The MM3Z47VT1 from ON Semiconductor is a highly reliable, surface-mount Zener diode designed for voltage regulation and voltage reference purposes. This Zener diode is a staple in electronic circuits where precise voltage control is essential. It is commonly used in a variety of applications, including consumer electronics, industrial equipment, and telecommunications systems.
Key Features
- Voltage Regulation: The MM3Z47VT1 offers excellent voltage regulation capabilities, with a nominal Zener voltage of 47V. This makes it suitable for providing a stable reference voltage in various circuits.
- Power Dissipation: With a power dissipation of 300mW, this diode can handle a moderate amount of power, making it suitable for a range of applications without the risk of overheating.
- Package: Packaged in a convenient SOD-323 surface-mount package, the MM3Z47VT1 is designed for automated assembly processes, which is ideal for high-volume production.
- High Reliability: ON Semiconductor is known for its quality components, and the MM3Z47VT1 is no exception. It is built to provide stable performance over a long operational life, ensuring reliability in critical applications.
- Low Leakage Current: The diode features a low leakage current, which contributes to its efficiency and helps to minimize power loss in the circuit.
Applications
The MM3Z47VT1 Zener diode is versatile and can be used in various applications, including:
- Voltage regulation in power supplies
- Overvoltage protection circuits
- Switching operations
- Waveform shaping
- Reference elements in precision circuits
Specifications
| Parameter |
Value |
| Zener Voltage (VZ) |
47V |
| Power Dissipation (PD) |
300mW |
| Package Type |
SOD-323 |
| Operating Temperature Range |
-55°C to +150°C |
| Leakage Current |
Low |
The MM3Z47VT1 is a testament to ON Semiconductor's commitment to providing components that enhance system performance and reliability. Its ability to provide a stable Zener voltage in a compact form factor makes it an excellent choice for designers looking to optimize their circuit designs.