PMIC - Motor Drivers, Controllers

Image Part Number Description / PDF Quantity Rfq
UCC3626PWTRG4

UCC3626PWTRG4

Texas Instruments

IC MOTOR DRVR 11V-14.5V 28TSSOP

0

UC2625N

UC2625N

Texas Instruments

IC MOTOR DRIVER 10V-18V 28DIP

0

UC2625MNEP

UC2625MNEP

Texas Instruments

IC MOTOR DRIVER 10V-18V 28DIP

0

L293NG4

L293NG4

Texas Instruments

IC MTR DRV BIPOLAR 4.5-36V 16DIP

0

TPIC2101N

TPIC2101N

Texas Instruments

IC MOTOR DRIVER 8V-16V 14DIP

0

DRV8808DCAR

DRV8808DCAR

Texas Instruments

IC MOTOR DRIVER 7V-40V 48HTSSOP

0

TPIC43T01DAR

TPIC43T01DAR

Texas Instruments

IC MOTOR DRIVER 18V-28V 38TSSOP

0

DRV3211QPFPQ1

DRV3211QPFPQ1

Texas Instruments

IC MOTOR DRIVER 5.3V-18V 80HTQFP

0

UC2625NG4

UC2625NG4

Texas Instruments

IC MOTOR DRIVER 10V-18V 28DIP

0

DRV3210QPHPRQ1

DRV3210QPHPRQ1

Texas Instruments

IC MTR DRIVER 5.3V-28.5V 48HTQFP

0

LM629MX-8

LM629MX-8

Texas Instruments

IC MOTOR DRIVER 4.5V-5.5V 24SOIC

0

L293DWP

L293DWP

Texas Instruments

IC MTR DRV BIPOLR 4.5-36V 28SOIC

0

UC3625NG4

UC3625NG4

Texas Instruments

IC MOTOR DRIVER 10V-18V 28DIP

0

TPIC0108BDWPR

TPIC0108BDWPR

Texas Instruments

IC MOTOR DRVR 6V-18V 20SOPWRPAD

0

UC3637QG3

UC3637QG3

Texas Instruments

IC MOTOR DRIVER 2.5V-20V 20PLCC

0

DRV3203QPHPRQ1

DRV3203QPHPRQ1

Texas Instruments

IC MTR DRIVER 5.3V-28.5V 48HTQFP

0

UC3625N

UC3625N

Texas Instruments

IC MOTOR DRIVER 10V-18V 28DIP

0

L293DWPG4

L293DWPG4

Texas Instruments

IC MTR DRV BIPOLR 4.5-36V 28SOIC

0

TPIC2101DG4

TPIC2101DG4

Texas Instruments

IC MOTOR DRIVER 8V-16V 14SOIC

0

UC2625Q

UC2625Q

Texas Instruments

IC MOTOR DRIVER 10V-18V 28PLCC

0

PMIC - Motor Drivers, Controllers

1. Overview

Power Management ICs (PMICs) dedicated to motor drivers and controllers are specialized semiconductor devices that manage the operation of electric motors by regulating power delivery, speed, direction, and protection features. These components are critical in modern electronics for optimizing energy efficiency, ensuring precise motion control, and enhancing system reliability. They are widely used in robotics, automotive systems, industrial automation, and consumer electronics.

2. Main Types & Functional Classification

TypeFunctional FeaturesApplications
H-Bridge DriversBi-directional current flow control, PWM integrationDC motor direction control in robotics
Stepper Motor ControllersMicrostepping, current regulation, position control3D printers, CNC machines
Brushless DC (BLDC) ControllersCommutation logic, Hall sensor interfaceElectric vehicles, drones
Integrated FET DriversEmbedded MOSFETs, thermal shutdownPortable devices, power tools

3. Structure & Components

A typical PMIC for motor control consists of:

  • Physical Structure: Standard packages like QFN, TSSOP, or BGA for compact integration
  • Internal Modules:
    • Gate drivers for MOSFET/IGBT control
    • Current sensing amplifiers
    • Protection circuits (OCP, OTP, UVLO)
    • Power supply regulation units
  • Interfaces: PWM, SPI, I2C, or analog inputs for control signals

4. Key Technical Specifications

ParameterDescription & Importance
Operating Voltage RangeDetermines compatibility with power sources (e.g., 4.5V 40V for automotive)
Output Current CapacityDefines motor power handling (e.g., 1A 10A continuous)
Efficiency (Typical >90%)Minimizes power loss and thermal stress
Protection FeaturesIncludes overcurrent, thermal, and shoot-through protection
Control InterfaceSupports PWM, Hall sensors, or serial communication

5. Application Fields

  • Consumer Electronics: Drones, robotic vacuum cleaners, smart locks
  • Industrial: Servo motors, automated manufacturing arms
  • Automotive: Electric power steering, HVAC blower motors
  • Medical: Infusion pumps, diagnostic equipment

6. Key Manufacturers & Products

ManufacturerProduct ModelKey FeaturesApplication Example
TI (Texas Instruments)DRV88251.8A output, microstepping3D printer extruders
STMicroelectronicsL6470600mA, SPI controlIndustrial valves
ON SemiconductorLV87113-phase BLDC controllerElectric scooters
InfineonTLE9411212-channel H-bridgeAutomotive seat adjusters

7. Selection Guidelines

Key considerations include:

  • Match voltage/current ratings with motor specifications
  • Select control interface (PWM vs. serial) based on system design
  • Verify protection features for harsh environments
  • Optimize package size for space-constrained applications
  • Evaluate cost vs. integration level (standalone vs. system-on-chip)

8. Industry Trends

Emerging trends include:

  • Higher integration with embedded MOSFETs and sensors
  • Adoption of field-oriented control (FOC) for BLDC motors
  • Development of automotive-grade ICs with ASIL-D compliance
  • AI-driven predictive maintenance features
  • Wide bandgap semiconductor integration (GaN/SiC) for higher efficiency
RFQ BOM Call Skype Email
Top