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CSD95430
  • CSD95430
  • CSD95430

CSD95430

ACTIVE

90-A peak continuous-current synchronous-buck NexFET™ smart power stage

Texas Instruments CSD95430 Product Info

1 April 2026 0

Parameters

Rating

Catalog

VDS (V)

20

Ploss current (A)

30

Features

Analog temperature output, Catastrophic over-current protection, Cycle-by-cycle over-current protection, Diode emulation mode with FCCM, Industry common footprint, Integrated current sense, Integrated ringing reduction, Negative over-current protection, Powerstack vertical FET integration, Smart-current sharing, Ultra-low inductance package

Operating temperature range (°C)

-40 to 125

Package

VQFN-CLIP (RRB)-41-30 mm² 6 x 5

Features

  • Active current balancing between paralleled phases sharing a single PWM input
  • Peak continuous current: 90-A
  • System efficiency: > 95% at 30-A
  • High-frequency operation: 1.25-MHz
  • Diode emulation function to enable efficiency discontinuous conduction mode (DCM) operation
  • Temperature compensated bi-directional current sense
  • Analog temperature output
  • Fault monitoring
  • PWM signal compatible: 3.3 V and 5 V
  • Tri-state PWM input
  • Integrated bootstrap switch
  • Optimized dead-time for shoot-through protection
  • High-density industry common QFN 5-mm x 6-mm footprint
  • Ultra-low inductance package
  • System-optimized PCB footprint
  • Thermally enhanced topside cooling
  • RoHS compliant - lead-free terminal plating
  • Halogen free
  • Active current balancing between paralleled phases sharing a single PWM input
  • Peak continuous current: 90-A
  • System efficiency: > 95% at 30-A
  • High-frequency operation: 1.25-MHz
  • Diode emulation function to enable efficiency discontinuous conduction mode (DCM) operation
  • Temperature compensated bi-directional current sense
  • Analog temperature output
  • Fault monitoring
  • PWM signal compatible: 3.3 V and 5 V
  • Tri-state PWM input
  • Integrated bootstrap switch
  • Optimized dead-time for shoot-through protection
  • High-density industry common QFN 5-mm x 6-mm footprint
  • Ultra-low inductance package
  • System-optimized PCB footprint
  • Thermally enhanced topside cooling
  • RoHS compliant - lead-free terminal plating
  • Halogen free

Description

The CSD95430RRBNexFET™ 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. This combination produces high-current, high-efficiency, and high-speed switching capability in a small 5-mm × 6-mm outline package. It also integrates the accurate current sensing and temperature sensing functionality to simplify system design and improve accuracy. In addition, the PCB footprint has been optimized to help reduce design time and simplify the completion of the overall system design. This power stage features an active current balance feature which allows multiple power stages to be paralleled off a single PWM input. This enables phase multiplication for very high current applications without the need for a similarly high phase count controller. The active current balance ensures that the multiplied phases share current evenly so no significant derating of current capability is needed when paralleling phases.

The CSD95430RRBNexFET™ 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. This combination produces high-current, high-efficiency, and high-speed switching capability in a small 5-mm × 6-mm outline package. It also integrates the accurate current sensing and temperature sensing functionality to simplify system design and improve accuracy. In addition, the PCB footprint has been optimized to help reduce design time and simplify the completion of the overall system design. This power stage features an active current balance feature which allows multiple power stages to be paralleled off a single PWM input. This enables phase multiplication for very high current applications without the need for a similarly high phase count controller. The active current balance ensures that the multiplied phases share current evenly so no significant derating of current capability is needed when paralleling phases.

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