SLVSB90C
January 2012 – November 2023
TPS40170-Q1
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Pin Configuration and Functions
5
Specifications
5.1
Absolute Maximum Ratings
5.2
ESD Ratings
5.3
Recommended Operating Conditions
5.4
Thermal Information
5.5
Electrical Characteristics
5.6
Typical Characteristics
6
Detailed Description
6.1
Overview
6.2
Functional Block Diagram
6.3
Feature Description
6.3.1
LDO Linear Regulators and Enable
6.3.2
Input Undervoltage Lockout (UVLO)
6.3.3
Equations for Programming the Input UVLO
6.3.4
Overcurrent Protection and Short-Circuit Protection (OCP and SCP)
6.3.5
Oscillator and Voltage Feed-Forward
6.3.5.1
Calculating the Timing Resistance (RRT)
6.3.6
Feed-Forward Oscillator Timing Diagram
6.3.7
Soft-Start and Fault-Logic
6.3.7.1
Soft-Start During Overcurrent Fault
6.3.7.2
Equations for Soft-Start and Restart Time
6.3.8
Overtemperature Fault
6.3.9
Tracking
6.3.10
Adaptive Drivers
6.3.11
Start-Up Into Pre-Biased Output
6.3.12
31
6.3.13
Power Good (PGOOD)
6.3.14
PGND and AGND
6.3.15
Bootstrap Capacitor
6.3.16
Bypass and Filtering
6.4
Device Functional Modes
6.4.1
Frequency Synchronization
7
Application and Implementation
7.1
Application Information
7.2
Typical Application
7.2.1
Design Requirements
7.2.2
Detailed Design Procedure
7.2.2.1
Select A Switching Frequency
7.2.2.2
Inductor Selection (L1)
7.2.2.3
Output Capacitor Selection (C9)
7.2.2.4
Peak Current Rating of Inductor
7.2.2.5
Input Capacitor Selection (C1, C6)
7.2.2.6
MOSFET Switch Selection (Q1, Q2)
7.2.2.7
Timing Resistor (R7)
7.2.2.8
UVLO Programming Resistors (R2, R6)
7.2.2.9
Bootstrap Capacitor (C7)
7.2.2.10
VIN Bypass Capacitor (C18)
7.2.2.11
VBP Bypass Capacitor (C19)
7.2.2.12
SS Timing Capacitor (C15)
7.2.2.13
ILIM Resistor (R19, C17)
7.2.2.14
SCP Multiplier Selection (R5)
7.2.2.15
Feedback Divider (R10, R11)
7.2.2.16
Compensation: (R4, R13, C13, C14, C21)
7.2.3
Application Curves
7.3
Power Supply Recommendations
7.3.1
Bootstrap Resistor
7.3.2
SW-Node Snubber Capacitor
7.3.3
Input Resistor
7.3.4
LDRV Gate Capacitor
7.4
Layout
7.4.1
Layout Guidelines
7.4.2
Layout Example
8
Device and Documentation Support
8.1
Device Support
8.1.1
Third-Party Products Disclaimer
8.2
Documentation Support
8.2.1
Related Documentation
8.3
Receiving Notification of Documentation Updates
8.4
Support Resources
8.5
Trademarks
8.6
Electrostatic Discharge Caution
8.7
Glossary
9
Revision History
10
Mechanical, Packaging, and Orderable Information
1
Features
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Qualified for automotive applications
AEC-Q100 qualified with the following results
Device temperature grade 1: –40°C to 125°C ambient operating temperature range
Device HBM ESD classification level 1C
Device CDM ESD classification level C4B
Wide-input voltage range from 4.5 V to 60 V
600-mV reference voltage with 1% accuracy
Programmable UVLO and hysteresis
Voltage-mode control with voltage feed-forward
Programmable frequency between 100 kHz and 600 kHz
Bidirectional frequency synchronization with primary and secondary option
Low-side FET sensing overcurrent protection and high-side fet sensing short-circuit protection with integrated thermal compensation
Programmable closed-loop soft start
Supports pre-biased outputs
Thermal shutdown at 165°C with hysteresis
Voltage tracking
Power good
ENABLE with 1-µA low-current shutdown
8-V and 3.3-V LDO output
Integrated bootstrap diode
20-pin 4.5-mm × 3.5-mm VQFN (RGY) package