ON Semiconductor MM5Z9V1T1G - Zener Voltage Regulator Diode
The ON Semiconductor MM5Z9V1T1G is a high-quality Zener voltage regulator diode designed for providing excellent voltage regulation and protection features for a wide array of electronic applications. This precision Zener diode offers a nominal Zener voltage of 9.1 volts, making it suitable for circuits that require a stable reference voltage.
Key Features
- Zener Voltage: 9.1V with a tolerance of ±5%, providing precise voltage regulation.
- Power Dissipation: Capable of dissipating up to 500 mW, ensuring reliable operation under moderate power conditions.
- Package: The SOD-523 surface mount package allows for efficient use of PCB space and is ideal for automated assembly processes.
- Operating Temperature: Designed to operate within a wide temperature range from -55°C to +150°C, suitable for various environments.
- Configuration: Single diode configuration enables straightforward integration into circuit designs.
Applications
The MM5Z9V1T1G is versatile in its use and can be implemented in numerous applications, including:
- Voltage regulation modules
- Overvoltage and surge protection circuits
- Power management systems
- Consumer electronics
- Telecommunication devices
Quality and Reliability
ON Semiconductor is known for its commitment to quality and reliability, and the MM5Z9V1T1G is no exception. It is manufactured to meet strict industry standards, ensuring high performance and dependability for critical applications. Each diode is tested to guarantee it meets the specified Zener voltage and power dissipation ratings.
Environmental Compliance
The MM5Z9V1T1G complies with RoHS and REACH environmental directives, making it a responsible choice for environmentally-conscious designers and manufacturers looking to minimize the ecological impact of their products.
With its robust design and precise voltage regulation capabilities, the ON Semiconductor MM5Z9V1T1G Zener diode is an excellent choice for designers looking for a reliable voltage regulation solution.