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Amir Zjajo - Stochastic Process Variation in Deep-Submicron CMOS: Circuits and Algorithms - 9789400777804 - V9789400777804
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Stochastic Process Variation in Deep-Submicron CMOS: Circuits and Algorithms

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Description for Stochastic Process Variation in Deep-Submicron CMOS: Circuits and Algorithms hardcover. Stochastic Process Variation in Deep-Submicron CMOS Series: Springer Series in Advanced Microelectronics. Num Pages: 211 pages, 46 black & white illustrations, biography. BIC Classification: PBW; PHS; TBJ; TJFC. Category: (P) Professional & Vocational. Dimension: 234 x 156 x 12. Weight in Grams: 485.

One of the most notable features of nanometer scale CMOS technology is the increasing magnitude of variability of the key device parameters affecting performance of integrated circuits. The growth of variability can be attributed to multiple factors, including the difficulty of manufacturing control, the emergence of new systematic variation-generating mechanisms, and most importantly, the increase in atomic-scale randomness, where device operation must be described as a stochastic process. In addition to wide-sense stationary stochastic device variability and temperature variation, existence of non-stationary stochastic electrical noise associated with fundamental processes in integrated-circuit devices represents an elementary limit on the performance of ... Read more

In an attempt to address these issues, Stochastic Process Variation in Deep-Submicron CMOS: Circuits and Algorithms offers unique combination of mathematical treatment of random process variation, electrical noise and temperature and necessary circuit realizations for on-chip monitoring and performance calibration. The associated problems are addressed at various abstraction levels, i.e. circuit level, architecture level and system level. It therefore provides a broad view on the various solutions that have to be used and their possible combination in very effective complementary techniques for both analog/mixed-signal and digital circuits. The feasibility of the described algorithms and built-in circuitry has been verified by measurements from the silicon prototypes fabricated in standard 90 nm and 65 nm CMOS technology.

 

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Product Details

Format
Hardback
Publication date
2013
Publisher
Springer Netherlands
Number of pages
211
Condition
New
Series
Springer Series in Advanced Microelectronics
Number of Pages
192
Place of Publication
Dordrecht, Netherlands
ISBN
9789400777804
SKU
V9789400777804
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About Amir Zjajo
Amir Zjajo received the M.Sc. and DIC degrees from the Imperial College London, London, U.K., in 2000 and the Ph.D. degree from Eindhoven University of Technology, Eindhoven, The Netherlands in 2010, all in electrical engineering. In 2000, he joined Philips Research Laboratories as a member of the research staff in the Mixed-Signal Circuits and Systems Group. From 2006 until 2009, ... Read more

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