ECO·IN Building Intelligence Platform measures air conditions where occupants actually experience them – in the breathing zone – and turns that insight into real-time ventilation response. The result is healthier indoor air, better comfort, and continuous improvement beyond dashboards and alerts.
Most buildings still don’t know what is in the air occupants breathe inside rooms and shared spaces. And even where air quality is monitored, the response often stops at a dashboard, an alert, or a graph someone must interpret.
Meanwhile, HVAC continues to follow fixed schedules and static thresholds – regardless of actual occupancy, biological load, or changing air-quality needs.
Return-air averages and entrance thermostats do not reveal what people are experiencing inside the breathing zone.
A dashboard may show that conditions are deteriorating, but it does not improve the air on its own.
HVAC keeps operating according to preset logic, even when occupancy and air-quality needs have changed.
Sol Sense captures indoor conditions directly inside occupied spaces, at breathing-zone height – not from return air, not from a thermostat near the entrance, and not as one building-wide average.
Tracks metabolic rise and decay patterns linked to real human presence.
Detects fine airborne particles that affect indoor air quality.
Monitors volatile organic compounds released by materials, products, and activities.
Shows the thermal conditions occupants actually experience.
Helps identify conditions that affect comfort and indoor air quality.
Provides the raw patterns ECO·IN uses to understand how biological demand is changing inside each space.
PIR detects movement. IP systems count devices. Cameras add privacy and infrastructure concerns. None of them measures the biological demand developing inside a space.
ECO·IN platform reads the CO₂ metabolic rise rate against the calibrated baseline for each zone and time of day. That means a person sitting quietly at a desk still counts – and HVAC response can begin as demand builds, not only after air quality has already deteriorated.
CO₂ through the day — breathing zone
Supports demand-controlled ventilation aligned with ASHRAE 62.1-2025
ECO·IN does not stop at measuring indoor air quality. Sol Sense detects how conditions are changing inside the occupied space, and Sol AirDCV translates that demand into a physical HVAC response in real time.
Sol Sense continuously measures CO₂, PM2.5, TVOC, temperature, humidity, and occupancy-related demand signals in the breathing zone.
ECO·IN evaluates how occupancy, IAQ, and thermal conditions are changing against the learned patterns of that specific space.
Sol AirDCV adjusts fresh-air volume, airflow, and damper position according to real demand – increasing ventilation when conditions require it and reducing unnecessary operation when they do not.
Indoor air quality affects how people feel, perform, and experience a building. ECO·IN connects real-time sensing with HVAC response to support healthier air, stable comfort, lower risk, and measurable evidence for compliance workflows.
Better indoor conditions support concentration, cognitive performance, response time, and overall wellbeing – while helping reduce fatigue, absenteeism, and poor workplace experience.
Temperature and humidity are managed at zone level, not through building-wide averages. Predictive pre-conditioning helps spaces reach comfortable conditions before occupants arrive, without sacrificing comfort for energy savings.
Demand-controlled fresh air responds to changing biological load, supporting pathogen dilution and lower aerosol-transmission risk in occupied spaces. This is especially relevant for healthcare, education, and other duty-of-care environments.
ECO·IN provides continuous IAQ and operational evidence that can support ventilation, healthy-building, and indoor-environment compliance workflows.
ECO·IN turns healthier indoor conditions into value across people, operations, property, and risk.
Support wellbeing, focus, attendance, employee confidence, and the return-to-office experience.
Automate IAQ response, document building conditions, and reduce reliance on manual intervention.
Strengthen tenant experience, support green-building goals, and provide measurable indoor-environment data.
Protect vulnerable occupants, support concentration and performance, and respond to changing occupancy-related demand in real time.
ECO·IN Building Intelligence Platform has already been validated in complex, occupied environments – from healthcare and institutional campuses to protected-living facilities and commercial buildings.
See how ECO·IN measures conditions where people breathe and turns changing demand into real-time HVAC response.