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A Digitally Controlled Switching Regulator With Reduced Conductive EMI Spectra

机译:具有降低的导电EMI谱的数控开关稳压器

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摘要

This paper presents the use of a combined random pulse position modulation (RPPM)/digital pulsewidth modulation (DPWM) digital controller for a buck converter to simultaneously achieve low-conductive electromagnetic interference (EMI) and a fast transient response. An area-efficient RPPM/DPWM controller suitable for advanced system-on-chip integration is proposed and implemented in a field-programmable gate array-based prototype to verify its EMI-suppression capability. The experimental results for a 1.2-V digital buck converter show that the proposed digital switching regulator can switch between RPPM and DPWM modes smoothly and automatically. Closed-loop system measurements demonstrate that, compared to DPWM, up to 17.27 and 14.99 dB power spectra reductions are obtained in the input current and switching node, respectively.
机译:本文提出了将组合的随机脉冲位置调制(RPPM)/数字脉冲宽度调制(DPWM)数字控制器用于降压转换器的方法,以同时实现低导电性电磁干扰(EMI)和快速瞬态响应。提出了一种适用于高级片上系统集成的面积有效的RPPM / DPWM控制器,并在基于现场可编程门阵列的原型中实现了该控制器,以验证其EMI抑制能力。 1.2 V数字降压转换器的实验结果表明,所提出的数字开关稳压器可以平稳,自动地在RPPM模式和DPWM模式之间切换。闭环系统测量结果表明,与DPWM相比,在输入电流和开关节点处分别可分别降低17.27和14.99 dB的功率谱。

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