Motor Driver Boards, Modules

Image Part Number Description / PDF Quantity Rfq
MFDLTB3SF

MFDLTB3SF

Panasonic

SERVO DRIVE A6N 200V 5KW 120A

0

MBDLT25NF

MBDLT25NF

Panasonic

SERVO DRIVE A6 200V 400W RTEX

0

3G3MX2AB002V10

3G3MX2AB002V10

Omron Automation & Safety Services

VARI FREQ DRIVE 1.6A 240V LOAD

0

DFR0513

DFR0513

DFRobot

PPM 2X3A DC MOTOR DRIVER

45

DVEX48CL

DVEX48CL

Panasonic

EX TYPE SPEED CONTROLLER

0

MDDHT5540NA1

MDDHT5540NA1

Panasonic

SERVO DRIVER 50A 240V LOAD

0

R88D-GT04L

R88D-GT04L

Omron Automation & Safety Services

SERVO DRIVER 4.9A 120V LOAD

0

MCDLN35SE

MCDLN35SE

Panasonic

SERVO DRIVE A6N 200V 750W

0

RVCFA3400150

RVCFA3400150

Carlo Gavazzi

VFD 480V 3PH 1.5KW SIZE 1

0

MADLT05BF

MADLT05BF

Panasonic

SERVO DRIVE A6 ETHERCAT A FRAME

1

ASD-A2-2043-E

ASD-A2-2043-E

Delta Electronics

A2 SERVO DRIVE, 2KW, 480V 3PH, E

0

79294437

79294437

Crouzet

BDE30 (EXTERNAL DRIVE FOR BRUSHL

0

VFD13AMS43MFSAA

VFD13AMS43MFSAA

Delta Electronics

VFD-MS300, 7.5HP 5.5KW 460V 13A

0

DVUX960Y

DVUX960Y

Panasonic

EX TYPE SPEED CONTROLLER

0

MEDHT4430E

MEDHT4430E

Panasonic

SERVO DRIVER 35A 480V LOAD

0

MADLN11SE

MADLN11SE

Panasonic

SERVO DRIVE A6N 100V 100W

2

MADHT1507BA1

MADHT1507BA1

Panasonic

ETHERCAT DRIVE

0

2906156

2906156

Phoenix Contact

EX I SOLENOID DRIVER FOR CONTROL

0

MCDLT35NF

MCDLT35NF

Panasonic

SERVO DRIVE A6 200V 750W RTEX

0

DVUX940L

DVUX940L

Panasonic

EX TYPE SPEED CONTROLLER

0

Motor Driver Boards, Modules

1. Overview

Motor driver boards/modules are electronic devices that act as intermediaries between control systems (e.g., microcontrollers) and motors. They convert low-power control signals into high-power electrical currents to drive motors efficiently. These components enable precise regulation of motor speed, direction, torque, and position. Their importance spans across automation, robotics, industrial machinery, and consumer electronics, where accurate motion control is critical for system performance.

2. Main Types & Functional Classification

Type Functional Features Application Examples
H-Bridge Drivers Bi-directional control using transistor bridges, basic speed regulation DC motor direction control in robotic arms
Stepper Motor Drivers Microstepping, position accuracy, torque control 3D printers, CNC machines
Servo Controllers Feedback loop integration, precise angular positioning RC vehicles, industrial automation
Brushless DC (BLDC) Drivers Electronic commutation, high efficiency, variable speed Drones, HVAC systems
Integrated Smart Modules Embedded control logic, thermal protection, communication interfaces Autonomous vehicles, medical pumps

3. Structure & Components

A typical motor driver contains:

  • Power Transistors: MOSFETs or IGBTs for switching high currents
  • Control IC: Processes PWM signals and manages commutation
  • Heat Sink: Aluminum-based PCB or external fins for thermal management
  • Protection Circuits: Overcurrent, overtemperature, and voltage spike suppression
  • Connectors: Screw terminals for motor wiring and control interfaces (UART/SPI)

4. Key Technical Specifications

Parameter Importance
Max Continuous Current Determines motor power capacity (e.g., 5A for NEMA 23 stepper)
Voltage Range Must match motor supply (e.g., 8-45V for industrial BLDC drivers)
Efficiency (Typical >90%) Impacts thermal performance and energy consumption
Control Resolution Microstepping levels (e.g., 1/16-step for precision engravers)
Protection Features Overcurrent/voltage, thermal shutdown (critical for reliability)
Communication Protocols CAN, Modbus support for industrial IoT integration

5. Application Fields

  • Industrial: CNC machining centers, conveyor belt systems
  • Consumer: Smart home appliances, gaming consoles
  • Medical: MRI scanner positioning, insulin pumps
  • Automotive: Electric vehicle powertrains, EPS systems
  • Robotics: Collaborative robot joint control

6. Leading Manufacturers & Products

Manufacturer Representative Product Key Specifications
TI (Texas Instruments) DRV8825 2.5A RMS, 1/32 microstepping, thermal shutdown
STMicroelectronics L6470 3.0A peak, SPI interface, stall detection
ON Semiconductor MC33926 3.0A continuous, bidirectional control
Maxon Motor EPOS4 Compact 50A peak, EtherCAT interface, encoder feedback

7. Selection Guidelines

  1. Match driver current/voltage ratings to motor specifications
  2. Select control mode (PWM, analog, digital) based on system requirements
  3. Consider environmental factors (temperature, vibration)
  4. Verify required protection features (IP rating for harsh environments)
  5. Evaluate integration needs (footprint, communication protocols)
  6. Balance cost vs. performance for volume production

8. Industry Trends

Emerging trends include:

  • Integration: System-on-Chip (SoC) drivers combining control and power stages
  • Smart Diagnostics: Built-in current sensing and predictive maintenance algorithms
  • Wide Bandgap Semiconductors: SiC/GaN transistors enabling higher switching frequencies
  • Wireless Control: Bluetooth/Wi-Fi-enabled drivers for IoT applications
  • Miniaturization: Chip-scale packaging for space-constrained applications

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