DLA MIL-PRF-1 1509 G-2008 ELECTRON TUBE POWER TYPES 6696A 6697A and 6697AW.pdf
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1、AMSC N/A FSC 5960 MIL-PRF-1/1509G 18 December 2008 SUPERSEDING MIL-PRF-1/1509F 16 July 2004 PERFORMANCE SPECIFICATION SHEET ELECTRON TUBE, POWER TYPES 6696A, 6697A, and 6697AW This specification is approved for use by all Depart- ments and Agencies of the Department of Defense. The requirements for
2、acquiring the electron tube described herein shall consist of this document and the latest issue of MIL-PRF-1. DESCRIPTION: Triode, metal-ceramic. See figures 1 and 2. Mounting positions: 6696A - vertically, anode down, in water jacket. 6697A and 6697AW - vertically, anode down, in air distributor.
3、Weight: 6696A - 17 pounds (7.7 kilograms) nominal. 6697A and 6697AW - 43 pounds (19.5 kilograms) nominal. ABSOLUTE RATINGS: (Maximum): Parameter: F1 Ef Eb Ec Ib Ic Pg Pi Pp Seal and env temp Cooling Unit: MHz V kV dc kV dc A dc A dc W kW kW C - TYPE C Teleg: 6696A 6697A 6697AW 30 30 13.0 5 % 13.0 5
4、% 16.0 16.0 -3.2 -3.2 11.0 11.0 2.0 2.0 1,000 1,000176 120 60 35 200 200 1/ 2/ C Telep: 6696A 6697A 6697AW 30 30 13.0 5 % 13.0 5 % 10.0 10.0 -3.2 -3.2 8.5 8.5 2.0 2.0 1,000 1,00085 81 40 23 200 200 1/ 2/ B/AB Audio: 6696A 6697A 6697AW - - 13.0 5 % 13.0 5 % 16.0 16.0 - - 11.0 11.0 - - 1,000 1,00095 5
5、5 60 35 200 200 1/ 2/ B Telep: 6696A 6697A 6697AW 30 30 13.0 5 % 13.0 5 % 16.0 16.0 - - 9.0 9.0 - - 1,000 1,000144 85 60 35 200 200 1/ 2/ AB rf Amp: 6696A 6697A 6697AW 30 30 13.0 5 % 13.0 5 % 16.0 16.0 - - 11.0 11.0 - - 1,000 1,000150 90 60 35 200 200 1/ 2/ Test conditions: 6696A 6697A 6697AW - - 13
6、.0 13.0 - - - - - - - - - - - - - - - - 3/ 4/ 5/ See footnotes at end of table I. _ GENERAL: Qualification: Not Required. INCH-POUND Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1509G 2 TABLE I. Testing and inspection. Inspection Method
7、NotesConditions AcceptanceSymbolLimits Unit MIL-STD-1311 Level 12/ Min Max Conformance inspection, part 1 Total grid current 1266 5/ 8/ Eb = 10.0 kV dc; Ec/Ib = 3.0 A dc; Pin = 30 kW; t = 300 seconds 0.65 Ic - -300 A dcElectrode voltage (1) (anode) 1261 - Ec = -200 V dc; Eb/Ib = 3.0 A dc 0.65 Eb(1)
8、5.6 7.2 kV dc Electrode voltage (2) (anode) 1261 - Ec = 0; Eb/Ib = 3.0 A dc 0.65 Eb(2) 1.9 2.9 kV dc Power oscillation 1236 - Eb = 20.0 kV dc; Ib = 6.0 A dc; Ic = 1.0 A dc (max); Rg = 3,000 ohms (max); Ec = -3,000 V dc (max); F = 13.6 MHz (min); t = 600 seconds (min)0.65 Po 75 - kW (useful)Peak emis
9、sion 1231 - eb = ec = 2,000 V 0.65 is 120 - a Electrode voltage (grid) 1261 - Eb = 15.0 kV dc; Ec/Ib = 0.020 A dc 0.65 Eco -800 -1,000 V dc Primary grid emission 1266 - Anode grounded; Eg/Pg = 1,000 W; t = 20 seconds 0.65 Isg - -5.0 mA dcCold grid emission - 9/ Ef = 0; Anode floating; Ec = -15.0 kV
10、dc 0.65 Ic - 15 A dcConformance inspection, part 2 Filament current 1301 - - If 190 210 A Direct-interelectrode capacitance 1331 - No shield No shield No shield - Cgp Cgk Cpk 47.0 65.0 2.0 57.0 85.0 3.2 pF pF pF See footnotes at end of table. Provided by IHSNot for ResaleNo reproduction or networkin
11、g permitted without license from IHS-,-,-MIL-PRF-1/1509G 3 TABLE I. Testing and inspection - Continued. Inspection Method Notes Conditions AcceptanceSymbolLimits Unit MIL-STD-1311 Level 12/ Min Max Conformance inspection, part 3 Life test - 6/ Group D; filament cycling; Ef = 13.0 V; “on“ time = 3.5
12、20%hours; “off“ time = 15 20% minutes; t = 500 hours - - - - - Life-test end points: Total grid current Electrode voltage (grid) Peak emission - 1266 1261 1231 - - - - - - Ic Ec is - -800 120 -330 -1,000 - A dcV dc a Mechanical resonance (type 6697AW only) - 7/ 11/ No voltages applied - - - - - 1/ F
13、orced-air cooling of the base and seals may be required, depending on ambient conditions and operating frequency. Airflow rate and direction should be determined to limit seal and envelope temperatures to 200C maximum and to maintain uniform temperature distribution around the seals. Minimum cooling
14、 requirements for the anode are shown, based on use of the Machlett Laboratories Inc. F-17393 water jacket, the EIMAC SK-1620 water jacket, or equivalent. Anode diss. (kW) Water flow rate (gpm) Approx. press. drop (psi) 20 5.7 1.3 30 8.0 2.1 40 11.2 3.3 50 14.5 5.0 60 18.0 7.2 2/ Forced-air cooling
15、of the base and seals may be required, depending on the ambient conditions and the operating frequency. Airflow rate and direction should be determined to limit seal and envelope temperatures to 200C maximum and to maintain uniform temperature distribution around the seals. Minimum cooling requireme
16、nts for the anode are shown, based on a maximum incoming air temperature of 50C at sea level, and the use of the air distributor shown on figure 3, Machlett Laboratories Inc. F-17759 air distributor, EIMAC SK-1606A air distributor, or equivalent. Anode diss. Airflow Approx. press. drop (kW) (cfm) (i
17、nches of water) 10 240 0.2 20 700 1.5 30 1,350 5.0 35 1,700 8.0 In cases where long life and consistent performance are factors, cooling in excess of minimum requirements is normally beneficial. 3/ During test, it shall be permissible to use forced-air cooling of the envelope and base and water cool
18、ing of the anode, in accordance with the provisions of 1/. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1509G 4 TABLE I. Testing and inspection - Continued. 4/ During test, it shall be permissible to use forced-air cooling of the envelop
19、e, base, and anode, in accordance with the provisions of 2/. 5/ At the option of the manufacturer, type 6697A and 6697AW tubes may be tested according to this document as water-cooled tubes before assembly with the anode cooler (radiator) in which case only the total grid-current test (method 1266)
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