June 30, 2026
Cellular PCI planning, EMF power-density screening, indoor RF calibration, DAS macro-dominance heatmaps, RSRQ and Wi-Fi SNR layers, and faster multi-floor wall loading.
The second half delivers new RF metrics and PCI planning, smarter channel management, EMF screening, custom MCS and calibration, plus faster wall parsing and DAS improvements.
New
Design
Cellular PCI Planning
Automatically assign Physical Cell IDs across your cellular network to minimize collisions and confusion, using coverage-derived neighbor relationships and a constraint-aware allocator. Run in Greenfield mode to re-plan all cells, or Incremental mode to keep conformant existing PCIs and re-plan only the ones that violate your domain, reserved list, or minimum reuse distance. Review the conflict scorecard and proposed changes before applying, and export neighbor relations as a CSV for ANR seeding. Learn more
EMF Power-Density Screening
Check whether your cellular, DAS, or fixed-wireless design meets FCC or ICNIRP exposure limits before leaving the planning stage. The screening layer shows an exposure ratio across the coverage area with green, yellow, and red tiers, and surfaces a compliance distance and near-field boundary alongside the heatmap. Supports FCC 47 CFR 1.1310, ICNIRP 2020, and additional regional profiles, with General-Public and Occupational classes. This is design-stage screening, not a legal compliance determination. Learn more
Simulation & Heatmaps
Indoor RF Scene Calibration
Fit eino's RF model to your own walk-test measurements so predicted heatmaps closely match what you measured on-site. Calibration adjusts per-material attenuation and per-AP transmit offsets jointly, then overlays the residual error map so you can see where the model diverges from reality. The original scene is never modified, so calibration can be cleared at any time. Learn more
Monitoring & AI
Macro Dominance Heatmap for DAS
Place per-band macro RSRP reference pins on the floor plan and eino will infer the outdoor interference field, raytrace it indoors, and render a dominance heatmap showing where the DAS serves and where the macro breaks through. Helps you identify handoff risks and size the DAS coverage margin before deploying. Learn more
Improved
Design
- 3D mesh obstructions now render with their real PBR materials and image-based lighting instead of flat grey.
- Accurate real-world dimensions for 3D mesh objects, including correct Z height and a "Lock proportions" toggle that respects each axis independently.
- DAS antenna auto-connects to the nearest free upstream port when placed, with a compatible cable type resolved automatically.
- Multi-floor wall loading is substantially faster, eliminating per-wall redundant queries that caused ~30s load times on large projects.
- PDF wall parsing on dense CAD files is substantially faster, replacing a per-layer toggle loop with a single-pass extraction.
- Pin any AP to a specific channel while auto-assignment optimizes the rest, with band and width filtering.
- Control when channel assignment runs with a per-project toggle and an on-demand run button.
- Trace walls over uploaded floor plans with snap points auto-detected from underlay lines.
Simulation & Heatmaps
- Add RSRQ as a selectable cellular heatmap KPI to quantify signal quality alongside RSRP, RSSI, and SINR.
- Apply a flat link-budget fade margin across the entire heatmap to model a conservative coverage buffer.
- Export the active outdoor heatmap as an ESRI Shapefile for direct ingest into ArcGIS or QGIS.
- Filter which areas count toward capacity calculations using Include, Exclude, and Only obstruction modes.
- Upload a custom SINR/RSRP-to-MCS mapping per AP model to refine throughput predictions.
- Add a dedicated WiFi SNR heatmap layer with Downlink/Uplink toggle alongside SINR.
Validate & Report
- CPE and receiver nodes now appear as a Receiver Nodes section in the Bill of Materials with cost columns.
Monitoring & AI
- Stairs and elevators are now detected and included in multi-unit auto-placement projects.
- Re-run DAS AI antenna and cabling layout while anchoring committed headend and Remote Unit locations.
Plus other fixes and improvements across the platform.
