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Part Number: EV18H47A

MCS MCLV-48V-300W Development Board


  • Three-phase motor control power stage
  • Motor phase current feedback to implement Field Oriented Control (FOC) of a PMSM/BLDC motor
  • DC bus current feedback for overcurrent protection and to demonstrate a single shunt current reconstruction algorithm
  • DC bus voltage feedback for overvoltage protection and DC bus compensation
  • Phase voltage feedback to implement sensorless Back-EMF (BEMF) control or flying start (windmilling)
  • Optional analog sensor (e.g., thermistor) interface circuit
  • Hall sensor interface
  • Quadrature Encoder Interface (QEI) for an optical/incremental shaft encoder
  • MOSFET temperature measurement
  • Overvoltage and current protection circuits
  • PICkit™ On-Board 4 (PKOB4) for programming and debugging
  • Optional ICSP™ header for interfacing a Microchip programmer/debugger
  • 120-pin high-speed edge card connector to interface Dual In-Line Modules (DIMs) controller boards
  • User interface elements:
  • Two debug LEDs
  • Two push buttons
  • One potentiometer
  • MCU Reset push button
  • Fault Reset push button
  • Power-on status indication LED
  • Six PWM indication LEDs
  • Two dual row headers for interfacing Microchip Xplained Pro add-on boards or other user interface boards to extend the application functionality
  • On-board EEPROM for storing board or motor configuration information
  • Dynamic brake circuit to support regenerative braking applications
  • Auxiliary power supply to power the circuitry and external interfaces

 

Overview


The Motor Control System (MCS) Development Tool Ecosystem enables rapid prototyping of motor control designs using the dsPIC® DSCs, SAM, PIC32MK, PIC32MC and PIC32C MCUs.  The MCS Development Tools consist of modular and interchangeable inverter boards, controller boards (Dual In-Line Modules or DIMs) and expansion boards.  DIMs and expansion boards must be purchased separately, see the links for the MC DIMs below. The MCLV-48V-300W Inverter Board is targeted to drive a low-voltage (12-48V) three-phase Permanent Magnet Synchronous Motor (PMSM) or Brushless DC (BLDC) motor up to 25A RMS continuous per phase at 25°C.

Motor Control DIMs:

Documentation


Title
Document Id
Motor Control Low-Voltage 48V-300W Inverter Board User's Guide Download 2742997e-3032-41fd-8054-8cdf4b7de353
HURST Series NT DYNAMO® Brushless DC Permanent Magnet Motor Datasheet Download 157765a3-8206-42e9-bb6a-d745f46c8b68
Hurst DMA0204024B101 BLDC Motor DataSheet Download bff4525b-93e0-49c3-bbaf-92677df65005
Hurst DMB0224C10002 BLDC Motor DataSheet Download 0d9677cd-948b-47ab-9536-42c2ba951d20

Application Notes


Title
Date
Document Category
Sensored BLDC Motor Control Using dsPIC Digital Signal Controllers (DSCs) 23 Jun 2005 Link Application Notes
Sinusoidal Control of PMSM Motors with dsPIC30F / dsPIC33F/ dsPIC33E DSC 27 Jun 2011 Link Application Notes
Sensorless Field Oriented Control of a PMSM using a Sliding Mode Observer (SMO) 04 Apr 2010 Link Application Notes
Sensorless BLDC Control with Back-EMF Filtering Using a Majority Function 08 Jul 2022 Link Application Notes
Sensorless Field Oriented Control (FOC) of an AC Induction Motor (ACIM) Using Field Weakening 13 Jun 2008 Link Application Notes
Sensorless Field Oriented Control (FOC) for a Permanent Magnet Synchronous Motor (PMSM) Using a PLL Estimator and Field Weakening (FW) 30 Jun 2011 Link Application Notes
Sensored (Hall Effect Sensor-Based) Field Oriented Control of Three-Phase BLDC Motor Using dsPIC33CK 08 Jul 2021 Link Application Notes
Field Oriented Control of a Three-Phase BLDC Motor using a Rotary Inductive Position Sensor 04 Oct 2022 Link Application Notes
AN5419 Sensorless Drive for Single-Phase BLDC Motor Using dsPIC33CK 10 May 2024 Link Application Notes
Integrated Power Factor Correction (PFC) and Sensorless Field Oriented Control (FOC) System for Microchip 32-bit Microcontrollers Application Note 17 Sep 2018 Link Application Notes
Sensorless Field Oriented Control (FOC) for a Permanent Magnet Synchronous Motor (PMSM) Using a PLL Estimator and Equation-based Flux Weakening (FW) Application Note 13 Aug 2018 Link Application Notes