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Mxd Files To Autocad

For many organizations, design projects in CAD begin with base data generated from a GIS. Using the Export To CAD tool, you can export feature classes and shapefiles to AutoCAD and MicroStation formats. You can run the tool out of the box with the default parameters or you can customize the output to conform to specific CAD standards.

  1. Mxd Files To Autocad File
  2. Convert Mxd To Dwg

You can open the tool in the following ways:

AutoCAD drawings. AutoCAD formats do not require seed files to generate output. If you choose to use one, you can use.dwg or.dwt file types interchangeably. MicroStation drawings. All MicroStation V8 drawings require a seed file. By default, the Export To CAD tool selects a sample 2D seed file. Dec 16, 2017  I am trying to convert MXD document with legend to DWG/DXF. I have prepared the template file containing block and used tools 'add Cad fields' and 'Export to cad' using python reading domain coded values. I have to convert the layout (legend, scale-bar and North arrow) also to CAD. MXD to DWG - Import Shape Files to AutoCAD MAP You cannot bring an Arcmap drawing into AutoCAD. Arcmap is composed of a series of shape files. If you have AutoCAD Civil 3D 2007, you can import shape files into CAD but not the actual MXD. How GIS Data Can Be Imported Into AutoCAD Civil 3D. Products and versions covered. AutoCAD Map 3D, Infrastructure Design Suite, AutoCAD, & AutoCAD Civil 3D. Use the Map Image Insert command (MAPIINSERT) to bring in a variety of georeferenced raster image files.

  • In a map document, right-click the layer in the table of contents and click Data > Export to CAD from the context menu.
  • In a Catalog window, right-click the dataset or feature class and click Export > To CAD from the context menu.
  • In a Search window, type Export To CAD and click the Tools filter.
  • Navigate to the To CAD toolset in the Conversion toolbox.

Name the drawing at runtime

To name the CAD drawing when you run the tool, type the full path and file name in the Output File text box and check the Ignore Paths in Tables check box. This exports all the input features to one CAD drawing and overrides any paths that may defined by the input features with the DocPath field.

Separate features with the DocPath field

Uncheck the Ignore Paths in Tables check box if the input features have been modified to include the DocPath field in their respective tables. This exports the input futures to the path and file names specified in each row of the feature class table. When this setting is unchecked, the file name specified in the Output File text box is ignored.

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Overwrite existing CAD files

To overwrite existing CAD file, uncheck the Append to Existing Files check box.

Note:

To enable the tool to overwrite existing CAD datasets, click Geoprocessing > Geoprocessing options on the Standard toolbar and check the box overwrite the outputs of geoprocessing operations.

Add a seed file

If you need the CAD drawing to contain specific settings or other native base data, you can add a seed (CAD template) file as a secondary input. The results are similar to appending the input features to a copy of the seed file. Any format specified by the Output Type setting is ignored.

AutoCAD drawings

AutoCAD formats do not require seed files to generate output. If you choose to use one, you can use .dwg or .dwt file types interchangeably.

MicroStation drawings

All MicroStation V8 drawings require a seed file. By default, the Export To CAD tool selects a sample 2D seed file with units set to meters. If the input features contain three-dimensional data, you must use a 3D seed file. You can browse and choose from other seed files in the ArcToolbox templates folder (example: C:Program FilesArcGISDesktop10.3.1ArcToolboxTemplates).

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Note:

To determine if your input features are three-dimensional, right-click the feature class in a Catalog window and open the Feature Class Properties dialog box. Click the Feature Extent tab and examine the values in the section labeled Z Extent. Any nonzero value in the Min or Max text box indicates that the data is three-dimensional.

About MicroStation seed files

MicroStation seed files contain critical information about the drawing's global origin, working units, and the 2D (design plane) or 3D (cube) coordinate space. Any spatial data that falls outside the defined coordinate boundary is not exported to the drawing file. Many organizations that require a specific global origin, provide DGN files as downloadable files from their website.

The global origin setting defines the location of the x, y, and z origin coordinates 0,0,0 relative to the file's coordinate space. For V8 DGN files, the default location is the exact center of the 2D design plane or 3D design cube. For V7 DGN files, the default location is the lower-left or bottom-left corner of the coordinate space.

Tip:

For MicroStation users, drawings with dissimilar global origins can cause misalignment issues when the files are added to the same workspace as coincident attachments. The solution in MicroStation is to enable the Coincident - World orientation setting when you create a coincident attachment. When this setting is enabled, MicroStation aligns their respective global origins instead of their design planes.

Related Topics

Feedback on this topic?

For many years, CAD data and Geographic Information System (GIS) data have lived in different worlds. As private and public organizations across the globe are working hard to geospatially locate everything on the planet, these two worlds are quickly merging. Even better, all this data is becoming more accessible to the public, and it’s free in many cases.

So What Kind of Data Is out There for Us CAD and Civil 3D Users?

Engineers, planners, architects and surveyors can use this GIS data from the preliminary stages to final design. Some examples of available GIS data include:

  • Parcels
  • PLSS data
  • Demographics
  • Survey points
  • Water boundaries
  • Hydrology
  • Floodplains
  • Road centerlines
  • Environmental data
  • Topo linework
  • Archaeological data
  • Wet and dry utilities
  • Municipal boundaries Aerial imagery
  • LiDAR data
  • DEMs
  • Shapefiles that originally came from CAD data

How Do I Bring GIS Data Into Civil 3D

Mxd Files To Autocad File

Autodesk provides many tools to utilize GIS data and many of them are built into Civil 3D. Here are a few of the most commonly used Civil 3D tools:

Drawing Settings – Units and Zone

Prior to bringing in GIS data, you will need to properly set up your drawing. In the Toolspace/Settings Tab, right click on the Drawing name at the top and click on “Edit Drawing Settings.”

In the Units and Zone Tab, set the coordinate system appropriately.

MAPIMPORT

This command can either be typed or found in the “Insert” ribbon tab. Map Import brings your GIS data into AutoCAD as AutoCAD objects, equipping you with the full editing capabilities of AutoCAD. Here are some of the various formats you can import:

MAPIINSERT

Use the Map Image Insert command (MAPIINSERT) to bring in a variety of georeferenced raster image files. There are many great resources on GIS data websites for raster images that are geospatially accurate. When they are inserted properly using this command, they will drop right into place within the drawing. Here are the many different file types that can be brought in using this command:

GEOMAP

This is a command that will bring Bing Map aerial and road imagery directly into the drawing file. You’ll be able to clip out specific images, pan and zoom anywhere on the map, and use the power of the map server to automatically adjust the resolution, depending on your zoom scale. This is an invaluable tool to bring background imagery into your drawing file.

MAPWSPACE

This command will open the AutoCAD Map 3D Task Pane, which will allow you to create, manage, display, and publish GIS data using Map 3D.

Convert Mxd To Dwg

It’s important to note that importing GIS data involves aligning coordinate systems, datums, grid-to-ground conversions, and different units of measurement. This involves making sure that the drawing is set up properly, the AutoCAD linework and Civil 3D object data is drawn in the correct location, and the incoming GIS data is properly projected.