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Shum, Warren; Anderson, Jason H. (2011), FPGA Glitch Power Analysis and Reduction, International Symposium on Low power electronics and design (ISLPED), pp. 27–32 Zhanping, Chen; Liqiong, Wei; Kaushik, Roy (March 1997), Reducing Glitching and Leakage Power in Low Voltage CMOS Circuits , Purdue University School of Electrical and Computer ...
Digital electronics is a field of electronics involving the study of digital signals and the engineering of devices that use or produce them. This is in contrast to analog electronics which work primarily with analog signals. Despite the name, digital electronics designs includes important analog design considerations.
Second edition was published in 1989. [4] Third edition was published in 2015. [1] Related books: Learning the Art of Electronics: A Hands-On Lab Course - (formerly Student Manual for The Art of Electronics) by Thomas C. Hayes and Paul Horowitz. [5] While referring to the main text extensively, it is designed specifically to teach electronics.
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Advanced-level reference text for experienced digital designers who want to press their designs to the upper limits of speed and distance. Eric Bogatin. (2009). Signal and Power Integrity - Simplified, Second Edition. Upper Saddle River, New Jersey: Prentice Hall. ISBN 978-0-13-234979-6. Archived from the original on 2011-09-10.
Electronics - Consumer electronics - Engineering - Manufacturing - Symbols - Units - Waste Theory: Ampère's law - Coulomb's law - Frequency - Hall effect - Joule's laws - Kirchhoff's laws - Millman's Theorem - Moore's Law - Norton's theorem - Ohm's law - Peukert's law - Resistance - Thévenin's theorem - Superposition - Wavelength
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In digital electronics, the power–delay product (PDP) is a figure of merit correlated with the energy efficiency of a logic gate or logic family. [1] Also known as switching energy, it is the product of power consumption P (averaged over a switching event) times the input–output delay or duration of the switching event D. [1]
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