The BZX884-C3V6,315 is a precision Zener diode manufactured by NXP Semiconductors, a leader in the electronic components industry. This small-signal Zener diode is designed for voltage regulation and offers excellent stability and reliability in a variety of applications. With its tightly controlled Zener voltage, it is commonly used in voltage reference and surge protection circuits.
Key Features
- Zener Voltage: The BZX884-C3V6,315 has a nominal Zener voltage of 3.6V, making it suitable for a range of low-voltage applications.
- Power Dissipation: With a total power dissipation of 400mW, this Zener diode can handle moderate levels of power while maintaining a compact form factor.
- Package: Enclosed in a small SOD-882 leadless ultra small plastic package, the BZX884-C3V6,315 is designed for surface-mounted applications and is ideal for high-density circuit boards.
- High Precision: The device features a tight tolerance on the Zener voltage, ensuring precise voltage regulation in your circuits.
- Operating Temperature Range: It operates effectively within a wide temperature range of -55°C to +150°C, accommodating various environmental conditions.
Applications
The BZX884-C3V6,315 is versatile and can be used in a variety of electronic circuits. Some common applications include:
- Voltage regulation in power supplies
- Protection circuits against voltage spikes
- Precision reference voltage sources in analog circuits
- Energy management systems
Quality and Reliability
NXP Semiconductors is committed to delivering high-quality components. The BZX884-C3V6,315 Zener diode is produced with rigorous quality control measures to ensure consistent performance and reliability. This product is suitable for use in commercial, industrial, and even demanding automotive applications, where stability and durability are crucial.
Whether you're designing power management systems or looking to enhance the stability of your electronic devices, the BZX884-C3V6,315 from NXP Semiconductors is an excellent choice for precision voltage regulation.