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Efficient design of switched-current lowpass elliptic wave filters using Bruton transformation

机译:利用Bruton变换的开关电流低通椭圆波滤波器的高效设计

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This paper describes how the Bruton transformation facilitates the development of an efficient design methodology for switched-current elliptic lowpass wave filters. Wave models for the design methodology including frequency dependent negative resistance (FDNR) component, capacitive source and capacitive load are presented. The proposed design technique offers a significant reduction in the filter transistor count. For example, a 7th order lowpass elliptic filter utilises 20% less delay elements and 16% less current mirrors when compared with a recently reported design technique. This is achieved by having a filter structure with a number of resistors and simplified series adapters. Simulated results based on a typical CMOS process for a lowpass elliptic filter with a cutoff frequency of 100 kHz and a sampling frequency of 1 MHz are included.
机译:本文介绍了布伦顿转换如何有助于开发开关电流椭圆低通波滤波器的高效设计方法。提出了包括频率相关负电阻(FDNR)组件,电容源和电容负载的设计方法的波模型。所提出的设计技术在滤波器晶体管计数中显着减少。例如,与最近报告的设计技术相比,第7阶低通椭圆滤波器利用20%更小的延迟元件和16%的电流镜。这是通过具有多个电阻器和简化串联适配器的过滤器结构来实现的。包括具有100kHz的截止频率的低通椭圆滤波器的典型CMOS工艺的模拟结果,包括1MHz的采样频率。

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