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Methodology for designing and verifying switched-capacitor sample and hold circuits used in data converters

机译:设计和验证数据转换器中使用的开关电容器采样和保持电路的方法

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This study presents a full methodological approach to designing and verifying differential sample and hold switched-capacitor circuits generally used in analogue-to-digital converters (ADCs). It provides a step-by-step process for translating system requirements such as signal-to-noise ratio and sampling frequency into ADC requirements and subsequently into operational amplifier topology and specifications. It also includes the design process of a switched-capacitor common mode feedback circuit to control the common mode output voltage. Furthermore, this study discusses the noise aspects of the switched-capacitor circuits. It also provides practical methods for verifying the stability of the system by using step voltage and step current techniques. A design and simulation example for a differential sample and hold switched-capacitor circuit operating in a system requiring a 5 MHz sampling frequency and a 6-bit ADC is provided. Mentor Graphics CAD tools were used in the design and the simulations process by using 180 nm complementary metal oxide semiconductors (CMOS) device models. This study can be used as a resource for the design engineers in the industry as well as the universities teaching graduate level advanced electronics and data converter courses.
机译:这项研究提出了一种完整的方法论方法,用于设计和验证通常用于模数转换器(ADC)的差分采样和保持开关电容器电路。它提供了逐步的过程,可将系统要求(例如信噪比和采样频率)转换为ADC要求,然后转换为运算放大器的拓扑和规格。它还包括开关电容共模反馈电路的设计过程,以控制共模输出电压。此外,本研究讨论了开关电容器电路的噪声方面。它还提供了使用阶跃电压和阶跃电流技术来验证系统稳定性的实用方法。提供了在需要5 MHz采样频率和6位ADC的系统中工作的差分采样和保持开关电容器电路的设计和仿真示例。通过使用180 nm互补金属氧化物半导体(CMOS)器件模型,在设计和仿真过程中使用了Mentor Graphics CAD工具。该研究可以用作行业设计工程师以及大学教授研究生水平的高级电子和数据转换器课程的资源。

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