A very low-power flash A/D converter based on CMOS inverter circuit

Shih-Chang Hsia, Wen-Ching Lee
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引用次数: 11

Abstract

A/D converter (ADC) is a basic device in digital signal processing systems. For high-speed applications, a flash ADC type is often used. Due to require many analog comparators, the chip complexity and power dissipation become very high. Moreover, the accuracy of dividing resistors requires very high for reference voltage if the converting resolution is high. In this study, we develop a new kind of flash ADC based on a simple CMOS circuit. By adjusting the ratio of channel length and width, the transition threshold of the CMOS inverters is various to detect input analog signal. Then their results are encoded to the digital code. The advantages are that the ADC circuit does not need any resistor and use simple CMOS inverters rather than analog comparators. The new 8-bit ADC chip only used 634 transistors. The power dissipates 0.9mW using 0.35/spl mu/m process when it operates at 100MHz.
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一种基于CMOS逆变电路的极低功耗闪存A/D转换器
A/D转换器(ADC)是数字信号处理系统中的基本器件。对于高速应用,通常使用闪存ADC类型。由于需要许多模拟比较器,芯片的复杂度和功耗变得非常高。此外,在转换分辨率较高的情况下,分割电阻对参考电压的精度要求非常高。在本研究中,我们开发了一种基于简单CMOS电路的新型闪存ADC。通过调节通道长度和宽度的比值,CMOS逆变器的过渡阈值可以变化以检测输入的模拟信号。然后他们的结果被编码成数字代码。其优点是ADC电路不需要任何电阻,使用简单的CMOS逆变器而不是模拟比较器。新的8位ADC芯片只使用了634个晶体管。工作在100MHz时,功率损耗为0.9mW,功率损耗为0.35/spl mu/m。
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