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  5. Oscillator-based ADCs: An exploration of time-mode analog-to-digital conversion
 
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Oscillator-based ADCs: An exploration of time-mode analog-to-digital conversion

Author(s)
Nguyen, Viet  
Schembari, Filippo  
Staszewski, Robert Bogdan  
Uri
http://hdl.handle.net/10197/11029
Date Issued
2017-08-31
Date Available
2019-08-26T07:38:02Z
Abstract
This paper introduces two novel ideas within the field of time-mode oscillator-based analog-to-digital conversion. In the form of a self-injection-locked ring-oscillator (SILRO), a method is presented to inherently linearise the voltage-to-frequency (V-F) characteristic, while an alternative proposal of an ultra-low-power (ULP), ultra-low-voltage (ULV) VCO-based analog-to-digital converter (ADC) operating in weak-inversion at a supply of 0.2 V is suitable for high power efficiency, direct energy harvesting applications. The ideas are distinctly separate in concept and physical implementation, but through the common platform of Verilog-A behavioural modelling, a unified methodology applicable to both architectures is proposed for system level exploration and performance evaluation.
Sponsorship
European Commission Horizon 2020
Science Foundation Ireland
Type of Material
Conference Publication
Publisher
IEEE
Start Page
1
End Page
6
Copyright (Published Version)
2017 IEEE
Subjects

Analog-to-digital con...

Voltage-controlled os...

Time-domain ADC

Ultra-low voltage

Ultra-low power

Internet-of-Things

Verilog-A modelling

DOI
10.1109/EBCCSP.2017.8022829
747585
Web versions
https://www.ebccsp2017.org/
Language
English
Status of Item
Not peer reviewed
Journal
2017 3rd International Conference on Event-Based Control, Communication and Signal Processing, EBCCSP 2017 - Proceedings
Conference Details
EBCCSP 2017: 3rd International Conference on Event-Based Control, Communication and Signal Processing, Funchal, Madeira, Portugal, 24-26 May 2017
ISBN
9781538609156
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
File(s)
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main.pdf

Size

1.36 MB

Format

Adobe PDF

Checksum (MD5)

15050fd2e01222a0aba2513b9a3e8d63

Owning collection
Electrical and Electronic Engineering Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
All other content is subject to copyright.

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