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A new stabilisation technique for the voltage driver using the rail to rail operation in CMOS 0, 25 µm technology

机译:在CMOS 0、25 µm技术中使用轨到轨操作的电压驱动器的新稳定技术

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In complementary input differential pair circuits, the topology CMOS uses both an nMOS differential pair and a pMOS differential pair connected in parallel however, it produces variations in the transconductance over the input common mode range. To avoid the problem of transconductance variations, a new structure, consists of two op-amps one n-type and the other p-type controlled by a digital control system, is proposed. In this paper we purpose a solution of the instability problem of a voltage driver in 40 mV, and to improve the stability we subtract a constant current through the current mirror added to the driver.
机译:在互补输入差分对电路中,拓扑CMOS使用并行连接的nMOS差分对和pMOS差分对,但是,它会在输入共模范围内产生跨导变化。为了避免跨导变化的问题,提出了一种由两个运算放大器组成的新结构,一个是n型,另一个是p型,由数字控制系统控制。在本文中,我们旨在解决40 mV电压驱动器的不稳定性问题,并且为了提高稳定性,我们减去通过添加到驱动器的电流镜的恒定电流。

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