Product Description
The SN74HC08N is a high-speed CMOS logic IC that incorporates four independent 2-input AND gates. Designed for digital applications, this IC operates efficiently with low power consumption and fast switching speeds, making it ideal for a variety of logic circuit designs.
Key Features
- Quadruple AND Gates: Contains four independent 2-input AND gates within a single IC, simplifying circuit design.
- High-Speed CMOS Technology: Ensures fast operation with maximum propagation delay of 500 ns at 4.5V.
- Wide Operating Voltage Range: Functions seamlessly within a voltage range of 2V to 6V, offering flexibility for diverse applications.
- Low Power Consumption: Efficient design minimizes power usage, making it suitable for battery-powered devices.
- TTL-Compatible Inputs: Ensures easy interfacing with TTL logic devices.
- Robust Noise Immunity: Provides reliable operation in noisy environments.
- Standard 14-Pin DIP Package: Easy to handle and integrate into various circuit boards.
Applications
- Digital Logic Circuits: Ideal for implementing basic AND logic functions.
- Signal Processing: Combines signals based on AND logic for complex processing.
- Control Systems: Forms part of control logic in industrial and embedded systems.
- Timing and Synchronization: Works in circuits requiring logical synchronization.
- Educational Electronics: Useful for teaching and learning digital logic design.
Technical Specifications
- Logic Function: AND gate
- Number of Gates: 4 (quadruple)
- Inputs per Gate: 2
- Maximum Propagation Delay: 500 ns @ 4.5V
- Operating Voltage Range: 2V to 6V
- Input Voltage: 0V to 5V
- Package Type: 14-pin Dual-Inline Package (DIP)
Logic Truth Table (Single AND Gate)
Input A | Input B | Output Y |
---|---|---|
0 | 0 | 0 |
0 | 1 | 0 |
1 | 0 | 0 |
1 | 1 | 1 |
The SN74HC08N is a versatile, cost-effective solution for designing efficient digital logic circuits. Its wide operating voltage range and high-speed CMOS technology make it a reliable choice for industrial, commercial, and educational applications.