The LMZ14202HTZE/NOPB is a highly efficient power module from Texas Instruments, designed to simplify the process of power supply design. This module is a part of TI's SIMPLE SWITCHER® series and provides an easy-to-use solution that significantly reduces design time and accelerates product development.
Key Features
- Output Voltage Range: The device offers an adjustable output voltage range from 0.8V to 6V, allowing for flexibility across various applications.
- Input Voltage Range: It operates over a wide input voltage range from 6V to 42V, making it suitable for a variety of input sources, including industrial and automotive systems.
- High-Efficiency: The module boasts a high efficiency of up to 92%, ensuring minimal power loss and heat generation, which is critical for performance and reliability.
- Integrated Shielded Inductor: The LMZ14202HTZE/NOPB comes with an integrated shielded inductor, providing a compact solution that reduces electromagnetic interference (EMI).
- Output Current: It can deliver up to 2A of continuous output current, catering to a wide range of power requirements.
- Thermal Performance: Enhanced thermal performance is achieved through the use of a proprietary construction technique, making the module suitable for high-temperature environments.
- Protection Features: The device includes built-in over-temperature and over-current protection, ensuring safe operation under abnormal conditions.
Applications
The LMZ14202HTZE/NOPB is designed for a variety of applications, including but not limited to:
- Industrial power systems
- Automotive infotainment and telematics
- Telecommunication equipment
- Test and measurement devices
- Aftermarket automotive applications
Quality and Reliability
This power module is part of Texas Instruments' commitment to high-quality and reliable products. The LMZ14202HTZE/NOPB is RoHS compliant and manufactured with a no-lead finish, reflecting TI's dedication to environmental sustainability. Furthermore, the device's robustness is ensured through rigorous testing and quality control measures.