首页> 外文期刊>Journal of circuits, systems and computers >DESIGN OF BESSEL LOW PASS FILTER USING DGS WITH IMPROVED CHARACTERISTICS FOR RF/MICROWAVE APPLICATIONS
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DESIGN OF BESSEL LOW PASS FILTER USING DGS WITH IMPROVED CHARACTERISTICS FOR RF/MICROWAVE APPLICATIONS

机译:利用改进特性的DGS设计贝塞尔低通滤波器,用于射频/微波应用

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We report a synthesis process to design the defected ground structure (DGS)-based Bessel lowpass filter (LPF). For 5-pole LPF at f_c = 2.5 GHz, its selectivity is 10.6 dB/GHz and for the DGS-based Butterworth LPF it is 12.6 dB/GHz. For the lumped elements Bessel LPF, it is only 4.84 dB/GHz. Its 20 dB rejection bandwidth is 13.1 GHz and impedance matching BW is 76%, as against 88.8% for Butterworth LPF. At f_c = 7.5 GHz, the 5-pole DGS Bessel LPF has selectivity 7 dB/GHz, 20 dB rejection BW is 13 GHz and 10 dB return loss (RL) BW in pass-band is 4.86 GHz (64.8%) with less than 7.9 pS group delay (GD) variation. In case of a bulky mixed microstrip-waveguide (MMW) 5-pole Bessel LPF at 7.5 GHz [W. Menzel and F. Boigelsack, 29th European Microwave Conference, Munich (1999), pp. 191-194.], reported results are: sharpness of cut-off 1.48 dB/GHz, 10 dB RL BW and GD variation are 48% and 4 pS, respectively. The improved performance the DGS-based Bessel LPF can find applications in high speed data communication, front-end of a wideband communication system and in a power amplifier, by improving the selectivity, suppression of harmonics and linear distortion.
机译:我们报告了合成过程,以设计基于缺陷地面结构(DGS)的贝塞尔低通滤波器(LPF)。对于f_c = 2.5 GHz的5极LPF,其选择性为10.6 dB / GHz,对于基于DGS的Butterworth LPF,其选择性为12.6 dB / GHz。对于集总元件Bessel LPF,它仅为4.84 dB / GHz。它的20 dB抑制带宽为13.1 GHz,阻抗匹配带宽为76%,而Butterworth LPF为88.8%。在f_c = 7.5 GHz时,五极DGS贝塞尔LPF的选择性为7 dB / GHz,20 dB抑制带宽为13 GHz,通带10 dB回波损耗(RL)BW为4.86 GHz(64.8%),小于7.9 pS群时延(GD)变化。如果是体积庞大的混合微带波导(MMW),则在7.5 GHz下具有5极Bessel LPF [W. Menzel和F. Boigelsack,第29届欧洲微波会议,慕尼黑(1999),第191-194页。],报告的结果是:截止的锐度1.48 dB / GHz,10 dB RL BW和GD变化为48%和4分别为通过改进选择性,抑制谐波和线性失真,基于DGS的Bessel LPF的性能提高可用于高速数据通信,宽带通信系统的前端以及功率放大器中。

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