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2010, ISBN: 9048173256

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Pertijs, Micheal A.P.:
Precision Temperature Sensors in CMOS Technology - pocketboek

2010

ISBN: 9048173256

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Precision Temperature Sensors in Cmos Technology Analog Circuits and Signal Processing - eerste uitgave

2011, ISBN: 9789048173259

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Pertijs, Micheal A.P., and Huijsing, Johan H.:
Precision Temperature Sensors in CMOS Technology - pocketboek

2010, ISBN: 9789048173259

Paperback, New., 292 p. Analog Circuits and Signal Processing . XII, 292 p., Dordrecht, [PU: Springer]

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Bijzonderheden over het boek
PRECISION TEMPERATURE SENSORS IN CMOS TECHNOLOGY

This book describes the analysis and design of precision temperature sensors in CMOS IC technology, focusing on so-called smart temperature sensors, which provide a digital output signal that can be readily interpreted by a computer. The text shows how temperature characteristics can be used to obtain an accurate digital temperature reading. The book ends with a detailed description of three prototypes, one of which achieves the best performance reported to date.

Gedetalleerde informatie over het boek. - PRECISION TEMPERATURE SENSORS IN CMOS TECHNOLOGY


EAN (ISBN-13): 9789048173259
ISBN (ISBN-10): 9048173256
Gebonden uitgave
pocket book
Verschijningsjaar: 2010
Uitgever: Springer-Verlag GmbH
316 Bladzijden
Gewicht: 0,480 kg
Taal: eng/Englisch

Boek bevindt zich in het datenbestand sinds 2011-08-10T14:52:41+02:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2021-12-28T18:58:06+01:00 (Amsterdam)
ISBN/EAN: 9789048173259

ISBN - alternatieve schrijfwijzen:
90-481-7325-6, 978-90-481-7325-9


Gegevens van de uitgever

Auteur: Micheal A.P. Pertijs; Johan Huijsing
Titel: Analog Circuits and Signal Processing; Precision Temperature Sensors in CMOS Technology
Uitgeverij: Springer; Springer Netherland
292 Bladzijden
Verschijningsjaar: 2010-11-25
Dordrecht; NL
Gedrukt / Gemaakt in
Gewicht: 0,486 kg
Taal: Engels
213,99 € (DE)
219,99 € (AT)
236,00 CHF (CH)
POD
XII, 292 p.

BC; Previously published in hardcover; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Schaltkreise und Komponenten (Bauteile); Verstehen; CMOS; Computer; Modulation; Modulator; Sensor; Signal; Transistor; analog; analog electronics; integrated circuit; sensors interfaces; smart sensors; solid-state circuits; temperature sensors; C; Circuits and Systems; Electrical Engineering; Electronics and Microelectronics, Instrumentation; Microwaves, RF and Optical Engineering; Measurement Science and Instrumentation; Nanotechnology; Electronic Circuits and Systems; Electrical and Electronic Engineering; Electronics and Microelectronics, Instrumentation; Microwaves, RF Engineering and Optical Communications; Measurement Science and Instrumentation; Nanotechnology; Engineering; Elektrotechnik; Elektronik; Elektronik; Wissenschaftliche Standards, Normung usw. Nanotechnologie; BB

This book describes the analysis and design of precision temperature sensors in CMOS IC technology, focusing on so-called smart temperature sensors, which provide a digital output signal that can be readily interpreted by a computer. The text shows how temperature characteristics can be used to obtain an accurate digital temperature reading. The book ends with a detailed description of three prototypes, one of which achieves the best performance reported to date.

Acknowledgment.

1. INTRODUCTION. 1.1 Motivation and Objectives. 1.2 Basic Principles. 1.3 Context of the Research. 1.4 Challenges. 1.5 Organization of the Book. References.

2. CHARACTERISTICS OF BIPOLAR TRANSISTORS. 2.1 Introduction. 2.2 Bipolar Transistor Physics. 2.3 Temperature Characteristics of Bipolar Transistors. 2.4 Bipolar Transistors in Standard CMOS Technology. 2.5 Processing Spread. 2.6 Sensitivity to Mechanical Stress. 2.7 Effect of Series Resistances and Base-Width Modulation. 2.8 Effect of Variations in the Bias Current. 2.9 Conclusions. References.

3. RATIOMETRIC TEMPERATURE MEASUREMENT USING BIPOLAR TRANSISTORS. 3.1 Introduction. 3.2 Generating an Accurate Current-Density Ratio. 3.3 Generating an Accurate Bias Current. 3.4 Trimming. 3.5 Curvature Correction. 3.6 Compensation for Finite Current-Gain. 3.7 Series-Resistance Compensation. 3.8 Conclusions. References.

4. SIGMA-DELTA ANALOG-TO-DIGITAL CONVERSION. 4.1 Introduction. 4.2 Operating Principles of Sigma-Delta ADCs. 4.3 First-Order Sigma-Delta Modulators. 4.4 Second-Order Sigma-Delta Modulators. 4.5 Decimation Filters. 4.6 Filtering of Dynamic Error Signals. 4.7 Conclusions. References.

5. PRECISION CIRCUIT TECHNIQUES. 5.1 Introduction. 5.2 Continuous-Time Circuitry. 5.3 Switched-Capacitor Circuitry. 5.4 Advanced Offset Cancellation Techniques. 5.5 Conclusions. References.

Measurement. 6.5 Voltage Reference Calibration. 6.6 Conclusions. References.

7. REALIZATIONS. 7.1 A Batch-Calibrated CMOS Smart Temperature Sensor. 7.2 A CMOS Smart Temperature Sensor with a 3s Inaccuracy of ±0.5° C from -50° C to 120° C. 7.3 A CMOS Smart Temperature Sensor with a 3s Inaccuracy of ±0.1° C from -55° C to 125° C. 7.4 Benchmark. References.

8. CONCLUSIONS. 8.1 Main Findings. 8.2 Other Applications of this Work. 8.3 Future Work. References.

B Resolution Limits of Sigma-Delta Modulators with a DC Input. B.1 First-Order Modulator. B.2 Second-Order Single-Loop Modulator. References.

. Summary.

About the Authors. Index.

Prof. Johan Huijsing has (co) authored and edited over 20 books with Springer / Kluwer.

Dr. Michiel Pertijs graduated "cum laude" for his PhD work on the Temperature Sensor

Gives a complete overview of temperature sensor design from physics to realizations

Describes in detail state-of-the-art realizations of smart temperature sensors, including a ± 0.1° C accurate sensor

Pays special attention to production aspects, such as calibration and trimming

Includes a chapter devoted to the application of sigma-delta analog-to-digital converters in smart sensors

Includes a chapter devoted to precision readout techniques, including dynamic offset cancellation and dynamic element matching



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