首页> 外文会议>IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications >Analysis and design of a 250-MHz Gm-C filter with discrete tuning scheme in 0.18-#x03BC;m CMOS for UWB receiver
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Analysis and design of a 250-MHz Gm-C filter with discrete tuning scheme in 0.18-#x03BC;m CMOS for UWB receiver

机译:用于UWB接收器的0.18μmCMOS中具有离散调谐方案的250MHz Gm-C滤波器的分析和设计

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A low noise, 250-MHz fifth order 0.1 dB ripple chebyshev Gm-C filter, with a discrete tuning scheme in 0.18-μm CMOS is presented. The tuning circuit employs an amplitude locked loop (ALL) to find the correct tuning word to maintain fc within 250MHz ±5% for VDD variation of 1.8±0.1V, temperature variation of −40°C to 125°C and across process corners. Compared to conventional tuning schemes, proposed discrete scheme demonstrates lower input referred noise of 11.3 nV/√Hz with tighter bandwidth accuracy and consistent performance across PVT. Analysis of Gm cell non-idealities such as ro and Cdg on filter response to ensure optimum design is another contribution of this paper.
机译:提出了一种低噪声,250MHz五阶,0.1dB纹波切比雪夫Gm-C滤波器,该滤波器在0.18μmCMOS中具有离散调谐方案。调谐电路采用幅度锁定环路(ALL)来找到正确的调谐字,以将fc保持在250MHz±5%之内,以确保VDD变化为1.8±0.1V,温度变化范围为−40°C至125°C,并且跨工艺角。与传统的调谐方案相比,拟议的离散方案显示出较低的输入参考噪声,为11.3 nV /√Hz,具有更严格的带宽精度和在整个PVT上的一致性能。分析Gm电池的非理想性(例如ro和Cdg)对滤波器响应的影响,以确保最佳设计是本文的另一项贡献。

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