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TPS63012 Datasheet Preview

TPS63012 Datasheet

Single Inductor Buck-Boost Converter

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TPS63010, TPS63011, TPS63012
SLVS653C – JUNE 2008 – REVISED FEBRUARY 2016
TPS6301x Highly Efficient, Single Inductor Buck-Boost Converter With 2-A Switches
1 Features
1 Up to 96% Efficiency
• 1200-mA Output Current at 3.3 V in Step-Down
Mode (VIN = 3.6 V to 5.5 V)
• Up to 800-mA Output Current at 3.3 V in Boost
Mode (VIN > 2.4 V)
• Automatic Transition Between Step-Down and
Boost Mode
• Device Quiescent Current less than 50 μA
• Input Voltage Range: 2 V to 5.5 V
• Fixed and Adjustable Output Voltage Options from
1.2 V to 5.5 V
• Power Save Mode for Improved Efficiency at Low-
Output Power
• Forced Fixed Frequency Operation and
Synchronization Possible
• Load Disconnect During Shutdown
• Output Overvoltage Protection
• Overtemperature Protection
• Available in Small 20-Pin, 2.126 mm × 1.922 mm,
DSBGA Package
2 Applications
• All Two-Cell and Three-Cell Alkaline, NiCd or
NiMH, or Single-Cell Li
Battery-Powered Products
• Portable Audio Players
• PDAs
• Cellular Phones
• Personal Medical Products
• White LEDs
3 Description
The TPS6301x devices provide a power supply
solution for products powered by either a two-cell or
three-cell alkaline, NiCd or NiMH battery, or a one-
cell Li-Ion or Li-polymer battery. Output currents can
go as high as 1200 mA while using a single-cell Li-
Ion or Li-Polymer Battery, and discharge it down to
2.5 V or lower. The buck-boost converter is based on
a fixed-frequency, pulse-width-modulation (PWM)
controller using synchronous rectification to obtain
maximum efficiency. At low load currents, the
converter enters power save mode to maintain high
efficiency over a wide load current range. The power
save mode can be disabled, forcing the converter to
operate at a fixed switching frequency. The maximum
average current in the switches is limited to a typical
value of 2200 mA. The output voltage is
programmable using an external resistor divider, or is
fixed internally on the chip. The converter can be
disabled to minimize battery drain. During shutdown,
the load is disconnected from the battery. The device
is packaged in a 20-pin DSBGA package measuring
2.126 mm × 1.922 mm (YFF).
Device Information(1)
PART NUMBER
PACKAGE
BODY SIZE (NOM)
TPS6301x
DSBGA (20) 2.126 mm × 1.922 mm
(1) For all available packages, see the orderable addendum at
the end of the data sheet.
Typical Application Circuit
L1
1.5 µH
VIN
1.8 V to
5.5 V
C1
10 µF
L1
VIN
VINA
EN
PS
VSEL
SYNC
L2
VOUT
FB
GND PGND
TPS63011
C2
10 µF
VOUT
3.3 V
Up to
1200 mA
1
An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications,
intellectual property matters and other important disclaimers. PRODUCTION DATA.




etcTI

TPS63012 Datasheet Preview

TPS63012 Datasheet

Single Inductor Buck-Boost Converter

No Preview Available !

TPS63010, TPS63011, TPS63012
SLVS653C – JUNE 2008 – REVISED FEBRUARY 2016
www.ti.com
Table of Contents
1 Features .................................................................. 1
2 Applications ........................................................... 1
3 Description ............................................................. 1
4 Revision History..................................................... 2
5 Device Comparison Table..................................... 3
6 Pin Configuration and Functions ......................... 3
7 Specifications......................................................... 4
7.1 Absolute Maximum Ratings ...................................... 4
7.2 ESD Ratings.............................................................. 4
7.3 Recommended Operating Conditions....................... 4
7.4 Thermal Information .................................................. 4
7.5 Electrical Characteristics........................................... 5
7.6 Dissipation Ratings ................................................... 6
7.7 Typical Characteristics .............................................. 7
8 Detailed Description ............................................ 11
8.1 Overview ................................................................. 11
8.2 Functional Block Diagrams ..................................... 11
8.3 Feature Description................................................. 12
8.4 Device Functional Modes........................................ 13
9 Application and Implementation ........................ 15
9.1 Application Information............................................ 15
9.2 Typical Application ................................................. 15
10 Power Supply Recommendations ..................... 19
11 Layout................................................................... 19
11.1 Layout Guidelines ................................................. 19
11.2 Layout Example .................................................... 19
11.3 Thermal Consideration.......................................... 20
12 Device and Documentation Support ................. 21
12.1 Related Links ........................................................ 21
12.2 Community Resources.......................................... 21
12.3 Trademarks ........................................................... 21
12.4 Electrostatic Discharge Caution ............................ 21
12.5 Glossary ................................................................ 21
13 Mechanical, Packaging, and Orderable
Information ........................................................... 21
13.1 Package Dimensions ............................................ 21
4 Revision History
NOTE: Page numbers for previous revisions may differ from page numbers in the current version.
Changes from Revision B (May 2012) to Revision C
Page
• Added ESD Ratings table, Feature Description section, Device Functional Modes, Application and Implementation
section, Power Supply Recommendations section, Layout section, Device and Documentation Support section, and
Mechanical, Packaging, and Orderable Information section. ................................................................................................. 1
Changes from Revision A (August 2009) to Revision B
Page
• Changed the YFF Package Dimensions table ..................................................................................................................... 21
Changes from Original (June 2008) to Revision A
Page
• Changed Title From: High Efficient... To: Highly Efficient... ................................................................................................... 1
• Added Feature - Output Overvoltage Protection .................................................................................................................... 1
• Added Output overvoltage protection to the CONTROL STAGE ELECTRICAL CHARACTERISTICS................................. 5
• Added Overvoltage Protection section ................................................................................................................................. 13
• Changed Sentence in the PROGRAMMING THE OUTPUT VOLTAGE section - From: As an example, if an output
voltage of 3.3 V is needed, a 1-Mresistor should be chosen for R1. To: As an example, if an output voltage of 3.3
V is needed, a 1-Mresistor should be chosen for R1 if R2 is 180-k.............................................................................. 16
• Added Figure - PCB Layout Suggestion .............................................................................................................................. 19
2 Submit Documentation Feedback
Copyright © 2008–2016, Texas Instruments Incorporated
Product Folder Links: TPS63010 TPS63011 TPS63012


Part Number TPS63012
Description Single Inductor Buck-Boost Converter
Maker etcTI
Total Page 27 Pages
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