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Global Li-battery Thermal Runaway Sensor Market Growth 2026-2032

Published Jan 07, 2026
Length 130 Pages
SKU # LPI20697183

Description

The global Li-battery Thermal Runaway Sensor market size is predicted to grow from US$ 793 million in 2025 to US$ 2536 million in 2032; it is expected to grow at a CAGR of 18.2% from 2026 to 2032.

In 2024, the global production of Li-battery Thermal Runaway Sensors reached 17.3534 million units, with an average selling price of US$46.72 per unit and a gross margin of approximately 30%–55%. A Li-battery Thermal Runaway Sensor is a sensor used to monitor changes in temperature, gas, or pressure in lithium-ion batteries or battery systems in real time, designed to detect potential thermal runaway phenomena that may occur during charging and discharging. Thermal runaway refers to a chemical reaction in the battery caused by factors such as overcharging, short circuits, or high temperatures, which can lead to a rapid increase in battery temperature and potentially cause a fire or explosion. These sensors are typically used in Battery Management Systems (BMS) to provide early warnings and prevent battery safety accidents.

Market Opportunities and Key Drivers: With the rapid global adoption of electric vehicles (EVs), energy storage systems (ESS), and consumer electronics, unprecedented demands are being placed on the safety of lithium-ion batteries. Particularly in the new energy vehicle industry, thermal runaway events not only cause significant economic losses but also threaten user safety, driving vehicle and energy storage system manufacturers to accelerate the adoption of advanced safety monitoring solutions. Multi-sensor systems, by simultaneously monitoring multiple key indicators such as temperature, pressure, and gas release, can provide earlier and more accurate warnings of thermal runaway, effectively improving the overall safety of battery systems. Furthermore, the gradual improvement of regulations and standards, as well as changes in the risk pricing mechanisms for safety events by insurance institutions, are further driving market demand for highly integrated safety sensing technologies.

Market Challenges and Risks: Despite the broad market prospects, the challenges facing these sensors cannot be ignored. First, the integration of sensing technologies and the accuracy of algorithms determine system reliability, while the complexity of different battery chemistry systems places higher demands on sensor model design. Second, since multi-sensor integration increases system costs, finding an optimal balance between cost and performance is crucial for companies to promote and apply these technologies. Furthermore, different application scenarios (such as electric vehicles, energy storage power stations, and consumer electronics) have varying requirements for sensor response speed, stability, and environmental adaptability. This necessitates suppliers developing diverse product strategies and undergoing rigorous industry certification processes.

Downstream Demand Trends: Downstream market demand trends exhibit a "dual-drive" characteristic of safety and intelligence. Integrated safety monitoring solutions for automobiles have become an industry standard, especially in high-energy battery packs, where multi-parameter safety sensors are considered essential protective components. In the energy storage system sector, the demand for long-term stable operation and full lifecycle safety monitoring is also driving the growth of advanced sensing technologies. In addition, the demand for lightweight, high-response-rate sensors in consumer electronics and portable devices is continuously increasing. With the application of artificial intelligence and edge computing technologies, thermal runaway sensors will be deeply integrated with battery management systems (BMS) in the future, gradually evolving into intelligent early warning and automatic protection systems, with market size and technological maturity increasing simultaneously.

LP Information, Inc. (LPI) ' newest research report, the “Li-battery Thermal Runaway Sensor Industry Forecast” looks at past sales and reviews total world Li-battery Thermal Runaway Sensor sales in 2025, providing a comprehensive analysis by region and market sector of projected Li-battery Thermal Runaway Sensor sales for 2026 through 2032. With Li-battery Thermal Runaway Sensor sales broken down by region, market sector and sub-sector, this report provides a detailed analysis in US$ millions of the world Li-battery Thermal Runaway Sensor industry.

This Insight Report provides a comprehensive analysis of the global Li-battery Thermal Runaway Sensor landscape and highlights key trends related to product segmentation, company formation, revenue, and market share, latest development, and M&A activity. This report also analyzes the strategies of leading global companies with a focus on Li-battery Thermal Runaway Sensor portfolios and capabilities, market entry strategies, market positions, and geographic footprints, to better understand these firms’ unique position in an accelerating global Li-battery Thermal Runaway Sensor market.

This Insight Report evaluates the key market trends, drivers, and affecting factors shaping the global outlook for Li-battery Thermal Runaway Sensor and breaks down the forecast by Type, by Application, geography, and market size to highlight emerging pockets of opportunity. With a transparent methodology based on hundreds of bottom-up qualitative and quantitative market inputs, this study forecast offers a highly nuanced view of the current state and future trajectory in the global Li-battery Thermal Runaway Sensor.

This report presents a comprehensive overview, market shares, and growth opportunities of Li-battery Thermal Runaway Sensor market by product type, application, key manufacturers and key regions and countries.

Segmentation by Type:
Temperature Monitoring
Pressure Monitoring
Gas Concentration Monitoring
Multi‑Parameter Integrated
Others

Segmentation by Technology:
Thermal Resistance Sensing
MEMS Sensing
Gas Sensing
Pressure Sensing
Hybrid Sensing

Segmentation by Sales:
Direct Selling
Distribution

Segmentation by Application:
Electric Vehicles
Energy Storage Systems
Robotics & Low-Altitude Flight
Consumer Electronics
Others

This report also splits the market by region:
Americas
United States
Canada
Mexico
Brazil
APAC
China
Japan
Korea
Southeast Asia
India
Australia
Europe
Germany
France
UK
Italy
Russia
Middle East & Africa
Egypt
South Africa
Israel
Turkey
GCC Countries

The below companies that are profiled have been selected based on inputs gathered from primary experts and analysing the company's coverage, product portfolio, its market penetration.
Amphenol Advanced Sensors
Honeywell International Inc.
Metis Engineering Ltd.
Analog Devices
Sensata Technologies
Infineon Technologies
Valeo
ScioSense
Fosensor
Ruikong
Jthmems
Fosen Sensor
Wuhan CloudScout Science&Technology Co.,LTD
Hanwei Electronics Group Corporation
Cubic Sensor
DrKsir

Key Questions Addressed in this Report

What is the 10-year outlook for the global Li-battery Thermal Runaway Sensor market?

What factors are driving Li-battery Thermal Runaway Sensor market growth, globally and by region?

Which technologies are poised for the fastest growth by market and region?

How do Li-battery Thermal Runaway Sensor market opportunities vary by end market size?

How does Li-battery Thermal Runaway Sensor break out by Type, by Application?

Please note: The report will take approximately 2 business days to prepare and deliver.

Table of Contents

130 Pages
*This is a tentative TOC and the final deliverable is subject to change.*
1 Scope of the Report
2 Executive Summary
3 Global by Company
4 World Historic Review for Li-battery Thermal Runaway Sensor by Geographic Region
5 Americas
6 APAC
7 Europe
8 Middle East & Africa
9 Market Drivers, Challenges and Trends
10 Manufacturing Cost Structure Analysis
11 Marketing, Distributors and Customer
12 World Forecast Review for Li-battery Thermal Runaway Sensor by Geographic Region
13 Key Players Analysis
14 Research Findings and Conclusion
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