Software development kit for motor control Helping customers to easily browse, select and purchase products, the. Mouser Electronics offers a wealth of customer-focused online tools to simplify and optimise the selection and purchasing process. Mouser’s resource pages make it easier to find what you need Network sizes have been reduced by 50% by optimising containers for weights and the built-in bit accuracy simulator’s speed has been tripled. The Services and Tools page and Help Centre give customers the ability to view and track orders, request technical support and data sheets, and place orders. Webinar: How to use Flex and Rigid-Flex PCBsĪttend a joint webinar by Altium and AT&S on various PCB design topics including designing with Rigid-Flex and flexible PCBs.įind tools and help more easily on Mouser’s website ![]() Texas Instruments has released an online resource combining the top five power design tools available to aid in the next electronic project design. ST Microelectronics has released reference designs for the STM32WL5x and STM32WLEx, allowing new applications to be quickly prototyped. ST releases new reference designs for STM32 Manufacturing / Production Technology, Hardware & ServicesĪltium has released version 22.7 of Altium Designer schematic and PCB layout software which focuses on commenting and secure repository management features.įusion 360 gains Ultra Librarian electronics CAD libraryĪutodesk collaborated with Ultra Librarian to generate this Fusion 360-compatible app that provides users with free verified schematic symbols, PCB footprints, 3D STEP models, and reference designs. Figure 1 shows an example of a USB 3.0 receptacle from Molex.įurther reading: Altium Designer 22.7 released This is especially true of components that have a detailed mechanical aspect to them, like connectors. Many component companies will make STEP models (and other file formats) available, usually for free. Additionally, any modifications or corrections can be made quickly and easily.Īnother avenue is to visit a part manufacturer’s website. One advantage of having your MCAD team create these models is the 3D component can be built to your exact specifications, including specifying which of a package’s min/typ/max sizes to use, orientation, origin point, colours, etc. Most MCAD toolsets can export to the STEP format (either AP-203 or AP-214 are supported in Altium Designer). Your mechanical design team may have already created the 3D models for your electronic components, so why look any further? If they haven’t, it may be a simple process to get them built. One of the first choices should be internal to your organisation. The first step in adding a 3D model to a footprint is obtaining the model, but where from? There are several methods available. The following sections will explain how to obtain 3D STEP models and embed them in your PCB design environment. ![]() Having to switch between the native PCB tool and a different 3D viewing environment can add yet another hurdle to this process.Īdding and manipulating 3D models in a native 3D design environment like Altium Designer makes the unification of the ECAD and MCAD worlds as efficient as possible. It is important that the model can be easily imported into the footprint while also having the ability to be visually manipulated in the 3D environment. ![]() Integration methods for STEP models can differ between toolsets. STEP model integration provides a significantly higher level of three-dimensional data that can not only be passed over to the MCAD world but can also be used directly in your ECAD tool. While IDF can be useful in creating simple extrusions of component bodies, many details are missed because of the limitations of the IDF file. Some use antiquated methods like DXF or IDF files to exchange that data. The MCAD tools traditionally supply all mechanical data. Regardless of the electrical design tool’s 3D capabilities, accurate component 3D modelling information is crucial to the success of this process. But transferring inaccurate design data back and forth between the ECAD (electronic computer-aided design) and MCAD (mechanical computer-aided design) worlds can not only cause frustrations felt by both design teams but can also drastically increase the number of design spins required to fit the PCB into its final assembly. Integrating mechanical design workflows into electrical design tools has become a necessary component of today’s successful PCB design processes. By Dave Cousineau, senior application engineer, Altium.
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