SN74LVTH125PWR Description
The SN74LVTH125PWR is a high-performance, non-inverting buffer designed for a wide range of digital applications. Manufactured by Texas Instruments, this IC belongs to the 74LVTH series and is housed in a 14-pin TSSOP package. It operates within a supply voltage range of 2.7V to 3.6V, making it suitable for low-voltage applications. The device features four non-inverting buffer elements, each capable of handling one bit of data. With an output current rating of 32mA for high signals and 64mA for low signals, the SN74LVTH125PWR ensures robust signal transmission.
The SN74LVTH125PWR is designed for surface-mount applications, providing a compact and reliable solution for modern electronic designs. It is REACH unaffected and RoHS3 compliant, ensuring environmental sustainability and regulatory compliance. The device is available in a tape and reel (TR) package, facilitating efficient manufacturing processes. With a moisture sensitivity level (MSL) of 1 (unlimited), the SN74LVTH125PWR is suitable for a variety of manufacturing environments.
SN74LVTH125PWR Features
- Non-Inverting Buffer Elements: The SN74LVTH125PWR features four non-inverting buffer elements, each capable of handling one bit of data. This design ensures signal integrity and minimizes propagation delays.
- Wide Supply Voltage Range: The device operates within a supply voltage range of 2.7V to 3.6V, making it ideal for low-voltage applications and ensuring compatibility with a variety of power supply configurations.
- High Output Current Capability: With an output current rating of 32mA for high signals and 64mA for low signals, the SN74LVTH125PWR can drive multiple loads efficiently, reducing the need for additional buffering components.
- Surface-Mount Compatibility: The SN74LVTH125PWR is designed for surface-mount applications, providing a compact and reliable solution for modern electronic designs. This mounting type ensures ease of integration and high-density board layouts.
- Environmental Compliance: The device is REACH unaffected and RoHS3 compliant, ensuring environmental sustainability and regulatory compliance. This makes it suitable for a wide range of applications, including those with strict environmental requirements.
- Moisture Sensitivity Level (MSL) 1: With an MSL of 1 (unlimited), the SN74LVTH125PWR is suitable for a variety of manufacturing environments, reducing the risk of moisture-related defects during assembly.
SN74LVTH125PWR Applications
The SN74LVTH125PWR is ideal for a variety of applications requiring high-performance buffering and signal transmission. Its low-voltage operation and high output current capability make it suitable for:
- Digital Signal Processing: The non-inverting buffer elements ensure signal integrity and minimize propagation delays, making the SN74LVTH125PWR ideal for digital signal processing applications.
- Microcontroller Interfaces: The device's wide supply voltage range and high output current capability make it suitable for interfacing with microcontrollers and other low-voltage digital devices.
- Communication Systems: The SN74LVTH125PWR's robust signal transmission capabilities make it ideal for communication systems, where reliable data transmission is critical.
- Consumer Electronics: The compact surface-mount package and environmental compliance make the SN74LVTH125PWR suitable for consumer electronics applications, where space and environmental considerations are important.
Conclusion of SN74LVTH125PWR
The SN74LVTH125PWR is a versatile and high-performance non-inverting buffer designed for a wide range of digital applications. Its wide supply voltage range, high output current capability, and compact surface-mount package make it an ideal solution for modern electronic designs. The device's environmental compliance and moisture sensitivity level (MSL) of 1 further enhance its suitability for a variety of manufacturing environments. Whether used in digital signal processing, microcontroller interfaces, communication systems, or consumer electronics, the SN74LVTH125PWR provides reliable and efficient signal transmission, ensuring optimal performance in demanding applications.