基于雪崩三极管马克思电路和TLT的超短脉冲发生器

Yizhen Lei, Mingzu He, Liang Yu, Dazhao He, Shoulong Dong, C. Yao
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引用次数: 0

摘要

超短强电场可使细胞膜产生纳秒级的电穿孔,从而诱导细胞自噬和自我修复。为了研究自噬过程中的高压短脉冲,首先利用雪崩三极管Marx电路产生单纳秒级的低压短脉冲。由于雪崩三极管在导通过程中存在内阻,马克思级数的增加表现出输出饱和的特征。为了进一步增强输出电压幅值,每个马克思都与来自输电线变压器的短脉冲叠加,以实现高电压幅值输出。最后,研制出了一种前沿快、脉宽达数纳秒的全固体超短电脉冲样机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Ultra-Short Pulse Generator Based on The Avalanche Triode Marx Circuit and TLT
The ultra-short and strong electric fields can produce nanosecond electroporation of the cell membrane, which induces cell self-repair and autophagy. To study the high voltage short pulse in autophagy, an avalanche triode Marx circuit is firstly used to generate a single low voltage nanosecond short pulse. Due to the internal resistance of the avalanche triode during the conduction process, the increase of the Marx series shows the characteristic of output saturation. To further enhance the output voltage amplitude, each Marx is stacked with short pulses from the transmission line transformer to achieve the high voltage amplitude output. Finally, an all-solid ultra-short electric pulse prototype with the fast leading edge and pulse width of several nanoseconds is developed.
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