| Allicdata Part #: | FCN13579_ANGELINA-M-ND |
| Manufacturer Part#: |
FCN13579_ANGELINA-M |
| Price: | $ 0.00 |
| Product Category: | Optoelectronics |
| Manufacturer: | Ledil |
| Short Description: | REFLECTOR RND 82MM 36.94MM MED |
| More Detail: | Reflector |
| DataSheet: | FCN13579_ANGELINA-M Datasheet/PDF |
| Quantity: | 1000 |
| Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
| Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
| 0 +: | $ 0.00000 |
| Series: | * |
| Part Status: | Discontinued at Digi-Key |
| Lead Free Status / RoHS Status: | -- |
| Moisture Sensitivity Level (MSL): | -- |
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Optics - Reflectors
The FCN13579_ANGELINA-M application field and working principle involve the use of optics and reflectors. This technology is used in various applications such as telecommunications, laser systems, entertainment systems, imaging and high-end optical measurement equipment. It can also be used to analyze the structure of microscopic objects.
A reflector is an object with a smooth surface made of different materials such as metal, glass, or plastic. Reflectors can be used to direct incident light from a source to a particular direction or area. The reflectors used in the FCN13579_ANGELINA-M application utilize different optical properties, such as specular reflection, diffuse reflection, and total internal reflection.
Specular reflection is an optical phenomenon that occurs when light hits a surface and then reflects off of it in a single direction. The reflected light is called specular reflection. Diffuse reflection is a phenomenon in which light is scattered in all directions from a surface, rather than mirrored in a single direction. In this type of reflection, the angle of reflection is equal to the angle of incidence. Total internal reflection occurs when light is incident on a boundary surface between two media with different optical properties, and some of the light is reflected back into the original medium. This phenomenon is important for fiber optic communication systems, since it allows the light to be steered into an optical cable.
The FCN13579_ANGELINA-M uses a combination of these optical refraction and reflection properties to create a precise beam of light. The beam is incident on a specially designed reflecting surface which reflects the light in a particular direction. The light beam is then steered by the reflecting surface to the desired location. This system can be used to direct the light beam in very small increments, allowing for extremely electrical display or precise optical measurements.
In addition, the FCN13579_ANGELINA-M also utilizes other optical techniques such as diffraction gratings and polarization of light. Diffraction gratings are optical components that are used to disperse incident light into components of different wavelength. This is useful for optical analysis since it allows for the detection of wavelengths of light that are normally not visible to the human eye. Polarization of light involves the passing of light through a polarizing filter in order to control the direction of propagation of the light.
The FCN13579_ANGELINA-M also uses materials such as aluminum and quartz to create optical elements. Aluminum is a metal that can reflect light, while quartz is a transparent mineral which can be used to create lenses and optical components. Both of these materials can be used to create complex optical systems to create beams, steer the light, and filter it.
This technology can be used in a variety of applications, such as imaging, optical telecommunication systems, and laser systems. It can also be used in high-end optical measurement equipment and to analyze the structure of microscopic objects. The FCN13579_ANGELINA-M optical systems, along with its use of optics and reflectors, offer many advantages that make them a valuable tool for those in the field of optics.
The specific data is subject to PDF, and the above content is for reference
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REFLECTOR ASSEMBLYReflector
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FCN13579_ANGELINA-M Datasheet/PDF