MikMak
MikMak, a SPINS company, is a global software company that provides a leading commerce intelligence and orchestration platform for multichannel brands, helping them grow in real-time.
In January of 2026, MikMak was acquired by SPINS, bringing together two category leaders in commerce intelligence and best-in-class data and insights. The combined entity provides brands with an unrivaled, unified view of availability, point-of-sale performance, and consumer behavior, globally and in real-time.
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Dronedesk
Dronedesk is the most comprehensive and user-friendly drone operations management platform on the market. 98% of reviewers rate us "great" or "excellent" with an NPS of 80!
It brings together all the business admin and flight planning tools you need into a single, secure web application. And, it scales seamlessly for any size of operation from solo pilots through to complex enterprise organisations.
With Dronedesk, you can:
- Stay safe: Plan and execute safe and compliant drone flights with advanced airspace intelligence, street and satellite map layers, and real-time air and ground hazard data.
- Stay compliant: Keep comprehensive records of every aspect of your drone operations, including flight plans, fleet and equipment inventories, and flight logs.
- Save time: No more spreadsheets or document templates, everything is centrally recorded, accessible from any device and available in an instant.
- Save money: Operators like you tell us that, on avaerage, they saved 51 minutes per job since switching to Dronedesk. You can see just how much you'll save with our handy calculator.
- Grow your business: Create quotes and invoices, get access to tender opportunities, and automate lead generation to grow your business
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WebODM
This intuitive, professional-grade software is designed for processing images captured by drones, allowing users to create georeferenced maps, point clouds, elevation models, and detailed 3D models from aerial photography. It features support for various processing engines, including ODM and MicMac, ensuring versatile capabilities. Users can generate orthorectified maps and obtain georeferenced, filtered, and classified dense point clouds efficiently. The software simplifies volume and area calculations, making stockpile tracking straightforward. Additionally, it enables users to calculate various indices such as NDVI, VARI, and GNDVI, further enhancing data analysis. The platform accommodates both aerial and ground images, whether they are captured in nadir or oblique perspectives. Users can personalize their experience by selecting a logo and color scheme that aligns with their brand identity, ensuring a cohesive look. Moreover, the software allows for the simultaneous execution of multiple jobs, along with the option to distribute single jobs across various machines, significantly improving workflow efficiency. This makes it an invaluable tool for professionals in the field of drone imagery and mapping.
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ContextCapture
Transform simple photographs and point clouds into intricate 3D models. The process of reality modeling involves capturing the physical attributes of an infrastructure asset, developing a detailed representation, and ensuring its upkeep through ongoing surveys. Bentley's ContextCapture is a powerful reality modeling software that offers a comprehensive digital representation of the real world by producing a 3D reality mesh. This 3D reality mesh comprises numerous triangles and image data, forming a detailed model of actual conditions. Each element within this digital framework can be automatically identified and geospatially linked, allowing for an engaging and intuitive experience when navigating, locating, viewing, and querying asset information. Reality meshes find versatile applications across various engineering, maintenance, and GIS processes, offering essential real-world context to inform decisions related to design, construction, and operations. This technology often utilizes overlapping aerial photographs captured by drones, alongside ground-level images and, when necessary, enhanced with laser scans for accuracy. As such, the integration of these methods ensures a thorough and reliable digital representation of the physical environment.
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