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Analysis and Design of Self-Oscillating Full-Bridge Electronic Ballast for Metal Halide Lamp at 2.65-MHz Operating Frequency

机译:工作频率为2.65MHz的金属卤化物灯自激全桥电子镇流器的分析与设计

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摘要

This paper presents the analysis and design of the self-oscillating full-bridge electronic ballast for the metal halide lamp at 2.65-MHz operating frequency. In order to avoid the acoustic-resonance problem of the metal halide lamp and meet the electromagnetic interference limitation by International Electrotechnical Commission (IEC) regulation, the self-oscillating full-bridge electronic ballast is operated at 2.65-MHz radio frequency (RF). However, the effect caused by the gate-to-source capacitor C $_{rm gs}$ of the mosfets on the self-oscillating gate-drive network becomes significant to influence the design of the operating frequency at RF. Therefore, the gate-to-source capacitor C$_{rm gs}$ of the mosfets is considered to derive the design equation of the magnetizing inductor for the current transformer in the self-oscillating gate-drive network. Finally, based on the prototype circuit of a 35-W self-oscillating full-bridge electronic ballast with constant-lamp-current control and no-lamp-protection scheme at 2.65-MHz operating frequency, the SIMPLIS simulation and experimental results are used to validate the effect from gate-to-source capacitor C $_{rm gs}$, the proposed design equation, and the design criteria.
机译:本文介绍了在2.65MHz工作频率下用于金属卤化物灯的自激振荡全桥电子镇流器的设计。为了避免金属卤化物灯的声共振问题并满足国际电工委员会(IEC)法规的电磁干扰限制,自振荡全桥电子镇流器的工作频率为2.65 MHz射频(RF)。但是,由MOSFET的栅极-源极电容器C $ _ {rm gs} $引起的对自激栅极驱动网络的影响变得很明显,从而影响了RF工作频率的设计。因此,考虑MOSFET的栅极-源极电容器C $ _ {rm gs} $来推导自激式栅极驱动网络中电流互感器的励磁电感器的设计方程。最后,基于在工作频率为2.65MHz时具有恒定灯电流控制和无灯保护方案的35W自激振荡全桥电子镇流器的原型电路,将SIMPLIS仿真和实验结果用于验证栅极至源极电容器C $ _ {rm gs} $,拟议的设计方程式和设计准则的影响。

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