IF 101F-0-60 Optoelectronics |
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Allicdata Part #: | IF101F-0-60-ND |
Manufacturer Part#: |
IF 101F-0-60 |
Price: | $ 1.84 |
Product Category: | Optoelectronics |
Manufacturer: | Industrial Fiberoptics |
Short Description: | LIGHT PIPE CABLE 1.5MM CORE |
More Detail: | Light Pipe Single Clear Flexible 2' (0.61m) - Fibe... |
DataSheet: | IF 101F-0-60 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
100 +: | $ 1.67177 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Color: | Clear |
Moisture Sensitivity Level (MSL): | -- |
Configuration: | Single |
Type: | Flexible 2' (0.61m) - Fiber Optic |
Lens Style: | -- |
Lens Size: | -- |
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Optics - Light Pipes are the application field and working principle of an IF 101F-0-60. Light pipes, also known as light guides, are optical components used to guide light waves. A light guide is a thin, rigid optical waveguide which is used to carry light from one part of a system to another. Light guides can be made of plastic or glass, and the principal component of a light guide is the core, which is the guiding medium for the light. Light waves are guided through the core by total internal reflection, which occurs when the refractive index of the core is greater than the refractive index of the cladding.
The most common application for light guide is in optical displays. Light from a light source is coupled into the input end of the light pipe and then travels through the optical waveguide, emerging from the output end. Ideally, the light transmitted through the light pipe will remain spatially invariant so that the same pattern is seen on the output end, no matter what direction the light pipe is bent. Light guide can also be used to direct light in situations where a conventional lamp won’t fit. For example, a light pipe can be used to direct light from a low-power laser diode into the corner of a table without needing to modify the table.
An IF 101F-0-60 is a compact fiber optic light pipe designed for display isolation and intimate coupling between coupled light sources and displays. It is composed of an inner core of pure silica surrounded by a surrounding cylindrical cladding of fluoropolymer. It is available in three diameters: 0.1mm, 0.25mm, and 0.50mm and in a variety of lengths. It is optimized for use in systems that require optimized light control and excellent imaging characteristics.
The working principle of an IF 101F-0-60 is based on the total internal reflection of light within the optical fiber. When light is incident on the core/cladding interface at an incident angle greater than the critical angle, it is total internally reflected, so that it will continue to propagate down the fiber without being absorbed or scattered. This principle of total internal reflection enables light to be transmitted through the fiber with minimal attenuation.
In relation to application, IF 101F-0-60 is an ideal choice for connection of light sources to display elements. Its superior isolation capability prevents unwanted light contaminating the display. It also provides superior coupling efficiency and flexibility to applications ranging from medical imaging to industrial automation. Additionally, its small form factor and superior light confinement allow it to be used in applications where conventional light sources are either too large or too inefficient.
In conclusion, Optics - Light Pipes is the application field and working principle of an IF 101F-0-60. Light pipes are thin, rigid optical waveguides used to guide light from one part of a system to another by total internal reflection. An IF 101F-0-60 is a compact fiber optic light pipe designed for display isolation and intimate coupling between coupled light sources and displays. Its working principle is based on total internal reflection of light within the optical fiber, enabling it to transmit light with minimal attenuation. It is an ideal choice for connection of light sources to display elements because of its superior isolation capability, coupling efficiency, flexibility, small form factor, and superior light confinement.
The specific data is subject to PDF, and the above content is for reference
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