Advanced Use of 795nm Infrared Laser Diode Module

795nm infrared laser diode module
795nm infrared laser diode module

The genuine use of a 795nm infrared laser diode module projects visible infrared laser beam to human eyes, thus it gets superior advantages in those of concealed operation fields. It applies a qualified semiconductor IR laser diode and a qualified optic lens, configured with a high duration housing tube, it is able to work with ultra high energy density infrared laser beam radiation, ultra clear and precise infrared reference dot indication and measurement for all night version fields effectively.
In practical night version precise dot measuring works, 795nm infrared laser diode module gets longer wavelength than visible optical spectrum, thus it only allows proper use under dark environments and night version field. It applies a qualified glass coated lens and adjustable focus optic lens inside the durable anodized aluminum alloy housing tube. When it generates high photoelectric ability and high transmittance infrared laser light source, after getting low beam divergence angle, it keeps work with highly focused and low energy consumption infrared laser light source emission.
Within wide range operating temperature, and other harsh working occasion, 795nm infrared laser diode module still keeps work with long time lasting and highly stable infrared laser beam emission. It can improve dot alignment accuracy greatly. Owing to its narrow spectral line width, it can provide high spectral resolution and low noise level infrared laser light source generation for all night version illumination fields effectively.
In a large variety of materials and environments processing works, it has got wide application potential in medical, industrial detection and other fields. This 795nm infrared laser diode module gets featured advantages of good penetration and scattering characteristics. After its correct use of output power and operating voltage electric power source supply, it enables high quality infrared laser beam emission, and high stability infrared reference dot indication during laser light transmission.
Applications:
Medical field: being used as a dot positioning or indicator light source in some medical instruments, it help doctors perform surgery or treatment operations accurately. 795nm infrared laser light source is also working with skin treatment and diagnostic equipment for phototherapy and skin disease detection.
Industrial field: used for calibration and positioning in precision instrument manufacturing to provide an accurate benchmark for the production process. In industrial detection, 795nm infrared laser dot is used for material surface defect detection. By utilizing its high energy density and good infrared laser beam quality, it can display tiny flows on the surface of the material clearly.
Communication field: near infrared laser beam can be used as a signal light source to achieve high speed, high bandwidth data transmission in some specific short distance optical communication fields.
Scientific research: it is often used in experiments such as spectrum analysis and laser interferometry, providing professionals or scientists with stable and high precision infrared light source, which helps to conduct various physical, chemical, biological and other research.

808nm Infrared Laser Diode Module Used for Scientific Experiment

808nm infrared laser diode module
808nm infrared laser diode module

Comparing with any other visible laser devices, 808nm infrared laser diode module is in the near infrared region, and has a very good penetration in biological tissues, atmosphere and other media etc. Being made with a qualified semiconductor laser diode and qualified glass coated lens inside its compact structure tube, it is able to work with ultra fine infrared laser beam emission and high energy concentration. IR laser light can be used for in vivo imaging, atmospheric optics and other research, and can obtain information via the inside of the medium.
This invisible 808nm infrared laser diode module applies a qualified glass coated lens, it enables high transmittance and high density infrared light source emission. Owing to its low beam divergence, it is only projecting a quite small size infrared reference dot at various work distances. This 808nm wavelength has low absorption and scattering in many materials, which can reduce the energy loss of the IR laser light during transmission, thus achieves more accurate spectroscopy research of the materials.
Cooperating with an adjustable focus optic lens, after quite easy screw of laser beam aperture part, this 808nm infrared laser diode module enables high concentration infrared laser light projection, and efficient conversion of ultra bright and compact size infrared reference dot projection at long work distance. Featured by good directivity, in experiments that require high precision dot positioning and measurement, such as atomic optics and quantum physics experiments, 808nm infrared dot laser can accurately act on the target area. in experiments that require high energy density, it can produce obvious optical effect for nonlinear optical experiments, light-matter interaction research.
Owing to the special use of APC, ACC driving circuit board inside the tube, within wide range output power of 5mW to 400mW, 808nm infrared laser diode module keeps stable output power supply, and maintains small power fluctuation during long term operation. It provides stable infrared laser light source for spectral measurement, laser interference experiments with stable infrared laser light source guarantee, and enables great improvement of the accuracy and success rate of the experiment.
According to the use of ultra compact and durable structure design, this accessory part of 808nm infrared laser diode module enables quite easy installation and adjustment of both of IR dot diameter and emitting direction, thus achieves high accuracy and no barrier dot positioning for various scientific experiment and researches. Further more, when laser users are aware of powerful infrared laser radiation and potential thermal energy hurt to eyes, after avoiding eye exposure to beam aperture, infrared alignment laser assures easy, secured and low production cost use for all night version fields.

General Use of 780nm Infrared Laser Diode Module

The operation of a 780nm infrared laser diode module applies a long wavelength 780nm, which is in the near infrared region and cannot be directly seen by the human eyes. In practical night version precise dot measuring work fields, it is operating properly with night version device, and achieving concealed lighting or marking, and has obvious advantages in security monitoring, night version and other scenes that required concealed work. Cooperating with night version device of CCD camera, black and white camera or infrared laser camera, and connecting with AC/DC adapter, this infrared dot laser makes sure of ultra clear and precise infrared dot alignment in distance.

780nm infrared laser diode module
780nm infrared laser diode module

Although 780nm infrared laser diode module projects invisible infrared laser beam, however, it gets even better laser light source penetration. It can penetrate scattering media such as smoke and dust, and has good laser light transmission performance in quite harsh working environments. When it gets advanced use of a semiconductor infrared laser diode within 5mW to 100mW, after proper connects with 5V, 9V 1000mA AC/DC adapter, this infrared dot laser can be used in environmental monitoring, security monitoring and other fields etc.
Besides its operation with high density and highly powerful infrared laser light source emission, this 780nm infrared laser diode module applies an excellent quality glass coated lens. It keeps work with good collimation and good focusing result, even though it is pointing at quite long work distance, it still gets highly concentrated infrared laser light source, and a small size and highly precise infrared reference dot projection at various work distances. In practical precise infrared dot alignment work, infrared dot laser gets good biocompatibility. The penetration depth of biological tissue is moderate, and the light damage is small. In applications such as biomedical imaging and detection, it can reduce damage to biological samples while obtaining biological information.
Inside the durable anodized aluminum alloy housing tube, 780nm infrared laser diode module applies APC, ACC driving circuit board design. It enables the stable operation of the laser diode, provides stable electric current and power output, and ensures the luminous intensity and stability of the module. In process of long time and long distance lasting infrared dot alignment work, 780nm infrared dot laser gets good heat dissipation performance and mechanical strength. It gets perfect protection of its internal optical and circuit components, and adapt to different environments.
Applications:
Biomedical field: In near-infrared imaging, 780nm infrared laser light source can be used as a light source to illuminate biological tissues, cooperate with imaging equipment to obtain internal information, and be used for disease diagnosis, biological research, etc.. It can also be used for optical biopsy to help doctors observe the physiological state of tissues.
Industrial detection field: 780nm infrared laser diode module can be used for surface defect detection of objects, and judge whether there are scratches, cracks, etc. on the surface by analyzing the reflected infrared light. It can also be used for internal structure detection of materials, and use its penetration to obtain information inside the material, and detect whether there are defects such as bubbles and stratification.
Security monitoring field: As an auxiliary light source for night vision monitoring, 780nm infrared laser cooperates with infrared cameras to provide clear monitoring images at night or in low light environments. It can also be used in infrared anti-theft alarm systems to trigger alarms when objects block infrared light.
Smart device field: In sweeping robots, it helps robots identify obstacles and build maps; in 3D face recognition of mobile devices such as mobile phones, it cooperates with infrared cameras to obtain facial depth information.