The optical coating equipment supports in application of optical coatings done over the target material. The performance of an optical coating is dependent upon the number of layers, thickness of the individual layers, and the refractive index difference at the layer interfaces.
2. The optical coating equipment supports in application of optical coatings done over the target material. The
performance of an optical coating is dependent upon the number of layers, thickness of the individual
layers, and the refractive index difference at the layer interfaces. Most common types of coatings are used
on precision optics, including anti-reflection (AR) coatings, high reflective (mirror) coatings, beam splitter
coatings, and filter coatings. Some of the technologies evolve in optical coating are magnetron sputtering,
ion-assisted e-beam deposition and resistance evaporation. Furthermore, the advancement of fabrication
technology has enhanced the optical coating capabilities to deliver multilayer and high-quality coatings.
Many of the CNC machines performs custom-designed for glass fabrication, coring, milling, sawing, and
beveling quickly and accurately.
The growth of global optical coating equipment market is majorly driven by factors such as advancement of
fabrication technology, rising adoption of optically coated materials around different industry verticals and
increasing demand for renewable energy applications. Additionally, rising product use by automobile
manufacturers to provide technologically innovative automobile displays and infotainment system is also
supporting the growth of the market. However, high cost of installation for the equipment is the major
drawback for the market restricting the growth. Moreover, development of equipment with lower operations
costs and large production of optical coatings are expected to generate several growth opportunities for the
market in the coming future.
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4. Material, technology, end-user industry and geography are the major segments considered in the
global optical coating equipment market. On the basis of material type, the segment includes reflective
coatings, filter coatings, transparent conductive coatings, antireflective coatings and other materials.
By technology, the segment is bifurcated into evaporation deposition, advanced plasma reactive
sputtering and ion beam sputtering. Further, the end-user industry segment consists of medical,
electronics, telecommunications, solar, automotive and others end-user industries.
Based on geography, the global optical coating equipment market is segmented into North America,
Europe, Asia-Pacific, and Rest of the World (RoW). North America is further bifurcated in U.S.,
Canada, and Mexico whereas Europe consists of UK, Russia, Germany, France, Italy, and Rest of
Europe. Asia-Pacific is segmented into India, China, Japan, South Korea and Rest of Asia-Pacific while
RoW is bifurcated into South America, Middle East, and Africa.
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6. The report will provide detailed analysis of the Global Optical Coating Equipment Market with
respect to major segments such as material, technology, end-user industry and geography.
The report will include the qualitative and quantitative analysis with market estimation over
2016 – 2025 and compound annual growth rate (CAGR) between 2017 and 2025
Comprehensive analysis of market dynamics including factors and opportunities will be
provided in the report
An exhaustive regional analysis of the Global Optical Coating Equipment Market has been
included in the report
Profile of the key players in the Global Optical Coating Equipment Market will be provided,
which include key financials, product & services, new developments and business strategies
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8. End-User Industry Segments
Medical
Electronics
Telecommunications
Solar
Automotive
Others End-User Industries
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