
CSD95377Q4M Series
20 V 35 A SON 3.5 x 4.5 mm synchronous buck NexFET™ power stage
Manufacturer: Texas Instruments
Catalog
20 V 35 A SON 3.5 x 4.5 mm synchronous buck NexFET™ power stage
Key Features
• Above 94% System Efficiency at 15 AMax Rated Continuous Current 35 AHigh-Frequency Operation (up to 2 MHz)High-Density SON 3.5-mm × 4.5-mm FootprintUltra-Low Inductance PackageSystem-Optimized PCB Footprint3.3-V and 5-V PWM Signal CompatibleDiode Emulation Mode With Forced Continuous Conduction Mode (FCCM)Input Voltages to 16 VTri-State PWM InputIntegrated Bootstrap DiodeShoot-Through ProtectionRoHS Compliant – Lead Free Terminal PlatingHalogen FreeAbove 94% System Efficiency at 15 AMax Rated Continuous Current 35 AHigh-Frequency Operation (up to 2 MHz)High-Density SON 3.5-mm × 4.5-mm FootprintUltra-Low Inductance PackageSystem-Optimized PCB Footprint3.3-V and 5-V PWM Signal CompatibleDiode Emulation Mode With Forced Continuous Conduction Mode (FCCM)Input Voltages to 16 VTri-State PWM InputIntegrated Bootstrap DiodeShoot-Through ProtectionRoHS Compliant – Lead Free Terminal PlatingHalogen Free
Description
AI
The CSD95377Q4M NexFET™ power stage is a highly-optimized design for use in a high power, high density synchronous buck converter. This product integrates the driver IC and power MOSFETs to complete the power stage switching function. The driver IC has built-in selectable diode emulation function enables Discontinuous Conduction Mode (DCM) operation to improve light load efficiency. This combination produces high-current, high-efficiency, and high-speed switching capability in a small 3.5 mm × 4.5 mm outline package. In addition, the PCB footprint has been optimized to help reduce design time and simplify the completion of the overall system design.
The CSD95377Q4M NexFET™ power stage is a highly-optimized design for use in a high power, high density synchronous buck converter. This product integrates the driver IC and power MOSFETs to complete the power stage switching function. The driver IC has built-in selectable diode emulation function enables Discontinuous Conduction Mode (DCM) operation to improve light load efficiency. This combination produces high-current, high-efficiency, and high-speed switching capability in a small 3.5 mm × 4.5 mm outline package. In addition, the PCB footprint has been optimized to help reduce design time and simplify the completion of the overall system design.