ON Semiconductor MC74VHC08D Quad 2-Input AND Gate
The MC74VHC08D is a high-performance, quad 2-input AND gate integrated circuit from ON Semiconductor, renowned for its advanced silicon technology and precision engineering. This device is designed to operate with a power supply range of 2.0V to 5.5V, making it suitable for a variety of applications including portable, battery-operated equipment as well as high-speed data processing systems.
Constructed with silicon gate CMOS technology, the MC74VHC08D offers robust noise immunity and the potential for high-speed operation. Its low power consumption is a key feature, with a significant reduction in power compared to equivalent bipolar Schottky TTL logic gates. This makes the MC74VHC08D an excellent choice for power-sensitive applications.
The device features a latch-up performance that exceeds 250mA, which is per JESD 17, ensuring stability and reliability in operation. Additionally, the MC74VHC08D has an output drive capability of 8mA, which is strong enough to drive most standard loads while maintaining a low level of power dissipation.
The MC74VHC08D is provided in a compact SOIC-14 package, which is surface-mountable and ideal for space-constrained applications. Its pin configuration is carefully designed to allow for straightforward PCB layout and easy interfacing with other components.
Key specifications of the MC74VHC08D include:
- Supply Voltage Range: 2.0V to 5.5V
- Operating Temperature: -55°C to +125°C
- Input Hysteresis: 20% of VCC at 25°C
- Propagation Delay Time: 8.5ns at VCC = 5V, CL = 15pF, TA = 25°C (typical)
Applications for the MC74VHC08D are diverse and include logic level translation, power management, and signal gating, among others. Its high-speed performance and compatibility with TTL levels make it a versatile choice for designers looking to bridge different logic families or to create complex logic functions in their circuits.
In conclusion, the ON Semiconductor MC74VHC08D is a reliable, efficient, and versatile quad 2-input AND gate that meets the needs of modern electronic designs requiring low power consumption, high noise immunity, and high-speed operation within a wide voltage range.