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首页> 外文期刊>IEEE Journal of Solid-State Circuits >0.5-V Analog Circuit Techniques and Their Application in OTA and Filter Design
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0.5-V Analog Circuit Techniques and Their Application in OTA and Filter Design

机译:0.5V模拟电路技术及其在OTA和滤波器设计中的应用

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摘要

We present design techniques that make possible the operation of analog circuits with very low supply voltages, down to 0.5 V. We use operational transconductance amplifier (OTA) and filter design as a vehicle to introduce these techniques. Two OTAs, one with body inputs and the other with gate inputs, are designed. Biasing strategies to maintain common-mode voltages and attain maximum signal swing over process, voltage, and temperature are proposed. Prototype chips were fabricated in a 0.18-μm CMOS process using standard 0.5-V V{sub}T devices. The body-input OTA has a measured 52-dB DC gain, a 2.5-MHz gain-bandwidth, and consumes 110 μW. The gate-input OTA has a measured 62-dB DC gain (with automatic gain-enhancement), a 10-MHz gain-bandwidth, and consumes 75 μW. Design techniques for active-RC filters are also presented. Weak-inversion MOS varactors are proposed and modeled. These are used along with 0.5-V gate-input OTAs to design a fully integrated, 135-kHz fifth-order elliptic low-pass filter. The prototype chip in a 0.18-μm CMOS process with V{sub}T of 0.5-V also includes an on-chip phase-locked loop for tuning. The 1-mm{sup}2 chip has a measured dynamic range of 57 dB and draws 2.2 mA from the 0.5-V supply.
机译:我们介绍了使低至0.5 V的非常低电源电压的模拟电路就可以工作的设计技术。我们使用运算跨导放大器(OTA)和滤波器设计作为工具来介绍这些技术。设计了两个OTA,一个带有主体输入,另一个带有门输入。提出了一种偏置策略,以维持共模电压并在过程,电压和温度范围内获得最大信号摆幅。使用标准的0.5V V {sub} T器件以0.18μmCMOS工艺制造原型芯片。人体输入OTA的测量直流增益为52dB,增益带宽为2.5MHz,功耗为110μW。栅极输入OTA的实测直流增益为62dB(具有自动增益增强功能),增益带宽为10MHz,功耗为75μW。还介绍了有源RC滤波器的设计技术。提出了微逆变MOS变容二极管并进行了建模。它们与0.5V栅极输入OTA一起使用,以设计一个完全集成的135kHz五阶椭圆低通滤波器。采用0.18μmCMOS工艺且V {sub} T为0.5V的原型芯片还包括一个用于调谐的片上锁相环。 1mm {sup} 2芯片的动态范围测量值为57 dB,从0.5V电源汲取2.2 mA电流。

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