InEight is integrated project controls software for capital construction, built as a modular platform where cost, schedule, contracts, and project information share one connected foundation. Organizations implement flexibly and scale from a single complex project to a billion-dollar capital portfolio. Purpose-built applications cover every project phase, and because the products are connected, field data updates budgets, forecasts, and schedules in real time, so every team works from the same numbers. Advanced analytics turn live project data into smarter decisions. Customers in 60+ countries run more than $1 trillion in projects on the platform, across industries including mining, nuclear, power and renewables, transportation, water, and oil, gas, and chemical. Teams use InEight to standardize best practices, manage budgets and forecasts, control scope changes, and modernize how capital projects get delivered.
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CompanyCam is a photo-based solution created specifically for contractors. Users can take unlimited photos—which are location and time stamped, sent to the cloud, and stored securely. Every photo is organized by project and instantly available to your team, allowing you to see what’s going on anytime, anywhere.
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SURE Aerial
nFrames SURE software offers an effective solution for dense image surface reconstruction tailored for organizations involved in mapping, surveying, geo-information, and research. This software excels at generating accurate point clouds, Digital Surface Models (DSMs), True Orthophotos, and textured meshes from images of varying sizes, whether small, medium, or large frame. It is particularly suited for a range of applications, such as nationwide mapping initiatives, monitoring projects utilizing both manned aircraft and UAVs, as well as cadaster, infrastructure planning, and 3D modeling tasks. SURE Aerial is crafted specifically for aerial image datasets obtained from large frame nadir cameras, oblique cameras, and hybrid systems equipped with additional LiDAR sensors. It efficiently handles images of any resolution, facilitating the creation of 3D meshes, True Orthophotos, point clouds, and DSMs on standard workstation hardware or within cluster environments. The software is user-friendly, easy to set up, and operates in compliance with industry standards for mapping, making it accessible for technologies that support web streaming. Its versatility ensures that it meets the diverse needs of various projects while providing reliable outputs.
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MeshLab
The open-source platform designed for the processing and editing of 3D triangular meshes offers an array of tools for various tasks, such as editing, cleaning, healing, inspecting, rendering, texturing, and converting these meshes. It includes capabilities for handling raw data generated by 3D digitization devices and for preparing models suitable for 3D printing applications. In the latest update, support has been added for multiple file formats (.gltf, .glb, .nxs, .nxz, .e57), along with the introduction of a new plugin dedicated to precise mesh boolean operations. A critical phase in the workflow for handling 3D scanned data is the 3D data alignment process, often referred to as registration. MeshLab equips users with robust tools to align various meshes within a unified reference framework, effectively managing extensive sets of range maps. Additionally, it features a finely-tuned Iterative Closest Point (ICP) algorithm for one-to-one alignment, which is complemented by a global bundle adjustment step to optimize error distribution. Users can perform this alignment on both meshes and point clouds obtained from a variety of sources, including active scanners, whether they operate over short or long ranges. This versatility enhances the overall functionality and effectiveness of the tool in 3D data processing.
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