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市场调查报告书
商品编码
1468356
2024-2032 年按技术(光学、驱动器和控制器电子设备、光源等)、应用(航太、医疗、游戏和娱乐、体育、训练和模拟等)和地区分類的虚拟视网膜显示市场报告Virtual Retinal Display Market Report by Technology (Optics, Driver and Controller Electronics, Light Source, and Others), Application (Aerospace, Medical, Gaming and Entertainment, Sports, Training and Simulation, and Others), and Region 2024-2032 |
2023年,全球IMARC Group视网膜显示市场规模达200亿美元。
虚拟视网膜显示器(VRD)是指利用低能量雷射将影像直接显示到人类视网膜上的头戴式显示设备。它为用户提供了观看标准尺寸显示器漂浮在几英尺之外的错觉。虚拟视网膜显示器具有许多优点,例如增强的亮度、高对比度、改进的解析度和低功耗。因此,它在众多行业中得到了广泛的应用,包括医疗保健、军事、航空和战术、工程、游戏和娱乐、体育等。
对增强用户体验、更好的内容连接和改善视场(FoV)同时保持高水准隐私的需求不断增长,这主要推动了全球虚拟视网膜显示器市场。除此之外,游戏领域越来越多地采用虚拟和增强现实,以及 VRD 与游戏机、智慧型手机和笔记型电脑的日益集成,进一步推动了市场的成长。此外,VRD 在医疗保健领域的广泛应用以及在治疗和外科手术中的潜在应用是一个重要的成长诱导因素。此外,VRD 在工程行业中的使用率不断提高,为现场员工提供即时存取关键资讯(包括操作协议和电路图)的机会,这也促进了市场的成长。除此之外,VRD 在航空航太领域的培训和模拟活动中的广泛使用,因为它透过模仿体验来节省成本并消除了对实体设定的要求,正在对市场成长产生积极影响。此外,引进先进 VRD 技术的广泛研发活动也推动了全球市场的发展,该技术提供辐射防护以减轻任何健康风险。未来几年,可即时创建高解析度影像的轻型紧凑设备的日益普及预计将推动全球虚拟视网膜显示器市场。
The global virtual retinal display market size reached US$ 20.0 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 241.9 Billion by 2032, exhibiting a growth rate (CAGR) of 31.3% during 2024-2032.
A virtual retinal display (VRD) refers to a head-mounted display device that utilizes low-energy lasers to directly show a picture onto the human retina. It offers user with the illusion of watching a standard-sized display floating several feet away. A virtual retinal display provides numerous benefits, such as enhanced brightness, high contrast, improved resolution, and low power consumption. As a result, it finds a wide range of applications across numerous industries, including healthcare, military, aviation and tactical, engineering, gaming and entertainment, sports, etc.
The increasing demand for enhanced user experience, better content connectivity, and improved Field of View (FoV) while maintaining high levels of privacy is primarily driving the global virtual retinal display market. In addition to this, the rising adoption of virtual and augmented reality in the gaming sector along with the growing integration of VRD with gaming consoles, smartphones, and laptops is further propelling the market growth. Moreover, the widespread utilization of VRD in the healthcare sector with potential applications in therapeutics and surgical procedures is acting as a significant growth-inducing factor. Additionally, the elevating employment of VRD in the engineering industry for providing field employees with access to crucial information, including operational protocols and circuit diagrams, in real-time is also augmenting the growth of the market. Besides this, the expanding usage of VRD in training and simulation activities in the aerospace sector as it saves costs by mimicking the experience and eliminates the requirement for physical setup, is positively influencing the market growth. Furthermore, the extensive R&D activities for the introduction of advanced VRD technology that offers radiation protection to mitigate any health risk are also propelling the global market. In the coming years, the emerging popularity of lightweight and compact devices that create images with high resolution and in real-time is expected to drive the global virtual retinal display market.
IMARC Group provides an analysis of the key trends in each sub-segment of the global virtual retinal display market report, along with forecasts at the global, regional and country level from 2024-2032. Our report has categorized the market based on technology and application.
Optics
Driver and Controller Electronics
Light Source
Others
Aerospace
Medical
Gaming and Entertainment
Sports
Training and Simulation
Others
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
The competitive landscape of the industry has also been examined along with the profiles of the key players being Avegant Corp., Himax Technologies Inc., Innovega Inc., Magic Leap Inc., Omnivision Technologies Inc., Optinvent, QD Laser and Vuzix Corporation.