DLA MIL-PRF-1 1619 D-2009 ELECTRON TUBE POWER TYPES 8161 AND 8251.pdf
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1、 MIL-PRF-1/1619D 30 September 2009 SUPERSEDING MIL-PRF-1/1619C 4 September 1998 PERFORMANCE SPECIFICATION SHEET ELECTRON TUBE, POWER TYPES 8161 AND 8251 This specification is approved for use by all Departments and Agencies of the Department of Defense. The requirements for acquiring the electron tu
2、be described herein shall consist of this document and the latest issue of MIL-PRF-1. DESCRIPTION: Triodes, ceramic, metal. See figures 1 and 2. Mounting position: Vertical, base down or up. Weight: 8161: 6.25 pounds nominal. 8251: 7.5 pounds nominal. ABSOLUTE RATINGS: C telegraphy Type 8161: Parame
3、ter: Unit: F1 MHz Ef V ac Eb kV dc Ec kV dc Ib A dc Pg W Pp kW Pi kW Anode core and seal T C Cooling Maximum Minimum 110 - 7.9 7.1 4.0 - -1.0 - 2.0 - 150 - 4.0 - 7.2 - 250 - - - Test conditions: - 7.5 3.0 Adj. 0.83 - - - - 1/ ABSOLUTE RATINGS: C telegraphy Type 8251: Parameter: Unit: F1 MHz Ef V ac
4、Eb kV dc Ec kV dc Ib A dc Pg W Pp kW Pi kW Anode core and seal T C Cooling Maximum Minimum 30 - 7.9 7.1 4.0 - -1.0 - 2.0 - 150 - 4.0 - 7.2 - 250 - - - Test conditions: 2/ See footnotes at end of table I. _ GENERAL: Qualification - Required. AMSC N/A FSC 5960 INCH-POUND Provided by IHSNot for ResaleN
5、o reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1619D 2 TABLE I. Testing and inspection. Limits Inspection Method MIL-STD-1311Conditions SymbolMin Max UnitConformance inspection, part 1 Filament current 1301 If 49 54 A ac Peak emission 1231 eb = ec = 2,500 v is 35 - aEl
6、ectrode voltages (grid) 1261 Ec -67 -100 V dcTotal grid current 1266 5/ Ic - -50 A dc Primary grid emission 1266 Ef = 8.3 V ac;t = 15 sec; Ic = 0.9 A dc; anode grounded Isg - -250 A dc Conformance inspection, part 2 Amplification factor 1316A Mu 19 26 - Direct interelectrode capacitance 1331 CgpCin
7、Cout 16.8 29.2 0.60 23.2 40.2 1.20 pFpF pF Power oscillation 1236 Eb = 4,000 V dc;Ib = 1.8 A dc; F = 110 MHz; Rg = 2,150 ohms Po 4.2 - kWuseful Conformance inspection, part 3 Life-test Group C; power oscillation; t = 500 hours - - - - Life-test end points: Peak emission 1231 is 28 - a Primary grid e
8、mission 1266 Isg - -250 A dc Forced cooling 1143 Pp = 4.0 kW 3/ 6/ Tanode core T fil seal - 250 250 C C Pressure drop - Cooling 4/ 6/ Pressure - 1.4 In.H20 See footnotes on top of next page. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1
9、619D 3 TABLE I. Testing and inspection - Continued. 1/ In all electrical tests involving application of filament voltage, forced-air cooling is allowable as follows: base-to-anode airflow, 67 cfm maximum; anode-to-base airflow, 84 cfm maximum through the anode cooler, plus 3 cfm maximum directed int
10、o the filament stem structure. These figures apply for air at 40C maximum and at sea level. At higher air temperature or altitude, suitable correction of the airflow is allowable. Cooling air should be supplied before or simultaneously with application of electrode voltages (including the filament)
11、and may be removed simultaneously with them. 2/ The 8251 type may be made by attaching the base flying leads to an 8161 which has met all the requirements listed herein. After attachment of the flying leads and any other mechanical processing, including plating, the 8251 shall meet the requirements
12、of the holding period and the total grid current test. 3/ For the cooling test, the tube shall be mounted in an infinite baffle system, or equivalent, so that all air passing in a base-to-anode direction shall pass through the anode cooler of the tube. With cooling air of not less than 20C nor more
13、than 40C, both base and anode shall be cooled by applying an airflow of 67 cfm maximum at sea level. At altitudes above sea level, the equivalent mass flow may be used. An appropriate value of anode voltage and current shall be used to produce the specified anode dissipation. Temperatures shall be m
14、easured by means of thermocouples, located as follows: Anode core: The thermocouple shall be embedded in the base of the anode core, at the base of the cooling fins, by means of drilling a small hole shallow enough so that the tube vacuum shall not be lost, placing the welded thermocouple junction t
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