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Logic Gates

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SN74LVC1G08DBVR
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SN74LVC1G00DBVR
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SN74LVC1G00DCKR
UDF
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100+ $0.0319
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6000+ $0.0213
20000+ $0.0202
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x $0.0383
Ext. Price: $0.38
MOQ: 10
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SPQ: 3000
SN74LVC1G08DCKR
UDF
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5+ $0.0473
50+ $0.0394
150+ $0.0336
500+ $0.0287
3000+ $0.0264
10000+ $0.025
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x $0.0473
Ext. Price: $0.23
MOQ: 5
Mult: 1
SPQ: 3000

Logic Gates

Logic gates are fundamental building blocks in digital circuit design and are used to create complex digital systems. They perform logical operations on one or more binary inputs and produce a single binary output. The basic logic gates include AND, OR, NOT, NAND, NOR, XOR, and XNOR.

Definition:
A logic gate is an electronic device that implements a Boolean function, which is a mathematical operation that takes one or more logical values (usually represented as 0 or 1) and produces a single logical value as output.

Function:
Logic gates function by processing input signals and producing output signals based on a specific logical operation. For example:
- AND gate: Outputs 1 only if all inputs are 1.
- OR gate: Outputs 1 if at least one input is 1.
- NOT gate: Inverts the input (1 becomes 0, 0 becomes 1).
- NAND gate: Outputs 0 only if all inputs are 1.
- NOR gate: Outputs 1 only if all inputs are 0.
- XOR gate: Outputs 1 if an odd number of inputs are 1.
- XNOR gate: Outputs 1 if an even number of inputs are 1.

Applications:
Logic gates are used in various applications, including:
1. Computers: They form the basis of processors and memory units.
2. Communication systems: They are used in signal processing and data transmission.
3. Control systems: They are essential in automating industrial processes.
4. Consumer electronics: They are found in devices like TVs, smartphones, and gaming consoles.

Selection Criteria:
When choosing logic gates for a specific application, several criteria are considered:
1. Speed: The gate's ability to switch states quickly.
2. Power consumption: Lower power consumption is desirable for portable devices.
3. Size: Smaller gates are preferred for integrated circuits to save space.
4. Cost: The cost of the gate, including manufacturing and maintenance.
5. Reliability: The gate's ability to perform consistently over time.
6. Compatibility: The gate must be compatible with other components in the system.

In summary, logic gates are essential components in digital electronics, performing basic logical operations that are the foundation of complex digital systems. Their selection is based on performance, power efficiency, size, cost, reliability, and system compatibility.
Please refer to the product rule book for details.