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It can be easy to get confused between DXF and DWG files. After all, they’re both ubiquitous within the CAD industry; both display vector images; both have the same level of quality.
So, what are the differences between these vector file types? And which should you use for your next project? In this guide, we’ll explain what sets these two file formats apart—plus when and why to use each of them.
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In this guide • • • • • How are DWG and DXF similar? Both DWG and DXF are vector graphic file formats. Vector images maintain the same image quality at practically any scale, making them perfect for design purposes. It’s also easy to edit the individual elements that form a vector image, as well as adding or removing elements.
Typically, the majority of 2D vector drawings will be formed of a combination of: • Lines (including dotted lines, dash-dot lines, arrows and polylines) • Polygons (including polypolygons) • Circles • Arcs • Bezier curves (including polybeziers) • Text These common features to vector images set them apart from raster images, which are made up of pixels, and are incredibly difficult to edit and almost impossible to accurately scale. DWG and DXF differ by the type of information they can store and how this is encoded into the file. We’ll go into detail later. Secondly, both DWG and DXF were designed for use with CAD software. In fact, they were both created by the same company: Autodesk. CAD is used to produce 2D and 3D drawings, and is an important tool in a wide range of industries, including architecture, engineering, product design, manufacturing, project management and many others.
The data in the DWG and DXF files are instructions to render drawings. This data mathematically describes the object being modelled. Each data point is plotted using Cartesian coordinates, which are the X-Y coordinates on the grid. Every element of the drawing is made up of such points.
A CAD package will connect the lines between these points to render the final graphic image. Sophisticated CAD programs can use this data to dynamically generate different views (images) of the model. Is a proprietary file format used for storing 2D and 3D design data and metadata. It is the native file format for AutoCAD. The acronym DWG stands for Dra win g.
Here are few examples of drawings in DXF file format. It shows how all types of lines, polygons and text can be represented The DXF file format was created at the same time as DWG (1982) and by the same company – Autodesk. The is a practical story. Designers needed to open AutoCAD drawings using non-Autodesk applications. Hence, DXF was developed to provide an exact representation of the graphical data displayed in AutoCAD’s native file format, DWG. The need for collaboration between AutoCAD users and other CAD designers meant that DXF quickly became ubiquitous, and the format became the standard for data exchange between CAD programs.
The importance of this format cannot be understated. Different companies and industries use different CAD programs and systems, each of which may come with its own native file formats and encoding methods. However, despite these specializations, CAD users need to find a way to share their designs with one another. Enter DXF, the lingua franca of the CAD industry. Here are few examples of CAD collaboration and data exchange: • An artist sends his drawing to a cutting machine vendor. An artist designs signboards or sculptures using the software that he knows best, such as Adobe Illustrator or Photoshop. This design is then converted to a DXF file using an application like Scan2CAD.
Once converted, he’ll send the design off to a cutting machine vendor, who will manufacture the actual product from his sketch. These types of machines are CNC machines, which work with vector drawing files like DXF. These machines use the vector files to generate automatic cutting instructions,. • An architect collaborates with a structural engineer. An architect may design his floorplan with AutoCAD, using various objects to represent windows, doors and so on. The architect then shares his drawing with an engineer, who uses another program to run finite-element structural analysis.