G063144000 Allicdata Electronics
Allicdata Part #:

1601-1192-ND

Manufacturer Part#:

G063144000

Price: $ 95.47
Product Category:

Optoelectronics

Manufacturer: Excelitas Technologies
Short Description: ACHR. VIS ARB2; D=22.4; F=100; M
More Detail: N/A
DataSheet: G063144000 datasheetG063144000 Datasheet/PDF
Quantity: 2
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 86.78880
Stock 2Can Ship Immediately
$ 95.47
Specifications
Series: Microbench
Part Status: Active
Lead Free Status / RoHS Status: --
Accessory Type: Lens
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Laser diodes are unique devices with many different applications in industry. One of these devices is the G063144000. This device is unique in its structure and can be used in a variety of different ways. To better understand the G063144000, it is important to understand its construction, application fields, and working principle.

Construction

The G063144000 is a semiconductor laser diode. This type of device contains a junction between two different semiconductor materials: an n-type and a p-type. These can be made up of different kinds of materials, depending on the application for which the device was designed. The junction is designed to produce photons when a certain amount of current is passed through it.

The G063144000 is a laser diode with a 630-nanometer wavelength, meaning that its photons are of this length. This wavelength of light is usually considered to be in the visible spectrum, though it is at the end of the spectrum and closer to the infrared. As with all semiconductor laser diodes, the G063144000 has two electrical contacts to which current is applied.

Application Fields

The G063144000 has a number of potential application fields. As a visible laser diode, it can be used in optical communication systems, such as fiber-optic networks. It can also be used in manufacturing processes, such as welding, cutting, and marking. Additionally, the device can be applied in medical equipment for imaging purposes.

The G063144000 is also commonly found in optical components, such as sensors, collimators, and scanners. Its primary purpose in these devices is to produce a beam of light in the visible spectrum, which can then be used to detect changes in the environment or target material. Such beams can also be used to measure distance and other physical parameters.

Working Principle

The basic principle of operation for the G063144000 is that of stimulated emission. This is where the junction in the laser diode is used to produce photons. As current is passed through the junction, electrons are passed from the n-type material to the p-type material. As this occurs, some of the energy is released in the form of photons. These photons then stimulate the production of more photons, which are then released and form the laser beam.

The number of photons produced and the intensity of the laser beam depend on the current that is applied to the junction. As such, the G063144000 can be used to create beams of varying intensity. This is useful in applications where the intensity of the beam needs to be adjusted. Additionally, the wavelength of the beam produced can be adjusted by changing the composition of the semiconductor materials used in the junction.

Conclusion

The G063144000 is a semiconductor laser diode that is used in a variety of different applications. Its primary purpose is to produce beams of light of visible wavelengths, which can then be used in communication systems, manufacturing processes, medical equipment, and optical components. The intensity and wavelength of the beam produced can be adjusted by changing the composition of the semiconductor materials used in the laser diode junction and the amount of current that is passed through it. With its versatile capabilities, the G063144000 is an essential component for a wide range of applications.

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

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