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A high-constant g(m) rail-to-rail operational amplifier using bump-smoothing technique with stabilized output stage

机译:使用具有稳定输出级的凸块平滑技术的高常数G(M)轨到轨运算放大器

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摘要

In this paper, a constant-g(m) rail-to-rail operational amplifier is proposed. The transconductance variation due to the changes in the input common-mode voltage is reduced by controlling the tail-current of the parallel nMOS and pMOS input differential pairs. In addition, a bump-smoothing technique is applied to the circuit to decline sub-threshold effects in transition regions, and therefore lower the overall g(m) variations. Furthermore, a stabilizing technique is employed in the output stage to minimize the fluctuation of the DC-gain and the phase margin by fixing the bias current of the cascode transistors. Thanks to stabilizing the DC-gain of the amplifier in the entire range of the input common-mode voltage, the circuit can be used as an accurate small-signal voltage amplifier in an external feedback loop for input signals with various common-mode voltages. The circuit is simulated in a standard 0.18 mu m CMOS technology. The simulation results manifest that the g(m) variation is around +/- 0.85% and the variations of the Gain-Bandwidth, the low-frequency voltage gain (DC-gain), and the phase margin are +/- 1.20%, +/- 3.75%, and +/- 3.00%, respectively. The presented operational amplifier with the low-frequency voltage gain of 81.3 dB and the Gain-Bandwidth of 50.9 MHz for a 5-pF capacitive load consumes 1.48 mW with a 1.8 V supply voltage at the room temperature and in the typical condition.
机译:本文提出了一种恒定-G(M)轨到轨运算放大器。通过控制并行NMOS和PMOS输入差分对的尾电流来减小由于输入共模电压的变化引起的跨导变化。另外,将凸块平滑技术应用于电路以在过渡区域中衰减子阈值效应,因此降低总G(m)变化。此外,在输出阶段采用稳定技术,以最小化DC增益和相位裕度的波动通过固定级联晶体管的偏置电流。由于在输入共模电压的整个范围内稳定放大器的DC增益,电路可以用作外部反馈回路中的精确小信号电压放大器,用于具有各种共模电压的输入信号。该电路以标准的0.18μmCMOS技术模拟。模拟结果表明,G(m)变化约为+/- 0.85%,并且增益带宽的变化,低频电压增益(DC增益)和相位裕度为+/- 1.20%, +/- 3.75%,分别为+/- 3.00%。所呈现的运算放大器具有81.3dB的低频电压增益和50.9MHz的增益带宽,5-PF电容负载的增益带宽消耗1.48 MW,室温下的1.8 V电源电压和典型条件。

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