首页> 外文期刊>International journal of circuit theory and applications >Explicit design formulas for current-mode leap-frog OTA-C filters and 300 MHz CMOS seventh-order linear phase filter
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Explicit design formulas for current-mode leap-frog OTA-C filters and 300 MHz CMOS seventh-order linear phase filter

机译:电流模式跳越式OTA-C滤波器和300 MHz CMOS七阶线性相位滤波器的明确设计公式

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摘要

The leap-frog (LF) configuration is an important structure in analogue filter design. Voltage-mode LF OTA-C filters have recently been studied in the literature; however, general explicit formulas do not exist for current-mode LF OTA-C filters and there is also need for current-mode LF-based OTA-C structures for realization of arbitrary transmission zeros. Three current-mode OTA-C structures are presented, including the basic LF structure and LF filters with an input distributor or an output summer. They can realize all-pole characteristics and functions with arbitrary transmission zeros. Explicit design formulas are derived directly from these structures for the synthesis of, respectively, all-pole and arbitrary zero filter characteristics of up to the sixth order. The filter structures are regular and the design formulas are straightforward to use. As an illustrative example, a 300 MHz seventh-order linear phase low-pass filter with zeros is presented. The filter is implemented using a fully differential linear operational transconductance amplifier (OTA) based on a source degeneration topology. Simulations in a standard TSMC 0.18 μm CMOS process with 2.5 V power supply have shown that the cutoff frequency of the filter ranges from 260 to 320 MHz, group delay ripple is about 4.5% over the whole tuning range, noise of the filter is 420nA/√Hz, dynamic range is 66 dB and power consumption is 200 mW.
机译:跳跃式(LF)配置是模拟滤波器设计中的重要结构。最近在文献中研究了电压模式LF OTA-C滤波器。然而,电流模式LF OTA-C滤波器不存在通用的显式公式,并且还需要基于电流模式LF的OTA-C结构来实现任意的传输零。提出了三种电流模式OTA-C结构,包括基本的LF结构和带有输入分配器或输出求和器的LF滤波器。它们可以实现任意传输零点的全极点特性和功能。直接从这些结构中得出明确的设计公式,以分别合成高达六阶的全极点和任意零滤波器特性。过滤器结构规则,设计公式易于使用。作为说明性示例,提出了具有零的300 MHz七阶线性相位低通滤波器。使用基于源极退化拓扑的全差分线性运算跨导放大器(OTA)来实现该滤波器。在采用2.5 V电源的标准TSMC 0.18μmCMOS工艺中进行的仿真表明,滤波器的截止频率范围为260至320 MHz,在整个调谐范围内,群延迟纹波约为4.5%,滤波器的噪声为420nA / √Hz,动态范围为66 dB,功耗为200 mW。

著录项

  • 来源
  • 作者单位

    School of Electronic, Communication and Electrical Engineering, University of Hertfordshire, College Lane, Hatfield, Herts AL10 9AB, U.K.;

    School of Electronic, Communication and Electrical Engineering, University of Hertfordshire, College Lane, Hatfield, Herts AL10 9AB, U.K.;

    School of Electronic, Communication and Electrical Engineering, University of Hertfordshire, College Lane, Hatfield, Herts AL10 9AB, U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    active filters; circuit theory; OTA-C filters; analog circuits;

    机译:有源滤波器电路理论OTA-C过滤器;模拟电路;
  • 入库时间 2022-08-18 01:01:54

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