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市场调查报告书
商品编码
1476352
2030 年微机电系统感测器市场预测:按产品类型、应用和地区分類的全球分析Micro Electro Mechanical Systems Sensors Market Forecasts to 2030 - Global Analysis By Product Type, Application and By Geography |
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根据 Stratistics MRC 的数据,2023 年全球微机电系统感测器市场规模为 161 亿美元,预计到 2030 年将达到 370 亿美元,预测期内复合年增长率为 12.6%。
微机电系统(MEMS)感测器市场是指专注于开发、生产和分销与电子电路整合的极小型机械和电子机械设备的行业,微米。这些感测器旨在准确可靠地检测和测量各种物理现象,例如加速度、压力、温度、运动和环境条件。
根据印度品牌股权基金会统计,印度是全球第二大智慧型手机製造国,截至 2018 年 7 月拥有 120 家工厂,2017 年至 2018 年间生产了约 2.25 亿支手机。
穿戴式装置的需求不断增长
微机电系统 (MEMS) 感测器是穿戴式技术的重要组成部分,可实现运动追踪、心率监测和环境感测等功能。随着消费者越来越多地将穿戴式装置融入日常生活中以实现健身追踪、健康监测和智慧连接,对 MEMS 感测器的需求持续飙升。 MEMS 感测器尺寸小、功耗低、精度高,非常适合整合到穿戴式装置中,从而提高其性能和用户体验。
製造成本
MEMS 感测器是设计复杂的设备,在微型尺度上整合了机械和电气元件,因此需要复杂的製造流程。这些工艺涉及精密加工和精密组装,并且通常使用昂贵的材料和无尘室设备。因此,MEMS感测器的製造成本仍然相对较高。製造成本的增加直接影响MEMS感测器的最终价格,使其无法进入某些细分市场并阻碍普及。
MEMS 技术的进步
MEMS 技术允许精细地整合机械和电气元件,从而生产出能够测量压力、加速度、温度和流量等各种物理参数的高灵敏度感测器。这些感测器广泛应用于各种行业,包括汽车、消费性电子、医疗保健和航太。 MEMS 製造技术的持续创新,例如微影术和蚀刻,使製造商能够生产具有改进性能特征的感测器,例如更高的灵敏度、更低的功耗和更高的可靠性。
缺乏标准化的测试程序
由于缺乏普遍认可的测试通讯协定,製造商在确保 MEMS 感测器产品的可靠性和一致性方面面临障碍。缺乏标准化程序不仅使品质保证过程复杂化,而且还阻碍了不同感测器技术和设备之间的互通性。因此,消费者很难比较不同製造商的产品,这可能导致不确定的购买决定。缺乏标准化测试可能会阻碍创新并阻碍 MEMS 感测器技术的整体进步,因为开发人员可能难以满足全行业的性能基准。
最初,全球供应链和製造流程的中断导致生产放缓和关键零件短缺,影响了 MEMS 感测器的可用性。疫情造成的景气衰退导致汽车、家电、医疗保健等产业的消费者支出和投资下降,这些产业是MEMS感测器的主要消费者。然而,随着疫情的发展,对医疗设备、个人防护设备、远端医疗监控系统等中使用的某些类型的 MEMS 感测器的需求增加。
预计致动器产业在预测期内将是最大的
预计致动器领域在预测期内将是最大的。致动器将电讯号转换为机械运动,透过提供一种对感测器收集的资料采取行动的方法来补充 MEMS 感测器。这种协同效应可实现广泛的应用,从汽车和消费性电子产品到医疗保健和工业自动化。 MEMS 感测器可侦测环境中的变化,例如运动、压力或温度,致动器透过启动特定操作(例如调节阀门或启动显示器)对这些变化做出反应。
预计国防部门在预测期间内复合年增长率最高
在微机电系统感测器市场中,预计国防领域在预测期内的复合年增长率最高。这一增长主要归因于全球国防技术投资的增加。这一趋势是由导航、目标检测和监视等国防应用中对微机电系统感测器的需求所推动的。此外,微机电系统感测器技术的进步正在提高国防系统的性能和可靠性,进一步促进该领域的预期成长轨迹。
北美地区在预测期内占据最大的市场占有率。随着家用电子电器不断发展并日益融入日常生活,对更小、更有效率、更准确的感测器的需求正在迅速增加。 MEMS 感测器体积小,可侦测和测量运动、压力、温度和环境条件等各种参数,使其成为智慧型手机、穿戴式装置、游戏机和其他电子设备的重要组件。对家用电子电器增强功能、改进性能和无缝连接的需求推动了对 MEMS 感测器不断增长的需求。
预计亚太地区在预测期内将实现盈利成长。要求车辆采用先进感测器技术以确保安全并符合排放标准的法规正在推动汽车领域 MEMS 感测器的成长。同样,政府推动智慧基础设施和物联网技术采用的倡议正在推动建筑自动化和工业应用中对 MEMS 感测器的需求。
According to Stratistics MRC, the Global Micro Electro Mechanical Systems Sensors Market is accounted for $16.1 billion in 2023 and is expected to reach $37.0 billion by 2030 growing at a CAGR of 12.6% during the forecast period. The Micro Electro Mechanical Systems (MEMS) Sensors Market refers to the industry focused on the development, production, and distribution of tiny mechanical and electromechanical devices integrated with electronic circuits, typically ranging from a few micrometers to a few millimeters in size. These sensors are designed to detect and measure various physical phenomena such as acceleration, pressure, temperature, motion, and environmental conditions with high precision and reliability.
According to Indian Brand Equity Foundation, India is world's second largest manufacturer of smart phones, with 120 factories as of July 2018, with around 225 million mobile units produced during 2017-2018.
Growing demand for wearable devices
Micro Electro Mechanical Systems (MEMS) Sensors are integral components in wearable technology, enabling functionalities such as motion tracking, heart rate monitoring, and environmental sensing. As consumers increasingly integrate wearables into their daily lives for fitness tracking, health monitoring, and smart connectivity, the demand for MEMS sensors continues to surge. Their miniature size, low power consumption, and high precision make MEMS sensors ideal for integration into wearable devices, enhancing their performance and user experience.
Cost of production
MEMS sensors are intricately designed devices that integrate mechanical and electrical components on a microscale, requiring sophisticated manufacturing processes. These processes involve precision machining, delicate assembly, and often the use of expensive materials and cleanroom facilities. As a result, the production costs for MEMS sensors remain relatively high. This elevated cost of production directly impacts the final price of MEMS sensors, making them less accessible to certain market segments, hindering widespread adoption across various industries.
Advancements in MEMS technology
MEMS technology allows for the integration of mechanical and electrical components on a microscopic scale, leading to the production of highly sensitive sensors capable of measuring various physical parameters such as pressure, acceleration, temperature, and flow. These sensors find applications across diverse industries including automotive, consumer electronics, healthcare, and aerospace. With continuous innovations in MEMS fabrication techniques, such as photolithography and etching, manufacturers can produce sensors with improved performance characteristics like higher sensitivity, lower power consumption, and enhanced reliability.
Lack of standardized testing procedures
Without universally agreed-upon testing protocols, manufacturers face hurdles in ensuring the reliability and consistency of their MEMS sensor products. This absence of standardized procedures not only complicates the quality assurance process but also inhibits interoperability between different sensor technologies and devices. As a result, consumers may encounter difficulties in comparing products from various manufacturers, leading to uncertainty in purchasing decisions. The absence of standardized testing can hinder innovation and hinder the advancement of MEMS sensor technology as a whole, as developers may struggle to meet industry-wide performance benchmarks.
Initially, disruptions in global supply chains and manufacturing processes led to production slowdowns and shortages of key components, affecting the availability of MEMS sensors. The economic downturn caused by the pandemic resulted in decreased consumer spending and reduced investments in industries such as automotive, consumer electronics, and healthcare, which are major consumers of MEMS sensors. However, as the pandemic progressed, there emerged a heightened demand for certain types of MEMS sensors, such as those used in medical devices, personal protective equipment, and monitoring systems for remote healthcare.
The actuators segment is expected to be the largest during the forecast period
Actuators segment is expected to be the largest during the forecast period. Actuators, which convert electrical signals into mechanical motion, complement MEMS sensors by providing the means to act upon the data collected. This synergy enables a wide array of applications, from automotive and consumer electronics to healthcare and industrial automation. MEMS sensors detect changes in their environment, such as motion, pressure, or temperature, while actuators respond to these changes by initiating specific actions, such as adjusting a valve or activating a display.
The defense segment is expected to have the highest CAGR during the forecast period
In the Micro Electro Mechanical Systems Sensors Market, the defense segment is projected to experience the highest CAGR during the forecast period. This growth is primarily attributed to increasing investments in defense technologies worldwide. The demand for Micro Electro Mechanical Systems sensors in defense applications such as navigation, target detection, and surveillance is driving this trend. Additionally, advancements in Micro Electro Mechanical Systems sensor technology, enhancing their performance and reliability in defense systems, further contribute to the segment's anticipated growth trajectory.
North America region commanded the largest market share over the projected period. As consumer electronics continue to evolve and become increasingly integrated into daily life, the need for smaller, more efficient, and precise sensors has surged. MEMS sensors, with their compact size and ability to detect and measure various parameters such as motion, pressure, temperature, and environmental conditions, have become indispensable components in smartphones, wearables, gaming consoles, and other electronic devices. This escalating demand for MEMS sensors is being driven by the desire for enhanced functionalities, improved performance, and seamless connectivity in consumer electronics.
Asia Pacific region is poised to witness profitable growth over the extrapolated period. Regulations mandating the incorporation of advanced sensor technologies in vehicles to ensure safety and compliance with emission standards are fostering the growth of MEMS sensors in the automotive sector. Similarly, government initiatives promoting the adoption of smart infrastructure and IoT technologies are fueling the demand for MEMS sensors in building automation and industrial applications.
Key players in the market
Some of the key players in Micro Electro Mechanical Systems Sensors market include Alps Electric Co. Ltd, AMS AG, Analog Devices Inc, Avago Technologies, Freescale Semiconductor Inc, Infineon Technologies, InvenSense Inc, MegaChips Corporation, Memsic Inc, Panasonic, Robert Bosch GmbH, Seiko Epson Corporation, STMicroelectronics N. V. and Texas Instruments Inc.
In February 2024, Analog Devices Inc has revealed a strategic partnership with TSMC, the global leader in semiconductor foundry services. This collaboration aims to enhance Analog Devices' future wafer capacity by leveraging Japan Advanced Semiconductor Manufacturing, Inc.
In April 2023, Robert Bosch GmbH announced plans to buy TSI Semiconductors, a major maker of silicon carbide chips. Bosch did divulge that it plans to spend $1.5 billion on upgrading TSI's production lines. The company said that the investment will depend on federal funding opportunities and state-level economic development initiatives.