A Novel Fully-Differential Gm-C Filter Structure for Communication Channel Equalizer

M. Aliparast, A. Khoei, K. Hadidi
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引用次数: 3

Abstract

In this paper, a novel Gm-C filter for equalizers used in communication channels transmitting digital data for applications in CMOS integrated circuits is presented. Using the novel structure the poles of internal Gm-blocks are avoided and better stability and ability to operate in high frequencies are achieved. To tune the filter, instead of changing transconductance (Gm), we have used variation of capacitance (C). Cat5 data cable is used for testing and simulating the circuit. The design has been processed in a 0.3 5 mum four-metal single-poly CMOS process. Power consumption of the chip is 18mW and the area is 53000mum2 which are both improved in comparison to previous conventional designs.
一种新型通信信道均衡器全差分Gm-C滤波器结构
本文提出了一种新型的Gm-C滤波器,用于CMOS集成电路中传输数字数据的通信信道均衡器。这种新型结构避免了内部gm块的极性,提高了系统的稳定性和高频工作能力。为了调整滤波器,我们使用电容变化(C)而不是改变跨导(Gm)。Cat5数据线用于测试和模拟电路。该设计采用0.3 μ m四金属单聚CMOS工艺进行加工。该芯片的功耗为18mW,面积为53000mm2,与以前的传统设计相比都有所改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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