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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.
Flip-flops and latches are fundamental building blocks of digital electronics systems used in computers, communications, and many other types of systems. Flip-flops and latches are used as data storage elements to store a single bit (binary digit) of data; one of its two states represents a "one" and the other represents a "zero".
D. Data processing unit; Data storage tag; Databending; Datapath; Josephson junction count; Degradation (telecommunications) Delay-line memory; Delay-insensitive minterm synthesis
An electronic symbol is a pictogram used to represent various electrical and electronic devices or functions, such as wires, batteries, resistors, and transistors, in a schematic diagram of an electrical or electronic circuit. These symbols are largely standardized internationally today, but may vary from country to country, or engineering ...
The very fastest shifters are implemented as full crossbars, in a manner similar to the 4-bit shifter depicted above, only larger. These incur the least delay, with the output always a single gate delay behind the input to be shifted (after allowing the small time needed for the shift count decoder to settle; this penalty, however, is only incurred when the shift count changes).
EDA—Electronic Design Automation; EDGE—Enhanced Data rates for GSM Evolution; EDI—Electronic Data Interchange; EDO—Extended Data Out; EDSAC—Electronic Delay Storage Automatic Calculator; EDVAC—Electronic Discrete Variable Automatic Computer; EEPROM—Electronically Erasable Programmable Read-Only Memory; EFF—Electronic Frontier ...
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Glitch removal is the elimination of glitches—unnecessary signal transitions without functionality—from electronic circuits. Power dissipation of a gate occurs in two ways: static power dissipation and dynamic power dissipation. Glitch power comes under dynamic dissipation in the circuit and is directly proportional to switching activity.