NAVY MIL-I-19028 E-1971 INVERTER (FOR TORPEDO MARK 37 MODS 0 2 AND 3)《MK37MODS 0 2 3鱼雷逆变换装置》.pdf
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1、i. 1-1-19928( csj 1-1-190281)( os) 3 Ilay 1971 Super sed ing 7 Noveniber i967 MILITARY SPECIFICATION INVERTER (FOR IIIoRPEDo MARK 37 MODS O, 2, AND 3) This specification has been approved by the Naval Ordnance Systems Command, Department of the Navy. 1. SCOPE 1.1 This specification establishes the r
2、equirements for the procure- ment of an inverter, Drawing 1263725, that transforms 26 volt dc .battery voltage into regulated 3-phase, 400 Hertz (Hz), ac voltage of il5 volts average of the three line-to-line voltages. 2. APPLICABLE: DOCUMENTS 2.1 The following documents of the issue in effect on th
3、e date of in- vitation for bids or request for proposal form a part of this specifica- tion to the extent specified herein. SPEK!mCAIPIONS Federal . QQ-2-325 Military MIL-P-1x5 MIL -M- 3171 MIL-C-5541 Zinc Coating, Electrodeposited; Requirements for Preservation, Methods of Magnesium Alloy; Processe
4、s for Corrosion Protection for Chemical Films for Aluminum and Aluminum Alloys Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-KCL- I - 1902 inverter load at 98 pius or minus 2 percent of rated load. The inverter will be sjected to the follow- 3.3.1.
5、2.2.1 Open circuit source voltage prior to starting at 24. plcls 3.3.1.2.2.2 Open circuit source voltage prior to starting at 24 plus or ninus 0.2 vo.ts dc; inverter load at 62 plus or minus 2 percent 03 rated load. 3.3.1.2.2.3 Open cixuit source voltage prior to starting at 28 plus e 5 Provided by
6、IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-I-19028E6 OS) or minus 0.2 volt.s dc; inverter load inver3er load at 62 plus or minus 2 percent of rated load. 3.3.1.3 Output 3.3.1.3.1 Rated load. The rated output load shall be 3-phase, 550 volt-amperes, 64 p
7、ercent lagging power factor, balanced delta, at li5 volts root-mean-square (rms), 400 Hz. 3.3.1.3.2 Voltage. The three regulated line-to-line voltages shall be within, ana remain within, il5 plus or minus 1 volts rmS, with the dilference between any two line-to-line voltages not to exceed 1 volt ms.
8、 limits once during each 10 hours of operation. The output voltage may be reset to hold within the specified 3.3.1.3.2.1 Peak voltage. The instantaneous voltage shall not ex- ceed plus or minus 250 volts peak. 3.3.1.3.3 Frequency. The frequency shall be 400 plus or minus 4 Hz. The frequency may be r
9、eset to hold within the.specified limits once during each 10 hours of operation. 3.3.1.3.4 Regulation. The output voltage measured at the inverter terminals shall be within the limits of 3.3.1.3.2 and the output fre- quency shall be trithin the limits of 3.3.1.3.3, when the inverter is subjected to
10、the following conditions: 3.3.1.3.4.1 Increasing voltage as specified in 33.1.2.1 with 62 plus or minus 2 percent rated load and after a steady state value over the range of 24 to 28 volts dc is reachea, 3.3.1.3.4.2 Step-voltage as specified in the conditions of 3.3.1.2.2. 3.3.1.3.5 Phase sequence.
11、The phase sequence of the output voltage, with the inverter terminals connected in conformance with 3.3.2.4.3, shall be ABC. 3.3.1.3.6 Harmonic voltage content - 3.3.1.3.6.1 Total- harmonic voltage The total harmonic voltage con- tent to 10 kiloHertz (kHz) shall not exceed 2 percent of the fundament
12、al - output voltage. 6 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-I-17028E 13 777970b 030013b 7 i . 3.3.1.3.6.2 Individual harnonic voltages. Ail harmonic voltages except The the 7th shall not exceed 1 percent of the fundamental output volta
13、ge. 7th harmonic voltage shall not exceed: 1.5 percent of the fundamental out- put voltage * 3.3.1.3.7 Mcdulayion. Output voltage modulation shall not exceed 1 percent of the output voltage when the inverter i,s operating in accord- ance with 3.3.1.2.2. - 3.3.1.3.8 Response time 3.3.1.3.8.1 Step-vol
14、tage start. At 3 second8 maximum after the iwerter is started under the conditions of 3.3.1.2.2,. the output voltage, phase balance, and frequency shall be within, and remain within, the limits of 3.3.1.3.2 and 3.3.1.3.3. 3.3.1.3.8.2 increasing voltage start. .Within seconds maxim after the inverter
15、 is started in accordance with 3.3.1.2.1, the output voltage, phase balance, and fkequency shall be within, arid remain within, the limits of 3.3.1.3.2 and 3.3.1.3.3. 3.3.1.3.9 Recovery time. At 0.1 second maximum after the inverter load is instantaneously switched from 62 plus or minus 2 percent to
16、 98 plus or minus 2 percent of rated load, the AB phase voltage shall be within, and remain within, li5 plus or minus 1 volts rms; the output frequency shall be within, and remain within, 400 plus or minus 4 Hz. shall be me% under the input requirements of 3.3.1.1. These requirements 3.3.1.4. Effici
17、ency. The minimum efficiency of the inverter, at 98 plus or minus 2 percent rated load, shall be not less than 40 percent. minimum efficiency of the inverter at 62 plus or minus 2 percent rated load shall be not less than 35 percent. The 3.3.1.5 Commutation. Commutation shall be such that not more t
18、han fine pinpoint spazking occurs when the inverter is operated at 98 plus or minus 2 percent and 62 plus or minus 2 percent of rated load. 3.3.1.6 Dielectric requirements 3.3.1.6.1 DC circuits. AU dc circuitry of the inverter must be capable of withstanding 500 volts rm, 60 Hz to the frame, with th
19、e ac circuits grounded to the frame, for a perid of at least 1 minute without any arc- ing or breakdm of insulation. 3.3.1.6.1.1 The insuat ion re sistance minimum between all inverter dc circuits grounded to the frame. at 500 volts dc shall be .lo0 megohms and ,the frame, with all ac circuits 7 Pro
20、vided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-m-I-l9028E( OS) 3.3.1.6.i.i Within 3 hours of completion of the tempe:a+ure and megohm mnirmmi. humidity nonoperating test, the insulation resistance shall be 1 3.3.1.6.1.1.2 Within 48 hours of completion
21、of the temperature and hmidity nonopersking test, the insulation resistance shall be 100 megohms minium. 3.3.1.6.1.1.3 On completion of high temperature Dperating test and while still at the operating temperature, the insulation resistance shall be 20 megohms minimum. 3.3.1.6.1.1.4 On Completion of
22、high temperature operating test and . within 1 hour of returning to dient temperature, the insulation resistance shall be 100 megohms minimum. 3.3.1.6.2 AC circuits. All ac circuits of the inverter must be capble of withstanding 1250 volts rms, 60 Hz to the frame, with the dc circuit grounded to the
23、 frame, for a period of at least 1 minute without any arcing or breakdown of insulation. 3.3.1.6.2.1 The insulation resistance at 500 volts dc shall be 100 megohms minimum between all inverter ac circuits and the frame, with all dc circuits grounded to the frame. 3.3.1.6.2.1.1 Within 3 hours of comp
24、letion of the temperature and humidity nonoperating test, the insulation resistance shall be 1 megohm minimum. 3.3.1.6.2.1.2 Within 48 hours of completion of the temperature and humidity nonoperating test, the insulation resistance shall be 100 megohms minbum. 3.3.1.6.2.1.3 On completion of high tem
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