TPS65131

ACTIVE

Split-Rail Converter with Dual, Positive and Negative Outputs (750mA typ)

Product details

Display type LCD bipolar IC integration LCD bias Vin (min) (V) 2.7 Vin (max) (V) 5.5 Applications 7 inches or less, 7 to 13 inches Source driver voltage (min) (V) -15 Source driver voltage (max) (V) 15 Level shifter/scan driver (Ch) 0 V_POS (min) (V) 3.2 V_POS (max) (V) 15 V_NEG (min) (V) -15 V_NEG (max) (V) -2 Features Adjustable sequencing Topology Split-Rail Rating Catalog Operating temperature range (°C) -40 to 85
Display type LCD bipolar IC integration LCD bias Vin (min) (V) 2.7 Vin (max) (V) 5.5 Applications 7 inches or less, 7 to 13 inches Source driver voltage (min) (V) -15 Source driver voltage (max) (V) 15 Level shifter/scan driver (Ch) 0 V_POS (min) (V) 3.2 V_POS (max) (V) 15 V_NEG (min) (V) -15 V_NEG (max) (V) -2 Features Adjustable sequencing Topology Split-Rail Rating Catalog Operating temperature range (°C) -40 to 85
VQFN (RGE) 24 16 mm² 4 x 4
  • Input voltage range: 2.7-V to 5.5-V
  • VPOS positive boost converter output
    • Adjustable output: up to 15 V
    • Two switch current limit options: 0.8 A and 2 A
    • Conversion efficiency: up to 89%
  • VNEG negative inverting buck-boost converter output
    • Adjustable output: down to –15 V
    • Two switch current limit options: 0.8 A and 2 A
    • Conversion efficiency: up to 81%
  • Control output for external P-channel FET supports complete disconnection from battery
  • 1-µA shutdown current
  • Individual enable inputs for flexible output sequencing
  • Protection features
    • Overvoltage protection at VPOS and VNEG
    • Input undervoltage lockout
    • Thermal shutdown protection
  • 4-mm × 4-mm VQFN-24 package (RGE)
  • Input voltage range: 2.7-V to 5.5-V
  • VPOS positive boost converter output
    • Adjustable output: up to 15 V
    • Two switch current limit options: 0.8 A and 2 A
    • Conversion efficiency: up to 89%
  • VNEG negative inverting buck-boost converter output
    • Adjustable output: down to –15 V
    • Two switch current limit options: 0.8 A and 2 A
    • Conversion efficiency: up to 81%
  • Control output for external P-channel FET supports complete disconnection from battery
  • 1-µA shutdown current
  • Individual enable inputs for flexible output sequencing
  • Protection features
    • Overvoltage protection at VPOS and VNEG
    • Input undervoltage lockout
    • Thermal shutdown protection
  • 4-mm × 4-mm VQFN-24 package (RGE)

The TPS6513x device is a dual-output DC-DC converter supply that generates a positive output up to 15 V and a negative output down to –15 V. The converter maintains low output voltage ripple. Typically, the maximum output currents are in the 200-mA to 500-mA range, depending on input voltage to output voltage ratio and the current limit option. The combined (VPOS and VNEG) efficiency reaches 85% to keep systems cool or achieve a longer battery-on-time. The input voltage range of 2.7 V to 5.5 V allows the devices to be powered from batteries or from fixed 3.3-V or 5-V rails.

The converter operates with a fixed frequency PWM control topology and, when operating in power-save mode, uses a pulse-skipping mode at light-load currents. It operates with only 500-µA device quiescent current.

Independent enable pins allow flexible power-up and power-down sequencing for both outputs. The positive and negative outputs operate independently, allowing for non-symmetrical output voltages and currents.

The converter has an internal current limit, overvoltage protection, and a thermal shutdown for highest reliability under fault conditions. The converter is available in a 4-mm × 4-mm VQFN-24 package. The solution size is small with a minimum switching frequency of 1.25 MHz for smaller inductors and few other external components required.

The TPS6513x device is a dual-output DC-DC converter supply that generates a positive output up to 15 V and a negative output down to –15 V. The converter maintains low output voltage ripple. Typically, the maximum output currents are in the 200-mA to 500-mA range, depending on input voltage to output voltage ratio and the current limit option. The combined (VPOS and VNEG) efficiency reaches 85% to keep systems cool or achieve a longer battery-on-time. The input voltage range of 2.7 V to 5.5 V allows the devices to be powered from batteries or from fixed 3.3-V or 5-V rails.

The converter operates with a fixed frequency PWM control topology and, when operating in power-save mode, uses a pulse-skipping mode at light-load currents. It operates with only 500-µA device quiescent current.

Independent enable pins allow flexible power-up and power-down sequencing for both outputs. The positive and negative outputs operate independently, allowing for non-symmetrical output voltages and currents.

The converter has an internal current limit, overvoltage protection, and a thermal shutdown for highest reliability under fault conditions. The converter is available in a 4-mm × 4-mm VQFN-24 package. The solution size is small with a minimum switching frequency of 1.25 MHz for smaller inductors and few other external components required.

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Technical documentation

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Type Title Date
* Data sheet TPS6513x Dual, Positive and Negative Output DC-DC Converter datasheet (Rev. E) PDF | HTML 26 Apr 2022
Application note 스트컨버터의 전력계 기본 계산 (Rev. D) PDF | HTML 21 Nov 2022
Application note Basic Calculation of a Boost Converter's Power Stage (Rev. D) PDF | HTML 28 Oct 2022
Technical article Improving sensor DAQ performance using the PRU-ICSS for grid protection and contro PDF | HTML 09 Oct 2018
Application note Understanding Undervoltage Lockout in Power Devices (Rev. A) 19 Sep 2018
Technical article Interfacing multiple ADCs to a single processor for grid protection and control PDF | HTML 13 Sep 2018
Selection guide Power Management Guide 2018 (Rev. R) 25 Jun 2018
EVM User's guide TPS65131EVM-839 User's Guide 22 Dec 2017
Application note Basic calculation of an inverting buck-boost power stage (Rev. A) 28 Aug 2017
EVM User's guide TPS65131EVM User's Guide (Rev. C) 23 Nov 2010
Application note Minimizing Ringing at the Switch Node of a Boost Converter 15 Sep 2006

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

TPS65131EVM-839 — Evaluation Module for TPS65131 - Positive and Negative Output DC-DC Converter

The TPS65131EVM-839 is an evaluation tool for the TPS65131 Positive and Negative Output DC-DC Converter for general-purpose split-rail supplies, industrial applications and LCD or OLED displays. The evaluation module can accept input voltages in range of 2.7 V to 5.5 V and delivers by default 8 V (...)
User guide: PDF
Not available on TI.com
Simulation tool

PSPICE-FOR-TI — PSpice® for TI design and simulation tool

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
Reference designs

TIDA-010065 — High-efficiency, low-emission, isolated DC/DC converter-based analog input module reference design

This reference design is a simplified architecture for generating an isolated power supply for isolated amplifiers for measuring isolated voltages and currents. A fully integrated DC/DC converter with reinforced isolation operating from a 5-V input with configurable 5-V or 5.4-V output (headroom (...)
Design guide: PDF
Schematic: PDF
Reference designs

PMP9780 — Reference Design: Bipolar TFT LCD Supply Using TPS65131-Q1 and Charge Pumps

This reference design details a display power circuit which generates a bipolar voltage rail for source drivers and additional supplies for gate drivers. Charge pumps are used to generate the voltage supply for gate drivers, which makes this design easy to implement. By using only one dc-dc (...)
Test report: PDF
Schematic: PDF
Reference designs

TIDA-01555 — Flexible Interface (PRU-ICSS) Reference Design for Simultaneous, Coherent DAQ Using Multiple ADCs

This reference design showcases an interface implementation for connecting multiple high voltage bipolar input, 8-channel, mux-input SAR ADCs (6) with the Sitara Arm processors for expanding the number of input channels using Programmable Real-time Unit (PRU-ICSS). ADCs are configured for (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-00834 — High Accuracy Analog Front End Using 16-Bit SAR ADC with ±10V Measurement Range Reference Design

The TIDA-00834 reference design accurately measures voltage and current inputs using simultaneously sampled, 16-bit, ±10 V, bipolar input SAR ADC critical to identify power systems malfunction and power quality related failures accurately and quickly. This results in reduced power systems (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-01576 — High accuracy analog input module reference design with 16-bit 1-MSPS dual simultaneous-sampling ADC

This reference design accurately measures 16-channel AC voltage and current inputs using a precision 16-bit SAR ADC over a wide input range. This range covers protection and measurement requirements (including sampling requirements as per IEC 61850-9-2), which simplifies system design and improves (...)
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Reference designs

TIDA-010008 — Flat-Clamp TVS based Reference Design for Protection Against Transient for Grid Applications

This reference design features multiple approaches for  protecting AC or DC analog input, DC analog output, AC or DC binary input, digital output with a high side or low side driver, LCD bias supply, USB interfaces (power and data) and onboard power supplies with 24, 12 or 5V input used in (...)
Design guide: PDF
Schematic: PDF
Reference designs

TIDA-00493 — Voltage & Current (Power) Measurement AFE for mV Output Sensor Interface to SAR ADC Reference Design

This reference design is a fixed-gain amplifier stage for measuring low-amplitude voltage and current inputs accurately over a wide dynamic range using SAR ADC for power measurement applications. Low-amplitude AC voltage from voltage dividers, current transformers or split-core current sensors with (...)
Design guide: PDF
Schematic: PDF
Package Pins Download
VQFN (RGE) 24 View options

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