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STGAP2HD

STMicroelectronics
Part Number STGAP2HD
Manufacturer STMicroelectronics
Description Galvanically isolated 4A dual gate driver
Published Mar 6, 2023
Detailed Description STGAP2HD Datasheet Galvanically isolated 4 A dual gate driver Product status link STGAP2HD Product label Features • Hi...
Datasheet PDF File STGAP2HD PDF File

STGAP2HD
STGAP2HD


Overview
STGAP2HD Datasheet Galvanically isolated 4 A dual gate driver Product status link STGAP2HD Product label Features • High voltage rail up to 1200 V • Driver current capability: 4 A sink/source @ 25 °C • dV/dt transient immunity ±100 V/ns • Overall input-output propagation delay: 75 ns • Separate sink and source option for easy gate driving configuration • 4 A Miller CLAMP • UVLO function • Configurable interlocking function • Dedicated SD and BRAKE pins • Gate driving voltage up to 26 V • 3.
3 V, 5 V TTL/CMOS inputs with hysteresis • Temperature shutdown protection • Standby function • 6 kV galvanic isolation • Wide Body SO-36W • UL 1577 recognized Application • Motor driver for industrial drives, factory automation, home appliances and fans • 600/1200 V inverters • Battery chargers • Induction heating • Welding • UPS • Power supply units • DC-DC converters • Power Factor Correction DS13652 - Rev 2 - September 2022 For further information contact your local STMicroelectronics sales office.
www.
st.
com STGAP2HD Description The STGAP2HD is a dual gate driver which provides galvanic isolation between each gate driving channel and the low voltage control and interface circuitry.
The gate driver is characterized by 4 A current capability and rail-to-rail outputs, making it suitable for mid and high power applications such as power conversion and industrial motor driver inverters.
The separated output pins allow to independently optimize turn-on and turn-off by using dedicated gate resistors, while the Miller CLAMP function allows avoiding gate spikes during fast commutations in half-bridge topologies.
The device integrates protection functions: dedicated SD and BRAKE pins are available, UVLO and thermal shutdown are included to easily design high reliability systems.
In half-bridge topologies the interlocking function prevents outputs from being high at the same time, avoiding shoot-through conditions in case of wrong logic input commands.
The interlocking function can...



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