LMS_133_GTP Allicdata Electronics

LMS_133_GTP Optoelectronics

Allicdata Part #:

VCCLMS_133_GTP-ND

Manufacturer Part#:

LMS_133_GTP

Price: $ 0.61
Product Category:

Optoelectronics

Manufacturer: Visual Communications Company - VCC
Short Description: LITEPIPE 5MM GREEN TRANSP 1.33"L
More Detail: Light Pipe Single Green Rigid Round with Domed Top...
DataSheet: LMS_133_GTP datasheetLMS_133_GTP 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: Green
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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Light pipes are essential components for many optical systems. Light pipes capable of providing the critical connectivity between optical detection and differentiation components, such as light sources, detectors, and fiber tips for data transmission. Light pipes are also used in smaller domains such as micro-laser systems, easily customizable biosensor applications, optical power control, and telecommunication systems. LMS_133_GTP is a light pipe application field and it is used as a low-cost optical communication system. This article will discuss the working principle of the light pipe in LMS_133_GTP application field.

The LMS_133_GTP application field is designed to use in the range of 600-700 nanometers (nm) for optical communication through light pipes. This application field uses thin film light pipes or fiber optic light pipes to carry laser light signals in optical form. The LMS_133_GTP application field is used in various optical applications such as telecommunication systems, power control systems, and micro-laser systems. The application field requires an optical transmitter to convert the optical signals into digital data. These signals can be transmitted through the light pipe and then demodulated at the receiver for a variety of applications.

The working principle of the LMS_133_GTP application field is based on the transmission of light through a light pipe of a specific size and wavelength. The transmission is accomplished by transferring the optical signals through the light pipe to the receiver. The light pipe is made of several fiber optic cables and thin films, and acts as a conduit for the optical signal. The width of the light pipes varies depending on the requirements of the application field. The output signal of the transmitter is modulated and then transmitted through the light pipe.

At the receiver, the optical signal is then demodulated and converted into digital data that can be read and understood by the user. The demodulation process is necessary in order to accurately read and understand the data being sent through the light pipe. The demodulated signal from the receiver is then converted into digital data which can be easily read by the user. This digital data is then used to control and manipulate the system for a variety of applications.

One of the main advantages of using a light pipe is that it is a cost effective way of connecting optical systems. It is also easy to customize fiber optics to provide the application field with the required optical signals for transmission through the light pipe. The light pipes are also suitable for a variety of applications such as audio/video, telecommunications, and power control systems.

In conclusion, the LMS_133_GTP application field is an effective and cost-efficient way to transmit optical signals through light pipes. It is a simple method for transmitting optical signals through a light pipe with minimal cabling requirements and minimal power consumption. The LMS_133_GTP application field is suitable for a variety of applications and is an ideal choice for optical communication applications.

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

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