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IXDD409CI

IXYS Corporation
Part Number IXDD409CI
Manufacturer IXYS Corporation
Description 9 Amp Low-Side Ultrafast MOSFET Driver
Published Apr 5, 2005
Detailed Description IXDD409PI / 409SI / 409YI / 409CI IXDI409PI / 409SI / 409YI / 409CI IXDN409PI / 409SI / 409YI / 409CI 9 Ampere Low-Side ...
Datasheet PDF File IXDD409CI PDF File

IXDD409CI
IXDD409CI


Overview
IXDD409PI / 409SI / 409YI / 409CI IXDI409PI / 409SI / 409YI / 409CI IXDN409PI / 409SI / 409YI / 409CI 9 Ampere Low-Side Ultrafast MOSFET Driver Features • Built using the advantages and compatibility of CMOS and IXYS HDMOSTM processes.
• Latch Up Protected • High Peak Output Current: 9A Peak • Operates from 4.
5V to 35V • -55° C to 125° C Extended Operating Temperature Standard • Ability to Disable Output under Faults • High Capacitive Load Drive Capability: 2500pF in <15ns • Matched Rise And Fall Times • Low Propagation Delay Time • Low Output Impedance • Low Supply Current Applications • 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 • Limiting di/dt under Short Circuit • Class D Switching Amplifiers General Description The IXDD409/IXDI409/IXDN409 are high speed high current gate drivers specifically designed to drive the largest MOSFETs and IGBTs to their minimum switching time and maximum practical frequency limits.
The IXDD409/IXDI409/IXDN409 can source and sink 9A of peak current while producing voltage rise and fall times of less than 30ns.
The input of the drivers are compatible with TTL or CMOS and are fully immune to latch up over the entire operating range.
Designed with small internal delays, cross conduction/current shoot-through is virtually eliminated in the IXDD409/IXDI409/IXDN409.
Their features and wide safety margin in operating voltage and power make the drivers unmatched in performance and value.
The IXDD409 incorporates a unique ability to disable the output under fault conditions.
When a logical low is forced into the Enable input, both final output stage MOSFETs (NMOS and PMOS) are turned off.
As a result, the output of the IXDD409 enters a tristate mode and achieves a Soft Turn-Off of the MOSFET/IGBT when a short circuit is detected.
This helps prevent damage that could occur to the MOSFET/IGBT if it...



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