VLM-635-02 LPT Allicdata Electronics
Allicdata Part #:

VLM-635-02LPT-ND

Manufacturer Part#:

VLM-635-02 LPT

Price: $ 19.96
Product Category:

Optoelectronics

Manufacturer: Quarton Inc.
Short Description: RED LASER MODULE, CLASS II, 635
More Detail: Laser Diode 635nm 1mW 2.6 V ~ 5 V 50mA Cylinder (1...
DataSheet: VLM-635-02 LPT datasheetVLM-635-02 LPT Datasheet/PDF
Quantity: 1000
1 +: $ 18.15030
10 +: $ 16.03980
25 +: $ 14.01370
100 +: $ 12.24090
250 +: $ 11.60770
500 +: $ 11.22790
Stock 1000Can Ship Immediately
$ 19.96
Specifications
Series: --
Part Status: Active
Wavelength: 635nm
Voltage - Input: 2.6 V ~ 5 V
Current Rating: 50mA
Power (Watts): 1mW
Package / Case: Cylinder (10.5mm Dia)
Description

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Laser (Light Amplification by Stimulated Emission of Radiation) is a kind of optical emission technology that uses the induced emission principle of stimulated emission to generate visible light. Laser diodes, also known as laser sources, are a type of optical device. Modules then refer to the modules that integrate laser diodes and other components into a single custom package, while the LPT application field pertains to the spectrum used in laser printers. The VLM-635-02 LPT (Laser Printer Technology) module is a type of laser source used in laser printers.

The working principle behind the VLM-635-02 LPT module is relatively straightforward. It involves the generation of laser light by means of an inverted optical cavity formed within a semiconductor diode. This inversion results in a higher output of laser energy than would otherwise be possible. In addition, a wavelength-selective mirror reflects laser light that is emitted from the laser diode, which serves to increase the efficiency and accuracy of the laser beam.

There are several components used in the VLM-635-02 LPT module: an optical pickup head, a high-density layer, a low-density layer, a receiver, and a diode array. The optical pickup head is designed to sense and receive the light that is emitted from the laser diode. The high and low-density layers are then used to reflect laser light. The receiver is used to detect the laser light and transmit the signal to a printer. Finally, the diode array is used to increase the efficiency and accuracy of the laser beam.

The VLM-635-02 LPT module is used in laser printers to create a very small, very precise laser beam for printing. The laser beam is generated by a semiconductor diode, which is energized by an electrical current, resulting in the emission of laser light. This light is then reflected by the wavelength-selective mirrors, resulting in a higher output than would be possible without the mirrors. The light is then directed through the optical pickup head and receiver, which detect the light and transmit it to the printer, where it is used to create an image on the paper.

In addition to its uses in laser printers, the VLM-635-02 LPT module can also be used in laser scanning, medical imaging, and range-finding. Laser scanning involves measuring distances by scanning a laser beam over an area and sensing the reflections of the beam; medical imaging involves the use of a laser diode to acquire, store, and display images; and range-finding involves the use of a laser beam to measure distances and other data. In each of these applications, the laser diode plays a vital role in the accuracy and speed of the process.

The VLM-635-02 LPT module has several advantages over other types of laser diodes. It is extremely efficient, producing more light energy than other diode types. It also has a longer shelf life and a narrower beam width than other diode types, allowing it to be used in a wider range of applications. Finally, it is easily integrated into existing equipment, making it a cost effective solution for many applications.

In conclusion, the VLM-635-02 LPT module is a type of laser diode used in laser printing, scanning, medical imaging, and range-finding. This module is designed for efficiency and accuracy, making it ideal for many applications. Its components, such as the diode array, receiver, and wavelength-selective mirrors, allow it to perform at a high level even under challenging conditions. Finally, its ease of integration into existing systems makes it an attractive option for many different applications.

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

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