模拟数字转换器的各种架构

Mrunalini B. Labhane, P. Palsodkar
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引用次数: 5

摘要

随着先进技术的变化和对电子设备的需求,电子仪器的发展激发了更多的努力,以获得更多的创新理念和更好的设计性能。在现实世界的物理值,如压力,湿度,温度和声音可以测量模拟(连续)信号。然而,为了用电子数字设备处理这些模拟信号,我们需要将这些模拟信号转换成数字或离散信号或二进制。在本文中,模数转换器(adc)有许多类型,可以根据其设计的应用和概念进行分类。ADC包括:直接转换ADC (Flash)、逐次逼近ADC、积分ADC、流水线ADC。在某些情况下,使用许多比较器来降低复杂性,功率和提高线性度,本文也对此进行了解释。
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Various architectures of analog to digital converter
With the change in advanced technology and the need for electronic equipments, the development of electronic instruments stimulate more efforts for more innovative ideas and better performance of design. In real world physical values, such as pressure, humidity, temperature and voice can be measured as analog (continuous) signals. However, to process these analog signals by electronic digital equipments, we need to convert these analog signals into digital or discreet signals or binary. In this paper, there are many types of Analog-to-Digital Converters (ADCs) which can be classified according to the applications and concept on which they were designed. ADCs including, Direct conversion ADC (Flash), successive approximation ADC, integrating ADC, Pipeline ADC. In some cases, many comparators are used to reduce the complexity, power and improve the linearity which are also explained in this paper.
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