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ISOW7741FDFMR
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ISOW7741FDFMR Description
The ISOW7741FDFMR is a high-performance, isolated gate driver from Texas Instruments. It is designed to provide robust and reliable control for power MOSFETs and IGBTs in a wide range of applications.
Description:
The ISOW7741FDFMR is a monolithic isolated gate driver that features a high-voltage input and a high-voltage output. It is designed to operate from a supply voltage range of 4.75V to 18V and can handle output voltages up to 600V. The device features a high level of isolation, with a reinforced isolation rating of 5.5kVRMS between the input and output.
Features:
- High-voltage input and output
- Wide supply voltage range (4.75V to 18V)
- Reinforced isolation rating of 5.5kVRMS
- Low propagation delay (as low as 60ns)
- Low quiescent current (as low as 2.5mA)
- High output current drive (up to 2A)
- Small package size (DFN-8 package)
Applications:
The ISOW7741FDFMR is suitable for a wide range of applications that require high-voltage isolation and robust gate drive performance. Some of the key applications include:
- Motor control: The device can be used to drive the gates of power MOSFETs and IGBTs in motor control applications, such as industrial motor drives and automotive traction inverters.
- Solar inverters: The ISOW7741FDFMR can be used to drive the gates of power MOSFETs and IGBTs in solar inverters, providing efficient and reliable power conversion.
- Battery management systems: The device can be used to drive the gates of power MOSFETs and IGBTs in battery management systems, such as battery chargers and energy storage systems.
- Power supplies: The ISOW7741FDFMR can be used to drive the gates of power MOSFETs and IGBTs in power supply applications, such as AC/DC converters and DC/DC converters.
Overall, the ISOW7741FDFMR from Texas Instruments is a high-performance, isolated gate driver that offers robust and reliable performance in a wide range of high-voltage applications. Its small package size and low quiescent current make it an ideal choice for space-constrained applications, while its high output current drive and low propagation delay make it suitable for demanding high-power applications.



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