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Analysis and Design of a High-Order Discrete-Time Passive IIR Low-Pass Filter

机译:高阶离散无源IIR低通滤波器的分析与设计

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摘要

In this paper, we propose a discrete-time IIR low-pass filter that achieves a high-order of filtering through a charge-sharing rotation. Its sampling rate is then multiplied through pipelining. The first stage of the filter can operate in either a voltage-sampling or charge-sampling mode. It uses switches, capacitors and a simple gm-cell, rather than opamps, thus being compatible with digital nanoscale technology. In the voltage-sampling mode, the gm-cell is bypassed so the filter is fully passive. A 7th-order filter prototype operating at 800 MS/s sampling rate is implemented in TSMC 65 nm CMOS. Bandwidth of this filter is programmable between 400 kHz to 30 MHz with 100 dB maximum stop-band rejection. Its IIP3 is +21 dBm and the averaged spot noise is 4.57 nV/\surd Hz. It consumes 2 mW at 1.2 V and occupies 0.42 mm2.
机译:在本文中,我们提出了一种离散时间IIR低通滤波器,它通过电荷共享旋转实现了高阶滤波。然后通过流水线将其采样率相乘。滤波器的第一级可以工作在电压采样或电荷采样模式。它使用开关,电容器和简单的gm电池,而不是运算放大器,因此与数字纳米级技术兼容。在电压采样模式下,gm单元被旁路,因此滤波器是完全无源的。在TSMC 65 nm CMOS中实现了以800 MS / s采样率运行的7阶滤波器原型。该滤波器的带宽可在400 kHz至30 MHz之间编程,最大阻带抑制率为100 dB。其IIP3为+21 dBm,平均点噪声为4.57 nV / surd Hz。它在1.2 V时的功耗为2 mW,占地为0.42 mm2。

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