C11996_LENA-LENS Allicdata Electronics

C11996_LENA-LENS Optoelectronics

Allicdata Part #:

C11996_LENA-LENS-ND

Manufacturer Part#:

C11996_LENA-LENS

Price: $ 2.79
Product Category:

Optoelectronics

Manufacturer: Ledil
Short Description: REFLECTOR ROUND 1 POS MM D MMH
More Detail: Reflector Round, 107.74mm Snap-In
DataSheet: C11996_LENA-LENS datasheetC11996_LENA-LENS Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
60 +: $ 2.53397
Stock 1000Can Ship Immediately
$ 2.79
Specifications
Series: Lena
Part Status: Active
Lead Free Status / RoHS Status: --
Style/Size: Round, 107.74mm
Moisture Sensitivity Level (MSL): --
Optical Pattern: --
For Use With/Related Manufacturer: Ledil
Viewing Angle: --
Mounting Type: Snap-In
Description

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Optics - Reflectors

C11996_LENA-LENS technology provides a field of application for optics and reflectors. Its working principles are based predominantly on the fundamental principle of light reflection and refraction, and involve the use of a variety of optical components.Light reflection is defined as the change in the direction of a light wave when it hits a reflective surface. The strength of the reflection is determined by the angle of incidence, or the angle at which the light wave strikes the reflective surface. When light is incident on a surface at a superficial angle, the reflected light travels in the same direction as the incident light, so that the element appears to have a mirror-like surface with respect to light reflection. When light is incident in a deep angle, the reflected light travels in an opposite direction, so that element appears absorbing most of the light.Refraction is the change in the direction of a light wave as it passes from one media to another. Refraction is caused by a change in the speed of the light when it travels through a different media. For example, when light passes from air into glass, the light waves slow down as they enter the glass, causing them to refract, or bend, inwards. This causes the light to appear to bend away from the normal. This bending can also be used to focus light beams and to create images.C11996_LENA-LENS technology relies on light reflection and refraction to create a two dimensional lens with optical properties. This technology involves the use of a variety of optical components, including a curved glass lens, a transparent acrylic plate, and a diffractive optical element.The curved glass lens is designed to focus the incoming light, thus forming an image or pattern. The transparent acrylic plate is then used to reflect the light rays in order to further focus the image or pattern. The diffractive optical element is then used to add additional optical properties, such as a diffusely scattered light field, an increased light intensity, or a particular chromatic effect. The diffractive optical element also helps to diminish the amount of optical aberrations or imperfections that can occur when light passes through multiple elements.By combining all of these optical components, C11996_LENA-LENS technology creates two dimensional lenses with enhanced optical properties. These lenses are used for a variety of applications, including photography, medical imaging, displays, and projection systems. They are also used for a number of military applications, including reconnaissance, targeting, environmental monitoring, and communications.In addition to their use in optics and reflectors, C11996_LENA-LENS technology is also used in displays applications. The lenses can be used to increase the resolution of digital displays or to create larger and brighter displays. They are also used to provide three dimensional images on flat panel displays. As such, the lenses are being increasingly used for consumer electronics, such as televisions, computer monitors, and smart phones.The combination of light reflection and refraction, along with various optical components, makes C11996_LENA-LENS technology a powerful tool for a wide range of applications. Its versatility makes it useful in creating high-quality, two dimensional lenses with enhanced optical properties for a variety of different applications.

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

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