PMIC - Full, Half-Bridge Drivers

Image Part Number Description / PDF Quantity Rfq
BD6884GUW-E2

BD6884GUW-E2

ROHM Semiconductor

IC MOTOR DRIVER PAR VBGA035W040

0

MP6536DU-LF-Z

MP6536DU-LF-Z

MPS (Monolithic Power Systems)

26V, 5.5A, 3-CHANNEL HALF-BRIDGE

500

L6207PD

L6207PD

STMicroelectronics

IC MOTOR DRIVER PAR 36POWERSO

1088

L6206D013TR

L6206D013TR

STMicroelectronics

IC MOTOR DRIVER PAR 24SOIC

444

UC3770BNG4

UC3770BNG4

IC BRIDGE DRIVER PAR 16DIP

2068

SMA6862MZ LF2452

SMA6862MZ LF2452

Sanken Electric Co., Ltd.

IC MOTOR DRIVER DC 3PH 24SIP

0

BD8201FM-E2

BD8201FM-E2

ROHM Semiconductor

IC BRIDGE DRIVER PAR 28HSOP

0

LV8014T-MPB-E

LV8014T-MPB-E

AC MOTOR CONTROLLER

974

BTM7710G

BTM7710G

IR (Infineon Technologies)

INTEGRATED FULL-BRIDGE DRIVER

800

MP86884DQKT-LF-P

MP86884DQKT-LF-P

MPS (Monolithic Power Systems)

IC HALF-BRIDGE PWM TQFN

0

NCP5369NMNTXG

NCP5369NMNTXG

BUFFER/INVERTER BASED MOSFET DRI

2400

CSD95492QVMT

CSD95492QVMT

Texas Instruments

CSD95492QVMT

2

BTN7973B

BTN7973B

IR (Infineon Technologies)

HALF-BRIDGE PERIPHERAL DRIVER

26000

CSD95373AQ5M

CSD95373AQ5M

Texas Instruments

IC SYNC BUCK NEXFET 12SON

82

BA5962FVM-TR

BA5962FVM-TR

ROHM Semiconductor

IC BRIDGE DRIVER PAR 8MSOP

0

TDA21201-S7

TDA21201-S7

IR (Infineon Technologies)

PWM PERIPHERAL DRIVER, 30A

358

L9960TR

L9960TR

STMicroelectronics

IC HALF-BRIDGE DRVR SPI PWRSSO36

235

CSD97395Q4M

CSD97395Q4M

Texas Instruments

IC SYNC BUCK NEXFET 8VSON

2

CSD95485RWJT

CSD95485RWJT

Texas Instruments

SYNCHRONOUS BUCK

225

BTM7710GXUMA1

BTM7710GXUMA1

IR (Infineon Technologies)

IC BRIDGE DRIVER PAR 28DSO

0

PMIC - Full, Half-Bridge Drivers

1. Overview

Full and Half-Bridge Drivers are critical components in power management integrated circuits (PMICs), designed to control power transistors in high-side and low-side configurations. These drivers enable precise switching of MOSFETs or IGBTs in power conversion systems, playing a pivotal role in motor control, DC-DC converters, and motorized industrial equipment. Their ability to manage high-voltage/current loads with minimal switching losses makes them indispensable in modern electrification and automation systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Full-Bridge DriverControls four power transistors in H-bridge configuration, enabling bidirectional current flowBrushed DC motor control, servo actuators, resonant converters
Half-Bridge DriverDrives high-side and low-side transistors in complementary modeDC-DC converters, BLDC motor drives, Class-D amplifiers

3. Structure and Composition

Typical physical construction includes:

  • Multi-layer QFN/TSSOP packaging with thermal pad
  • Internal level shifters for high-side gate driving
  • Dead-time control logic to prevent shoot-through
  • Integrated protection circuits (OCP, OTP, UVLO)
  • Bootstrap circuitry for high-side power supply

Technical composition combines CMOS control logic with high-voltage DMOS output stages.

4. Key Technical Specifications

ParameterTypical RangeImportance
Operating Voltage4.5V-100VDetermines system compatibility
Peak Drive Current0.2A-4.0AAffects switching speed and efficiency
Switching Frequency100kHz-2MHzImpacts system size and EMI
RDS(on)50m -300m Directly affects conduction loss
Propagation Delay5ns-100nsCritical for high-frequency synchronization

5. Application Areas

  • Industrial automation (servo drives, robotic arms)
  • Electric vehicles (on-board chargers, DC-DC converters)
  • Consumer electronics (BLDC motor drives in appliances)
  • Medical equipment (precision actuator control)
  • Renewable energy systems (solar inverters, energy storage)

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TIDRV8703DThree-phase gate driver with current sensing
STMicroL6398High-voltage half-bridge driver with bootstrap
InfineonIRS2003300V half-bridge driver for Class-D audio
ON SemiNCP5911BSingle-channel high-side driver with diagnostics
RenesasISL78692Automotive full-bridge controller with PWM

7. Selection Guidelines

Key considerations:

  • Match voltage rating with system bus voltage (1.5x safety margin)
  • Calculate RMS current requirements vs. package thermal capability
  • Evaluate dead-time adjustability for specific switching frequency
  • Select appropriate protection features for operating environment
  • Consider package size vs. cooling requirements

Example: For 48V motor drives, select drivers with 80V rating, >1A peak current, and thermal shutdown.

Industry Trend Analysis

Future development focuses on:

  • Integration with current sensing and protection circuits
  • Adoption of wide-bandgap device drivers (SiC/GaN compatibility)
  • Intelligent drivers with digital interfaces (PWM/PWM with feedback)
  • Reduced on-resistance (<50m ) for high-current applications
  • AEC-Q100 automotive qualification becoming standard

The market is shifting towards higher integration and smarter power management solutions driven by EV and IoT applications.

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