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MEMS 汽车感测器:市场占有率分析、行业趋势和统计、成长预测(2025-2030 年)

MEMS Automobile Sensors - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2025 - 2030)

出版日期: | 出版商: Mordor Intelligence | 英文 120 Pages | 商品交期: 2-3个工作天内

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简介目录

预计预测期内 MEMS 汽车感测器市场复合年增长率将达到 14.61%。

MEMS 汽车感知器-市场-IMG1

主要亮点

  • MEMS感测器已成为汽车必不可少的零件。自从第一个版本作为加速计在汽车上使用以来,这种感测器技术已经取得了长足的发展,现在已成为汽车应用最突出的技术驱动力。在大多数先进的车辆中,这些灵敏的感测器不断向汽车系统提供准确的资料,所连接的电子控制单元据此即时触发必要的动作。
  • 对车辆安全和保障的需求不断增加是推动市场成长的主要因素之一。根据世界卫生组织 (WHO) 统计,每年有超过 150 万人死于道路交通事故,约 5,000 万人受伤。由于 MEMS 感测器在提高汽车安全性方面发挥关键作用,这些趋势将成为市场成长的催化剂。
  • 此外,电气化和自动化是汽车产业的两个重要趋势。电动车(EV)在工业领域的出现极大地影响了压力和磁感测器的需求和分布。预计长期需求将进一步增加。电动车销量的增加正在增加对感测器的需求。此外,汽车系统中各种定位和高价值感测模组(如雷达、光达和影像处理)的整合度不断提高,预计将在预测期内创造重大机会。
  • 此外,严格的政府法规要求汽车製造商在主要汽车市场的新车中配备轮胎压力监测系统 (TPMS) 和电子稳定控制 (ESC) 等安全系统,这使得 MEMS 成为安全系统使用案例背后的驱动力。感测器应用而兴起。此外,各製造商正在进行多项产品创新,以抓住市场机会。例如,在 2021 年 CES 上,TDK 推出了汽车级 6 轴 ASIL-B MEMS IMU Smart Automotive IAM-20685。
  • MEMS 设备的范围从相对简单的结构到具有由整合微电子控制的多个行动元件的极其复杂的结构。因此,该行业在复杂的製造过程中面临各种挑战。此外,这些感测器通常会受到高温漂移的影响,这是一个进一步阻碍市场成长的挑战。
  • 此外,新冠疫情导致汽车需求放缓,影响了汽车零件供应链。从短期和中期来看,由于汽车製造商重新分配研发预算以满足短期资本需求,疫情减缓了自动驾驶等尖端技术的发展。然而,预计预测期内,汽车产业的改善条件和成长动能将提供充足的成长机会。

MEMS 汽车感测器市场趋势

安全气囊展开感知器成长迅速

  • MEMS 感测器在提高汽车安全性能方面发挥关键作用。随着自动驾驶的进步,安全气囊部署等安全应用对 MEMS 感测器的需求预计将翻倍。为了降低事故率,世界各国政府都在製定严格的法规,迫使汽车供应商在安全气囊展开系统中采用最新的基于 MEMS 的感测器。
  • 安全气囊控制的碰撞感应是惯性 MEMS 感测器最大的汽车应用领域之一。在此应用中,加速计持续测量车辆的加速度。当预设参数超过阈值时,安全气囊就会展开。因此,安全气囊系统变得更加可靠和便宜,使得其几乎普遍应用于汽车上。
  • 考虑到道路交通事故发生率的不断上升,世界各国政府都制定了严格的法规来鼓励使用安全气囊。在印度,一项要求车辆至少配备两个安全气囊的规定已经生效。政府提案汽车製造商在所有车型中标配六个安全气囊,无论车身类型和型号如何。这些趋势预计将为市场提供进一步的成长机会。
  • 近年来,豪华车的销售量大幅成长,尤其是在新兴国家。由于这些汽车通常配备更多的安全气囊,预计销量的成长将对市场成长产生积极影响。例如,领先的豪华汽车品牌宝马最近在全球销售了252万辆汽车。此外,对电动和混合动力汽车汽车的不断增长的需求也有望对市场成长产生积极影响,因为这些汽车通常具有高水准的安全性和舒适性。

亚太地区成长速度最快

  • 由于中国、印度和日本等经济体汽车产业的快速成长,亚太地区预计将见证 MEMS 汽车感测器市场的最高成长率。例如,根据国际汽车製造商协会的数据,中国去年是世界最大汽车製造国,生产了约 2,600 万辆汽车。以汽车年产量来看,紧接在中国之后的是美国、日本和印度。
  • 中国自动驾驶和ADAS标准化进程正在加速推进。例如,去年中国政府发布了三项新的国家安全标准:《电动车安全要求》、《电动车牵引电池安全要求》和《电动公车安全要求》。这些强制性标准规定了电池组和车辆的安全要求,包括实施早期电池故障检测机制。
  • 亚太地区其他国家也正在呈现类似的趋势。提案,今年 6 月,印度公路运输和公路部 (MoRTH) 出台了一套针对乘用车的规定,鼓励汽车製造商提供先进的安全功能,提高该国生产的汽车的「出口价值」。引进名为「印度新车评估计画(BNCAP)」的安全评估系统。
  • 此外,日本和韩国等国家也迅速发展自动驾驶汽车。例如,韩国政府计划推行完全自动驾驶,并希望在2035年,该国生产的汽车中有一半能够实现完全自动驾驶。这些车辆需要极少的人工干预,因此感测器在其成功运作中发挥关键作用。因此,自动驾驶汽车产业的成长预计将进一步增加对 MEMS 感测器的需求。

MEMS 汽车感测器产业概况

MEMS 汽车感测器市场比较分散,由许多全球和区域参与者组成,例如意法半导体公司、松下公司、罗伯特博世有限公司、ADI 公司和英飞凌科技股份公司。这些参与者正致力于扩大全球基本客群。这些公司正专注于研发投资,推出新的解决方案、策略联盟以及其他有机和无机成长策略,以在预测期内获得竞争优势。

2022年10月,NVIDIA与中国领先的汽车级MEMS LiDAR解决方案供应商Zvision签署合作协议,Zvision作为该平台的关键LiDAR感测器合作伙伴之一加入了NVIDIA Jetson生态系统。透过协议,Zvision 计划利用 NVIDIA 的全套软体工具炼和领先的 AI 晶片硬体来开发一系列基于固态 LiDAR 的自动驾驶感测器和系统。

2021年4月,义法半导体宣布推出适用于高性能汽车应用的下一代MEMS加速计-AIS2IH 3轴线性加速计。这些加速计为非安全汽车应用(例如远端资讯处理、防盗、资讯娱乐、车辆导航和倾斜/倾角测量)带来了更高的解析度、机械稳健性和温度稳定性。

其他福利:

  • Excel 格式的市场预测 (ME) 表
  • 3 个月的分析师支持

目录

第 1 章 简介

  • 研究假设和市场定义
  • 研究范围

第二章调查方法

第三章执行摘要

第四章 市场洞察

  • 市场概况
  • 产业吸引力-波特五力分析
    • 新进入者的威胁
    • 买家的议价能力
    • 供应商的议价能力
    • 替代品的威胁
    • 竞争对手之间的竞争
  • 技术简介
  • COVID-19 市场影响

第五章 市场动态

  • 市场驱动因素
    • 更加重视乘客安全以及法规和合规性
    • 客户喜欢提高自动化程度和性能
  • 市场限制
    • 介面设计考虑因素增加了 MEMS 感测器的实施成本

第六章 市场细分

  • 按类型
    • 轮胎压力感知器
    • 引擎机油感知器
    • 燃烧感测器
    • 燃油喷射/燃油帮浦感知器
    • 安全气囊展开感应器
    • 陀螺仪
    • 燃油导轨压力感知器
    • 其他类型
  • 按地区
    • 北美洲
      • 美国
      • 加拿大
    • 欧洲
      • 德国
      • 英国
      • 法国
      • 其他欧洲国家
    • 亚太地区
      • 中国
      • 日本
      • 印度
      • 其他亚太地区
    • 世界其他地区

第七章 竞争格局

  • 公司简介
    • Analog Devices Inc.
    • Delphi Automotive PLC
    • Denso Corporation
    • General Electric Co.
    • Freescale Semiconductors Ltd
    • Infineon Technologies AG
    • Sensata Technologies Inc.
    • SiMicroelectronics NV
    • Panasonic Corporation
    • Liqid Inc.
    • Robert Bosch GmbH

第八章投资分析

第九章 市场机会与未来趋势

简介目录
Product Code: 49375

The MEMS Automobile Sensors Market is expected to register a CAGR of 14.61% during the forecast period.

MEMS Automobile Sensors - Market - IMG1

Key Highlights

  • MEMS sensors have become an indispensable part of vehicles. From the first versions used in motor vehicles, such as the accelerometer, this sensor technology has evolved significantly to become the most prominent technology driver for automotive applications. In most advanced vehicles, these delicate sensors continuously supply the automotive system with precise data, based on which the connected electric control units trigger necessary actions in real-time.
  • The growing demand for safety and security in automobiles is one of the main factors that play a vital role in the market's growth. According to the World Health Organization, more than 1.5 million people are killed in road accidents yearly, and about 50 million people get injured. As MEMS sensors play a critical role in improving the safety features of vehicles, such trends act as catalysts for the growth of the market.
  • Moreover, electrification and automation are two significant trends in the automotive industry. The emergence of electric vehicles (EVs) in the industry has dramatically impacted the demand for and distribution of pressure and magnetic sensors. It is expected to increase the demand in the long-term further. Increasing sales of electric cars are thereby increasing the demand for sensors. Furthermore, the increasing integration of various positioning and high-value sensing modules, such as RADAR, LIDAR, and imaging in automotive systems, is expected to create significant opportunities during the forecast period.
  • In addition, strict government regulations encourage automotive manufacturers to include mandated safety systems, such as tire pressure monitoring systems (TPMS) and electronic stability control (ESC), in new vehicles in major automotive markets, creating new use cases for implementing MEMS sensors. Various manufacturers are also making several product innovations to grab the market's opportunities. For instance, at CES 2021, TDK announced Smart Automotive IAM-20685, an automotive grade 6-axis ASIL-B MEMS IMU.
  • MEMS devices vary from a relatively simple structure to highly complex ones with multiple moving elements under the control of integrated microelectronics. Hence, the industry faces various challenges during the complex manufacturing process. Additionally, these sensors often have a more significant drift over temperature, which further challenges the growth of the market.
  • Additionally, due to the COVID-19 pandemic, the demand for automotive slowed down, along with the effect on the supply chain of automotive parts. Over the short to medium term, the pandemic delayed the development of advanced technologies, such as autonomous driving, as automakers divert research budgets to fund immediate cash requirements. However, with the condition improving and the automotive sector gaining momentum, the industry is expected to offer ample growth opportunities during the forecast period.

Automobile MEMS Sensors Market Trends

Airbag Deployment Sensors to Witness a Significant Growth

  • MEMS sensors play a vital role in improving the safety features of vehicles. With the evolution of autonomous driving, the demand for these sensors is expected to increase multiple-fold for safety-based applications, such as airbag deployment. To reduce accident levels, governments are framing stringent regulations, pushing automotive vendors to implement the latest MEMS-based sensors in airbag deployment systems, creating growth opportunities for the market.
  • Crash sensing for airbag control is among the largest automotive application areas of inertial MEMS sensors. In this application, an accelerometer continuously measures the acceleration of the car. When the preset parameter goes beyond the threshold, the airbags are fired. The resulting increase in reliability and reduction in the price of the airbag system is further bringing about its near-universal inclusion in cars.
  • Considering the growing rate of road accidents, governments across various countries are framing stringent regulations that promote the use of airbags. A minimum two airbag rule came into effect in India. The government proposed that automobile manufacturers include six airbags as standard across all variants, regardless of the body style or segment. Such trends are expected to create more growth opportunities in the market.
  • The past years have witnessed significant growth in the sale of luxury vehicles, especially in developing countries. As these cars usually contain more airbags, the sales growth is expected to impact the growth of the market positively. For instance, recently, BMW, one of the leading luxury car brands, sold 2.52 million units of cars globally. Furthermore, the increasing demand for electric and hybrid vehicles is also expected to positively impact the growth of the market as these vehicles usually come with advanced safety and comfort features.

Asia-Pacific to Exhibit the Fastest Growth Rate

  • Due to the rapidly growing automotive industry in economies such as China, India, and Japan, the Asia-Pacific is expected to exhibit the highest growth rate in the automotive MEMS sensors market. For instance, according to OICA, last year, China was the leading automobile manufacturer globally, with a production volume of about 26 million vehicles. China was followed by the United States, Japan, and India in annual vehicle production volume.
  • The standardization of autonomous driving and ADAS is accelerating in China. For instance, last year, the Chinese government issued three new national safety standards (Electric Vehicle Safety Requirements, Electrical Vehicle Traction Battery Safety Requirements, and Electric Bus Safety Requirements). These mandatory standards put forward safety requirements for the battery pack and vehicle, including the implementation of early battery failure detection mechanisms.
  • A similar trend is being adopted by other countries of the Asia-Pacific region, considering the growing number of road accident cases. For instance, to encourage automobile manufacturers to provide advanced safety features and boost the "export worthiness" of vehicles produced in the country, the Indian Ministry of Road Transport and Highways (MoRTH) proposed to introduce a safety rating system, Bharat New Car Assessment Program (BNCAP), for passenger cars, in June this year.
  • Furthermore, countries such as Japan and South Korea are progressing fast to develop autonomous vehicles. For instance, the South Korean government plans to pursue full autonomy and wants half of its domestically-built cars to be fully autonomous by 2035. As these vehicles need minimal manual intervention, sensors play a crucial role in their successful operation. Hence, the growth of the autonomous vehicle industry is expected to drive the demand for MEMS sensors further.

Automobile MEMS Sensors Industry Overview

The MEMS automobile sensors market is fragmented in nature and consists of many global and regional players, such as, STMicroelectronics NV, Panasonic Corporation, Robert Bosch GmbH, Analog Devices Inc., and Infineon Technologies AG. These players focus on expanding their customer base across the globe. They focus on the research and development investment in introducing new solutions, strategic alliances, and other organic and inorganic growth strategies to earn a competitive edge over the forecast period.

In October 2022, Zvision, a leading provider of automotive-grade MEMS LiDAR solutions in China, and NVIDIA signed a collaborative agreement whereby Zvision joined the NVIDIA Jetson ecosystem as one of the platform's key LiDAR sensor partners. Through this agreement, Zvision plans to leverage NVIDIA's full-fledged software toolchains and lead AI chip hardware to develop a range of solid-state LiDAR-based autonomous driving sensors and systems.

In April 2021, STMicroelectronics unveiled AIS2IH three-axis linear accelerometer, a next-generation MEMS accelerometer for high-performance automotive applications. These accelerometers bring enhanced resolution, mechanical robustness, and temperature stability to non-safety automotive applications, including telematics, anti-theft, infotainment, vehicle navigation, and tilt/inclination measurement.

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 Study Assumptions and Market Definition
  • 1.2 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET INSIGHTS

  • 4.1 Market Overview
  • 4.2 Industry Attractiveness - Porter's Five Forces Analysis
    • 4.2.1 Threat of New Entrants
    • 4.2.2 Bargaining Power of Buyers
    • 4.2.3 Bargaining Power of Suppliers
    • 4.2.4 Threat of Substitute Products
    • 4.2.5 Intensity of Competitive Rivalry
  • 4.3 Technology Snapshot
  • 4.4 Impact of COVID-19 on the Market

5 MARKET DYNAMICS

  • 5.1 Market Drivers
    • 5.1.1 Passenger Safety and Security Regulations, and Increased Focus on Compliance
    • 5.1.2 Increased Automation Features and Performance Improvements Preferred by Customers
  • 5.2 Market Restraints
    • 5.2.1 Increase in Overall Cost of MEMS Sensors Implementation due to Interface Design Considerations

6 MARKET SEGMENTATION

  • 6.1 By Type
    • 6.1.1 Tire Pressure Sensors
    • 6.1.2 Engine Oil Sensors
    • 6.1.3 Combustion Sensors
    • 6.1.4 Fuel Injection and Fuel Pump Sensors
    • 6.1.5 Air Bag Deployment Sensors
    • 6.1.6 Gyroscopes
    • 6.1.7 Fuel Rail Pressure Sensors
    • 6.1.8 Other Types
  • 6.2 By Geography
    • 6.2.1 North America
      • 6.2.1.1 United States
      • 6.2.1.2 Canada
    • 6.2.2 Europe
      • 6.2.2.1 Germany
      • 6.2.2.2 United Kingdom
      • 6.2.2.3 France
      • 6.2.2.4 Rest of Europe
    • 6.2.3 Asia Pacific
      • 6.2.3.1 China
      • 6.2.3.2 Japan
      • 6.2.3.3 India
      • 6.2.3.4 Rest of Asia Pacific
    • 6.2.4 Rest of the World

7 COMPETITIVE LANDSCAPE

  • 7.1 Company Profiles
    • 7.1.1 Analog Devices Inc.
    • 7.1.2 Delphi Automotive PLC
    • 7.1.3 Denso Corporation
    • 7.1.4 General Electric Co.
    • 7.1.5 Freescale Semiconductors Ltd
    • 7.1.6 Infineon Technologies AG
    • 7.1.7 Sensata Technologies Inc.
    • 7.1.8 SiMicroelectronics NV
    • 7.1.9 Panasonic Corporation
    • 7.1.10 Liqid Inc.
    • 7.1.11 Robert Bosch GmbH

8 INVESTMENT ANALYSIS

9 MARKET OPPORTUNITIES AND FUTURE TRENDS