The MM5Z4V7 is a high-quality Zener diode produced by ON Semiconductor, a leader in energy-efficient innovations in power and signal management, logic, discrete, and custom devices. This Zener diode is designed to provide a precise voltage reference and regulation, making it an essential component for a wide range of electronic applications.
Key Features
- Zener Voltage: The MM5Z4V7 has a nominal Zener voltage of 4.7V, which is ideal for providing a stable reference voltage in various circuits.
- Power Dissipation: With a power dissipation of 500mW, this diode can handle moderate levels of power, making it suitable for many electronic applications.
- Package: Encased in a small SOD-523 package, the MM5Z4V7 is optimized for space-constrained applications, allowing for high-density circuit designs.
- High Stability: This Zener diode offers excellent stability and reliability over time, ensuring consistent performance throughout its lifespan.
- Wide Operating Temperature Range: The MM5Z4V7 can operate over a broad temperature range, ensuring functionality in various environmental conditions.
Applications
The MM5Z4V7 is versatile and can be used in numerous applications. It is commonly utilized in:
- Voltage regulation modules
- Overvoltage and surge protection circuits
- Power management systems
- Consumer electronics
- Telecommunications equipment
Quality and Reliability
ON Semiconductor is committed to delivering high-quality components. The MM5Z4V7 is manufactured with stringent quality control processes, ensuring that each diode meets the highest standards of performance and reliability. This commitment to quality makes the MM5Z4V7 a trusted choice for engineers and designers looking for components that they can rely on for their critical applications.
Environmental Compliance
The MM5Z4V7 is compliant with RoHS (Restriction of Hazardous Substances), which means it adheres to environmental regulations by avoiding the use of certain hazardous materials in its construction. This makes it a more environmentally friendly choice for electronic designs.