Examples of 'antireflection' in a sentence
Meaning of "antireflection"
Antireflection refers to a coating or treatment applied to a surface to reduce glare or reflection
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- That which inhibits reflection
How to use "antireflection" in a sentence
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antireflection
Antireflection or reflecting materials have numerous applications.
The nitride films serve as antireflection films.
The antireflection coatings are prepared using sputtering.
An excess of alumina affects the antireflection coating performances.
Antireflection ophthalmic lens and method of manufacture method.
This treatment is typically an antireflection multilayer optical treatment.
The antireflection obtained is a multilayer antireflection.
Performing an additional antireflection deposition if required.
An antireflection layer is deposited onto the front face.
The invention applies nevertheless preferably to antireflection coatings.
Antireflection coated entrance and exit faces are also available.
Critical temperature and critical load of antireflection ophthalmic lenses.
Antireflection treatment of reflective surfaces.
This sealing layer conventionally has an additional antireflection function.
The antireflection layer is also called as a layer incurring haze.
See also
The hemisphere body serves as a carrier for antireflection film.
Preferred antireflection coating are those which display a residual color.
There is no systematic method for the design of antireflection coatings.
An antireflection coating of this type has several important advantages.
Method to control the thickness of an antireflection coating and implementation installation.
Antireflection coated eyeglasses.
The relationship between antireflection film and wear resistant film.
An antireflection layer can be deposited at the interface of the two materials.
It is also desirable that the antireflection film is formed of a plurality of layers.
The antireflection coating may be deposited directly onto a bare substrate.
The climatic resistance properties of the antireflection material were also tested.
Hard antireflection coating.
The present invention also relates to the use of an antireflection film.
Disclose absorbent antireflection layers deposited on substrates that in turn are absorbent.
This cycle is repeated until cracks appear in the antireflection coating.
Various antireflection films were formed on the surfaces of these lens bases.
This is a quite free and unexpected adaptation of conventional antireflection multilayers.
An antireflection film may be formed on the surface of the semiconductor layer.
Various metal oxides are then combined to produce a superior antireflection coating.
An antireflection treatment may be provided to limit the amount of unwanted reflected light.
This therefore goes counter to the known teaching on antireflection stacks in general.
An antireflection coating usually has as the first layer a high index layer.
This polyurethane flexible resin film also has an antireflection function.
Most multilayer antireflection coatings are derived from a basic three layer system.
These reflection losses can be reduced using additional antireflection coatings.
Antireflection coatings help reduce polarization at the prism surfaces by increasing total transmittance.
The following plural methods are available as methods to impart antireflection functions.
The antireflection coatings of the multilayer according to the invention comprise no absorbent films.
On the back surface there may be an optional antireflection or scintillator coating.
Adherence tests of antireflection layers between themselves or the antireflection layer on the varnish.
Another known method lies in applying an antireflection coating on the surface.
These substrates may be presented in any form which yields a surface in need of antireflection.
It relates more particularly to substrates having both an antireflection function and a photocatalytic coating.
Antireflection coatings are particularly beneficial for multicrystalline material that can not be easily textured.
It has a frosted appearance for projection purposes and for antireflection reasons.