TIDUEO0C
July 2019 – March 2021
Description
Resources
Features
Applications
5
1
System Description
1.1
Key System Specifications
2
System Overview
2.1
Block Diagram
2.2
Design Considerations
2.3
Highlighted Products
2.3.1
TPS63900: 1.8V-5.5 VIN Buck-Boost Converter With 75-nA Ultra-low Quiescent Current and 400-mA Output Current
2.3.2
TPS610995: 0.7 VIN Synchronous Boost Converter With 400-nA Ultra-low Quiescent Current and 1-A Peak Current
2.3.3
TPS62840: 750-mA Synchronous Step-Down Converter With Ultra-low Quiescent Current Consumption
2.4
System Design Theory
2.4.1
Battery Gauge BQ35100
2.4.2
In-System Current Monitoring
2.4.2.1
Resistor Values Calculation for the two Current Ranges
2.4.2.2
LPV521 Gain Calculation
2.4.2.3
Current Ranges Simulation With TINA-TI
2.4.2.4
Key ADS7142 Register Settings in TIDA-01546 Firmware
2.4.2.4.1
ADS7142 Sampling Rate
2.4.3
NB-IoT Module From u-blox
2.4.4
NB-IoT Module From Quectel
3
Hardware, Software, Testing Requirements, and Test Results
3.1
Required Hardware
3.1.1
Testing TIDA-010053
3.1.2
TPS62840 Subsystem
3.1.3
TPS610995 Subsystem
3.1.4
Software
3.2
Testing and Results
3.2.1
Test Setup
3.2.2
Test Results
3.2.2.1
Test Results With the TPS62840 Buck Converter
3.2.2.2
Test Results With the TPS610995 Boost Converter
3.2.2.3
Test Results With the TPS63900 Buck-Boost Converter NB
3.2.2.4
Summary
4
Design Files
4.1
Schematics
4.2
Bill of Materials
4.3
PCB Layout Recommendations
4.3.1
Layout Prints
4.4
Altium Project
4.5
Gerber Files
4.6
Assembly Drawings
5
Software Files
6
Related Documentation
6.1
Trademarks
7
Terminology
8
About the Author
9
Revision History
An IMPORTANT NOTICE at the end of this TI reference design addresses authorized use, intellectual property matters and other important disclaimers and information.