39-12-3A Allicdata Electronics

39-12-3A Optoelectronics

Allicdata Part #:

39-12-3A-ND

Manufacturer Part#:

39-12-3A

Price: $ 0.28
Product Category:

Optoelectronics

Manufacturer: JKL Components Corp.
Short Description: FILTER YELLOW FOR T3-1/4 LAMP
More Detail: Lens Cap Yellow T-3 1/4 Lamps Slip On
DataSheet: 39-12-3A datasheet39-12-3A Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
100 +: $ 0.25200
Stock 1000Can Ship Immediately
$ 0.28
Specifications
Series: --
Part Status: Active
Lead Free Status / RoHS Status: --
Type: Lens Cap
Moisture Sensitivity Level (MSL): --
Color: Yellow
Number of LEDs: 1
Lens Style: Round with Domed Top
Lens Size: 10.2mm Dia
Lens Transparency: Diffused
Optical Pattern: --
Viewing Angle: --
For Use With/Related Manufacturer: General Purpose
Material: --
Mounting Type: Slip On
Description

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39-12-3A lenses are widely used in many application fields, from microscopes and telescopes to cameras and laser systems. The 39-12-3A lens design is remarkable for its versatility, accuracy, and overall efficiency. It is an excellent choice for use in a variety of applications.

The 39-12-3A lens design is a three-element symmetric design. It consists of three components: a front lens group, a middle or focusing lens group, and a rear or imaging lens group. The lenses are arranged in a compound system, which means that each component has its own focus plane in the optical path. This design allows the user to adjust the focus plane of the optical system as needed, depending on the application requirements.

The benefits of using a 39-12-3A lens design include excellent image quality, excellent aberration control, and improved performance at various working distances. The symmetrical design of the 39-12-3A lens provides good optical performance and control, and reduces the required number of elements in the system. This design also minimizes the number of focal planes in the optical system, which enables precise, low-noise imaging.

The 39-12-3A lens design has been used in many application fields, including microscopy, imaging, projection, and astronomy. In microscopy applications, the 39-12-3A lens design provides excellent optical performance and high levels of clarity. It is very well suited for use in applications where the working distance is short. In imaging applications, the lens design offers excellent contrast, high resolution, and a wide depth of field. In projection applications, the 39-12-3A lens design is able to reproduce images with greater resolution and improved brightness. In astronomy applications, the lens design provides improved optical performance for larger magnification, as well as improved contrast.

The 39-12-3A lens design has also been used in laser systems. It is a great choice for laser systems because it has low chromatic aberrations, high numerical aperture, and strong dispersion of the laser beam. This makes the 39-12-3A lens design particularly suitable for use in laser systems where high levels of accuracy are required.

The working principle of the 39-12-3A lens design is based on the principle of refraction and reflection. Light is refracted when it passes through a material at an angle other than the normal angle of incidence. This is done by changing the index of refraction of the material relative to the light. When the light reflects off the surface of the material, it is redirected in the new direction and the angle of incidence changes according to the law of refraction. The refraction and reflection of the light cause it to bend or curve in the desired direction, which is the principle behind the 39-12-3A lens design.

In conclusion, the 39-12-3A lens design is an excellent choice for use in a variety of applications. It provides excellent image quality, high resolution, and improved brightness. The symmetrical design of the 39-12-3A lens enables precise, low-noise imaging, and is particularly suitable for use in laser systems. The 39-12-3A lens design works on the principle of refraction and reflection, which redirects the light in the desired direction.

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

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