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A VLSI Implementation of a New Low Voltage 5th Order Differential Gm-C Low-Pass Filter with Auto-Tuning Loop in CMOS Technology

机译:CMOS技术中具有自动调谐环路的新型低压五阶差分Gm-C低通滤波器的VLSI实现

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In this paper a new low voltage 5th order Gm-C Bessel type low-pass filter (LPF) with auto-tuning loop and higher dynamic range, designed in CMOS technology, is presented. The cut-off frequency can be tuned in (10-42)MHz range by modifying the values of the grounded capacitors using a digital logic. The proposed structure is based on an auto-tuning loop in order to maintain the Gm/C ratio independent of the process, supply voltage and temperature variations, assuring the cut-off frequency of the LPF independently of these factors. The proposed 5th order Gm-C Bessel type low-pass filter provides 5% variation of the cut-off frequency in all critical corners, a 400mVpp(diff) dynamic range, THD less than 1% and 21.6mW power consumption from 1.8V supply voltage. The simulations performed in 65nm CMOS process confirm the theoretical results.
机译:本文提出了一种采用CMOS技术设计的,具有自动调谐环路和更高动态范围的低压五阶Gm-C贝塞尔型低通滤波器(LPF)。通过使用数字逻辑修改接地电容器的值,可以在(10-42)MHz范围内调整截止频率。所提出的结构基于自动调谐环路,以保持Gm / C比不受工艺,电源电压和温度变化的影响,从而确保LPF的截止频率不受这些因素影响。拟议中的5阶Gm-C贝塞尔(Bessel)型低通滤波器在所有关键角提供了5%的截止频率变化,400mVpp(diff)的动态范围,THD小于1%以及1.8V电源的功耗为21.6mW电压。在65nm CMOS工艺中进行的仿真证实了理论结果。

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