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首页> 外文期刊>Journal of power electronics >An Improved Topology for the Current Fed Parallel Resonant Half Bridge Circuits Used in Fluorescent Lamp Electronic Ballasts
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An Improved Topology for the Current Fed Parallel Resonant Half Bridge Circuits Used in Fluorescent Lamp Electronic Ballasts

机译:用于荧光灯电子镇流器的电流馈电并联谐振半桥电路的改进拓扑

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摘要

An improvement in the current fed parallel resonant half bridge (CFPRHB) circuits used in fluorescent lamp electronic ballasts is provided in this paper. The CFPRBB belongs to the self-oscillating family which includes the current fed push-pull and series resonant inverters, most of which are used in instant-start applications. However, many failure modes are related to the bypass capacitor according to an analysis of failed samples. In this paper, the operating functions of the existing topology in the steady state are analyzed and the main root cause of failure modes has been found. Comparisons between the two topologies are conducted in terms of the voltage stress of the bypass capacitor as well as the thermal and performance of the ballasts to verify the advantages of the proposed topology. It is found that the improved topology is capable of enhancing the reliability and reducing the cost of products without having a negative influence on the system performance.
机译:本文对荧光灯电子镇流器中的电流馈入并联谐振半桥(CFPRHB)电路进行了改进。 CFPRBB属于自激振荡系列,其中包括电流馈送的推挽和串联谐振逆变器,其中大多数用于瞬时启动应用。然而,根据对故障样本的分析,许多故障模式与旁路电容器有关。本文分析了现有拓扑在稳态下的运行功能,并找到了故障模式的主要原因。根据旁路电容器的电压应力以及镇流器的散热和性能对两种拓扑进行比较,以验证所提出拓扑的优势。发现改进的拓扑结构能够增强可靠性并降低产品成本,而不会对系统性能产生负面影响。

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