Battery management ICs

Get more out of your battery

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Our battery management solutions, tools and expertise make it easier for you to design more efficient, longer lasting and more reliable battery-powered applications. Our battery management portfolio includes chargers, gauges, monitors and protection ICs that can be used in industrial, automotive and personal electronic applications.

Why choose TI for your battery management solutions?

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Fast, efficient charging

TI battery charger technology combines quick recharge time and intelligent integration of features like USB-C detection, solar charging and Power Path management for cutting-edge battery charging designs 

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Differentiated gauging technology

TI battery gauges accurately measure state of charge and state of health using patented gauging algorithms for a variety of battery chemistries

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Accurate and integrated battery protection

TI battery monitors help achieve higher efficiency and longer runtime with highly-accurate voltage readings, temperature, and current readings of cell voltage, temperature and current with built-in cell balancing and battery protection features

Featured battery management ICs

TI brings intelligence to battery management systems with industry's highest-cell-count EIS-enabled battery monitor

Delivering safety and performance with EIS technology

Designed to help engineers create safer, higher-performing automotive and industrial applications, the BQ79826Z-Q1 is the latest addition to TI's portfolio of BMS devices.

arrow-right Enabling the next phase of battery intelligence arrow-right Next-Generation Battery Monitoring With Electrochemical Impedance Spectroscopy

Technical resources


Video

As humanoid robots advance toward real-world deployment, efficient and safe energy management is a necessity. These systems demand battery solutions that balance high power density, long runtime, fast charging, and advanced safety mechanisms. Watch Giovanni Campanella, general manager of industrial automation and robotics, discuss how battery monitors and charging systems enable reliability, safety, and performance in humanoid robots. This keynote was presented at the 2025 BMS seminar.


Functional safety information
Functional Safety Considerations in Battery Management for Vehicles
Read about battery monitor considerations to help you meet the ISO 26262 functional safety standard in electric vehicles.
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White paper
Wired vs. Wireless Communications In EV Battery Management (Rev. A)
Learn about design considerations for wired and wireless battery management systems in electric vehicles.
PDF | HTML

White paper
Combining Buck-Boost Battery Chargers and USB Type-C Power Delivery for Maximum (Rev. A)
Get an understanding of the benefits of combining USB Type-C® Power Delivery and buck-boost charging to achieve maximum power density for portable electronic designs.
PDF | HTML

Find resources to get started


Application
Create a safe, efficient, long-lasting battery system in medical applications
Gauges offer programmable hardware and firmware-based protections with high system-on-a-chip accuracyChargers support multicell configurations and parallel battery packs, providing quick backupProtectors provide features for one-cell-in-series battery systems through voltage, current, temperature

Application
Increase functional-safety and run time in HEV and EV applications
Monitors provide ±1mV accuracy and synchronized readings of cell voltages and pack current.
Gauges offer simple setup configuration and support multiple cell chemistries for easy integration into an e-call system.

Application
Enable a long-lasting and quick-charging battery system in garden and power tool applications
Gauges have precise gauging algorithms to ensure the battery's exact state of charge.Chargers support the entire USB Type-C® Power Delivery spectrum.
Monitors offer high-accuracy voltage measurements. 
Protectors provide secondary redundant protection when leveraged with our monitors.

Application
Quickly charge devices and prolong use with our battery management technology
Gauges provide ±1mV gauging accuracy, while cell balancing maximizes battery life spansChargers provide current up to 8A with high efficiency using an inductorless switch capacitorProtectors boast a reduced feature size and power dissipation of approx 4μA, suitable for small-form-factor products

Application
Create high-accuracy, protected battery systems in ESS applications
Monitors offer reliable solutions for small residential energy storage systems and high-accuracy (±5mV) for high-voltage systemsGauges provide high state-of-health accuracy for vital system reportingChargers support up to 20A charge current to quickly recharge backup batteries and up to 70V output


Application
Generate fast-charging, reliable and accurate battery systems in e-mobility applications
Gauges offer built-in authentication, preventing unofficial battery packs (–40°C to 150°C op temp)Chargers offer USB Type-C® for up to 240W, support for batteries with 10 to 16 cells, and bidirectional powerMonitors and protectors for batteries with 3 to 16 cells in series for redundant protections

Design & development resources

Whether you are working on a simple design or building a complex system, you should have confidence in your designs. Our extensive and easy-to-use hardware and software tools, and 24/7 year-round access to industry experts will empower you to drive innovation forward.

Battery Management Studio (bqStudio) offers a full suite of robust tools to assist with the process of evaluating, designing with, configuring, testing, or otherwise utilizing TI Battery management products. This includes features that provide full access to registers and data memory including support for real-time watching, graphing, and logging, an easy interface to send commands, direct low-level communication and I/O, as well as automated and guided support for configuration, calibration, performing a learning cycle, and generating useful files for taking the device to production.

Introduction to Battery Management Studio (bqStudio)

Gauging Parameter Calculator (GPC) is a math calculation and simulation tool that helps the battery designer to obtain matching Compensated End of Discharge Voltage (CEDV) coefficients for the specific battery profile. The tool allows the user to increase the accuracy of the fuel gauge IC over temperature.

Math calculation and simulation tool that helps the battery designer to obtain matching CEDV coefficients for the specific chemistry in the battery pack using one of TI’s CEDV algorithm based fuel gauge. It accepts 3 pairs of log files that can be created by using TI’s bq Smart Battery Builder software with a CEDV Evaluation board connected through USB.