Manufacturer Part Number
DB105G
Manufacturer
genesic-semiconductor
Introduction
The genesic-semiconductor DB105G is a single-phase standard bridge rectifier diode. It is designed to provide reliable and efficient rectification of alternating current (AC) to direct current (DC) in a wide range of applications. With its high peak reverse voltage and average rectified current capabilities, the DB105G is a versatile and robust component suitable for various power supply and control circuit designs.
Product Features and Performance
High peak reverse voltage of 600V
Average rectified current of 1A
Low forward voltage drop of 1.1V at 1A
Reverse leakage current of 10uA at 600V
Operating temperature range of -55°C to 150°C
Through-hole mounting for easy integration into PCBs
Product Advantages
Robust and reliable performance
Suitable for a wide range of AC to DC conversion applications
Compact and space-saving package
Cost-effective solution for power supply and control circuit designs
Key Reasons to Choose This Product
Proven reliability and long-term durability
Excellent electrical characteristics for efficient rectification
Wide operating temperature range for versatile use
Easy integration into various circuit designs
Quality and Safety Features
Manufactured to strict quality standards
Undergoes rigorous testing and inspection
Complies with relevant safety regulations
Compatibility
The DB105G is a standard single-phase bridge rectifier diode that is compatible with a wide range of AC power sources and control circuits. It can be used in various industrial, commercial, and consumer applications where AC to DC conversion is required.
Application Areas
Power supplies
Motor controls
Lighting systems
Industrial automation
Household appliances
Electronic devices
Product Lifecycle
The DB105G is an active and currently available product. There are no immediate plans for discontinuation. However, as technology evolves, customers are advised to check with the manufacturer or our website's sales team for the latest product information and any potential alternative or equivalent models that may be available in the future.