SAE AIR 1091-1969 High Voltage Pulse Generator《高压脉冲发生器》.pdf
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1、b SAE AIR*wLOSL 69 357340 0003Yli 3 - I hence, it is traceable to known accuracy. The pulse generator has been designed primarily for the purpose of calibrating a pressured ball gap measurement instrument. However, it may be similarly used to calibrate specific points of a volt- age divider probe. T
2、he pulse generator design to be described provides the following: a. Accurate output voltage. b. Zero to peak voltage time to be less than one microsecond with no overshoot. c. One pulsed output. d. Infinitely variable from five to thirty thousand volts. e. Constant waveform. f. Capability of being
3、reproduced. Fig. 1 shows a photo of the pulse calibrator described connected to a pressurized ball gap. shows a typical output waveform from the pulse calibrator. Fig. 2 Copyright 1969 by Society of Automotive Engineers, Inc. Printed in U.S.A. SAE AIR*KLOSL 69 8357390 0003985 5 -2 - 2. PROCEDURE FOR
4、 USE OF PULSE GENERATOR TO CALIBRATE PRESSURIZED BALL GAP (REF. AIR 1 o9 O) a. Connect a dry nitrogen tank to the gap and adjust the pancake regulator on the ball gap to indicate 800 torr absolute pressure on the gauge. b. c. Allow gap to purge a minimum of one-half hour to guarantee a homogeneous g
5、as flow. Adjust turn counting dial at front of HV pulse generator at a point sufficient to guarantee non-firing of internal switch. Using the IIHV COARSE“ and “HV FINE“ control knobs on the front panel of the HV pulse generator, set desired test voltage on electrostatic voltmeter. d. e. Set turn cou
6、nting dial on ball gap to the non-firing side of the test point (usually test point plus ten dial divisions). f. Decrease the internal switch spacing in the HV pulse generator with turn counting dial on front panel to initiate ball gap firing. g. If ball gap does not dire, repeat steps c, d, and f w
7、ith test ball gap vernier set one division lower each time until ball gap fires. Repeat procedure at this setting as often as is felt necessary to guarantee that a consistent firing point has been obtained. Record this dial setting. h. Proceed to check ball gap over range of 5 to 30 KV at one KV inc
8、rements. i. Following initial calibration or after any remedial action has been taken, a curve of kilovolts versus dial setting should be plotted and attached to ball gap. Subsequent calibrations of the gap must maintain 2 9 dial divisions of initial data to be a valid calibra- tion. j. 3. DESCRIPTI
9、ON OF PULSE GENERATOR The pulse generator is actually constructed in three portions. These are power supply and primary con- trols, leads and grounds, and high voltage components. 3.1 Power Supply and Primary Controls 3.1.1 The power supply used in the pulse generator is a commercial grade 40 KV pow
10、er pack in a shielded case. Most present day commercial power supplies would probably work if, in their fabrication, good high voltage practices of connections, grounds, and internal shielding, among others were utilized by the manufacturer. 3.1.2 To regulate and control the output voltage of the po
11、wer supply, autotransformers were used. One was a constant voltage transformer for line regulation, the others were variable autotransformers providing coarse control over the full voltage range and fine control of only several hundred volts at any setting of the coarse control. 3.1.3 Some means was
12、 necessary to signal the operator that the pulses were generated since the output was inaudible. A commercial audio amplifier and speaker system was installed, and an inductive pickup coil was placed in close proximity to one of the wires carrying the pulse. Thus when the generator fired, an audible
13、 click could be heard in the speaker, freeing the operators vision for observation of the ball gap in calibration. SAE AIR*LOSL 63 9 8357340 0003486 7 -3- 3.2 Lead and Grounds: The calibrator was constructed with a one point ground made of a solid copper block into which all grounded components and
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