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Protecting the Leads of a Powered Magnet That is Protected With Diodes and Resistors

机译:保护受二极管和电阻器保护的有源磁铁的引线

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摘要

MRI magnets and other magnets that have a low current and high self-inductance are passively quench-protected with a system that includes sub-divided coils with resistors and diodes that are in parallel with sections of the coils. The primary purpose of coil sub-division is to protect the coil from the high voltages that can occur during a quench. In the event of a lead failure (conventional or superconducting) between the coil and its power supply or its persistent switch, the total current in the coil flows through the diodes and resistors in parallel with the coil. When a lead fails, the current decay time constant for the coil current can be quite long. It is desirable that the coil quench in a time that is short compared to the coil current decay time constant. Experience shows that the heating from the resistors and diodes will eventually quench the magnet. This paper presents methods for shortening the time between a lead failure or a persistent switch failure and the eventual magnet quench.
机译:MRI磁体和其他具有低电流和高自感的磁体通过系统进行被动淬火保护,该系统包括细分的线圈,该线圈具有电阻器和与线圈部分并联的二极管。线圈细分的主要目的是保护线圈免受淬火期间可能产生的高压影响。如果线圈与其电源或持续开关之间发生引线故障(常规或超导),则线圈中的总电流将流经与线圈并联的二极管和电阻器。当导线失效时,线圈电流的电流衰减时间常数可能会很长。期望线圈在比线圈电流衰减时间常数短的时间内淬火。经验表明,电阻器和二极管产生的热量最终将使磁体淬火。本文提出了缩短引线故障或持续开关故障与最终磁体失超之间的时间的方法。

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