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The IXDN402/IXDI402/IXDF402 consists of two 2 Amp CMOS high speed MOSFET drivers. Each output can source and sink 2A of peak current while producing voltage rise and fall times of less than 15ns to drive the latest IXYS MOSFETs & IGBTs. The input of the driver is TTL or CMOS compatible and is fully immune to latch up over the entire operating range. A patent-pending circuit virtually eliminates cross conduction and current shoot-through. Improved speed and drive capabilities are further enhanced by very low and matched rise and fall times.
The IXDN402 is configured as a dual non-inverting gate driver, the IXDI402 as a dual inverting gate driver, and the IXDF402 as a dual inverting + non-inverting gate driver.
The IXDN402/IXDI402/IXDF402 family are available in the standard 8 pin P-DIP (PI), SOP-8 (SI) and SOP-16 (SI-16) packages respectively.
IXDN402PI Maximum Ratings
Supply Voltage . . . . . . . . . . . . . . . ..25 V All Other Pins . . . . . -0.3 V to VCC + 0.3 V Junction Temperature . . . . . . . . . .150 Storage Temperature . . .-65 to 150 Lead Temperature (10 sec) . . . . . .300
IXDN402PI Features
• Built using the advantages and compatibility of CMOS and IXYS HDMOSTM processes • Latch-Up Protected Over Entire Operating Range • High Peak Output Current: 2A Peak • Wide Operating Range: 4.5V to 25V • High Capacitive Load Drive Capability: 1000pF in <10ns • Matched Rise And Fall Times • Low Propagation Delay Time • Low Output Impedance • Low Supply Current • Two Drivers in Single Chip
IXDN402PI Typical Application
• Driving MOSFETs and IGBTs • Motor Controls • Line Drivers • Pulse Generators • Local Power ON/OFF Switch • Switch Mode Power Supplies (SMPS) • DC to DC Converters • Pulse Transformer Driver • Class D Switching Amplifiers
IXDN402PI Connection Diagram
IXDN404SI Parameters
Technical/Catalog Information
IXDN404SI
Vendor
IXYS
Category
Integrated Circuits (ICs)
Configuration
Low-Side
Voltage - Supply
4.5 V ~ 35 V
Current - Peak
4A
Delay Time
36ns
Package / Case
8-SOIC
Packaging
Tube
Number of Outputs
2
Input Type
Non-Inverting
Number of Configurations
2
Operating Temperature
-55°C ~ 125°C
High Side Voltage - Max (Bootstrap)
-
Drawing Number
*
Lead Free Status
Lead Free
RoHS Status
RoHS Compliant
Other Names
IXDN404SI IXDN404SI
IXDN404SI General Description
The IXDN404/IXDI404/IXDF404 is comprised of two 4 Ampere CMOS high speed MOSFET drivers. Each output can source and sink 4A of peak current while producing voltage rise and fall times of less than 15ns to drive the latest IXYS MOSFETs & IGBT's. The input of the driver is compatible with TTL or CMOS and is fully immune to latch up over the entire operating range. A patent-pending circuit virtually eliminates CMOS power supply cross conduction and current shoot-through. Improved speed and drive capabilities are further enhanced by very low, matched rise and fall times.
The IXDN404 is configured as a dual non-inverting gate driver, the IXDI404 is a dual inverting gate driver, and the IXDF404 is a dual inverting + non-inverting gate driver.
The IXDN404/IXDI404/IXDF404 family are available in the standard 8 pin P-DIP (PI), SOP-8 (SI) and SOP-16 (SI-16) packages.
IXDN404SI Maximum Ratings
Supply Voltage . . . . . . . . . . . . . . . . ..25V All Other Pins . . . . . . -0.3V to VCC + 0.3V Junction Temperature . . . . . . . . . . .150 Storage Temperature . . . . -65 to 150 Soldering Lead Temperature . . . . . 300
IXDN404SI Features
• Built using the advantages and compatibility of CMOS and IXYS HDMOSTM processes • Latch-Up Protected Over Entire Operating Range • High Peak Output Current: 4A Peak • Wide Operating Range: 4.5V to 25V • High Capacitive Load Drive Capability: 1800pF in <15ns • Matched Rise And Fall Times • Low Propagation Delay Time • Low Output Impedance • Low Supply Current • Two Drivers in Single Chip
IXDN404SI Typical Application
• Driving MOSFETs and IGBTs • Motor Controls • Line Drivers • Pulse Generators • Local Power ON/OFF Switch • Switch Mode Power Supplies (SMPS) • DC to DC Converters • Pulse Transformer Driver • Class D Switching Amplifiers • Limiting di/dt Under Short Circuit