SNVSB48C
April 2018 – October 2019
LMR36006
PRODUCTION DATA.
1
Features
2
Applications
3
Description
Device Images
Simplified Schematic
4
Revision History
5
Device Comparison Table
6
Pin Configuration and Functions
Pin Functions
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD Ratings
7.3
Recommended Operating Conditions
7.4
Thermal Information
7.5
Electrical Characteristics
7.6
Timing Requirements
7.7
System Characteristics
7.8
Typical Characteristics
8
Detailed Description
8.1
Overview
8.2
Functional Block Diagram
8.3
Feature Description
8.3.1
Power-Good Flag Output
8.3.2
Enable and Start-up
8.3.3
Current Limit and Short Circuit
8.3.4
Undervoltage Lockout and Thermal Shutdown
8.4
Device Functional Modes
8.4.1
Auto Mode
8.4.2
Dropout
8.4.3
Minimum Switch On-Time
9
Application and Implementation
9.1
Application Information
9.2
Typical Application
9.2.1
Design 1: Low Power 24-V, 600-mA PFM Converter
9.2.1.1
Design Requirements
9.2.1.2
Detailed Design Procedure
9.2.1.2.1
Custom Design With WEBENCH Tools
9.2.1.2.2
Choosing the Switching Frequency
9.2.1.2.3
Setting the Output Voltage
9.2.1.2.4
Inductor Selection
9.2.1.2.5
Output Capacitor Selection
9.2.1.2.6
Input Capacitor Selection
9.2.1.2.7
CBOOT
9.2.1.2.8
VCC
9.2.1.2.9
CFF Selection
9.2.1.2.9.1
External UVLO
9.2.1.2.10
Maximum Ambient Temperature
9.2.2
Application Curves
9.2.3
Design 2: High Density 24-V, 600-mA PFM Converter
9.2.3.1
Design Requirements
9.2.3.2
Application Curves
9.3
What to Do and What Not to Do
10
Power Supply Recommendations
11
Layout
11.1
Layout Guidelines
11.1.1
Ground and Thermal Considerations
11.2
Layout Example
12
Device and Documentation Support
12.1
Device Support
12.1.1
Development Support
12.1.1.1
Custom Design With WEBENCH® Tools
12.2
Documentation Support
12.2.1
Related Documentation
12.3
Receiving Notification of Documentation Updates
12.4
Support Resources
12.5
Trademarks
12.6
Electrostatic Discharge Caution
12.7
Glossary
13
Mechanical, Packaging, and Orderable Information
12.1.1
Development Support
Two-Stage Power Supply Reference Design for Field Transmitters
Wide Vin Power Supply Reference Design for Space-Constrained Industrial Sensors
Automotive ADAS camera power supply reference design optimized for solution size and low noise
How a DC/DC converter package and pinout design can enhance automotive EMI performance
Introduction to Buck Converters Features: UVLO, Enable, Soft Start, Power Good
Introduction to Buck Converters: Understanding Mode Transitions
Introduction to Buck Converters: Minimum On-time and Minimum Off-time Operation
Introduction to Buck Converters: Understanding Quiescent Current Specifications
Trade-offs between thermal performance and small solution size with DC/DC converters
Reduce EMI and shrink solution size with Hot Rod packaging