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Description
Google Earth Engine serves as a cloud-centric platform designed for the scientific examination and visualization of geospatial data, granting users access to an extensive public archive containing over 90 petabytes of analysis-ready satellite imagery alongside more than 1,000 carefully curated geospatial datasets. This rich collection boasts over five decades of historical imagery that is refreshed daily, with pixel resolutions reaching as fine as one meter, showcasing datasets from sources such as Landsat, MODIS, Sentinel, and the National Agriculture Imagery Program (NAIP). Through its web-based JavaScript Code Editor and Python API, Earth Engine empowers users to perform analyses on Earth observation data while employing machine learning techniques, thereby enabling the creation of sophisticated geospatial workflows. The platform's seamless integration with Google Cloud facilitates large-scale parallel processing, allowing for thorough analyses and efficient visualization of Earth data. Furthermore, Earth Engine's compatibility with BigQuery enhances its capabilities, making it a versatile tool for users in various fields. This unique combination of features positions Google Earth Engine as an essential resource for researchers and professionals working with geospatial information.
Description
The BigQuery Connector for Jira is an integration tool that facilitates the seamless transfer of Jira data into Google BigQuery, enabling extensive analysis and reporting without the need for coding. This tool allows users to export a variety of Jira data, including standard fields, custom fields, historical data, and agile metrics, along with information from the Tempo suite—including Timesheets, Capacity Planner, and Financial Manager—as well as other applications available in the Marketplace. It also features built-in calculated fields like Time in Status and Time at Assignee, making it easier to analyze performance metrics. Users can filter data using basic options or JQL, set up automatic refresh schedules, and ensure their BigQuery datasets are always current without any programming effort. The system also includes granular permissions and sharing settings to ensure that data access aligns with user roles effectively. Designed specifically for enterprise, government, and educational institutions, it supports teams that are engaged in analytics utilizing a cloud data warehouse. Additionally, the BigQuery Connector for Jira is a component of Tempo's Strategic Portfolio Management (SPM) suite, which also includes tools like Tempo Structure PPM, Timesheets, Capacity Planner, and Financial Manager, enhancing the overall analytics capabilities across various sectors.
API Access
Has API
API Access
Has API
Screenshots View All
No images available
Integrations
Google Cloud BigQuery
AlphaEarth Foundations
GeoPandas
Google Cloud Analytics Hub
Google Cloud Platform
JavaScript
Jira
Python
WeatherNext
Integrations
Google Cloud BigQuery
AlphaEarth Foundations
GeoPandas
Google Cloud Analytics Hub
Google Cloud Platform
JavaScript
Jira
Python
WeatherNext
Pricing Details
$500 per month
Free Trial
Free Version
Pricing Details
$10/month/user
Free Trial
Free Version
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Vendor Details
Company Name
Founded
1998
Country
United States
Website
cloud.google.com/earth-engine
Vendor Details
Company Name
Tempo Software
Founded
2009
Country
Iceland
Website
www.tempo.io/products/bigquery-connector-for-jira
Product Features
GIS
3D Imagery
Census Data Integration
Color Coding
Geocoding
Image Exporting
Image Management
Internet Mapping
Interoperability
Labeling
Map Creation
Map Sharing
Near-Matching
Reverse Geocoding
Spatial Analysis