首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Analysis and estimate of the influence of the leakage inductance of the charging transformer primary on the amplitude stability of the PFN charging voltage
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Analysis and estimate of the influence of the leakage inductance of the charging transformer primary on the amplitude stability of the PFN charging voltage

机译:分析和估计充电变压器一次侧的漏感对PFN充电电压幅度稳定性的影响

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The technology of the pulse-forming network (PFN) being resonantly charged with the PFN charging voltage being stabilized by the deQing circuit has been widely used for developing the line-type modulator over the last several decades. Experience shows that the leakage inductance of the charging transformer primary needs to be less than 2% if the required output pulse amplitude stability of the modulator is about 0.1%. This paper studies how the leakage inductance influences the amplitude stability of the PFN charging voltage in the case of using the deQing circuit, explains the mechanism, presents an estimate method, develops the formulae, and reveals the laws. These formulae are not only useful in modulator design for properly specifying the leakage inductance and the related specifications, but also in showing how to improve the amplitude stability of the PFN charging voltage.
机译:在过去的几十年中,已广泛使用脉冲形成网络(PFN)的技术,该技术通过deQing电路稳定了PFN充电电压,使之谐振充电。经验表明,如果调制器所需的输出脉冲幅度稳定性约为0.1%,则充电变压器一次侧的漏电感必须小于2%。本文研究了在使用deQing电路的情况下漏感如何影响PFN充电电压的幅度稳定性,解释了其机理,提出了一种估算方法,开发了公式并揭示了规律。这些公式不仅在调制器设计中用于正确指定漏感和相关规范,而且在显示如何提高PFN充电电压的幅度稳定性方面均有用。

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