SLVT223
August 2025
1
Description
Resources
Features
Applications
1
Test Prerequisites
1.1
Voltage and Current Requirements
1.2
Magnetics Construction
1.2.1
LLC Transformer
1.2.2
Resonant Inductor
1.3
Considerations
General Texas Instruments High Voltage Evaluation (TI HV EVM) User Safety Guidelines
1.4
Precautions
1.5
Dimensions
2
Testing and Results
2.1
Efficiency Graphs
2.2
Efficiency Data
225V Input Voltage
250V Input Voltage
300V Input Voltage
350V Input Voltage
400V Input Voltage
450V Input Voltage
2.3
Load Regulation
2.4
Thermal Images
2.4.1
Top Side
2.4.2
Bottom Side
2.5
Bode Plots
3
Waveforms
3.1
Switching
3.1.1
Switching Primary Side
3.1.1.1
225V Input Voltage
3.1.1.2
300V Input Voltage
3.1.1.3
350V Input Voltage
3.1.1.4
400V Input Voltage
3.1.1.5
450V Input Voltage
3.1.2
Switching Secondary Side
3.1.2.1
225V Input Voltage
3.1.2.2
300V Input Voltage
3.1.2.3
350V Input Voltage
3.1.2.4
400V Input Voltage
3.1.2.5
450V Input Voltage
3.2
Output Voltage Ripple
3.2.1
225V Input Voltage
3.2.2
350V Input Voltage
3.2.3
450V Input Voltage
3.3
Load Transients
3.3.1
225V Input Voltage
3.3.2
350V Input Voltage
3.3.3
450V Input Voltage
3.4
Start-up Using Secondary Side Soft-Start
3.4.1
Start-Up Under No Load Conditions
3.4.1.1
225V Input Voltage
3.4.1.2
350V Input Voltage
3.4.1.3
450V Input Voltage
3.4.2
Start-up under Full Load Conditions
3.4.2.1
225V Input Voltage
3.4.2.2
350V Input Voltage
3.4.2.3
450V Input Voltage
4
Trademarks
Test Report
Automotive 300W µDC/DC Converter Reference Design Using Half-Bridge LLC