市场调查报告书
商品编码
1276682
非球面透镜全球市场规模、份额、行业趋势分析报告:按供应、按类型、按製造技术、按应用、区域展望和预测,2023-2029 年Global Aspherical Lens Market Size, Share & Industry Trends Analysis Report By Offering, By Type, By Manufacturing Technology (Molding, Polishing & Grinding, and Others), By Application, By Regional Outlook and Forecast, 2023 - 2029 |
非球面透镜市场规模预计到 2029 年将达到 130 亿美元,预测期内復合年增长率为 6.4%。
有时在眼镜中使用非球面镜片。当远离镜片中心观看时,非球面眼镜镜片比传统的 "最佳形状" 镜片提供更清晰的视觉。另外,各向异性的缺陷可以通过降低透镜的放大作用来改善。无论光学质量如何,它都提供了一个更小的镜头,当其他人观看时,可以减少观看者眼睛的扭曲,这可能会带来更好的美学外观。
您可以使用任何材料製作此镜片,例如 Tribex 或聚碳酸酯。在增加光线到视网膜的反射的同时,非球面的独特结构使佩戴者可以佩戴更轻、弯曲更少的材料。适合使用非球面镜片的人是那些具有高阶屈光不正的人,通常为 +4.00 屈光度或更大。这种类型的镜片也用于老花镜和隐形眼镜,为尽可能多的人提供清晰的视野。屈光不正管理策略包括使用在白内障手术期间植入的非球面人工晶状体 (IOL)。
COVID-19 的影响分析
围绕 COVID-19 的不确定性继续影响消费者的信心。消费者也更加谨慎,在必需品上的支出比在奢侈品上的支出要少。全球供应链中断。一家知名的手机等消费品製造商于2020年2月关闭了在中国的工厂。对于消费电子产品製造商而言,手机生产和新产品发布的瓶颈是零件短缺、工厂关闭、检疫规定、物流和旅行限制。在预测期内,所有这些因素都阻止了非球面透镜市场的增长。
市场增长因素
扩大在光学和眼科应用中的使用
与传统的球面镜片相比,眼镜中的非球面镜片可以提供更广阔的视野、更少的畸变和更平坦的外观。在隐形眼镜中,使用非球面镜片可以减少像差并提高清晰度,尤其是在低光照条件下。为了改善白内障手术后患者的视觉效果,人工晶状体 (IOL) 中可以包含非球面表面,以提高对比敏感度并减少反射。由于老花眼、近视和白内障等眼病的增加、对先进视力矫正设备的需求增加以及镜片製造方法的技术发展,非球面镜片的市场正在扩大。
红外非球面镜头在监控摄像机中的使用增加
IR 非球面镜片比普通镜片传输更多的红外光,可能会在完全黑暗的情况下产生更清晰的图像。它对于预防犯罪和监视非常有效,因为它可以从各个角度捕获入侵者和可疑人员。这种镜头可以充当传感器,在发生入室盗窃或犯罪事件时发出警报,震慑小偷。该镜头有助于快速识别嫌疑人,而无需让目标知道相机指向的位置。从这个角度来看,非球面透镜市场有望在预测期内增长。
市场製约因素
非球面镜片製造成本高
由于对最先进的製造技术、工具和劳动力的需求,製造成本可能会上升。此外,必须使用优质玻璃和某些聚合物等尖端材料才能达到所需的精度和性能。这些材料很昂贵,这使得镜片更昂贵。因此,非球面透镜的高成本阻碍了它们的使用,尤其是在消费电子产品等对价格敏感的行业。这样一来,製造非球面镜片的高成本可能会在不久的将来阻碍市场扩张。
按类型展望
按类型划分,非球面透镜市场分为玻璃非球面透镜、塑料非球面透镜等。到 2022 年,塑料非球面透镜部分在非球面透镜市场中占据相当大的收入份额。球面像差是传统球面透镜的典型问题,通过使用塑料非球面透镜可将其降至最低。这提高了图像的清晰度和质量,尤其是在四个角上。此外,塑料非球面镜片比传统球面镜片更轻、更便携,可能使它们更易于处理和运输。
报价视角
非球面镜片市场分为单片非球面镜片和双片非球面镜片。在 2022 年的非球面镜片市场中,单片非球面镜片的收入份额最大。单片非球面透镜通常用于相机镜头、眼镜和其他需要校正像差的光学系统。非球面镜片具有更少的镜片元件和更简单的设计,使其更易于製造且成本更低。市场扩大的背后是研发的扩大和镜片需求的增加。
製造技术前景
根据製造技术,非球面透镜市场分为成型、抛光/研磨等。到 2022 年,成型将占非球面透镜市场的最大收入份额。模压成型的优势在于能够快速高效地製造出复杂、高精度的非球面透镜,这对于大规模生产非常有效。镜头通过精密玻璃成型製造,适用于各种应用,包括高端医疗设备、手机和相机。由于消费者需求的增加,高热稳定性非球面透镜的市场正在增长。
应用前景
按应用,非球面透镜市场细分为消费电子产品、数码相机、汽车、眼科、光纤光子学等。2022 年,消费电子领域在非球面透镜市场的收入份额占据显着份额。通过使用非球面镜片,智能手机製造商可以提高相机拍摄的图像质量并减少失真。此外,非球面镜头有助于相机模块的轻量化和小型化,从而可以支持智能手机的小型化。由于智能手机相机对图像质量的需求不断增加,非球面透镜的需求量很大。
区域展望
按地区划分,对北美、欧洲、亚太地区和 LAMEA 的非球面透镜市场进行了分析。到 2022 年,亚太地区将以最高的收入份额引领非球面透镜市场。这是因为非球面透镜在眼科、数码摄影、光纤和光子学以及无人驾驶汽车等各个行业中的使用越来越频繁。日本、中国和韩国对非球面镜片的需求增加,以及非球面镜片在眼科和自动驾驶汽车技术中的使用增加,预计也将推动该地区的市场扩张。
The Global Aspherical Lens Market size is expected to reach $13 billion by 2029, rising at a market growth of 6.4% CAGR during the forecast period.
A lens is called an aspheric lens or asphere if the surface profiles are not entirely sphere- or cylinder-shaped. An aspheric element-containing lens assembly is commonly called an aspherical lens in photography. Comparing an asphere to a basic lens, spherical aberration and other optical distortions like astigmatism can be reduced or eliminated.
A far more intricate multi-lens system can frequently be replaced by a single aspheric lens. Compared to the multi-lens design, the final product is sometimes cheaper and smaller. Wide-angle and fast normal multi-element lenses are made with aspheric elements to minimize aberrations. Additionally, they're employed in conjunction with reflecting components (catadioptric systems), like the aspherical Schmidt corrector plate found in Schmidt cameras and Schmidt-Cassegrain telescopes. For collimating diode lasers, small molded aspheres are usually utilized.
There are situations when aspheric lenses are utilized in eyeglasses. When looking in directions other than the optical center of the lens, aspheric eyeglass lenses provide sharper vision than conventional "best form" lenses. Additionally, anisometropia may be helped by reducing the lens' magnifying impact. They might provide a smaller lens, unrelated to optical quality, and distort the viewer's eyes less when seen by other people, leading to a better aesthetic appearance.
Any material, including Trivex and polycarbonate, can create this lens. They can enhance how light reflects onto the retina while enabling users to wear a lighter, less-curved material because of their unique, non-spherical construction. Most suitable individuals using aspherical lenses are those with higher-order refractive defects, often +4.00 diopters or more. This type of lens is also used in reading glasses or contact lenses to provide clearer vision to as many individuals as possible. Refractive error management strategies include using aspherical intraocular lenses (IOLs) inserted during cataract surgery.
COVID-19 Impact Analysis
Uncertainties surrounding COVID-19 still have an impact on consumer confidence. Furthermore, Consumers have continued to exercise greater caution and have reduced their expenditure on necessities rather than luxuries. Disruptions to the world's supply chains are occurring. Well-known manufacturers of cell phones and other consumer goods closed their factories in China in February 2020. For consumer electronics manufacturers, the bottlenecks in producing handsets and introducing new products were shortages of components, closures of factories, quarantine regulations, logistics, and travel restrictions. All these factors halted the growth of the aspherical lens market during the projection period.
Market Growth Factors
Growing use in optical instruments & ophthalmic applications
Aspherical lenses in eyeglasses can provide a wider field of view, less distortion, and a flatter appearance than traditional spherical lenses. When used with contact lenses, an aspherical shape can reduce aberrations and enhance clarity, particularly in dim lighting. To improve the visual results for patients after cataract surgery, aspherical surfaces can be included in intraocular lenses (IOLs), increasing contrast sensitivity and reducing reflection. The market for aspherical lenses is expanding due to rising rates of eye conditions such as presbyopia, myopia, and cataracts, as well as rising demand for sophisticated vision-correction tools and technological developments in lens production methods.
Rising use of IR aspherical lenses in surveillance cameras
An IR aspherical lens may capture crisper images even in complete darkness because it transmits more infrared light than a regular lens. When it's important to capture different images of intruders or suspicious activities, this is very helpful in security and surveillance applications. The lenses serve as sensors that sound alarms in the case of a break-in or crime, deterring thieves. These lenses help identify suspects quickly without letting the target know where the camera is pointing right now. In light of this, the aspherical lens market will grow over the forecast period.
Market Restraining Factors
High cost of manufacturing aspherical lenses
The requirement for cutting-edge manufacturing techniques, tools, and labor may raise the cost of production. To attain the required accuracy and performance, such lenses must also be made of cutting-edge materials, such as high-quality glass or certain polymers. These materials can be pricey, pushing the lens's price. Thus, aspherical lenses' high price may prevent some applications from utilizing them, especially in industries sensitive to pricing, like consumer electronics, wherein the price is a key consideration. Thus, the high cost of producing these lenses may hinder market expansion in the near future.
Type Outlook
Based on type, the aspherical lens market is characterized into glass aspherical lens, plastic aspherical lens, and others. In 2022, the plastic aspherical lenses segment covered a considerable revenue share in the aspherical lens market. Spherical aberration, a typical problem with conventional spherical lenses, is minimized using plastic aspherical lenses. This improves the image's clarity and quality, especially around the corners. In addition, plastic aspherical lenses are frequently lighter and more portable compared to conventional spherical lenses, which might make them simpler to handle and transport.
Offering Outlook
On the basis of offering, the aspherical lens market is classified into single aspherical lens and double aspherical lens. The single aspherical lens segment witnessed the largest revenue share in the aspherical lens market in 2022. Single aspherical lenses are often utilized in camera lenses, eyewear, and other optical systems where aberrations must be corrected. Because fewer lens elements and a simpler design for a single aspherical lens make it easier to manufacture and less expensive. Market expansion is being driven by expanding R&D efforts and rising demand for such lenses.
Manufacturing Technology Outlook
By manufacturing technology, the aspherical lens market is divided into molding, polishing & grinding, and others. The molding segment dominated the aspherical lens market with the maximum revenue share in 2022. The molding method has the benefit of making complex, high-precision aspherical lenses quickly and effectively, which is very helpful for mass manufacturing. Lenses are produced using precision glass molding for various uses, including high-end medical devices, cell phones, and cameras. The high-thermal stability aspherical lens market is expanding due to rising consumer demand.
Application Outlook
Based on application, the aspherical lens market is segmented into consumer electronics, digital cameras, automotive, ophthalmic, fiber optics & photonics, and others. In 2022, the consumer electronics segment recorded a remarkable revenue share in the aspherical lens market. Smartphone makers can enhance the quality of the images and lessen distortion in the pictures captured by their cameras by utilizing aspherical lenses. Additionally, aspherical lenses can help the camera module become lighter and smaller, which makes it simpler to incorporate into the small-footprint designs of contemporary smartphones. Aspherical lenses are in high demand due to the increasing desire for better image quality from smartphone cameras.
Regional Outlook
Region wise, the aspherical lens market is analyzed across North America, Europe, Asia Pacific, and LAMEA. In 2022, the Asia Pacific region led the aspherical lens market by generating the highest revenue share. This is because aspherical lenses are used more often in various industries, including ophthalmology, digital photography, fiber optics & photonics, and driverless vehicles. The market expansion in this region is also anticipated to be fueled by the rising demand for aspherical lenses in Japan, China, and South Korea and the expanding use of aspherical lenses in ophthalmology and self-driving vehicle technologies.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Nikon Corporation, Canon, Inc., Panasonic Holdings Corporation, Hoya Corporation, Thorlabs, Inc., AGC, Inc., Carl Zeiss AG, Tokai Optical Co., Ltd., Calin Technology Co., Ltd. and Largan Precision Co., Ltd.
Strategies Deployed in Aspherical Lens Market
Apr-2023: Canon Europe released RF 100-300mm F2.8L IS USM. The new telephoto zoom lens is compact and lightweight, has a minimum focusing distance of 1.8m, a 0.16x maximum magnification, and weighs 2.59kg.
Feb-2023: Nikon introduced NIKKOR Z 26mm f/2.8 lens in India. The new NIKKOR Z 26mm f/2.8 lens is a part of the NIKKOR Z series. The lens is 23.5 mm long and has a 70 mm diameter. Additionally, the lens has a minimum focus distance of 0.2m and is equipped with a stepping motor (STM), and a control ring for precise focus adjustment.
Jan-2023: Panasonic announced the launch of LUMIX S 14-28mm F4-5.6 MACRO, an ultra-wide-angle zoom lens based on the L-Mount system. The new range offers three lenses' options, LUMIX S 14-28mm F4-5.6 MACRO (S-R1428), LUMIX S 20-60mm F3.5-5.6 (S-R2060), and LUMIX S 70-300mm F4.5-5.6 MACRO O.I.S. (S-R70300). The LUMIX S 14-28mm F4-5.6 MACRO consists of 14 lens elements in 10 groups. The LUMIX S 14-28mm F4-5.6 MACRO features, 0.25-0.5x macro capability.
May-2022: Panasonic joined hands with Leica, a Germany-based manufacturer and distributor of optical lenses and cameras. The collaboration involves jointly developing new solutions and technologies, under the name L2 Technology. Further, this collaboration integrates Panasonic's video and digital technology and Leica's optical and imaging technology to develop innovative technologies.
Apr-2022: Canon unveiled CN-E20-50mm T2.4 L F/FP wide-angle zoom lens, and CN-E45-135mm T2.4 L F/FP telephoto zoom lens. The wide-angle lens has a focal length range of 20-50mm and 45-135mm for the telephoto zoom lens. The new lenses possess the ability to lessen chromatic aberrations and color smudging.
Apr-2022: HOYA Vision Care introduced PENTAX Optical Lenses in the United States. The PENTAX Optical Lenses range includes single vision, digital lenses, progressive lenses, etc. The introduction of the PENTAX range in the United States makes HOYA a part of the competition in the US retail market.
Jun-2021: Canon unveiled RF14-35MM F/4L IS USM ultra-wide-angle zoom lens. The ultra wide-angle lens features a 14-35mm focal range, and 0.38 magnification at 35mm.
Market Segments covered in the Report:
By Offering
By Type
By Manufacturing Technology
By Application
By Geography
Companies Profiled
Unique Offerings from KBV Research
List of Figures