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Radio-frequency powered glow discharge device and method with high voltage interface

机译:带有高压接口的射频辉光放电装置和方法

摘要

A high voltage accelerating potential, which is supplied by a high voltage direct current power supply, is applied to the electrically conducting interior wall of an RF powered glow discharge cell. The RF power supply desirably is electrically grounded, and the conductor carrying the RF power to the sample held by the probe is desirably shielded completely excepting only the conductor's terminal point of contact with the sample. The high voltage DC accelerating potential is not supplied to the sample. A high voltage capacitance is electrically connected in series between the sample on the one hand and the RF power supply and an impedance matching network on the other hand. The high voltage capacitance isolates the high DC voltage from the RF electronics, while the RF potential is passed across the high voltage capacitance to the plasma. An inductor protects at least the RF power supply, and desirably the impedance matching network as well, from a short that might occur across the high voltage capacitance. The discharge cell and the probe which holds the sample are configured and disposed to prevent the probe's components, which are maintained at ground potential, from bridging between the relatively low vacuum region in communication with the glow discharge maintained within the cell on the one hand, and the relatively high vacuum region surrounding the probe and cell on the other hand. The probe and cell also are configured and disposed to prevent the probe's components from electrically shorting the cell's components.
机译:由高压直流电源提供的高压加速电势被施加到RF供电的辉光放电室的导电内壁。期望RF电源被电接地,并且期望将携带RF功率到由探针保持的样品的导体完全屏蔽,除了导体与样品接触的终点之外。高压直流加速电位不提供给样品。高压电容一方面电连接在一方面与射频电源之间,另一方面与阻抗匹配网络串联。高压电容将高DC电压与RF电子设备隔离开来,而RF电位则通过高压电容传递到等离子体。电感器至少可以保护RF电源,并且还可以理想地保护阻抗匹配网络,使其免受高压电容两端可能发生的短路的影响。放电室和固定样品的探针的配置和布置,是为了防止保持在地电位的探针组件桥接在相对较低的真空区域之间,从而与保持在样品室内的辉光放电连通,另一方面,相对较高的真空区域围绕着探针和细胞。探针和电池还被配置和布置为防止探针的组件使电池的组件电气短路。

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