SAE AIR 1090-1969 Ignition Exciter Output Voltage Pulse Measurement Using a Pressurized Ball Gap《使用压力球隙测量点火励磁器输出电压脉冲》.pdf
《SAE AIR 1090-1969 Ignition Exciter Output Voltage Pulse Measurement Using a Pressurized Ball Gap《使用压力球隙测量点火励磁器输出电压脉冲》.pdf》由会员分享,可在线阅读,更多相关《SAE AIR 1090-1969 Ignition Exciter Output Voltage Pulse Measurement Using a Pressurized Ball Gap《使用压力球隙测量点火励磁器输出电压脉冲》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、SAE AIR*LOO 69 8357340 0003Li73 9 I AEROSPACE I N FO RM AT1 O N SPACE REP 0 KT Society TWO PENNSYLVANIA of Automotive PLAZA, NEW Engineers, YORK. N Y Inc. 10001 AIR 1090 Issued 10-1-69 Revised -.- IGNITION EXCITER OUTPUT VOLTAGE PULSE MEASUREMENT USING A PRESSURIZED BALL GAP : - c. PURPOSE The purpo
2、se of this report is to provide reference information for equipment and procedure to be used in measurement of high tension ignition exciter output voltage pulses using a pressurized ball gap. SCOPE This report includes a procedure for typical pulse voltage measurement using the pressurized ball gap
3、, calibration procedure, and a description of the pressurized ball gap. _- 1. INTRODUCTION 1.1 1.2 1.3 1.4 1.5 The high tension capacitor discharge ignition system produces an initial ionizing voltage of a magni tude as large as necessary (within design limits) to ionize the gap of the high tension
4、igniter. The rise time of the ionizing pulse (zero to peak voltage) approximates one microsecond in most high tension ignition systems. The magnitude of the ionizing pulse is determined by the high tension ig- niter demand under the conditions of pressure, temperature, and atmosphere within which it
5、 is re- quired to ionize. Determination of the output pulse magnitude is important since sufficient voltage must be supplied from the exciter to ionize the spark igniter. It also may be desirable to determine the maximum output voltage pulse magnitude so that leads and terminations are not damaged s
6、hould the spark ig- niter be quenched. These requirements to determine minimum and maximum output pulse voltage amplitude of high ter sion exciters require measurement equipment that is responsive to the output pulse rise time and magnitude and is reasonably repeatable. Since inspection test criteri
7、a usually establish go-no go levels, the pressurized ball gap lends itsel to this type of requirement. Specific determination of output voltage pulse magnitude may also be made. The pressurized ball gap described herein is adequately sensitive, consistent and stable to produce the desired results. c
8、uracy and subsequent use such as: It minimizes the shortcomings which have existed in the past that affect ac- a. b. c. Oxidation of electrodes d. Poor ionization characteristics e. Poor resolution and readability f. Method of calibration Effects of barometric pressure and relative humidity Stray ca
9、pacity effects caused by nearby grounds Copyright 1969 by Society of Automotive Engineers, inc. - Printed in U.S.A. - SAE AIR*KLOSO 69 W 8357340 0003474 O W 2. 3. 3.1 3.2 -2 - SPECIFICATIONS FOR PRESSURIZED BALL GAP The general specifications for the pressurized ball gap described by this report are
10、 as follows: Range: 5 to 30 KV Peak Voltage Risetime: Designed to measure pulses with zero to peak voltage rise times of 800 nanoseconds to 50 microseconds Accuracy: Operating Pressure: Pressurizing Gas: Dry Nitrogen Construction: Weight: 50 lb Internal Capacitance: 25 pf Fig. 1 shows the pressurize
11、d ball gap described. PROCEDURE FOR TYPICAL PULSE VOLTAGE MEASUREMENT USING PRESSURIZED BALL GAP - -t 1% of full scale from ref. std. 800 torr (mm Hg) Sealed system with controlled purge rate Test Method Configuration a. Fig. 2 shows an exciter unit with associated ball gap used for pulse voltage me
12、asurement. b. Fig. 3 is a block diagram showing the equipment arrangement used in the measurement. Detailed Procedure for &-No Go Requirement a. Connect a dry nitrogen tank to ball gap and adjust pancake regulator at top of ball gap to produce 800 torr absolute pressure on indicator. A size 1A gas b
13、ottle is recommended and will furnish approxi- mately 48 hr of gas supply. b. If ball gap has not been in continuous use, allow to purge one-half hour minimum to guarantee a homo- geneous gas flow. c. Insure that proper capacitance loading applicable to test piece is applied across exciter output. T
14、he total load must include the internal capacitance of the ball gap. d. Connect exciter output to appropriate “HV“ and “GND“ terminals of the ball gap. e. Obtain desired specification lower voltage limit and convert to dial divisions on the ball gap turn count- ing dial through use of calibration cu
15、rve of ball gap. See Fig. 4 for a typical curve. f. Energize unit. Ball gap should fire consistently for prescribed period of time dictated on specification for exciter unit. g. Obtain desired specification upper voltage limit and convert to dial divisions on the ball gap turn counting dial through
16、use of the calibration curve. Energize unit. Ball gap should not fire for the prescribed period of time dictated on the specification for the exciter unit. h. SAE AIR*LOSO 69 m 8357340 0003475 2 m -3- 3.3 Specific Determination of Maximum Output Voltage Pulse a. To obtain a specific coming-in or fir
17、ing point, proceed as above except initially adjust ball gap turn, counting dial to insure non-firing by adjustment to a voltage level much higher than expected. b. Energize unit and, if firing does not occur, decrease ball gap spacing at about five division incremen._ until consistent firing occurs
18、. c. Convert ball gap turn counting dial divisions to output KV via calibration curve of gap. Initial gap setting must be to the non-firing side to eliminate the “drawing-out“ effect when approaching from the opposite direction. 4. CALIBRATION OF THE PRESSURIZED BALL GAP 4.1 Calibration Method Confi
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