Getting started

What you need before you can generate anything, the parts of the main window, and the order the work happens in.

Three things have to be in place before the application can place a single module table: the application installed on a Windows PC, active access for this device, and one file describing where the plant goes. Every other input ships with a working default, so a first run needs almost none of them.

The work happens on your own machine. The steps that reach the internet are verifying this device's access, fetching weather data for the energy estimate, fetching elevation data for the terrain check, and the aerial photograph behind the layout — the last three are optional.

Before you start

What you needWhyWhere
The applicationA Windows PC, installed from the Microsoft StoreInstall on Windows
This device activatedThe application opens without it, but Generate Layout and every export are blocked until access is activeActivate your licence
A boundary fileThe plant boundary, and any water bodies, obstructions and transmission lines inside itBoundary files

Access is tied to this computer by a Device ID — the same value shown at Settings ▸ System ▸ About ▸ Device ID. There is no licence file to install, copy, back up or keep safe: status is verified online with the server. Open Help ▸ License / Subscription… and click Get Free Access to activate this device — see Activate your licence.

The boundary file can be a Google Earth file (.kmz or .kml), a CAD drawing (.dxf or .dwg), or a raster image with a scale you supply. A Google Earth file is the recommended input, because it carries geographic position and the site's features in one place. A CAD drawing carries no position, so you are asked for the site latitude and longitude — without them the layout is still generated geometrically, but energy cannot be calculated.

Two decisions at launch

Every launch opens the SolarLayout · New design window before the main window. Two segmented controls ask how the plant is mounted — Fixed tilt or Single-axis tracker — and how it is wired — String inverter or Central inverter. A card under them summarises the combination, and Continue opens the main window for it. The choice controls which input cards you see and how the plant is put together; a different design later means a second window, not a switch. See Choosing a design mode.

The main window

The main window in a fixed-tilt string-inverter design: the ribbon, the pinned Generate Layout button with its hint, the Site tab of the inputs, the view tabs and an empty plot.
The main window before a layout
RegionWhat it is
Menu barFile, Edit-Pile and Help: projects, the pile editor, the in-app guide and the licence window.
The ribbonThe SolarLayout brand; the design chip naming this window's design, which opens another window for a different one; the access chip; and the Docs and Support buttons.
Generate Layout, pinned at the top of the left columnThe gold button (F5), with a hint line under it that says why it is disabled — "Select a boundary file on the Site tab to generate a layout." until a file is chosen.
The five stage tabs, under itSite · Array · Electrical · Yield · Tools — every design input, as collapsible cards.
The view tabs, across the top of the right sideLayout · Summary · Energy · BOM · SLD (Ctrl+1 to Ctrl+5), with the current view's tools to their right.
The viewThe drawing, the summary sheet, the energy result, the bill of materials or the diagram — one at a time, filling the area.
The plant chips, under the viewOne row of plant totals — DC capacity, site area, tables, modules, ICR blocks, year-one energy — shown in every view.
Status barProgress and result messages on the left; the cursor position in UTM metres and the application version on the right.

The main window walks through each region.

The stage tabs

The tabs run in the order you would normally work through them. Two of the Array cards depend on the mounting you chose at launch, and the Electrical card's name depends on the inverter.

TabWhat it holds
SiteInput Boundary File — the file, a Browse… button, an button for the preparation guide and, while empty, an Open sample site link; then Site Parameters, Structures & Shadow (keep-clear) and Topography (slope-aware exclusion)
ArrayA read-only MOUNTING chip, Module Specifications, then MMS-Table Configuration and Spacing & Tilt on a fixed-tilt design or Tracker Configuration on a tracker
ElectricalString Inverter (or SMB – String Monitoring Box) and Cables
YieldRun Energy Calculation and Energy Yield
ToolsObstructions, Main Control Room & Objects and Studies — locked until a layout exists

The views and their tools

Beside the view tabs sit Save project and Export ▾ in every view. On the Layout view they are joined by Satellite, Wireframe, Piles, a Layers ▾ popover, Sketch, the Home, Pan and Zoom tools and an expand button; on Summary and Energy by Copy and Open in window.

The Layers ▾ popover holds the drawing's ON/OFF rows. Plant layout and Plant totals start on; Legend, Lightning arresters, ICR blocks, the three cable rows and Contour / terrain start off, so a first layout is drawn as the placement alone even where those figures have been computed. Views, layers and tools covers every row and tool.

How the work flows

StageWhat you doMore
1. Load a boundaryOn the Site tab, point Browse… at your file, or click Open sample site. The boundaries, obstacles, water bodies and line features are read from it.Boundary files
2. Set inputs, or accept the defaultsChange what your design fixes — module, table size, road width, capacity block — and leave the rest.Every parameter and its default
3. Generate the layoutClick Generate Layout. Tables, control rooms, inverters and arresters are placed, the plant chips fill in, and the Tools tab unlocks.Your first layout
4. RefineChange an input and generate again, or edit the layout by hand — move, add and delete units, draw obstructions, drag a control room.Editing by hand
5. Calculate energyOptional. Fetches irradiance for the site and reports year-one and lifetime generation against a performance ratio you control, on the Energy view.How yield is calculated
6. Build the diagram and the materials listAuto-build a single-line diagram from the plant's own counts on the SLD view, and rebuild the bill of materials from the layout on the BOM view.Single-line diagram
7. Export or saveFrom Export ▾: the Word project report, a Google Earth file, a layered CAD drawing, an ICR-block drawing set, the cable schedule, the plot as an image — or Save project to reopen later.The project report

Steps 3 to 6 are not one-way. Generating again after a change is the normal way to work, and hand edits to cable trenches are preserved when you do.

Defaults mean a first run needs almost nothing

The boundary file is the only input with no default. Everything else is pre-filled with a value a utility-scale design would recognise, so you can generate a complete layout on your first run and then decide what to change.

InputDefault
Module2.38 m × 1.13 m, 610 Wp, monofacial
TablePortrait, 28 modules per row, 2 rows per table
Perimeter road width6.0 m
Control-room capacity block18.0 MWp
Tilt angle and row pitchDerived from the site latitude
Cable calculationOff

Tilt and row pitch deserve a note: with both override boxes left unticked, the application derives the tilt from the site latitude and the row pitch from the no-shading spacing at winter-solstice solar noon. After a run, both derived values are reported on the Array tab and pre-filled into the override boxes, so you can see what was chosen before deciding to fix it yourself. Auto-calculated values are marked with an asterisk in the Summary view.

Cable calculation is off by default, and worth leaving off for a first run. It is the slow step on a large or complex layout, and the counts of inverters and monitoring boxes are computed either way — only the cable rows read as not computed.

Where to go next

On this page