首页> 外文期刊>IEEE Transactions on Industry Applications >Design and Analysis of 37.5% Energy-Recycling Flyback-Type Class-D Low-Side Gate Driver IC with 5-to-15-V Level Conversion
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Design and Analysis of 37.5% Energy-Recycling Flyback-Type Class-D Low-Side Gate Driver IC with 5-to-15-V Level Conversion

机译:具有5V至15V电平转换的37.5%能量回收反激式D类低侧栅极驱动器IC的设计与分析

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摘要

This paper presents an energy-recycling class-D low-side gate driver integrated circuit (IC), which can also perform 5-to-15-V level upconversion using a bidirectional flyback converter topology. The gate driver itself is a mini switching regulator that operates at 5–15 MHz to generate 1-μs transition time gate-switching waveforms. In order to maintain uniform charging/discharging currents during transitions, the embedded flyback converter operates in a pulse-frequency modulation mode while charging and in a pulse width modulation mode while discharging the gate node. The required pulses with digitally programmable frequencies and duty cycles are efficiently generated by a custom-designed IC fabricated in a 0.25-μm HV CMOS technology. Also, the presented analysis guides a way to achieve the desired transition time with the maximum efficiency. The prototype IC demonstrates 37.5% energy recycling while driving a 15-V insulated-gate bipolar transistor power switch with 105-nC gate charge at 20 kHz.
机译:本文提出了一种能量回收D类低端栅极驱动器集成电路(IC),该集成电路还可以使用双向反激转换器拓扑结构执行5至15V电平上变频。栅极驱动器本身是一个微型开关稳压器,其工作频率为5-15 MHz,以产生1-μs的过渡时间栅极开关波形。为了在过渡期间保持均匀的充电/放电电流,嵌入式反激转换器在充电时以脉冲频率调制模式工作,而在对栅极节点放电时以脉冲宽度调制模式工作。通过以0.25μmHV CMOS技术制造的定制设计IC,可以有效地生成具有数字可编程频率和占空比的所需脉冲。同样,提出的分析指导了一种以最大效率实现所需过渡时间的方法。原型IC在驱动20V时具有105nC栅极电荷的15V绝缘栅双极晶体管电源开关时,展示了37.5%的能量回收率。

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