Ultra wideband AGC and VGA designs for software radio applications

P. Chopra, N. Kumar, R. Paily
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引用次数: 4

Abstract

In this paper we discuss a CMOS based wideband VGA configuration designed in 0.18 mum UMC process providing a gain of 21 dB and bandwidth of 360 MHz with control voltage range of 1.0 V to 1.6 V. The results of the design were verified through layout. Further, the design was modified to incorporate it in an AGC for Software radio applications. The design process resulted in two ultra wideband VGA designs. The first VGA has a 3 dB bandwidth of 3.2 GHz (800 MHz to 4 GHz), a maximum gain of 23 dB and an operating range of control voltage from 0.8 V to 1.4 V but larger active area. The second VGA designed using only NMOS transistors has relatively reduced active area, a bandwidth of 2.4 GHz (800 MHZ to 3.2 GHz), a maximum gain of 24 dB and an operating range of control voltage from 1.1 V to 1.6 V. The power consumption of both the VGAs is 6 mW at 1.8 V supply voltage. Compared to existing architectures, these designs provide much higher bandwidth and consume relatively low power. One of the VGA designs was then used to implement a wideband AGC for software radio applications. Based on the results obtained, modifications needed to obtain the complete AGC design are discussed in the end. Both the ultra-wideband VGAs and AGC have been designed and optimized in Mentor Graphics Eldo simulation software with TSMC process technology and the layout was done in Cadence Virtuoso XL Layout Editor.
用于软件无线电应用的超宽带AGC和VGA设计
本文讨论了一种基于CMOS的宽带VGA配置,采用0.18 μ m UMC工艺设计,增益为21 dB,带宽为360 MHz,控制电压范围为1.0 V至1.6 V。通过布置验证了设计结果。此外,该设计进行了修改,将其纳入软件无线电应用的AGC中。设计过程产生了两个超宽带VGA设计。第一个VGA具有3.2 GHz (800 MHz至4 GHz)的3db带宽,最大增益为23 dB,控制电压范围为0.8 V至1.4 V,但有源面积更大。仅使用NMOS晶体管设计的第二种VGA具有相对较小的有源面积,带宽为2.4 GHz (800 MHZ至3.2 GHz),最大增益为24 dB,控制电压范围为1.1 V至1.6 V。两个VGAs在1.8 V供电电压下的功耗为6 mW。与现有架构相比,这些设计提供了更高的带宽和相对较低的功耗。其中一个VGA设计随后被用于实现软件无线电应用的宽带AGC。在此基础上,讨论了完成AGC设计所需的修改。超宽带VGAs和AGC在Mentor Graphics Eldo仿真软件中采用TSMC工艺技术进行了设计和优化,并在Cadence Virtuoso XL layout Editor中进行了布局。
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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