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Circuit techniques for low-voltage and high-speed A/D converters

Author: Mikko E Waltari; K A I Halonen
Publisher: Boston : Kluwer Academic Publishers, ©2002.
Series: Kluwer international series in engineering and computer science, SECS 709.; Kluwer international series in engineering and computer science., Analog circuits and signal processing.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
The increasing digitalization in all spheres of electronics applications, from telecommunications systems to consumer electronics appliances, requires analog-to-digital converters (ADCs) with a higher sampling rate, higher resolution, and lower power consumption. The evolution of integrated circuit technologies partially helps in meeting these requirements by providing faster devices and allowing for the realization  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Waltari, Mikko E.
Circuit techniques for low-voltage and high-speed A/D converters.
Boston : Kluwer Academic Publishers, ©2002
(DLC) 2002034356
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Mikko E Waltari; K A I Halonen
ISBN: 0306479796 9780306479793 9781402072444 1402072449
OCLC Number: 614628221
Description: 1 online resource (vii, 254 pages) : illustrations.
Contents: 1. Introduction. 2. Low Voltage Issues. 3. Sample-and-Hold Operation. 4. A/D Converters. 5. S/H Circuit Architectures. 6. Sampling with a MOS Transistor Switch. 7. Operational Amplifiers. 8. Clock Generation. 9. Double-Sampling. 10. Switched OpAmp Technique. 11. Other Low-Voltage Techniques. 12. Prototypes and Experimental Results. 13. Conclusions. Appendices: Derivation of OTA GBW Requirement. Optimum Input Capacitance. Saturation Voltage.
Series Title: Kluwer international series in engineering and computer science, SECS 709.; Kluwer international series in engineering and computer science., Analog circuits and signal processing.
Responsibility: by Mikko E. Waltari and Kari A.I. Halonen.
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Abstract:

Presents seven prototypes - two double-sampled S/H circuits, a time-interleaved ADC, an IF-sampling self-calibrated pipelined ADC, a steering DAC with a deglitcher, and two pipelined ADCs employing  Read more...

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