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Low-Voltage Ultra-Low-Power Current Conveyor Based on Quasi-Floating Gate Transistors

机译:基于准浮栅晶体管的低压超低功率电流传输器

摘要

The field of low-voltage low-power CMOS technology has grown rapidly in recent years; it is an essential prerequisite particularly for portable electronic equipment and implantable medical devices due to its influence on battery lifetime. Recently, significant improvements in implementing circuits working in the low-voltage low-power area have been achieved, but circuit designers face severe challenges when trying to improve or even maintain the circuit performance with reduced supply voltage. In this paper, a low-voltage ultra-low-power current conveyor second generation CCII based on quasi-floating gate transistors is presented. The proposed circuit operates at a very low supply voltage of only ±0.4 V with rail-to-rail voltage swing capability and a total quiescent power consumption of mere 9.5 µW. Further, the proposed circuit is not only able to process the AC signal as it's usual at quasi-floating gate transistors but also the DC which extends the applicability of the proposed circuit. In conclusion, an application example of the current-mode quadrature oscillator is presented. PSpice simulation results using the 0.18 µm TSMC CMOS technology are included to confirm the attractive properties of the proposed circuit.
机译:近年来,低压低功耗CMOS技术领域发展迅速。这对便携式电子设备和可植入医疗设备特别重要,因为它会影响电池寿命。近来,在实现在低压低功率区域中工作的电路方面已实现了重大改进,但是电路设计人员在试图通过降低电源电压来改善甚至保持电路性能时面临严峻挑战。本文提出了一种基于准浮栅晶体管的低压超低功率电流传输器第二代CCII。拟议的电路在极低的电源电压下(±0.4 V)工作,具有轨到轨电压摆幅能力,总静态功耗仅为9.5 µW。此外,所提出的电路不仅能够像在准浮栅晶体管中那样处理交流信号,而且还能处理直流信号,从而扩展了所提出电路的适用性。综上,给出了电流模式正交振荡器的一个应用实例。包括使用0.18 µm TSMC CMOS技术的PSpice仿真结果,以确认所提议电路的诱人特性。

著录项

  • 作者

    Khateb F.; Khatib N.; Kubanek D.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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