
this lecture introduces the hesketh ezcad laser software and its three areas: the working area, the laser settings (mode, speed, power), and the component area, with text and vector imports.
Configure fiber laser marking by selecting the work area, entering text, adjusting position and size, choosing a font, and applying alignment and angle with passes using speed and power controls.
Explore circle marking in ezcad, controlling circle diameter, centers, and font changes to label parts. Learn to apply text on lines and adjust inside or outside placement.
Learn to draw a name necklace in EzCad by typing a name, ungrouping and aligning text, forming a circle outline, and exporting selected vectors for cutting.
Learn about vector files and vectors in drawing and text, and explore simple programs like Illustrator and Aspies for vector work.
Master cutting settings for a 50-watt fiber laser using EzCad, with gold and silver at 0.5–0.6 mm thickness. Learn how material softness or strength affects speed and power.
Discover wobble cutting settings in ezcad, using global settings to cut circles on 0.7–1.0 mm thickness, adjusting speed, power, and distance for precise results.
Learn deep engraving in ezcad for fiber lasers, including importing a logo, setting the zero point, and performing inside or outside engraving with multiple depth passes.
Learn to design an infinity-name necklace in EZCad for fiber laser engraving, including importing images, creating vector text, sizing, joining components, and preparing for cutting and finishing.
Mark serial numbers on identical parts using a fiber laser in ezcad, and demonstrate setting increments, limits, and batch marking sequences.
Learn how to change an existing drawing in Ezcad by editing objects, selecting items, renaming parts, adjusting size, and copying and pasting edits.
This lecture demonstrates marking a ring inside and outside with a fiber laser in ezcad, using vectorized text, size and name sequencing, and adjusting speed and power for accurate marks.
Practice cutting after marking with hatch patterns on laser-cut components, using vectors, ungrouping, offsetting outside and inside shapes, polishing, ultrasonic cleaning, and adjusting cutting parameters on the laser table.
Learn to mark models on rings outside by measuring the outside diameter, setting marks at precise diameters, for example 21 mm, and adjusting system parameters and workspace for accurate results.
Learn to draw Arabic text for fiber laser engraving, change language and font, and import Arabic names as bitmaps for EzCad workflows.
Mark QR codes with a fiber laser using ezcad, adjust parameters, and import or download QR images for engraving. Follow practical safety tips on grounding, table setup, and lens maintenance.
You will be able to use a basic fiber laser when you purchase this course. When you apply everything described in the videos, you will now become an expert and earn money from this job. Of course you need a machine. In this course; You can access many content such as writing, scraping, marking, painting.
Fiber laser advantages
Compared to gaslasersor solid statelasers, essential advantages offiber lasersinclude: Excellent beam quality (light-concentrating beam from opticalfiber) Simple , compact, electrically and optically efficient (small footprint and low power consumption byfiberamplification)
How a Fiber Laser Works
While many of our clients know that they have need of a laser, many don’t actually know how a fiber laser works! So, whether you’re new to the industry, or you’re just looking to brush up on your knowledge and learn something new on how fiber lasers work, then this article is for you!
So how does a fiber laser work?
As mentioned earlier, the fiber used as the central medium for your laser will have been doped in rare-earth elements, and you will most often find that this is Erbium. The reason this is done is because the atom levels of these earth elements have extremely useful energy levels, which allows for a cheaper diode laser pump source to be used, but that will still provide a high output of energy.