Monolithic Power Systems (MPS) MP6613 H-Bridge Motor Driver ICs

Monolithic Power Systems (MPS) MP6613 H-Bridge Motor Driver ICs are designed to drive stepper motors, brushed DC motors, and other loads. The ICs operate across a 4.5V to 45V input voltage (VIN) range. Depending on the ambient temperature (TA) and PCB layout, the devices deliver a motor current of up to 5A. Internal safety and diagnostic features include over-current protection (OCP), input overvoltage protection (OVP), input under-voltage protection (UVP), and thermal shutdown. The MPS MP6613 components have several control modes that are configurable via pins. These H-Bridge Motor Driver ICs are available in QFN-28 (4mm x 5mm) and TSSOP28EP packages.

Features

  • 4.5V to 45V operating input voltage (VIN) range
  • 5A maximum output current (IOUT_MAX)
  • Single H-bridge driver
  • Low 75mΩ on resistance [RDS(ON)] per MOSFET
  • Available in QFN-28 (4mm x 5mm) and TSSOP-28EP packages
  • Moisture Sensitivity Level (MSL)
    • MSL 2 for MP6613GV
    • MSL 2a for MP6613GF
  • Protection functions
    • Over-Current Protection (OCP)
    • Over-Voltage Protection (OVP)
    • Under-Voltage Protection (UVP)
    • Over-Temperature (OT) shutdown
    • Fault indication output
  • Lead-free, Halogen-free, and RoHS compliant

Applications

  • Bipolar stepper motors
  • Stage lighting
  • 3D printers
  • Laser printers and copiers
  • Textile machines

Specifications

  • 4.5V to 45V supply voltage range
  • ±0.2V PGND to GND
  • 1.1V maximum body diode forward voltage
  • Maximum continuous power dissipation
    • 3.125W for QFN-28
    • 3.9W for TSSOP-28EP
  • 0.8V to 2V logic input threshold
  • -40°C to +125°C operating temperature range
  • ESD ratings
    • ±2kV Human Body Model (HBM)
    • ±2kV Charged Device Model (CDM)

Typical Application

Application Circuit Diagram - Monolithic Power Systems (MPS) MP6613 H-Bridge Motor Driver ICs

Block Diagram

Block Diagram - Monolithic Power Systems (MPS) MP6613 H-Bridge Motor Driver ICs
公開: 2024-11-19 | 更新済み: 2024-11-28