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Automotive Powertrain Sensors Market to Be Worth $34.8 Billion by 2031 – Exclusive Report by Meticulous Research®

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REDDING, Calif., July 31, 2024 /PRNewswire/ — According to a new market research report titled, ‘Automotive Powertrain Sensors Market by Type (Temperature, Position, Exhaust, Pressure, Speed, Knock), Powertrain Subsystems (Engine Management, Transmission Management, Power Steering), and Vehicle Type (ICE, HV, EV)—Global Forecast to 2031, the automotive powertrain sensors market is projected to reach $34.8 billion by 2031, at a CAGR of 8.1% from 2024 to 2031. By volume, the automotive powertrain sensors market is projected to reach 7.5 billion units by 2031, at a CAGR of 7.8% during the forecast period.

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Powertrain sensors are highly precise electrical sensors used to monitor engine parameters, such as air mass, pressure, and speed, and send these data to the electronic control units for optimizing vehicle performance. Powertrain sensors play a significant role in the operation mechanism of the engine, transmission, exhaust, and steering. Automotive powertrain sensors are highly effective in monitoring and optimizing various parameters, such as temperature, pressure, position, and speed. A vehicle’s efficiency majorly depends on the accuracy, precision, and response time of powertrain sensors. These sensors can effectively detect the soot, NOx, and oxygen levels in the engine exhaust for compliance with various emission norms and regulations worldwide. The powertrain sensors play an important role in producing vehicles that conform to these stringent emission regulations.

The growth of this market is driven by the increasing requirement for sensors in hybrid powertrains, rising awareness about fuel economy, and increasing demand for mid-sized cars from developing nations. However, the high development cost of automotive sensors and the complexity of sensor integration restrain the growth of this market.

Furthermore, rising awareness about vehicles’ carbon footprint and stringent emission regulations are expected to create market growth opportunities during the forecast period. However, the lack of harmonization in system integration is a major challenge for the players in this market.

Additionally, the increasing deployment of compact engines and the growing adoption of shared mobility are key trends in the automotive powertrain sensors market.

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The automotive powertrain sensors market is segmented by type {exhaust sensors (lambda/oxygen sensors, nitrogen sensors, soot sensors, and ammonia sensors), position sensors (inductive sensors, magnetic sensors, and capacitive sensors), temperature sensors (thermocouples, thermistors, and silicon sensors), fluid concentration sensors, current sensors, voltage sensors, knock sensors, speed sensors, torque sensors, pressure sensors, and other sensors}, powertrain subsystem {engine management sensors, power steering sensors, and transmission management sensors}, vehicle type {internal combustion engine vehicles (passenger vehicles, heavy commercial vehicles, and light commercial vehicles), hybrid vehicles (hybrid electric vehicles and plug-in hybrid electric vehicles), electric vehicles (battery electric vehicles and fuel cell electric vehicles), and other vehicles}, and geography. The study also evaluates industry competitors and analyzes the market at the regional and country levels.

Among all the types studied in this report, in 2024, the exhaust sensors segment is expected to account for the largest share of around 39.0% of the automotive powertrain sensors market. The large market share of this segment is mainly attributed to increasingly stringent government regulations mandating higher fuel efficiency, fewer exhaust emissions, and the use of exhaust gas regeneration technology. These sensors are critical for closely monitoring real-traffic emissions and the impact of after-treatment systems.

Additionally, the exhaust sensors segment is projected to register the highest CAGR during the forecast period.

Among all the powertrain subsystems studied in this report, in 2024, the engine management sensors segment is expected to account for the largest share of around 66.0% of the automotive powertrain sensors market. This segment’s large market share is attributed to stringent emission regulations to reduce gas emissions, the rising requirement for fuel economy, improved combustion cycle, and improved engine control for a better driving experience.

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However, the transmission management sensors segment is projected to register the highest CAGR during the forecast period. The growth of this segment is driven by factors such as the increased adoption of hybrid electric vehicles and plug-in hybrid electric vehicles requiring multiple sensors to measure torque, the position of gears, and power delivery. Moreover, the implementation of technologies, such as continuously variable transmission, multi-gear automatic transmission, dual-clutch transmission, and regenerative braking, have led to powertrain designs that involve higher internal pressures, greater instantaneous forces, increased electronic signatures, and more complex designs and mechanical operation which support the high growth of this segment.

Among all the vehicle types studied in this report, in 2024, the internal combustion engine vehicles segment is expected to account for the largest share of around 77.0% of the automotive powertrain sensors market. This segment’s large market share is attributed to the rising requirement for fuel economy in ICE vehicles, stringent emission norms to reduce greenhouse gas emissions, and dominance of ICE powertrains in developing economies such as India, Southeast Asia, Latin America, and a major part of Middle East & Africa.

However, the electric vehicles segment is projected to register the highest CAGR during the forecast period. This segment’s growth is driven by the rapid adoption of hybrid electric powertrains to optimize combustion engines for low-speed cruising, stringent emission norms in Europe and the U.S., and innovations in battery technology production.

Among the geographies, in 2024, Asia-Pacific is expected to account for the largest share of around 52.0% of the automotive powertrain sensors market, followed by Europe, North America, Latin America, and Middle East & Africa. The large share of this regional market is mainly attributed to the high production level of automobiles in the region driven by huge demand from China, India, and Japan, the upgradation of powertrain systems due to rising consumer awareness regarding the environmental effects of automotive emissions and increasing infrastructural developments in the region. Moreover, due to the presence of some of the fastest-growing economies of the world, such as India, China, Indonesia, and Thailand, the purchasing power of consumers in this region is high, propelling the demand for automobiles from this region. Also, China is expected to lead global automotive production during the forecast period, which is expected to drive a large share of this region during the forecast period.

However, Latin America is slated to register the highest CAGR of 7.5% during the forecast period. The high growth of automotive powertrain sensors in Latin America is majorly attributed to the presence of fast-growing economies, such as Brazil and Argentina, and the growing adoption of torque sensors in electric power steering systems. Moreover, government support for adopting fuel-efficient powertrain sensors is further driving the growth of this market in this region.

Key Players:

The key players operating in the global automotive powertrain sensors market are Texas Instruments (U.S.), Denso Corporation (Japan), Robert Bosch GmbH (Germany), Mitsubishi Electric Corporation (Japan), Infineon Technologies (Germany), NXP Semiconductor (Netherlands), HELLA GmbH & Co. (Germany), Valeo (France), CTS Corporation (U.S.), Renesas Electronics Corporation (Japan), ZF Friedrichshafen AG (Germany), Delphi Technologies (U.K.), PCB Piezotronics Inc. (U.S.)., STMicroelectronics N.V. (Switzerland), and TE Connectivity (Switzerland).

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Scope of the Report:

Automotive Powertrain Sensors Market Assessment—by Type

Exhaust SensorsLambda/Oxygen SensorsNitrogen SensorsSoot SensorsAmmonia SensorsPosition SensorsInductive SensorsMagnetic SensorsCapacitive SensorsTemperature SensorsThermocouplesThermistorsSilicon SensorsFluid Concentration SensorsCurrent SensorsVoltage SensorsKnock SensorsSpeed SensorsTorque SensorsPressure SensorsOther Sensors

Automotive Powertrain Sensors Market Assessment—by Powertrain Subsystem

Engine Management SensorsPower Steering SensorsTransmission Management Sensors

Automotive Powertrain Sensors Market Assessment—by Vehicle Type

Internal Combustion Engine (ICE) VehiclesPassenger VehiclesHeavy Commercial VehiclesLight Commercial VehiclesHybrid VehiclesHybrid Electric VehiclesPlug-in Hybrid Electric VehiclesElectric VehiclesBattery Electric VehiclesFuel Cell Electric VehiclesOther Vehicles

Automotive Powertrain Sensors Market Assessment—by Geography

North AmericaU.SCanadaAsia-PacificChinaJapanIndiaSouth KoreaRest of Asia-PacificEuropeGermanyU.K.FranceItalySpainRest of EuropeLatin AmericaMiddle East & Africa

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About Meticulous Research®

Meticulous Research® was founded in 2010 and incorporated as Meticulous Market Research Pvt. Ltd. in 2013 as a private limited company under the Companies Act, 1956. Since its incorporation, the company has become the leading provider of premium market intelligence in North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa.

The name of our company defines our services, strengths, and values. Since the inception, we have only thrived to research, analyze, and present the critical market data with great attention to details. With the meticulous primary and secondary research techniques, we have built strong capabilities in data collection, interpretation, and analysis of data including qualitative and quantitative research with the finest team of analysts. We design our meticulously analyzed intelligent and value-driven syndicate market research reports, custom studies, quick turnaround research, and consulting solutions to address business challenges of sustainable growth.

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Earth’s pulse monitored: a review highlights remote sensing time series progress

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As urbanization accelerates and environmental dynamics shift, the need for accurate and timely terrestrial monitoring has never been more urgent. A review has introduced a novel approach to remote sensing time series analysis, integrating multi-source data to enable near real-time monitoring. This innovative methodology promises to transform environmental conservation and urban planning by providing unprecedented insights into terrestrial changes and offering a more precise understanding of environmental dynamics.

GUANGZHOU, China, Dec. 22, 2024 /PRNewswire-PRWeb/ — An international team of researchers from South China Normal University, the University of Connecticut, and the Chinese Academy of Sciences has made a significant breakthrough in remote sensing. Their review, published (DOI: 10.34133/remotesensing.0285) in the Journal of Remote Sensing on December 11, 2024, addresses key challenges in remote sensing, such as incomplete data and noise interference. The team’s new time series analysis technique leverages advanced data reconstruction and fusion methods, significantly enhancing the precision and efficiency of remote sensing for monitoring environmental changes.

The research team has developed an advanced time series analysis technique that combines deep learning algorithms with traditional remote sensing methods to integrate data from various remote sensing sources. This innovative approach allows for the extraction of subtle patterns from large, complex datasets, which is crucial for monitoring critical environmental parameters such as land use and vegetation health. Unlike conventional techniques that struggle with incomplete or noisy data, this new methodology offers enhanced accuracy and more reliable insights into terrestrial dynamics, paving the way for more effective environmental monitoring.

Central to the study’s success is the integration of Long Short-Term Memory (LSTM) networks and Generative Adversarial Networks (GANs) to address the challenges posed by missing or noisy data. The LSTM networks capture temporal trends over time, while the GANs generate synthetic data that mimics real-world observations to fill gaps and correct for atmospheric distortions. This dual approach has resulted in a cleaner, more accurate time series dataset, which was validated against independent ground truth measurements. The researchers demonstrated significant improvements in key vegetation indices, such as the Normalized Difference Vegetation Index (NDVI), setting a new benchmark in the field of remote sensing.

Experts in the field have lauded the study’s potential to revolutionize remote sensing applications. They see the method as a transformative tool for enhancing high-resolution monitoring and extending its coverage, particularly in agricultural surveillance, urban planning, and environmental management. “This method represents a crucial advancement in our ability to monitor environmental changes,” says Professor Fu. “As it evolves, it could play a key role in addressing climate change and other global challenges.”

The methodology’s future applications are vast, especially in global environmental monitoring and supporting sustainable development goals. By integrating multi-temporal data from Landsat and Sentinel-2 satellites, the team has created a framework for accurate and continuous terrestrial analysis. As computational power advances and algorithms improve, this technology is expected to become a vital tool for natural resource management, disaster response, and climate change mitigation. In the years to come, it could provide critical data to help policymakers address pressing environmental issues on a global scale.

References

DOI

10.34133/remotesensing.0285

Oiginal Source URL

https://doi.org/10.34133/remotesensing.0285

Funding information

This work was supported by the National Nature Science Foundation of China (grant numbers 42425001 and 42071399).

About Journal of Remote Sensing

The Journal of Remote Sensing, an online-only Open Access journal published in association with AIR-CAS, promotes the theory, science, and technology of remote sensing, as well as interdisciplinary research within earth and information science.

Media Contact

George Hua, Chuanlink Innovations, 1 8656606278, TranSpread1@gmail.com, http://chuanlink-innovations.com/

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ZINZINO AB (PUBL.): ENTERS INTO AGREEMENT TO PROVIDE DIP FINANCING TO ZURVITA INITIATING CHAPTER 11 PROCESS

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GOTHENBURG, Sweden, Dec. 22, 2024 /PRNewswire/ — Zinzino has in a press release dated 20240617 announced that a letter of intent to acquire 100% of the shares in the North American direct selling company Zurvita Inc. “Zurvita or the Company” was signed. Since then, Zinzino has negotiated with the owners of Zurvita Inc. and instead concluded that the purchase of Zurvita’s assets in a Chapter 11 proceeding for the Company is in Zinzino’s best interest.

Zinzino is providing a debtor-in-possession (DIP) financing to Zurvita, which filed for Chapter 11 bankruptcy proceedings on the 20th December 2024. By entering as a financier in Zurvita’s Chapter 11 with loans totaling USD 4.5 million, Zinzino simultaneously makes an offer to acquire the company’s assets via a so-called stalking horse bid. If the bid is accepted, the DIP loan will be converted into part of a debt-settled purchase price, which will be determined after Zurvita has completed the sale process that is subject to higher and better offers in accordance with the applicable terms of Chapter 11. Other bidders have the right to submit bids for Zurvita during the process and if another bid is accepted, Zinzino’s loan will be repaid and certain of its costs associated with the process will be reimbursed. 

Zurvita is a direct selling health company with operations in the United States, Canada and Mexico. The brand portfolio offers a range of innovative health and wellness products. The business has total annual sales of approximately USD 30 million with good gross margins. A potential transaction with Zinzino is expected to add growth through the synergies arising from the joint networks, combined with Zinzino’s test-based product concept. The profitability of the Company will thus be able to develop well by utilizing Zinzino’s existing technical platform and organization.

A visionary mindset, tech first perspective, test-based nutrition at the cellular level and a strong position to capitalize on current trends will form the basis of the new partnership. Following the acquisitions of VMA Life in 2020, Enhanzz in 2022, the strategic partnership with ACN and the recently completed asset acquisition of Xelliss, Zinzino has been looking for further strong investments to maintain its sustainable, profitable growth, strengthen its distribution power, expand into new markets and leverage the product portfolio in new consumer areas.

– “Individualized advice and tailored solutions are the future, and not just in health and wellness,” says Dag Bergheim Pettersen, CEO of Zinzino. “Together, we have years of combined industry experience and everything it takes to drive the modern, personalized shopping experience through direct sales”. Jay Shafer, CEO and co-founder of Zurvita, states “After considering multiple options for the company and under the guidance of our attorneys and third-party advisors, we feel this presents the best opportunity to continue Zurvita’s mission, deliver the highest quality products, and provide continuity for our staff and consultants. We are excited to see what the future holds for Zurvita.” 

For more information:
Dag Bergheim Pettersen CEO Zinzino +47 (0) 932 25 700, www.zinzino.com

Pictures for publication free of charge:
marketing@zinzino.com

Certified Adviser:
Carnegie Investment Bank AB (publ.)

Zinzino AB (publ.) is obliged to publish this information in compliance with current EU regulations governing market abuse. The information was provided by the above contact person for publication at 20.00 on the 21st of December 2024.

This information was brought to you by Cision http://news.cision.com

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Meet With Culture: Exquisite Craftsmanship of Traditional Chinese Architecture

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BEIJING, Dec. 22, 2024 /PRNewswire/ — The Temple of Agriculture in Beijing played a significant role during the Ming (1368-1644) and Qing (1644-1911) dynasties. Over nearly 600 years, 25 emperors personally visited or sent ministers to perform spring farming ceremonies and offer sacrifices to Shennong, the god of agriculture.

 

Built in 1420 during the Yongle reign, the temple’s predecessor was the Temple of Mountains and Rivers in Nanjing. When Emperor Zhu Di moved the Ming capital to Beijing, he constructed a larger temple inspired by the Nanjing temple, which gradually evolved into the Temple of Agriculture.

The Taisui Hall, the largest building complex in the temple, now serves as a major exhibition hall of the Beijing Ancient Architecture Museum, showcasing models of classical Chinese buildings and demonstrating the solemnity of royal architecture.

Ancient Chinese architecture is predominantly wooden-structured, chosen for its availability, versatility, and earthquake resistance. Artisans developed sophisticated techniques in material selection and construction. The wooden framework consists of columns, beams, girders, and purlins, with innovative structural forms like lifting-beam and piercing-bracket structures.

A unique architectural element is the dougong (bracket sets), which supports weight and connects beam frames with column walls. Mortise-tenon joints were invented to create elastic frameworks by connecting different components.

While discussing the Temple of Agriculture, it’s worth noting another remarkable example of architectural hierarchy which could be found in the Temple of Heaven. The hierarchy of architectural designs reflected social stratification, with eave structures like the triple-layered eaves of the Hall of Prayer for Good Harvest representing the highest-level architectural design.

Over centuries, the Temple of Agriculture has transformed from an imperial garden to a public park and a museum for historical architecture, now standing as a significant cultural landmark that symbolizes China’s agricultural civilization and architectural heritage along Beijing’s Central Axis.

Quickly join Alexandre to study and explore the traditional Chinese architecture.
https://youtu.be/YpA03WiZ9Wc

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