How to Make Advanced Use of 405nm Violet Laser Line Generator for Car Wheel Alignment

405nm violet laser line generator
405nm violet laser line generator

Based on the constant technical innovation of 405nm violet laser diode tech and a qualified glass coated lens design inside a durable anodized aluminum alloy housing tube, it is designed and manufactured into a professional line measuring device, such as a 405nm violet laser line generator. It makes constant violet laser beam and violet reference line projection from the beam aperture. Based on the use of an import 405nm violet laser diode and a qualified optic lens design inside a highly durable metal housing tube, cooperated with basic thermal emitting design, this ultra compact size structure made violet line laser module enables quite easy easy installation or integration, quick reaching, good direction and highly straight violet reference line projection for all laser car wheel alignment works conveniently.
Usually 405nm violet laser line generator projects ultra clear and straight violet reference line from a qualified glass coated lens. Owing to its selection of wide range fan angles of 10 to 110 degree, it projects high linear quality and highly straight violet reference line within 0.5 meter to 6 meters length in distance. When it gets special use of adjustable focus optic lens design, every time highly powerful violet laser light is concentrated, it converts into increasing brightness and fineness violet reference line projection for both of higher lighting or longer distance workshop working occasions.
In practical laser car wheel alignment work fields, 405nm violet laser line generator is used as below:
Application methods in tire production positioning: In the tire forming stage, the 405nm violet laser module is installed on the forming machine frame. The projected violet linear line serves as a reference line for the bonding of tread rubber, ply, etc., ensuring precise alignment of each layer of material. In the vulcanization stage, it provides positioning marks for the mold and blank of the tire, preventing misalignment of the tire structure during vulcanization. In the post-production inspection stage, when used with 3D vision inspection equipment, the projected 405nm violet alignment laser line can cover the tire cross-section, assisting in measuring tread depth, tire out-of-roundness, and even identifying key information such as DOT codes.
Overall application areas: In addition to automotive tire production, industrial applications include PCB board and semiconductor quality inspection, clothing cutting marking, and metal processing tool setting; scientific research applications include spectral analysis and precision optical experiments; medical and testing applications assist in the positioning and indication of biomedical instruments and medical imaging; furthermore, 405nm violet laser line generator can be used for 3D visual scanning, anti-counterfeiting label verification, and in some cases, as stage lighting to create special visual effects.

Teaching Field Used 405nm Violet Laser Line Generator

When line projection work is processing for teaching fields, the short wavelength of 405nm made device of a violet laser line generator just assures quite nice violet laser light source emission and ultra clear violet reference line projection for a lot of experimental fields. It is made with ultra compact structure and high strength metal housing tube design, and getting constant electric power source supply. Based on the use of an external electric power source and proper installation or integration with desired experimental teaching device or equipment, it enables high precision, high stability and high straightness violet line indication effectively.

405nm violet laser line generator
405nm violet laser line generator

Being made with an import 405nm violet laser diode within 50mW to 100mW and high power range up to 150mW to 200mW, this 405nm violet laser line generator has just applied an external AC/DC adapter as its electric power source. It gets no limitation by manual labor force input, but also enables long time lasting violet laser line projection from beam aperture. The basic equipment of a metal heat sink cooling system is configured with a durable anodized aluminum alloy housing tube, thus violet line laser module obtains superior nice thermal emitting, increasing stability violet reference line projection within constant work time of more than 8 to 10 hours per day.

In various working environments, including wide range operating temperature, humidity and other harsh working environments etc, glass coated lens made 405nm violet laser line generator enables high linear quality and highly straight violet reference line projection. It is allowing freely selected fan angles of 10 to 110 degree. After its special use of adjustable focus optic lens design, it gets high density and highly powerful violet laser light source concentration, and converts into increasing brightness and fineness violet line projection in distance.

Applications of violet laser line generator in teaching field:

Physics teaching: In experimental teaching of optics, mechanics and other courses, highly clear violet laser line is used to demonstrate basic optical phenomena such as light propagation, reflection, and refraction, helping students to intuitively understand optical principles. In mechanical experiments such as rigid body rotation and vibration, it is used as a displacement or angle measurement mark to improve the accuracy and visualization of experimental measurements.

Engineering teaching: In the teaching of majors such as mechanical engineering and electrical engineering, violet line laser module is used to demonstrate the principles and applications of technologies such as laser processing and laser measurement. In automated control experiments, it is used as a light source for position sensors to help students understand the working principles of sensors and the design of control systems.

Experimental demonstration: In popular science activities or open laboratories, through simple experimental demonstrations, such as using violet line laser modules to conduct light interference and diffraction experiments, students’ interest in scientific research is stimulated and their observation and thinking abilities are cultivated.