ON Semiconductor MC74VHCT125ADTR2 - Quad Bus Buffer
The MC74VHCT125ADTR2 from ON Semiconductor is a high-speed quad bus buffer designed to provide high-performance bus interface buffering for a wide range of applications. This integrated circuit features four independent non-inverting buffer/line drivers with 3-state outputs, making it an ideal choice for driving bus lines or buffer memory address registers.
Key Features:
- Advanced High-Speed CMOS Technology: The MC74VHCT125ADTR2 is built using advanced high-speed CMOS technology, providing a significant improvement in speed over conventional CMOS buffers while maintaining CMOS low power dissipation.
- Power-Off Disable Outputs: It allows for the output enable (OE) to disable the outputs, ensuring that the outputs are in a high-impedance state during power up or power down, which helps in preventing any erroneous signals or noise on the bus lines.
- 5V Tolerant Inputs: The inputs are tolerant to 5V even when the device is powered down to 3V, allowing for interface flexibility between systems operating at different voltage levels.
- Low Power Consumption: This buffer is designed for low power consumption, making it suitable for use in power-sensitive applications.
- High Output Drive Capability: With its high output drive capability, it can drive heavy loads, such as memory banks or bus lines, with ease.
- Fast Propagation Delays: It offers fast propagation delays, ensuring high-speed data transmission and minimizing signal latency.
Applications:
The MC74VHCT125ADTR2 is suitable for a variety of applications that require high-speed and low-power interface buffering, such as:
- Memory address buffering
- Bus line driving
- Data transmission systems
- Microprocessor or microcontroller interface
- Portable and battery-powered electronics
Package and Quality:
The device is offered in a TSSOP-14 package, providing a compact footprint for space-constrained applications. ON Semiconductor ensures high-quality and reliability of the MC74VHCT125ADTR2, making it a trustworthy choice for your circuit designs.