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Design of a high gain telescopic-cascode operational amplifier based on the ZTC operation condition

机译:基于ZTC工作条件的高增益伸缩共源共栅运算放大器的设计

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In recent years, telescopic cascode operational amplifiers have begun to be preferred due to their lower power consumption and higher bandwidths. In this paper, high performance CMOS telescopic operational amplifier which has large DC gain and low power dissipation is presented. This telescopic cascode amplifier is based on the MOSFET zero-temperature coefficient (ZTC). In recent years, ZTC has been placed in the designs such as digital-to-analog converters, analog-to-digital converters, operational amplifiers, analog buffers, etc. The presented design is generated by combining two currents with a positive temperature coefficient and one with a negative temperature coefficient, in which an insensitive temperature current reference can be obtained. The operating temperature range from -30°C to 80°C is adjusted to ZTC current generator which provides stable and reliable operation throughout the desired temperature range. By using ZTC current reference as biasing, whole amplifier can be generated. The simple circuit and straightforward design structure make this approach advantageous over others. This circuit is verified by the simulation in Cadence 0.35pm CMOS technology. The power dissipation is kept low in pW for the remote application and low sensitive to temperature. The simulated results show high gain of 82dB and phase margin 82 degrees at a load of 10pF while consuming 35.22pW power. Also, 15ns settling time shows the higher speed of the designed amplifier. This design uses MOSFET and other components such as BJT transistors and resistors.
机译:近年来,伸缩式共源共栅运算放大器由于其较低的功耗和较高的带宽而开始受到人们的青睐。本文提出了一种具有大DC增益和低功耗的高性能CMOS伸缩式运算放大器。该伸缩式共源共栅放大器基于MOSFET零温度系数(ZTC)。近年来,ZTC被放置在诸如数模转换器,模数转换器,运算放大器,模拟缓冲器等的设计中。所提出的设计是通过将两个具有正温度系数的电流组合在一起而产生的。一个具有负温度系数的电阻,其中可以获得不敏感的温度电流基准。 ZTC电流发生器调整了-30°C至80°C的工作温度范围,可在所需的温度范围内提供稳定可靠的工作。通过使用ZTC电流基准作为偏置,可以产生整个放大器。简单的电路和简单的设计结构使该方法优于其他方法。该电路已通过Cadence 0.35pm CMOS技术的仿真验证。对于远程应用,功耗保持在pW低,并且对温度敏感。仿真结果表明,在负载为10pF时,功耗为35.22pW,增益为82dB,相位裕度为82度。同样,15ns的建立时间显示了设计放大器的更高速度。此设计使用MOSFET和其他组件,例如BJT晶体管和电阻器。

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