CN12301_LENA-S Allicdata Electronics

CN12301_LENA-S Optoelectronics

Allicdata Part #:

CN12301_LENA-S-ND

Manufacturer Part#:

CN12301_LENA-S

Price: $ 0.00
Product Category:

Optoelectronics

Manufacturer: Ledil
Short Description: LENS ASSY 1POS 111MM RND 85.6MM
More Detail: Reflector
DataSheet: CN12301_LENA-S datasheetCN12301_LENA-S Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
0 +: $ 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: Lena
Part Status: Discontinued at Digi-Key
Lead Free Status / RoHS Status: --
Moisture Sensitivity Level (MSL): --
Description

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Optics - Reflectors is a field dedicated to the study of reflectors and their various applications in the optical field. The concept of a reflector is a curved surface that reflects light, often referred to as a curved mirror. The most common application of a reflector is in optics, where it is used to capture and direct light across small distances for a variety of purposes. One such device is the CN12301_LENA-S, a compact curved reflector designed to provide high-speed transmission of light across optical waveguides. This article will discuss the application field of CN12301_LENA-S and its working principle.

The CN12301_LENA-S is a curved reflector designed for the applications of multi-gigabit reflected light transmission across short distances. It is constructed from a very compact aluminum material with a specially designed curvature at each of its ends. This curvature allows it to reflect incoming light in a specific direction, allowing it to be used in various applications. The CN12301_LENA-S is most commonly used in fiber-optic systems, where it is employed as a fast-bend reflector for connecting two optical fibers. It is also used in many other applications such as amplification and routing of light.

To understand how CN12301_LENA-S functions, it is important to understand its working principle. It is based on the scientific phenomenon of total internal reflection, or TIR. When light is introduced into a medium such as an optical fiber, the light will travel along the fiber in a straight line unless it encounters a curved surface. When it encounters a curved surface, such as the one found on CN12301_LENA-S, the light will be internally reflected due to the angle of incidence exceeding the angle of refraction. This allows the light to be guided in a specific direction, such as across an optical fiber. In the case of CN12301_LENA-S, the curvature of the device helps achieve a high degree of precision in the reflection of the incoming light, allowing for higher performance transmission of light.

CN12301_LENA-S has numerous applications in the field of optics. It can be used in optical fibers to connect two distant points, allowing for long-distance transmission of data. It can also be used for data amplification, which is essential for boosting the power of light signals traveling through fiber-optic systems. Additionally, CN12301_LENA-S can be employed as an optical router, which is essential for routing incoming light signals in optical networks. The device is also capable of controlling the direction of light, allowing it to be used in applications such as display systems where precise control of light is required.

In conclusion, the CN12301_LENA-S is a highly advanced curved reflector device intended for use in the fields of optics and fiber optics. It is constructed from a compact aluminum material and is designed specifically for the application of multi-gigabit reflected light transmission across short distances. By utilizing the phenomenon of total internal reflection, CN12301_LENA-S effectively can direct the incoming light beam in a precise manner, allowing for high performance transmission of data across optical waveguides. Finally, its numerous applications in the fields of optics, such as routing and amplification of light signals, make CN12301_LENA-S an essential device for any modern optical system.

The specific data is subject to PDF, and the above content is for reference

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