FENCHILIN Compact Mirror with UV Camera for Sunscreen Test, Portable Travel Mirror for Sun Protection Lighted Makeup Mirror 2X Magnification Pocket Mirror for Handbag

£49.995
FREE Shipping

FENCHILIN Compact Mirror with UV Camera for Sunscreen Test, Portable Travel Mirror for Sun Protection Lighted Makeup Mirror 2X Magnification Pocket Mirror for Handbag

FENCHILIN Compact Mirror with UV Camera for Sunscreen Test, Portable Travel Mirror for Sun Protection Lighted Makeup Mirror 2X Magnification Pocket Mirror for Handbag

RRP: £99.99
Price: £49.995
£49.995 FREE Shipping

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Description

Window films offer great versatility with a wide range of options to choose from. One of our popular choices is the static cling reflective mirror film, which is perfect for temporary use, such as in rented accommodations or during the hottest season. This film does not require adhesive and can be easily applied in just minutes. What's even better is that it can be removed in seconds and safely stored for future use.

Applying window film is a straightforward process that can be easily accomplished, even if you're a beginner.

Ecoptik offers dielectric laser mirrors including dichroic versions for various applications, covering wavelength ranges from UV to IR. There is a wide choice of round, elliptical or custom shapes as well as flat, spherical and cylindrical surfaces. EKSMA OPTICS The RP Photonics Buyer's Guide contains 127 suppliers for dielectric mirrors. Among them: UltraFast Innovations From March 5th to March 7th, 2023, Fenchilin mirror will participate in the American International Building Materials Exhibition (IBS) in New York, USA.

Shanghai Optics is a custom optics manufacturer with over 55 years of optics manufacturing experience. We produce high precision broadband dielectric mirrors according to customer’s specifications. These mirrors have the same exceptional specifications as our laser mirrors except that they use special multi layer coatings to achieve a very high degree of reflectance for both s- and p-polarizations over a broad wavelength range. For white light or tunable laser use these mirrors provide the ultimate in high reflectance and insignificant polarization effect. The reflectance of these coatings is consistently greater than 99.5% average. However, this figure includes very small dips in the p-reflectance which can never be completely eliminated. The s-polarization component has a reflectance greater than 99.9% over the entire range. LASEROPTIK It can be challenging to make mirrors such that the wavelength with high transmittance and the wavelength with high reflectance are close together, as e.g. in Figure 2. They need more sophisticated designs and often also a higher precision of coating fabrication. Fabrication of Dielectric Mirrors As dielectric mirrors usually provide a high reflectance at most in a smaller part of the visible spectrum, they often do not appear like other mirrors such as silver mirrors (or other metal-coated mirrors), as used in households: dielectric mirrors are usually transparent to visible light and shine in colors which depend on the angle of view. It can even be difficult to see which side of the substrate has the mirror coating. For high-power applications, coating designers choose materials with intrinsically low absorption at the relevant wavelengths. But the customer also needs to be aware that the choice of coating materials for high-power applications is limited. The system-designer does well to design for optics with the appropriate damage thresholds from the beginning of the optical design process. Knight Optical supplies a range of custom UV grade mirrors for use as reflectors specifically for ultraviolet applications between 180nm and 400nm.Dielectric mirrors based on thin-film coating technology, fabricated for example with electron beam evaporation or with ion beam sputtering, are used as laser mirrors in solid-state bulk lasers. The mirror structure then consists of amorphous materials. Light incident on a second surface mirror is subject to chromatic dispersion from the substrate material. Semiconductor Bragg mirrors can be produced with lithographic methods. They are used, for example, in surface-emitting semiconductor lasers and in semiconductor saturable absorber mirrors, but also as separate optical components (→ crystalline mirrors).



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