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Compact K-band distributed RF MEMS phase shifter based on high-speed switched capacitors

机译:基于高速开关电容的紧凑型K频段分布式RF MEMS移相器

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A high-speed switched capacitor based distributed MEMS phase shifter has been presented. Miniaturization of the conventional MEMS capacitor dimensions has been done to achieve sub-microsecond switching, lower actuation voltage and a compact structure. Conventional design approach of such high-speed MEMS capacitor based phase shifter employs cascading the capacitors on a linear coplanar transmission line. Compactness of the device is achieved by employing space filling curves like i) Meander line CPW and ii) Modified Hilbert curve CPW. Simulations conducted reveal that the modified Hilbert Curve based phase shifter provides the most compact structure and yields a phase shift of ∼180° at 22GHz (K-band). The modified Hilbert Curve occupies an area of (820×820) µm2 only. Electromechanical simulations indicate that the switched capacitors require an actuation voltage of 14V and a switching time of 220ns.
机译:已经提出了一种高速开关电容基的分布式MEMS移相器。已经完成了传统MEMS电容器尺寸的小型化以实现亚微秒切换,较低的致动电压和紧凑的结构。这种高速MEMS电容器的移位器的传统设计方法采用级联在线性共面传输线上的电容器。通过采用I)曲折线CPW和II)的空间填充曲线来实现该装置的紧凑性,改进的Hilbert曲线CPW。进行的模拟表明,改进的Hilbert曲线的相移器提供了最紧凑的结构,并在22GHz(k波段)下产生~180°的相移。修改的Hilbert曲线仅占(仅820×820)μm 2 的区域。机电模拟表明开关电容需要14V的致动电压和220ns的切换时间。

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