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Power characteristics of varactor-controlled tunable bandpass filters on lumped elements

机译:集中元件上变容二极管控制的可调带通滤波器的功率特性

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Design of frequency-tunable microwave filters for multi-band wireless communication systems has recently attracted considerable attention. Lumped-element tunable filters seem very promising due to their small size compared to the wavelength. Semiconductor varactor diodes have been widely used as controlling components in tunable filters. Characteristics of varactor-controlled tunable filters depend on the input power and can degrade dramatically when the power increases. The paper presents a comparative study of power characteristics of two tunable lumped-element bandpass filters, one based on series LC-tanks and another one using parallel LC-tanks. The three-pole bandpass filters were implemented on Arlon AD 255 printed circuit board using surface-mount components. The hyperabrupt-junction silicon varactors of SMV 123x series by Skyworks were employed as the controlling components. The center frequency tuning range of 430-760 MHz was achieved for the filter on series tanks and of 450-675 MHz for the filter on parallel tanks. Frequency responses of the both tunable filters were measured under different input power up to +18dBm. Simulated and measured dependences of the output power on the input one are presented. The 1-dB compression point was achieved at the input power of +14dBm for the filter on series tanks and at +7.5 dBm for the filter based on parallel tanks. Besides, the varactor-controlled tunable bandpass filter based of series LC-tanks revealed experimentally lower sensitivity of the frequency response to a variation of the input power.
机译:用于多频带无线通信系统的频率可调微波滤波器的设计最近引起了相当大的关注。集总可调滤波器由于与波长相比尺寸较小而显得很有希望。半导体变容二极管已被广泛用作可调滤波器中的控制组件。变容二极管控制的可调滤波器的特性取决于输入功率,并且在功率增加时会急剧下降。本文对两种可调集总元件带通滤波器的功率特性进行了比较研究,一个基于串联LC储罐,另一个基于并联LC储罐。三极带通滤波器是使用表面贴装元件在Arlon AD 255印刷电路板上实现的。使用Skyworks公司的SMV 123x系列的超突变结硅变容二极管作为控制组件。串联储罐上的滤波器的中心频率调谐范围为430-760 MHz,并联储罐上的滤波器的中心频率调谐范围为450-675 MHz。在高达+ 18dBm的不同输入功率下测量了两个可调滤波器的频率响应。给出了模拟和测量的输出功率对输入功率的依赖性。在串联储罐上,滤波器的输入功率为+ 14dBm,在并联储罐上,滤波器的输入功率为+7.5 dBm,获得了1dB的压缩点。此外,基于串联LC储罐的变容二极管控制的可调谐带通滤波器显示出实验上较低的频率响应输入功率变化的灵敏度。

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