Functional description
Decentralised supply and extract air units ventilate the room and cover the heating load according to the technical data. An EC centrifugal fan takes in the outdoor air which then flows through the motorised shut-off damper and the outdoor air filter. The outdoor air then flows through the rotary heat recovery unit, which can be switched off in energy efficient operating situations. If necessary, the air is heated or cooled by the heat exchanger before it is draught-freely discharged to the room with momentum from the supply air grille near the ceiling (this is optional for change-over systems).
The extract air first passes through the extract air filter, then flows through the heat recovery unit, the extract air fan and the motorised shut-off damper before it is discharged to the outside as exhaust air. If the indoor air quality is sufficient, FSL-CONTROL III closes the outdoor air dampers and changes to secondary air operation, which is more energy efficient in any case. The control system compares the room air quality setpoint value to the actual value measured by the CO2 sensor and switches automatically between outdoor air and secondary air operation.
In case of a power failure, the outdoor air and exhaust air dampers are closed to ensure fire protection, frost protection and to avoid draughts. This is ensured by a capacitor in each actuator.
The supply air is discharged near the ceiling with a medium velocity. The Coanda effect causes the beam to be deflected upwards. Rather than flowing immediately downwards, the air moves along the ceiling (Coanda effect) and reaches every corner; this ensures complete ventilation even of large rooms. Once the air reaches the opposite wall, it moves downwards and eventually through the entire space. The airflow reaching the occupied zone has a very low velocity and rises on heat sources, for example on people and devices. This is called natural convection. As a result, the air is exchanged primarily in these areas. The stale air is extracted under the ceiling and led to the outside.
Width | 3363 mm, 3555 mm, 3905 mm, 3900 mm |
Height | 410 mm, 440 mm |
Depth | 1030 mm, 1099 mm |
Volume flow rate | 300, 500, 800 m³/h (boost 1100 m³/h) |
Nominal volume flow rate | 800 m³/h |
Sound pressure level at nominal volume flow rate and 8 dB | 35 dB(A) |
Sound power level | 22 – 53 dB(A) |
Degree of heat recovery efficiency | 75 % |
maximum operating pressure, water side | 6 bar |
Max. operating temperature | 75 °C |
Supply voltage | 230 V AC ±10 %, 50/60 Hz |
Power rating | 640 VA |
Weight | 340 kg |
X-CUBE/SCHOOLAIR-D-HV: Heat recovery construction Type 2 (2-pipe version, active heating)
Supply air flow rate | m³/h | 300 | 500 | 800 | 1100 |
Total heating capacity | W | 2240 | 3340 | 4450 | 5040 |
Room heating capacity | W | 1322 | 1827 | 2019 | 1698 |
Air temperature inside the unit | °C | 12.0 | 12.0 | 12.0 | 12.0 |
Supply air temperature | °C | 31.7 | 29.7 | 26.7 | 24.1 |
Hot water flow rate | l/h | 100 | 160 | 200 | 200 |
Water temperature, inlet | °C | 50 | 50 | 50 | 50 |
Water temperature, outlet | °C | 30.5 | 31.8 | 30.7 | 28.1 |
Water side pressure drop | kPa | 4.0 | 9.2 | 13.6 | 13.6 |
Sound power level LWA | dB(A) | 22 | 34 | 43 | 53 |
Sound pressure level including 8 dB room attenuation | dB(A) | 14 | 26 | 35 | 45 |
Active power Pel | W | 30 | 65 | 150 | 315 |
Air-side data Heating mode:
X-CUBE/SCHOOLAIR-D-HV: Heat recovery construction Type 2 (2-pipe version – isothermal supply air)
Supply air flow rate | m³/h | 300 | 500 | 800 | 1100 |
Total heating capacity | W | 1300 | 1780 | 2530 | 3460 |
Room heating capacity | W | 395 | 264 | 120 | 124 |
Air temperature inside the unit | °C | 12.0 | 12.0 | 12.0 | 12.0 |
Supply air temperature | °C | 23.5 | 21.4 | 20.4 | 20.3 |
Hot water flow rate | l/h | 40 | 50 | 70 | 100 |
Water temperature, inlet | °C | 50 | 50 | 50 | 50 |
Water temperature, outlet | °C | 21.6 | 19.1 | 18.6 | 19.9 |
Water side pressure drop | kPa | 0.8 | 1.2 | 2.1 | 4.0 |
Sound power level LWA | dB(A) | 22 | 34 | 43 | 53 |
Sound pressure level including 8 dB room attenuation | dB(A) | 14 | 26 | 35 | 45 |
Active power Pel | W | 30 | 65 | 150 | 315 |
Air-side data Heating mode:
X-CUBE/SCHOOLAIR-D-HV: Heat recovery construction Type 1 (example 4-pipe version)
Supply air volume flow | m³/h | 300 | 500 | 800 | 1100 |
Total cooling capacity | W | 840 | 1190 | 1560 | 1770 |
Room cooling capacity | W | 701 | 935 | 1176 | 1212 |
Air temperature inside the unit | °C | 27.5 | 27.5 | 27.5 | 27.5 |
relative humidity | % | 51.8 | 51.8 | 51.8 | 51.8 |
Water content of the dry air | kg | 11.9 | 11.9 | 11.9 | 11.9 |
Supply air temperature | °C | 19 | 20.4 | 21.6 | 22.7 |
Condensate | g/h | 0 | 0 | 0 | 0 |
Chilled water flow rate | l/h | 160 | 180 | 200 | 200 |
Water temperature, inlet | °C | 16 | 16 | 16 | 16 |
Water temperature, outlet | °C | 20.5 | 21.7 | 22.7 | 23.6 |
Pressure loss, water side | kPa | 8.5 | 10.5 | 12.5 | 12.5 |
Total heating capacity | W | 1790 | 2510 | 3890 | 5090 |
Room heating capacity | W | 912 | 1052 | 1576 | 1910 |
Air temperature inside the unit | °C | 12.8 | 12.8 | 12.8 | 12.8 |
Supply air temperature | °C | 30.1 | 27.3 | 26.9 | 26.2 |
Hot water flow rate | l/h | 60 | 80 | 140 | 200 |
Water temperature, inlet | °C | 60 | 60 | 60 | 60 |
Water temperature, outlet | °C | 34 | 32.7 | 35.8 | 37.9 |
Pressure loss, water side | kPa | 1.5 | 2 | 5 | 9 |
Sound power level LWA | dB(A) | 22 | 34 | 43 | 53 |
Sound pressure level including 8 dB system attenuation | dB(A) | 14 | 26 | 35 | 45 |
Active power Pel | W | 30 | 65 | 150 | 315 |
Air-side data Cooling mode:
Air-side data Heating mode:
SCHOOLAIR-D-HV-0-2/3355×405×1030/0/C3
Ventilation unit for schools – ceiling installation
Please note:
The ceiling ventilation unit described is equipped with an individual room control integrated in the unit.
The supplied controllers contain the parameters of the standard control for operation according to our control description
Ventilation unit for ceiling installation TROX X-CUBE/SCHOOLAIR-D-HV-0-2 with supply and extract air function, rotary heat recovery unit and switchover option to secondary air operation (air quality dependent), as well as heat exchanger for installation in the ceiling:
Unit: dimensions and weight
FSL-CONTROL III controller
Including control system FSL-CONTROL III, as described below:
FSL-CONTROL III is described as a stand-alone single room control system with a simple timer. Optional expansions, such as integration into an on-site MCE/BACS via Modbus TCP, Modbus RTU, BACnet MS/TP or BACnet IP, humidity sensors, return temperature sensors, electromotive valve actuators or pressure-independent control valves, are included in the delivery programme, but must be exchanged for the standard components in the following description. A room temperature signal is also required. Various room control panels and sensors are available to provide this signal. Suitable optional equipment can be found after the following standard equipment for stand-alone operation. - please refer to: Optional control accessories. We recommend commissioning by TROX. You will find related text modules below.
TROX control module FSL-CONTROL III (order code ...-C3-MA ...):
Real time clock (RTC)
Real Time Clock (RTC/real time clock) (order code ...-T/...):
CO2 sensor
CO2 sensor (order code…/C/…):
Supply air temperature sensor
Supply air temperature sensor (order code .../Z/...):
Outdoor air temperature sensor
Outdoor air temperature sensor (order code .../A/...):
Water side components
Water-side components (Order code…/HV-R-…):
Valve actuator:
1 × thermoelectric actuator for opening and closing valves, with position indicator, including plug-in connecting cable, operating voltage 24 V DC, control voltage 0 - 10 V DC, power consumption 1 W, protection class: IP 54
Straight-way valve:
1 × small straight-way valve ½" standard, hand-tight pre-assembled, PN 16, DN 10, kvs 0.4 (alternatively 0.25, 0.63 or 1.0 m³/h - please let us know the required kvs value), straight-way valve body with external thread on both sides ½" flat sealing, media temperature 1 to 110 °C
Lockshield:
1 × lockshield on both sides ½", hand-tight pre-assembled, nominal width DN 15; straight-through valve body with external thread on both sides ½" flat sealing, for regulating and shut-off, maximum media temperature 120 °C
Optional control accessories
Optional equipment to increase the comfort of the FSL-CONTROL III:
TROX room control panels for FSL-CONTROL III
Digital room control panels for surface mounting:
For operation and adjustment of the ventilation units.
Control panels with selector switch for surface mounting:
Control panel with selector switch, type Thermokon, for surface mounting:
Control panels without selector switch for surface mounting:
Control panel without selector switch, type Thermokon, for surface mounting:
Room temperature sensor for surface mounting:
Room temperature sensor TROX RTF, surface mounting
Control panels without selector switch for flush mounting:
Other switch programmes on request.
Control panels without selector switch and without setpoint value adjuster, for flush mounting:
Other switch programmes on request
As an alternative to the thermoelectric actuator, installed as standard
Pressure-independent control valve
As an alternative to the small straight-way valve, installed as standard
BACnet IP interface including web server (order code .../BI/...)
Modbus RTU (order code .../MR/...)
BACnet MS/TP (order code .../BM/...)
Version as SLAVE DEVICE
Identical to the MASTER DEVICE, as described above, but with the following deviations:
Replacement filter set suitable for the appliance version
Commissioning of the decentralised ventilation units
Commissioning/parameterisation of the decentralised ventilation units without integration into an on-site MCE/BACS
Commissioning/parameterisation of the decentralised ventilation units with integration into an on-site MCE/BACS
Instruction in operation and maintenance
SA-D | – | HV | – | T | – | 4 | – | 1 | – | LB | – | B | / | 3905 × 410 × 1030 | / | 0 | / | C3 | – | MA | – | T | / | MR | / | C | / | Z | / | A | / | HV | – | R | – | 0.4 | / | KV | – | R | – | 0.63 |
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | |||||||||||||||||||||
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 | 21 | 22 |
Order example: SA-D-HV-T-4-1-LB-B/3905×410×1030/0/C3-MA-T/MR/C/Z/A/HV-R-0.40/KV-R-0.40
Type | SA-D | Ventilation unit for ceiling installation X-CUBE/SCHOOLAIR-D |
Variant | HV | High volume flow rate and rotary heat recovery unit |
Installation situation | T | partially integrated in suspended ceiling |
Heat exchanger | 4 | 4-pipe |
Heat exchanger | 1 | Type 1 |
Construction | LB | (Outdoor air) connection to the left, (exhaust air) connection to the rear |
Connection | B | Flanged collar (Ø 315 mm) for outdoor air and exhaust air |
Nominal size [mm] | 3905×410×1030 | Width 3905, height 410, depth 1030 |
Exposed surface | 0 | powder-coated, RAL 9010 (pure white) |
Control | C3 | with FSL-CONTROL III |
Control function | MA | Master |
Real time clock | T | with real time clock |
Interface | MR | with Modbus RTU |
Air quality sensor | C | with CO2 sensor |
Supply air temperature sensor | Z | with supply air temperature sensor |
Outdoor air temperature sensor | A | with outdoor air temperature sensor |
Heating valve | HV | with thermoelectric actuator |
Lockshield – heating circuit | R | with lockshield |
kVS value – heating valve | 0.40 | 0.40 (straight-way valve) |
Cooling valve | KV | with thermoelectric actuator |
Lockshield – cooling circuit | R | with lockshield |
kVS value – cooling valve | 0.40 | 0.40 (straight-way valve) |
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Contact
We are here for you
Please specify your message and type of request
Tel.: +49 (0)2845 / 202-0 | Fax: +49 (0)2845/202-265
Contact
Thank you for your message!
Your message is send and will be processed shortly.
Our department for Service-Requests will contact you asap.
For general question regarding products or services you can also call:
Tel.: +49 (0)2845 / 202-0 | Fax: +49 (0)2845/202-265