TIDUEZ0A
March 2021 – March 2022
TMS320F28P550SJ
,
TMS320F28P559SJ-Q1
Description
Resources
Features
Applications
5
1
System Description
1.1
Key System Specifications
2
System Overview
2.1
Block Diagram
2.2
Design Considerations
2.2.1
Three-Phase ANPC Inverter Architecture Overview
2.2.2
LCL Filter Design
2.2.3
Power Switching Devices Selection
2.2.4
GaN Power Stage
2.2.5
Voltage Sensing
2.2.6
Current Sensing
2.2.7
System Power Supplies
2.2.7.1
Isolated Bias Supplies
2.2.8
Si Gate Driver Circuit
3
Hardware, Software, Testing Requirements, and Test Results
3.1
Hardware and Software Requirements
3.1.1
Hardware
3.1.2
Software
3.2
Testing TIDA-010210 With AC Resistive Load
3.2.1
Test Setup
3.2.2
Experimental Results
3.3
Testing TIDA-010210 in PFC Operation
3.3.1
Test Setup
3.3.2
Experimental Results
4
Design and Documentation Support
4.1
Design Files
4.1.1
Schematics
4.1.2
BOM
4.1.3
Altium Project
4.1.4
Gerber Files
4.1.5
Assembly Drawings
4.2
Tools and Software
4.3
Support Resources
4.4
Trademarks
5
About the Authors
6
Revision History
Features
Power stage for three-phase inverters and PFCs using GaN switch
600-V rated switches in 800-V system (due to three levels)
Novel onboard protection implemented using CLB of C2000
Iso-quad channel driver supports high-frequency operation (100 kHz)
Shunt-based current sense (high accuracy and linearity over temperature)
Power module with up to 16-A current (on AC side)
High power density due to high switching frequency (100 kHz) and high efficiency (> 98% at full load)
Bidirectional operation with < 1-ms direction changeover
Low component stress helps improve system reliability
Optimized control scheme needs only 6 PWMs versus 9 PWMs for standard implementation
Reduced cost - four high frequency switches (versus six) per arm
Real-time safety operation with no extra cost