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  5. A Monolithic Gm-C Filter based Very Low Power, Programmable, and Multi-Channel Harmonic Discrimination System using Analog Signal Processing
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A Monolithic Gm-C Filter based Very Low Power, Programmable, and Multi-Channel Harmonic Discrimination System using Analog Signal Processing

Date Issued
May 1, 2019
Author(s)
Long, Gavin Benjamin
Advisor(s)
Benjamin J. Blalock
Additional Advisor(s)
M. Nance Ericson
Charles L. Britton
Syed K. Islam
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/41728
Abstract

A highly selective monolithic band-pass filter with programmable characteristics at micro-power operation is presented. Very low power signal processing is of great interest in wireless sensing and Internet-of-Things applications. This filter enables long-term battery powered operation of a highly selective harmonic signal discriminator for an analog signal processing system. The Gm-C biquadratic circuits were fabricated in a 0.18-μm [micrometer] CMOS process. Each 2nd-order biquad filter nominally consumes 20 μW [microwatt] and can be programmed for the desired gain (0db3dB), quality factor (5 to 20), and center-frequency from 1kHz to 100kHz. The 8th-order filter channel achieved an effective quality factor of 30 at 100kHz with an overall power consumption of 108 μW.

Degree
Master of Science
Major
Electrical Engineering
Embargo Date
May 15, 2020
File(s)
Thumbnail Image
Name

utkirtd_11458.pdf

Size

4.96 MB

Format

Adobe PDF

Checksum (MD5)

bdfbdd4fe0f592ef55fc497f5f13a0ca


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