采用集总元件和微带线技术的混合微波带通滤波器设计

M. RincyJuliet, R. Vallikannu, B. Kavitha
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引用次数: 1

摘要

本文的目的是设计和实现一种混合微带线和集总元两种技术的混合微波带通滤波器(BPF),并对其性能进行评价。混合滤波器可以提高尖锐截止频率方面的质量因子,并最大限度地减少插入损耗、介质衬底损耗等损耗,并且可以减小滤波器的尺寸。设计了一个1800Mhz频率的BPF。利用FILPRO和Advance Design System工具对微带滤波器进行仿真和合成。现代无线通信的发展趋势要求结构紧凑、性能优良的带阻滤波器来抑制混频器、功率放大器等微波电路产生的杂散响应。无线局域网(Wireless Local Area Network, WLAN)已成为智能移动终端的标准配置,其标准IEEE 802.11 b/g (2.4/2.45GHz)和IEEE 802.11 a (5.2/5.8GHz)要求滤波器具有高选择性。为了满足上述要求,提出了体积小、截止频率高、损耗小的混合滤波器。本文设计并实现了采用微带线和集总元件混合技术的混合滤波器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel design of hybrid microwave bandpass filter using lumped element and microstrip line technology
The objective of this paper is to design and implement a hybrid microwave BandPass Filter (BPF) by mixing two technologies such as microstrip line and lumped element and evaluate its performance. Hybrid filter can improve the quality factor in terms of sharp cutoff frequency and minimize losses such as insertion loss, dielectric substrate loss and size of the filter can be reduced by this approach. A BPF is designed at 1800Mhz frequency. FILPRO and Advance Design System tool is used for simulation and synthesis of microstrip filter. The modern trends in wireless communication requires compact bandstop filters with good performance to supress unwanted spurious response produced by microwave circuits like mixer, power amplifier, etc. Wireless Local Area Network (WLAN) has become a standard configuration of smart mobile terminal with standards IEEE 802.11 b/g (2.4/2.45GHz) and IEEE 802.11 a (5.2/5.8GHz), which requires filters with high selectivity. To address the above mention requirement, hybrid filters with compact size and sharp cutoff frequency with minimized losses were proposed. This work is of designing and implementing hybrid filter using mixed technology of microstrip line and lumped element is designed and implemented.
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