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本文提出了一种基于MOCCII的任意偶数阶电流模椭圆滤波器综合设计方法。通过对n阶(偶数)椭圆传输函数进行分析,将其分解成一系列能用无损积分器实现的表达式;并对输出电流信号进行线性组合,以实现了偶数阶的电流模式椭圆滤波器的综合。该方法实现的电路结构简单,所用有源和无源元件最少,仅由n个接地电容,(3n-1)/2个有源器件和接地电阻构成。给出了四阶高通、低通和带通椭圆形滤波器的设计实例。Pspice仿真结果表明采用该方法设计偶数阶电流模式椭圆滤波器是可行的,适用的。 相似文献
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A synthesis method to design a defected ground structures (DGS)-based Bessel low-pass filter (LPF) using a triangular and an open-square (OS)-type DGS is reported. For the five-pole Bessel LPF at fc = 2.5 GHz, we get 10.6 dB/GHz selectivity using the triangular DGS; while the OS-type DGS provides 39 dB/GHz selectivity. For these two filters, the 10 dB impedance matching BW is 76% and 84%, respectively. It is a much wider BW that is obtained for a lumped element Bessel LPF. The maximum group delay (GD) variation within the pass band is 25pS and 28pS, respectively. The 20 dB rejection BW can be increased from 5.8 GHz to 18.8 GHz with increase in the order of filter from 5 to 11. We have also presented the design of a compact five-pole DGS-based elliptic filter with selectivity 38.2 dB/GHz and 17.8 dB return loss. Results on the DGS-based elliptic filter, Butterworth and Chebyshev filters are also presented. The experimental results are compared against the recently reported LPFs. Our reported filters perform better with respect to selectivity and group delay variation. The flatter GD and high selectivity, along with a wide 10 dB impedance matching BW, make the DGS Bessel filter a candidate for high-speed data communication, front end of a wideband communication system and efficiency improvement of a power amplifier. 相似文献
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微带滤波器的传统设计方法包含大量理论计算与公式推演,整个设计过程颇为繁琐。利用Filter Solutions 这款成熟的滤波器设计软件,提出了一种快速设计微带滤波器的方法。将设计目标导入Filter Solutions 中得到微带低通滤波器的初值,再应用ADS 软件对模型初值进行仿真优化,最终完成了一种高阻带抑制微带低通滤波器(DC~3 GHz)的设计。该微带低通滤波器的仿真结果很好地满足了设计目标,并在RT/ Duroid 6006 基板上对其进行了实现。实测结果表明,其带内插损小于1. 3 dB,驻波小于1. 3,3. 74 GHz 处的阻带抑制大于60 dB,整个阻带一直到6. 8 GHz 都有大于40 dB 的抑制,且尺寸仅为18. 1 mm×9. 1 mm×0. 635 mm。该微带低通滤波器的实测结果与仿真结果有较好的吻合,表明利用Filter Solutions 辅助设计滤波器简便快捷,完全可以满足工程设计要求。 相似文献