Datasheet Texas Instruments XPS63810YFFT
Manufacturer | Texas Instruments |
Series | TPS63810 |
Part Number | XPS63810YFFT |
2.5-A high efficiency buck-boost converter with I²C interface 15-DSBGA -40 to 85
Datasheets
TPS63810 2.5-A Buck-Boost Converter with I2C Interface datasheet
PDF, 1.3 Mb, File published: Jan 12, 2018
Prices
Status
Lifecycle Status | Active (Recommended for new designs) |
Manufacture's Sample Availability | No |
Packaging
Pin | 15 |
Package Type | YFF |
Industry STD Term | DSBGA |
JEDEC Code | R-XBGA-N |
Package QTY | 250 |
Carrier | SMALL T&R |
Thickness (mm) | 0.4 |
Pitch (mm) | 0.4 |
Max Height (mm) | 0.625 |
Mechanical Data | Download |
Parametrics
Approx. price | 1.09 | 1ku US$ |
Duty cycle(Max) | 100 % |
Features | Dynamic Voltage Scaling,Enable,Light Load Efficiency,Load Disconnect,Output Discharge,Power Good,Pre-Bias Start-Up,Synchronous Rectification,UVLO Fixed |
Iout(Max) | 2.5 A |
Iq(Typ) | 0.013 mA |
Operating temperature range | -40 to 85 C |
Package Group | DSBGA|15 |
Rating | Catalog |
Switch current limit(Min) | 5.2 A |
Switch current limit(Typ) | 5.8 A |
Switching frequency(Max) | 3100 kHz |
Switching frequency(Min) | 500 kHz |
Topology | Buck-Boost,Buck/Boost |
Type | Converter |
Vin(Max) | 5.5 V |
Vin(Min) | 1.9 V |
Vout(Max) | 5.2 V |
Vout(Min) | 1.825 V |
Eco Plan
RoHS | See ti.com |
Application Notes
- Improve Efficiency in TWS Earbuds with Buck-Boost ConverterPDF, 86 Kb, File published: Sep 18, 2019
- Selecting a DC/DC Converter for Maximum Battery Life in Pulsed-Load ApplicationsPDF, 155 Kb, File published: Nov 28, 2018
When designing a battery powered system maximizing batterylife is one of the most important design goals. Battery powered systems such as smart meters IoT sensors or ireless medical equipment often require a power converter to obtain fixed supply voltages for time varying loads - Prevent Battery Overdischarge with Precise Threshold Enable PinPDF, 78 Kb, File published: Apr 2, 2019
Using a buck-boost converter is a convenient way to obtain a fixed supply voltage within the wide voltage range of typical batteries used in low-power devices such as smart meters wearables or those in the Internet of Things. - Selecting the right DC/DC converter for maximum battery lifePDF, 72 Kb, File published: Feb 8, 2019
Choosing the best topology for a battery powered application such as IoT sensor smart lock or IP camera might not always be straightforward based on the available and required voltages alone. - Supercapacitor backup power supply with TPS63802PDF, 665 Kb, File published: Jan 21, 2019
- Using Non-Inverting Buck-Boost Converter for Voltage StabilizationPDF, 734 Kb, File published: Aug 1, 2019
- Precise Delayed Start-up with Precise Threshold Enable-pinPDF, 188 Kb, File published: Apr 15, 2019
- Buck-boost Converter Battery Life Time Estimation for Wireless Network Cameras (Rev. A)PDF, 123 Kb, Revision: A, File published: May 28, 2019
- Buck-Boost Converters Solving Power Challenges in Optical ModulesPDF, 45 Kb, File published: May 13, 2019
- Basic Calculations of a 4 Switch Buck-Boost Power Stage (Rev. B)PDF, 400 Kb, Revision: B, File published: Jul 9, 2018
This application note gives the equations to calculate the power stage of a non-inverting buck-boost converter built with an IC with integrated switches and operating in continuous conduction mode. See the references at the end of this document if more detail is needed.
Model Line
Series: TPS63810 (2)
- TPS63810YFFR XPS63810YFFT
Manufacturer's Classification
- Semiconductors > Analog and Mixed-Signal > Power management > DC/DC switching regulators > Buck-boost & inverting > Buck-boost, inverting & split-rail converters (integrated switch)