
Whenever advanced 808nm infrared laser diode tech and a qualified glass coated lens with different fan angles are applied for industrial grade laser device production, it is manufacturing into a professional cross line measuring tool of a 808nm infrared crosshair laser module. It emits intense and powerful infrared laser light source directly from an import 808nm infrared laser diode. Compared with traditional tools such as tape measures and squares, infrared cross laser alignment tool does not need to touch the workpiece and can complete positioning within seconds. They are especially suitable for mass production scenarios, which can significantly reduce auxiliary working hours and improve overall production efficiency.
The usual use of a 808nm infrared cross line laser module applies a qualified glass coated lens and adjustable focus optic lens design. The linear quality and verticality errors of the laser cross lines are extremely small, usually up to 0.1mm per meter level, and are not effected by ambient light (not under direct strong light), avoiding subjective errors and wear errors of manual visual positioning or mechanical contact positioning, and the accuracy remains stable for long-term use. When infrared cross laser alignment applies durable anodized aluminum alloy housing tube, it can achieves industrial grade module standard, which has the ability to resist vibration and electromagnetic interference, and can work continuously and stably in industrial environments with dust, oil pollution, and temperature fluctuations. The infrared light characteristics enable them to be clearly displayed in dark workshop environments (visibility can be enhanced with infrared receiving equipment or fluorescent plates).
Although 808nm infrared crosshair laser module applies an import 808nm infrared laser diode within 5mW to 500mW as its beam emitting source, however, it still adopts quite compact size tube diameter of 16mm, 18.9mm and 26mm. It gets various installation methods, for instance, which can be fixed on equipment racks, robotic arms or mounting bracket etc. According to quite easy screw of beam aperture part, this infrared laser alignment enables highly intense and powerful infrared laser light source concentration, and efficient conversion into increasing accuracy infrared cross line projection at greater distance. After proper adjustment of cross line projecting direction and thickness, it can be adopted to different work pieces and equipment of different sizes. It is easy to operate and install, without professional training, and operators can use it through simple debugging.
In industrial alignment and positioning, the 808nm infrared cross line laser module provides accurate spatial positioning reference for various industrial processing, assembly, detection and other links by emitting clear and stable infrared cross reference lines. It gets a lot of helpful applications as below:
• Mechanical processing: In the clamping of work pieces on lathes, milling machines and other equipment, the infrared cross line can quickly align the center axis or processing reference surface of the work piece to ensure the position accuracy of operations such as cutting and drilling, and reduce the scrap rate caused by positioning deviation.
• Sheet metal and welding: When splicing sheet metal parts, the cross-line emitted from a infrared cross laser can intuitively mark the vertical or horizontal alignment line of the splicing edge to avoid the error of manual marking; during welding, the weld position can be accurately located to ensure the consistency of the welding trajectory.
• Stone/wood cutting: On stone, wood and other plate cutting equipment, the infrared alignment laser can pre-mark the starting point and direction of the cutting path. The operator does not need to measure repeatedly and can directly cut according to the line, which greatly improves the cutting efficiency and dimensional accuracy.
• Assembly line assembly: In assembly line assembly of electronic products, automotive parts, etc., the infrared cross line source can be used as alignment marks for component installation to ensure precise docking of components in vertical and horizontal directions, and improve assembly speed and consistency.