One complete pricing solution for utility-scale solar design
From terrain to construction-ready layout, PVcase Ground Mount is built to support real engineering workflows, eliminating manual steps and accelerating delivery at every stage.

PVcase Ground Mount is where utility-scale solar projects take shape
Everything engineering teams need to design, optimize, and deliver projects:
Generate terrain-aware layouts that adapt automatically to real site conditions
Optimize capacity, placement, and system configuration without starting over
Identify and resolve design issues early with built-in analysis (slope, collisions, piling, shading)
Deliver construction-ready outputs, including SLDs and Bills of Materials, directly from your design
Integrate mechanical, electrical, and performance considerations from day one
Ground mount | Key Features / Capabilities | Professional |
|---|---|---|
| Mechanical Design | Create frames and optimize their geometry to maximize land use while meeting design constraints. | Included |
Customize layout placement rules - setbacks, spacing, offsets, orientation - to match project requirements. | Included | |
Configure overall site/park parameters and terrain morphology settings to ensure the layout follows topography and constraints. | Included | |
Quickly generate one or multiple PV areas across different polygons/zones within the same project. | Included | |
Assess piling requirements based on terrain conditions and frame geometry to support early constructability decisions. | Included | |
Iterate the layout to reach a target capacity by adjusting density and configuration in a controlled way. | Included | |
| Civil Design | Analyze terrain slopes to identify buildable areas and avoid zones that may create design or construction risk. | Included |
Detect clashes between layout elements to reduce conflicts before detailed engineering. | Included | |
Model grading needs and use heatmaps to quickly visualize cut/fill intensity across the site. | Included | |
Define front views and cross-sections to review profiles, heights, terrain following, and constructability. | Included | |
| Electrical Design | Configure module stringing efficiently to maintain electrical consistency and improve design traceability. | Included |
Build an automatic early-stage electrical concept for initial routing, block planning, and high-level configuration. | Included | |
Develop a more detailed electrical design with refined routing, segmentation, and engineering-ready outputs. | Included | |
Define key electrical components and parameters to standardize design assumptions and documentation. | Included | |
Export Single Line Diagrams (SLDs). | Included | |
Apply color rules to visualize electrical groupings, substations, or design constraints for faster reviews. | Included | |
Calculate cable cross-section size based on preferred voltage drop and minimum cable size selection | Included | |
Plan and organize 2D and 3D cabling with structured routes and assumptions to support takeoffs and coordination. | Included | |
| Other | Evaluate shading impact and distribution to identify potential losses and optimize performance. | Included |
Incorporate battery energy storage (BESS) using AC- or DC-coupled architectures for hybrid and/or standalone PV designs. | Included | |
Generate a quick energy/yield estimate to compare layout options and support early-stage decisions. | Included | |
Group frames based on defined logic to simplify management and maintain consistent design rules. | Included | |
Compile key layout data and metrics for review, reporting, and change tracking. | Included | |
Export Bills of Materials (BOMs) for engineering documentation and procurement. | Included | |
Export the layout to PVcase Yield and PVsyst workflows for detailed energy simulation and validation. | Included |
Ready to see how these pricing plans align with your specific project pipeline?
Talk to our team to explore pricing, compare plans, and find the setup that fits your projects — today and as you scale.
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