The BZX384-C24,115 is a high-precision Zener diode, crafted with excellence by NXP Semiconductors. This component is designed to offer a stable and reliable voltage reference, making it an essential part of voltage regulation solutions in a wide array of electronic applications. Its compact form factor and robust construction ensure that it fits seamlessly into various circuit designs while providing long-lasting performance.
Key Features
- Zener Voltage: The BZX384-C24,115 has a nominal Zener voltage of 24V, providing a precise voltage reference for your circuits.
- Power Dissipation: With a total power dissipation of 300mW, this Zener diode can handle significant amounts of energy without compromising its performance or reliability.
- Package: Encased in a small SOD-323 surface-mount package, it occupies minimal space on a printed circuit board, making it ideal for high-density electronic applications.
- Low Leakage Current: It features a low leakage current, ensuring minimal power loss and enhancing the overall efficiency of the electronic system.
- High Surge Current Capability: The device is capable of withstanding high surge currents, providing additional protection against transient voltage spikes.
- Wide Operating Temperature Range: The BZX384-C24,115 operates effectively over a broad temperature range, making it suitable for use in various environmental conditions.
Applications
The versatility of the BZX384-C24,115 allows it to be used in a variety of applications, including:
- Voltage regulation modules
- Overvoltage and surge protection circuits
- Power supply units
- Consumer electronics
- Telecommunication systems
- Automotive electronics
Quality and Reliability
NXP Semiconductors is renowned for its commitment to quality and the BZX384-C24,115 is no exception. Each diode is manufactured with stringent quality control measures, ensuring that it meets the high standards expected from NXP products. Reliability is a hallmark of this Zener diode, giving designers and engineers the confidence to integrate it into their critical applications.