100+ datasets found
  1. a

    Digital Elevation Model (DEM) 2017 GeoTiff Tiles (zip file)

    • hub.arcgis.com
    Updated Mar 13, 2018
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    San Mateo County (2018). Digital Elevation Model (DEM) 2017 GeoTiff Tiles (zip file) [Dataset]. https://hub.arcgis.com/documents/d72d8286fecc43b890d6879991d4f4a9
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    Dataset updated
    Mar 13, 2018
    Dataset authored and provided by
    San Mateo County
    Description

    Digital Elevation Models (DEM's) for the 2017 San Mateo LiDAR project covering approximately 578 square miles in San Mateo County, CA. This dataset meets QL2 accuracy and with 4 points per meter pulse density. To acquire detailed surface elevation data for use in conservation planning, design, research, floodplain mapping, dam safety assessments, and hydrologic modeling. LAS and bare earth DEM data products are suitable for 1 foot contour generation. USGS LiDAR Base Specification 1.2, QL2. Project Projection, Datums and Units. Projection - State Plane California III FIPS 0403. Horizontal datum - North American Datum of 1983 (NAD83). Vertical datum - North American Vertical Datum of 1988 (NAVD88) using the latest geoid (Geoid12a) for converting ellipsoidal heights to orthometric heights. Units - US feetThe full metadata file in .xml format can be viewed here: DEM_Metadata

  2. f

    India's elevation profile in a GeoTIFF file

    • figshare.com
    tiff
    Updated May 30, 2023
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    Dilawar Singh (2023). India's elevation profile in a GeoTIFF file [Dataset]. http://doi.org/10.6084/m9.figshare.12479306.v2
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    tiffAvailable download formats
    Dataset updated
    May 30, 2023
    Dataset provided by
    figshare
    Authors
    Dilawar Singh
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    India
    Description

    India's elevation data as a single TIFF file. See https://github.com/dilawar/map-india-center for more details.MD5 checksum: 97dcbee8b20f3b4de3036cfb9701a5e7 india.clipped.tif# CreditsFile india-composite.geojson is from datameet repository https://github.com/datameet/maps/tree/master/Country (Release under http://creativecommons.org/licenses/by-sa/2.5/in/ )

  3. a

    Europe SRTM elevation data, 250m cellsize - GeoTiff Download

    • hub.arcgis.com
    • arc-gis-hub-home-arcgishub.hub.arcgis.com
    Updated Apr 22, 2025
    + more versions
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    geomedienlabor_bht (2025). Europe SRTM elevation data, 250m cellsize - GeoTiff Download [Dataset]. https://hub.arcgis.com/maps/d7192b5aa0b1443e9e5b1c3aeff44b08
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    Dataset updated
    Apr 22, 2025
    Dataset authored and provided by
    geomedienlabor_bht
    Area covered
    Europe
    Description

    Radar data at 250m. All tiles required for a representation of Europe.Property of NASA, downloaded from https://srtm.csi.cgiar.org.Re-projected at the Berlin University of Applied Sciences according to EPSG 102014 (in metres, centred on 10° East).We also offer the data as a tiled imagery layer. Radar-Daten in 250m. Alle Kacheln, die für eine Darstellung von Europa benötigt werden.Eigentum der NASA, runtergeladen von https://srtm.csi.cgiar.org.An der Berliner Hochschule für Technik umprojiziert nach EPSG 102014 (in Meter, zentriert auf 10° Ost).Weiterhin bieten wir die Daten als tiled imagery layer an.

  4. r

    Global Bathymetry and Elevation Digital Elevation Model: SRTM30_PLUS v8 (30...

    • researchdata.edu.au
    • catalogue.eatlas.org.au
    • +2more
    bin
    Updated Aug 2, 2016
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    Sandwell, David; Becker, Joseph; Smith, Walter; Scripps Institution Of Oceanography, University of California San Diego (2016). Global Bathymetry and Elevation Digital Elevation Model: SRTM30_PLUS v8 (30 arc sec, 1 km) reformatted as single GeoTiff (NERP TE 13.1 eAtlas, source: UCSD) [Dataset]. https://researchdata.edu.au/global-bathymetry-elevation-source-ucsd/675178
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    binAvailable download formats
    Dataset updated
    Aug 2, 2016
    Dataset provided by
    eAtlas
    Authors
    Sandwell, David; Becker, Joseph; Smith, Walter; Scripps Institution Of Oceanography, University of California San Diego
    License

    Attribution 3.0 (CC BY 3.0)https://creativecommons.org/licenses/by/3.0/
    License information was derived automatically

    Area covered
    Description

    This dataset corresponds to a reformatting of the SRTM30_PLUS digital elevation dataset from 33 NetCDF files into a single GeoTiff for use in GIS applications. No other modifications to the data were done. The rest of this metadata describes the original SRTM30_PLUS dataset itself.

    This dataset is a 30-arc second resolution global topography/bathymetry grid (SRTM30_PLUS) developed from a wide variety of data sources. Land and ice topography comes from the SRTM30 and ICESat topography, respectively. Ocean bathymetry is based on a new satellite-gravity model where the gravity-to-topography ratio is calibrated using 298 million edited soundings. The main contribution of this dataset is the compilation and editing of the raw soundings, which come from NOAA, individual scientists, SIO, NGA, JAMSTEC, IFREMER, GEBCO, and NAVOCEANO.

    The SRTM30_PLUS dataset developed by Scripps Institute Of Oceanography, University of California San Diego (UCSD).

    Land data are based on the 1-km averages of topography derived from the USGS SRTM30 grided DEM data product created with data from the NASA Shuttle Radar Topography Mission. GTOPO30 data are used for high latitudes where SRTM data are not available.

    Ocean data are based on the Smith and Sandwell global 1-minute grid between latitudes +/- 81 degrees. Higher resolution grids have been added from the LDEO Ridge Multibeam Synthesis Project, the JAMSTEC Data Site for Research Cruises, and the NGDC Coastal Relief Model. Arctic bathymetry is from the International Bathymetric Chart of the Oceans (IBCAO) [Jakobsson et al., 2003].

    This data consists of 33 files of global topography in the same format as the SRTM30 products distributed by the USGS EROS data center. The grid resolution is 30 second which is roughly one kilometer. In addition the global data are also available in a single large file ready for GMT and as 33 NetCDF files. The eAtlas has also merged and formatted the data as a single GeoTiff file with overviews (1.6 GB).

    The pixel-registered data are stored in 33 files with names corresponding to the upper left corner of the array shown below. The data are also merged into a single large (1.9 Gbyte, 2-byte integer) file as well as smaller 1-minute and 2-minute netcdf versions. Matching files of source identification number are available for determining the data source for every pixel.

    This new version (v8.0) includes all of the multibeam bathymetry data collected by U.S. research vessels over the past three decades including 287 Scripps expeditions from research vessels Washington, Melville and Revelle. UCSD undergraduate student Alexis Shakas processed all the U.S. multibeam data and then worked with Google researchers on the global integration.

    The data is available from UCSD FTP server as 33 NetCDF files and from the eAtlas as a merged GeoTiff.

    If you are after high resolution bathymetry/elevation data for regional areas please check the related links.

    Reference, sounding data: Becker, J. J., D. T. Sandwell, W. H. F. Smith, J. Braud, B. Binder, J. Depner, D. Fabre, J. Factor, S. Ingalls, S-H. Kim, R. Ladner, K. Marks, S. Nelson, A. Pharaoh, R. Trimmer, J. Von Rosenberg, G. Wallace, P. Weatherall., Global Bathymetry and Elevation Data at 30 Arc Seconds Resolution: SRTM30_PLUS, Marine Geodesy, 32:4, 355-371, 2009. http://topex.ucsd.edu/sandwell/publications/124_MG_Becker.pdf

    Reference, gravity data: Sandwell, D. T., and W. H. F. Smith, Global marine gravity from retracked Geosat and ERS-1 altimetry: Ridge Segmentation versus spreading rate, J. Geophys. Res., 114, B01411, doi:10.1029/2008JB006008, 2009. http://dx.doi.org/10.1029/2008JB006008

    eAtlas Processing:

    A set of Batch scripts were developed to perform the conversion of the data from NetCDF to GeoTiff and the generation of the hillshading. This processing was based on the GDAL command line tools. Full details of the processing can be found in the downloadable Scripts associated with this dataset.

    Data Location:

    This dataset is filed in the eAtlas enduring data repository at: data\NERP-TE\13.1_eAtlas\World_UCSD_SRTM30-plus

  5. H

    Digital Elevation Model for Withlacochee River

    • hydroshare.org
    zip
    Updated Oct 4, 2019
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    Sayan Dey (2019). Digital Elevation Model for Withlacochee River [Dataset]. https://www.hydroshare.org/resource/42cb8e6ee5334084a40f2bc9fd9243bf
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    zip(34.4 MB)Available download formats
    Dataset updated
    Oct 4, 2019
    Dataset provided by
    HydroShare
    Authors
    Sayan Dey
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    Description

    This is a geotiff file for Digital Elevation Model (DEM) for Withlacochee River extracted from the National Elevation Dataset (NED).

    This was created using a qgis and python based code for automated download of NED for given watershed boundaries. The watershed boundary is available at: https://www.hydroshare.org/resource/4c0ecdf634474776b181abab0d863adb/

    The watershed boundary was provided by our instructor, Dr. Venkatesh Merwade in EAPS 59100 class on FAIR Science.

  6. Indonesian Hybrid Landcover 2020 - GeoTIFF

    • data.csiro.au
    • researchdata.edu.au
    Updated Jan 2, 2024
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    Andy Hulthen; Katharina Waha (2024). Indonesian Hybrid Landcover 2020 - GeoTIFF [Dataset]. http://doi.org/10.25919/8624-rg56
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    Dataset updated
    Jan 2, 2024
    Dataset provided by
    CSIROhttp://www.csiro.au/
    Authors
    Andy Hulthen; Katharina Waha
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Time period covered
    Jan 1, 2020 - Dec 31, 2020
    Area covered
    Dataset funded by
    CSIROhttp://www.csiro.au/
    Description

    This dataset is a 10m resolution, Land Use/Land Cover (LULC) GeoTIFF, created from several open source data products and covering the Republic of Indonesia and the Federation of Malaysia for the year 2019/2020. This dataset is used in an interactive R Shiny application to generate landscape metrics at user defined locations. Lineage: This hybrid landcover GeoTIFF was created by mosaicking together the open source data products (i) ESRI 2020 Landcover, (ii) Global industrial and smallholder oil palm, (iii) Global Human Settlement and (iv) Open Street Map. Oil palm and human settlement data was resampled with the same origin (so that pixels align) and projection (EPSG:3857) as the ESRI 2020 Landcover data. Open street map waterways and roads were first converted from vector to raster, then resampled and projected to align with the other layers. The layers were then mosaicked together with the following ranking (high to low): Roads (Open Street Map), Waterways (Open Street Map), Global Human Settlement, Industrial and smallholder oil palm, and ESRI 2020 landcover. The LULC classes in the hybrid dataset are bare ground, built area, clouds, crops, flooded vegetation, grass, human settlement, industrial oil palm, smallholder oil palm, roads, scrub/shrub, trees, and water.

  7. USGS Digital Orthophoto Quadrangles - Dataset - NASA Open Data Portal

    • data.nasa.gov
    Updated Mar 31, 2025
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    nasa.gov (2025). USGS Digital Orthophoto Quadrangles - Dataset - NASA Open Data Portal [Dataset]. https://data.nasa.gov/dataset/usgs-digital-orthophoto-quadrangles
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    Dataset updated
    Mar 31, 2025
    Dataset provided by
    NASAhttp://nasa.gov/
    Description

    A Digital Orthophoto Quadrangle (DOQ) is a computer-generated image of an aerial photograph in which the image displacement caused by terrain relief and camera tilt has been removed. The DOQ combines the image characteristics of the original photograph with the georeferenced qualities of a map. DOQs are black and white (B/W), natural color, or color-infrared (CIR) images with 1-meter ground resolution. The USGS produces three types of DOQs: 3.75-minute (quarter-quad) DOQs cover an area measuring 3.75-minutes longitude by 3.75-minutes latitude. Most of the U.S. is currently available, and the remaining locations should be complete by 2004. Quarter-quad DOQs are available in both Native and GeoTIFF formats. Native format consists of an ASCII keyword header followed by a series of 8-bit binary image lines for B/W and 24-bit band-interleaved-by-pixel (BIP) for color. DOQs in native format are cast to the Universal Transverse Mercator (UTM) projection and referenced to either the North American Datum (NAD) of 1927 (NAD27) or the NAD of 1983 (NAD83). GeoTIFF format consists of a georeferenced Tagged Image File Format (TIFF), with all geographic referencing information embedded within the .tif file. DOQs in GeoTIFF format are cast to the UTM projection and referenced to NAD83. The average file size of a B/W quarter quad is 40-45 megabytes, and a color file is generally 140-150 megabytes. Quarter-quad DOQs are distributed via File Transfer Protocol (FTP) as uncompressed files. 7.5-minute (full-quad) DOQs cover an area measuring 7.5-minutes longitude by 7.5-minutes latitude. Full-quad DOQs are mostly available for Oregon, Washington, and Alaska. Limited coverage may also be available for other states. Full-quad DOQs are available in both Native and GeoTIFF formats. Native is formatted with an ASCII keyword header followed by a series of 8-bit binary image lines for B/W. DOQs in native format are cast to the UTM projection and referenced to either NAD27 or NAD83. GeoTIFF is a georeferenced Tagged Image File Format with referencing information embedded within the .tif file. DOQs in GeoTIFF format are cast to the UTM projection and referenced to NAD83. The average file size of a B/W full quad is 140-150 megabytes. Full-quad DOQs are distributed via FTP as uncompressed files. Seamless DOQs are available for free download from the Seamless site. DOQs on this site are the most current version and are available for the conterminous U.S. [Summary provided by the USGS.]

  8. USGS Historical Topographic Map Explorer

    • amerigeo.org
    • communities-amerigeoss.opendata.arcgis.com
    Updated Jun 26, 2014
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    Esri (2014). USGS Historical Topographic Map Explorer [Dataset]. https://www.amerigeo.org/datasets/esri::usgs-historical-topographic-map-explorer
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    Dataset updated
    Jun 26, 2014
    Dataset authored and provided by
    Esrihttp://esri.com/
    Description

    The ArcGIS Online US Geological Survey (USGS) topographic map collection now contains over 177,000 historical quadrangle maps dating from 1882 to 2006. The USGS Historical Topographic Map Explorer app brings these maps to life through an interface that guides users through the steps for exploring the map collection:Find a location of interest.View the maps.Compare the maps.Download and share the maps or open them in ArcGIS Desktop (ArcGIS Pro or ArcMap) where places will appear in their correct geographic location. Save the maps in an ArcGIS Online web map.

    Finding the maps of interest is simple. Users can see a footprint of the map in the map view before they decide to add it to the display, and thumbnails of the maps are shown in pop-ups on the timeline. The timeline also helps users find maps because they can zoom and pan, and maps at select scales can be turned on or off by using the legend boxes to the left of the timeline. Once maps have been added to the display, users can reorder them by dragging them. Users can also download maps as zipped GeoTIFF images. Users can also share the current state of the app through a hyperlink or social media. This ArcWatch article guides you through each of these steps: https://www.esri.com/esri-news/arcwatch/1014/envisioning-the-past.Once signed in, users can create a web map with the current map view and any maps they have selected. The web map will open in ArcGIS Online. The title of the web map will be the same as the top map on the side panel of the app. All historical maps that were selected in the app will appear in the Contents section of the web map with the earliest at the top and the latest at the bottom. Turning the historical maps on and off or setting the transparency on the layers allows users to compare the historical maps over time. Also, the web map can be opened in ArcGIS Desktop (ArcGIS Pro or ArcMap) and used for exploration or data capture.Users can find out more about the USGS topograhic map collection and the app by clicking on the information button at the upper right. This opens a pop-up with information about the maps and app. The pop-up includes a useful link to a USGS web page that provides access to documents with keys explaining the symbols on historic and current USGS topographic maps. The pop-up also has a link to send Esri questions or comments about the map collection or the app.We have shared the updated app on GitHub, so users can download it and configure it to work with their own map collections.

  9. U

    Gravity and related derivative GeoTIFF grids and data for the United States...

    • data.usgs.gov
    • datasets.ai
    • +1more
    Updated Mar 31, 2025
    + more versions
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    Anne McCafferty; Carma San; Christopher Lawley; Garth Graham; Michael Gadd; David Huston; Karen Kelley; Suzanne Paradis; Jan Peter; Karol Czarnota (2025). Gravity and related derivative GeoTIFF grids and data for the United States and Canada [Dataset]. http://doi.org/10.5066/P970GDD5
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    Dataset updated
    Mar 31, 2025
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Authors
    Anne McCafferty; Carma San; Christopher Lawley; Garth Graham; Michael Gadd; David Huston; Karen Kelley; Suzanne Paradis; Jan Peter; Karol Czarnota
    License

    U.S. Government Workshttps://www.usa.gov/government-works
    License information was derived automatically

    Time period covered
    1993 - 2017
    Area covered
    Canada, United States
    Description

    Several evidential layers calculated from a compilation of gravity data from the national-scale gravity anomaly map of the conterminous United States (Phillips and others, 1993), Alaska (Saltus and others, 2006) and Canada (Geological Survey of Canada, 2017) are presented here. This directory includes GeoTIFF grids of Bouguer gravity, the horizontal gradient magnitude of the Bouguer gravity, the Bouguer gravity upward continued 30 km, and the horizontal gradient magnitude of the upward continued gravity, The directory also includes shapefiles of locations that trace the maxima of the horizontal gradient magnitude of the gravity and of the maxima of the horizontal gradient magnitude of the upward continued gravity. Otherwise known as “worms”, the points tracking the maxima mark the edges of shallow density sources (in the case of the Bouguer gravity) and deeper density sources (calculated from the upward continued gravity). The shapefile of worms also includes attribute fields rel ...

  10. G

    Digital Topographic Raster Maps, 1944-2012

    • open.canada.ca
    • gimi9.com
    geopdf, geotif, kmz +2
    Updated Feb 1, 2022
    + more versions
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    Natural Resources Canada (2022). Digital Topographic Raster Maps, 1944-2012 [Dataset]. https://open.canada.ca/data/en/dataset/d248b5be-5887-4cfb-942f-d425d82e6ea9
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    pdf, tiff, geotif, kmz, geopdfAvailable download formats
    Dataset updated
    Feb 1, 2022
    Dataset provided by
    Natural Resources Canada
    License

    Open Government Licence - Canada 2.0https://open.canada.ca/en/open-government-licence-canada
    License information was derived automatically

    Time period covered
    Jan 1, 1944 - Jan 1, 2012
    Description

    This group of maps, which includes the CanMatrix and CanTopo collections, is now a legacy product that is no longer maintained. It may not meet current government standards. Natural Resources Canada's (NRCan) topographic raster maps provide a representation of the topographic phenomena of the Canadian landmass. Several editions of paper maps have been produced over time in order to offer improved products compared to their predecessors in terms of quality and the most up to date information possible. The georeferenced maps can be used in a Geographic Information System (GIS). In all cases, they accurately represent the topographical data available for the date indicated (validity date). The combination of CanMatrix and CanTopo data provides complete national coverage. • CanMatrix - Print Ready: Raster maps produced by scanning topographic maps at scales from 1:25 000 to 1:1 000 000. This product is not georeferenced. Validity dates: 1944 to 2005 (1980 on average). Available formats: PDF and TIFF • CanMatrix - Georeferenced: Raster maps produced by scanning topographic maps at scales of 1:50 000 and 1:250 000. These maps are georeferenced according to the 1983 North American Reference System (NAD 83). Validity dates: 1944 to 2005 (1980 on average). Available format: GeoTIFF • CanTopo: Digital raster maps produced mainly from the GeoBase initiative, NRCan digital topographic data, and other sources. Approximately 2,234 datasets (maps) at scale of 1:50 000, primarily covering northern Canada, are available. CanTopo datasets in GeoPDF and GeoTIFF format are georeferenced according to the 1983 North American Reference System (NAD 83). Validity dates: 1946 to 2012 (2007 on average). Available formats: PDF, GeoPDF, TIFF and GeoTIFF

  11. O

    Digitales Geländemodell - Rasterweite 1 m (GeoTIFF)

    • open.nrw
    • ckan.open.nrw
    • +3more
    download +4
    Updated Oct 10, 2025
    + more versions
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    Geoportal (2025). Digitales Geländemodell - Rasterweite 1 m (GeoTIFF) [Dataset]. https://open.nrw/dataset/0c6796e5-9eca-4ae6-8b32-1fcc5ae5c481
    Explore at:
    http://publications.europa.eu/resource/authority/file-type/wcs_srvc, view, download, http://publications.europa.eu/resource/authority/file-type/geotiff, http://publications.europa.eu/resource/authority/file-type/wms_srvcAvailable download formats
    Dataset updated
    Oct 10, 2025
    Dataset authored and provided by
    Geoportal
    License

    Data licence Germany - Zero - Version 2.0https://www.govdata.de/dl-de/zero-2-0
    License information was derived automatically

    Description

    Digitale Geländemodelle (DGM) sind digitale, numerische, auf ein regelmäßiges Raster reduzierte Modelle der Geländehöhen und –formen der Erdoberfläche. Sie beinhalten keine Information über Bauwerke (z. B. Brücken) und Vegetation. Die Bezirksregierung Köln, Geobasis NRW, stellt im Rahmen ihres gesetzlichen Auftrags das DGM mit einer Rasterweite von einem Meter bereit.

  12. e

    WMS visualization service of the MTN50 sheet download (nDSM) Lidar 2016...

    • data.europa.eu
    wms
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    WMS visualization service of the MTN50 sheet download (nDSM) Lidar 2016 GeoTIFF [Dataset]. https://data.europa.eu/data/datasets/spaicv030501_wmscd2016pali0100?locale=en
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    wmsAvailable download formats
    Description

    The WMS (Web map service) service allows you to view the MTN50 sheet download grid of the 1 m (nDSM) resource for the year 2016 in the province of Alicante

  13. O

    Aerial Imagery and Lidar Elevation Download Tile Grid

    • data.ct.gov
    csv, xlsx, xml
    Updated Feb 4, 2025
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    UConn (2025). Aerial Imagery and Lidar Elevation Download Tile Grid [Dataset]. https://data.ct.gov/widgets/kwj2-q499?mobile_redirect=true
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    xml, xlsx, csvAvailable download formats
    Dataset updated
    Feb 4, 2025
    Dataset authored and provided by
    UConn
    Description

    This feature service is available through CT ECO, a partnership between UConn CLEAR and CT DEEP. The tile grid service is as an index for accessing aerial imagery and lidar elevation data files for Connecticut and is used in the Download Tool.


    There are 23,381 tiles in the grid, each representing a uniform geographic area. Attributes for each tile include file names with hyperlinks leading to zip files of imagery and elevation files for multiple data acquisitions (see list below). The file links provide direct access making it easy for users to retrieve data for specific locations in Connecticut.

    Dataset Information
    Extent: The tile grid has the extent of data acquisitions which cover Connecticut and beyond in some places.
    Date: The tile grid was originally created as part of the 2016 flight which further divided tiles collected in the 2012 flight.

    More Information
    The datasets linked in the table of the tile grid, which are also available in the Download Tool, include
    • 2023 Acquisition - aerial imagery (GeoTIFF, MrSID Gen 3, MrSID Gen 4), DEM elevation (GeoTIFF), lidar point cloud (LAZ)
    • 2019 Acquisition - aerial imagery (GeoTIFF)
    • 2016 Acquisition - aerial imagery (GeoTIFF, MrSID Gen 3, MrSID Gen 4), DEM elevation (GeoTIFF), lidar point cloud (LAS)

    Also see the CT Aerial Imagery page and CT Elevation pages on CT ECO for more information.

    Credit and Funding
    The tile grid with links was created for use in the Download Tool which was part of a project between the CT GIS Office and UConn CLEAR/CT ECO. Each data acquisition had different funders and partners. Please see the acquisition pages for that information.

  14. d

    1/3rd arc-second Digital Elevation Models (DEMs) - USGS National Map 3DEP...

    • catalog.data.gov
    • data.usgs.gov
    • +2more
    Updated Nov 26, 2025
    + more versions
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    U.S. Geological Survey (2025). 1/3rd arc-second Digital Elevation Models (DEMs) - USGS National Map 3DEP Downloadable Data Collection [Dataset]. https://catalog.data.gov/dataset/1-3rd-arc-second-digital-elevation-models-dems-usgs-national-map-3dep-downloadable-data-co
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    Dataset updated
    Nov 26, 2025
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Description

    This is a tiled collection of the 3D Elevation Program (3DEP) and is 1/3 arc-second (approximately 10 m) resolution. The 3DEP data holdings serve as the elevation layer of The National Map, and provide foundational elevation information for earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The elevations in this DEM represent the topographic bare-earth surface. The seamless 1/3 arc-second DEM layers are derived from diverse source data that are processed to a common coordinate system and unit of vertical measure. These data are distributed in geographic coordinates in units of decimal degrees, and in conformance with the North American Datum of 1983 (NAD 83). All elevation values are in meters and, over the continental United States, are referenced to the North American Vertical Datum of 1988 (NAVD88). The seamless 1/3 arc-second DEM layer provides coverage of the conterminous United States, Hawaii, Puerto Rico, other territorial islands, and in limited areas of Alaska. The seamless 1/3arc-second DEM is available as pre-staged current and historical products tiled in GeoTIFF format. The seamless 1/3 arc-second DEM layer is updated continually as new data become available in the current folder. Previously created 1 degree blocks are retained in the historical folder with an appended date suffix (YYYMMDD) when they were produced. Other 3DEP products are nationally seamless DEMs in resolutions of 1, and 2 arc seconds. These seamless DEMs were referred to as the National Elevation Dataset (NED) from about 2000 through 2015 at which time they became the seamless DEM layers under the 3DEP program and the NED name and system were retired. Other 3DEP products include one-meter DEMs produced exclusively from high resolution light detection and ranging (lidar) source data and five-meter DEMs in Alaska as well as various source datasets including the lidar point cloud and interferometric synthetic aperture radar (Ifsar) digital surface models and intensity images. All 3DEP products are public domain.

  15. G

    Canadian Digital Elevation Model, 1945-2011

    • open.canada.ca
    • catalogue.arctic-sdi.org
    • +1more
    ascii grid, geotif +4
    Updated Jun 10, 2023
    + more versions
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    Natural Resources Canada (2023). Canadian Digital Elevation Model, 1945-2011 [Dataset]. https://open.canada.ca/data/en/dataset/7f245e4d-76c2-4caa-951a-45d1d2051333
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    geotif, kmz, wms, ascii grid, html, pdfAvailable download formats
    Dataset updated
    Jun 10, 2023
    Dataset provided by
    Natural Resources Canada
    License

    Open Government Licence - Canada 2.0https://open.canada.ca/en/open-government-licence-canada
    License information was derived automatically

    Time period covered
    Jan 1, 1945 - Jan 1, 2011
    Area covered
    Canada
    Description

    This collection is a legacy product that is no longer supported. It may not meet current government standards. The Canadian Digital Elevation Model (CDEM) is part of Natural Resources Canada's altimetry system designed to better meet the users' needs for elevation data and products. The CDEM stems from the existing Canadian Digital Elevation Data (CDED). In these data, elevations can be either ground or reflective surface elevations. A CDEM mosaic can be obtained for a pre-defined or user-defined extent. The coverage and resolution of a mosaic varies according to latitude and to the extent of the requested area. Derived products such as slope, shaded relief and colour shaded relief maps can also be generated on demand by using the Geospatial-Data Extraction tool. Data can then be saved in many formats. The pre-packaged GeoTiff datasets are based on the National Topographic System of Canada (NTS) at the 1:250 000 scale; the NTS index file is available in the Resources section in many formats.

  16. World - High Resolution Solar Resource (GHI, DIF, GTI, DNI) GIS Data,...

    • datacatalog.worldbank.org
    json, zip
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    https://globalsolaratlas.info/, World - High Resolution Solar Resource (GHI, DIF, GTI, DNI) GIS Data, (Global Solar Atlas) [Dataset]. https://datacatalog.worldbank.org/search/dataset/0038640/world-high-resolution-solar-resource-ghi-dif-gti-dni-gis-data-global-solar-atlas
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    zip, jsonAvailable download formats
    Dataset provided by
    World Bank Grouphttp://www.worldbank.org/
    https://globalsolaratlas.info/
    License

    https://datacatalog.worldbank.org/public-licenses?fragment=cchttps://datacatalog.worldbank.org/public-licenses?fragment=cc

    Area covered
    World
    Description

    Developed by SOLARGIS (https://solargis.com) and provided by the Global Solar Atlas (GSA), this data resource contains solar resource data for: direct normal irradiation (DNI), global horizontal irradiation (GHI), diffuse horizontal irradiation data (DIF), and global irradiation for optimally tilted surfaces (GTI), all in kWh/m² covering the globe. Data is provided in a geographic spatial reference (EPSG:4326). The resolution (pixel size) of solar resource data (GHI, DIF, GTI, DNI) is 9 arcsec (nominally 250 m).

    Due to the large amount of data, the coverage has been divided into eight segments. Four segments for the North hemisphere: WWN (West-west-north), WN (West-north), EN (East-north), EEN (East-east-north). Analogically four segments for the South hemisphere: WWS, WS, ES, EES.

    The data is hyperlinked under 'resources' with the following characteristics:
    DNI - LTAy_AvgDailyTotals (GeoTIFF)
    Data format: raster (gridded), GEOTIFF
    File size : 343.99 MB

    *For individual country or regional data downloads please see: https://globalsolaratlas.info/download (use the drop-down menu to select country or region of interest)
    *For data provided in AAIGrid please see: https://globalsolaratlas.info/download/world.

    For more information and terms of use, please, read metadata, provided in PDF and XML format for each data layer in a download file. For other data formats, resolution or time aggregation, please, visit Solargis website.

    Data can be used for visualization, further processing, and geo-analysis in all mainstream GIS software with raster data processing capabilities (such as open source QGIS, commercial ESRI ArcGIS products and others).

  17. U

    1 meter Digital Elevation Models (DEMs) - USGS National Map 3DEP...

    • data.usgs.gov
    • s.cnmilf.com
    • +4more
    Updated Feb 14, 2025
    + more versions
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    U.S. Geological Survey (2025). 1 meter Digital Elevation Models (DEMs) - USGS National Map 3DEP Downloadable Data Collection [Dataset]. https://data.usgs.gov/datacatalog/data/USGS:77ae0551-c61e-4979-aedd-d797abdcde0e
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    Dataset updated
    Feb 14, 2025
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Authors
    U.S. Geological Survey
    License

    U.S. Government Workshttps://www.usa.gov/government-works
    License information was derived automatically

    Description

    This is a tiled collection of the 3D Elevation Program (3DEP) and is one meter resolution. The 3DEP data holdings serve as the elevation layer of The National Map, and provide foundational elevation information for earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 ...

  18. LIDAR Composite Digital Terrain Model (DTM) - 1m

    • environment.data.gov.uk
    • ckan.publishing.service.gov.uk
    Updated Dec 15, 2023
    + more versions
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    Environment Agency (2023). LIDAR Composite Digital Terrain Model (DTM) - 1m [Dataset]. https://environment.data.gov.uk/dataset/13787b9a-26a4-4775-8523-806d13af58fc
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    Dataset updated
    Dec 15, 2023
    Dataset authored and provided by
    Environment Agencyhttps://www.gov.uk/ea
    License

    Open Government Licence 3.0http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/
    License information was derived automatically

    Description

    The LIDAR Composite DTM (Digital Terrain Model) is a raster elevation model covering ~99% of England at 1m spatial resolution. The DTM (Digital Terrain Model) is produced from the last or only laser pulse returned to the sensor. We remove surface objects from the Digital Surface Model (DSM), using bespoke algorithms and manual editing of the data, to produce a terrain model of just the surface.

    Produced by the Environment Agency in 2022, the DTM is derived from a combination of our Time Stamped archive and National LIDAR Programme surveys, which have been merged and re-sampled to give the best possible coverage. Where repeat surveys have been undertaken the newest, best resolution data is used. Where data was resampled a bilinear interpolation was used before being merged.

    The 2022 LIDAR Composite contains surveys undertaken between 6th June 2000 and 2nd April 2022. Please refer to the metadata index catalgoues which show for any location which survey was used in the production of the LIDAR composite.

    The data is available to download as GeoTiff rasters in 5km tiles aligned to the OS National grid. The data is presented in metres, referenced to Ordinance Survey Newlyn and using the OSTN’15 transformation method. All individual LIDAR surveys going into the production of the composite had a vertical accuracy of +/-15cm RMSE.

  19. Open Topographic Lidar Data - Dataset - data.gov.ie

    • data.gov.ie
    Updated Oct 22, 2021
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    data.gov.ie (2021). Open Topographic Lidar Data - Dataset - data.gov.ie [Dataset]. https://data.gov.ie/dataset/open-topographic-lidar-data
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    Dataset updated
    Oct 22, 2021
    Dataset provided by
    data.gov.ie
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Description

    This data was collected by the Geological Survey Ireland, the Department of Culture, Heritage and the Gaeltacht, the Discovery Programme, the Heritage Council, Transport Infrastructure Ireland, New York University, the Office of Public Works and Westmeath County Council. All data formats are provided as GeoTIFF rasters but are at different resolutions. Data resolution varies depending on survey requirements. Resolutions for each organisation are as follows: GSI – 1m DCHG/DP/HC - 0.13m, 0.14m, 1m NY – 1m TII – 2m OPW – 2m WMCC - 0.25m Both a DTM and DSM are raster data. Raster data is another name for gridded data. Raster data stores information in pixels (grid cells). Each raster grid makes up a matrix of cells (or pixels) organised into rows and columns. The grid cell size varies depending on the organisation that collected it. GSI data has a grid cell size of 1 meter by 1 meter. This means that each cell (pixel) represents an area of 1 meter squared. .hidden { display: none }

  20. G

    High Resolution Digital Elevation Model (HRDEM) - CanElevation Series

    • open.canada.ca
    • catalogue.arctic-sdi.org
    • +1more
    esri rest, geotif +5
    Updated Sep 25, 2025
    + more versions
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    Natural Resources Canada (2025). High Resolution Digital Elevation Model (HRDEM) - CanElevation Series [Dataset]. https://open.canada.ca/data/en/dataset/957782bf-847c-4644-a757-e383c0057995
    Explore at:
    shp, geotif, html, pdf, esri rest, json, kmzAvailable download formats
    Dataset updated
    Sep 25, 2025
    Dataset provided by
    Natural Resources Canada
    License

    Open Government Licence - Canada 2.0https://open.canada.ca/en/open-government-licence-canada
    License information was derived automatically

    Description

    The High Resolution Digital Elevation Model (HRDEM) product is derived from airborne LiDAR data (mainly in the south) and satellite images in the north. The complete coverage of the Canadian territory is gradually being established. It includes a Digital Terrain Model (DTM), a Digital Surface Model (DSM) and other derived data. For DTM datasets, derived data available are slope, aspect, shaded relief, color relief and color shaded relief maps and for DSM datasets, derived data available are shaded relief, color relief and color shaded relief maps. The productive forest line is used to separate the northern and the southern parts of the country. This line is approximate and may change based on requirements. In the southern part of the country (south of the productive forest line), DTM and DSM datasets are generated from airborne LiDAR data. They are offered at a 1 m or 2 m resolution and projected to the UTM NAD83 (CSRS) coordinate system and the corresponding zones. The datasets at a 1 m resolution cover an area of 10 km x 10 km while datasets at a 2 m resolution cover an area of 20 km by 20 km. In the northern part of the country (north of the productive forest line), due to the low density of vegetation and infrastructure, only DSM datasets are generally generated. Most of these datasets have optical digital images as their source data. They are generated at a 2 m resolution using the Polar Stereographic North coordinate system referenced to WGS84 horizontal datum or UTM NAD83 (CSRS) coordinate system. Each dataset covers an area of 50 km by 50 km. For some locations in the north, DSM and DTM datasets can also be generated from airborne LiDAR data. In this case, these products will be generated with the same specifications as those generated from airborne LiDAR in the southern part of the country. The HRDEM product is referenced to the Canadian Geodetic Vertical Datum of 2013 (CGVD2013), which is now the reference standard for heights across Canada. Source data for HRDEM datasets is acquired through multiple projects with different partners. Since data is being acquired by project, there is no integration or edgematching done between projects. The tiles are aligned within each project. The product High Resolution Digital Elevation Model (HRDEM) is part of the CanElevation Series created in support to the National Elevation Data Strategy implemented by NRCan. Collaboration is a key factor to the success of the National Elevation Data Strategy. Refer to the “Supporting Document” section to access the list of the different partners including links to their respective data.

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San Mateo County (2018). Digital Elevation Model (DEM) 2017 GeoTiff Tiles (zip file) [Dataset]. https://hub.arcgis.com/documents/d72d8286fecc43b890d6879991d4f4a9

Digital Elevation Model (DEM) 2017 GeoTiff Tiles (zip file)

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Dataset updated
Mar 13, 2018
Dataset authored and provided by
San Mateo County
Description

Digital Elevation Models (DEM's) for the 2017 San Mateo LiDAR project covering approximately 578 square miles in San Mateo County, CA. This dataset meets QL2 accuracy and with 4 points per meter pulse density. To acquire detailed surface elevation data for use in conservation planning, design, research, floodplain mapping, dam safety assessments, and hydrologic modeling. LAS and bare earth DEM data products are suitable for 1 foot contour generation. USGS LiDAR Base Specification 1.2, QL2. Project Projection, Datums and Units. Projection - State Plane California III FIPS 0403. Horizontal datum - North American Datum of 1983 (NAD83). Vertical datum - North American Vertical Datum of 1988 (NAVD88) using the latest geoid (Geoid12a) for converting ellipsoidal heights to orthometric heights. Units - US feetThe full metadata file in .xml format can be viewed here: DEM_Metadata

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