The MIF file has two areas - the file header area and the data section. The textual data is delimited data, with one row per record and either Carriage Return, Carriage Return plus Line Feed, or Line Feed between lines. MIF file and textual data is contained in a. Mapinfo data is in two files - the graphical data resides in a. It works on all platforms supported by MapInfo. The MapInfo Interchange Format (MIF) is an ASCII file vector format which allows generic data to be attached to a variety of graphical items. In this example, 1641 is the unique identifier for that contour, 140 is the contour height and the remainder is the Geometry for that feature. For example, one line of exported contour data may look as follows: When exporting data from QuickMap in WKT, QuickMap will also add attribute data to the file in fields delimited by the ‘|’ character. The well-known text representation of geometry provides a standard textual representation for spatial data. Geometry is a term adopted by the Open GIS Consortium to define two dimensional data. Well Known Text (WKT) is an ASCII file vector format defined by the Open GIS Consortium (OGIS) to represent a geometry. This format is supported by many other CAD and GIS Applications, and is also supported by QuickMap with the following constraints:All QuickMap Geometries are exported as lines. The Drawing Interchange file format (DXF) is an ASCII file vector format used by AutoCAD which is the Copyright(C) of Autodesk, Inc. prj – Projection definition for the features. dbf – dBASE file that containing the feature attributes. A Shapefile stores map (geographic) features and attribute data as a collection of files having the same prefix and the following file extensions. The Shapefile format is created by ArcView and can be used by ArcView, ARC/INFO, ArcGIS and other widely used GIS software. The ESRI Shape File Format is a digital vector (non-topological) storage format for storing geometric location and associated attribute information. The following file formats are supported for import and export: Format Virtually all NZ projections are supported for import, including Local Circuit coordinate systems. QuickMap supports a wide range of file formats for import. Data may be exported in over 60 different Coordinate Systems for export. Most property and Topographic data in QuickMap may be exported from QuickMap in a wide range of raster and vector file formats, and freely distributed in other software packages. Output information as spreadsheet (.csv), Google Earth (.kmz) and AutoCAD (.dxf) reports.ĮKKO_Project can be enhanced with the optional Interpretation, SliceView and Processing Modules.Choose from a wide range of raster and vector file formats to export data from QuickMap, or Import into QuickMap. The MapView window displays a map image of grids and GPS paths. are housed in a single Project (.gpz) file that can be added to throughout your project lifetime. All GPR data, GPS, topography, photos, notes etc. EKKO_ProjectĮKKO_Project features unique managing and display of GPR line data and ancillary data, enhanced viewing of file attributes, and the biggest benefit – use of a single file to store all information in a GPR project. In addition, a range of application-specific software like ConquestView and IcePicker support individual user needs. EKKO_Project provides a family of processing and analysis modules software in an integrated user environment. Sensors & Software team of experienced GPR professionals are constantly developing analysis tools and adding to our unique range of software packages to support our GPR systems.ĮKKO_Project is the flagship solution for users requiring full GPR project data management. Advanced applications require processing and the ability to display data in a variety of forms. Software is an important component of GPR.
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