The KBP308G-C-HF from Linear Technology is a high-efficiency, glass passivated bridge rectifier designed for converting alternating current (AC) to direct current (DC) in a wide range of electronic applications. This robust component is a reliable solution for power supply designers looking for a rectifier with a high current rating and a compact form factor.
Key Features:
- High Current Capability: The KBP308G-C-HF is capable of handling up to 3A of average rectified output current, making it suitable for moderate to high-power applications.
- Peak Reverse Voltage: With a peak reverse voltage (PRV) of 800V, this bridge rectifier can withstand significant voltage spikes without damage, offering a considerable margin for safety in fluctuating power environments.
- High Efficiency: The glass passivated chip junction ensures low leakage current and high forward surge capability, contributing to the overall efficiency and reliability of the rectifier.
- Operating Temperature Range: The KBP308G-C-HF is designed to operate over a wide temperature range from -55°C to +150°C, allowing it to perform reliably in extreme conditions.
- RoHS Compliant: This product is compliant with the Restriction of Hazardous Substances (RoHS) directive, making it an environmentally friendly choice for electronic designs.
- Halogen-Free: The KBP308G-C-HF is also halogen-free, further emphasizing Linear Technology's commitment to producing eco-conscious components.
Applications:
The versatility of the KBP308G-C-HF bridge rectifier makes it an excellent choice for a variety of applications, including:
- Power supplies for consumer electronics
- LED lighting systems
- Adapters and battery chargers
- Office machines and home appliances
- Telecommunication devices
With its outstanding performance and high reliability, the KBP308G-C-HF is an ideal component for designers seeking a bridge rectifier that meets the rigorous demands of modern electronic circuits. Linear Technology's commitment to quality ensures that this product will deliver consistent performance and contribute to the longevity of the applications it serves.