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市场调查报告书
商品编码
1775366
全球汽车车轮转速感知器市场:未来预测(2025-2030)Global Automotive Wheel Speed Sensor Market - Forecasts from 2025 to 2030 |
汽车车轮转速感知器市场预计将从 2025 年的 53.41 亿美元成长到 2030 年的 62.3 亿美元,复合年增长率为 3.13%。
由于防锁死煞车系统 (ABS) 的日益普及、政府法规对最小煞车距离的严格规定以及全球汽车销量的不断增长,汽车车轮转速感测器市场正在经历显着增长。亚太地区新兴国家的市场扩张尤其显着,这些国家的汽车产销售量不断成长,推动了市场需求的成长。然而,与传统煞车系统相比,配备 ABS 的车辆由于电子元件和技术高成本,成本较高,这是限制市场成长的主要因素。
市场区隔分析
依感测器类型
车轮转速感知器市场分为主动和被动两种。主动感测器占据主导地位,因为它们利用霍尔效应原理,提供真正的零速能力和精确的开关点测量,即使在车辆静止时也能精确检测车轮运动。被动感测器预计将稳定成长,这得益于结构更简单但操作精度更高的磁性感测器的进步。
按车辆类型
市场细分包括乘用车、轻型商用车和重型商用车。乘用车占最大份额,这得益于汽车销售成长、可支配收入增加以及许多地区强制安装ABS。这一细分市场的主导地位反映了消费者对车辆安全性能的普遍重视。
按地区
根据地区划分,市场分为北美、南美、欧洲、中东和非洲以及亚太地区。亚太地区是规模最大、最具主导地位的市场,这得益于政府对汽车产业的大力支持、快速的工业化进程以及致力于开发创新产品以满足不断变化的消费者需求。该地区对技术进步和汽车生产的关注,为市场成长做出了重大贡献。
主要产品
博世车轮转速感知器
博世车轮转速感测器采用非接触式测量方法,将霍尔感测元件、讯号放大器和讯号处理功能整合在单一晶片上。这些感测器透过多极或金属车轮旋转编码器产生的变化磁场来检测车轮转速。博世感测器专为高度自动化驾驶而设计,具有讯号冗余和多种变体,可满足各种需求。
大陆车轮转速感知器(WSS)
大陆集团的WSS利用异性磁电阻效应(AMR或GMR)测量车轮转速,并实现与ABS、牵引力控制(TCS)和电子稳定控制(ESC)等控制系统的通讯。这些感测器整合讯号处理功能,可执行各种任务,设计坚固耐用,读取位置可调,并符合ISO 26262安全标准。其简化的开发流程可最大限度地减少布局变更和检验工作。
结论
受ABS(防锁死煞车系统)的普及、法规要求以及各地区(尤其是亚太地区)汽车产业的进步推动,汽车轮速感知器市场预计将持续成长。虽然有源感测器和乘用车在各自的细分市场中占据领先地位,但感测器技术和安全合规的技术创新正在塑造一个竞争激烈、充满活力的市场格局。虽然高成本仍然是一个挑战,但持续的研发旨在平衡价格与性能。
本报告的主要优点
它有什么用途?
产业与市场洞察、商业机会评估、产品需求预测、打入市场策略、地理扩张、资本支出决策、法律规范与影响、新产品开发、竞争影响
The Global Automotive Wheel Speed Sensor Market is expected to grow from USD 5.341 billion in 2025 to USD 6.230 billion in 2030, at a CAGR of 3.13%.
The global automotive wheel speed sensor market is experiencing significant growth driven by the widespread adoption of anti-lock braking systems (ABS), stringent government regulations mandating minimum stopping distances, and rising automotive sales worldwide. The market's expansion is particularly pronounced in developing countries in the Asia-Pacific region, where increased vehicle production and sales are fueling demand. However, the high cost of ABS-equipped vehicles, driven by expensive electronic components and technology, remains a key restraint on market growth compared to traditional braking systems.
Market Segmentation Analysis
By Sensor Type
The market is divided into active and passive wheel speed sensors. Active sensors dominate due to their use of the Hall effect principle, offering true zero-speed capability and precise switch-point measurement, enabling accurate wheel movement detection even when vehicles are stationary. Passive sensors, while simpler in construction, are projected to grow steadily, supported by advancements in magnetic-type sensors that enhance operational accuracy.
By Vehicle Type
The market segments include passenger vehicles, light commercial vehicles, and heavy commercial vehicles. Passenger vehicles hold the largest share, propelled by rising sales, increasing disposable incomes, and mandatory ABS integration in many regions. This segment's dominance reflects the broader trend of prioritizing safety features in consumer vehicles.
By Geography
Geographically, the market is segmented into North America, South America, Europe, Middle East & Africa, and Asia-Pacific. Asia-Pacific leads as the largest and most dominant market, driven by robust government support for the automotive industry, rapid industrialization, and a focus on developing innovative products to meet evolving consumer demands. The region's emphasis on technological advancements and automotive production significantly contributes to market growth.
Key Product Offerings
Bosch Wheel-Speed Sensor
Bosch's wheel-speed sensors utilize a non-contact measurement approach, integrating a Hall-sensing element, signal amplifier, and signal processing on a single chip. These sensors detect wheel speed via a fluctuating magnetic field from a revolving encoder, which may be a multipole or metal wheel, with a magnet required for steel wheel applications. Designed for compatibility with highly automated driving, Bosch sensors offer signal redundancy and multiple variations to meet diverse needs.
Continental Wheel Speed Sensor (WSS)
Continental's WSS leverages anisotropic magnetoresistance effects (AMR or GMR) to measure wheel speed, enabling communication with control systems like ABS, traction control (TCS), and electronic stability control (ESC). With integrated signal processing, these sensors perform a wide range of tasks, boasting a robust design, adjustable reading positions, and compliance with ISO 26262 safety standards. Their streamlined development process minimizes layout variations and validation efforts.
Conclusion
The automotive wheel speed sensor market is poised for continued growth, driven by ABS adoption, regulatory mandates, and regional automotive industry advancements, particularly in Asia-Pacific. While active sensors and passenger vehicles lead their respective segments, innovations in sensor technology and safety compliance are shaping a competitive and dynamic market landscape. High costs remain a challenge, but ongoing developments aim to balance affordability and performance.
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Segmentation
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