Manufacturer Part Number
APTDR90X1601G
Manufacturer
microchip-technology
Introduction
The APTDR90X1601G is a three-phase bridge rectifier diode from Microchip Technology. It is designed for high-power applications that require a robust and reliable rectification solution with high voltage and current capacity.
Product Features and Performance
Three-phase bridge rectifier diode
Capable of handling up to 1.6 kV peak reverse voltage
Rated for up to 90 A average rectified current
Low forward voltage drop of 1.3 V at 90 A
Low reverse leakage current of 50 μA at 1600 V
Wide operating temperature range of -40°C to 150°C
Product Advantages
Rugged and reliable design for demanding applications
High voltage and current handling capabilities
Efficient power conversion with low power losses
Compact chassis mount package
Key Reasons to Choose This Product
Exceptional performance and reliability for high-power rectification needs
Versatile application in various industrial, commercial, and transportation systems
Cost-effective solution with optimal price-to-performance ratio
Backed by Microchip Technology's reputation for quality and innovation
Quality and Safety Features
Compliance with relevant safety and regulatory standards
Robust construction for enhanced durability and long lifespan
Rigorous quality control and testing processes
Compatibility
The APTDR90X1601G is compatible with a wide range of three-phase power systems and applications that require high-voltage and high-current rectification.
Application Areas
Industrial motor drives and variable frequency drives
Power supplies for heavy machinery and equipment
Renewable energy systems like wind and solar power
Electric vehicle charging infrastructure
Uninterruptible power supply (UPS) systems
Product Lifecycle
The APTDR90X1601G is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation, and the product remains in active production and support. Customers are advised to contact our website's sales team for information on any potential alternate or equivalent models that may become available in the future.