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词条 AND gate
释义

  1. Symbols

  2. Implementations

      Analytical representation    Alternatives  

  3. IC package

  4. See also

  5. References

INPUT OUTPUT
A B A AND B
0 0 0
0 1 0
1 0 0
1 1 1

The AND gate is a basic digital logic gate that implements logical conjunction - it behaves according to the truth table to the right. A HIGH output (1) results only if all the inputs to the AND gate are HIGH (1). If none or not all inputs to the AND gate are HIGH, a LOW output results. The function can be extended to any number of inputs.

Symbols

There are three symbols for AND gates: the American (ANSI or 'military') symbol and the IEC ('European' or 'rectangular') symbol, as well as the deprecated DIN symbol. Additional inputs can be added as needed. For more information see Logic Gate Symbols.

MIL/ANSI SymbolIEC SymbolDIN Symbol

The AND gate with inputs A and B and output C implements the logical expression .

Implementations

{{Gallery
|File:DiodeANDgate.png|AND gate using diodes
|File:TransistorANDgate.png|AND gate using transistors
|File:NMOS AND gate.png|NMOS AND gate
}}

An AND gate is usually designed using N-channel (pictured) or P-channel MOSFETs. The digital inputs a and b cause the output F to have the same result as the AND function.

Analytical representation

is the analytical representation of AND gate:

Alternatives

{{further|NAND logic|NOR logic}}

If no specific AND gates are available, one can be made from NAND or NOR gates, because NAND and NOR gates are considered the "universal gates," [1] meaning that they can be used to make all the others.

Desired gateNAND constructionNOR construction

IC package

AND gates are available in IC packages. The 7408 IC is a well known QUAD 2-Input AND GATES and contains four independent gates each of which performs the logic AND function.

See also

{{commons category|AND gates}}
  • OR gate
  • NOT gate
  • NAND gate
  • NOR gate
  • XOR gate
  • XNOR gate
  • IMPLY gate
  • Boolean algebra
  • Logic gate

References

1. ^Mano, M. Morris and Charles R. Kime. Logic and Computer Design Fundamentals, Third Edition. Prentice Hall, 2004. p. 73.
{{Logical connectives}}

1 : Logic gates

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