Design of Gate-Driven Quasi Floating Bulk OTA-Based Gm–C Filter for PLL Applications

P. Gupta, S. K. Jana
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引用次数: 0

Abstract

The advancement in the integrated circuit design has developed the demand for low voltage portable analog devices in the market. This demand has increased the requirement of the low-power RF transceiver. A low-power phase lock loop (PLL) is always desirable to fulfill the need for a low power RF transceiver. This paper deals with the designing of the low power transconductancecapacitance (Gm-C) based loop filter with the help of the gate-driven quasi bloating Bulk (GD-QFB) MOS technique. The GD-QFB MOS-based operational transconductance amplifier (OTA) has been proposed with a high dc gain of 82.41 dB and less power consumption of 188.72 μW. Further, Gm-C based active filter has been designed with the help of the proposed GD-QFB OTA. The simulation results of Gm-C filter attain a -3 dB cut-off frequency of 59.08 MHz and power consumption of 188.31μW at the supply voltage of 1V. The proposed Gm-C filter is suitable for the designing of 1-3 GHz low power PLL.
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用于锁相环应用的门驱动准浮动体ota Gm-C滤波器设计
随着集成电路设计的进步,市场对低压便携式模拟器件的需求不断增加。这种需求增加了对低功率射频收发器的需求。为了满足低功率射频收发器的需求,低功率锁相环(PLL)总是可取的。本文研究了基于栅极驱动的准膨胀体MOS (GD-QFB)技术的低功耗跨导电容(Gm-C)环路滤波器的设计。提出了基于mos的GD-QFB操作跨导放大器(OTA),其直流增益高达82.41 dB,功耗仅为188.72 μW。此外,利用提出的GD-QFB OTA设计了基于Gm-C的有源滤波器。仿真结果表明,在电源电压为1V时,Gm-C滤波器的截止频率为59.08 MHz,截止频率为-3 dB,功耗为188.31μW。所提出的Gm-C滤波器适用于1- 3ghz低功率锁相环的设计。
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来源期刊
Iranian Journal of Electrical and Electronic Engineering
Iranian Journal of Electrical and Electronic Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
13
审稿时长
12 weeks
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