电器与能效管理技术 ›› 2026, Vol. 0 ›› Issue (1): 58-65.doi: 10.16628/j.cnki.2095-8188.2026.01.008

• 研究与分析 • 上一篇    下一篇

一种具有过压保护功能的高压启动供电电路

邓棵, 赵钢   

  1. 中国电子科技集团公司第二十四研究所, 重庆 400060
  • 收稿日期:2025-09-26 出版日期:2026-01-30 发布日期:2026-02-10
  • 作者简介:邓棵(1996—),女,硕士,研究方向为模块电源设计。|赵钢(1982—),男,研究方向为成品检测和可靠性。

A High-Voltage Start-Up Power Supply Circuit with Overvoltage Protection

DENG Ke, ZHAO Gang   

  1. The 24th Research Institute of China Electronics Technology Group Corporation, Chongqing 400060, China
  • Received:2025-09-26 Online:2026-01-30 Published:2026-02-10

摘要:

在高压开关电源系统中,传统启动供电方案,如并联型稳压电路、线性稳压电路等,普遍存在效率偏低、功率器件长时间工作在高压应力下等问题。针对上述技术瓶颈,对比领域内主流方案利弊,提出一种新型启动供电电路。该电路采用由线性稳压+辅助供电电源组成的二级供电机制、基于运算放大器和分压网络的动态滞环控制及集成过压保护单元,提升了效率和可靠性。基于SIMetrix电路仿真数据制作了一款样品电路。结果表明,样品电路测试效率由传统方案的30%~40%提升至72%,仿真验证及样品电路测试均验证了该方案的合理性和可行性。

关键词: 高压开关电源系统, 效率, 高压应力, 线性稳压, 动态滞环, 启动供电

Abstract:

To address the limitations of conventional start-up power supply solutions (such as shunt-regulated circuits and linear-regulated circuits) in high-voltage switching power supply systems,which are plagued by low efficiency and sustained high-voltage stress on power devices,a novel high-voltage start-up power supply circuit is proposed by sorting out existing technical bottlenecks and comparing the advantages and disadvantages of mainstream solutions in the field.Enhanced efficiency and reliability are achieved by adopting three key improvements in the proposed circuit:a two-stage power supply mechanism combining a linear regulator and an auxiliary power supply,dynamic hysteresis control based on an operational amplifier and a voltage divider network,and an integrated overvoltage protection unit.A prototype circuit is fabricated based on SIMetrix simulation data.Experimental results indicate that the efficiency of the prototype circuit is increased from 30%~40% of the conventional scheme to 72%.The rationality and feasibility of the proposed scheme are verified by both simulation validation and prototype circuit tests.

Key words: high-voltage switching power supply system, efficiency, high-voltage stress, linear regulator, dynamic hysteresis, start-up power supply

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