The 74LVC08ADTR2G is a high-performance, quad 2-input AND gate IC from ON Semiconductor, designed to operate in a wide voltage range with low power consumption. This advanced logic gate is a part of the 74LVC series, which is renowned for its compatibility with TTL (Transistor-Transistor Logic) levels while offering the benefits of CMOS technology. This makes the 74LVC08ADTR2G an ideal choice for interfacing with both CMOS and TTL logic levels.
Key Features
- Operating Voltage: The device can function within a supply voltage range of 1.65V to 5.5V, making it suitable for a variety of low-voltage and battery-powered applications.
- High-Speed Operation: With a typical propagation delay of just 3.7ns at a 3.3V supply, the 74LVC08ADTR2G is optimized for high-speed signal processing.
- Low Power Consumption: It features a low quiescent current and significantly reduced power consumption compared to traditional TTL devices, which is crucial for energy-sensitive designs.
- Input Compatibility: The inputs are 5V tolerant, allowing direct interfacing with TTL-level voltages without the need for level shifters.
- Drive Capability: Outputs can drive up to 24mA, providing good drive capability and improving signal integrity on loaded buses.
- Package Type: The device is available in a TSSOP-14 package, which is ideal for space-constrained applications.
Applications
The versatility of the 74LVC08ADTR2G makes it suitable for a wide range of applications, including:
- Logic level translation
- Signal gating
- Function generation
- Complex logic circuit implementation
- Communication systems
- Embedded systems
- Portable devices
Quality and Reliability
ON Semiconductor is committed to providing high-quality products. The 74LVC08ADTR2G is no exception, as it is manufactured to stringent standards, ensuring both reliability and performance for critical applications. Additionally, ON Semiconductor provides comprehensive technical support and documentation, making integration of the 74LVC08ADTR2G into your designs as seamless as possible.