Allicdata Part #: | FA11904_TINA3-WWW-ND |
Manufacturer Part#: |
FA11904_TINA3-WWW |
Price: | $ 1.46 |
Product Category: | Optoelectronics |
Manufacturer: | Ledil |
Short Description: | LENS ASSY 1POS 16.1MM RND 6.9MM |
More Detail: | Lens with Holder Clear 60° ~ 80° Wide Cree XM-L, X... |
DataSheet: | FA11904_TINA3-WWW Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
288 +: | $ 1.32663 |
Series: | TINA3 |
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: | Wide |
Viewing Angle: | 60° ~ 80° |
For Use With/Related Manufacturer: | Cree, Nichia, Seoul |
Material: | Acrylic |
Mounting Type: | Adhesive Tape |
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 remain an area of great interest and importance to the scientific world. One of these, the FA11904_TINA3-WWW, has emerged as an important application in a variety of scenarios. This article provides an introduction to this application, including its field of applications and its working principles.
Field of applications
The FA11904_TINA3-WWW includes a special optic that contains two layers, one acting as a light filter, and the other capable of reflecting light. This special optic can be used in a number of scenarios, with the most common one being in the field of microscopy. Here, scientists can get better images of smaller objects than what is possible through normal optical methods.
The special optics of the FA11904_TINA3-WWW can also be used in terahertz imaging. This type of imaging captures the frequencies of radiation between microwaves and infrared light. Scientists using this application can better see and analyze the structures, properties, and interactions of matter contained within this frequency range.
The FA11904_TINA3-WWW can also be used in astronomical imaging. Here, scientists can capture better images of distant celestial bodies. Furthermore, the special optics of the FA11904_TINA3-WWW offer excellent contrast between different wavelengths of light, which allows for more clarity and creativity in astronomical images.
Working principle
The FA11904_TINA3-WWW operates on the principle of birefringence. This phenomenon occurs when a specific material becomes optically anisotropic, meaning that the light can travel in different directions depending on the orientation of the material. This is possible because the special optics used in the FA11904_TINA3-WWW contains two microscopic crystalline panels, each containing different crystalline structures.
When light enters through the first panel, it is affected differently depending on the orientation of the crystals. This makes the light split into two components, a fast-traveling and slow-traveling one. The fast-traveling component travels directly through the second panel, while the slow-traveling component will be affected differently depending on the orientation of the crystals in the second panel. Finally, the light is brought together again by the second panel, in the same direction as when it entered the first.
The optical performance of the FA11904_TINA3-WWW is also enhanced by its high index of refraction, which refers to the amount of light that is bent when entering a medium. As a result, this optical setup provides a high level of clarity and contrast in the images that are produced.
Conclusion
The FA11904_TINA3-WWW is a special optical setup that has a myriad of applications in the scientific world. Thanks to its unique optical setup, it can be used to produce images with a high level of clarity and contrast, allowing scientists to better visualize and analyze their subjects. Furthermore, its ability to filter different light spectrums makes it great for applications in the fields of microscopy, terahertz imaging, and astronomy.
The specific data is subject to PDF, and the above content is for reference
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