NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
1 of 13 E
AUTHORIZED BY DATE
Latch & Lock
C. Martinez 16 April 08
CLASSIFICATION
UNRESTRICTED
Copyright FCI
Form E-3334
Rev F
GS-01-001
1.0 OBJECTIVE
This specification defines the performance, test, quality, and reliability requirements of the Latch & Lock as
well as Lead Free product that meets the requirement of the European Union Directives of Restriction for
Hazardous Substances (Directive 2002/95/EC).
2.0 SCOPE
This specification is applicable to the termination characteristics of the Latch & Lock family of products which
provides a signal to signal and shield to ground termination system between a round cable and printed
circuit board.
3.0 GENERAL
This document is composed of the following sections:
Paragraph Title
1.0 OBJECTIVE
2.0 SCOPE
3.0 GENERAL
4.0 APPLICABLE DOCUMENTS
5.0 REQUIREMENTS
5.1 Qualification
5.2 Material
5.3 Finish
5.4 Design and Construction
6.0 ELECTRICAL CHARACTERISTICS
7.0 MECHANICAL CHARACTERISTICS
8.0 ENVIRONMENTAL CONDITIONS
9.0 QUALITY ASSURANCE PROVISIONS
9.1 Equipment Calibration
9.2 Inspection Conditions
9.3 Sample Quantity And Description
9.4 Qualification Testing
9.5 Requalification Testing
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
2 of 13 E
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CLASSIFICATION
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Form E-3334
Rev F
GS-01-001
4.0 APPLICABLE DOCUMENTS
4.1 Specifications
4.1.1 Engineering drawings
4.1.2 QAP
4.1.3 Process drawings
4.2 Military Standards
4.2.1 MIL-STD-202F: Test methods for electronic and electrical component parts
4.2.2 MIL-M-20693: Glass filled nylon
4.2.3 MIL-G-45204: Gold plating (electro-deposit)
4.2.4 MIL-P-81728A: Sn-Pb plating
4.2.5 MIL-STD-1344A: Test methods for electrical connectors
4.3 Federal Specifications
4.3.1 QQ-N-290: Nickel plating (electro-deposited).
4.3.2 QQ-N-533: Beryllium copper alloy strip.
4.4 Other Standards and Specifications
4.4.1 UL-94: Flammability
4.4.2 ASTM B-122: Copper Nickel Alloy
4.4.3 ASTM B-36: Brass
4.4.4 ASTM B-103: Phosphor Bronze
4.4.5 ASTM B-159: Phosphor Bronze
4.5 FCI Specifications
4.5.1 BUS-12-099: MINI PV Contact with spot of gold
4.5.2 BUS-12-050: BERGSTIK
4.6 FCI Lab Reports - Supporting Data
4.6.1 EL-90-04-008: Test Group 4 and 5
4.6.2 EL-91-02-001: Test Groups 1 thru 3
4.6.3 EL-91-02-001A: Test Groups 1 thru 3
4.6.4 EL-88-01-033: Test Group 6
4.6.5 11/08/89 Memo: Test Group 7
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
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CLASSIFICATION
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Rev F
GS-01-001
5.0 REQUIREMENTS
5.1 Qualification
Connectors furnished under this specification shall be capable of meeting the qualification test
requirements specified herein.
5.2 Material
The material for each part shall be as specified herein or equivalent.
5.2.1 MINI PV Contact Body. Shall be 1/4 hard CuNi alloy, UNS C72500, in accordance with
ASTM B-122.
5.2.2 MINI PV Contact Spring. Shall be 1/2 hard BeCu alloy, UNS C17200, in accordance with
QQ-C-533, heat treated to full hard condition.
5.2.3 Outer Plug Housing and Header Plastic. Polycarbonate with UL 94 V-0 rating.
5.2.4 Shield Can. Shall be 1/2 hard brass in accordance with ASTM B-36.
5.2.5 Header Ground Terminal. Shall be 3/4 hard phosphor bronze alloy UNS-C51000 in
accordance with ASTM B-103.
5.2.6 BERGSTIK Header Pins. Shall be phosphor bronze alloy UNS-C51000 in accordance
with ASTM B-159.
5.2.7 MINI LATCH Housing. Polyphenylene Ether + Polystyrene (PPE+PS), with a UL rating of
UL 94 V-0.
5.3 Finish
5.3.1 MINI PV Contact Body. Welded gold dot, 99.95% minimum purity Au.
5.3.2 MINI PV Contact Spring. Gold flash over 50 microinch nickel.
5.3.3 Shield Can. 60/40 tin lead or pure tin preplated, 200 microinch per P-SL/B200. and MIL-
P-81728A.
5.3.4 Header Ground Terminal. 60/40 tin lead or pure tin preplated, 200 microinch per P-
SL/B200 and MIL-P-81728A.
5.3.5 Header Pins. 3 microinch gold over 30 microinch palladium nickel over 50 microinch
nickel.
5.4 Design And Construction
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
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C. Martinez 16 April 08
CLASSIFICATION
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Copyright FCI
Form E-3334
Rev F
GS-01-001
Connectors shall be of the design, construction, and physical dimensions specified on the applicable
product drawing, and as shown in Figures 1 and 2. The plug uses FCI's Gold Dot MINI PV and MINI
LATCH housing and incorporates a shield can to provide a ground path from the cable shield thru
the header ground terminals to the PCB.
6.0 ELECTRICAL CHARACTERISTICS
6.1 Low Level Contact Resistance
The low level contact resistance shall not exceed 25 milliohms (35 milliohms after environmental
exposure)(based on 26 AWG wire per Figure 4) when measured in accordance with MIL-STD-
1344A, Method 3002.1. The following details shall apply:
(a) Method of Connection - Attach current and voltage leads where shown in Figure 4.
(b) Test Voltage - 20 millivolts DC max open circuit.
(c) Test Current - Not to exceed 100 milliamps.
6.2 Ground Terminal to Shield Contact Resistance
The ground terminal to shield contact resistance shall not exceed 8 milliohms (14 milliohms after
environmental exposure) when measured in accordance with MIL-STD-1344A, Method 3002.1. The
following details shall apply:
(a) Method of Connection - Attach current and voltage leads where shown in Figure 4.
(b) Test Voltage - 20 millivolts DC max open circuit.
(c) Test Current - Not to exceed 100 milliamps.
6.3 Shielding System Performance
Shielding system performance varies with frequency, and should be evaluated for each special
application. The following table is representative of typical responses when measured using a
swept frequency response method as described in BUS-03-107. The response from the cable is
measured with a current probe sensor with the spectrum analyzer set to the "maximum hold"
function. The difference in response from an unshielded reference cable assembly and the shielded
cable under test is defined as the shielding performance of the connector.
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
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CLASSIFICATION
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Form E-3334
Rev F
GS-01-001
Figure 2 shows the physical appearance of the test samples. The cable is described as 6
conductors with an inner aluminized mylar shield, 95% coverage, and an outer tinned copper braid
shield with 95% coverage, and one 26 AWG (7/34) tinned copper drain wire.
The table results represent the difference between three standard LATCH-N-LOK shield termination
methods and a similar assembly with no electrical connection between the cable shield and
connector shield can.
Shielding Performance
Standard Foil Wrap** Full Can*
At 50 MHz 27.13 dB 35.30 dB 36.40 dB
At 200 MHz 23.30 dB 31.50 dB 31.80 dB
Avg at 30-500 MHz 12.24 dB 21.24 dB 23.71 dB
Avg at 0-1000 MHz 11.10 dB 17 25 dB 18.10 dB
* Tooled in 2X3 and 2X4 sizes, rear exit style only.
** All sizes, rear exit only.
7.0 MECHANICAL CHARACTERISTICS
7.1 Mating/Unmating Force
The force to mate a 2X6 position LATCH-N-LOK plug assembly with a corresponding header
assembly shall not exceed 13 pounds. The corresponding unmating force shall not be less than 3.5
pounds. The assemblies shall be mated with latches enabled and unmated with latches disabled at
a cross head speed of 0.5 inches per minute. The respective maximum and minimum forces shall
be the calculated average of the first three mating forces and first two unmating forces respectively.
7.2 Latch Durability
The plug latch cycle life shall exceed 4000 cycles when mated/unmated with a corresponding
header assembly.
7.3 Latch Retention
The plug to header assembly latching mechanism shall withstand an axial load of 20 pounds
minimum, when applied at a rate of 0.5 inches per minute and maintained for 5 seconds.
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
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CLASSIFICATION
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Copyright FCI
Form E-3334
Rev F
GS-01-001
8.0 ENVIRONMENTAL CONDITIONS
8.1 Thermal Shock
After exposure of the mated assemblies to the environment they shall meet the requirements for
contact resistance per paragraph 6.1, and there shall be no evidence of cracking, crazing, or other
physical damage. The test shall be in accordance with MIL-STD-202F, Method 107G, with the
following details:
(a) Test Condition - A (25, 1-hour cycles)
(b) Temperature Range - -55C to +85C
(c) Time at Each Temperature - 30 minutes
(d) Transfer Time - 5 minutes, maximum
8.2 Humidity-Temperature Cycling
After exposure of the mated assemblies to the environment they shall meet the requirements for
contact resistance per paragraph 6.1, and there shall be no evidence of cracking, crazing, or other
physical damage. The test shall be conducted in accordance with MIL-STD-202F, Method 106F,
with the following details:
(a) Duration - 10 days (ten 24-hour cycles)
(b) Omit step 7b
8.3 High Temperature Life
After exposure of the mated assemblies to the environment they shall meet the requirements for
contact resistance per paragraph 6.1, and there shall be no evidence of cracking, crazing, or other
physical damage. The test shall be conducted in accordance with MIL-STD-1344A, Method 1005.1,
with the following details:
(a) Test Condition - 80C +/- 2C exposure temperature
(b) Test Duration - 1000 hours
8.4 Hydrogen Sulfide (H2S)
After exposure of the mated assemblies to the environment they shall meet the requirements for
contact resistance per paragraph 6.1, and for ground terminal to shield contact resistance per
paragraph 6.2. There shall be no evidence of cracking, crazing, or other physical damage. The test
shall be conducted with the following details:
(a) Concentration - 3 parts per million of H2S
(b) Humidity - Moist (not defined)
(c) Duration - 48 hours
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Rev F
GS-01-001
(d) Temperature - 40C
(e) Test Vessel - 9000 cc desiccator
8.5 Durability
After durability cycling the assemblies shall meet the requirements for contact resistance per
paragraph 6.1, and there shall be no evidence of physical damage. The durability cycling shall be
conducted with the latches disabled and the following details shall apply:
(a) Number Cycles - 1000 cycles
(b) Cycling Speed - 5 inches per minute
8.6 Vibration
During vibration there shall be no electrical discontinuities detected having a duration greater than 1
microsecond, and there shall be no evidence of physical or mechanical damage. The test shall be
conducted in accordance with MIL-STD-202F, Method 204D with the following details:
(a) Condition - B
(b) Vibration Amplitude - 0.06" DA or +/-15G
(c) Frequency Range - 10 to 2000 to 10 hertz
(d) Sweep Time And Duration - 20 minutes per sweep, 4 hours along each of three orthogonal axes
(12 hours total)
8.7 Mechanical Shock
During shock there shall be no electrical discontinuities detected having a duration greater than 1
microsecond, and there shall be no evidence of physical or mechanical damage. After shock the
assemblies shall meet the requirements for contact resistance per paragraph 6.1. The test shall be
conducted in accordance with MIL-STD-202F, Method 213B with the following details:
(a) Condition - I (100G, 6 millisecond sawtooth)
(b) Shocks - 3 shocks in both directions along each of 3 orthogonal axes (18 total)
(c) Mounting - Rigidly mount mated assemblies
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
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CLASSIFICATION
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Copyright FCI
Form E-3334
Rev F
GS-01-001
9.0 QUALITY ASSURANCE PROVISIONS
9.1 Equipment Calibration
All test equipment and inspection facilities used in the performance of any test shall be maintained in
a calibration system in accordance with MIL-C-45662 and ISO 9000.
9.2 Inspection Conditions
Unless otherwise specified herein, all inspections shall be performed under the following ambient
conditions:
(a) Temperature - 25C +/- 5C
(b) Relative Humidity - 30% to 60%
(c) Barometric Pressure - Local ambient
9.3 Sample Quantity And Description
Refer to Figures 1, 2 and 3 for sample descriptions. Sample quantities for the respective test groups
shall consist of the following:
Test Groups 1 thru 3 -Four (2X6 pos.) connector pairs
Test Groups 4, 5 and 7 - Five connector pairs of each size
Test Group 6 - Three (2X3 pos.) plug assemblies with six feet of shielded cable.
Note: Since the PV contacts are lubricated during manufacturing, no additional lubrication shall be
applied before testing.
9.4 Qualification Testing
Qualification testing shall be performed on sample units produced with equipment and procedures
normally used in production. The test sequence shall be as shown in Table 1.
9.5 Requalification Testing
If either of the following conditions occur, the product responsible engineer shall initiate
requalification testing consisting of all or applicable parts of the Qualification Test Matrix, Table 1.
(a) A significant design change is made to the existing product. A significant change shall
include, but not be limited to, changes in contact material composition, contact material
thickness, contact force, contact surface geometry, underlaying material composition,
underlaying material thickness, insulator design, contact base material, or contact
lubrication requirements.
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
GS-12-003
TYPE
PRODUCT SPECIFICATION
TITLE PAGE REVISION
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CLASSIFICATION
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Form E-3334
Rev F
GS-01-001
(b) A product failure occurs during production or end use requiring corrective action to be
taken relative to the product design or manufacturing process.
TABLE 1 - QUALIFICATION TESTING
_____________________________________________________________________________
| TEST | PARA | TEST GROUP |
|___________________________|_______|_________________________________________|
| | | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
| | |_____|_____|_____|_____|_____|_____|_____|
| | | TEST SEQUENCE |
| | |_________________________________________|
|Examination of Product | 5.4 | 1 | 1 | 1 | 1 | 1 | 1 | 1 |
|Contact Resistance | 6.1 | 4 | 4 | 4 | | | | |
|Low Level | | 6 | 6 | 6 | | | | |
| | | 8 | 9 | 8 | | | | |
| | | 10 | 11 | 10 | | | | |
| | | 12 | | 12 | | | | |
| | | | | | | | | |
| | | | | | | | | |
|Contact Resistance | 6.2 | 13 | 12 | 13 | | | | |
|Ground Terminal to Shield | | | | | | | | |
| | | | | | | | | |
|Mating Force | 7.1 | 2 | 2 | 2 | 2 | | | |
| | | | | | | | | |
|Unmating Force | 7.1 | 3 | 3 | 3 | | | | |
| | | | | | | | | |
|Latch Durability | 7.2 | | | | | 2 | | |
| | | | | | | | | |
|Latch Retention | 7.3 | | | | | | | 2 |
| | | | | | | | | |
|Shielding Effectiveness | 6.2 | | | | | | 2 | |
| | | | | | | | | |
|Thermal Shock | 8.1 | 5 | 5 | 5 | | | | |
| | | | | | | | | |
|Humidity/Temperature | 8.2 | 7 | 10 | 9 | | | | |
| | | | | | | | | |
|Heat Age | 8.3 | 9 | | 11 | | | | |
| | | | | | | | | |
|Hydrogen Sulfide (H2S) | 8.4 | 11 | | | | | | |
| | | | | | | | | |
|Durability | 8.5 | | | 7 | | | | |
| | | | | | | | | |
|Vibration | 8.6 | | 7 | | | | | |
| | | | | | | | | |
|Mechanical Shock | 8.7 | | 8 | | | | | |
|___________________________|_______|_____|_____|_____|_____|_____|_____|_____|
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
NUMBER
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PRODUCT SPECIFICATION
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Rev F
GS-01-001
TEST GROUPS 1, 2, AND 3
FIGURE 1
TEST GROUP 6
FIGURE 2
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Rev F
GS-01-001
TEST GROUP 4, 5, AND 7
FIGURE 3
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Rev F
GS-01-001
FIGURE 4
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GS-01-001
REVISION RECORD
REV PAGE EC # DATE
1 All 07/11/91
2 2, 3, 8 07/12/91
3 All 08/22/91
4 2, 3, 6, 10, 13 08/29/91
5 4, 7, 10, 13 09/06/91
A All V12547 09/09/91
B 3,4 V23120 09/24/92
C All Revised format to be consistent with V01949 08/15/00
GS-01-001, and change BERG,
Dupont, etc. references to FCI.
Change document number prefix
from GES to GS.
D All Change Logo M07-0357 08/09/2007
1,3,4 Add Lead Free information
6 MIL-STD-1344 was replaced by EIA-364
E 2 Update FCI reference documentation M08-0106 04/16/2008
3 5.2.7 , 5.3.1 & 5.3.2 updated
PDM: Rev:E Released .STATUS: Printed: Nov 28, 2010
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69958-104 74355-1041 91487-442 91487-443 69913-102LF 78098-104LF 69273-104 69913-104 74903-709
98028-7041LF 98028-7043LF 98028-8041LF 98028-8092LF 98783-104LF 78098-107 91487-541LF 91487-023LF
78098-004LF 91483-641LF 91486-041LF 91486-621LF 91486-641LF 91487-441LF 91488-422LF 98028-7023LF
69901-107LF 74902-602LF 91489-041LF 91487-021LF 91487-071LF 91487-141LF 91487-221LF 91487-241LF
91488-141LF 91488-471LF 91489-021LF 91489-022LF 91489-023LF 91489-042LF 91489-043LF 91489-071LF
91489-072LF 91489-073LF 91489-121LF 91489-122LF 91489-123LF 91489-141LF 91489-142LF 91489-143LF
91489-171LF 91489-172LF 91489-173LF 91489-221LF 91489-222LF 91489-223LF 91489-241LF 91489-271LF
91489-321LF 91489-371LF 91489-471LF 91489-521LF 91489-571LF 98028-8093LF 91488-241 98028-7041
69273-104LF 69913-104LF 69958-104LF 74355-1041LF 74355-1091LF 74903-709LF 78098-002LF 91486-521LF
91486-541LF 91486-542LF 91487-041LF 91488-241LF 91488-421LF 91481-121LF 78098-104 91487-443LF
74903-702LF 69273-002 69273-002LF 69273-004 69273-007 69273-009 69273-102 69273-102LF 69273-107
69273-109 69901-004 69901-007 69901-104 69901-107 69901-109 69901-109LF 69913-002 69913-002LF
69913-004LF