Power Efficient Analog-to-digital Converters Using Both Voltage and Time Domain Information

Power Efficient Analog-to-digital Converters Using Both Voltage and Time Domain Information
Author: Taehwan Oh
Publisher:
Total Pages: 87
Release: 2013
Genre: Analog-to-digital converters
ISBN:

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As advanced wired and wireless communication systems attempt to achieve higher performance, the demand for high resolution and wide signal bandwidth in their associated ADCs is strongly increased. Recently, time-domain quantization has drawn attention from its scalability in deep submicron CMOS processes. Furthermore, there are several interesting aspects of time-domain quantizer by processing the signal in time rather than only in voltage domain especially for power efficiency. This research focuses on developing a new architecture for power efficient, high resolution ADCs using both voltage and time domain information. As a first approach, a new [delta sigma] ADC based on a noise-shaped two-step integrating quantizer which quantizes the signal in voltage and time domains is presented. Attaining an extra order of noise-shaping from the integrating quantizer, the proposed [delta sigma] ADC manifests a second-order noise-shaping with a first-order loop filter. Furthermore, this quantizer provides an 8b uantization in itself, drastically reducing the oversampling requirement. The proposed ADC also incorporates a new feedback DAC topology that alleviates the feedback DAC complexity of a two-step 8b quantizer. The measured results of the prototype ADC implemented in a 0.13[micro]m CMOS demonstrate peak SNDR of 70.7dB (11.5b ENOB) at 8.1mW power, with an 8x OSR at 80MHz sampling frequency. To further improve ADC performance, a Nyquist ADC based on a time-based pipelined TDC is also proposed as a second approach. In this work, a simple V-T conversion scheme with a cheap low gain amplifier in its first stage and a hybrid time-domain quantization stage based on simple charge pump and capacitive DAC in its backend stages, are also proposed to improve ADC linearity and power efficiency. Using voltage and time domain information, the proposed ADC architecture is beneficial for both resolution and power efficiency, with MSBs resolved in voltage domain and LSBs in time domain. The measured results of the prototype ADC implemented in a 0.13[micro]m CMOS demonstrate peak SNDR of 69.3dB (11.2b ENOB) at 6.38mW power and 70MHz sampling frequency. The FOM is 38.2fJ/conversion-step.


Power Efficient Analog-to-digital Converters Using Both Voltage and Time Domain Information
Language: en
Pages: 87
Authors: Taehwan Oh
Categories: Analog-to-digital converters
Type: BOOK - Published: 2013 - Publisher:

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As advanced wired and wireless communication systems attempt to achieve higher performance, the demand for high resolution and wide signal bandwidth in their as
Time-interleaved Analog-to-Digital Converters
Language: en
Pages: 148
Authors: Simon Louwsma
Categories: Technology & Engineering
Type: BOOK - Published: 2010-09-08 - Publisher: Springer Science & Business Media

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Time-interleaved Analog-to-Digital Converters describes the research performed on low-power time-interleaved ADCs. A detailed theoretical analysis is made of th
Low-Power High-Resolution Analog to Digital Converters
Language: en
Pages: 311
Authors: Amir Zjajo
Categories: Technology & Engineering
Type: BOOK - Published: 2010-10-29 - Publisher: Springer Science & Business Media

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With the fast advancement of CMOS fabrication technology, more and more signal-processing functions are implemented in the digital domain for a lower cost, lowe
Efficient Use of Time Information in Analog-to-digital Converters
Language: en
Pages: 100
Authors: Yue Hu
Categories: Analog-to-digital converters
Type: BOOK - Published: 2014 - Publisher:

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Time-domain data conversion has recently drawn increased research attention for its highly digital nature in favor of process technology scaling. Also, as the t
Design of Power-Efficient Highly Digital Analog-to-Digital Converters for Next-Generation Wireless Communication Systems
Language: en
Pages: 200
Authors: Xinpeng Xing
Categories: Technology & Engineering
Type: BOOK - Published: 2017-10-04 - Publisher: Springer

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This book discusses both architecture- and circuit-level design aspects of voltage-controlled-oscillator (VCO)-based analog-to-digital converters (ADCs), especi