
inductor (standard or reverse) for  
JD2 L-Section Filters.  
See Reliability Codes section for  
definition of Reliability Level marking.  
See How to Order section for part  
number construction.  
4. Electrical Characteristics:  
R-level designs:  
A. Rated Voltage:  
2.0 times rated DC voltage  
Class B, Class S designs:  
2.5 times rated DC voltage  
3. Capacitance: Total capacitance listed in  
chart for each filter type is “guaranteed  
minimum value” (GMV)  
6. Installation:  
300 VDC/125 VAC, 400 Hz or  
400 VDC/230 VAC, 400 Hz  
B. Current Rating - see chart  
A. Mounting Torque: 60 oz-in. 4 oz-in.  
B. Refer to “Installation and Handling”  
section of Filter Design Guide  
42  
Cylindrical Style EMI Filters  
JD Series – .690 Dia. – Hermetically Sealed –  
Circuits Available – C, L, π, T  
STANDARD CONFIGURATION  
.3125-24 UNF-2A (5/16-24)  
.690  
MAX.  
.062  
MAX.  
.062 .015 x .125 .015  
(2 PLC)  
.120  
.020  
(2 PLC)  
.250  
.015  
.312  
.010  
.290  
MAX.  
.620  
MAX.  
L
MAX.  
(See Note 1)  
CIRCUIT DIAGRAMS  
THRD  
END  
THRD  
END  
L1  
L2  
JD2 - Standard  
Pi  
C
JD3  
JD2 - Reverse  
JD1  
T
JD4  
MIL-F-28861/17  
(See P/N Table)  
MIL-F-28861/16  
(See P/N Table)  
millimeters (inches)  
L
0.08 (.003)  
0.13 (.005)  
0.18 (.007)  
0.25 (.010)  
0.38 (.015) 10.67 (.420)  
0.51 (.020) 11.18 (.440)  
0.56 (.022) 15.75 (.620)  
1.14 (.045) 17.27 (.680)  
1.57 (.062) 17.78 (.700)  
2.36 (.093) 26.92 (1.060)  
3.05 (.120) 30.61 (1.205)  
3.18 (.125) 33.02 (1.300)  
6.35 (.250)  
L
Weight  
Dash  
No.  
001  
Dimension  
Dash Dimension (grams)  
7.37 (.290)  
7.92 (.312)  
9.53 (.375)  
Max.  
No.  
001  
002  
003  
004  
005  
006  
007  
008  
009  
010  
011  
012  
013  
014  
015  
016  
017  
018  
019  
Max.  
.700  
Max.  
18.0  
20.0  
20.0  
20.0  
20.0  
20.0  
20.0  
20.0  
20.0  
20.0  
20.0  
29.0  
29.0  
29.0  
29.0  
29.0  
29.0  
29.0  
29.0  
.700  
1.060  
1.205  
1.300  
002 through 011  
012 through 016  
017 through 019  
1.060  
1.060  
1.060  
1.060  
1.060  
1.060  
1.060  
1.060  
1.060  
1.060  
1.205  
1.205  
1.205  
1.205  
1.205  
1.300  
1.300  
1.300  
Notes:  
1. Refer to Part Number Table  
for L-Max for specific filter.  
2. Metric equivalent dimensions  
given for information only.  
3. All dimensions for JD series  
filters established per  
MIL-F-28861/16 and /17,  
and DESC 84083 and 84084  
requirements.  
(See Note 2)  
43  
Cylindrical Style EMI Filters  
JD Series – .690 Dia. – Hermetically Sealed –  
Circuits Available – C, L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
DC  
50  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
1
CAP  
CKT  
Voltage DCR L. dim KHz  
100 VDC, 1.2–2.8 µF  
JD1AB-125  
JD1AB-704  
JD2AB-S07  
JD2AB-S08  
JD2AB-S10  
JD2AB-S11  
JD2AB-S12  
JD3AB-P07  
JD3AB-P08  
JD3AB-P10  
JD3AB-P11  
JD3AB-P12  
JD4AB-T08  
JD4AB-T09  
JD4AB-T16  
JD4AB-T12  
15  
15  
.5  
1
C
C
1.2  
1.2  
1.4  
1.4  
1.4  
1.4  
1.4  
2.8  
2.8  
2.8  
2.8  
2.8  
1.4  
1.4  
1.4  
1.4  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
.008  
.008  
.3  
.700  
16  
10  
21  
19  
16  
15  
15  
40  
35  
13  
27  
19  
40  
37  
26  
25  
24  
70  
68  
43  
26  
30  
48  
26  
24  
24  
34  
28  
58  
55  
37  
34  
34  
80  
80  
73  
63  
40  
70  
44  
35  
34  
43  
40  
70  
70  
55  
46  
44  
80  
80  
80  
80  
70  
70  
70  
50  
44  
60  
50  
70  
70  
70  
70  
70  
80  
80  
80  
80  
70  
70  
70  
70  
60  
60  
60  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
70  
60  
60  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
70  
.700  
L2  
L2  
L2  
L2  
L2  
π
1.060  
1.060  
1.060  
1.060  
1.060  
1.205  
1.205  
1.205  
1.205  
1.205  
1.400  
1.400  
1.400  
1.400  
.21  
3
.03  
5
.007  
.006  
.3  
10  
.5  
1
π
.21  
3
π
.03  
5
π
.007  
.006  
.5  
10  
1
π
20  
21  
15  
15  
14  
T
2
T
.09  
4
T
.03  
10  
T
.005  
200 VDC, .45–.9 µF  
JD1BB-904  
JD1BB-454  
JD2BB-S07  
JD2BB-S08  
JD2BB-S10  
JD2BB-S11  
JD2BB-S12  
JD3BB-P07  
JD3BB-P08  
JD3BB-P10  
JD3BB-P11  
JD3BB-P12  
JD4BB-T08  
JD4BB-T09  
JD4BB-T16  
JD4BB-T12  
15  
15  
.5  
1
C
C
.9  
.45  
.45  
.45  
.45  
.45  
.45  
.9  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
.006  
.006  
.3  
.700  
12  
6
21  
16  
30  
28  
16  
14  
15  
50  
46  
18  
13  
20  
50  
48  
18  
12  
30  
24  
48  
45  
28  
24  
24  
70  
70  
50  
40  
30  
70  
70  
24  
22  
40  
34  
65  
65  
45  
36  
34  
80  
80  
80  
70  
40  
80  
80  
42  
34  
53  
51  
70  
70  
60  
52  
50  
80  
80  
80  
80  
55  
80  
80  
80  
70  
60  
60  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
80  
80  
80  
80  
60  
60  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
80  
80  
80  
80  
.700  
L2  
L2  
L2  
L2  
L2  
π
1.060  
1.060  
1.060  
1.060  
1.060  
1.205  
1.205  
1.205  
1.205  
1.205  
1.400  
1.400  
1.400  
1.400  
10  
8
.21  
.03  
.007  
.006  
.3  
3
6
5
6
10  
.5  
1
6
15  
11  
π
.9  
.21  
.03  
.007  
.006  
3
3
π
.9  
5
π
.9  
10  
1
π
.9  
9
T
.45  
.45  
.45  
.45  
18  
12  
2
T
.21  
.03  
.006  
4
T
10  
T
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes (e.g., L2 = GK2LA-S04,  
L1 = GK2LA-R04).  
44  
Cylindrical Style EMI Filters  
JD Series – .690 Dia. – Hermetically Sealed –  
Circuits Available – C, L, π, T  
SPECIFICATIONS  
2
Insertion Loss Per MIL-STD-220, +25°C  
AVX  
P/N  
Current  
AMP  
DC  
50  
150  
KHz  
300  
KHz  
1
MHz  
10  
MHz  
100  
MHz  
1
GHz  
1
CAP  
CKT  
Voltage DCR L. dim KHz  
300 VDC (125 VAC/400Hz*), .3–.36 µF  
JD1LB-304  
JD2LB-S07  
JD2LB-S08  
JD2LB-S10  
JD2LB-S11  
JD2LB-S12  
JD3LB-P07  
JD3LB-P08  
JD3LB-P10  
JD3LB-P11  
JD3LB-P12  
JD4LB-T08  
JD4LB-T09  
JD4LB-T16  
JD4LB-T12  
15  
.5  
1
C
L2  
L2  
L2  
L2  
L2  
π
.3  
.3  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
300  
.008  
.700  
7
13  
6
16  
28  
24  
17  
16  
16  
44  
37  
18  
22  
40  
37  
24  
22  
20  
62  
56  
40  
25  
32  
60  
56  
42  
34  
30  
80  
80  
70  
60  
50  
58  
37  
34  
30  
46  
60  
60  
70  
68  
56  
80  
80  
80  
80  
80  
70  
70  
70  
48  
58  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
70  
.33  
1.060  
1.060  
1.060  
1.060  
1.060  
1.205  
1.205  
1.205  
1.205  
1.205  
1.400  
1.400  
1.400  
1.400  
.3  
.15  
3
.3  
.026  
.013  
.008  
.33  
7
5
.3  
7
10  
.5  
1
.3  
7
.36  
.36  
.36  
.36  
.36  
.3  
14  
π
.15  
3
π
.026  
.013  
.008  
.07  
5
π
10  
1
π
T
6
18  
16  
16  
28  
22  
20  
19  
2
T
.3  
.05  
6
4
T
.3  
.03  
6
10  
T
.3  
.008  
400 VDC (230 VAC/400Hz*), .15–.2 µF  
JD1EB-154  
JD2EB-S07  
JD2EB-S08  
JD2EB-S10  
JD2EB-S11  
JD2EB-S12  
JD3EB-P07  
JD3EB-P08  
JD3EB-P10  
JD3EB-P11  
JD3EB-P12  
JD4EB-T08  
JD4EB-T09  
JD4EB-T16  
JD4EB-T12  
15  
.5  
1
C
L2  
L2  
L2  
L2  
L2  
π
.15  
.15  
.15  
.15  
.15  
.15  
.2  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
400  
.008  
.33  
.700  
5
10  
24  
19  
11  
10  
10  
34  
27  
16  
32  
30  
19  
16  
16  
52  
46  
30  
12  
26  
50  
46  
36  
28  
25  
80  
74  
60  
50  
30  
48  
40  
31  
25  
40  
60  
60  
60  
54  
48  
80  
80  
80  
80  
80  
70  
64  
58  
45  
52  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
60  
70  
70  
70  
70  
70  
70  
80  
80  
80  
80  
80  
70  
70  
70  
70  
1.060  
1.060  
1.060  
1.060  
1.060  
1.205  
1.205  
1.205  
1.205  
1.205  
1.300  
1.300  
1.300  
1.300  
.15  
3
.026  
.013  
.008  
.33  
5
10  
.5  
1
π
.2  
.15  
3
π
.2  
.026  
.013  
.008  
.07  
5
π
.2  
10  
1
π
.2  
T
.15  
.15  
.15  
.15  
12  
10  
10  
25  
18  
16  
15  
2
T
.05  
4
T
.03  
10  
T
.008  
1 Decimal point values indicate capacitance in microfarads.  
Non-decimal point values indicate capacitance in picofarads.  
2 Insertion loss limits are based on theoretical values.  
Actual measurements may vary due to internal capacitor  
resonances and other design constraints.  
*
NOTE: All “L2” circuits are also available as “L1”.  
Insertion loss and other parameters are identical.  
Only the part number changes (e.g., L2 = GK2LA-S04,  
L1 = GK2LA-R04).  
45  
Military Qualified Products  
There have been many questions raised regarding the  
differences between MIL-F-15733 and MIL-F-28861. To clar-  
ify these differences we have incorporated the following  
Analysis Chart which compares the differences between  
these two military specifications.  
ANALYSIS MIL-F-15733 vs. MIL-F-28861  
MIL-F-15733  
MIL-F-28861  
Filter Design/Construction  
Filter Design/  
Construction  
Characteristics  
CASE  
Class B  
Class S  
Standard  
Standard  
Standard  
CAPACITOR  
(Discoidal)  
• Dielectrics  
• K  
Standard  
Special Design  
Special Design  
X7R, Z5U  
2200-10K  
N/A  
BR  
2K max  
+15%, -40%  
Limited Cap/Case Size  
Conservation Design  
BX  
2K max  
• VTL  
+15%, -25% (when design permits)  
Limited Cap/Case Size &  
MIL-C-123 Req’ts Conservative Design  
• Cap Range  
Max Cap/Case Size  
Testing  
Testing  
GROUP A  
MIL-STD-105,  
100% Test  
10%  
100% Test  
Test  
• PDA  
(parts  
1.0% AQL  
None  
Thermal Shock, Burn-in*,  
IR & DWV–2% each test  
Cap, Volt. Drop, Insertion  
Loss -3% max combined  
defective  
allowed)  
Total 10% max  
X-RAY  
None  
MIL-STD-202  
Method 209  
MIL-STD-202  
Method 209  
LEAK TEST  
Condition “A”  
Gross Leak  
Condition “A”  
Gross Leak  
Condition “A”  
Gross Leak  
Condition “C”  
Fine Leak  
PDA 10% max  
PDA 10% max  
BURN-IN  
None generally. A few  
slash sheets require  
1.4 x rated voltage  
160 Hrs. @ 2 x rated  
voltage — Resistor protected  
168 Hrs. (250 Hrs. max) @ 2 x  
rated voltage - Fuse protected  
*PDA .2% max lasts 50 Hrs.  
INSERTION LOSS  
SOLDERABILITY  
1.0% AQL  
None  
100%  
100%  
MIL-STD-202  
Method 208  
5 Samples  
MIL-STD-202  
Method 208  
5 Samples  
46  
Advanced Technology Filters  
Miniature, Subminiature & Microminiature  
APPLICATIONS  
AVXs Miniature filter line breaks the “small” size barrier. These  
ultraminiature products, available as solder-in or screw-in style,  
have case diameters as low as .073". Threaded filters will allow  
substitution, flexibility of placement and simple installation, while  
solder-in parts will provide hermeticity of your microcircuit pack-  
ages. Now, with capacitance values of up to 50,000 pF, C”, “L”  
or “T” circuits, superior insertion loss over on-board  
filtering, variety of ultra small and lightweight sizes, you can meet  
all “mission critical” objectives. Worlds smallest and most  
complete miniature EMI filter line is especially well suited for  
microwave industry, medical electronics, avionics instrumenta-  
tion, satellites or other applications where space is at premium.  
FEATURES  
Worlds smallest filters, a “must”  
1
2
1
2
for avionics and space industry.  
Tiny size for miniaturization of  
microwave and telecom equip-  
ment.  
3
4
6
3
Hardware real-estate and weight  
4
6
reduction of up to 60%.  
Most complete product offering  
3
with solder-in or bolt installation.  
3
5
Discoidal capacitor design to  
meet cost/reliability goals.  
1 – LEAD  
2 – CASE  
3 – EPOXY  
4 – SOLDER 5 – GLASS SEAL 6 – CAPACITOR  
NOTE: Torque limiting tool with custom adapter available upon request.  
SPECIFICATIONS  
Mechanical  
Electrical  
Material: Solder-In: Case and Leads:  
Kovar per ASTM F-15  
Capacitance: measured @ 1KHz and .1 to 1 VRMS, 25°C  
Dissipation factor: 3% max.  
Insulation resistance: 10,000 Mohms min. @ 25°C, WVDC;  
1000 Mohms min. @ 125°C, WVDC  
DC resistance: .02 ohm max.  
Dielectric withstanding voltage: 200% of WVDC min.  
Screw-in: Case: CRS per ASTM-108  
Leads: Copper clad steel  
(1-64 & 2-56 Thd.)  
Copper (4-40 & 8-36 Thd.)  
Finish: Solder-in: Gold per Mil-G-45204  
Screw-in: Gold per Mil-G-45204 (standard)  
Silver optional (1-64 & 2-56 Thd.)  
Silver per QQ-S-365 (standard)  
Gold optional (4-40 & 8-36 Thd.)  
47  
EMI Filters  
Miniature, Subminiature & Microminiature  
SOLDER-IN STYLE, C TYPE  
SPECIFICATIONS  
MINIMUM NO LOAD INSERTION LOSS  
(db) @ 25°C PER MIL-STD-220  
AVX  
Part  
Voltage Min. Current  
Vdc  
(V)  
Cap  
(pF)  
Idc  
(A)  
10  
30  
100 300  
1
10  
Number  
MHZ MHZ MHZ MHZ GHZ GHZ  
ZXS1C3-502  
ZXS1C3-272  
ZXS1A3-152  
ZXS1A3-102  
ZXS1A3-501  
ZXS1A3-251  
ZXS1B3-101  
ZXS1B3-500  
ZXS1B3-250  
ZXS1B3-100  
ZXS1B3-5R0  
ZXS1B3-000  
50  
50  
5000  
2700  
1500  
1000  
500  
250  
100  
50  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
1.5  
15  
10  
5
4
22  
17  
12  
10  
35  
30  
25  
22  
15  
10  
3
45  
38  
33  
30  
25  
17  
10  
6
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.075 .002  
.075 .005  
(1.90 0.05ꢀ  
(1.90 0.13ꢀ  
100  
100  
100  
100  
200  
200  
200  
200  
200  
GLASS  
SEAL  
.008 .003  
(0.20 0.08ꢀ  
.016 .002  
(0.41 0.05ꢀ  
1
.030 (0.76ꢀ  
MAX. POTTING  
MENISCUS  
25  
1
.100 .020  
(2.54 0.5ꢀ  
10  
5
.275 .020  
(6.98 0.5ꢀ  
.093 .005  
(2.36 0.13ꢀ  
200 2 max.  
ZYS1C3-273  
ZYS1C3-103  
ZYS1A3-502  
ZYS1A3-272  
ZYS1A3-152  
ZYS1B3-102  
ZYS1B3-501  
ZYS1B3-251  
ZYS1B3-101  
ZYS1B3-500  
ZYS1B3-250  
ZYS1B3-100  
ZYS1B3-5R0  
ZYS1B3-000  
50  
50  
27000  
10000  
5000  
2700  
1500  
1000  
500  
250  
100  
50  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
30  
20  
15  
10  
5
37  
27  
22  
17  
12  
10  
43  
37  
35  
30  
25  
22  
15  
10  
3
53  
47  
45  
38  
33  
30  
25  
17  
10  
6
65  
60  
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
70  
65  
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.100 .005  
.105 .002  
(2.54 0.13ꢀ  
(2.67 0.05ꢀ  
GLASS  
SEAL  
100  
100  
100  
200  
200  
200  
200  
200  
200  
200  
200  
.008 .003  
(0.20 0.08ꢀ  
.020 .002  
(0.51 0.05ꢀ  
4
.030 (0.76ꢀ  
MAX. POTTING  
MENISCUS  
1
.125 .020  
(3.18 0.5ꢀ  
25  
1
10  
.125 .005  
(3.18 0.13ꢀ  
.350 .020  
(8.89 0.5ꢀ  
5
200 2 max.  
ZZS1C3-503  
ZZS1C3-273  
ZZS1A3-103  
ZZS1B3-502  
ZZS1B3-272  
ZZS1B3-152  
ZZS1B3-102  
ZZS1B3-501  
ZZS1B3-251  
ZZS1B3-101  
ZZS1B3-500  
ZZS1B3-250  
ZZS1B3-100  
ZZS1B3-5R0  
ZZS1B3-000  
50  
50  
50000  
27000  
10000  
5000  
2700  
1500  
1000  
500  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
35  
30  
20  
15  
10  
5
40  
37  
27  
22  
17  
12  
10  
45  
43  
37  
35  
30  
25  
22  
15  
10  
3
55  
53  
47  
45  
38  
33  
30  
25  
17  
10  
6
70  
65  
60  
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
70  
70  
65  
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.120 .002  
.110 .005  
(3.05 0.05ꢀ  
(2.79 0.13ꢀ  
100  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
GLASS  
SEAL  
.008 .003  
(0.20 0.08ꢀ  
.030 .002  
(0.76 0.05ꢀ  
4
250  
100  
.030 (0.76ꢀ  
MAX. POTTING  
MENISCUS  
50  
1
.140 .020  
(3.56 0.5ꢀ  
25  
1
10  
5
.400 .020  
(10.16 0.5ꢀ  
.140 .005  
(3.56 0.13ꢀ  
200 2 max.  
NOTE: Dimensions in inches (millimeters).  
CONFIGURATION OPTIONS  
Terminals  
Glass Seal  
Schematic  
"C" STANDARD  
Opposite Flange End – Standard  
At Flange End – Reversed  
GLASS  
SEAL  
END  
Change 3rd letter of part number from  
“S” to “R” for reversed configuration  
"L1" AVAILABLE  
WITH EXTENDED  
CASE LENGTH  
Flattened at Glass Seal End Only  
48  
EMI Filters  
Miniature, Subminiature & Microminiature  
1-64  
SCREW-IN STYLE, C TYPE  
THD.  
2-56  
SPECIFICATIONS  
MINIMUM NO LOAD INSERTION LOSS  
(db) @ 25°C PER MIL-STD-220  
AVX  
Part  
Voltage Min. Current  
Vdc  
(V)  
Cap  
(pF)  
Idc  
(A)  
10  
30  
100 300  
1
10  
Number  
MHZ MHZ MHZ MHZ GHZ GHZ  
SXD1C3-502  
SXD1C3-272  
SXD1A3-152  
SXD1A3-102  
SXD1A3-501  
SXD1A3-251  
SXD1B3-101  
SXD1B3-500  
SXD1B3-250  
SXD1B3-100  
SXD1B3-5R0  
50  
50  
5000  
2700  
1500  
1000  
500  
250  
100  
50  
3
3
3
3
3
3
3
3
3
3
3
15  
10  
5
22  
17  
12  
10  
35  
30  
25  
22  
15  
10  
3
45  
38  
33  
30  
25  
17  
10  
6
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.080 .005  
.021 .001  
(2.03 0.13ꢀ  
(0.53 0.03ꢀ  
100  
100  
100  
100  
200  
200  
200  
200  
200  
1.5 MAX. IMPERFECT THD.  
NO UNDERCUT  
.018 .002  
(0.46 0.05ꢀ  
4
#1z64UNCz2A THD.  
.020 .003  
.090 .005  
(0.51 0.08ꢀ  
(2.29 0.13ꢀ  
1
.180 .020  
(4.57 0.5ꢀ  
.073 .003  
25  
1
.190 .020  
(4.83 0.5ꢀ  
(1.85 0.08ꢀ  
10  
MOUNTING TORQUE: 7 1 ꢁoz-i  
5
SYD1C3-502  
SYD1C3-272  
SYD1A3-152  
SYD1A3-102  
SYD1A3-501  
SYD1A3-251  
SYD1B3-101  
SYD1B3-500  
SYD1B3-250  
SYD1B3-100  
SYD1B3-5R0  
50  
50  
5000  
2700  
1500  
1000  
500  
250  
100  
50  
3
3
3
3
3
3
3
3
3
3
3
15  
10  
5
22  
17  
12  
10  
35  
30  
25  
22  
15  
10  
3
45  
38  
33  
30  
25  
17  
10  
6
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.080 .005  
.021 .001  
(2.03 0.13ꢀ  
(0.53 0.03ꢀ  
.018 .002  
100  
100  
100  
100  
200  
200  
200  
200  
200  
1.5 MAX. IMPERFECT THD.  
NO UNDERCUT  
(0.46 0.05ꢀ  
4
#2z56UNCz2A THD.  
.020 .003  
(0.51 0.08ꢀ  
.090 .005  
(2.29 0.13ꢀ  
.180 .020  
(4.57 0.5ꢀ  
1
.086 .003  
(2.18 0.08ꢀ  
.190 .020  
(4.83 0.5ꢀ  
25  
1
10  
MOUNTING TORQUE: 14 2 ꢁoz-i  
5
.110 .005  
SZD1C3-273  
SZD1C3-103  
SZD1A3-502  
SZD1A3-272  
SZD1A3-152  
SZD1B3-102  
SZD1B3-501  
SZD1B3-251  
SZD1B3-101  
SZD1B3-500  
SZD1B3-250  
SZD1B3-100  
SZD1B3-5R0  
50  
50  
27000  
10000  
5000  
2700  
1500  
1000  
500  
250  
100  
50  
5
5
5
5
5
5
5
5
5
5
5
5
5
30  
20  
15  
10  
5
37  
27  
22  
17  
12  
10  
43  
37  
35  
30  
25  
22  
15  
10  
3
53  
47  
45  
38  
33  
30  
25  
17  
10  
6
65  
60  
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
70  
65  
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.021 .001  
(.53 0.03ꢀ  
(2.79 0.13ꢀ  
1.5 MAX. IMPERFECT THD.  
NO UNDERCUT  
100  
100  
100  
200  
200  
200  
200  
200  
200  
200  
200  
.024 .002  
(0.61 0.05ꢀ  
#2z56UNCz2A THD.  
4
.020 .003  
(0.51 0.08ꢀ  
.090 .005  
(2.29 0.13ꢀ  
1
.260 .020  
(6.60 0.5ꢀ  
25  
1
.105 .005  
.240 .020  
(6.10 0.5ꢀ  
(2.67 0.13ꢀ  
10  
MOUNTING TORQUE: 14 2 ꢁoz-i  
5
NOTE: Dimensions in inches (millimeters). Torque limiting tool with custom adapter required for proper installation (see page 2)  
CONFIGURATION OPTIONS  
Terminals  
Mounting  
Schematic  
.090 Thd. Length Standard,  
intended for tapped hole  
feed through mounting  
"C" STANDARD  
THD.  
END  
"L1"  
.140 Thd. Length available  
for through hole mounting  
with hex nut  
AVAILABLE  
WITH EXTENDED  
CASE LENGTH  
“SZD” and “SYD” Parts Only  
Slotted terminal available  
on one or both sides  
"T"  
49  
EMI Filters  
Miniature, Subminiature & Microminiature  
4-40  
SCREW-IN STYLE, C TYPE  
THD.  
8-36  
SPECIFICATIONS  
MINIMUM NO LOAD INSERTION LOSS  
(db) @ 25°C PER MIL-STD-220  
AVX  
Part  
Voltage Min. Current  
Vdc  
(V)  
Cap  
(pF)  
Idc  
(A)  
1
10  
100  
300  
1
10  
Number  
MHZ MHZ MHZ MHZ GHZ GHZ  
SA1C3-503  
SA1A3-273  
SA1A3-103  
SA1B3-502  
SA1B3-272  
SA1B3-152  
SA1B3-102  
SA1B3-501  
SA1B3-251  
SA1B3-101  
SA1B3-500  
SA1B3-250  
SA1B3-100  
SA1B3-5R0  
50  
100  
100  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
50000  
27000  
10000  
5000  
2700  
1500  
1000  
500  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
15  
10  
4
35  
30  
20  
15  
10  
5
45  
43  
37  
35  
30  
25  
22  
15  
10  
3
55  
53  
47  
45  
38  
33  
30  
25  
17  
10  
6
70  
65  
60  
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
70  
70  
65  
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.030 MAX.(0.762ꢀ  
UNDERCUT  
.125 .003  
(3.18 0.08ꢀ  
#4z40UNCz2A THD.  
.075 .005  
(1.91 0.13ꢀ  
.030 MAX.(0.762ꢀ  
IMPERFECT THD.  
4
ø.032 .002  
(0.81 0.05ꢀ  
.140 .005  
(3.56 0.13ꢀ  
250  
100  
.225 .020  
(5.72 0.50ꢀ  
50  
1
.315 .020  
(8.00 0.50ꢀ  
25  
1
10  
MOUNTING TORQUE: 32 4 ꢁoz-i  
5
SA1C1-104  
SA1A1-503  
SA1A1-273  
SA1B1-103  
SA1B1-502  
SA1B1-272  
SA1B1-102  
SA1B1-501  
SA1B1-251  
SA1B1-101  
SA1B1-500  
SA1B1-250  
SA1B1-100  
SA1B1-5R0  
50 100000  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
20  
15  
10  
4
40  
35  
30  
20  
15  
10  
4
50  
45  
43  
37  
35  
30  
22  
15  
10  
3
60  
55  
53  
47  
45  
38  
30  
25  
17  
10  
6
70  
70  
65  
60  
55  
50  
42  
35  
27  
20  
15  
10  
3
70  
70  
70  
65  
60  
60  
55  
50  
40  
30  
25  
22  
20  
15  
.030 MAX.(0.762ꢀ  
UNDERCUT  
100  
50000  
27000  
10000  
5000  
2700  
1000  
500  
.154 (3.91ꢀ  
.159 (4.04ꢀ  
100  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
#4z40UNCz2A THD.  
.120  
(3.05ꢀ  
.030 MAX.(0.762ꢀ  
IMPERFECT THD.  
ø.026 .002  
(0.66 0.05ꢀ  
250  
.220 .010  
(5.59 0.25ꢀ  
100  
50  
1
.240 .031  
(6.10 0.79ꢀ  
25  
1
.360 .031  
(9.14 0.79ꢀ  
10  
MOUNTING TORQUE: 32 4 ꢁoz-i  
5
SZ1C1-503  
SZ1A1-273  
SZ1A1-103  
SZ1B1-502  
SZ1B1-272  
SZ1B1-152  
SZ1B1-102  
SZ1B1-501  
SZ1B1-251  
SZ1B1-101  
SZ1B1-500  
SZ1B1-250  
SZ1B1-100  
SZ1B1-5R0  
50  
100  
100  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
200  
50000  
27000  
10000  
5000  
2700  
1500  
1000  
500  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
15  
10  
4
35  
30  
20  
15  
10  
5
45  
43  
37  
35  
30  
25  
22  
15  
10  
3
55  
53  
47  
45  
38  
33  
30  
25  
17  
10  
6
70  
65  
60  
55  
50  
45  
42  
35  
27  
20  
15  
10  
3
70  
70  
65  
60  
60  
55  
55  
50  
40  
30  
25  
22  
20  
15  
.015 MAX.(0.38ꢀ  
UNDERCUT  
.187 .010  
(4.75 0.25ꢀ  
.040 .005  
#8z36UNFz2A THD.  
(1.02 0.13ꢀ  
.025 MAX.(0.64ꢀ  
IMPERFECT THD.  
4
ø.030 .002  
(0.76 0.05ꢀ  
.090 .010  
(2.29 0.25ꢀ  
250  
100  
.240 .020  
(6.10 0.50ꢀ  
50  
1
.360 .020  
(9.14 0.50ꢀ  
25  
1
10  
MOUNTING TORQUE: 64 4 ꢁoz-i  
5
NOTE: Dimensions in inches (millimeters).  
Leads  
Schematic  
CONFIGURATION OPTIONS  
"L1" AVAILABLE  
FOR "SZ" P/N  
THD.  
Custom lead lengths and materials available  
END  
Chamfered or rounded lead tips for mating with connectors  
"L2" AVAILABLE  
FOR "SA" P/N  
THD.  
END  
50  
Advanced Technology Filters  
Hermetic High Temperature Solder-Ins  
AVX FILTERS  
SOLDER-IN STYLE FILTER  
STANDARD  
CONSTRUCTION  
HERMETIC  
CONSTRUCTION  
DISCOIDAL  
CAPACITOR  
EPOXY  
FINAL  
GLASS SEAL  
HOUSING  
HIGH TEMP  
METALLURGICAL  
BOND  
CONDUCTIVE  
POLYMER  
SEALING GLASS  
LEAD  
EPOXY  
ADHESIVE  
GENERAL DESCRIPTION  
FEATURES  
SPECIFICATIONS  
• Operating temperature range:  
-55°C to 200°C  
These are high frequency filters in space  
saving solder-in designs which will oper-  
ate under harsh environments and meet  
the high reliability requirements of MIL-F-  
28861 without outgassing. AVX Filters  
Corporation has designed a filter which  
sets a new standard for the industry.  
These feed-thru filters are constructed  
with hi-rel semiconductor materials and  
rugged MLC discoidal capacitors. They  
are also manufactured at high tempera-  
tures (>500°C) without fluxes, epoxies or  
other polymers, thus eliminating failure  
mechanisms associated with conven-  
tional solder-ins. These solder-ins with-  
stand short temperature excursions as  
high as 400°C, and can actually be  
operated at temperatures to 200°C.  
Available either as discrete packages in  
standard case sizes or as multiple filter  
brackets, all have hermetic glass-to-  
metal seals on both ends.  
• Standard sizes  
• Epoxy free construction  
• Hermetic on both ends  
• MIL-C-123 Discoidal Capacitor  
• 400°C installation  
• 400°C rated installation  
temperature  
• Voltage range: 50 to 300 VDC/up  
to 200 VAC  
• Capacitance Range:  
10 pF to 1.4 mF  
STYLE  
• Discrete, hermetically sealed  
solder-in filters  
-7  
3
• Hermeticity: 1 x 10 ATM cm /sec  
minimum  
AVX Filters Series*  
• Rated current: up to 25 amps  
• Circuits: C  
• Designed to meet or exceed  
requirements of MIL-F-28861  
WQ: .400" Case Diameter  
XQ: .250" Case Diameter  
YQ: .165" Case Diameter  
ZQ: .128" Case Diameter  
*Equivalent to MIL-F-28861  
Series FS70, FS71, FS72, FS73 and FS74  
CHARACTERISTICS  
• Custom design available  
• Multiple filter arrays  
• Rugged monolithic ceramic  
capacitor construction  
- Custom bracket housing  
employing discrete hermetic filters  
• Capacitor attached with solder-  
less, fluxless, high temperature  
metallurgical bond  
- Custom rugged bracket housings  
with inter-rated hermetic filtered  
feed-thrus  
• Hermetic glass-to-metal seals on  
both ends  
• No epoxies, resins or polymers  
to outgas or degrade in harsh  
environments  
51  
Filter Plates  
Custom Designed Filter Plates  
AVX solder-in style filters are designed to be soldered into  
bulkheads, plates, and/or assemblies similar to those depict-  
ed in the photograph above. AVX Filters will design and  
fabricate bracket arrays to your specific requirements or  
Source Control Drawing.  
AVX Filters will design and fabricate filter brackets:  
To your specific requirements.  
• 100% tested and burned-in prior to delivery.  
• Which utilize the superior solder-in style filters (Series  
ZZ, ZS, XS, WS) capable of withstanding installation  
temperatures up to 300°C, or  
The mechanical stress and extreme temperatures encoun-  
tered by the filters during installation into assemblies is  
normally the harshest environment they will experience dur-  
ing the life of a system.  
• Which utilize the new hermetic solder-in when harsh  
environments or other requirements call for true hermetic  
components.  
If you are buying the discrete filters and doing the installation  
in house you should seriously consider:  
A custom designed filter bracket will help:  
To reduce your yield losses.  
• How much is it costing you to purchase burned-in  
and fully tested filters only to damage them during the  
installation procedure?  
To eliminate filter rework in assemblies.  
To reduce system assembly costs.  
To minimize your inventory.  
• How much is it costing you to test for component  
integrity after installation?  
For additional information on filter brackets or design assis-  
tance, contact the AVX Filters Application Engineering  
Department.  
• How much is it costing you to rework damaged filter  
assemblies at your labor rates and overhead?  
• How much is it costing you to contend with low assembly  
yields?  
• How much is it costing you to inventory a larger number  
of line items than necessary?  
52  
Filter Plates  
SPECIFICATIONS AND CAPABILITIES  
The individual filters can be specified with MIL-F-15733,  
AVX Filters Level R, MIL-F-28861 Class B or Class S reliability  
levels (see Reliability section of catalog for description) or  
as dictated by the customers Source Control Drawing or  
specific application.  
Size:  
Basically unlimited. The physical size is determined by the  
quantity and style (WS, YS, etc.) of filters selected.  
Construction:  
Hand fabricated or machined metallic (steel, brass, alu-  
minum, or other alloys) bracket.  
Bracket Assembly:  
The complete bracket assembly can be tested to similar  
requirements as the individual filters.  
Finish Options:  
The bracket can be electro-tin plated, gold plated, anodized,  
chem film, painted, or as specified by the customer.  
Hermeticity:  
Some brackets are more cost effective and volumetrically  
efficient as non-hermetic assemblies where application  
allows.  
The individual filter terminals can be gold plated or solder  
coated.  
Electrical Characteristics:  
Most brackets can be manufactured to provide a hermetic  
barrier (glass-to-metal seal) on one side of the assembly.  
The following electrical parameters are governed by the  
individual types of filters selected or as dictated by the  
customers Source Control Drawing or specific application.  
There are true hermetic brackets, glass-to-metal seals on  
both sides available, but only in a capacitive circuit.  
Voltage Rating  
Current Rating  
Insulation Resistance  
DWV  
Installation Temperature:  
Filter bracket assemblies are capable of withstanding instal-  
lation temperatures up to 300°C.  
DC Resistance  
Insertion Loss  
Operating Temperature  
Additional Assembly Operations:  
Wiring harnesses or flex cables can be attached to the  
complete assembly and completely tested prior to delivery.  
Discrete Components:  
Environmental Considerations:  
Capable of meeting the applicable portions of MIL-STD-202  
and MIL-STD-810.  
The number of components, individual circuits, can range  
from 2 to 200 filters of different styles and/or electrical  
characteristics (WS, YS, etc.) and can be combined to form  
a single custom assembly.  
Discrete Component Testing:  
QPL and/or QPL equivalents can be utilized.  
Discoidal capacitors can be designed and tested to the  
requirements of MIL-C-123.  
53  
How To Order  
Notes  
NOTE 1:  
NOTE 4:  
CAPACITANCE CODE  
VOLTAGE CODES AND FILTER  
VOLTAGE RATINGS  
All AVX Filters part numbers, with exception of certain cylin-  
drical styles, show total filter capacitance using the 3-digit  
EIA code. The first two digits are significant: the last digit is  
the multiplier.  
IMPORTANT: please contact AVX Filters Applications  
Engineering when considering DC-rated filter designs for  
possible use in AC applications. As a general rule, DC  
designs may be derated for AC applications. Let us assist  
you.  
Example:  
103=10000 picofarads  
125=1200000 picofarads  
(1.2 microfarads)  
The voltage code letters must be selected consistent with  
the capabilities as outlined in the product selection tables for  
a given filter type. It is important to note that the same code  
letter may signify a different voltage rating depending upon  
filter type. For example: the “L” code signifies a 200  
VDC/125 VAC rating for a bolt-style filter, but it describes a  
300 VDC/125 VAC design when applied to a JD-style filter.  
It is important to note that π filters and multisection filters are  
described using the EIA code from the standpoint of total  
capacitance. Capacitance is understood to be specified  
as “guaranteed minimum value” (GMV) unless otherwise  
specified. AVX Filters can supply 20% or other specified  
tolerances at an additional charge. Contact AVX Filters  
Applications Engineering for further information.  
NOTE 5:  
NOTE 2:  
TERMINAL AND LEADWIRE CODES  
RELIABILITY CODES  
Non-standard terminal configurations including special  
materials or finishes are available. Please indicate a descrip-  
tion and/or outline drawing when requesting a non-standard  
terminal (code “3”).  
The customer must select the reliability code to be consis-  
tent with the filter application. As a minimum, all catalog  
filters are available as R-level designs.  
Options:  
“-” signifies an R-level filter design without the optional  
R-level high-rel screening  
NOTE 6:  
SPECIAL INFORMATION FOR  
CYLINDRICAL STYLE FILTERS  
“R” R-level design with optional R-level high-rel screening  
also specified  
L-section filter designs must be specified with regard to  
“standard” or “reverse” configuration. The L-section filter is  
normally utilized with the capacitor on the high impedance  
side of the circuit and the inductor looking into the low  
impedance side. Compact filter types such as the BK2  
or CK2 button filters with ferrite bead inductors are only  
supplied with the bead assembled into the threaded end.  
GK2 and JD2 L-section filters are normally supplied with  
a schematic or other marking to indicate location of the  
inductor.  
“B” Class B design with Group A screening per M28861 for  
Class B filters  
“S” Class S design with Group A screening per M28861 for  
Class S (space grade) filters  
Please refer to the catalog section on Reliability for additional  
information on how to select reliability codes.  
NOTE 3:  
SPECIAL DESIGN CODE  
AC-rated catalog designs incorporate reduced values of  
capacitance to limit reactive current heating (and subsequent  
filter temperature rise) to safe levels. Do not specify a  
DC-rated filter with larger capacitance for an AC application  
without contacting AVX Filters Applications Engineering.  
(ASSIGNED BY AVX FILTERS)  
A special suffix to the standard part number will be added by  
AVX Filters Applications Engineering to describe special  
designs or designs that are controlled by customer specifi-  
cations. It is important to note that even in those instances  
where a customer drawing describes a standard catalog  
design it is AVX Filters policy to assign a special part number  
to the customer drawing for configuration control.  
54  
How To Order  
Part Number Construction  
SOLDER-IN STYLE  
Z
S
2
C
2
1
0
3
H
X
X
Glass Seal  
Orientation  
S - Standard  
R - Reverse  
Q - Hermetic  
(Glass Both  
Sides)  
N - No Glass  
(Epoxy Both  
Sides)  
Voltage  
A - 100 VDC  
B - 200 VDC  
C - 50 VDC  
E - 400 VDC/  
230 VAC  
F - 500 VDC  
G - 1000 VDC  
K - 250 VDC  
L - 300 VDC or  
200 VDC/  
Reliability  
Code  
Use “H”  
to specify  
Hi-  
Temperature  
(300°C)  
Rated  
Design  
Y - Solder  
See Notes  
Basic Style  
Circuit  
0 - Non-Feed  
Thru Post  
1 - Feed Thru  
2 - L-Section  
3-Digit  
Capacitor  
Code  
Special  
Design  
(Customer  
DWG. or QPL  
Designation)  
Lead  
2 - Nickel Iron  
(Standard)  
3 - Special  
4 - Aluminum  
zz  
Z
Y
115 VAC  
M - 350 VDC  
N - 70 VDC  
(In pF)  
X
W
Compatible with  
seating flange  
(Std. Lead)  
5 - Aluminum  
Compatible with  
seating flange  
(Special Lead)  
D - Aluminum  
Compatible with  
centering flange  
(Std. Lead)  
E - Aluminum  
Compatible with  
Centering flange  
(Special Lead)  
F - Aluminum  
Compatible with  
Special Design  
BOLT STYLE  
SB  
2
A
1
1
0
3
X X  
Reliability  
Code  
(-See Note 2)  
Special Design  
(-See Note 3)  
Circuit  
1 - Feedthru (C)  
2 - L-Section (L)  
Voltage  
A - 100 VDC  
B - 200 VDC  
3 - PI-Section (π) C - 50 VDC  
F - 500 VDC  
G - 1000 VDC  
H - 150 VDC  
J - 600 VDC  
K - 250 VDC  
L - 200 VDC/  
Basic Style  
SA-4-40  
SG-6-32  
SB-8-32  
SM-8-32  
SH-10-32 Epoxy Sealed  
SJ-12-28 Epoxy Sealed  
SC-12-32 Epoxy Sealed (.187 Hex)  
SP-12-32 Epoxy Sealed (.250 Hex)  
SN-12-32 Hermetic Sealed  
SL-1/4-28 Epoxy Sealed  
3-Digit Capacitor  
Code  
(-See Note 1)  
Terminal  
1 - Copper  
2 - Steel  
3 - Special Lead  
Design  
4 - Beryllium  
Copper  
125 VAC  
M - 350 VDC  
N - 70 VDC  
Epoxy Sealed  
Epoxy Sealed  
Epoxy Sealed  
Hermetic Sealed  
SD-5/16-24 Epoxy Sealed  
SF-5/16-32 Epoxy Sealed  
55  
How To Order  
Part Number Construction  
CYLINDRICAL STYLE  
G
K
2
A
A
S07  
XX  
Thread  
Length  
A - .187"  
B - .312"  
Reliability  
Code  
Special Design  
(Customer DWG.  
or QPL  
Basic Style  
A - Button Type  
(.410 Dia.)  
B - Button Type  
(.375 Dia.)  
C - Extended  
Button  
G - .375" Dia.  
J - .690" Dia.  
H - .410" Dia.  
F - .250" Dia.  
Q - Special  
Thread Type  
Circuit  
Voltage  
K - 1/4-28 Herm 0 - Feedthru Lead A - 100 VDC  
(See Notes)  
Seal  
L - 1/4-28 Epoxy  
Seal  
M - 8-32 Herm  
Seal  
N - 12-32 Herm  
Seal  
(without  
Capacitor)  
1 - Feedthru  
Capacitor  
2 - L-Section  
Filter  
B - 200 VDC  
C - 50 VDC  
E - 400 VDC/  
230 VAC  
F - 500 VDC  
G - 1000 VDC  
H - 150 VDC  
J - 600 VDC  
K - 250 VDC  
L - 200 VDC/  
125 VAC  
Designation)  
Feedthrus &  
BK2, CK2  
All Other  
Circuit Types  
X X X  
Capacitance In  
Picofarads  
3 - PI Filter  
4 - T-Section  
T - 1/4-28  
Post Terminal 5 - Double  
(Both Ends)  
V - 1/4-28 Post 6 - Five Element  
and Flag  
Terminal  
X - 1/4-28 Hex  
Adaptor  
Current Rating  
L-Section  
Circuit  
Code  
Current  
S - Standard L  
(Inductor at  
Thread End)  
R - Reverse L  
(Capacitor at  
Thread End)  
P - PI-Circuit  
M - Multi  
01  
02  
03  
04  
05  
06  
07  
08  
09  
10  
11  
12  
16  
17  
18  
19  
.06 AMP  
Cap Input  
7 - Five Element  
IND Input  
8 - Special Ckt.  
Design  
(Except JD  
Series  
300 VDC/  
.1  
.15  
.25  
.3  
.45  
.5  
1
2
3
5
10  
4
6
125 VAC)  
M - 350 VDC  
N - 70 VDC  
Section  
T - T Circuit  
.75  
1.5  
Please contact the factory for Filter Plates  
and other custom product part numbers.  
NOTICE: Specifications are subject to change without notice. Contact your nearest AVX Sales Office for the latest specifications. All statements, information and  
data given herein are believed to be accurate and reliable, but are presented without guarantee, warranty, or responsibility of any kind, expressed or implied.  
Statements or suggestions concerning possible use of our products are made without representation or warranty that any such use is free of patent infringement  
and are not recommendations to infringe any patent. The user should not assume that all safety measures are indicated or that other measures may not be  
required. Specifications are typical and may not apply to all applications.  
56  
USA  
AVX Myrtle Beach, SC  
Corporate Offices  
AVX North Central, IN  
AVX Southwest, AZ  
Tel: 480-539-1496  
FAX: 480-539-1501  
AVX Southeast, GA  
Tel: 404-608-8151  
FAX: 770-972-0766  
Tel: 317-848-7153  
FAX: 317-844-9314  
Tel: 843-448-9411  
FAX: 843-448-1943  
AVX Mid/Pacific, MN  
Tel: 952-974-9155  
FAX: 952-974-9179  
AVX South Central, TX  
AVX Canada  
Tel: 905-564-8959  
FAX: 905-564-9728  
AVX Northwest, WA  
Tel: 360-699-8746  
FAX: 360-699-8751  
Tel: 972-669-1223  
FAX: 972-669-2090  
EUROPE  
AVX Limited, England  
AVX S.A., France  
Tel: ++33 (1) 69-18-46-00  
FAX: ++33 (1) 69-28-73-87  
AVX srl, Italy  
Tel: ++390 (0)2 614-571  
FAX: ++390 (0)2 614-2576  
European Headquarters  
Tel: ++44 (0) 1252-770000  
FAX: ++44 (0) 1252-770001  
AVX GmbH, Germany  
Tel: ++49 (0) 8131-9004-0  
FAX: ++49 (0) 8131-9004-44  
AVX Czech Republic  
Tel: ++420 465-358-111  
FAX: ++420 465-323-010  
AVX/ELCO, England  
Tel: ++44 (0) 1638-675000  
FAX: ++44 (0) 1638-675001  
ASIA-PACIFIC  
AVX/Kyocera, Singapore  
Asia-Pacific Headquarters  
AVX/Kyocera, Taiwan  
Tel: (886) 2-2698-8778  
FAX: (886) 2-2698-8777  
Kyocera, Japan - KDP  
Tel: (81) 75-604-3424  
FAX: (81) 75-604-3425  
Tel: (65) 6286-7555  
FAX: (65) 6488-9880  
AVX/Kyocera, Shanghai, China  
AVX/Kyocera, Malaysia  
AVX/Kyocera, Hong Kong  
Tel: 86-21 6886 1000  
FAX: 86-21 6886 1010  
Tel: (60) 4-228-1190  
FAX: (60) 4-228-1196  
Tel: (852) 2-363-3303  
FAX: (852) 2-765-8185  
AVX/Kyocera, Tianjin, China  
Elco, Japan  
Tel: 86-22 2576 0098  
FAX: 86-22 2576 0096  
Tel: 045-943-2906/7  
FAX: 045-943-2910  
AVX/Kyocera, Korea  
Tel: (82) 2-785-6504  
FAX: (82) 2-784-5411  
Kyocera, Japan - AVX  
Tel: (81) 75-604-3426  
FAX: (81) 75-604-3425  
Contact:  
A KYOCERA GROUP COMPANY  
http://www.avxcorp.com  
S-USM5M104-R  

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XR2L2S104H

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