Automotive Battery Sensor Market Analysis, Size, Current Scenario and Future Prospects

The global automotive battery sensor market is anticipated to grow at a CAGR of 6.5% during the forecast period (2023–2030). The market’s growth is attributed to the growing demand for advancements in battery technology across the globe. Significant improvements in lithium-ion battery technology have resulted in increased energy densities, better performance, and reduced costs. The aforementioned advances have increased the viability and appeal of electric vehicles for consumers in developing nations where cost-effectiveness is essential. According to MDPI, safety is of importance for automotive lithium-ion battery (LIB) applications, particularly for electric vehicle applications utilizing batteries with high energy density and capacity.

For instance, in October 2022, Sensata Technologies launched a new battery management system, the Lithium Balance n3-BMS, for high-voltage applications. The company stated that Lithium Balance n3-BMS is ideal for applications up to 1000 volts/2000 amps, such as electric trucks, heavy commercial vehicles, and buses. Furthermore, In the event of an internal or external flaw in the cell, there are significant safety issues that could result, such as the creation of toxic and flammable gases, fire, and explosion. A warning for passengers must be given at least five minutes before serious occurrences, according to new legislation (GB 38031-2020). Modern battery monitoring is hardly ever able to satisfy this criterion. This study examines in detail the gases created during battery failure before and during a thermal runaway (TR), and it tests and recommends the usage of several gas sensors as early battery event detectors. Several commercially available gas sensors are placed to the test in four battery failure scenarios: intentional electrolysis of voltage-carrying components, electrolyte vapor, first venting of the cell, and the TR. The trials demonstrate that it is possible to detect battery failure utilizing gas sensors; however, this depends significantly on the type of failure. The selected gas sensor can pick up gases from modern LIBs that have been degassed, as well as H2 from unintentional electrolysis, electrolyte vapor, and other gases. These results could have a big impact on battery safety and failure detection.

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Market Coverage

  • The market number available for – 2022-2030
  • Base year- 2022
  • Forecast period- 2023-2030

Segment Covered- 

  • By Vehicle Type
  • ? Fully Electric
  • ? Hybrid
  • By Voltage
  • By Communication Technology Type

Regions Covered-

  • North America
  • Europe
  • Asia-Pacific
  • Rest of the World
  • Competitive Landscape- includes DENSO Corporation, E-Eighteen.com Ltd., Furukawa Electric Co., Ltd., HELLA GmbH & Co. KGaA, Infineon Technologies AG and others.

Automotive Battery Sensor Market Report Segment

By Vehicle Type

  • Fully Electric
  • Heavy Commercial Vehicle
  • Light Commercial Vehicle
  • Passanger car

Hybrid

  • Heavy Commercial Vehicle
  • Light Commercial Vehicle
  • Passanger car

By Voltage

  • 48 V
  • 24 V
  • 12 V

By Communication Technology Type

  • Controller Area Network (CAN)
  • Local Interconnect Network (LIN)

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Automotive Battery Sensor Market Report Segment by Region

North America                                                                                                                                                                            

  • United States
  • Canada

Europe

  • UK
  • Germany
  • Spain
  • France
  • Italy
  • Rest of Europe

Asia-Pacific

  • India
  • China
  • Japan
  • South Korea
  • Rest of APAC

Rest of the World

  • Latin America
  • Middle East and Africa

Company Profiles

  • DENSO Corporation
  • E-Eighteen.com Ltd.
  • Furukawa Electric Co., Ltd.
  • HELLA GmbH & Co. KGaA
  • Infineon Technologies AG
  • inomatic GmbH
  • LEM HOLDING SA
  • Metis Engineering Ltd,
  • Microchip Technology Inc.
  • Mouser Electronics, Inc.
  • NXP B.V.
  • systec Automotive GmbH

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