Manufacturer Part Number
FAN7390AMX
Manufacturer
onsemi
Introduction
The FAN7390AMX is a high-voltage gate driver IC designed for high efficiency and performance in power management applications.
Product Features and Performance
Drives Half-Bridge configurations
Independent channel operation
Capable of driving IGBT and N-Channel MOSFET gates
High peak output current of 4.5A (source and sink)
Non-Inverting input type
600V maximum high side voltage (bootstrap)
Fast rise and fall times of 25ns and 20ns respectively
Operates across a wide temperature range -40°C to 150°C
Product Advantages
High current capability supports power-intensive applications
Support for high voltage operations enhances device versatility
Fast switching times reduce power losses and improve efficiency
Wide operating temperature range ensures performance under extreme conditions
Surface mount package suitable for compact designs
Key Technical Parameters
Number of Drivers: 2
Voltage - Supply: 10V to 20V
Logic Voltage - VIL, VIH: 1.2V, 2.5V
Current - Peak Output: 4.5A/4.5A
High Side Voltage - Max (Bootstrap): 600V
Rise / Fall Time: 25ns/20ns
Operating Temperature: -40°C to 150°C
Quality and Safety Features
Built to withstand high-voltage and high-current environments
Engineered for reliable operation in extended temperature ranges
Compatibility
Compatible with IGBT and N-Channel MOSFET gate types
Suitable for 14-SOIC surface mount soldering techniques
Application Areas
Inverter systems for renewable energy
Motor drives and controls
Switching power supplies
High efficiency power conversion systems
Automotive power systems
Product Lifecycle
Status: Obsolete
Awareness of potential need for replacement or searching for upgraded alternatives is advised
Several Key Reasons to Choose This Product
Obsolete status indicates potential for unique application use or need for last-time buy
High performance in driving half-bridge configurations contributes to superior system design
Designed for rugged applications, ensuring reliability and durability
The ability to interface with multiple gate types for a wide array of power applications
Advanced technical parameters provide the basis for high-performance power management solutions