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市场调查报告书
商品编码
1787865
2032 年全球磁力仪市场预测:依产品类型、类型、外形规格、技术、应用、最终用户和地区进行分析Magnetometer Market Forecasts to 2032 - Global Analysis By Product Type (Scalar Magnetometers, Vector Magnetometers, and Other Product Types), Type, Form Factor, Technology, Application, End User, and By Geography |
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根据 Stratistics MRC 的数据,全球磁力仪市场预计在 2025 年达到 27.7 亿美元,到 2032 年将达到 49.3 亿美元,预测期内的复合年增长率为 8.6%。
磁力仪是一种用来测量磁场强度和方向的仪器。磁力仪可以检测地球磁场的变化,并测量材料的磁性,用于各种应用。磁力仪对于地球物理测量、导航系统和太空探勘至关重要。它们有多种类型,包括磁通门、霍尔效应和光泵浦,并在国防、汽车、电子和环境监测等领域提供准确的即时数据。
据美国财政部称,UserInvest.gov 正在监控截至 2023 年 10 月宣布的超过 3500 亿美元的 BIL 资金。
扩大在家电的应用
近年来,智慧型手机、平板电脑和穿戴式装置大量整合了地磁感测器,以实现精确导航,从而实现可靠的指南针应用和先进的定位服务,尤其是在无法使用 GPS 的环境中。此外,蓬勃发展的扩增实境(AR) 和虚拟实境 (VR) 领域依靠磁力计实现精确的定位和空间追踪,让使用者沉浸在数位环境中。这些感测器的微型化和低功耗特性使其得到了广泛的应用,使其成为功能丰富的高阶电子设备的重要组成部分。消费者越来越偏好能够提供游戏、健康监测和通用等高级功能的设备,这进一步推动了这一趋势。
低成本定价模式的灵敏度有限
虽然磁力仪广泛可用,但成本效益高的型号通常灵敏度和准确度有限。这种限制阻碍了它们在需要高精度测量的应用中的表现,例如医疗图像和地球物理探勘。製造商在平衡价格和增强功能方面面临技术挑战。读数精度差会导致设备性能和功能不理想。这些缺点可能会阻碍高阶设备製造商的采用。成本与灵敏度之间的权衡仍然是扩大磁力仪在先进领域应用的重大障碍。
与物联网设备集成
磁力计为无数物联网应用提供关键的定位和位置感知,涵盖智慧家庭设备、穿戴式装置、工业监控和智慧城市基础设施等。检测磁场变化的能力使其能够在缺乏 GPS 的环境中实现精确导航、资产追踪,甚至结构位移监测。随着物联网生态系统的扩展以及对更先进感测功能的需求,最新磁力计凭藉其小巧的尺寸、低功耗和更高精度,成为无缝整合的理想选择。这使得智慧型系统能够动态响应环境讯号,优化效率,并为消费性电子和工业应用提供先进的功能。
熟练工程师短缺
开发和部署基于磁力仪的解决方案需要专业的技术知识。然而,擅长设计、校准和排除这些系统故障的熟练工程师严重短缺。这种人才缺口在技术教育有限的新兴经济体和农村地区尤其明显。如果没有充足的培训计划,企业很难扩大复杂磁力仪的部署规模。配置错误或操作不当可能会导致效能下降和系统故障。
疫情扰乱了全球供应链,影响了磁力仪的生产和分销。工厂临时停工和物流限制延误了众多应用领域的计划进度。然而,由于远端监控和虚拟连接的需求,某些行业(例如家用电器和医疗保健设备)的需求激增。磁力仪还在非接触式控制和数位介面中发挥了重要作用,为保持社交距离通讯协定增添了价值。疫情过后,人们对具有高弹性和适应性强的坚固感测器技术的兴趣日益浓厚。
纯量磁力仪部分预计将是预测期内最大的部分
预计纯量磁强计领域将在预测期内占据最大的市场占有率。与向量磁强计不同,它们无需校准即可测量磁场总强度,使其成为太空任务、矿产探勘和物理探勘的理想选择。标量磁强计的坚固性、简单性以及在不同方向上操作的能力,推动了其在科学研究、国防应用和卫星地磁测绘领域的应用。
预计家用电器领域在预测期内将实现最高的复合年增长率。
预计消费电子领域将在预测期内实现最高成长率,这得益于其在智慧型手机、平板电脑、智慧型手錶以及扩增实境/虚拟实境系统等设备中的广泛应用。磁力计增强了数位罗盘、导航、运动追踪和游戏互动等功能。随着消费者对更复杂、功能更丰富的设备的需求,製造商越来越多地在其设备中整合小型、低功耗的地磁感测器,以提升用户体验。物联网和智慧穿戴生态系统的快速发展进一步推动了这项需求。
预计亚太地区将在预测期内占据最大的市场占有率,这得益于消费电子製造业的强劲增长,尤其是在智慧型手机、穿戴式装置、AR/VR 装置等领域,而磁力计在这些领域中能够实现重要的导航和定位功能。蓬勃发展的汽车产业,尤其是电动车和自动驾驶汽车的加速普及,进一步推动了对精确定位和安全系统的需求。
预计北美地区在预测期内将实现最高的复合年增长率,这得益于蓬勃发展的航太和国防领域,这些领域需要高精度磁力仪用于导航、导弹导引和磁异常探测。以自动驾驶汽车和电动车为重点的先进汽车产业,正越来越多地整合磁力仪以实现精确定位和高级驾驶辅助系统 (ADAS)。此外,该地区强大的研发实力,加上物联网设备和工业自动化解决方案的日益普及,也推动了磁力仪的需求。
According to Stratistics MRC, the Global Magnetometer Market is accounted for $2.77 billion in 2025 and is expected to reach $4.93 billion by 2032 growing at a CAGR of 8.6% during the forecast period. A magnetometer is an instrument used to measure the strength and direction of magnetic fields. It detects variations in the Earth's magnetic field or measures magnetic properties of materials for various applications. Magnetometers are essential in geophysical surveys, navigation systems, and space exploration. Available in different types, such as fluxgate, Hall-effect, and optically pumped, they offer precise and real-time data across sectors like defense, automotive, electronics, and environmental monitoring.
According to the U.S. Department of the Treasury, UserInvest.gov monitors over $350 billion in announced BIL funding until October 2023.
Increasing use in consumer electronics
Modern smartphones, tablets, and wearable devices heavily integrate magnetometers for accurate navigation, enabling reliable compass applications and advanced location services, especially in GPS-denied environments. Furthermore, the burgeoning fields of augmented reality (AR) and virtual reality (VR) rely on magnetometers for precise orientation and spatial tracking, immersing users in digital environments. Miniaturization of these sensors, coupled with their low power consumption, has facilitated their widespread adoption, making them indispensable components for sophisticated and feature-rich electronic gadgets. This trend is further fueled by the growing consumer preference for devices offering advanced capabilities for gaming, health monitoring, and general utility.
Limited sensitivity in low-cost models
While magnetometers are widely accessible, cost-effective models often suffer from limited sensitivity and accuracy. This constraint hampers their performance in applications demanding high-precision measurements, such as medical imaging and geophysical exploration. Manufacturers face technical challenges when balancing affordability with enhanced capabilities. Inaccuracy in readings can lead to suboptimal device performance or functionality. These shortcomings may discourage adoption among premium device manufacturers. The trade-off between cost and sensitivity remains a key hurdle in scaling magnetometer usage across advanced sectors.
Integration with IoT devices
Magnetometers provide crucial directional and positional awareness for countless IoT applications, from smart home devices and wearables to industrial monitoring and smart city infrastructure. Their ability to detect magnetic field changes enables precise navigation in GPS-denied environments, asset tracking, and even structural shift monitoring. As IoT ecosystems expand and require more sophisticated sensing capabilities, the miniaturization, low power consumption, and improved accuracy of modern magnetometers make them ideal for seamless integration. This allows for intelligent systems that can respond dynamically to environmental cues, optimizing efficiency and delivering advanced functionalities for consumers and industries alike.
Shortage of skilled technicians
The advancement and deployment of magnetometer-based solutions require specialized technical expertise. However, there is a noticeable shortage of skilled professionals adept at designing, calibrating, and troubleshooting these systems. This talent gap is especially prevalent in emerging economies and rural areas, where technical education may be limited. Without sufficient training programs, businesses struggle to scale complex magnetometer deployments. Misconfiguration and improper handling can lead to performance degradation or system failures.
The pandemic disrupted global supply chains, impacting the production and distribution of magnetometers. Temporary factory shutdowns and logistic constraints delayed project timelines across various applications. However, demand surged in certain segments like consumer electronics and healthcare devices due to remote monitoring and virtual connectivity needs. Magnetometers also played a role in touchless controls and digital interfaces, adding value during social distancing protocols. Post-pandemic, there is heightened interest in robust sensor technologies for resilience and adaptability.
The scalar magnetometers segment is expected to be the largest during the forecast period
The scalar magnetometers segment is expected to account for the largest market share during the forecast period, their high accuracy and absolute magnetic field measurement capabilities. Unlike vector magnetometers, they measure the total strength of the magnetic field without requiring alignment, making them ideal for space missions, mineral exploration, and geophysical surveys. Their robustness, simplicity, and ability to operate in varying orientations drive their adoption in scientific research, defense applications, and satellite-based geomagnetic mapping.
The consumer electronics segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the consumer electronics segment is predicted to witness the highest growth rate, due to their widespread use in devices like smartphones, tablets, smartwatches, and AR/VR systems. Magnetometers enhance features such as digital compasses, navigation, motion tracking, and gaming interactivity. As consumers demand more sophisticated and multifunctional devices, manufacturers are increasingly integrating compact, low-power magnetometers to improve user experience. The rapid growth of IoT and smart wearable ecosystems further accelerates this demand.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, due to its robust consumer electronics manufacturing sector, particularly for smartphones, wearables, and AR/VR devices, where magnetometers enable essential navigation and orientation features. The booming automotive industry, especially with the accelerated adoption of electric and autonomous vehicles, further fuels demand for precise positioning and safety systems.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, propelled by a robust aerospace and defense sector, requiring highly precise magnetometers for navigation, missile guidance, and magnetic anomaly detection. The advanced automotive industry, with its focus on autonomous and electric vehicles, increasingly integrates magnetometers for precise positioning and ADAS. Furthermore, the region's strong presence in research and development, coupled with growing adoption of IoT devices and industrial automation solutions, also drives demand.
Key players in the market
Some of the key players in Magnetometer Market include Honeywell International Inc., Lockheed Martin Corporation, Geometrics, Inc., Infineon Technologies AG, Lake Shore Cryotronics, Inc., Foerster Holding GmbH, Bartington Instruments Ltd., Marine Magnetics Corp., Group3 Technology Ltd., Tristan Technologies, Inc., VectorNav Technologies, Metrolab Technology SA, GEM Systems Inc., AlphaLab, Inc., Scintrex Limited.
In June 2025, Honeywell announced the completion of its acquisition of Sundyne from private equity firm Warburg Pincus for $2.16 billion in an all-cash transaction. The acquisition of Sundyne-a leader in the design, manufacturing, and aftermarket support of highly-engineered pumps and gas compressors for process industries-is expected to be immediately accretive to Honeywell's sales growth and segment margins as well as to adjusted EPS in the first full year of ownership.
In April 2025, VectorNav Technologies and NAL Research announced a joint development to produce Iridium(R) STL (Satellite Time & Location)-aided Inertial Navigation Systems (INS) designed to meet the increasing demand for resilient PNT in GNSS-denied environments.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.