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Electronic ballast for fluorescent lamps

机译:荧光灯电子镇流器

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A frequency-domain analysis is given for a Class D voltage-switching power inverter with a load resistance connected in parallel with a resonant capacitor. Using the fundamental component approximation, design equations are derived to provide easy-to-use design tools. The inverter is inherently short-circuit-proof, but cannot operate safely with an open circuit at the resonant frequency. Safe operation with an open circuit can be achieved if the operating frequency is sufficiently lower or higher than the resonant frequency. Experimental results are given for two F40 fluorescent lamps connected in series, using MTP5N40 MOSFETs. The operating frequency was 50 kHz at full power and 70 kHz at 20% of full power. At full power, the efficiency of the Class D inverter was 95.6% and the efficiency of the power factor corrector was 93%. The overall efficiency of the ballast was 89.4% at full power.
机译:针对负载电阻与谐振电容器并联的D类电压开关电源逆变器进行了频域分析。使用基本成分逼近,可以得出设计方程式,以提供易于使用的设计工具。逆变器本质上是防短路的,但是在谐振频率下开路时无法安全运行。如果工作频率足够低于或高于谐振频率,则可以实现开路的安全操作。使用MTP5N40 MOSFET,给出了两个串联的F40荧光灯的实验结果。满功率时的工作频率为50 kHz,满功率的20%时为70 kHz。在全功率下,D类逆变器的效率为95.6%,功率因数校正器的效率为93%。在全功率下,镇流器的总效率为89.4%。

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