Manufacturer Part Number
IR2133STRPBF
Manufacturer
Infineon Technologies
Introduction
The IR2133STRPBF is a high-performance, three-phase gate driver IC from Infineon Technologies. It is designed to drive a variety of power devices, including IGBTs and N-Channel MOSFETs, in various industrial and power electronics applications.
Product Features and Performance
Supports 3-phase half-bridge configuration
Capable of driving up to 6 power devices
Wide supply voltage range of 10V to 20V
Inverting input type
High-side voltage up to 600V (bootstrap)
Fast rise/fall times of 90ns and 40ns, respectively
Peak output current of 250mA (source) and 500mA (sink)
Operates at up to 125°C junction temperature
Product Advantages
Versatile gate driver solution suitable for a wide range of power electronics applications
Robust and reliable performance with high-voltage and high-current capabilities
Efficient switching and low power dissipation
Key Reasons to Choose This Product
Exceptional performance and reliability for demanding power electronics applications
Ease of integration and compatibility with a variety of power devices
Cost-effective and efficient solution for three-phase motor control and other industrial uses
Quality and Safety Features
Robust design for high-voltage and high-current environments
Thermal protection and overcurrent protection features for enhanced safety and reliability
Compatibility
The IR2133STRPBF is compatible with a variety of IGBTs and N-Channel MOSFETs in three-phase half-bridge configurations.
Application Areas
Three-phase motor control (e.g., AC drives, servo motors)
Uninterruptible power supplies (UPS)
Solar inverters
Industrial power electronics
Other high-power applications requiring efficient and reliable gate driving
Product Lifecycle
The IR2133STRPBF is an active product in our website's sales team's portfolio. There are no plans for discontinuation at this time. Customers are advised to check with our website's sales team for the latest product information and availability of any equivalent or alternative models.