TIDUF56
January 2024
1
Description
Resources
Features
Applications
6
1
System Description
1.1
Terminology
1.2
Key System Specifications
2
System Overview
2.1
Block Diagram
2.2
Design Considerations
2.3
Highlighted Products
2.3.1
TMS320F28P65x-Q1
2.3.2
DRV3255-Q1
2.3.3
LM25184-Q1
2.3.4
TCAN1044A-Q1
3
System Design Theory
3.1
Three-Phase PMSM Drive
3.1.1
Field-Oriented Control of PM Synchronous Motor
3.1.1.1
Space Vector Definition and Projection
3.1.1.1.1
( a , b ) ⇒ ( α , β ) Clarke Transformation
3.1.1.1.2
α , β ⇒ ( d , q ) Park Transformation
3.1.1.2
Basic Scheme of FOC for AC Motor
3.1.1.3
Rotor Flux Position
3.2
Field Weakening (FW) Control
4
Hardware, Software, Testing Requirements, and Test Results
4.1
Hardware Requirements
4.1.1
Hardware Board Overview
4.1.2
Test Conditions
4.1.3
Test Equipment Required for Board Validation
4.2
Test Setup
4.2.1
Hardware Setup
4.2.2
Software Setup
4.2.2.1
Code Composer Studio™ Project
4.2.2.2
Software Structure
4.3
Test Procedure
4.3.1
Project Setup
4.3.2
Running the Application
4.4
Test Results
5
Design and Documentation Support
5.1
Design Files
5.1.1
Schematics
5.1.2
BOM
5.1.3
PCB Layout Recommendations
5.1.3.1
Layout Prints
5.2
Tools and Software
5.3
Documentation Support
5.4
Support Resources
5.5
Trademarks
Features
Hardware and software available with this reference design helps accelerate time to market
C2000™
real-time microcontrollers demonstrate independent execution of
FreeRTOS®
and high-performance motor control algorithms
Implements field weakening control to achieve the full speed and torque range of the motor
On-chip comparator (CMPSS)-based overcurrent and overvoltage protection provides fast fault response
DRV3255 integrated gate driver with high drive strength, advanced monitoring, and protection features enables efficient and robust system operation