AQR2576NG KNX CO2 Temperature Base Module for Demand-Controlled Ventilation Italian 3-Modular Standard S55720-S209
The AQR2576NG is a KNX base module with a built-in maintenance-free NDIR CO2 sensor, built to Italian 3-modular installation standards and designed to plug onto AQR253x front modules. Powered via KNX bus with S-Mode and PL-Link, it delivers CO2 monitoring, demand-controlled ventilation, and PID-based climate management in Italian-standard KNX building automation projects.
Technical Specifications
| Communication |
KNX S-Mode, KNX PL-Link |
| CO2 Sensor |
NDIR type, maintenance-free and recalibration-free |
| CO2 Measuring Range |
0...5000 ppm |
| Analog Inputs |
1 x passive NTC 10k temperature sensor (room, floor, or ceiling) |
| Digital Inputs |
2 x potential-free contacts (window contacts or pushbuttons) |
| Power Supply |
KNX bus, DC 21...29 V, bus load < 5 mA |
| Temperature Control |
PID algorithm; continuous positioning 0...100% or PWM On/Off; pure heating and combined heating/cooling modes |
| Ventilation Control |
3 settable switching steps for humidity and CO2; 3 On/Off signal objects or one 0...100% positioning object for ventilation actuator |
| Setpoints |
Temperature, humidity, and CO2 adjustable via KNX bus |
| Bus Coupler |
Integrated with programming button and LED for ETS commissioning |
| Mechanical Design |
Italian 3-Modular standard |
| Dimensions (WxHxD) |
71 x 71 x 45 mm |
| Data Sheet |
N1411 |
| Warranty |
60 months |
Key Features
- Built-in maintenance-free NDIR CO2 sensor
- Italian 3-modular installation standard
- Compatible with AQR253x front modules
- Demand-controlled ventilation
- PID-based climate management
- Integrated bus coupler with programming interface
Applications: Designed for offices, hotel guestrooms, schools, and clinics in Italian-standard KNX buildings requiring CO2 and climate monitoring with automated ventilation.
Compatible with AQR253x front modules for a complete air quality node; DELTA line and DELTA miro switch frames. Front modules and sensors ordered separately.