FA13842_TINA-O Allicdata Electronics
Allicdata Part #:

FA13842_TINA-O-ND

Manufacturer Part#:

FA13842_TINA-O

Price: $ 1.65
Product Category:

Optoelectronics

Manufacturer: Ledil
Short Description: ASSY RND 1POS 16.1MM 9.4MM OVAL
More Detail:
DataSheet: FA13842_TINA-O datasheetFA13842_TINA-O Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
144 +: $ 1.49244
Stock 1000Can Ship Immediately
$ 1.65
Specifications
Series: *
Part Status: Active
Lead Free Status / RoHS Status: --
Moisture Sensitivity Level (MSL): --
Description

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Optics plays an important role in modern science as photons, or light, interact with matter in a variety of fascinating ways. Lenses, in particular, are noteworthy for their ability to affect the paths of light rays and cause them to interact in predictable ways. As such, lenses form the basis of many imaging devices, such as cameras, microscopes, and telescopes. The FA13842_TINA-O lens is a particularly unique design that offers a variety of applications, from imaging to light intensity adjustment.

The FA13842_TINA-O lens is a type of Fresnel lens, which is defined as a type of single-element convex lens or concave lens made of concentric annular “grooves” that are inversely tapered toward the circumference. This type of lens is constructed from flat annular zones instead of curved surfaces, resulting in a very thin and light lens. However, due to the way it is constructed, it is capable of producing a variety of effects. The FA13842_TINA-O lens, for example, accomplished light beam shaping and light energy conversion over a broad range of angles.

A simple application of FA13842_TINA-O is in lighting design. The lens can be used to project light in a chosen direction, allowing for efficient and accurate placement of lighting, regardless of the surface. The lens is also useful for adjusting the intensity of a light source without affecting the angular distribution of the light. This useful property allows for precise control over the level of illumination, saving energy by minimizing the need for powerful bulbs.

The FA13842_TINA-O lens is also used in camera design. It can sharpen images and control the area of exposure, making it ideal for use in situations where the light source is unevenly distributed or the target area of exposure is very specific. The lens is also useful in the production of three-dimensional images, as it can be used to combine two images into one to create the illusion of depth. Lastly, the FA13842_TINA-O lens is capable of altering the angle of a light beam to create a wider view of a particular scene.

In addition to the above applications, the FA13842_TINA-O lens is also useful in imaging and sensing. Its ability to modify the angle of the light rays allows for more efficient detection of low-level targets. Its lens shape also creates a higher fidelity image with greater detail. The narrow focal range of this lens further enhances its sensing capability by allowing for a fast and accurate detection of objects.

The FA13842_TINA-O lens works by bending the light rays it receives so that they travel toward predetermined points and follow predefined paths. This is possible due to the alternating convex and concave surfaces on the lens, which individually affect the direction of the light rays in order to accurately redirect them toward a desired point or area. By combining these surfaces, the lens is able to deflect light in a chosen direction, allowing light intensity adjustment and producing a variety of other effects.

In conclusion, the FA13842_TINA-O lens is a versatile and efficient means of changing the direction and intensity of light. Its design allows for a wide variety of applications, from lighting design to imaging and sensing. Its working principle is simple yet effective; by combining alternating convex and concave surfaces on the lens, the lens is able to redirect light in a predetermined direction and produce a variety of effects. As such, the FA13842_TINA-O lens is an effective tool for both imaging applications and lighting design, and it offers a reliable and efficient way of manipulating light for a number of purposes.

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

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