![]() |
市场调查报告书
商品编码
1679331
2030 年 UV LED 市场预测:按类型、电压、功率、分销管道、应用、最终用户和地区进行全球分析UV LED Market Forecasts to 2030 - Global Analysis By Type (UV-A LED, UV-B LED, and UV-C LED), Voltage, Power Output, Distribution Channel, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球紫外线 LED 市场规模预计在 2024 年将达到 17.2 亿美元,到 2030 年将达到 70.8 亿美元,预测期内的复合年增长率为 26.6%。
当电流通过称为 UV LED(紫外线发光二极体)的半导体光源时,它会发射紫外线(UV)射线。与传统紫外线灯相比,紫外线 LED 更节能、更小、寿命更长。这些 LED 有广泛的应用范围,包括水质净化、表面杀菌、墨水干燥和假币检测。 UV LED 可以更好地控制为特定目的而发射的光的波长,并且比基于汞的 UV 灯更环保。
根据国际机器人联合会 (IFR) 的数据,到 2026 年工业机器人的安装基数预计将达到 718,000 台,为製造过程中的 UV LED 应用创造大量机会。
灭菌需求增加
由于各行各业对有效消毒方法的需求,紫外线 LED 越来越多地被用于对錶面、空气和水进行消毒。特别是在医疗保健领域,为确保卫生,对紫外线消毒设备的需求正在激增。此外,食品和饮料行业正在采用紫外线 LED 技术来维护产品安全并延长保质期。对保持卫生和防止感染疾病传播的持续关注进一步推动了对紫外线消毒解决方案的需求。此外,紫外线 LED 技术的进步提高了效率并延长了使用寿命,也促进了市场的成长。
缺乏标准化
不同规格的UV LED由不同的製造商生产,从而导致品质和性能的差异。这种缺乏一致性的情况使得最终消费者很难比较产品并选择最适合他们要求的选项。此外,缺乏标准化测试和评估技术阻碍了全行业基准的建立。由于地区监管规范的差异,全球范围内紫外线 LED 技术的采用变得更加复杂。这些挑战迫切需要製定行业标准来确保紫外线 LED 产品的可靠性和相容性。
紫外线固化需求不断成长
UV LED 广泛用于固化黏合剂、被覆剂和油墨,具有固化时间更快、能源效率更高等优点。电子产业是紫外线固化需求的主要贡献者,因为它需要针对各种应用提供精确、高效的固化製程。此外,汽车和航太工业正在采用紫外线固化进行涂层和黏合剂应用,从而推动市场成长。预计未来紫外线 LED 技术的发展和新应用的创造将为紫外线固化解决方案产业提供支援。
特定产业采用的障碍
高昂的前期成本以及对紫外线 LED 优势的认识有限阻碍了一些潜在用户。在流程和技术成熟的行业中,人们对于采用新方法存在着抵触情绪,导致市场渗透缓慢。此外,对紫外线辐射带来的潜在健康风险的担忧可能会阻碍某些地区的采用。另一个问题是操作 UV LED 设备需要专门的培训和专业知识。克服这些采用障碍需要有针对性的宣传活动和具有成本效益的解决方案来展示紫外线 LED 技术的价值。
COVID-19 的影响
COVID-19 疫情对紫外线 LED 市场产生了重大影响,推动了对消毒和灭菌解决方案的需求增加。疫情期间人们对卫生和消毒的重视程度不断提高,加速了紫外线 LED 技术的采用。医疗机构、公共场所和交通工具都已实施紫外线消毒,以减轻病毒的传播。然而,疫情期间的供应链中断和製造挑战正在影响紫外线 LED 产品的生产和供应。这场疫情也凸显了强而有力的消毒方法的重要性,鼓励对紫外线 LED 技术进行长期投资。
预测期内仿冒品检测市场规模预计将达到最大
由于对可靠、有效的仿冒品检测方法的需求日益增长,预计预测期内仿冒品检测领域将占据最大的市场占有率。製药和消费品等各行业的假冒活动日益增多,推动了对先进检测解决方案的需求。此外,政府和组织正在采取严厉措施打击假冒行为,进一步促进该行业的发展。
预计医疗保健领域在预测期内将实现最高复合年增长率
由于紫外线 LED 技术在杀菌和消毒领域的应用日益广泛,因此预计医疗保健领域将在预测期内实现最高成长率。医疗保健产业对保持卫生和预防感染的重视推动了对紫外线消毒设备的需求。医院、诊所和实验室正在采用紫外线 LED 技术来确保安全无菌的环境。此外,医疗机构在空气和水净化中使用紫外线 LED 也促进了市场的成长。
由于工业化的快速发展和紫外线 LED 技术在各种应用中的广泛应用,预计亚太地区将在预测期内占据最大的市场占有率。中国、日本和韩国等国家凭藉着强大的製造能力和技术进步处于这一成长的前沿。该地区不断扩大的医疗保健基础设施和对紫外线消毒益处的认识不断提高也促进了市场的成长。此外,对节能环保解决方案的不断增长的需求也推动了紫外线 LED 技术的采用。
在预测期内,由于各行各业越来越多地采用 UV LED 技术,预计北美将呈现最高的复合年增长率。该地区完善的医疗保健基础设施和对先进消毒方法的关注正在推动对紫外线 LED 解决方案的需求。主要紫外线 LED 製造商的存在和持续的技术创新进一步推动了市场的成长。此外,食品饮料和製药等行业严格的卫生和安全法规也推动了紫外线消毒设备的采用。
According to Stratistics MRC, the Global UV LED Market is accounted for $1.72 billion in 2024 and is expected to reach $7.08 billion by 2030 growing at a CAGR of 26.6% during the forecast period. An electric current flowing through a semiconductor light source called a UV LED (Ultraviolet Light Emitting Diode) causes it to emit ultraviolet (UV) light. UV LEDs are more energy-efficient, smaller, and last longer than conventional UV lights. These LEDs have a wide range of uses, including water purification, surface sterilization, ink drying, and counterfeit currency detection. UV LEDs provide fine-grained control over the wavelength emitted for particular purposes and are more eco-friendly than mercury-based UV lamps.
According to the International Federation of Robotics (IFR), the installation of industrial robots is anticipated to reach 718 thousand units by 2026, creating numerous opportunities for UV LED applications in manufacturing processes.
Increasing demand for sterilization
UV LEDs are increasingly used for disinfecting surfaces, air, and water, driven by the need for effective sterilization methods in various industries. The healthcare sector, in particular, has seen a surge in demand for UV sterilization devices to ensure hygienic conditions. Additionally, the food and beverage industry is adopting UV LED technology to maintain safety and extend the shelf life of products. The ongoing emphasis on maintaining sanitation and preventing the spread of infectious diseases further fuels the demand for UV sterilization solutions. The advancements in UV LED technology, leading to higher efficiency and longer lifespan, also contribute to market growth.
Lack of standardization
UV LEDs with different specifications are produced by different manufacturers, which results in differences in quality and performance. Because of this lack of consistency, end consumers find it challenging to compare products and select the best option for their requirements. Furthermore, the creation of industry-wide benchmarks is hampered by the lack of standardized testing and assessment techniques. The global adoption of UV LED technology is made more difficult by regional differences in regulatory norms. These challenges necessitate the development of industry standards to ensure the reliability and compatibility of UV LED products.
Rising demand for UV curing
UV LEDs are widely used in the curing of adhesives, coatings, and inks, offering benefits such as faster curing times and energy efficiency. The electronics industry is a major contributor to the demand for UV curing, as it requires precise and efficient curing processes for various applications. Additionally, the automotive and aerospace industries are adopting UV curing for coating and bonding applications, driving market growth. Future developments in UV LED technology and the creation of new uses are anticipated to support the UV curing solutions industry.
Adoption barriers in certain industries
High initial costs and limited awareness about the advantages of UV LEDs deter some potential users. In industries with established processes and technologies, there is resistance to adopting new methods, leading to slower market penetration. Additionally, concerns about the potential health risks associated with UV exposure can hinder adoption in specific sectors. The need for specialized training and expertise to handle UV LED equipment also presents a challenge. Overcoming these adoption barriers requires targeted awareness campaigns and cost-effective solutions to demonstrate the value of UV LED technology.
Covid-19 Impact
The Covid-19 pandemic has significantly impacted the UV LED market, driving increased demand for disinfection and sterilization solutions. The heightened focus on hygiene and sanitization during the pandemic has accelerated the adoption of UV LED technology. Healthcare facilities, public spaces, and transportation systems have implemented UV sterilization to mitigate the spread of the virus. However, supply chain disruptions and manufacturing challenges during the pandemic have affected the production and availability of UV LED products. The pandemic has also underscored the importance of robust sterilization methods, prompting long-term investments in UV LED technology.
The counterfeit detection segment is expected to be the largest during the forecast period
The counterfeit detection segment is expected to account for the largest market share during the forecast period, due to the increasing need for reliable and effective counterfeit detection methods. The rise in counterfeit activities across various industries, including pharmaceuticals and consumer goods, drives the demand for advanced detection solutions. Additionally, governments and organizations are implementing stringent measures to combat counterfeiting, further supporting the growth of this sector.
The healthcare segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the healthcare segment is predicted to witness the highest growth rate, due to the rising adoption of UV LED technology for sterilization and disinfection purposes. The healthcare industry's focus on maintaining hygiene and preventing infections drives the demand for UV sterilization devices. Hospitals, clinics, and laboratories are incorporating UV LED technology to ensure safe and sterile environments. Additionally, the use of UV LEDs for air and water purification in healthcare facilities further contributes to market growth.
During the forecast period, Asia Pacific region is expected to hold the largest market share, due to the rapid industrialization and increasing adoption of UV LED technology in various applications. Countries such as China, Japan, and South Korea are at the forefront of this growth, driven by strong manufacturing capabilities and technological advancements. The region's expanding healthcare infrastructure and growing awareness about the benefits of UV sterilization also contribute to market growth. Additionally, the increasing demand for energy-efficient and environmentally friendly solutions supports the adoption of UV LED technology.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, owing to the increasing adoption of UV LED technology across various industries. The region's well-established healthcare infrastructure and focus on advanced sterilization methods drive the demand for UV LED solutions. The presence of leading UV LED manufacturers and continuous technological innovations further support market growth. Additionally, the stringent regulations regarding hygiene and safety in industries such as food and beverage and pharmaceuticals boost the adoption of UV sterilization devices.
Key players in the market
Some of the key players profiled in the UV LED Market include Osram Licht AG, Royal Philips, LG Innotek, Nitride Semiconductors Co., Ltd., Seoul Viosys Co., Ltd., Heraeus Noblelight GmbH, San'an Optoelectronics Co., Ltd., UV LED, Inc., Kyocera Corporation, Nichia Corporation, Luminus Devices, Inc., DOWA Electronics Materials Co., Ltd., Epistar Corporation, Wurth Elektronik GmbH & Co. KG, Phoseon Technology, Excelitas Technologies Corp., and Bolb Inc.
In December 2024, Royal Philips announced the expansion of its strategic partnership with Sim&Cure, a leading provider of advanced digital solutions for neurovascular therapy. The partnership between the two companies started 5 years ago and is now entering into a next phase.
In August 2024, Sanan Semiconductor has entered into a Research Partnership with the Institute for Power Electronics (LEE) at FAU Erlangen-Nurnberg, one of the most innovative universities worldwide. This research will focus on advanced innovation in Power Electronic systems focusing on SiC technology.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.