OR gate: Difference between revisions
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(Created page with "{| class="wikitable floatright" style="text-align:center" |- ! colspan="3" | OR gate truth table |- bgcolor="#ddeeff" |colspan=2|'''Input''' || '''Output''' |- bgcolor="#ddeeff" | A || B || A OR B |- |{{no2|0}} || {{no2|0}} || {{no2|0}} |- |{{no2|0}} || {{yes2|1}} || {{yes2|1}} |- |{{yes2|1}} || {{no2|0}} || {{yes2|1}} |- |{{yes2|1}} || {{yes2|1}} || {{yes2|1}} |} In digital electronics, an '''OR gate''' is a logic gate which produces an output of true when a...") |
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== Logic == | == Logic == | ||
A two-input OR gate can be expressed in [[Boolean logic]] as <math>A + B</math> or <math>A \lor B</math>. | A two-input OR gate can be expressed in [[Boolean logic]] as <math>A + B</math> or <math>A \lor B</math>. | ||
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== See also == | == See also == |
Revision as of 19:01, 8 November 2023
OR gate truth table | ||
---|---|---|
Input | Output | |
A | B | A OR B |
0 | 0 | 0 |
0 | 1 | 1 |
1 | 0 | 1 |
1 | 1 | 1 |
In digital electronics, an OR gate is a logic gate which produces an output of true when any of its inputs are true. A LOW (0) output results when all of the inputs to the gate are LOW; if any of the inputs are HIGH (1), a high output results.
Logic
A two-input OR gate can be expressed in Boolean logic as or .