Product Overview: BZV90-C8V2 by NXP
The BZV90-C8V2 is a robust and high-performance Zener diode designed by NXP Semiconductors, a leader in the field of electronic components. This device is engineered to provide a precise voltage regulation solution for a variety of applications. The BZV90-C8V2 is part of NXP's extensive Zener diode product line, known for their reliability and quality.
Key Features
- Nominal Zener Voltage: 8.2V, providing a stable reference voltage for your circuits.
- Power Dissipation: With a power dissipation capability of up to 1.3W, this Zener diode can handle significant amounts of power, making it suitable for robust applications.
- High Stability: The BZV90-C8V2 offers excellent stability, ensuring consistent performance over time and under varying environmental conditions.
- Low Dynamic Impedance: This feature minimizes voltage variation under load, providing a more stable Zener voltage.
- Package: The device comes in a compact, surface-mountable SOD64 package, which is ideal for space-constrained applications and ensures ease of integration into various circuit designs.
Applications
The BZV90-C8V2 is versatile and can be used in a wide array of electronic circuits. Common applications include:
- Voltage regulation in power supplies
- Surge protection in sensitive electronics
- Reference voltage in voltage monitoring circuits
- Overvoltage and transient voltage protection
Quality and Reliability
NXP Semiconductors is committed to delivering high-quality products. The BZV90-C8V2 is manufactured with stringent quality control processes, ensuring that each diode meets NXP's high standards for performance and reliability. This commitment to quality makes the BZV90-C8V2 a trusted choice for engineers and designers looking for a dependable voltage regulation solution.
Whether you're designing power management systems, looking to protect delicate electronics, or need a reliable reference voltage source, the BZV90-C8V2 by NXP is an excellent choice that combines performance, stability, and quality in a compact package.