Microchip Technology's SMBJ4758/TR13 Zener Diode
Microchip Technology's SMBJ4758/TR13 is a robust surface-mount Zener diode designed to provide precision voltage regulation and protection solutions for a wide range of electronic applications. This Zener diode is part of the SMBJ series, which is known for its high reliability and performance in a compact SMB package.
Key Features:
- Voltage Regulation: With a nominal Zener voltage of 91V, the SMBJ4758/TR13 provides stable voltage regulation, making it suitable for voltage reference or surge protection purposes.
- Power Dissipation: It boasts a power dissipation of 5W, which allows it to handle significant power levels, making it ideal for high-power density applications.
- High Surge Capability: This Zener diode is capable of withstanding high surge events, offering excellent transient voltage protection for sensitive electronics.
- Surface-Mount Package: The SMB (DO-214AA) package is optimized for automated assembly processes and is designed to optimize board space in dense circuit designs.
- Temperature Range: The device can operate over a wide temperature range from -55°C to +150°C, ensuring reliability and performance under varying environmental conditions.
- RoHS Compliant: The SMBJ4758/TR13 complies with RoHS directives, making it an environmentally friendly choice for manufacturers looking to meet current regulations.
Applications:
The SMBJ4758/TR13 is versatile and can be used in a variety of applications including:
- Consumer electronics such as TVs, computers, and mobile devices for voltage stabilization and protection.
- Industrial systems where precise voltage control is required to protect sensitive circuitry.
- Automotive electronics where robust protection against voltage transients is crucial.
- Telecommunication equipment that requires reliable protection against surges and spikes.
Microchip Technology's commitment to quality ensures that the SMBJ4758/TR13 Zener diode is a reliable component for designers seeking to enhance the safety and performance of their electronic products.