The 74LVTH125PW is a high-performance, low-voltage, quad bus buffer manufactured by NXP Semiconductors. This device is designed to provide the ultimate solution for buffering applications with a 3-state output that allows for connection to a bus-organized system. It is part of NXP's advanced LVT (Low Voltage Technology) series, ensuring a perfect balance between speed and power consumption.
Key Features
- Logic Family: The 74LVTH125PW belongs to the LVTH family, which is known for its low-voltage operation and high tolerance to voltage variations.
- Quad Buffers: This device contains four independent buffers, providing flexibility in handling multiple data lines simultaneously.
- 3-State Outputs: The outputs can be put in a high-impedance state, making it suitable for bus-oriented systems where multiple devices share the same connection.
- Power Supply: It operates at a nominal voltage of 3.3V, making it compatible with modern low-voltage logic circuits.
- Drive Capability: The 74LVTH125PW is capable of driving heavily loaded outputs with 64 mA at 3.3 V, ensuring reliable performance in demanding applications.
- Package: The device comes in a TSSOP14 (Thin Shrink Small Outline Package) form factor, which is ideal for space-constrained applications.
Applications
The versatility of the 74LVTH125PW makes it suitable for a wide range of applications, including:
- Bus driving where multiple devices need to communicate over the same channel
- Memory addressing systems
- Data transmission systems requiring high-speed, low-power buffers
- Control systems in telecommunications and data processing
Technical Specifications
| Parameter |
Value |
| Supply Voltage (VCC) |
3.3V ±0.3V |
| Input Voltage (VI) |
0 to 3.6V |
| Output Voltage (VO) |
0 to 3.6V |
| Output Current (IO) |
64 mA |
| Operating Temperature Range |
-40°C to +85°C |
| Package Type |
TSSOP14 |
With its robust design and advanced features, the 74LVTH125PW from NXP is an excellent choice for designers looking for a reliable quad bus buffer that can operate in a variety of conditions while maintaining low power consumption.