电力电子
数码产品
脉冲发生器
电子工程
电气工程
稳健性(进化)
波形
脉冲功率
电阻式触摸屏
高保真
电阻器
电阻抗
工程类
马克思发生器
纳秒
高阻抗
计算机科学
发电机(电路理论)
电子线路
输出阻抗
电力系统
抖动
功率半导体器件
功率(物理)
任意波形发生器
钥匙(锁)
极限(数学)
半导体器件
电力系统保护
电子元件
电气元件
脉搏(音乐)
电磁线圈
电压
减刑
集成电路
灾难性故障
作者
Rongrong Liu,Zhengyi Zhong,Yuyi Guo,Yuwen Han,Jinsong Guo,fukun shi,Shuqun Wu,Junfeng Rao,Jie Zhuang
标识
DOI:10.1109/tpel.2026.3660064
摘要
This paper presents a modular, high-frequency bipolar nanosecond pulse generator (nsPG) featuring a dual-layer intrinsic safety design for complex dynamic biological loads. The proposed hybrid architecture synergistically integrates a solid-state Marx generator with a step-up pulse transformer, creating a compact and component-efficient power electronics platform. Key innovations include an inductor-based charging scheme that halves the semiconductor switch count and a multi-faceted passive protection strategy that not only leverages the transformer's volt-second limit to suppress long-pulse faults but also architecturally precludes catastrophic DC shoot-through failures. The prototype delivers a flexible output of 0-±11 kV and 100–500 ns pulses with a 500 kHz burst frequency, achieving an electrical efficiency of 94.85% on resistive loads. Crucially, the generator's robustness was validated throughin vivoandex vivoexperiments. The results demonstrated that the nsPG maintained exceptional waveform fidelity despite a drastic 80.27% impedance collapse in the potato model (from 2.488 kΩ to 491.0 Ω at 10 kHz) and a 6.17% real-time dynamic reduction in the mouse model (from 412.0 Ω to 386.6 Ω over the initial ten pulses). This work demonstrates a robust and safe power electronics solution for a broad class of complex, low-impedance loads, positioning it as a key enabling technology for a challenging class of emerging industrial and scientific applications.
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