NASA NTRS · 20070017962
Self-Adaptive System based on Field Programmable Gate Array for Extreme Temperature Electronics
Abstract
In this work, we report the implementation of a self-adaptive system using a field programmable gate array (FPGA) and data converters. The self-adaptive system can autonomously recover the lost functionality of a reconfigurable analog array (RAA) integrated circuit (IC) [3]. Both the RAA IC and the self-adaptive system are operating in extreme temperatures (from 120 C down to -180 C). The RAA IC consists of reconfigurable analog blocks interconnected by several switches and programmable by bias voltages. It implements filters/amplifiers with bandwidth up to 20 MHz. The self-adaptive system controls the RAA IC and is realized on Commercial-Off-The-Shelf (COTS) parts. It implements a basic compensation algorithm that corrects a RAA IC in less than a few milliseconds. Experimental results for the cold temperature environment (down to -180 C) demonstrate the feasibility of this approach.
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Keymeulen, Didier, Zebulum, Ricardo, Rajeshuni, Ramesham, Stoica, Adrian, Katkoori, Srinivas, Graves, Sharon, Novak, Frank, Antill, Charles. 2006-06-16. Self-Adaptive System based on Field Programmable Gate Array for Extreme Temperature Electronics. https://ntrs.nasa.gov/citations/20070017962
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