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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Very low-voltage analog signal processing based on quasi-floating gate transistors
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Very low-voltage analog signal processing based on quasi-floating gate transistors

机译:基于准浮栅晶体管的超低压模拟信号处理

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摘要

A novel design principle for very low-voltage analog signal processing in CMOS technologies is presented. It is based on the use of quasi-floating gate (QFG) MOS transistors. Similar to multiple input floating gate (MIFG) MOS transistors, a weighted averaging of the inputs accurately controlled by capacitance ratios can be obtained, which is the basic operating principle. Nevertheless, issues often encountered in MIFG structures, such as the initial charge trapped in the floating gates or the gain-bandwidth product degradation, are not present in QFG configurations. Several CMOS circuit realizations using open- and closed-loop topologies, have been designed. They include analog switches, mixers, programmable-gain amplifiers, track and hold circuits, and digital-to-analog converters. All these circuits have been experimentally verified, confirming the usefulness of the proposed technique for very low-voltage applications.
机译:提出了一种用于CMOS技术中超低压模拟信号处理的新颖设计原理。它基于准浮栅(QFG)MOS晶体管的使用。类似于多输入浮栅(MIFG)MOS晶体管,可以获得由电容比精确控制的输入的加权平均,这是基本的工作原理。然而,在QIFG配置中不存在MIFG结构中经常遇到的问题,例如浮栅中捕获的初始电荷或增益带宽积降低。已经设计了使用开环和闭环拓扑的几种CMOS电路实现。它们包括模拟开关,混频器,可编程增益放大器,跟踪和保持电路以及数模转换器。所有这些电路均已通过实验验证,证实了所提出的技术在超低压应用中的有用性。

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