市场调查报告书
商品编码
1603825
2030 年分子冷光显示器市场预测:按薄膜类型、材料类型、最终用户和地区进行的全球分析Electroluminescent Display Market Forecasts to 2030 - Global Analysis By Film Type, Material Type, End User and By Geography |
根据Stratistics MRC预测,2024年全球分子冷光显示器市场规模将达377.4亿美元,预计2030年将达到647.1亿美元,预测期内复合年增长率为9.4%。
分子冷光显示器 (ELD) 是一种平板显示器,当电流通过某些称为分子冷光(EL) 材料的材料时,它会发光。由于这些材料会响应电场而发光,因此 ELD 具有高能效,并且可以在紧凑的外形尺寸中产生明亮、Sharp Corporation的图像。与依赖背光的传统显示器不同,ELD 直接从材料本身产生光,从而实现高对比度和宽视角。
对节能显示器的需求不断增长
对节能显示器不断增长的需求正在推动分子冷光(EL)显示器的发展。 EL 显示器以其低功耗、鲜艳的色彩以及无需背光即可运行的能力而闻名,这使其成为重视能源效率的行动装置和应用的理想选择。由于消费性电子产品和其他数位技术需要更长的电池寿命和永续性,EL 显示器因其在电流通过时直接从材料中发光的能力而脱颖而出,从而减少了能源浪费。此外,与 LCD 和 LED 等传统显示技术相比,EL 显示器具有卓越的影像清晰度和更快的反应时间。
製造成本高
高製造成本是广泛采用分子冷光(EL)显示器的主要障碍。 EL显示器因其轻薄、柔韧以及明亮、清晰的影像而受到重视,但它们需要复杂的材料和复杂的製造工艺,使得製造成本昂贵。造成高製造成本的主要因素是需要专门的有机材料和高精度製造技术。例如,製造磷光体层和沉淀导电材料需要真空沉淀和受控环境等先进技术,增加了设备成本和能源消费量。这些因素阻碍了市场的成长。
穿戴式装置日益普及
随着穿戴式科技越来越融入日常生活,对轻盈、灵活和节能的显示解决方案的需求不断增长。当电流通过时发光的 ELD 对于穿戴式装置来说具有多种优势,包括轻薄、灵活和低功耗,使其成为智慧型手錶、健身追踪器和扩增实境眼镜等小型便携式设备的理想选择。 ELD 更具吸引力,因为即使在恶劣的环境条件下,它们也能提供高亮度、鲜艳的色彩和均匀的光分布。随着穿戴式装置不断发展以支援更先进的功能,对耐用且高效的创新显示技术的需求变得至关重要。
耐用性和寿命问题
虽然分子冷光(EL) 显示器提供充满活力且节能的照明,但它们在耐用性和寿命方面面临重大挑战。主要问题之一是用于产生光的磷光体的劣化。随着时间的推移,磷光体会失去有效发光的能力,导致亮度和颜色品质下降。长时间暴露在高电压、高温和潮湿等环境条件下等因素会加速这种劣化。 EL 显示器容易受到物理损坏,因为其结构中使用的薄层很脆弱。此外,EL 显示器的使用寿命受到电极和保护层磨损的限制,这可能会损坏并影响效能。
COVID-19 大流行对分子冷光(EL) 显示器市场产生了重大影响,扰乱了供应链和全行业的需求。由于世界各地的製造地关闭和国际贸易受到限制,EL 组件的生产面临延误和短缺。疫情造成的经济不确定性减少了消费者支出和非必要技术投资,进一步影响了需求。从积极的一面来看,向远距工作和线上学习的转变增加了对数位电子看板、教育工具和消费性电子产品中显示器的需求。
分子冷光面板领域预计将在预测期内成为最大的领域
透过提供具有增强亮度和灵活性的先进照明和显示解决方案,分子冷光面板领域预计将在预测期内占据最大份额。 EL 面板由一层薄薄的磷光体体製成,当电流通过时,磷光体会发光。与传统显示技术不同,EL 面板可以製造成各种形状、尺寸和颜色,使其能够广泛应用于从汽车仪表板到消费性电子产品中的柔性显示器等领域。与传统光源相比,这些面板功耗更低,产生的热量最少,并且使用寿命更长,这使它们成为行动和电池供电设备的有吸引力的选择。
商业照明领域预计在预测期内复合年增长率最高。
商务用照明产业预计在预测期内将快速成长。 EL 技术使用电流通过时会发光的磷光体材料,由于其薄度、重量轻和多功能性,在商务用应用中越来越受欢迎。与传统照明不同,EL 显示器可以以低功耗产生均匀的照明,使其成为从标誌到室内照明等各种商业应用的理想选择。随着材料科学和电子学领域的创新不断进步,EL 显示器变得更加明亮、色彩更准确且使用寿命更长。这些进步不仅提高了商业空间的视觉吸引力,而且还降低了营运成本,使 EL 显示器成为对企业有吸引力的选择。
预计北美地区将在整个预测期内占据最大的市场份额。分子冷光(EL) 显示器以其耐用性、重量轻以及能够在恶劣环境下运作而闻名,并且正在成为军事应用中的重要组件。这些显示器用于航空电子设备、通讯系统和仪器板,这些设备在恶劣条件下的可视性和性能至关重要。 EL显示器具有低功耗、照度下的高可视性以及抗振动和耐极端温度等优点,为北美国防承包商实现技术现代化并采用尖端系统来增强情境察觉能力提供了优势。
欧洲地区在预测期内的复合年增长率最高。混合显示器结合了有机发光二极体(OLED)、量子点和分子冷光材料等不同技术的优势,创造出更有效率、更灵活、更充满活力的显示器。混合ELD 正在广泛应用,包括汽车仪表板、穿戴式装置和大型指示牌。这些技术的整合不仅提供了更好的色彩精度和更低的功耗,而且还能够开发更薄、更轻、适应性更强的显示面板。
According to Stratistics MRC, the Global Electroluminescent Display Market is accounted for $37.74 billion in 2024 and is expected to reach $64.71 billion by 2030 growing at a CAGR of 9.4% during the forecast period. An Electroluminescent Display (ELD) is a type of flat panel display that produces light when an electric current passes through certain materials, known as electroluminescent (EL) materials. These materials emit light in response to an electric field, making ELDs energy-efficient, with the ability to generate bright, sharp images in a compact form. Unlike traditional displays that rely on backlighting, ELDs generate light directly from the material itself, offering high contrast ratios and wide viewing angles.
Growing demand for energy-efficient displays
The growing demand for energy-efficient displays has significantly boosted the development of Electroluminescent (EL) displays. EL displays are known for their low power consumption, bright colors, and ability to operate without a backlight, making them ideal for portable devices and applications where energy efficiency is crucial. As consumer electronics and other digital technologies demand longer battery life and improved sustainability, EL displays stand out due to their ability to emit light directly from the material when an electric current passes through it, which reduces energy waste. Additionally, EL displays offer superior image clarity and faster response times compared to traditional display technologies like LCD or LED.
High manufacturing costs
High manufacturing costs are a significant barrier to the widespread adoption of electroluminescent (EL) displays. EL displays, which are valued for their thinness, flexibility, and bright, clear visuals, require complex materials and intricate production processes that drive up their costs. The main factors contributing to high manufacturing costs include the need for specialized organic materials and high-precision fabrication techniques. For instance, the production of phosphor layers and the deposition of conductive materials require advanced technology, such as vacuum deposition and controlled environments, which increase both the equipment cost and energy consumption. These elements are hindering the market growth.
Growing popularity of wearable devices
As wearable technology becomes more integrated into daily life, there is an increasing demand for lightweight, flexible, and energy-efficient display solutions. ELDs, which emit light when an electric current passes through them, offer several advantages for wearables, including thinness, flexibility, and low power consumption, making them ideal for small, portable devices like smartwatches, fitness trackers, and augmented reality glasses. The ability of ELDs to deliver high brightness, vibrant colors, and uniform light distribution, even in challenging environmental conditions, further increases their appeal. As wearable devices evolve to support more advanced functionalities, the need for innovative display technologies that are both durable and efficient becomes paramount.
Durability and longevity issues
Electroluminescent (EL) displays, while offering vibrant and energy-efficient lighting, face significant challenges in durability and longevity. One primary issue is the degradation of the phosphor material used to generate light. Over time, the phosphors lose their ability to emit light efficiently, leading to diminished brightness and color quality. This degradation is accelerated by factors such as prolonged exposure to high voltages, heat, and environmental conditions like humidity. EL displays are often more susceptible to physical damage due to the fragility of the thin layers used in their construction. The lifetime of EL displays is also limited by the wear and tear of the electrodes and the protective layers, which can break down, affecting performance.
The COVID-19 pandemic significantly impacted the electroluminescent (EL) display market, disrupting both supply chains and demand across industries. With global manufacturing hubs in lockdown and restrictions on international trade, the production of EL components faced delays and shortages. The economic uncertainty caused by the pandemic led to reduced consumer spending and cutbacks in non-essential technological investments, further affecting demand. On the positive side, the growing shift toward remote work and online learning increased the need for displays in digital signage, educational tools and consumer electronics.
The Electroluminescent Panels segment is expected to be the largest during the forecast period
Electroluminescent Panels segment is expected to dominate the largest share over the estimated period, by providing advanced lighting and display solutions that offer improved brightness and flexibility. EL panels are made of thin layers of phosphor material that emit light when an electric current is passed through them. Unlike traditional display technologies, EL panels can be produced in various shapes, sizes, and colors, enabling their integration into a wide range of applications, from automotive dashboards to flexible displays for consumer electronics. These panels consume less power, generate minimal heat, and have a longer lifespan compared to conventional light sources, making them an attractive choice for portable and battery-powered devices.
The Commercial Lighting segment is expected to have the highest CAGR during the forecast period
Commercial Lighting segment is estimated to grow at a rapid pace during the forecast period. EL technology, which uses phosphor materials that emit light when an electric current is applied, is gaining popularity in commercial applications for its thin, lightweight, and versatile nature. Unlike traditional lighting, EL displays are capable of producing uniform illumination with low power consumption, making them ideal for a range of commercial uses, from signage to interior lighting. As innovations in materials science and electronics continue, EL displays are becoming brighter, more color-accurate, and longer-lasting. These advancements not only improve the visual appeal of commercial spaces but also reduce operational costs, making EL displays an attractive option for businesses.
North America region is poised to hold the largest share of the market throughout the extrapolated period. Electroluminescent displays, known for their durability, lightweight nature, and ability to operate in extreme environments, are becoming crucial components in military applications. These displays are used in avionics, communication systems, and instrumentation panels, where visibility and performance under challenging conditions are paramount. As North American defense contractors modernize their technologies and embrace cutting-edge systems for enhanced situational awareness, EL displays offer advantages like low power consumption, high visibility in low-light conditions, and the ability to withstand vibration and temperature extremes.
Europe region is estimated to witness the highest CAGR during the projected time frame. Hybrid displays combine the strengths of different technologies, such as organic light-emitting diodes (OLEDs), quantum dots, and electroluminescent materials, to create more efficient, flexible and vibrant displays. Hybrid ELDs are being incorporated into a wide range of applications, including automotive dashboards, wearable devices, and large-scale signage. The integration of these technologies not only offers better color accuracy and lower power consumption but also enables the development of thinner, lighter and more adaptable display panels.
Key players in the market
Some of the key players in Electroluminescent Display market include Cochief Industrial Co., Ltd, Crystal Display Systems Ltd, Orbit Electronics Group, Panasonic Corporation, Planar Systems, Inc, Printed Electronics Ltd, Sharp Corporation, Sony Corporation and Technomark, Inc.
In May 2024, Samsung Display unveiled its inaugural QD-LED display at Display Week 2024. The 18-inch prototype, entirely fabricated through inkjet printing, represents a significant advancement in display technology. This innovative approach applies electrical current directly to quantum dots, eliminating the need for conventional LED or OLED components. The prototype features a resolution of 3200x1800 pixels (202 ppi) and achieves a brightness of 250 nits, establishing it as the largest QD-LED display showcased to date.
In April 2023, the QL-Tex project launched to advance ambient lighting and display technology by integrating electroluminescence (EL) with textiles using colloidal quantum dots (QDs). Funded by the German Research Foundation (DFG), the initiative aims to enhance the performance and versatility of EL textiles known for their thin and robust nature.
In January 2023, Sony Electronics introduced two new series of their renowned Crystal LED premium displays, which offered scalability. The BH-series showcased vibrant and bright displays, while the CH-series delivered an immersive viewing experience. These displays were specifically designed for corporate settings, retail environments, and screening rooms.