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Design of Parallel-Coupled Microstrip Line Band Pass Filter (BPF) for Ultra-Wide Band (UWB) Applications

机译:用于超宽带(UWB)应用的并联耦合微带线带通滤波器(BPF)的设计

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摘要

With release of the "First Report and Order" Feb.14, 2002, by the US Federal Communication Commission (FCC), the power spectral density of UWB for indoor/outdoor communication devices is defined. From that, the signal used in UWB system has power spectrum with ultra-wideband, which implies very narrow pulse in time domain. The shape of monocycle pulse plays important role because it affects the performance of the UWB system, therefore, designing band pass filter (BPF) for shaping the generated UWB monocycle pulse to fit the FCC rules is one main blocks of UWB transmitter. This paper concerns the design of microstrip BPF using coupled half-wave resonators with a pass window of 3.1 to 10.6 GHZ at a center frequency of 6.85GHz, passband insertion loss ripples 0.2 dB, minimum stopband attenuation of 20 dB on silicon substrate using IE3D EM simulation platform.
机译:通过释放“第一报告和订单”2002年2月14日,由美国联邦通信委员会(FCC),定义了用于室内/室外通信设备的UWB的功率谱密度。从那时起,UWB系统中使用的信号具有超宽带的功率谱,这意味着时域中的非常窄的脉冲。单循环脉冲的形状起着重要作用,因为它影响了UWB系统的性能,因此,设计带通滤波器(BPF)来整形所产生的UWB单组合脉冲以适合FCC规则是UWB发射器的一个主块。本文涉及使用3.1至10.6 GHz的耦合半波谐振器在6.85GHz,通带插入损耗波纹0.2dB,使用IE3D衬底上的最小停滞带衰减为20dB的最小停滞衰减,使用IE3D EM在硅衬底上使用耦合的半波谐振器设计。仿真平台。

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