DLA MIL-PRF-83536 33 B-2010 RELAYS ELECTROMAGNETIC ESTABLISHED RELIABILITY 3PDT 25 AMPERES (RESISTIVE) PERMANENT MAGNET DRIVE HERMETICALLY SEALED ALL WELDED TRANSIENT SUPPRESSED DC.pdf
《DLA MIL-PRF-83536 33 B-2010 RELAYS ELECTROMAGNETIC ESTABLISHED RELIABILITY 3PDT 25 AMPERES (RESISTIVE) PERMANENT MAGNET DRIVE HERMETICALLY SEALED ALL WELDED TRANSIENT SUPPRESSED DC.pdf》由会员分享,可在线阅读,更多相关《DLA MIL-PRF-83536 33 B-2010 RELAYS ELECTROMAGNETIC ESTABLISHED RELIABILITY 3PDT 25 AMPERES (RESISTIVE) PERMANENT MAGNET DRIVE HERMETICALLY SEALED ALL WELDED TRANSIENT SUPPRESSED DC.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 MIL-PRF-83536/33B 8 March 2010 SUPERSEDING MIL-PRF-83536/33A 1 March 2005 PERFORMANCE SPECIFICATION SHEET RELAYS, ELECTROMAGNETIC, ESTABLISHED RELIABILITY, 3PDT, 25 AMPERES (RESISTIVE), PERMANENT MAGNET DRIVE, HERMETICALLY SEALED, ALL WELDED, TRANSIENT SUPPRESSED DC COIL This specification is appro
2、ved for use by all Departments and Agencies of the Department of Defense. The requirements for acquiring the product described herein shall consist of this specification and MIL-PRF-83536. Raised Vertical Flange Mount (RVFM) SOLDER HOOK, SOLDER PIN, AND SOCKET PIN RELAYS FIGURE 1. Configurations and
3、 dimensions . AMSC N/A FSC 5945 INCH-POUND Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-83536/33B 2 Horizontal Flange Mount (HFM) SOLDER HOOK AND SOLDER PIN RELAYS, TIN PLATE FINISH FIGURE 1. Configurations and dimensions - Continued. Prov
4、ided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-83536/33B 3 FIGURE 1. Configurations and dimensions - Continued. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-83536/33B 4 Inches mm Inche
5、s mm Inches mm .001 0.03 | .218 5.54 | .625 15.88 .003 0.08 | .234 5.94 | .630 16.00 .005 0.13 | .250 6.35 | .810 20.57 .020 0.51 | .270 6.86 | .937 23.80 .040 1.02 | .300 7.62 | 1.010 25.65 .050 1.27 | .312 7.96 | 1.025 26.04 .062 1.57 | .375 9.53 | 1.062 26.98 .093 2.36 | .395 10.03 | 1.396 35.46
6、.150 3.81 | .432 10.97 | 1.406 35.71 .156 3.96 | .450 11.43 | 1.446 36.73 .172 4.37 | .600 15.24 | 1.718 43.64 NOTES: 1. Dimensions are in inches. 2. Metric equivalents are given for general information only. 3. Unless otherwise specified, tolerance is .020 (0.51 mm). 4. There shall be affixed to th
7、e relay a suitable circuit diagram that identifies each terminal location specified. 5. These relays are polarized monostable. 6. Relays must not operate or be damaged by reverse polarity. 7. Permanent magnet drive consists of a permanent magnet with its flux path switched and combined with the elec
8、tromagnet flux. 8. Applicable to horizontal flange mount only. The manufacturers PIN, circuit diagram, and military PIN shall be marked on the near side. The remaining of the nameplate data shall be marked on the far side. 9. Applicable to horizontal flange mount only. Relays shall be marked with th
9、e manufacturers name or CAGE code and date code on the top of the can. 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 conta
10、cts. Socket pin terminals, except for the polarizing pin, shall 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
11、 of this specification and shall be approved by the qualifying 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 15
12、 to 35, thickness .050 .005. Gasket material according to SAE-AMS 3332 has been considered acceptable. Gaskets are not supplied with track mount relays. 12. Indicated terminals shall be identified by contrasting beads. 13. Back EMF (transient voltage): 42 V dc maximum. FIGURE 1. Configurations and d
13、imensions - Continued. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-83536/33B 5 REQUIREMENTS: Contact data: Load ratings: See table I. Intermediate current: Applicable. Mixed loads: Applicable. Low level life: Not applicable. TABLE I. Rate
14、d contact load and cycles (amperes per pole) . Type of load (high level) Life operating cycles x 10328 V dc 115 V ac 1 phase 400 Hz 115 V ac 1 phase 50/60 Hz 115/200 V ac 3 phase 400 Hz 115/200 V ac 3 phase 50/60 Hz Resistive Inductive Inductive Motor Lamp Mechanical 50 10 20 50 50 200 25 12 N/A 10
15、5 6 25 N/A 15 10 5 6 N/A N/A N/A N/A N/A N/A 25 N/A 15 10 5 6 N/A N/A N/A N/A N/A N/A Life: 50,000 cycles, unless otherwise specified (see table I). Contact voltage drop or resistance: Initial contact voltage drop: 0.150 V maximum. Rated resistive current at 6 V dc or peak ac. Relays shall not make
16、or break this load. Initial contact resistance: Not applicable. High level life (contact voltage drop): During life: 10 percent open circuit voltage maximum. After life: 0.175 V maximum. Intermediate current (contact resistance): During intermediate current: 3 ohms maximum. After intermediate curren
17、t: 0.150 ohm maximum. Contact bounce: 1.0 ms maximum Contact break bounce: 0.1 ms maximum. Contact stabilization time: Deleted. Overload current: 50 A dc, 80 A ac. Rupture current: 60 A dc, 100 A ac. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MI
18、L-PRF-83536/33B 6 Time current relay characteristics: See table II. TABLE II. Time current relay characteristics . 1/ Successive application Amperes Time 1 2 3 4 5 30 50 100 250 350 1 hour 5.0 seconds 1.2 seconds 0.2 seconds 0.1 seconds 1/ All relays shall withstand overload and fault currents. Rela
19、ys must be able to sustain five applications (make and carry only) of power concurrently on adjacent poles at each of five different current levels in the sequence listed in table II. Separate relays shall be tested at 28 V dc and 115/200 V ac, 400 Hz, 3 phase. Cooling time between successive applic
20、ations shall be 30 minutes. Tests shall be performed on both normally open and normally closed contacts. There shall be no failures or evidence of welding or sticking and relays shall pass contact voltage drop at the conclusion. Coil data 1/: See table III. Operate time: 15 ms maximum with rated coi
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