Market Overview:
The Automotive MCU Market size is estimated to reach $22.9 billion by 2030, growing at a CAGR of 8.2% during the forecast period 2023-2030, according to a recent report published by IndustryARC, titled, “Automotive MCU Market By Bit Size (8-Bit MCUs, 16-Bit MCUs, 32-Bit MCUs and 32-Bit MCUs Fusion Box), By Connectivity (V2V Connectivity, V2I Connectivity and V2C Connectivity), By Technology (Park Assist System, Blind Spot Detection System, ACC and TPMS), By EV (BEV, HEV, PHEV and FCEV), By Vehicle (Passenger Car and Commercial Vehicle), By Application (Powertrain & Chassis, Safety & Security, Body Electronics and Telematics & Infotainment), By Geography - Global Opportunity Analysis & Industry Forecast, 2023-2030”
The growth of the Automotive MCU industry during the forecast period is primarily driven by the rapid advancement in vehicle electrification and the increasing complexity of automotive systems. The shift towards electric vehicles and the demand for advanced driver assistance systems (ADAS) are fueling the need for more sophisticated microcontrollers. According to International Energy Agency (IEA), Almost 14 million new electric cars1 were registered globally in 2023, bringing their total number on the roads to 40 million. Additionally, stringent safety regulations and the push for enhanced in-car connectivity further accelerate the adoption of automotive MCUs.
Asia Pacific Dominated the Market in 2023:
Asia Pacific accounted for the largest share of 37% of the Automotive MCU Market in 2023 followed by North America and Europe. the Asia Pacific region has emerged as a dominant force in the automotive microcontroller (MCU) market, reflecting its critical role in the global automotive sector. This dominance is primarily driven by the region's robust automotive manufacturing ecosystem, characterized by a significant presence of leading automotive OEMs and suppliers. Additionally, Asia Pacific's rapid technological advancements and the growing adoption of electric and connected vehicles further bolster its market position. According to India Brand Equity Foundation, India has planned an objective to elevate the proportion of electric vehicle (EV) sales to 30% in private cars, 70% in commercial vehicles, 40% in buses, and 80% in two-wheelers and three-wheelers by the year 2030. The region's substantial investment in research and development, coupled with favorable government policies supporting automotive innovation, enhances its competitive edge. Consequently, Asia Pacific not only leads in MCU production but also in the integration of advanced automotive technologies, reinforcing its pivotal role in shaping the future of automotive electronics.
Automotive MCU Market: Key Takeaways
Increased Demand for Connectivity Solutions:
The automotive industry is seeing a heightened demand for advanced connectivity solutions, which drives the need for more sophisticated microcontroller units (MCUs). As vehicles increasingly integrate with various digital networks, such as V2X (Vehicle-to-Everything), MCUs must handle complex data exchanges and communication protocols. This evolution is driven by the necessity for seamless integration with external devices and infrastructure, enhancing overall vehicle performance and user experience. Consequently, MCUs need to support higher data throughput and improved processing capabilities to accommodate these advanced connectivity requirements. The growing focus on connectivity is a major factor pushing MCU innovation and development in the automotive sector. In February 2024, HARMAN, a global leader in connected vehicle solutions, announced the launch of the HARMAN Ready Connect 5G Telematics Control Unit (TCU), leveraging state-of-the-art Snapdragon Digital Chassis connected car technologies from Qualcomm Technologies, Inc. to push connectivity boundaries and democratize the automotive connectivity landscape.
Shift Towards Enhanced Security Features:
Automakers are prioritizing cybersecurity due to rising concerns over vehicle data protection and integrity. With the increased connectivity of modern vehicles, the risk of cyber threats has escalated, necessitating MCUs with robust security features. These features include secure boot processes, encryption, and real-time threat detection to protect against potential vulnerabilities. The shift towards incorporating advanced security measures into MCUs is essential to safeguard critical vehicle systems and user data from unauthorized access and cyberattacks. This trend underscores the need for MCUs that not only support advanced functionalities but also provide enhanced protection against evolving security threats.
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Scope of the Report:
Recent Developments:
- In October 2023, ARTERY Technology launched its first automotive-grade microcontroller AT32A403A, marking its successful penetration into the automotive MCU market. This series has been certified according to automotive standard AEC-Q100 Grade 2, and passed qualification tests including accelerated environmental stress test, accelerated lifetime simulation test, package assembly integrity test and electrical verification test.
- In November 2023, Renesas Electronics Corporation, a premier supplier of advanced semiconductor solutions, laid out plans for its next-generation system on chips (SoCs) and microcontrollers (MCUs) targeting all major applications across the automotive digital domain. Renesas provided advance information about its fifth-generation R-Car SoC for high-performance applications with advanced in-package chiplet integration technology, which will provide automotive engineers greater flexibility to customize their designs.
Automotive MCU Market: Competitive Landscape
Key companies profiled in the Automotive MCU Market are Analog Devices, Inc., Infineon Technologies AG, Microchip Technology Inc., NXP Semiconductors, STMicroelectronics, Renesas Electronics Corporation, Rohm Semiconductor, Texas Instruments Incorporated, Toshiba Corporation, Silicon Laboratories and others.
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