Datasheet TPS54332 (Texas Instruments) - 8

ManufacturerTexas Instruments
Description3.5-A, 28-V, 1-MHz, Step-Down DC-DC Converter With Eco-Mode
Pages / Page34 / 8 — TPS54332. www.ti.com. Typical Characteristics: Characterization Curves …
RevisionC
File Format / SizePDF / 1.5 Mb
Document LanguageEnglish

TPS54332. www.ti.com. Typical Characteristics: Characterization Curves (continued). -SSChargeCurrent-. CurrentLimitThreshold-

TPS54332 www.ti.com Typical Characteristics: Characterization Curves (continued) -SSChargeCurrent- CurrentLimitThreshold-

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TPS54332
SLVS875C – JANUARY 2009 – REVISED NOVEMBER 2014
www.ti.com Typical Characteristics: Characterization Curves (continued)
2.1 7 T = 25°C VIN = 12 V J 6.5 T = 150°C J
A
2.05
A
6 m 5.5 T = -40°C J 2 5 4.5
-SSChargeCurrent-
1.95 4
CurrentLimitThreshold- I SS
3.5 1.9 3 -50 -25 0 25 50 75 100 125 150 3 8 13 18 23 28
T - Junction Temperature - °C V - Input Voltage - V J I Figure 7. SS Charge Current vs Junction Temperature Figure 8. Current Limit Threshold vs Input Voltage 6.8 Typical Characteristics: Supplemental Application Curves
3.75 30 3.25 25 2.75 20 I = 3.5 A O I = 3.5 A
oltage-V
O
oltage-V
2.25 15
-OutputV
1.75
-OutputV
10
O O V V
1.25 5 0.75 0 3 8 13 18 23 28 3 8 13 18 23 28
V - Input Voltage - V V - Input Voltage - V I I Figure 9. Typical Minimum Output Voltage vs Input Voltage Figure 10. Typical Maximum Output Voltage vs Input Voltage
8 Submit Documentation Feedback Copyright © 2009–2014, Texas Instruments Incorporated Product Folder Links: TPS54332 Document Outline 1 Features 2 Applications 3 Description Table of Contents 4 Revision History 5 Pin Configuration and Functions 6 Specifications 6.1 Absolute Maximum Ratings 6.2 Handling Ratings 6.3 Recommended Operating Conditions 6.4 Thermal Information 6.5 Electrical Characteristics 6.6 Switching Characteristics 6.7 Typical Characteristics: Characterization Curves 6.8 Typical Characteristics: Supplemental Application Curves 7 Detailed Description 7.1 Overview 7.2 Functional Block Diagram 7.3 Feature Description 7.3.1 Fixed Frequency PWM Control 7.3.2 Voltage Reference (Vref) 7.3.3 Bootstrap Voltage (BOOT) 7.3.4 Enable and Adjustable Input Undervoltage Lockout (VIN UVLO) 7.3.5 Programmable Slow-Start Using SS Pin 7.3.6 Error Amplifier 7.3.7 Slope Compensation 7.3.8 Current Mode Compensation Design 7.3.9 Overcurrent Protection and Frequency Shift 7.3.10 Overvoltage Transient Protection 7.3.11 Thermal Shutdown 7.4 Device Functional Modes 7.4.1 Operation With VIN < 3.5 V 7.4.2 Operation With EN Control 7.4.3 Eco-Mode 8 Application and Implementation 8.1 Application Information 8.2 Typical Application 8.2.1 Design Requirements 8.2.2 Detailed Design Procedure 8.2.2.1 Switching Frequency 8.2.2.2 Output Voltage Set Point 8.2.2.3 Input Capacitors 8.2.2.4 Output Filter Components 8.2.2.5 Inductor Selection 8.2.2.6 Capacitor Selection 8.2.2.7 Compensation Components 8.2.2.8 Bootstrap Capacitor 8.2.2.9 Catch Diode 8.2.2.10 Output Voltage Limitations 8.2.2.11 Power Dissipation Estimate 8.2.3 Application Curves 9 Power Supply Recommendations 10 Layout 10.1 Layout Guidelines 10.2 Layout Example 10.3 Estimated Circuit Area 10.4 Electromagnetic Interference (EMI) Considerations 11 Device and Documentation Support 11.1 Device Support 11.1.1 Development Support 11.2 Trademarks 11.3 Electrostatic Discharge Caution 11.4 Glossary 12 Mechanical, Packaging, and Orderable Information