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A Synchronous Buck Converter Using a New Predictive Analog Dead-Time Control Circuit to Improve Efficiency

机译:一种采用新型预测模拟死区控制电路的同步降压转换器,以提高效率

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摘要

The one-step predictive dead-time control circuit proposed in this paper consists of a dead-time detection circuit and an analog optimization circuit. The detection circuit, which can be manufactured on the same die as the synchronous MOSFET of the buck converter, provides an accurate detection signal that indicates body diode conduction. The proposed dead-time optimization circuit is an analog circuit, which uses the body diode detection signal and eliminates the shortcomings of digital dead-time detection circuits. Operation of the circuit is verified using PSIM. The results of the simulation show that the circuit reduces the body diode conduction time of the synchronous MOSFET to less than 4 ns at 20-A load, 12-V input, 1.2-V output, and 500-kHz switching frequency. As a result, the buck converter conduction losses can be reduced by 16.3%.
机译:本文提出的单步预测停滞时间控制电路由停滞时间检测电路和模拟优化电路组成。该检测电路可以与降压转换器的同步MOSFET制作在同一芯片上,可提供指示体二极管导通的准确检测信号。提出的空载时间优化电路是一种模拟电路,它使用体二极管检测信号,并消除了数字空载时间检测电路的缺点。使用PSIM验证电路的操作。仿真结果表明,在20A负载,12V输入,1.2V输出和500kHz开关频率下,该电路可将同步MOSFET的体二极管导通时间缩短至不到4ns。结果,降压转换器的导通损耗可以减少16.3%。

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