使用LHP零的高摆率运算放大器

M. Rashtian, Hasti Sasani, Ali Najd, Negin Baravardeh
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引用次数: 0

摘要

为了实现高摆幅率(SR)的运放,本文提出了一种新的全差分两级跨导运算放大器(OTA)补偿方法。该技术采用带串联补偿电容的零化电阻,在两级a - ab级的第一级增加了一个左半平面(LHP)零,提高了闭环结构的稳定性。此外,主动补偿已被使用,这也导致增益增加。因此,补偿是用较小的电容完成的,并且运算放大器的摆压率增加了。输出级为AB级放大器,第二级采用浮栅MOSFET作为大电阻。假设负载电容的值为20pf,采用HSPICE和180 nm 3.3V CMOS技术对电路进行了仿真。仿真结果表明,该运放的增益和平均摆率分别为94.2 dB和12.6 $\ mathm {V}/\mu\ mathm {s}$。然而,在相同的功耗(0.33 mW)和负载电容下,先前的A-AB类运算放大器的增益和平均摆率分别为89 dB和3.95 $\ mathm {V}/\mu\ mathm {s}$。
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High Slew Rate Op-Amp Using LHP Zeroes
In this paper, to achieve a high slew rate (SR) Op-Amp, a new compensation method for a fully differential two-stage operational transconductance amplifier (OTA) is presented. The proposed technique adds a left half-plane (LHP) zero to the first stage of the two-stage class A-AB using a nulling resistor with a series compensating capacitor, improving the stability of the closed-loop configuration. Also, active compensation has been used, which also leads to an increase in gain. Thus, compensation is done with a smaller capacitor, and the operational amplifier slew rate is increased. The output stage is an AB amplifier class, and floating gate MOSFET is used as a large resistor in the second stage. The value of the load capacitor is assumed to 20 pF. The proposed circuit is simulated by HSPICE with 180 nm 3.3V CMOS technology. Simulation results show that the gain and average slew rate of the proposed operational amplifier is 94.2 dB and 12.6 $\mathrm{V}/\mu\mathrm{s}$, respectively. However, the gain and average slew rate of the previous class A-AB operational amplifier is respectively 89 dB and 3.95 $\mathrm{V}/\mu\mathrm{s}$ in the same power consumption (0.33 mW) and load capacitor.
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