PMIC - Gate Drivers

Image Part Number Description / PDF Quantity Rfq
2DMB51507CC

2DMB51507CC

Tamura

GATE DRIVER (+15V,-15V)

104

2DM150606CM

2DM150606CM

Tamura

IC GATE DRVR HALF-BRIDGE 0502

0

2DM180206CM

2DM180206CM

Tamura

IC GATE DRVR HALF-BRIDGE 0502

87

2DMB80407CC

2DMB80407CC

Tamura

GATE DRIVER (+18V,-4V)

146

2DMB80206CC

2DMB80206CC

Tamura

GATE DRIVER (+18V,-2V)

158

2DM150806CM

2DM150806CM

Tamura

IC GATE DRVR HALF-BRIDGE 0502

101

2DM180506CM

2DM180506CM

Tamura

IC GATE DRVR HALF-BRIDGE 0502

29

2DMB51008CC

2DMB51008CC

Tamura

GATE DRIVER (+15V,-10V)

209

2DUD51008DXE1

2DUD51008DXE1

Tamura

GATE DRIVER UNIT (WITHOUT GATE R

0

2DU180206MR02

2DU180206MR02

Tamura

(ROHM: BSM300D12P3E005/BSM400D12

20

2DUC51008DXE1

2DUC51008DXE1

Tamura

GATE DRIVER UNIT (WITHOUT GATE R

120

2DU150606CM

2DU150606CM

Tamura

IC GATE DRVR 15V -6V

0

2DU150806CM

2DU150806CM

Tamura

IC GATE DRVR 15V -8V

0

2DU180506MR03

2DU180506MR03

Tamura

(ROHM: BSM080D12P2C008)

25

4DUC51016CFA1

4DUC51016CFA1

Tamura

GATE DRIVER UNIT FOR FUJI ELECTR

60

2DU180506MR04

2DU180506MR04

Tamura

(ROHM: BSM180D12P2E002)

20

2DUD51008CFP3

2DUD51008CFP3

Tamura

GATE DRIVER UNIT FOR FUJI ELECTR

0

2DU180506MR01

2DU180506MR01

Tamura

(ROHM: BSM120D12P2C005)

27

2DU180206MR01

2DU180206MR01

Tamura

(ROHM: BSM180D12P3C007)

17

2DU180506MR02

2DU180506MR02

Tamura

(ROHM: BSM300D12P2E001/BSM400D12

11

PMIC - Gate Drivers

1. Overview

Power Management Integrated Circuit (PMIC) Gate Drivers are specialized ICs designed to control the switching of power transistors (MOSFETs/IGBTs) in power conversion systems. They act as intermediaries between control circuits (e.g., MCUs) and high-power devices, ensuring efficient signal amplification and isolation. Their importance lies in optimizing energy efficiency, reducing switching losses, and enabling precise control in applications ranging from consumer electronics to industrial automation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
MOSFET DriversHigh-speed switching, low output impedanceDC-DC converters, motor drives
IGBT DriversHigh-current output, desaturation protectionIndustrial inverters, EV chargers
High-Side/Low-Side DriversBootstrap circuit support, level-shiftingH-bridge motor controllers
Isolated Gate DriversGalvanic isolation (opto/magnetic)Solar inverters, medical power supplies

3. Structure and Composition

A typical PMIC Gate Driver IC comprises:

  • Input logic interface (CMOS/TTL compatible)
  • Pre-driver stage for signal amplification
  • High-current output stage (push-pull configuration)
  • Protection circuits (UVLO, OCP, OTP)
  • Dead-time control logic
  • Power supply management module
Packaged in QFN, TSSOP, or SOIC formats with thermal pads for heat dissipation.

4. Key Technical Specifications

ParameterImportance
Drive Current ( A)Determines switching speed and RDS(on) control
Propagation Delay (ns)Impacts switching efficiency in high-frequency designs
Supply Voltage Range (V)Defines compatibility with power transistor requirements
Isolation Rating (kV)Critical for safety in high-voltage applications
Operating Temperature (-40 C to +150 C)Ensures reliability in harsh environments

5. Application Fields

  • Consumer Electronics: Smartphones (DC-DC converters), Laptops (VRM drivers)
  • Industrial: PLC motor controllers, 48V telecom rectifiers
  • Automotive: On-Board Chargers (OBC), Battery Management Systems (BMS)
  • Renewable Energy: Solar micro-inverters, Wind turbine converters
  • Home Appliances: Induction cookers, Smart energy meters

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TIUCC275xx Family120V bootstrap, 4A peak current
Infineon1EDN7512Short-circuit protection, 150ns delay
STMicroL6386EHigh-side/low-side, 600V rating
ON SemiNCV845xAEC-Q100 qualified for automotive
JWIPCJW5258Integrated bootstrap diode, 100V

7. Selection Guidelines

Key considerations:

  • Match drive current to transistor gate charge requirements
  • Verify voltage tolerance for high-side configurations
  • Assess protection features for system reliability
  • Evaluate package thermal performance (e.g., JA < 50 C/W)
  • Select isolation level per safety standards (e.g., DIN V VDE V 0884-11)
Example: For a 650V IGBT in a welding inverter, choose an isolated driver with >10A current and DESAT protection.

8. Industry Trends

Future developments include:

  • Integration with GaN/SiC device drivers for >1000V applications
  • Advanced sensing (current/voltage feedback) in package
  • PMBus interface for smart power systems
  • Automotive-grade reliability (AEC-Q100 Grade 0 support)
  • Sub-50ns propagation delay for 1MHz+ switching
Market growth driven by EVs and renewable energy systems requiring >1500W power stages with >97% efficiency.

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