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Droop of the Fractional Turn Ratio Pulse Transformer

机译:分数匝数比脉冲变压器下垂

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摘要

In order to successfully design a solid-state modulator with the fractional turn ratio transformer for C band magnetron, the parameters of the fractional turn ratio pulse transformer must be chosen carefully. The rise time and fall time of the fractional turn ratio pulse transformer can be calculated the same as the traditional pulse transformer, but its droop cannot be calculated with traditional pulse transformer design methods. An equivalent circuit was derived to analyze the droop of the fractional turn ratio pulse transformer; the circuit equation has been solved analytically in the article. The results show that the droop equals the reduced pulse width T (T=t/CRe) in the first order approach, where t is the output pulse width, C is the store energy capacitor and Re is the equivalent load. In the second order approach, it is related with the magnetizing inductance of the fractional turn ratio pulse transformer.
机译:为了成功设计具有用于C频段磁控磁控磁阻的分数匝数比变压器的固态调制器,必须小心地选择分数匝数比脉冲变压器的参数。分数匝数比脉冲变压器的上升时间和下降时间可以计算与传统脉冲变压器相同,但不能用传统的脉冲变压器设计方法计算其下垂。得出了等效电路,分析了分数匝数比脉冲变压器的下垂;电路方程已经在文章中分析解决。结果表明,下垂等于第一阶方法中的减小脉冲宽度T(T = T / CRE),其中T是输出脉冲宽度,C是商店能量电容器,RE是等效负载。在二阶方法中,它与分数匝比脉冲变压器的磁化电感有关。

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