TIDUFE2
October 2025
1
Description
Resources
Features
Applications
6
1
System Description
1.1
Key System Specifications
2
System Overview
2.1
Block Diagram
2.2
Design Considerations
2.2.1
Fault Detection and Protection
2.2.2
Theory of Operation - Parallel LDOs Using Op Amps
2.2.3
Theory of Operation - Parallel LDOs Using Ballast Resistors
2.3
Highlighted Products
2.3.1
TPS7B7702-Q1, Automotive, Dual-Channel Antenna Low Dropout (LDO) Regulator With Current Sense
2.3.2
OPAx388 Automotive, Precision, Zero-Drift, Zero-Crossover, True Rail-to-Rail, Input/Output Operational Amplifiers
2.3.3
LMV321A-Q1 Automotive Low-Voltage Rail-to-Rail Output Operational Amplifier
3
Hardware, Testing Requirements, and Test Results
3.1
Hardware Requirements
3.2
Test Setup
3.3
Test Results - Parallel LDOs Using Op Amps
3.3.1
Short to Battery
3.3.2
Load Transient Response
3.3.3
Current Limit
3.3.4
Start-Up
3.3.5
Shutdown
3.3.6
Line Transient
3.3.7
PSRR
3.3.8
Thermal Performance
3.3.9
Thermal Limit Protection
3.4
Test Results - Parallel LDOs Using Ballast Resistors
3.4.1
Short to Battery
3.4.2
Load Transient Response
3.4.3
Current Limit
3.4.4
Start-Up
3.4.5
Line Transient
3.4.6
Thermal Performance
3.4.7
Thermal Limit Protection
3.5
Comparison of Results Between Parallel LDO Techniques
3.5.1
VLOAD vs ILOAD
3.5.2
PSRR
4
Design and Documentation Support
4.1
Design Files
4.1.1
Schematics
4.1.2
BOM
4.1.3
Layout Prints
4.2
Tools
4.3
Documentation Support
4.4
Support Resources
4.5
Trademarks
5
About the Author
Resources
TIDA-050096
Design Folder
TPS7B7702-Q1
Product Folder
OPA388-Q1
Product Folder
LMV321A-Q1
Product Folder
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