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全球触觉技术市场:到 2028 年的预测 - 按组件、反馈类型、技术、应用和地区分析Haptic Technology Market Forecasts to 2028 - Global Analysis By Component, Feedback Type, Technology, Application and Geography |
据 Stratistics MRC 预测,全球触觉技术市场将在 2022 年达到 104 亿美元,到 2028 年达到 218.3 亿美元,在预测期内以 13.14% 的复合年增长率增长。
模拟触觉的技术称为触觉技术,触觉反馈也称为触觉(使用触觉与个人交流的方法)。 触觉技术最着名的可能是其用于在手机、游戏机和可穿戴设备中产生振动的微型电机,但也有很多变化。 示例包括微流体、摩擦调製、通过槓桿或其他机械装置向用户的身体或四肢施加力。 此外,触觉技术不一定需要用户触摸物体。 使用非接触式触觉技术,不需要可穿戴设备或控制系统。 它使用超音波和雷射光等技术在空气中产生感觉。
市场动态
促进因素
消费设备中触觉的增加
推动触觉技术需求增长的关键因素之一是智能手机、平板电脑和其他可穿戴技术等消费电子产品的使用越来越多。 几乎无一例外,智能手机和平板设备都配备了触觉,趋势是智能手錶和腕带。 触觉反馈可以在智能手錶、手镯和健身追踪器等可穿戴设备技术中发挥作用,以实现更快的操作、更长的电池寿命和用户友好的交互。 这些可穿戴设备中的触觉可实现信息传输和真实体验。
抑制因素
反馈技术很贵
触觉技术已被广泛接受,现已成为智能手机和平板电脑的标准功能。 许多公司正在考虑整合触觉技术并权衡成本和风险。 儘管在智能手机和平板电脑中嵌入触觉的成本很低,但力反馈触觉设备比触觉反馈触觉设备更昂贵。 为了让用户在各种应用中体验实时虚拟触觉,触觉反馈触觉技术具有 3 自由度 (DoF)、6 自由度 (DoF) 和 7 自由度 (DoF) 效果,需要设备。 具有力反馈的触觉设备广泛用于製造、汽车、航空航天、医疗和其他行业的人体工程学研究和仿真应用。 然而,这些触觉设备通常体积较大,这对可穿戴触觉设备技术提出了重大挑战。
未来展望
触觉技术的进步
过去仅限于智能手机和平板电脑等家用电器的触觉技术现在正被用于教育和机器人等新领域。 机器人技术使用类似手套的触觉设备为机器人操作员提供对末端执行器(例如机器人手)的精细控制。 触觉手套使机器人操作员能够精确控制机器人手臂,即使坐在离生产车间数英里远的地方也是如此。 HaptX(美国)是机器人触觉手套的顶级製造商之一。
威胁
与产品设计相关的技术问题
触觉技术行业的最大障碍是製造商必须克服的技术难题,才能将触觉功能集成到各种产品中,包括智能手机、平板电脑、手术器械、汽车仪表板和游戏机。 任何使用触觉技术的小工具肯定会受益于用户便利和指导。 然而,在将触觉反馈引入产品之前,仔细考虑哪些组件在给定係统中最有效是非常重要的。 执行器设计和相关的驱动功能是在系统限制下考虑的主要因素,以提供最佳反馈性能。 生产商应该考虑控制器功能在多大程度上可以包含在整体产品设计中。
COVID-19 的影响
2029 年,COVID-19 的爆发降低了对触觉技术的需求。 COVID-19 大流行导致公共和私人场所广泛关闭。 各地都实施了封锁和社会隔离准则。 由于封锁,触觉技术生产和供应链有所下降。 关闭对几家公司的工业流程产生了重大影响,并导致供应链中断。 市场受到劳动力池的影响,例如汽车行业。 由于 COVID-19 大流行,企业一直在努力寻找运营所需的劳动力。
预计在预测期内触觉部分将是最大的部分
随着消费者能够自定义他们的短信提醒和其他智能手机通知,预计触觉部分将出现有利可图的增长。 这是触觉技术的优势。 消费者对逼真的智能手机体验的需求增加,以及智能手錶和腕带等支持物联网 (IoT) 的产品的推出,这些产品使消费者能够更轻鬆地追踪自己的健康状况,这都将推动该行业的发展。
预计汽车和交通领域在预测期内的复合年增长率最高
在预测期内,汽车和运输行业预计将以最快的复合年增长率增长。 这背后是汽车行业不断进步、电动汽车对先进电子系统的需求不断增加、豪华车和安全车的选择,以及触觉技术与车载娱乐系统的整合。 油门踏板、仪錶盘、空调显示器和方向盘都使用了这项技术。 主要汽车製造商正在将触觉技术应用于宝马、本田、丰田、奔驰、特斯拉和奥迪等车型。
份额最高的地区
由于美国 Immersion Corporation 等主要市场领导者的存在,预计北美在预测期内将占据最大的市场份额,并且北美将成为全球触觉技术市场的主导区域。预测。 汽车的每个按钮、滑块、表面和錶盘都可以通过触觉技术实现逼真的按压、不同的纹理和点击感觉。 因此,汽车製造商正逐渐将触觉技术整合到他们的汽车中。 因此,触觉技术在汽车行业的应用有望扩大,从而刺激市场扩张。
复合年增长率最高的地区
欧洲预计将在预测期内实现最高的复合年增长率。 这是因为消费者在技术先进的消费电子产品上的支出不断增加,正在推动欧洲的触觉技术市场。 在欧洲,对触摸屏技术的需求很大,尤其是在汽车、消费电子和运输行业。 因此,欧洲的触觉技术市场有望显着增长。 该地区的市场扩张将受到该技术在基于计算机的培训应用中的累积使用的推动。
主要发展
2021 年 2 月,Immersion Corporation 和 Faurecia Corporation 批准了一项多年期许可协议,允许 Faurecia 购买 Immersion 的触觉技术解决方案。 Faurecia 将能够使用 Immersion Corporation 的尖端技术设计复杂的交互式触觉用户界面。
2020 年 11 月,Ultraleap 与阿联酋 Hawas Group 的子公司 IPlan Ideas Events 及其部门 IPlan Ideas Technologies (IPI Tech) 达成协议。 该交易旨在将 Ultraleap 先进的手部追踪和机载触觉技术带给阿联酋客户。 IPI Tech 将该技术引入了广泛的行业,包括信息亭製造商、广告和营销、零售和电影院。
2020 年 9 月,Immersion 与 LG 电子续签了许可,继续在智能手机中使用触摸感应软件和触觉技术。
2020 年 6 月,Immersion 与日本跨国公司 Alps Alpine Co., Ltd. 达成协议。 该协议旨在在 Alps Alpine 的触摸反馈设备中使用 Immersion 的主动传感技术。 支持最新主动传感技术的解决方案可以提供高质量、高保真度和快速的触觉感知,以改善汽车人机界面的用户体验。
本报告的内容
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3.1 介绍
3.2 促进因素
3.3 抑制因素
3.4 机会
3.5 威胁
3.6 技术分析
3.7 应用分析
3.8 新兴市场
3.9 COVID-19 的影响
According to Stratistics MRC, the Global Haptic Technology Market is accounted for $10.40 billion in 2022 and is expected to reach $21.83 billion by 2028 growing at a CAGR of 13.14% during the forecast period. Technology that simulates tactile sensations is known as haptic technology, and haptic feedback is also referred to as haptics (the way touch is used to communicate with individuals). The most well-known type of haptic technology is likely the little motors used to produce vibration in mobile phones, gaming consoles, and wearables, although there are many variations. Examples include microfluidics, friction modulation, and applying force to a user's body or limbs via levers or other mechanical devices. Haptic technology does not always require users to touch an object. Wearables and control systems are not required thanks to contactless haptic technology. Using techniques like ultrasound or lasers, it creates sensory sensations in midair.
Market Dynamics:
Driver:
Increasing integration of haptics into consumer devices
One of the key elements driving the rise in demand for haptic technology is the rising use of consumer electronics devices like smartphones, tablets, and other wearable technology. Haptics are almost universally included in smartphones and tablets, and the trend is moving toward their incorporation into smartwatches and wristbands. With speedier controls, longer battery life, and user-friendly interactions, haptic feedback finds utility in wearable device technology, such as smartwatches, bracelets, and fitness trackers. These wearable's haptics enable informational communication and authentic experiences.
Restraint:
High cost for feedback technology
Haptics has become more widely accepted and is now a standardised feature in smartphones and tablets. A lot of businesses are considering the integration of haptic technology and weighing the cost and risk of doing so. Although the expenses associated with integrating haptics into smartphones and tablets are low, force feedback haptic devices are more expensive than tactile feedback haptic devices. For users to experience real-time virtual haptics in a variety of applications, force feedback haptic technology necessitates effective devices that are available in 3 degrees of freedom (DoF), 6 degrees of freedom (DoF), and 7 degrees of freedom (DoF). Haptic devices with force feedback are employed in numerous ergonomic studies as well as simulation applications in the manufacturing, automotive, aerospace, and medical fields. The fact that these haptic devices are frequently large is a significant challenge for wearable haptic device technology.
Opportunity:
Technology advancements in haptic technology
Haptic technology is now being used in new fields like education and robotics, when it was previously only found in consumer electronics like smartphones, tablets, and other mobile devices. Robot operators move a robotic hand or other end effectors with fine control by using haptic devices like gloves in robotics. Robot operators may precisely control the robot arms while sitting kilometres away from the production floor by donning haptic gloves. One of the top manufacturers of haptic gloves for robotic applications is HaptX (us).
Threat:
Technical challenges related to product design
The main obstacle in the haptic technology industry is the technological difficulty that manufacturers must overcome to include haptic capability in a variety of products, including smartphones, tablets, surgical tools, car dashboards, and gaming consoles. Any gadget that uses haptic technology will undoubtedly benefit from the inclusion of user-friendliness and guidance, but it is crucial to think carefully about which components would work best in a given system before introducing haptic feedback into a product. The actuator design and associated driving features are the main factors taken into account under system limits to provide the best feedback performance. The producers ought to look into how well the controller feature may be included into the overall product design.
COVID-19 Impact
The COVID-19 Outbreak caused a drop in demand for haptic technology in 2029. The COVID-19 Pandemic caused widespread closures of the public and private sectors. Guidelines for lockdown and social seclusion were implemented everywhere. The production and supply chain of haptic technology declined as a result of the lockdown. The shutdown had a significant impact on several businesses' industrial processes and caused supply chain disruptions. The market has been impacted by labour storages in the automotive and other industries. Due to the COVID-19 pandemic, businesses struggled to find the necessary labour for their operations.
The tactile segment is expected to be the largest during the forecast period
The tactile segment is estimated to have a lucrative growth, due to it enables consumers to customise their SMS alerts and other smartphone notifications. This is advantageous for haptic technologies. Increased consumer demand for a realistic smartphone experience and the release of Internet of Things (IoT)-enabled goods like smart watches and wristbands, which make it simpler for consumers to track their health, will both boost the industry.
The automobile and transportation segment is expected to have the highest CAGR during the forecast period
The automobile and transportation segment is anticipated to witness the fastest CAGR growth during the forecast period, due to the improvements in the automotive sector, the increased demand for advanced electronic systems among electrical vehicles, the choice for luxury and safety vehicles, and the integration of haptics technology into in-car entertainment systems are the key reasons behind this development. Accelerator pedals, dashboards, climate control displays, and steering wheels all make use of the technology. The leading automakers are integrating haptic technology into their models, including BMW, Honda, Toyota, Benz, Tesla, and Audi.
Region with highest share:
North America is projected to hold the largest market share during the forecast period owing to the existence of a major market leader like Immersion Corporation in the United States, North America is projected to become the dominant region in the global haptic technology market. Each button, slider, surface, and dial in the car can have realistic pushes, different textures, and clicks created by haptic technology. As a result, automakers are gradually integrating haptic technology into their vehicles. As a result, haptic technology's expanding use in the automotive industry is projected to spur market expansion.
Region with highest CAGR:
Europe is projected to have the highest CAGR over the forecast period; owing to Increased consumer expenditure on technologically sophisticated consumer electronics appliances is driving the market for haptic technology in Europe. Europe is demonstrating a huge need for Touchscreen technology, particularly for applications in the automotive, consumer electronics, and transportation industries. As a result, the market for haptic technology is expected to increase significantly in Europe. The region's market expansion will likely be fueled by the technology's cumulative use in computer-generated training applications.
Key players in the market
Some of the key players profiled in the Haptic Technology Market include Everlight Americas Inc., Citizen Electronics Co. Ltd., Nichia Corporation, Immersion Corporation, Cree Inc., OSRAM GmbH, LG INNOTEK, Toyoda Gosei Co. Ltd., Lumileds Holding B.V., Merck KGaA, Seoul Semiconductor Co. Ltd., Stanley Electric Co., Texas Instruments Incorporated, Ultrahaptic, Haption S.A., ON Semiconductor Corporation, Johnson Electric, Microchip Technologies Incorporated, Synaptics Incorporated and SMK Corporation.
Key Developments:
In February 2021, Immersion Corporation and Faurecia Corporation approved a multi-year licencing deal to allow Faurecia to purchase Immersion's haptic technology solutions. Faurecia will be able to design an intricate, interactive haptic user interface using cutting-edge technology from Immersion Corporation.
In November 2020, Ultraleap entered into an agreement with IPlan Ideas Events and its division, IPlan Ideas Technologies (IPI Tech), a subsidiary of UAE-based Hawas Group. The agreement aimed to bring Ultraleap's leading hand tracking and mid-air haptics technologies to customers in the UAE. IPI Tech introduced the technology to a wide range of industries, including kiosk makers, advertising and marketing, retail, and cinemas, among others.
In September 2020, Immersion signed a license renewal with LG electronics to continue the touch sense software and haptic technology in smartphones.
In June 2020, Immersion came into an agreement with Alps Alpine Co., a Japanese multinational corporation. The agreement aimed for the utilization of Immersion's Active Sensing technology into the Alps Alpine's touch feedback devices. The latest Active Sensing technology-enabled solutions offer a high-quality, high-fidelity, and quick-to-respond tactile impact for enhanced user experiences in automotive human-machine interfaces.
Components Covered:
Feedback Types Covered:
Technologies Covered:
Applications Covered:
Regions Covered:
What our report offers:
Free Customization Offerings:
All the customers of this report will be entitled to receive one of the following free customization options:
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Technology Analysis
3.7 Application Analysis
3.8 Emerging Markets
3.9 Impact of Covid-19
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.