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Synthesized High-Frequency Thyristor for Dielectric Barrier Discharge Excimer Lamps

机译:用于介质阻挡放电准分子灯的合成高频晶闸管

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摘要

Dielectric barrier discharge (DBD) lamps, being capacitive loads, must be associated with bidirectional current sources for an appropriate control of the transferred power. Pulsed current source supplies, which are known to offer very interesting performances, require specific power switches that are able to manage bidirectional voltage and unidirectional current at much higher frequencies (several hundreds of kilohertz) than commercial thyristors. This paper proposes the detailed design of such a high-speed synthesized thyristor, using discrete components: a MOSFET in series with a high-voltage (HV) diode and a logic circuit that controls its gate. This switch is associated with an optimized self-powered driver, which is a very efficient solution to handle the perturbations associated with the HV and high-frequency operation. Experimental application of this device for DBD excimer lamp supply is proposed.
机译:电容性负载的电介质阻挡放电(DBD)灯必须与双向电流源相关联,以适当控制传输的功率。已知提供非常有趣的性能的脉冲电流源电源需要特定的电源开关,这些电源开关必须能够以比商用晶闸管高得多的频率(几百千赫兹)来管理双向电压和单向电流。本文提出了使用分立元件的这种高速合成晶闸管的详细设计:与高压(HV)二极管串联的MOSFET和控制其栅极的逻辑电路。该开关与优化的自供电驱动器相关联,这是一种非常有效的解决方案,用于处理与HV和高频操作相关的扰动。提出了该装置用于DBD准分子灯的实验应用。

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