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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A high bandwidth constant g/sub m/ and slew-rate rail-to-rail CMOS input circuit and its application to analog cells for low voltage VLSI systems
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A high bandwidth constant g/sub m/ and slew-rate rail-to-rail CMOS input circuit and its application to analog cells for low voltage VLSI systems

机译:高带宽恒定g / sub m /和摆率的轨到轨CMOS输入电路及其在低压VLSI系统的模拟单元中的应用

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摘要

A new rail-to-rail CMOS input architecture is presented that delivers behavior nearly independent of the common-mode level in terms of both transconductance and slewing characteristics. Feedforward is used to achieve high common-mode bandwidth, and operation does not rely on analytic square law characteristics, making the technique applicable to deep submicron technologies. From the basis of a transconductor design, an asynchronous comparator and a video bandwidth op amp are also developed, providing a family of general purpose analog circuit functions which may be used in high (and low) bandwidth mixed-signal systems. Benefits for the system designer are that the need for rigorous control of common-mode levels is avoided and input signal swings right across the power supply range can be easily handled. A further benefit is that having very consistent performance, the circuits can be easily described in VHDL (or other behavioral language) to allow simulation of large mixed-signal systems. The circuits presented may be easily adapted for a range of requirements. Results are presented for representative transconductor, op amp, and comparator designs fabricated in a 0.5 /spl mu/m 3.3 V digital CMOS process.
机译:提出了一种新的轨到轨CMOS输入架构,该架构在跨导和转换特性方面几乎独立于共模电平。前馈用于实现高共模带宽,并且运算不依赖于解析平方律特性,从而使该技术适用于深亚微米技术。根据跨导设计,还开发了异步比较器和视频带宽运算放大器,提供了一系列通用模拟电路功能,可用于高(低)带宽混合信号系统。对于系统设计者来说,好处是可以避免对共模电平进行严格控制的需求,并且可以轻松处理整个电源范围内的输入信号摆幅。另一个好处是,由于具有非常一致的性能,因此可以用VHDL(或其他行为语言)轻松描述电路,从而可以仿真大型混合信号系统。所示电路可以很容易地适应一系列要求。给出了采用0.5 / spl mu / m 3.3 V数字CMOS工艺制造的代表性跨导,运算放大器和比较器设计的结果。

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