Allicdata Part #: | 711-1217-ND |
Manufacturer Part#: |
CP12678_TINA2-D |
Price: | $ 1.36 |
Product Category: | Optoelectronics |
Manufacturer: | Ledil |
Short Description: | LENS W/HOLDER DIFFUSER 16.1MM |
More Detail: | Lens with Holder Clear 16° Diffuser Cree XP-G Adhe... |
DataSheet: | CP12678_TINA2-D Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
240 +: | $ 1.22551 |
Series: | TINA2 |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Type: | Lens with Holder |
Moisture Sensitivity Level (MSL): | -- |
Color: | Clear |
Number of LEDs: | 1 |
Lens Style: | Round with Flat Top |
Lens Size: | 16.1mm Dia |
Lens Transparency: | Diffused |
Optical Pattern: | Diffuser |
Viewing Angle: | 16° |
For Use With/Related Manufacturer: | Cree |
Material: | Acrylic |
Mounting Type: | Adhesive |
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
Optics - Lenses is a broad field of study within the scientific discipline of physics which studies how light interacts with surfaces, and the ways in which these surfaces can affect the way light behaves. One particular application field of lenses are CP12678_TINA2-D, which are a type of fiber optic prism-lenses. These lenses have many advantages over traditional lenses, as well as a few drawbacks, both of which will be discussed in more detail here.
The CP12678_TINA2-D lens is a type of fiber optic prism-lens. This means that the lenses are constructed using thin fibers of glass which are arranged in a particular manner, creating a type of waveguide. This type of lens has a wide range of applications, from medical imaging to the production of advanced optical systems such as telescopes and microscopes.
The main advantage of the CP12678_TINA2-D lenses is their ability to split light into different beams. This means that the lenses can be used to separate of different wavelengths of light from each other, such as green, blue, and red. Furthermore, these lenses can also divide the wavelengths of white light into different component colors, allowing for the creation of spectrums for various applications. The lenses can also be used to create holograms, which are images that have three-dimensional depth and appear to move in a three-dimensional presentation.
The CP12678_TINA2-D lenses also have the distinct advantage of being able to focus light into small points, which is important in applications such as laser micromachining and medical imaging. Since the lenses are made from thin fibers of glass, they are also able to provide high-resolution imaging with less distortion than traditional glass lenses. Finally, these lenses are very lightweight compared to traditional glass lenses, making them easier to install and transport.
In terms of how the CP12678_TINA2-D lenses work, the main principle behind them is the refraction of light. This occurs when a beam of light strikes a lens surface at an angle and is then bent, or refracted, towards the center of the lens. This allows light of different wavelengths to be separated and then focused into small points. Additionally, the lens is made of multiple layers of thin fibers of glass, allowing for the focusing of light in multiple directions.
Despite their advantages, there are a few drawbacks to using the CP12678_TINA2-D lenses. The primary issue is that these lenses have a narrow viewing angle, which can make it difficult to see the entire field of view. Additionally, the lenses need to be kept clean in order to maintain their ability to refract and focus light properly. Finally, the lenses can be prone to damage due to their delicate nature, which can make them unreliable in certain scenarios.
Overall, the CP12678_TINA2-D lenses are a type of fiber optic prism-lens which have a wide range of applications, from medical imaging to the production of advanced optical systems. These lenses have the advantage of being able to split light into different beams, as well as being lightweight and providing high-resolution imaging with less distortion than traditional glass lenses. However, the primary drawback is the narrow viewing angle, as well as the potential for damage due to their delicate nature. The working principle behind these lenses is the refraction of light, allowing for the focusing of light into small points.
The specific data is subject to PDF, and the above content is for reference
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