DLA MIL-PRF-1 1112 H-2012 ELECTRON TUBE KLYSTRON TYPE 8493.pdf
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1、 MIL-PRF-1/1112H 17 January 2012 SUPERSEDING MIL-PRF-1/1112G 27 August 1999 PERFORMANCE SPECIFICATION SHEET ELECTRON TUBE, KLYSTRON TYPE 8493 This specification is approved for use by all Departments and Agencies of the Department of Defense. The requirements for acquiring the electron tube describe
2、d herein shall consist of this document and the latest issue of MIL-PRF-1. DESCRIPTION: Pulsed amplifier, control grid modulated, self-focused, tunable frequency range 900 to 1,215 MHz. ABSOLUTE RATINGS: Parameter: Unit: Ef V Ec V Eb kV egy v ib a Pi W pd w Pd W po kw Po W Maximum: Minimum: 4.6 3.8
3、-50 -250 20 - 450 - 10 - 2,300 - 500 - 80 - 25 - 600 - Parameter: Unit: Pg W prr pairs/sec Du - T C Maximum: Minimum: 5 - 3,700 - 0.025 - 150 - (Figure 1, ref. T1 through T5) PHYSICAL CHARACTERISTICS: Dimensions: Mounting: Temperature reference: Output and input connectors See figure 1 1/ See figure
4、 1 See figure 1 Cooling: Weight: Marking: Initial start-up: Forced-air 2/ 30 pounds (approximate) See figure 1 5/ TEST CONDITIONS: Parameter: Unit: Ef V Ec V Eb kV egy v Pi W pd w po kw Tolerance: - 4.2 - -125 - 12.5 55 365 max 1,840 - 30 min 11.5 Notes: 3/ 4/ 5/ 6/ 7/ - 11/ 8/ 9/ TEST CONDITIONS: P
5、arameter: Unit: Du - prr pair/sec F MHz Frequency F MHz Tolerance: 0.025 - 90 3,600 - F1 and F3 F1 F2 F3 960 1,100 1,215 Notes: - - 10/ See footnotes at end of table I. _ GENERAL: Qualification: Not Required. This specification sheet uses accept on zero defect sampling in accordance with MIL-PRF-1,
6、table III. AMSC N/A FSC 5960 INCH-POUND Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1112H 2 TABLE I. Testing and inspection. Inspection Method MIL-STD-1311 Notes Conditions Symbol Limits Unit Min Max Conformance inspection, part 1 Heate
7、r current 1301 3/ Ef = 4.2 V If 30 38 A Electrode current (anode) 1256 7/ egy = 365 v ib - 4.5 A Power level (output) 4250 7/ 8/ 9/ 10/ po 11.5 - kw Electrode current (cutoff) 1256 - egy = 0 Ib - 1.0 ma Cathode emission 4214 12/ 13/ ib/ib - 10 % Conformance inspection, part 2 Direct-interelectrode c
8、apacitance 4266 - Connect shell to cathode Cgk - 150 pF Spectrum - 16/ Spec 1 Spec 2 -43 -53 - - dB dB Torque test, rf output connector - - No voltages - 200 - inch/pound Open-short circuit test - 9/ - - - - Power level (pulse droop) 4250 14/ - - 2 % Conformance inspection, part 3 Life test - 17/ Gr
9、oup D; tp = 10 s (rectangular) Psi = 1,300 W t 1,000 - hours Life test end-points: - Power level (output) Cathode emission 4250 4214 7/ 11/ 13/ 17/ po ib/ib 10.5 - - 10 kw % Qualification tests Power level (harmonic) 4250 18/ po - -50 dB Amplifier insertion loss 4257 15/ egy = 0 ib = 0 po po - - 10
10、-3 w dBm Warmup time 4303 - tk = 6 minutes (max) t = 10 seconds - po - 11.5 - - - kw See footnotes at end of table. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1112H 3 TABLE I. Testing and inspection - Continued. Inspection Method MIL-S
11、TD-1311 Notes Conditions Symbol Limits Unit Min Max Qualification tests - Continued Temperature coefficient 4027 20/ F = F2; TA = -65C to +65V F/T - +0.015 -0.021 MHz/C MHz/C Shock, specified pulse 1042 21/ 22/ Test condition J, except 6.5 ms - - - - Nonoperation vibration 1031 23/ No voltages F - 0
12、.5 MHz Operation vibration 1031 19/ (max)(max)VV- 3.0 % Permanence of marking 1105 - - - - - 1/ The tube described herein shall be designed to be mounted in any position using the four .375 inch (9.53 mm) diameter threaded inserts on the collector end plate and a suitable strap around the mounting b
13、racket shown on figure 1. 2/ The tube under test (TUT) shall be cooled at sea level pressure with 18 psia per minute of 0.0730 pounds per cubic foot density at a pressure drop not greater than 2.0 inches of water. 3/ The TUT shall stabilize within the limits specified herein after a 5 minute (maximu
14、m) preheating period. 4/ The TUT shall not be operated without a negative-grid bias when the beam voltage has been applied. The TUT shall be protected from this condition by overload circuits included in the high voltage circuits. The output of the dc beam supply shall be followed by a series resist
15、or approximately 10 ohms to prevent serious surges of beam current through the tube. 5/ The following procedure shall be followed for all new tubes and tubes which have not been operated during the preceding 3-month period. a. Reduce the grid drive voltage to zero (do not change the bias voltage fro
16、m its normal -125 V setting). b. Turn on main power and apply rated filament and 125 V bias voltage for 15 minutes. c. Apply a beam voltage of 7 kv for 15 minutes. d. Increase the grid drive from zero to a value which gives 10 ma of average beam current. e. Apply the rated beam voltage and increase
17、the grid drive to 60 mA average beam current. Continue to increase the grid drive to values which provide 10 mA beam current increases every 5 minutes until the current reaches 90 mA and operates at 90 mA for 5 minutes. The tube is not considered to be properly aged and ready to be placed into servi
18、ce. 6/ The control grid shall be driven with a shaped pulsed pair which has a peak amplitude as specified herein with reference to the negative bias voltage (total grid swing). Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-1/1112H 4 TABLE I
19、. Testing and inspection - Continued. 7/ The eg pulse shall be of such shape as to provide rf output voltages which conform to the following diagram: a. The eg pulses shall be composed of pairs spaced 12.0 0.5 microseconds between centers. The repetition rate shall be 3,600 90 pairs per second. b. T
20、he tube shall not oscillate with the input line disconnected and the input and output resonators tuned to the same frequency provided that the middle resonator is detuned by one turn of one tuning nut from resonance. c. The output of the grid modulator can be loaded with a shunt impedance, if necess
21、ary, to obtain the proper waveform to drive the TUT grid. 8/ The TUT shall deliver the rated power specified herein into a transformer adjusted load which has a VSWR of 1.5:1, or less. 9/ The TUT nor its output coupling shall be damaged if the TUT output connector is open, short circuited, or termin
22、ated in any resistance or reactance or combination thereof between the limits of open and short circuit when the TUT is tuned in equipment in accordance with instructions supplied by the tube supplier. 10/ A tuning curve shall be supplied with each tube. The frequency of each resonator can be set ap
23、proximately by adjusting the tuning ring spacing of each resonator according to the tuning charts. Tuning rings shall be parallel with one turn of a tuning nut after final adjustment. When adjusted to any operating frequency in the range from F1 to F3 in accordance with the individual cold tuning ch
24、arts, and when supplied with rf drive over the range of nominal frequency 0.5 MHz, the tube will deliver a minimum rf output power of 30 watts into a 50-ohm resistive load. 11/ The rf drive shall be applied to the input resonator of the TUT. The rf drive may be either pulsed or cw. When a rectangula
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