← 返回

用于全功率范围效率提升的分裂并联半桥开关单元

Split Parallel Semibridge Switching Cells for Full-Power-Range Efficiency Improvement

语言:

中文摘要

本文提出了一种基于正向耦合电感(PCI)的半桥开关单元并联方案。通过将半桥开关单元和电感拆分为两个并联部分,在并联单元中点间形成较小的差模电感,利用时间延迟控制技术,有效提升了变换器在全功率范围内的运行效率。

English Abstract

This article proposes a positively coupled inductor (PCI) based paralleling scheme for basic semibridge switching cells, which are formed by power MOSFETs and diodes. Both the semibridge switching cells and the inductors are split into two parallel parts, and thus, a small differential mode (DM) inductance is formed between the midpoints of the parallel semibridge switching cells. A time-delay-bas...
S

SunView 深度解读

该技术通过优化开关单元拓扑与电感耦合方式,显著提升了变换器在全功率范围内的效率,这对阳光电源的核心业务具有重要价值。在组串式光伏逆变器和PowerTitan/PowerStack储能变流器(PCS)中,DC-DC升压电路是决定整机效率的关键环节。应用该分裂并联方案,可有效降低轻载下的开关损耗并优化重载下的电流分布,从而提升产品在不同工况下的能效表现,助力阳光电源进一步优化逆变器与PCS的功率密度与散热设计,增强市场竞争力。