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Power-efficient analog design based on the class AB super source follower

机译:基于AB类超级源跟随器的节能模拟设计

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A class AB version of the conventional super source follower (SSF) is described. The circuit greatly increases slew rate (SR) and current efficiency, maintaining the low distortion and low output resistance of the SSF. Class AB operation is achieved without extra power dissipation or supply requirements, and without bandwidth or noise degradation. The circuit can advantageously replace the SSF in a wide variety of analog systems, opening a new research line in analog design. To illustrate the widespread application of this cell, a class AB differential unity-gain buffer, a class AB differential current mirror and two class AB differential transconductors are designed, fabricated in a 0.5 μm CMOS technology and tested. Measurement results using a dual supply of ± 1.65 V show that the proposed class AB version of the SSF improves SR by a factor 21.5 and increases bandwidth by 10%, keeping noise level, input range, power consumption, and supply requirements unaltered. The fabricated class AB current mirror features a THD at 100 kHz of -62dB for signal currents 20 times larger than the bias current. The fabricated transconductors feature an IM3 at 1 MHz of —56.6dB for output currents more than 13 times larger than the bias currents.
机译:描述了常规超级源跟随器(SSF)的AB类版本。该电路大大提高了压摆率(SR)和电流效率,并保持了SSF的低失真和低输出电阻。无需额外的功耗或电源要求,也不会造成带宽或噪声降级,即可实现AB类工作。该电路可以有利地替代各种模拟系统中的SSF,从而开启了模拟设计的新研究领域。为了说明这种电池的广泛应用,设计了AB类差分单位增益缓冲器,AB类差分电流镜和两个AB类差分跨导器,并采用0.5μmCMOS技术进行了制造和测试。使用±1.65 V双电源供电的测量结果表明,建议的AB级AB型SSF将SR提高21.5倍,并将带宽提高10%,同时保持噪声水平,输入范围,功耗和电源要求不变。所制造的AB类电流镜在100 kHz时的THD为-62dB,信号电流比偏置电流大20倍。所制造的跨导体具有1MHz的IM3,即-56.6dB,其输出电流是偏置电流的13倍以上。

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