LMS_133_BTP Allicdata Electronics

LMS_133_BTP Optoelectronics

Allicdata Part #:

VCCLMS_133_BTP-ND

Manufacturer Part#:

LMS_133_BTP

Price: $ 0.61
Product Category:

Optoelectronics

Manufacturer: Visual Communications Company - VCC
Short Description: LITEPIPE 5MM BLUE TRANSP 1.33"L
More Detail: Light Pipe Single Blue Rigid Round with Domed Top,...
DataSheet: LMS_133_BTP datasheetLMS_133_BTP Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1000 +: $ 0.55354
Stock 1000Can Ship Immediately
$ 0.61
Specifications
Series: LMS
Part Status: Active
Lead Free Status / RoHS Status: --
Color: Blue
Moisture Sensitivity Level (MSL): --
Configuration: Single
Type: Rigid
Mounting Type: Panel Mount, Clamping
Lens Style: Round with Domed Top
Lens Size: 7.6mm
Description

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Optics has been an incredibly important technology in modern day, allowing research, computation and communication to rapidly evolve. One of the most important components in Optics is the Light Pipe. Light Pipes can be used to transport light and other forms of energy, both naturally occurring and man-made, over larger distances than is possible with optical fibers. Light pipes are highly versatile and can be used in a variety of applications from communications to astronomy.

The LMS-133-BTP is a type of light pipe that has been designed for use in applications such as underwater communications, optical signal processing, high-temperature measurement and imaging, as well as hazemat applications. The LMS-133-BTP is made of a light-emitting diode sleeve or optically clear silicone material with a diameter of 133mm and a length of 9-15 meters. This lightpipe is suitable for both short and long distances, has an operating temperature range of -20°C to +65°C, and is certified safe for hazardous environment use.

The working principle of LMS-133-BTP is based on the nature of light. Light travels in waves and the direction of its propagation depends on the particular characteristics of the light source and the surface of the light pipe. When a light source is placed in the lightpipe, the light waves are diffused across the walls of the pipe and will propagate through it, reflecting off the sides as they travel along their path. The shape of the internal surfaces of the pipe determine the refractive index of the materials, which determines the direction of the light beams as they propagate through the pipe. The advantage of this type of lightpipe is that it minimizes reflection losses and provides excellent transmission efficiency.

In addition to its transmission efficiency, the LMS-133-BTP also provides improved noise immunity due to its excellent attenuation characteristics. This lightpipe is also highly flexible; it is capable of being bent and flexed to fit into tight spaces, and it is not affected by environmental conditions such as humidity, temperature, and vibration. The LMS-133-BTP is also resistant to damage from chemical exposure and other hazardous materials.

The LMS-133-BTP has a wide variety of uses in the field of optics. It is commonly used in underwater communications systems, as its transmission distance is much greater than would be possible with optical fibers. It is also ideal for applications such as optoelectronic signal processing, high-temperature measurements and imaging, and for hazmat detection. In addition, it is suitable for use in many scientific experiments and for the construction of optical components such as telescopes.

The LMS-133-BTP is an ideal choice for optics applications because of its versatility, efficiency, and reliability. It has a wide variety of applications and is suitable for both short and long-distance applications. It is flexible, highly resistant to environmental conditions, and resistant to chemical exposure and other hazardous materials. Furthermore, it provides excellent noise immunity and has excellent attenuation characteristics, making it ideal for use in applications such as optoelectronic signal processing, high-temperature measurements, and imaging, as well as for hazmat detection.

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

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