
10203 Optoelectronics |
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Allicdata Part #: | 1066-1022-ND |
Manufacturer Part#: |
10203 |
Price: | $ 0.81 |
Product Category: | Optoelectronics |
Manufacturer: | Carclo Technical Plastics |
Short Description: | LENS TIR 20MM ELLIPTICAL FLANGE |
More Detail: | Lens Only, Holder Required Clear Elliptical/Oval ... |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
384 +: | $ 0.73710 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Type: | Lens Only, Holder Required |
Moisture Sensitivity Level (MSL): | -- |
Color: | Clear |
Number of LEDs: | 1 |
Lens Style: | Round with Ripple Top |
Lens Size: | 20mm Dia |
Lens Transparency: | Diffused |
Optical Pattern: | Elliptical/Oval |
Viewing Angle: | -- |
For Use With/Related Manufacturer: | Avago, Cree, Lumileds, Nichia, Osram, Seoul, Stanley, Toshiba |
Material: | Polycarbonate |
Mounting Type: | Snap In |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
The 10203 application field and working principle of optics lenses is an important area of research that pertains to optical instruments and device components. It is a branch of engineering concerned with the production of powerful lenses for use in system analysis, design and fabrication of optical devices. In this article, we will discuss the types of optics lenses, the purpose of each type, and the basic working principles of optics lenses.
Optical lenses are comprised of several components, and can be categorized into two main types: converging lenses and diverging lenses. Converging lenses are those that bring together the light that enters them from different angles, concentrating it onto one point or focus. This type of lens is used in optical instruments such as telescopes, microscopes, and cameras. Diverging lenses, on the other hand, spread out the light that enters them, producing a wider view. These are often used in optical instruments such as magnifying glasses, mirrors, and projection lenses. Both types of optics lenses can be made from a variety of materials such as glass, plastic, and quartz.
The main purpose of optics lenses is to collect and direct light in order to produce images. In order to do this, they use refraction in order to bend the light that passes through them. This is similar to how a prism separates white light into its spectral colors, however, in this case, the light is bent and collected in order to form an image. The image produced depends on the type of lens used and the properties of the material from which it is made.
The working principle of optics lenses can be divided into two main stages. The first involves collecting the light from its source and directing it through the lens into a focal point. This stage is also known as refraction. During this stage, the lens will refract the light in order to direct it to the ideal spot in order to produce the desired image. The second stage involves the image being formed by the lens. Here, the lens focuses the light onto an object or image to form a complete picture.
Optics lenses also have additional uses such as measuring the angles of a light beam. This is sometimes done by using a section of the lens in order to measure the angle at which the refracted light is projected. This principle is also used in the fabrication of lenses which require precise angles.
Optics lenses can be used in a variety of applications, including astronomy, cameras, microscopes, medical imaging, and more. They are an important part of advanced optical components and systems. These lenses are also used for an array of tasks including measuring, telemetry, communications, and infrared imaging. Different types of optics lenses are used depending on the application and the amount of light that needs to be collected or focused onto an area.
Optics lenses have become an integral part of the scientific community as they are used to capture and produce a variety of images. Their basic working principle although simple has a variety of applications. They are also cost-effective and highly efficient, making them essential components in the ever-evolving world of optical engineering.
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