Press release
Denso Corporation, Bosch Group Profiled in Automotive Electronics Control Unit Market | Top Players - Continental AG, Delphi Technologies, Hitachi Automotive Systems, ZF Friedrichshafen, Johnson Control, Lear Corporation, Mitsubishi Electric Corporation
The North America automotive ECU market has experienced a high demand due to innovations in the autonomous vehicle technology. Increasing automated and self-driving vehicle testing projects in the U.S. are driving the industry growth. Additionally, favorable government permits for carrying out the test procedures are accelerating the development of automated technologies. Moreover, the Asia Pacific automotive ECU market is expected to grow rapidly due to factors such as developments in the automotive industry and increasing requirements of the population for automobiles in countries including China and India. The economies are witnessing a significant growth in the sales of HEVs, further accelerating the ECU demand.Request a sample of this premium report at: https://www.marketstudyreport.com/request-a-sample/467596/?utm_source=Openpr.com-SP
Automotive Electronics Control Unit (ECU) Market is expected to reach USD 95 billion by 2024. Increasing demand for the integration of advanced features in the vehicles coupled with the growing vehicle production across various economies is driving the automotive ECU market growth. Safety concerns related to the vehicle connectivity parameters account for the use of technically-advanced control units. These components provide vehicles with controlling functionalities capable of managing the engine, transmission, and automated processes, further creating several automotive ECU market growth opportunities. Autonomous vehicles incorporate a high number of ECUs for driver-assisted and engine control systems, providing high efficiency and value. The components offer benefits in connected and automated vehicles including cruise control, traction control, driver security & assistance, and engine stability.
Increasing awareness about environmental protection and the use of electric vehicles across the globe are driving the automotive ECU market. With the increasing need for reducing the global fuel usage and carbon emissions, the demand for electric vehicles is increasing rapidly. EVs and HEVs offer several cost benefits to users including reduced fuel investment and low maintenance of the electric engines. The vehicles are majorly developed with eco-friendly manufacturing technologies and implement sustainable components, further reducing the carbon footprint. For instance, The European Commission set up the Green Car Initiative that will focus on the electromobility development, Green eMotion. The EU initiative is aimed at exchanging and developing the electric vehicles market in several European countries.
Companies operating in the global automotive ECU market include Bosch Group, Denso Corporation, Delphi Technologies, Hyundai MOBIS, Hitachi Automotive Systems, Altera Corporation, Texas Instruments, Lear Corporation, Johnson Control, Panasonic Corporation, Voxx International Corporation, and Calsonic Kansei Corporation. The participants are increasingly adopting low-pricing strategies to cater to the major OEMs and create entry barriers for new players in the automotive ECU market. These companies are developing a competitive cost structure by increasing the product efficiency and minimizing the market complexity.
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The 32 -bit controller segment in the automotive ECU market is expected to witness growth from 2018 to 2024. The controller components are mainly deployed in vehicles parts owing to the associated benefits that include lower power requirements and design simplifications. The conventional control units integrating 8-bit and 16-bit controllers have complex designs as compared to the advanced 32-bit options. Several automotive functions are supported by innovative controllers such as power tool processing, in-vehicle transmission, and modified engine management. Additionally, the trend of ECU miniaturization that lowers hardware costs and simplifies the design is further driving the automotive ECU market.
Commercial vehicles are witnessing a rise in the implementation of control units, which is further driving the automotive ECU market growth. Major control unit functions in commercial vehicles, such as trucks and agricultural vehicles, include transition lighting, higher current, and sensing accuracy for smaller loads. For instance, Infineon Technologies offers its 24 V body ECUs to agricultural vehicles and high load capacity trucks in the automotive ECU market.
Semi-autonomous vehicles are expected to witness a rapid growth over the forecast timeline owing to the driving assistance features. These vehicles that incorporate the ECUs offer advantages such as critical safety functions, little human input, and better fuel efficiency. The growing demand for the vehicles is being witnessed in several regions such as Europe and North America due to the strong presence of global automobile players. The adaptive cruise control feature in the vehicles automatically adjusts the speed of the vehicle to maintain a safe distance from the nearby objects thereby supporting the industry demand.
with sales climbing the ladder ECU manufacturers have upped their innovation efforts to sustain their position in the competitive setting. Recently, at CES 2019, HARMAN International announced a newly enhanced set of sensing technologies that will allow auto-manufacturers to integrate vehicles with advanced driver assistance systems enabling drivers to keep an eye on the bigger picture all the time. The sensing suite will feature technologies like camera monitoring systems, forward facing camera, cabin monitoring system, and LiDAR.
Table of Content:
Chapter 1 Methodology & Scope
1.1 Methodology
1.1.1 Initial data exploration
1.1.2 Statistical model and forecast
1.1.3 Industry insights and validation
1.1.4 Definition and forecast parameters
1.1.4.1 Definitions
1.1.4.2 Methodology and forecast parameters
1.2 Data Sources
1.2.1 Secondary
1.2.2 Primary
Chapter 2 Executive Summary
2.1 Automotive ECU industry 360 degree synopsis, 2013 - 2024
2.1.1 Business trends
2.1.2 Regional trends
2.1.3 Capacity trends
2.1.4 Vehicle type trends
2.1.5 Mode trends
2.1.6 Propulsion type trends
2.1.7 Application trends
Chapter 3 Automotive ECU Industry Insights
3.1 Industry segmentation
3.2 Industry landscape, 2013 - 2024
3.2.1 Global automotive production statistics, by country, 2013 - 2017
3.3 Industry ecosystem analysis
3.3.1 Distribution channel analysis
3.3.2 Vendor matrix
3.4 Technological and innovation landscape
3.4.1 Automated safety systems
3.4.2 Electric and hybrid vehicles
3.4.3 Advanced driver assist features
3.5 Regulatory landscape
3.5.1 International Standards
3.5.1.1 ISO 22901-1
3.5.1.2 ISO 22900
3.5.1.3 ISO 26262
3.5.1.4 IEC 60068
3.5.2 North America
3.5.2.1 OBD-2
3.5.2.2 OSHA 29 CFR 1926.21
3.5.2.3 The Scaffold & Access Industry Association
3.5.3 Europe
3.5.3.1 ASAM MCD-2 MC
3.5.3.2 EOBD standard
3.5.3.3 Emission Controls Standards
3.5.4 Asia Pacific
3.5.4.1 CCC mark
3.5.4.2 Bharat Stage emission standards
3.5.5 Latin America
3.5.5.1 NR Law No. 8723
3.5.6 MEA
3.5.6.1 SAQA 376640
3.5.6.2 GCC Standardization Organization - GSO 42:2015
3.6 Industry impact forces
3.6.1 Growth drivers
3.6.1.1 Increasing demand for safety and comfort features in cars in North America
3.6.1.2 Rising demand for electric vehicles in North America and Europe
3.6.1.3 Increasing integration of advanced features in luxury vehicles in North America and Europe
3.6.1.4 Rising production of autonomous and semi-autonomous vehicles in Europe and Asia Pacific
3.6.1.5 Technological advancements in the electronics industry in Asia Pacific
3.6.1.6 High automotive production coupled with rising safety standards in Asia Pacific
3.6.1.7 Growing awareness of energy efficient cars in Asia Pacific and Latin America
3.6.1.8 Rising installation of infotainment systems in vehicles in Latin America and MEA
3.6.2 Industry pitfalls and challenges
3.6.2.1 Increasing design complexity
3.6.2.2 Rising complexities in operation and control
3.6.2.3 ECU consolidation trend
3.6.2.4 Rising instance of ECU failures
3.6.2.5 High ECU repair cost
3.7 Growth potential analysis
3.8 Porter's analysis
3.9 Price trend analysis, 2013 - 2030
3.10 Competitive landscape, by region, 2017
3.10.1 Investment landscape
3.10.2 Strategy dashboard
3.10.3 Business model
3.11 PESTEL analysis
Chapter 4 Automotive ECU Market, By Capacity
4.1 Key trends by capacity
4.2 16-bit
4.2.1 Market estimates and forecast, by region 2013 - 2024
4.3 32-bit
4.3.1 Market estimates and forecast, by region 2013 - 2024
4.4 64-bit
4.4.1 Market estimates and forecast, by region 2013 - 2024
Chapter 5 Automotive ECU Market, By Vehicle Type
5.1 Key trends by vehicle type
5.2 Passenger vehicles
5.2.1 Market estimates and forecast, by region 2013 - 2024
5.3 Utility vehicles
5.3.1 Market estimates and forecast, by region 2013 – 2024
For more information on this report at: https://www.marketstudyreport.com/reports/automotive-electronics-control-unit-ecu-market/?utm_source=Openpr.com-SP
Related Report:
Europe Automotive Electronics Control Unit Management Market Report 2017
This report studies sales (consumption) of Automotive Electronics Control Unit Management in Europe market, especially in Germany, France, UK, Russia, Italy, Spain and Benelux, focuses on top players in these countries, with sales, price, revenue and market share for each player in these Countries, covering
https://www.marketstudyreport.com/reports/europe-automotive-electronics-control-unit-management-market-report-2017?utm_source=RR-SP
For more information: https://www.marketwatch.com/press-release/Air-Powered-Vehicle-Market-2019-Global-Industry-Size-Share-Top-Manufacturers-Trends-Opportunities-Forecast-to-2025-2019-01-07
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