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Design Method of Large Power Miniaturization for Sequential Power Supply Control Circuit

机译:顺序电源控制电路大功率小型化设计方法

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In view of the fact that the current sequential power supply control methods can not meet the requirements of large power and small size design for the positive and negative voltage sequential power supply control circuit of the millimeter wave fuze detector power supply system at the same time, a high power miniaturization design method for the sequential power supply control circuit is proposed. The method is to design a power supply delayer in the power supply system of the millimeter wave fuze detector, so that the positive voltage can be output after a certain time delay, and the power supply system of the detector can realize the high power and miniaturization design of the sequential power supply control circuit on the basis of the negative voltage prior to the positive voltage supply. The test results show that the sequential supply of negative voltage before positive voltage can be realized effectively by using power supply delayer, and the design method of sequential supply control circuit can meet the system design requirements of high-power and small-scale.
机译:鉴于事实,即当前顺序电源控制方法不能同时满足大的功率和小的尺寸设计为毫米波引信检测器的电源系统的正和负电压顺序电源控制电路的要求,提出了一种用于顺序电源控制电路的高功率小型化设计方法。该方法是设计在毫米波引信检测器的电源系统的供电延迟器,使得正电压,可在一定时间延迟之后输出,并在检测器的电源系统能够实现高功率化和小型化设计之前的正电压电源负电压的基础上顺序电源控制电路的。试验结果表明,负电压的正电压之前顺序供给可以通过使用电源延迟器有效地实现,以及顺序供给控制电路的设计方法能满足高功率和小规模的系统的设计要求。

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