The NXP BZX585-B8V2@115 is a high-precision, low-power voltage regulator diode designed to offer a stable zener voltage. This product is part of NXP's BZX585 series, which is renowned for its reliability and efficiency in voltage regulation applications.
Key Features
- Zener Voltage: The BZX585-B8V2@115 provides a nominal zener voltage of 8.2V, which is ideal for a wide range of electronic circuits requiring voltage stabilization.
- Power Dissipation: With a total power dissipation of 310mW, this zener diode is capable of handling moderate power levels while maintaining a low thermal footprint.
- Tolerance: The zener voltage tolerance is specified at ±2%, ensuring precise voltage regulation for sensitive components.
- Package: It comes in a small SOD-523 package, which is suitable for high-density mounting and is perfect for space-constrained applications.
- Operating Temperature: The diode can operate over a wide temperature range from -65°C to +150°C, making it reliable in various environmental conditions.
- Low Leakage Current: The device exhibits a very low leakage current, which enhances its efficiency and makes it suitable for low-power applications.
Applications
The BZX585-B8V2@115 is versatile and can be used in various applications, including:
- Power supply regulation
- Over-voltage protection circuits
- Switching power supplies
- Consumer electronics
- Automotive electronics
Quality and Reliability
NXP Semiconductors is known for its commitment to quality, and the BZX585-B8V2@115 is no exception. It is manufactured to the highest industry standards, ensuring that it meets the rigorous requirements of commercial and industrial electronic devices.
Conclusion
With its precise voltage control, low power dissipation, and compact form factor, the NXP BZX585-B8V2@115 zener diode is an excellent choice for designers looking for a reliable voltage regulation solution. Whether for consumer electronics, industrial applications, or automotive systems, this zener diode offers performance and reliability that engineers can trust.