超低功耗轨对轨线性亚阈值体驱动晶体管

Tripurari Sharan, Vijaya Bhadauria
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引用次数: 10

摘要

提出了一种工作在亚阈值区域的低电压、低功率轨对轨线性跨导放大器(OTA)。源退化的批量驱动输入阶段确保轨道到轨道的操作与增强的线性。为了提高其跨导性和电流驱动能力,在输入晶体管栅极处采用了再生反馈。工作在0.5 V电源下的OTA保证了总谐波失真(THD) <;-40分贝。该电路提供43 dB增益和90 kHz增益带宽乘积。采用0.18 μm CMOS工艺技术的Tanner EDA 15.0仿真工具环境对所提出的电路进行了仿真。仿真结果表明,在一个阈值阶供电的情况下,电路在单位增益配置下,对频率为200hz、频率为100mv (p-p)的信号,电路消耗292na电流和146nw功率,总谐波畸变小于- 65db。
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Ultra low-power rail-to-rail linear sub-threshold bulk-driven transconductor
In this paper a novel low-voltage and low-power rail-to-rail linear operational transconductance amplifier (OTA), operating in sub-threshold region is presented. The source degenerated bulk-driven input stage ensures rail-to-rail operation with enhanced linearity. To enhance its transconductance and current drive capability a regenerative feedback at input transistor's gates has been employed. The OTA operating at 0.5 V supply ensured total harmonic distortion (THD) <; -40 dB. The circuit provides 43 dB gain and 90 kHz gain bandwidth product. The Tanner EDA 15.0 simulation tool environment using 0.18 μm CMOS process technology has been used to simulate the proposed circuit. Simulation results show that with supply of one threshold order, circuit consumes 292 nA current and 146 nW power and exhibits less than -65 dB total harmonic distortions, for 100 mV(p-p) signal at 200 Hz frequency in its unity gain configuration.
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