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Titlebook: High-Accuracy CMOS Smart Temperature Sensors; Anton Bakker,Johan Huijsing Book 2000 Springer Science+Business Media Dordrecht 2000 CMOS.Se

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0893-3405 set of the read-out electronics. Calibration of these errors is quite expensive, however, dynamic offset-cancellation techniques can reduce the offset of amplif978-1-4419-4862-5978-1-4757-3190-3Series ISSN 0893-3405
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graduate students in applied mathematics, operations research, and engineering. Pure mathematics students interested in the applications of probability and stochastic processes and students in business adminis978-0-387-34171-2978-0-387-48976-6Series ISSN 0172-5939 Series E-ISSN 2191-6675
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0893-3405 a smart temperature sensor that has an accuracy that is so high that it can be applied without any form of calibration. Integrated in a low-cost CMOS technology, this yields at the publication date of this book one of the most inexpensive intelligent general purpose temperature sensors in the world
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Dynamic offset-cancellation techniques,temperature sensors. Also in this chapter, a new technique is proposed that can even further reduce the offset. This technique is called the “nested chopper technique”. An implementation of this new technique is shown and measurement results are discussed.
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Realizations of CMOS Smart Temperature Sensors,of a pressure sensor. The second realization is a general-purpose ambient temperature sensor, where special attention has been paid to high uncalibrated accuracy. The last version can measure the temperature of a remote bipolar transistor and has its application in microprocessor thermal management.
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