Tractian is the Industrial Copilot for maintenance and reliability, combining hardware and software solutions to monitor asset performance, manage industrial operations, and implement predictive maintenance strategies. Its AI-driven platform empowers businesses to prevent unplanned equipment downtime and boost production output. The company is headquartered in Atlanta, GA, and extends its presence globally with offices in Mexico City and Sao Paulo. Learn more at tractian.com.
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Pylon's intuitive design software allows you to create accurate proposals from anywhere, in less than 2 minutes. Pylon is the only software that allows you to view high-resolution imagery within your app. Pylon's award winning 3D Solar Shading toolkit helps you identify and track shading impacts throughout the year. Pylon's load profile analysis and interval data analysis will help you and your team to better understand customer consumption patterns. Analyze load profiles & interval data. You can close more solar proposals by using interactive Web & PDF proposals and native eSignatures. Fully integrated solar CRM that integrates with your solar design software to convert proposals. Pylon Solar CRM offers 2-way SMS and email communications, team management, lead management and pre-made deal pipelines.
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PVCAD Mega
Swiftly create site capacity layouts for large-scale utility projects of various sizes by utilizing a click-and-drag interface, allowing you to position tracker blocks at any desired angle throughout the project area. Conduct more precise site evaluations in a shorter timeframe by examining all piers and confirming that trackers can be installed according to specifications. Remove uncertainty from the equation and observe how changes to structural and electrical elements influence system design and performance predictions. Produce automatic pier plans that include pier placements, surface elevations, and top-of-pile reports tailored for leading tracker systems such as Nextracker and Array Technologies. Additionally, the software can automatically create a PVSyst shade scene (.SHD) file, as well as a project file (.PRJ) and a meteo file (.MET). Once these files are generated, they can be opened in PVSyst to simulate the energy yield while considering topographical impacts. This streamlined process not only simplifies the design export to PVSyst but also enhances the accuracy of bankable energy yield modeling, making it an essential tool for project developers. The ability to visualize and adjust designs dynamically contributes significantly to optimizing project outcomes.
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EnOS
EnOS, developed by Univers, is an advanced operating system that leverages artificial intelligence and the Internet of Things to facilitate energy management and decarbonization, enabling both enterprises and municipalities to effectively track, manage, and enhance energy resources, carbon output, and overall resource consumption across various sectors such as renewable energy, infrastructure, storage, transportation, and power grids in real-time. Its architecture is based on open standards and features scalable components that operate at both the edge and in the cloud; this allows EnOS to aggregate data from millions of diverse devices and sensors, process it using sophisticated AI and machine learning algorithms, and provide actionable insights aimed at improving efficiency, reliability, and sustainability, with deployment options available for public, private, or hybrid cloud environments. The modular nature of EnOS encompasses a variety of solutions, including carbon and resource management tools, optimization for renewable energy assets that cover SCADA, analytics, and control for power plants, orchestration for microgrids and storage systems, management of electric vehicle charging, as well as thorough energy data analytics and application enablement. By integrating these diverse functionalities, EnOS stands out as a comprehensive platform in the energy sector, making it an invaluable resource for organizations striving for sustainable operations.
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