Automate and optimize commercial rooftop solar design.
Grade: B — Score: 70/100
PVcase Roof Mount leverages 3D AutoCAD-based technology to automate complex calculations and design tasks, significantly enhancing the accuracy and efficiency of rooftop solar layouts. By utilizing intelligent algorithms, it minimizes manual errors and accelerates the design process, allowing teams to focus on delivering high-quality projects.
The platform automates time-intensive tasks such as cable routing and shading analysis, reducing design time by up to 85%. This end-to-end solution empowers teams to manage multiple projects simultaneously, scaling their operations with unmatched efficiency and precision.
By addressing risks early in the design phase, PVcase Roof Mount helps mitigate potential issues related to mechanical layouts and electrical calculations. This proactive approach ensures that projects are not only completed faster but also with a higher degree of reliability and accuracy.
Professional: Custom quote
Consider switching to Competitor Name: Offers similar automation features but lacks the same level of accuracy.
PVcase Roof Mount is an AutoCAD plugin that requires a compatible Windows and Autodesk environment. PVcase lists Windows 10 x64, a 3.0 GHz or faster processor, at least 12 GB of RAM, and a 4 GB DirectX 11 graphics card, and it supports AutoCAD 2019 through 2027 for optimal performance. The vendor states that PVcase will not run on virtual machines, so a Mac deployment through virtualization is not supported.
PVcase positions Roof Mount for commercial and industrial rooftop projects rather than residential installer workflows. Its feature set centers on detailed AutoCAD modeling, electrical design, cabling, Single Line Diagrams, Bills of Materials, and high-volume C&I revisions. A residential team could technically model smaller roofs, but the product may be oversized if it mainly needs proposals, financing, CRM, and lightweight browser design.
PVcase Roof Mount is designed for commercial and industrial rooftops with roof geometry, obstructions, setbacks, mounting, stringing, and building-level cable routes. PVcase Ground Mount is a separate utility-scale product for terrain-aware ground arrays, trackers, grading, piling, roads, substations, and plant-level civil and electrical engineering. Both run in AutoCAD, but they serve different site types and should be evaluated as separate products.
Yes. PVcase documents imports or conversions from compatible DWG files, K2 Base, Airteam, HelioScope, and PV*SOL project files so teams can continue detailed work without recreating every roof. Conversion is format-dependent and still developing, and PVcase instructs users to verify roof geometry, object placement, module orientation, tilt, and other parameters after import. The public documentation does not establish a direct Revit or general BIM-model import workflow.
PVcase Roof Mount supports flat, pitched, inclined, and multi-area roofs with parapets, skylights, vents, chimneys, safety paths, restriction zones, and custom PV areas. Its layout tools support different orientations, spacing rules, offsets, fixed-tilt frames, and separate east or west module rows in constrained areas. Imported or unusual roof geometry should still be checked because supported object types vary by source format.
PVcase Roof Mount supports automatic string-size recommendations, single-row, U, snake, and custom stringing, inverter and MPPT assignment, cable trays, and automatic or manual cable routing. Cabling settings can control route assignment, safety-path crossings, polarity, and induction-loop avoidance, and the product can print MPPT and Single Line Diagram information. Engineers still need to review numbering, equipment data, routing, cable assumptions, protection, and the final drawing before construction use.
No. PVcase Roof Mount provides real-time shade projections, annual shading-loss and irradiance analysis, and a preliminary energy simulation for comparing layouts early in design. PVcase states that Roof Mount's simulation uses PVcase Yield ray-tracing data but is not fully based on Yield's thermal-electric model. For detailed performance analysis, Roof Mount exports a PVC scene to PVsyst by individual modules or grouped rows.
PVcase Roof Mount can export Bills of Materials, layout information, electrical and component data, Single Line Diagrams, reusable settings, and PVC files for PVsyst. The Bill of Materials is exported as an XLSX project summary for analysis, reporting, and procurement. Its audit command can also inspect Roof Mount drawings for duplicated or misplaced roofs, modules, strings, and related objects before handoff.
PVcase Roof Mount is an AutoCAD-native C&I engineering workflow with detailed roof objects, stringing, cable trays, cabling, Single Line Diagrams, and CAD-level editing. HelioScope is browser-based and combines C&I layout, production simulation, reports, and sales features, with Basic listed at $159 per user per month and Pro at $259 per user per month in July 2026. Choose Roof Mount when AutoCAD control and detailed electrical drafting matter most, and consider HelioScope when browser access, integrated simulation, proposals, and simpler deployment are more important.
PVcase Roof Mount focuses on AutoCAD-based C&I rooftop engineering, including imported roof data, detailed layouts, stringing, cabling, Single Line Diagrams, Bills of Materials, and export to PVsyst. PV*SOL premium combines 3D design, detailed shading and yield simulation, batteries, financial analysis, and reports in one Windows product, with a one-year license listed at €845 plus VAT and a 30-day trial in July 2026. PV*SOL premium supports up to 7,500 mounted modules or 10,000 roof-parallel modules in its 3D environment, while PVcase does not publish an equivalent Roof Mount module limit.
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