Most machines that read g-code require it to be written in a certain way. For your laser it’s usually safe to stick with the software the manufacturer suggests or find one you prefer that’s compatible. We’ve provided guidelines and acceptable file formats if we’re doing the cutting for you. It’s important that your software and your hardware are compatible. Some g-code software can only accept vector files, some will also accept raster files like bitmap images made up of pixels. As mentioned above, SendCutSend requires. Make sure the formats your design software can export align with the formats your g-code software can import. What Should a Laser Cutting Software Have? Image Format Supportįor software that doesn’t have the capability of creating the design, you want to be able to import your designs from whatever software you’re using. Even though most CNC style machines use some type of g-code to operate, not all g-code is compatible with all machines. If you have your own laser, it may have its own software or you may have to find a compatible one. If you’re planning to have SendCutSend cut your parts for you, we take care of this part on our end so you can just focus on the design. Typically the software does this by creating a g-code file, which is just a list of simple machine commands that the machine can interpret and follow. That can include tool paths, how fast the laser moves, how much power it should output and when, what order to cut the lines, where and how to start and stop cuts on the lines (lead in and out), and so on. Laser control software is used to tell the laser how to cut out your design. That’s usually some format of 2D vector graphics file. In the end the goal from all of them is the same, to take your design and export it in a format suitable for laser cutting. In other software, you may create full 3-dimensional models using sketches, extrusions, sweeps, lofts, etc. You can add, subtract and manipulate them in a variety of ways to end up with the design you want. In some software you create your design by drawing 2-dimensional vector shapes like lines, curves and basic polygons. This shouldn’t come as a surprise, but they all work differently. From there, the instructions file (usually called g-code) goes to the laser cutting machine and the parts get cut. Some software has the capabilities to do both the design and the laser instructions.Ī typical workflow might start with design software to create the shape you want to cut, exporting it in an appropriate format and then importing it to set up the cut process in a laser instruction software. Then there’s software you use to tell the laser cutting machine how to cut your design. There’s software you use to create a design. You can think of laser cutting software from two perspectives. In this article we’ll cover some common options and what to look for when choosing software to laser cut your parts. But what if you’re making your own parts on your own laser? If SendCutSend is making your parts, that means 2D vector graphics files in 1:1 scale, in. When designing for laser cutting, you need software that can turn your ideas into a file CNC laser cutters can understand.
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