G335564000 Allicdata Electronics
Allicdata Part #:

1601-1292-ND

Manufacturer Part#:

G335564000

Price: $ 125.15
Product Category:

Optoelectronics

Manufacturer: Excelitas Technologies
Short Description: POL. BEAMSPL. CUBE, 450-550NM; L
More Detail: N/A
DataSheet: G335564000 datasheetG335564000 Datasheet/PDF
Quantity: 1
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 113.77800
Stock 1Can Ship Immediately
$ 125.15
Specifications
Series: Microbench
Part Status: Active
Lead Free Status / RoHS Status: --
Accessory Type: Attenuator/Beamsplitter
Description

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G335564000 Application Field and Working Principle

Laser diodes are the most basic type of laser light sources. They are small, solid-state semiconductor devices that produce laser radiation. The G335564000 laser diode is a type of semiconductor laser diode with a peak wavelength of 830 nm. It is commonly used in a wide range of applications, including medical imaging, spectroscopy, vision systems, and distance measuring instruments. This article will describe in detail the application field and working principle of the G335564000 laser diode.

Application Field of G335564000 Laser Diode

The G335564000 laser diode has a peak wavelength of 830 nm, which is within the near-infrared region of the spectrum. As a result, it is well-suited for applications such as medical imaging, spectroscopy, vision systems, and distance measurement instruments. For medical imaging applications, the G335564000 laser diode can be used to accurately capture and analyze images of tissues, organs, and tumors in healthcare settings. Additionally, it can be used in spectroscopy applications to identify the composition of samples. In vision systems, the G335564000 laser diode can be used to generate high-resolution images that can be used for various applications. Furthermore, it can be used in distance measuring instruments to accurately measure the distances between objects.

Working Principle of G335564000 Laser Diode

The G335564000 laser diode operates on the principle of stimulated emission. In this process, a light beam is directed onto a semiconductor surface. The surface of the semiconductor is made of a material that, when excited by the light beam, creates a population of "excess" electrons. These electrons then become stimulated and emit a new light beam at the same wavelength as the original light beam. This new light beam has the same wavelength as the original light beam, but is much more intense. This same process is repeated over and over, resulting in a laser beam that is much more intense than the original light beam.

The G335564000 laser diode operates on a concept of energy level bandgap. This means that when electrons in the "excess" energy level are stimulated, they emit a light beam at the same wavelength as the original light beam. However, this process does not happen instantly. The process of stimulated emission takes some time to occur, and this is why laser diodes take some time to "warm up" before producing their laser beams.

The G335564000 laser diode can be used in a wide variety of applications due to its high-power, high-precision output. This makes it an ideal choice for applications such as medical imaging, spectroscopy, and vision systems. Additionally, the G335564000 laser diode can be used in distance measuring instruments to accurately measure distances between objects.

Conclusion

The G335564000 laser diode is a type of semiconductor laser diode that has a peak wavelength of 830 nm. It is commonly used in a wide range of applications, including medical imaging, spectroscopy, vision systems, and distance measuring instruments. This article has provided a detailed description of the application fields and working principles of the G335564000 laser diode. It is clear that the G335564000 laser diode is an ideal choice for a wide variety of applications due to its high-power, high-precision output.

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

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