DLA MIL-PRF-6106 39 F-2012 RELAY ELECTROMAGNETIC TYPE I MAGNETIC LATCH PERMANENT MAGNET DRIVE LOW LEVEL TO 5 AMPERES 4PDT HERMETICALLY SEALED.pdf
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1、AMSC N/A FSC 5945 MIL-PRF-6106/39F 19 April 2012 SUPERSEDING MIL-PRF-6106/39E 22 November 2010 PERFORMANCE SPECIFICATION SHEET RELAY, ELECTROMAGNETIC, TYPE I, MAGNETIC LATCH, PERMANENT MAGNET DRIVE, LOW LEVEL TO 5 AMPERES, 4PDT, HERMETICALLY SEALED This specification is approved for use by all Depar
2、tments and Agencies of the Department of Defense. The requirements for acquiring the relay described herein shall consist of this specification sheet and MIL-PRF-6106. FIGURE 1. Dimensions and configurations. INCH-POUNDProvided by IHSNot for ResaleNo reproduction or networking permitted without lice
3、nse from IHS-,-,-MIL-PRF-6106/39F 2 FIGURE 1. Dimensions and configurations - Continued. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-6106/39F 3 FIGURE 1. Dimensions and configurations - Continued. Provided by IHSNot for ResaleNo reproduct
4、ion or networking permitted without license from IHS-,-,-MIL-PRF-6106/39F 4 FIGURE 1. Dimensions and configurations - Continued. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-6106/39F 5 Inches mm Inches mm Inches mm .001 0.03 .133 3.38 .425
5、 10.80 .002 0.05 .140 3.56 .500 12.70 .003 0.08 .141 3.58 .640 16.26 .025 0.64 .150 3.81 .712 18.08 .031 0.79 .156 3.96 .810 20.57 .040 1.02 .170 4.32 .850 21.59 .050 1.27 .200 5.08 1.062 26.97 .075 1.91 .210 5.33 1.070 21.18 .110 2.79 .250 6.35 1.078 27.38 1.280 32.51NOTES: 1. Dimensions are in inc
6、hes. 2. Metric equivalents are given for general information only. 3. Unless otherwise specified, tolerances are .010 (0.25 mm). 4. There shall be affixed to the relay a legible circuit diagram that identifies each terminal location specified. 5. These relays are polarized bistable. 6. This relay sh
7、all not operate or be damaged by reverse polarity. Semiconductors shall not be used for this purpose. 7. Permanent magnet drive consists of a permanent magnet with its flux path switched and combined with the electromagnetic flux. 8. Applicable to configuration B only. The circuit diagram, manufactu
8、rers PIN, and the military PIN shall be marked on the near side. The remaining portion of the nameplate data shall be marked on the far side. 9. Applicable to configuration B only. Relays shall be marked with the manufacturers name or source code and date code. In addition, ER relays shall be marked
9、 with the serial number. Marking shall be with the bottom of the print adjacent to the near side. 10. Socket pin terminals shall provide the operational, environmental, and interface characteristics to provide a reliable interconnect to gold-plated contacts. Terminals, except the polarizing pin, sha
10、ll be gold plated. One system for gold plating that may be used is ASTM B488, type 3, class 1.25 with a nickel underplate of 50 to 150 microinches thick. The gold plating system shall enable the product to meet the performance requirements of this specification and shall be approved by the qualifyin
11、g activity. 11. Gasket shall provide a reliable seal between the relay and mating socket that will meet the environmental, operational, and interface requirements of the relay with the mating socket. The gasket shall have shore hardness 25 5, thickness .050 .005. Gasket material according to SAE-AMS
12、3332 has been considered acceptable. 12. Indicated terminals shall be identified by a contrasting bead. FIGURE 1. Dimensions and configurations - Continued. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-6106/39F 6 REQUIREMENTS: CONTACT DATA
13、: Life: Unless otherwise specified, 100,000 cycles. Operational reliability: Applicable, the alternate low level method shall be used. Load ratings. High level (relay case grounded). Resistive: 5 amperes at 28 V dc, 115 V ac, 400 Hz, 1 phase, 115/200 V ac, 400 Hz, 3 phase. Inductive: 3 amperes at 28
14、 V dc, 5 amperes at 115 V ac, 400 Hz, 1 phase; 5 amperes at 115 V ac, 400 Hz, 3 phase (Life 20,000 cycles). Motor: 2 amperes at 28 V dc, 3 amperes at 115 V ac, 400 Hz, 1 phase, 5 amperes at 115 V ac, 400 Hz, 3 phase. Lamp: 1 ampere at 28 V dc, 1 ampere at 115 V ac, 400 Hz, 1 phase. Low level: 10 to
15、50 A at 10 to 50 mV dc or peak ac. 1/ 2/ 3/ Intermediate current: Applicable. Transfer load: Not applicable. Mechanical life (reduced current): 1.25 amperes at 28 V dc, 115 V ac, 400 Hz, 1 phase, 115 V ac, 400 Hz, 3 phase (Life, 400,000 cycles). Mixed loads: Applicable. 1/ Contact voltage drop or re
16、sistance. 2/ 3/ High level: Initial: 0.150 volt maximum. After life: 0.175 volt maximum. Low level: Initial: 0.050 ohm maximum. Afterlife: 0.150 ohm maximum. Contact bounce: 0.5 millisecond maximum. _ 1/ Relay shall be capable of switching low level while switching any of the other rated loads on ad
17、jacent contacts. 2/ For low level, the following shall apply: a. During endurance and operational reliability testing, contact load shall be 10 to 50 microamperes, 10 to 50 millivolts open circuit voltage, 100 ohms maximum contact resistance. b. Static contact resistance shall be performed at 50 mA
18、maximum, 50 mV maximum. 3/ For group A contact voltage drop test, high level testing shall be performed first, followed by low level testing. The contacts shall not make or break the high level load. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MI
19、L-PRF-6106/39F 7 Overload current: 20 amperes dc. 30 amperes ac. Rupture current: 25 amperes dc. 40 amperes ac. Time current relay characteristics. Applicable (see table l). TABLE I. Time current relay characteristics. 1/ 2/ 1 10A 1 hour2 15A 20 seconds3 37.5 A 2 seconds 4 75A .53 second1/ CAUTION:
20、Compare with time current characteristics of the associated circuit protective device. 2/ All relays shall withstand overload and fault currents. Relays must be able to sustain five applications (make and carry only) of power concurrently on adjacent poles at each of four different current levels in
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