Pylon
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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PVcase
PVcase Ground Mount is an AutoCAD-based software that allows you to design solar power plants at utility scale. It allows solar engineers to reduce project costs and increase reliability while improving solar plant performance. Realistic, terrain-based PV layouts can reduce project uncertainty and eliminate design errors. Great solar designs can be ruined by poor CAPEX. Get a clear breakdown of the project costs early. Optimize your design and assess potential near-shading issues. Streamline your electrical design by streamlining string mapping and device placement. You can easily download and share cable runs, piling lengths and other cost estimates with your team. PVsyst allows you to export your PV design in a custom format.
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RatedPower
RatedPower, a part of Enverus, is a powerful SaaS platform that simplifies the development of utility-scale solar, BESS, and hybrid energy systems. It guides users through every phase—from site identification to final engineering design—making it a go-to solution for developers, engineers, and analysts in renewables.
With RatedPower, users can assess and filter viable land using advanced geospatial data, including energy pricing and grid infrastructure. It supports topographic analysis and helps design solar layouts that consider terrain, interconnection options, and engineering standards. The platform generates bankable energy yield reports, SLDs, and Gen-Tie documentation essential for permitting and financing.
For battery energy storage projects, RatedPower enables both standalone and integrated system designs. Tools for sizing and layout optimization help ensure cost-effective and technically sound configurations. During detailed design, teams can simulate and compare multiple configurations based on GCR, DC/AC ratios, and cost.
RatedPower also enhances collaboration by allowing the export of reports and 3D layouts compatible with tools like PVsyst, ensuring smooth handoffs between teams and stakeholders. It’s a complete, user-friendly solution that accelerates renewable project timelines with precision and collaboration at its core.
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T*SOL
T*SOL is a simulation tool designed to assess the performance of thermal solar systems. It caters to various applications including domestic water heating, heating augmentation, swimming pool heating, and process heating. With T*SOL, you can effectively plan and size your solar thermal installations, including storage solutions and collector configurations, even for east-west roof orientations, while analyzing their economic viability. At the outset of your design journey, you have access to a wide array of relevant systems tailored for heating water, supporting heating needs, managing swimming pools, and addressing process heat demands. The software offers dimensioning recommendations throughout the design phase and allows for parameter adjustments, enabling you to discover the most effective combinations of storage capacity and collector area. Furthermore, the simulation outputs, including energy values, temperatures, and volumes, can be visualized in various graphical formats. Users can select from options like bar charts and line graphs, with the flexibility to adjust the time frame from a single day to an entire year, facilitating a comprehensive analysis of the system's performance over different periods. This versatility makes T*SOL an invaluable resource for optimizing solar thermal system designs.
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