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Tested to VDI 6022

Tested to VDI 6022

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Plate heat exchanger

Cross flow heat recovery unit

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SCHOOLAIR-V, Water connections

Water connections

 

 

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SCHOOLAIR-V, filter

Filter change

 

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Levelling foot

Levelling foot

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X-CUBE SCHOOLAIR-V-2L  

Supply and extract air unit with switchover option to secondary air operation, including cross flow heat recovery unit and heat exchanger for vertical installation on the façade

 Ready-to-operate decentralised ventilation unit that provides good comfort levels and is used for the ventilation of internal spaces such as classrooms, conference rooms and day nurseries

  • Acoustically optimised EC fans with low specific fan power, SFP = 0 to EN 16798-3
  • Cross flow heat recovery unit (heat recovery efficiency 52 %)
  • Highly efficient heat exchanger for heating as a 2-pipe system
  • Heat exchanger connection is on the right when seen from the room
  • Condensate drip tray with or without condensate drain
  • Heat recovery all year round (optional)
  • Reduced fine dust and pollen contamination due to integral filters that conform to VDI 6022 – filter class ISO ePM1 65% and extract air ISO coarse 75%
  • Easy filter change, no tools required
  • Motorised shut-off dampers, normally closed (NC)
  • Installation without interruption of school operations

Optional equipment and accessories

  • Modular control system FSL-CONTROL III, specially for decentralised ventilation systems
  • Wood panelling as outer casing in various colours, with TROX ventilation grilles for supply air and extract air (assembly kit)


Allgemeine Informationen

Functional description

Decentralised supply and extract air units ventilate the room and cover the cooling and heating load in accordance with 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 cross flow heat recovery unit, which can be switched off if it is more energy efficient. If necessary, the air is heated by the heat exchanger before it is discharged to the room as a displacement flow.
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, the FSL-CONTROL III control system switches to energy-efficient secondary air mode by closing the outdoor air dampers. The control system compares the room air quality setpoint value to the actual value measured by the COsensor 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.
Near the external wall, the supply air is discharged into the room with a medium velocity between 0.5 and 0.8 m/s. Due to the induction effect, the supply air velocity is rapidly reduced after entering the room. As a result, in cooling mode, the supply air spreads out like displacement flow over the entire floor area. Near heat sources such as people or equipment, a lift current is formed by natural convection, so that the air is exchanged primarily in these areas.

Technische informatie

Function, Technical data, Quick sizing, Specificationtext, Order code

  • FUNCTION
  • TECHNICAL DATA
  • QUICK SIZING
  • SPECIFICATION TEXT
  • ORDER CODE

Functional description

Decentralised supply and extract air units ventilate the room and cover the cooling and heating load in accordance with 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 cross flow heat recovery unit, which can be switched off if it is more energy efficient. If necessary, the air is heated by the heat exchanger before it is discharged to the room as a displacement flow.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, the FSLCONTROL III control system switches to energy-efficient secondary air mode by closing the outdoor air dampers. 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.Near the external wall, the supply air is discharged into the room with a medium velocity between 0.5 and 0.8 m/s. Due to the induction effect, the supply air velocity is rapidly reduced after entering the room. As a result, in cooling mode, the supply air spreads out like displacement flow over the entire floor area. Near heat sources such as people or equipment, a lift current is formed by natural convection, so that the air is exchanged primarily in these areas.

Width

397 mm

Height

2160 mm

Depth

359 mm

Volume flow rate

150, 200, 250 m³/h (boost 320 m³/h)

Nominal volume flow rate

250 m³/h

Sound power level

31 – 46 dB(A)

Heat recovery efficiency

52 %

Maximum operating pressure, water side6 bar
Maximum operating temperature

75 °C

Supply voltage230 V AC ±10 %, 50/60 Hz
Power rating

226 VA

Weight

85 kg

 

X-CUBE/SCHOOLAIR-V: Heat exchanger type 1 (design example 2-pipe version - active heating)

Supply air flow rate

m³/h

150200250320
Total heating capacityW

2580

3310

4000

4770

Room heating capacityW

763

897

979

892

Air temperature inside the unit°C-12-12-12-12
Supply air temperature°C

33.5

31.9

30.4

27.4

Condensationg/h

0

0

0

0

Hot water flow ratel/h

100

140

180

200
Water temperature, inlet°C

50

50

50

50

Water temperature, outlet°C

27.6

29.4

30.7

29.3

Water side pressure dropkPa

5.4

9.8

15.3

18.5

Sound power level LWA

dB(A)

31364146
Sound pressure level with 8 dB system attenuationdB(A)23283338

Active power Pel

W

24344470

Air-side data Heating mode:

  • Temperature/relative humidity outdoor air: -12 °C/90 %
  • Temperature/relative humidity indoor air: 20 °C/35 %


 X-CUBE/SCHOOLAIR-V: Heat exchanger type 5 (design example 2-pipe version - isothermal supply air intake)

Supply air flow ratem³/h150200250320
Total heating capacityW

1860

2460

3100

3830

Room heating capacityW

51

45

85

- 36

Air temperature inside the unit°C-12-12-12-12
Supply air temperature°C

20.9

20.6

20.9

19.7

Condensationg/h

0

0

0

0

Hot water flow ratel/h

60

90

140

200

Water temperature, inlet°C

50

50

50

50

Water temperature, outlet°C

23.0

26.2

30.7

33.4

Water side pressure dropkPa

1.5

3.1

6.7

12.6

Sound power level LWA

dB(A)

31

364146
Sound pressure level with 8 dB system attenuationdB(A)23283338

Active power Pel

dB(A)

24344470

Air-side data Heating mode:

  • Temperature/relative humidity outdoor air: -12 °C/90 %
  • Temperature/relative humidity indoor air: 20 °C/35 %

SCHOOLAIR-V-2/KO/397×2160×359/C3

Under sill units for vertical installation on the façade

Please note:
The under sill ventilation unit variant described has an integrated single room control system for autonomous classroom operation.

The supplied controllers contain the parameters for standard operation according to our control description.

Ventilation unit for schools – vertical installation - master unit

Under sill ventilation unit TROX X-CUBE/SCHOOLAIR-V-2L with supply and extract air function, heat recovery system and switchover option to secondary air operation (air quality dependent), as well as heating function, for vertical installation on the façade:

  • Unit casing made of galvanised sheet steel, cover and sheet metal connections with deep-drawn threads and stainless steel cross-head screws, all internal air ducts sealed and lined as required, internal cable penetrations sealed, exposed surface powder-coated (RAL 9005, jet black)
  • Sound- and heat-insulating lining on suction and discharge side made of mineral wool faced with glass fibre scrim (material classification A, non-combustible according to DIN 4102, T1), erosion resistant up to air velocities of 20 m/s, or closed cell insulation material
  • The unit meets the hygiene requirements of VDI 6022
  • Height adjustable levelling feet, +40 mm, to compensate for structural tolerances
  • Top-mounted slotted hole bracket with 2 slotted holes (6.5 × 13.5 [mm]) for fixing to the wall
  • In the bottom section of the device (behind the heat exchanger), there are 2 slotted holes (6.5 × 13.5 [mm]) for fastening the device to the wall; connection to the outdoor air and exhaust air openings (provided by others) of the façade by means of all-round closed-cell sealing tape on the rear side of the unit, d = 10 mm, the suction and discharge resistance of the construction provided by others should not exceed 20 Pa at a nominal volume flow rate
  • Extract air removal at the top front of the unit
  • 2 energy-saving EC centrifugal fans, supply and extract air fans classified as SFP 0 (< 300 W/(m³/s)) according to EN 16798-3:2017-11, electrical power consumption of the entire unit 250 m³/h <44 W at the nominal volume flow rate; the connecting cable has to be suitable for a power rating of 226 VA
  • Suitable for 3 speed levels (150, 200 and 250 m³/h as well as boost level of 320 m³/h), signalling by means of integrated single room control system. The volume flow rate can be corrected at a later stage by adjusting the control voltage
  • Meets the requirements of EU Regulation 1253/2014 (ErP Directive)
  • Sound power level in supply-extract air operation at 150/200/250/320 m³/h = 31/36/41/46 dB(A) (corresponds to a sound power level of = 23/28/33/38 dB(A) at a room attenuation of 8 dB). The measurement data refer to sound power measurements of a single unit in a reverberation chamber according to accuracy class 1. Results may vary, depending on the installation situation
  • Integrated recuperative cross flow heat exchanger (heat recovery) for heat recovery in a salt water resistant aluminium design, with high efficiency due to special plate structure, plate spacing and package length, including condensate drip tray and discharge into the condensate drip tray of the heat exchanger
  • With electromotive bypass which causes a large partial air volume flow to bypass the heat recovery system, actuator 24 V (modulating), signalling via internal single room control system
  • Motorised shut-off dampers in the outdoor air and exhaust air area, normally closed in inactive state via energy storage, actuator 230 V, open/closed, signalling via integrated single room control system
  • Automatic switching to secondary air mode (only with an air quality sensor) if the room air quality (measured with the integrated COsensor) is within the defined limits. For this purpose, the shut-off dampers are closed, the self-powered secondary air damper opens and the extract air fan is switched off
  • Integral electrical components are completely wired with FSL-CONTROL III, control components are integrated in the unit. Cable for connection (connection not in the TROX supply package) of the power supply (L, N, PE) with wire end ferrules led approx. 1 m out of the unit: As a transfer point to the on-site electrical installation:
    • Supply voltage (230 V): 3 wires, 3 × 1.5 mm² (L, N, PE)
  • Connection option for bus communication (optional), connection of room control panel etc. after opening the customer area of the control unit. As a transfer point to the on-site measurement/control/regulation system:
    • Rail mount terminals type Wago 260 for the on-site connection of
      • Digital inputs DI
      • Digital outputs DO
      • Master-slave connection RS485
      • Optional integration in MCE/BACS via RS485 (Modbus/BACnet)
      • Room control panel
      • RJ45 socket as service access to the user interface
      • Optional integration into an on-site MCE/BACS via Ethernet (Modbus/BACnet)
  • The following sensors are included in the unit as part of the single room control system (the actual room temperature is captured at the room control panel):
    • Room air quality sensor CO2
    • Supply air temperature measurement downstream of the heat exchanger
    • Outdoor air temperature measurement in the outdoor air intake
  • 2-pipe aluminium copper pipe heat exchanger for air heating, matched to project-specific data, easily removable for cleaning (the connection to the on-site main pipe is crucial, not included in the TROX supply package), drainage and venting option per heating circuit, arrangement on the room side on the right. We recommend flexible hoses (not part of the supply package) to connect the unit to the existing pipe network (by others) as they simplify removal of the heat exchanger for cleaning
  • Transfer points are the hand tight pre-assembled control components
    • Valves in the return: transfer with G ½" external thread, flat seal
    • Lockshields in the flow: transfer with G ½" external thread, flat seal
  • Easy-to-clean condensate drip tray with condensate drain Ø 12 × 1 mm, made from galvanised sheet steel (powder-coated RAL 9005)
  • Outdoor air filter as Mini Pleat filter, class ePM1 (fine dust filter):
    • Filter class according to ISO 16890: ISO ePM1 65%
    • Eurovent-certified
    • ePM1 filter media made of high-quality, wet-strength glass fibre paper, and laid in tight pleats. The spacers are made of thermoplastic hot-melt adhesive and ensure that the pleats are evenly spaced (4 mm) from each other
    • The frame is made of moisture-resistant non-woven fibre with pull-out brackets and must not reduce the flow cross-section (filter size = flow cross-section)
    • Filter area >= 2.96 m²
  • Extract air filter (coarse dust filter) as flat filter medium, filter class according to ISO16890: ISO coarse 50 %
  • Filters can be changed quickly, as the filter insert can be opened without tools after opening the on-site casing using user-friendly quarter-turn fasteners (accessibility must not be restricted by the on-site under sill trim)
  • Closed cell sealing tapes for sealing and adaptation to the outer casing are not included in the TROX supply package
  • The under sill trim provided by the customer is perforated in areas to be specified for the introduction of supply air, for extract air and secondary air intake, and must not restrict maintenance work and unit assembly and disassembly on the front of the unit
  • Clear distance of approx. 30 mm between the front edge of the unit and the inner edge of the under sill trim
  • The front of the unit must be completely accessible after removal of the outer casing

Unit dimensions and weight

  • Width: approx. 397 mm
  • Height: approx. 2160 mm (without levelling feet, without fixing brackets)
  • Depth: approx. 359 mm (without seals)
  • Approx. 70 kg

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 ...):

  • Single room controller to be mounted on a DIN mounting rail in the unit or in a separate control equipment box
  • 42 digital or analogue inputs and outputs
  • A MicroSD card (at least 2 GB storage space) is integrated as a flash memory medium. The trend data are stored there and can be retrieved via the RJ45 socket
  • Factory-equipped with a software package for master units specially developed for decentralised ventilation units. The software enables simple master-slave communication via Modbus RTU
  • Up to 10 slave devices can be connected to one master device
  • The software provides 3 types of operation (Off, Automatic and Manual), 3 operating modes (Occupied, Unoccupied and Standby) and 4 operating mode overrides (Boost, Class, Night Ventilation and Fan Forced Circuit)
  • Basic distinction between room temperature control by controlling heating and cooling valves or continuous bypass damper or supply air temperature control for isothermal ventilation operation
  • CO2 guided air quality control
  • Heat recovery all year round
  • Filter monitoring
  • Configurable DI for on-site connection of presence detectors, window contacts, holiday switching, etc.
  • Alarm messages: Type A (shutdowns) and Type B (notifications)

Real time clock (RTC)

Real Time Clock (RTC/real time clock) (order code ...-T/...):

  • Component of the Master Software Package
  • Enables a simple timer
    • 7 days with 10 switching points each
    • Automatic summer / winter time changeover
    • Temporal activation of night purge

CO2 sensor

COsensor (order code…/C/…):

  • Sensor arranged in the extract air intake of the master unit for recording the indoor air quality and corresponding control of the outdoor air flow rate
  • Measurement via an NDIR sensor, which works on an infrared basis and compensates for any contamination by its 2-beam measurement principle
  • Measuring range 0 – 2000 ppm

Supply air temperature sensor

Supply air temperature sensor (order code .../Z/...):

  • Supply air temperature sensor with NTC thermistor, 10 kΩ at 25 °C, measuring range -35 to 105 °C
  • Very short response time due to perforated measuring tip

Outdoor air temperature sensor

Outdoor air temperature sensor (order code .../A/...):

  • Outdoor air temperature sensor with NTC thermistor, 10 kΩ at 25 °C, measuring range -35 to 105 °C

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

At least one room temperature signal is required per room. There are several variants of TROX room control panels available, optionally with or without selector switch. Additionally, we offer a room temperature sensor RTF without control elements. Alternative on-site room control panels must be connected via bus communication.

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:

For manual operation of the ventilation units with a high-quality look and the matching design from a wide range of switch programmes, the unit is suitable for particularly design-oriented facilities.

Control panel without selector switch, type Thermokon, for flush mounting, switch programme Berker S.1, polar white


Control panel without selector switch, type Thermokon, for flush mounting, switch programme Berker Q.3, white


Control panel without selector switch, for flush mounting, type Thermokon, switch programme Busch-Jäger future linear, white


Other switch programmes on request.

Control panels without selector switch and without setpoint value adjuster, for flush mounting:

Control panel without selector switch and without setpoint value adjuster, type Thermokon, for flush mounting, switch programme Gira E2


Other switch programmes on request

Electromotive valve actuator:

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


Interface for integration into an on-site MCE/BACS: Modbus TCP interface including web server (order code .../MT/...)

To increase convenience, we recommend integration into an on-site MCE/BACS or visualisation with X-TAIRMINAL. FSL-CONTROL III can be integrated into an on-site MCE/BACS via the Modbus TCP protocol. Additionally including web server for simplified configuration, commissioning and remote monitoring of the unit. The MCE/BACS is not included in the supply package from TROX GmbH, only the interfaces listed above are available here.


BACnet IP interface including web server (order code .../BI/...)

To increase convenience, we recommend integration into an on-site MCE/BACS. FSL-CONTROL III offers the option of being integrated into an on-site MCE/BACS via the BACnet IP protocol. Additionally including web server for simplified configuration, commissioning and remote monitoring of the unit. The MCE/BACS is not included in the supply package from TROX GmbH, only the interfaces listed above are available here.


Modbus RTU (order code .../MR/...)

To increase convenience, we recommend integration into an on-site MCE/BACS. FSL-CONTROL III offers the option of being integrated into an on-site MCE/BACS via Modbus RTU. The MCE/BACS is not included in the supply package from TROX GmbH, only the interfaces listed above are available here.


BACnet MS/TP (order code .../BM/...)

To increase convenience, we recommend integration into an on-site MCE/BACS. FSL-CONTROL III offers the option of being integrated into an on-site MCE/BACS via BACnet MS/TP. The MCE/BACS is not included in the supply package from TROX GmbH, only the interfaces listed above are available here.


Version as SLAVE DEVICE

Identical to the MASTER DEVICE, as described above, but with the following deviations:

  • No room air quality measurement in the unit
  • No connection option for room control panels
  • No outdoor temperature detection in the outdoor air
  • No connection to on-site bus communication possible
  • Pre-assembled self-sufficient control system for decentralised façade ventilation units in SLAVE construction

Replacement filter set suitable for the appliance version

  • Extract air filters cut to size as filter mats
  • Outdoor air filter as Mini Pleat filter

Commissioning of the decentralised ventilation units

Commissioning/parameterisation of the decentralised ventilation units without integration into an on-site MCE/BACS

  • Visual inspection of the device connections on site for compliance with the respective installation specifications from the installation and configuration instructions: air connections, heating/cooling connection, electrical connections, integration into the installed outer casing, connections of external components
  • Checking and, if necessary, adapting the project parameters pre-set in the factory with regard to customer-specific adaptations
  • Functional test of the individual components (control elements, fans, valves, dampers, sensors)
  • Checking the project-specific control functions including any special functions such as volt-free switch contacts
  • Documentation of the device settings and service work in a service report. The service report must be signed by your company or representative as the client.
  • Invoicing is done as a flat rate, derived from the number of units and distance.

Commissioning/parameterisation of the decentralised ventilation units with integration into an on-site MCE/BACS

  • Visual inspection of the device connections on site for compliance with the respective installation specifications from the installation and configuration instructions: air connections, heating/cooling connection, electrical connections, integration into the installed outer casing, connections of external components, connections of MCE/BACS
  • Checking and, if necessary, adapting the project parameters pre-set in the factory with regard to customer-specific adaptations
  • Functional test of the individual components (control elements, fans, valves, dampers, sensors)
  • Checking the project-specific control functions including any special functions such as volt-free switch contacts
  • Function test of the communication to the MCE/BACS in cooperation with the controls provider:
    • Checking that the on-site settings comply with the specifications in the installation and configuration instructions
    • Input test of the data points sent on site
    • Output test of the output data points
    • Trial operation of the operating states that can be switched by the MCE/BACS
  • Documentation of the device settings and service work in a service report. The service report must be signed by your company or representative as the client.
  • Invoicing is done as a flat rate, derived from the number of units and distance.

Instruction in operation and maintenance

  • One-time instruction for the operation of the decentralised ventilation units consisting of:

    • Description of the equipment functions on the unit that has already been put into operation
    • Description of the room control panel and the room conditions that can be influenced by it
    • Description of the maintenance work
  • Invoicing is done on a flat-rate basis. The instruction is carried out by the responsible sales representative

SA-V21KO / 397 × 2160 × 359 / C3MAT / MR / C / Z / A / HVR0,40 / KVR0,40
|||||||||||||||||||
12345678910111213141516171819
1 Type
SA-V
vertical decentralised ventilation unit X-CUBE/SCHOOLAIR-V

2 Variant
No entry: Standard

3 Heat exchanger
2
2-pipe

4 Heat exchanger construction
Specify construction (technical design with TROX EPF or TROX CONFIGURATOR)

5 Construction
KO
without condensate drain
KM with condensate drain

6 Nominal size [mm]
Width × height × depth
397 × 2160 × 359

7 Control system
OR
without control system
C3 with FSL-CONTROL III

8 Control function
MA
Master
SL Slave

9 Real time clock
Only with control function MA
No entry: without real time clock
T with real time clock

10 Interface
No entry: without interface
MT with Modbus TCP
MR with Modbus RTU (only with control function MA)
BI with BACnet IP
BM with BACnet MS/TP (only with control function MA)

11 Air quality sensor
Only with control function MA
No entry: without air quality sensor
C with CO2sensor
V with VOC sensor

12 Supply air temperature sensor
Z
with supply air temperature sensor

13 Outdoor air temperature sensor
Only with control function MA
No entry: without outdoor air temperature sensor
A with outdoor air temperature sensor

14 Heating valve
Only with heat exchanger 2 or 4
HV with thermoelectric actuator
HVE with electromotive actuator

15 Lockshield – heating circuit
Only with heat exchanger 2 or 4
R with lockshield

16 kVS value – heating valve
Only with heat exchanger 2 or 4
0.25 (straight-way valve)
0.40 (straight-way valve)
0.63 (straight-way valve)
1.00 (straight-way valve)
F0.50 (pressure-independent control valve)

17 Cooling valve
Only with heat exchanger 4
KV with thermoelectric actuator
KVE with electromotive actuator

18 Lockshield – cooling circuit
Only with heat exchanger 4
R with lockshield

19 kVS value – cooling valve
Only with heat exchanger 4
0.25 (straight-way valve)
0.40 (straight-way valve)
0.63 (straight-way valve)
1.00 (straight-way valve)
F0.50 (pressure-independent control valve)


Order example: SA-V-2-1-KO/397×2160×359/C3-MA-T/MR/C/Z/A/HV-R-0.40/KV-R-0.40

TypeSA-VVentilation unit for ceiling installation X-CUBE/SCHOOLAIR-V
Variant-Standard
Heat exchanger22-pipe
Heat exchanger construction1Heat exchanger type 1
ConstructionKOwithout condensate drain
Nominal size [mm]397×2160×359Width 397, height 2160, depth 359
ControlC3with FSL-CONTROL III
Control functionMAMaster
Real time clockTwith real time clock
InterfaceMRwith Modbus RTU
Air quality sensorCwith CO2sensor
Supply air temperature sensorZwith supply air temperature sensor
Outdoor air temperature sensorAwith outdoor air temperature sensor
Heating valveHVwith thermoelectric actuator
Lockshield – heating circuitRwith lockshield
kVS value – heating valve0.400.40 (straight-way valve)
Cooling valveKVwith thermoelectric actuator
Lockshield – cooling circuitRwith lockshield
kVS value – cooling valve0.400.40 (straight-way valve)

Product details

  • PRODUCT DETAILS

Installation and commissioning

  • Installation on the floor in front of the outside wall
  • Level adjustment using the 4 levelling feet (+40 mm)
  • Fixing bracket at the top of the unit and 2 fixing points near the bottom of the heat exchanger for screw-fixing the unit
  • The outdoor air intake or exhaust air discharge takes place via 2 façade openings. The façade openings must be professionally provided by the customer and ideally have a slope to the outside
  • Free area of ventilation openings: 0.031 m² for each opening (outside and exhaust air) and 0.1 m² per opening (supply and extract air)
  • Weather protection for the outdoor air and exhaust air openings to be provided by others
  • Installation and connections to be performed by others. Fixing, connecting and sealing material not included
  • Water supply and return connections are on the right-hand side of the unit, as seen from the room
  • The customer must ensure that the unit can be drained and vented
  • The electrical connection is on the right-hand side of the unit, as seen from the room
  • We recommend using flexible hoses to connect the unit to the pipework so that the heat exchanger can be easily removed for cleaning
  • The under sill trim provided by others must not obstruct maintenance access at the front of the unit or installation and removal of the unit

Downloads

Productinformatie

Broschures

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