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Tunable impedance matching networks based on phase-switched impedance modulation

机译:基于相控阻抗调制的可调阻抗匹配网络

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The ability to provide accurate, rapid and dynamically-controlled impedance matching offers significant advantages to a wide range of present and emerging radio-frequency (RF) power applications. This work develops a new type of tunable impedance matching networks (TMN) that enables a combination of much faster and more accurate impedance matching than is available with conventional techniques. This implementation is based on a narrow-band technique, termed here phase-switched impedance modulation (PSIM), which entails the switching of passive elements at the RF operating frequency, effectively modulating their impedances. The proposed approach provides absorption of device parasitics and zero-voltage switching (ZVS) of the active devices, and we introduce control techniques that enable ZVS operation to be maintained across operating conditions. A prototype PSIM-based TMN is developed that provides a 50 Ohms match over a load impedance range suitable for inductively-coupled plasma processes. The prototype TMN operates at frequencies centered around 13.56 MHz at input RF power levels of up to 150 W.
机译:提供准确,快速和动态控制的阻抗匹配的能力为各种当前和新兴的射频(RF)电源应用提供了显着的优势。这项工作开发了一种新型的可调阻抗匹配网络(TMN),与传统技术相比,该网络可实现更快,更准确的阻抗匹配组合。此实现基于窄带技术(在此称为相控阻抗调制(PSIM)),该技术需要在RF工作频率下切换无源元件,从而有效地调制其阻抗。所提出的方法可吸收器件寄生效应和有源器件的零电压开关(ZVS),并且我们引入了控制技术,可在整个工作条件下维持ZVS操作。开发了基于PSIM的TMN原型,该TMN在适合电感耦合等离子体工艺的负载阻抗范围内提供50欧姆匹配。 TMN原型在高达150 W的输入RF功率水平下,在以13.56 MHz为中心的频率下工作。

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