F16048_LINNEA-UP Allicdata Electronics

F16048_LINNEA-UP Optoelectronics

Allicdata Part #:

711-1525-ND

Manufacturer Part#:

F16048_LINNEA-UP

Price: $ 4.80
Product Category:

Optoelectronics

Manufacturer: Ledil
Short Description: LENSRECTANG22 POSMM (D)MM(H)
More Detail: Lens Clear Asymmetrical
DataSheet: F16048_LINNEA-UP datasheetF16048_LINNEA-UP Datasheet/PDF
Quantity: 120
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 4.36590
10 +: $ 3.64014
30 +: $ 3.05781
120 +: $ 2.62090
270 +: $ 2.32970
510 +: $ 2.11128
1020 +: $ 1.93655
2520 +: $ 1.85647
Stock 120Can Ship Immediately
$ 4.8
Specifications
Series: Linnea
Part Status: Active
Lead Free Status / RoHS Status: --
Type: Lens
Color: Clear
Number of LEDs: 1
Lens Style: Rectangle with Flat Top
Lens Size: 285.1mm x 40mm
Lens Transparency: --
Optical Pattern: Asymmetrical
Viewing Angle: --
For Use With/Related Manufacturer: Comet, Cree, Nichia, Osram, Philips, Samsung, Tridonic
Material: Polycarbonate
Mounting Type: --
Description

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Optics form a large part of physics, with areas such as refraction, reflection, and diffraction all reliant on the properties of the lens. The F16048_LINNEA-UP lens is a microlens with an immense range of applications, from microscopic imaging, lens alignment, laser fabrication and optical communication. In this article, we will look at what the F16048_LINNEA-UP lens is, the various applications of it, and how it works.

What Is the F16048_LINNEA-UP Lens?

The F16048_LINNEA-UP lens is a microlens which produces a parallel beam of light. It is made of two hemispheres bonded together along a circular perimeter. The area of this edge is at an angle of approximately 90 degrees, which is then hermetically sealed with the interior filled by air. This structure allows for a wide field of view and a very low amount of spherical aberration, making it ideal for applications where precision is essential.

Applications of the F16048_LINNEA-UP Lens

The F16048_LINNEA-UP lens is ideal for several applications due to its ability to focus light in a single direction with maximum efficiency. Microscopic imaging is one of the primary uses. The F16048_LINNEA-UP lens allows for the capture of very small objects with great clarity, such as individual cells or particles. This is beneficial in diagnostics and laboratory settings.

A second application of the F16048_LINNEA-UP lens is for aligning optical components in optoelectronic circuits. These are the same circuits used for advanced data processing, charging, and radio frequency communication found in devices like computers and smartphones. The F16048_LINNEA-UP lens can be used to accurately align components to achieve the highest level of performance.

The F16048_LINNEA-UP lens is also used in laser fabrication, where it is used to shape and orient materials for use in specialized products. This is achieved by directing a laser beam through the lens onto the desired material. Finally, the lens has been used in optical communication, such as in the development of the building blocks that make up the internet.

Working Principle of the F16048_LINNEA-UP Lens

The F16048_LINNEA-UP lens produces a parallel beam of light due to two properties of its design: the angle of the perimeter and its internal architecture. The angle of the perimeter ensures that all light rays entering the lens start from different positions, and therefore all rays travel at different speeds. This allows for the light to be converged to a single point, creating a parallel beam.

The internal architecture of the F16048_LINNEA-UP lens also plays a role in creating the parallel beam of light. The interior of the lens is filled with air which helps to correct any chromatic deviation or colored distortions. This, combined with the curved design of the outside of the lens, allows for the most accurate light transmission, resulting in a precisely focused image.

Conclusion

The F16048_LINNEA-UP lens is a microlens with a multitude of applications. It is mos used for microscopic imaging, aligning optical components, laser fabrication, and optical communication. The lens produces a parallel beam of light due to its design, specifically a perimeter angle of 90 degrees and the presence of air in the center. This allows for extremely precise imaging and light transmission.

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

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