An optical lens with a non-spherical surface shape is called a high-precision asphere lens. Rather, it has a non-spherical (aspheric) surface with counter-curved edges. Light rays hitting the lens's periphery and those hitting the center point converge at the same focus point due to these counter-curves. Furthermore, because standard lenses have spherical elements, some cannot focus light from their edges at the same place as they do from their centers. To avoid excessive field curvature, especially with wide-angle lenses, designers frequently stop the production of their optical devices and remove the corners.
As a result, aspheric lenses are used in expensive optics to produce more detailed images and reduce or eliminate specific optical faults, including field curvature spherical aberration, chromatic aberrations, and others fueling the market's expansion. With the growth of their economies, people's quest for a greater quality of living, increased image, and mobile phone applications, the market has experienced tremendous growth in developing markets. Many companies entered the market, updated their technology, and continued to innovate their products, which boosted the adoption of higher-performing, more efficient, and more affordable aspherical lenses.
Europe is recognized as one of the top technological leaders and manufacturers of highly precise asphere products. The need for high-precision aspheric lenses is rising in Europe as a result of the development of a wide range of low-cost products based on lens technology. The expansion of the economy is being fueled by the emergence of new startups and players combining and purchasing one another in their respective industries. Germany, France, and Spain have been referred to as three of the most significant participants in Europe's aspherical lenses market due to their larger consumer bases and availability of manufacturers & suppliers. As a result, it is anticipated that the use of aspherical lenses will rise in the region.
The Germany market dominated the Europe Aspherical Lens Market by Country in 2022, and would continue to be a dominant market till 2029; thereby, achieving a market value of $809.3 Million by 2029. The UK market is experiencing a CAGR of 5.1% during (2023-2029). Additionally, The France market would display a CAGR of 6.8% during (2023-2029).
Based on Offering, the market is segmented into Single and Double. Based on Type, the market is segmented into Glass, Plastic, and Others. Based on Manufacturing Technology, the market is segmented into Molding, Polishing & Grinding, and Others. Based on Application, the market is segmented into Opthalmic, Consumer Electronics, Digital Cameras, Automotive, Fiber Optics & Photonics and Others. Based on countries, the market is segmented into Germany, UK, France, Russia, Spain, Italy, and Rest of Europe.
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.
Scope of the Study
By Offering
- Single
- Double
By Type
- Glass
- Plastic
- Others
By Manufacturing Technology
- Molding
- Polishing & Grinding
- Others
By Application
- Opthalmic
- Consumer Electronics
- Digital Cameras
- Automotive
- Fiber Optics & Photonics
- Others
By Country
- Germany
- UK
- France
- Russia
- Spain
- Italy
- Rest of Europe
Key Market Players
List of Companies Profiled in the Report:
- Nikon Corporation
- Canon, Inc.
- Panasonic Holdings Corporation
- Hoya Corporation
- Thorlabs, Inc.
- AGC, Inc.
- Carl Zeiss AG
- Tokai Optical Co., Ltd.
- Calin Technology Co., Ltd.
- Largan Precision Co., Ltd
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- Exhaustive coverage
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Table of Contents
Companies Mentioned
- Nikon Corporation
- Canon, Inc.
- Panasonic Holdings Corporation
- Hoya Corporation
- Thorlabs, Inc.
- AGC, Inc.
- Carl Zeiss AG
- Tokai Optical Co., Ltd.
- Calin Technology Co., Ltd.
- Largan Precision Co., Ltd
Methodology
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