HIGH PERFORMANCE HEAT RECOVERY UNIT HRF SERIES Nominal air flows from 790 to 4250 m 3 /h

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1 HIGH PERFORMANCE HEAT RECOVERY UNIT HRF SERIES Nominal air flows from 790 to 4 m 3 /h SELECTION MANUAL ENG

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3 Index Description of the unit 4 Configurations 5 Main components 6 Unit diagram 7 Accessories and options 8 Technical data 10 Dimensions 10 Thermoregulation 11 Ventilation control 13 Characteristic curves size Characteristic curves size Characteristic curves size Characteristic curves size Characteristic curves size Characteristic curves size Performance internal hot water heating coil 33 Performance internal hot water heating coil 36 Performance external module water coils cold water operation 39

4 Description of the unit The RPF series is a line of heat recovery units with performance greater than 90% specially created for high performance recovery of the energy from the expelled air. It is suitable for installations in tertiary and industrial environments such as offices, bars and restaurants, meeting rooms, shops, school buildings, gyms, homes for the elderly, and, in general, for all those structures in which the reduction of energy costs is of significant importance. In order to be able to meet every need, there are 6 sizes with air flow rate from m 3 /h to 4600 m 3 /h, both in the horizontal configuration (except the size 042) and in the vertical one. The unit may be installed on suspended ceiling, floor mounted or fitted externally. The RPF recovery unit is a monoblock machine. It is very compact and especially plug and play. It does not require any particular interventions during installation and fine-tuning is carried out directly in the factory. The core of this product is the high efficiency aluminum plate heat recovery unit with countercurrent exchange. The performance of the recovery unit is greater than 90%, is EUROVENT certified, technically innovative and operates with distribution of the air flow through defined canalised paths at very low load losses. The other features and functionalities of the unit are: high efficiency air flow filtration (F7) for the flow of outlet air; plug fan ventilation with permanent magnet synchronous motor and EC electronic control with low values of electric consumption. The impellers are designed in such a way as to ensure a flow of air that passes through the internal components with the minimum level of noise; designed to reduce the overall value of the Specific Fan Power; free-cooling and free-heating obtained thanks to management of the locks in order to take full advantage of the favourable conditions of the outside air; anti-freeze function in winter in case of extremely cold temperatures; complete control of ventilation and of thermoregulation with advanced energy saving features; integration of the power required through a wide range of accessory devices; plug and play installation logic with BMS systems interfacing; the environmental sound level is maintained at low values for the precise soundproofing of the machine and the careful selection of moving components. 4

5 Configurations Horizontal Configuration right supply (top view) Horizontal Configuration left supply (top view) S D E I E I S D Vertical Configuration right supply (view from accessible side) Vertical Configuration left supply (view from accessible side) I E I D S D D = Discharge / Expulsion I = Intake S = Supply E = Extract 5

6 Main components SUPPORT STRUCTURE The structure of the unit is composed of an aluminum frame with thermal break profile and multi-lip tubular seals to ensure the best sealing of the panels (sealing class L1 with leakage L1 and thermal bridge class TB2 according to EN 1886). The corner joints are made from nylon reinforced with fibre glass. The panels have a thickness of 50 mm and are of the sandwich-type in pre-painted sheet RAL 9002 (external) and galvanised sheet metal (internal), insulated with polyurethane with density 45 kg/m 3. The polyurethane foam used has an eco-friendly water-based expander GWP=0 (Global Warming Potential), which respects the environment and has an M1 fire reaction classaccording to the standard NFP92-512:1986 (test no. LNE PV P DE/1). The sandwich panels are for the most part removable to facilitate and enable maintenance of the unit. The internal condensation collection tank is independent of the supporting structure of the unit and is easily extractable. Within the units there is a motorised by-pass lock (fully aluminum) controlled for management of the free cooling up to % depending on the external conditions. Standard fitting is with mounting brackets for securing to the ceiling or support feet (accessories) for floor-mounted installation. HOT / COLD WATER COILS These are made with micro-finned copper piping and aluminum fins, pre-painted aluminium, copper or tinplated copper, secured through mechanical expansion of the pipes. They are supplied with 2 or 3-way valves. FANS The supply and extract fans are plug type with electronic control (EC) permanent magnet synchronous motor. The impellers are designed in such a way as to ensure a flow of air that passes through the internal components with the minimum level of noise; FILTERS Access to the filters of the unit is secured via suitable side (standard) or lower (optional) opening [reference to horizontal version]. Standard insertion of an F7 filter on the intake air, according to EN779, with low load losses; on the air extracted instead is inserted a G4 filter according to EN779 with low load losses. RECOVERY UNIT A EUROVENT certified high-efficiency cross-flow heat recovery unit is used to recover heat. Its performance is not less than 90% (EN308) on the basis of the external conditions: intake air -10 C/90% - extract air 20 C/50% - identical flow rates between supply and extract. Anautomatic defrost function is also inserted by opening the internal modulating lock and modulation with the intake flow or by electric defrosting coil (accessory). The performance of the KLINGENBURG recovery unit is EUROVENT certified ELECTRIC coils The electric coils are managed by the thermoregulator. They are made from a galvanised sheet metal frame and are made by creating a series of modules, or spiral piping, equipped with safety thermostats with automatic reset, calibrated to intervene in the event of absence of or poor ventilation. They can be used both for pre-heating and as internal heating instead of the water coil. NOTE: only the internal electric heating coils are modulating. ELECTRICAL PANEL The unit is equipped with an electric panel located on board the machine, accessible laterally. The electrical panel is isolated from the air flow in an appropriate compartment. The power section comprises the main switch with door interlock function, protection fuses and fan contacts. The control is programmable and is equipped with visible graphical built-in display which is accessible from outside the machine. 6

7 Unit indicative diagram Fan supply Flow switch supply Pressure probe Hot electric / water coil Probe temperature air expulsion - defrost Extract flow switch Pressure probe Extract fan probe supply S D Pressure switch air filters extract Pressure switch external air filters E I probe air extract Probe air quality Electrical panel Servocontrol locks Pre-heating electric coils probe external air intake D = Discharge I = Intake S = Supply E = Extract As per standard Optional 7

8 Accessories and options Selection manual ELECTRIC PRE-HEATING COILS (internal) EH025F Coil 2.5 kw 230/1+N/50; EH037F Coil 3.75 kw 230/1+N/50; EH052F Coil 5.25 kw /3/50; EH067F Coil 6.75 kw /3/50; EH082F Coil 8.25 kw /3/50; EH180F Coil 18 kw /3/50; (only one choice is permitted) HEATING COILS (internal) HC3R Water heating coil; HC3R3V Water heating coil with 3-way valve supplied; HC3R2V Water heating coil with 2-way valve supplied; EH025H Electric coil2.5 kw 230/1+N/50; EH037H Electric coil3.75 kw 230/1+N/50 (*); EH038H Electric coil 3.75 kw /3/50; EH052H Electric coil 5,25 kw /3/50; EH067H Electric coil 6.75 kw /3/50; EH135H Electric coil 13.5 kw /3/50; EH025MH Electric coil2.5 kw 230/1+N/50 modulating; EH037MH Electric coil3.75 kw 230/1+N/50 modulating (*); EH038MH Electriccoil 3.75 kw /3/50 modulating; EH052MH Electric coil 5.25 kw /3/50 modulating; EH067MH Electric coil6.75 kw /3/50 modulating; EH135MH Electric coil 13.5 kw /3/50 modulating; (*) Not compatible if electric pre-heating coilis present (only one choice is permitted) COOLING COILS (additional module) CC3R Watercoil; CC3R3V Water coil with 3-way valve supplied; CC3R2V Water coil with 2-way valve supplied; Operation with hot water is also provided (not compatible if there is an internal heating coil). (only one choice is permitted) PROTECTIVE ROOF TPRF INSPECTION OF FILTERS SFI Side Inspection (standard); BFI Inspection from the lower side; (only one choice is permitted) PRESSURE SWITCH FILTERS DPS1 Pressure switch filters outside air; DPS2 Pressure switch filters outside air and environment extract; (only one choice is permitted) AIR FLOW SWITCH SFS Flow switch supply fan; EFS Flow switch extract fan; SUPPORT FEET BSF Support feet for horizontal or vertical basic unit; BSM Support feet for additional module INTAKE ACCESSORIES FLCI Tapered circular intake flange; FLPI Flat circular intake flange; GTAI Vibration damping joint intake; SRI Intake locks; CFAI Weatherproof hoods, INTAKE LOCK ACCESSORIES CMSRI Manual control; SCSRI Servocontrol ON/OFF; SCMSRI Servocontrol ON/OFF with spring return; (only one choice is permitted) EXTRACT ACCESSORIES FLCE Circular taperedextract flange; PLPE Flat circular extract flange; GTAE Vibration damping joint extract; SRE Extract locks; CFAE Weatherproof hoods, (only one choice is permitted) EXTRACT LOCK ACCESSORIES CMSRE Manual control; SCSRE Servocontrol ON/OFF; 8

9 SCMSRE Servocontrol ON/OFF with spring return; (only one choice is permitted) EXPULSION ACCESSORIES FLCD Circular taperedexpulsionflange; GTAD Vibration damping joint expulsion SRD Expulsion locks CFAD Weatherproof hoods EXPULSION LOCK ACCESSORIES CMSRD Manual control; CMSRD Servocontrol ON/OFF; SCMSRD Servocontrol ON/OFF with spring return; (only one choice is permitted) SUPPLY ACCESSORIES FLCS Circular taperedsupplyflange; GTAS Vibration damping joint supply SRS Supply locks CFAS Weatherproof hoods, SUPPLY LOCK ACCESSORIES CMSRS Manual control; SCSRS Servocontrol ON/OFF; SCMSRS Servocontrol ON/OFF with spring return; (only one choice is permitted) SILENCERS ENVIRONMENT SIDE ( additional module) SZS Suplysilencers SZEExtract silencers SILENCERS EXTERNAL SIDE ( additional module) SZI Intake silencers SZD Expulsion silencers FANS CONTROL CMF Electrical panel + manual fan speed control CPOC Electrical panel + fan control in constant flow CPRC Electrical panel + fan control under constant pressure CCO2 Electrical panel + fan control with CO 2 probe CVOC Electrical panel + fan control in flow with VOC probe CPOCO2 Electrical panel + fan control in constant flow with CO probe 2 CPOVOC Electrical panel + fan control in constant flow with VOCprobe (only one choice is permitted) THERMOREGULATION CTR Extract temperature control CTS Supply temperature control [only if modulating actuators (valves-resistance) ] (only one choice is permitted) COMMUNICATION PROTOCOL PC485 ModBus RTU - RS485 PCPFB Profibus DP Slave - V0 PCTCP Ethernet ModBus TCP (only one choice is permitted) REMOTE PANEL RCP 9

10 Rated technical data Model Rated air flow rate supply and extract m 3 /h Minimum air flow rate supply and extract m 3 /h Maximum air flow rate supply and extract m 3 /h Nominal rated static pressure supply and extract Pa 225 Recovered total thermal power (1) kw Performance in intake (EN308) (1) % Total number fans Total rated input power fans (2) kw Total maximum input power (2) kw Total maximum input current (2) A 4, N Power supply unit (2) V-Ph 50Hz 1) Air conditions: intake -10 C, 90 %UR and extract 20 C, 50% UR; 2) Basic version N 50Hz N 50Hz N 50Hz -3-50Hz -3-50Hz Overall dimensions A B 82 D 80 D 82 C 57 E Supply Extract 57 Configuration Horizontal Vertical Model A (mm) B (mm) C (mm) D (mm) E (mm) A (mm) B (mm) C (mm) D (mm) E (mm)

11 Thermoregulation MAIN OPERATION LOGICS The unit is set to work, both in cooling and heating, according to 2 main operation logics: 1. COMFORT: this is the standard mode of operation 2. ECONOMY: this is the mode of operation at reduced speed. During operation in Economy mode the following operation logics are adopted: ventilation is reduced if the unit is working in heating, a lower set point temperature is adopted if the unit is working in cooling, a higher set point temperature is adopted HEATING OPERATION Heating takes place according to the following two modes. Heating with hot water coils The supply air flow is heated by means of hot water coil. Adjustment is possible via a 2- or 3-way valve that regulates the flow of water from 0% to %. Heating via electric coils The supply air flow is heated by means of electric coils. The electric coils may be modulating or step (2 step or 3 with possible adjustments). NOTE: the main heating coils can be modulating or step while the pre-heating coils can only be step. COOLING OPERATION Cooling takes place according to the following mode. Cooling with cold water coils The supply air flow is cooled by means of cold water coils. Adjustment is possible via a 2- or 3-way valve that regulates the flow of water. FREE COOLING / FREE HEATING OPERATION Depending on the settings of the parameters and the external environmental conditions the unit can operate in a condition of free cooling or free heating. Cooling by free cooling When the difference between the internal and external temperature reaches a certain preset value, the unit goes into free cooling mode. During this period the by-pass lock is opened and the flow of outside air is sent to the area to be air-conditioned without passing through the recovery unit. Cooling in free cooling remains active for an adjustable maximum amount of time. Heating by free heating When the difference between the internal and external temperature reaches a certain preset value, the unit goes into free heating mode. During this period the by-pass lock is opened and the flow of outside air is sent to the area to be air-conditioned without passing through the recovery unit. Heating in free cooling heating remains active for an adjustable maximum amount of time. OPERATION IN NIGHT COOLING MODE Night cooling mode allows night-time refreshment forced in a way similar to free cooling mode. SEASON CHANGE MODE The functionality mode change from winter to summer (and vice versa) can be performed manually or automatically (via external temperature probe or adjustment). See the user adjustment manual under the heading "Operation mode setting". ANTIFREEZE FUNCTION (if provided) The antifreeze function is provided to prevent the formation of ice on the recovery unit and on the water coil when the temperature detected by the expulsion probe falls below a certain value. The antifreeze function is carried out in the following two ways. Anti-freeze function via ventilation and locks In this case, prevention of the formation of ice within the unit is carried out by the reduction of the speed of rotation of the supply fan (the extract fan is not involved) and opening of the by-pass lock of the recovery unit at a later time. Anti-freeze function via electric coils In this case the prevention of the formation of ice within the unit is carried out via heating of the external air flow. NOTE: The antifreeze function is implemented at the time of selection of the machine or through interven- 11

12 tion of the assistance service in the version with use of fans and locks or in the version with use of electric coils. Both versions cannot be implemented on the same unit. FIRE - SMOKE ALARM MANAGEMENT Where the fire-smoke alarm is activated, there are 3 adjustment logics which can be set at the time of selection of the machine or subsequently with intervention of the assistance service. 1. All Off 2. Fan On 3. Extraction Fan extract OFF MAX MAX Fan supply OFF MAX OFF External locks OFF ON ON Thermoregulation OFF OFF OFF NOTE: The heat recovery unit is not a fume extractor OPENING / CLOSING OF THE LOCKS The internal and external locks are controlled by the ventilation. With fans running the locks are open while with the fans off the locks are closed. 12

13 Ventilation control OPERATINGMODE The unit is configured at the factory according to the modes described below. In the event of a fault or with alarm notification the machine passes automatically to mode 1 (CMF). Once the machine configuration has been chosen it is not possible to go from one type of adjustment to another. Adjustment is m 3 /h. 3. Ventilation control mode in constant pressure - CPRC This operation mode involves maintaining of the constant pressure of supply and extraction (within the limits of operation of the fans). The supply and extraction pressures can be set independently. 1. Manual ventilation control mode - CMF This mode enables manual and independent control of the rotational speed of the fans. The speed of rotation of the supply and extract fan is set by means of the control keyboard. P PC Q E 2. Ventilation control mode in constant flow rate - CPOC This operation mode involves maintaining of the constant flow of supply and extraction (within the limits of operation of the fans). The supply and extraction flow rates can be set independently. With a variation of internal load (for example, due to increased dirt in the filters) or external load losses, the unit maintains the pre-established flow rates set. P E C C Measurement of the pressures of supply and extraction are carried out by pressure probes provided and located on the channels (for installation of the pressure probe, see the respective paragraph in the installation manual). In the event of a fault of the pressure probes or with alarm notification the ventilation control mode passes into manual (CMF). The unit is configured at the factory with the pressure of supply and extraction requested at the time of selection. The adjustment is in Pascal units (Pa). 4. Ventilation control mode with CO2 probe or VOC - CCO2 / CVOC probe This mode of operation involves maintaining the predetermined sets of air quality through variation of the speed of the fans. The quality of the air is detected via the CO2 probe or VOC probe, located at the extraction point. In the event of a fault of the CO2 probe or of the VOC probe or with alarm notification, the ventilation control mode passes into manual (CMF). Q Measurements of the flow rates of supply and extraction are carried out by pressure probes positioned inside the machine. In the event of a fault of the pressure probes or with alarm notification the ventilation control mode passes into manual (CMF). The unit is configured at the factory with the flow rate of supply and extraction requested at the time of selection. 13

14 P P E C C 5. Ventilation control mode with CO2 probe or VOC - probe in constant flow CPOCO2 / CPOVOC This mode of operation involves maintaining of the constant flow (within a certain range) for the value of air quality set. Q E In case of failure of the CO2 probe or the VOC probe, the control mode passes into the control mode of the constant pressure flow rate. In the case of a failure of the pressure probe the control mode passes into the control mode via the CO2 probe or VOC probe. In the event of a fault of the CO2 probe or of the VOC probe and the pressure probe the control mode passes into manual (CMF). Q C = operation in comfort mode C = operation in economy mode PC = operation under constant pressure p: pressure Q: flow rate 14

15 Characteristic curves size ,0 PERFORMANCE RECOVERY UNIT SIZE 008 Performance [%] 94,0 92,0 90,0 88,0 86,0 84,0 82,0 80,0-10 C 90% -5 C 90% 0 C 90% 5 C 90% Air expelled at 20 C and 50% u.r. 78, SFP [kw/mc/s] 5,0 4,5 4,0 3,5 3,0 2,5 2,0 1,5 1,0 0,5 SFP maximum speed 50 SPECIFIC FAN POWER SIZE 008 The values refer to both the fans at the same flow rate 0, SOUND POWER EXTERNAL CASING SIZE 008 Lw[dB(A)] The values refer to both the fans at the same flow rate

16 700 FLOW RATE PREVALENCE SUPPLY SIZE Maximum and rated prevalence 500 Static pressure [Pa] Minimum prevalence ,18 ELECTRIC POWER INPUT SUPPLY FAN SIZE 008 Power [kw] 0,16 0,14 0,12 0,1 Maximum speed 0,08 0,06 0,04 0, OVERALL SOUND POWER SUPPLY SIZE 008 Lw[dB(A)]

17 Maximum and rated prevalence FLOW RATE PREVALENCE EXTRACT SIZE Static pressure [Pa] Minimum prevalence ,18 ELECTRIC POWER INPUT FAN EXTRACT SIZE 008 Power [kw] 0,16 0,14 0,12 0,1 Maximum speed 0,08 0,06 0,04 0, OVERALL SOUND POWER EXTRACT SIZE 008 Lw[dB(A)] 96,0 94,0 92,0 90,0 88,0 86,0 84,0 82,0 80, ,

18 Characteristic curves size 010 Performance [%] C 90% -5 C 90% 0 C 90% 5 C 90% PERFORMANCE RECOVERY UNIT SIZE 010 Air expelled at 20 C and 50% u.r SFP [kw/mc/s] SPECIFIC FAN POWER SIZE Maximum speed The values refer to both the fans at the same flow rate 6 5 Rated speed SOUND POWER EXTERNAL CASING SIZE 010 Lw[dB(A)] The values refer to both the fans at the same flow rate

19 1 0 Maximum prevalence FLOW PREVALENCE SUPPLY 010 Static pressure [Pa] Rated prevalence Minimum prevalence ,5 ELECTRIC POWER INPUT SUPPLY FAN SIZE 010 0,45 Power [kw] 0,4 0,35 0,3 0,25 0,2 0,15 0,1 0,05 Maximum speed Rated speed OVERALL SOUND POWER EXTRACT SIZE 010 Lw[dB(A)]

20 1 0 Maximum prevalence FLOW RATE PREVALENCE EXTRACT SIZE 010 Static pressure [Pa] Rated prevalence Minimum prevalence ELECTRIC POWER INPUT FAN EXTRACT SIZE 010 0,5 0,45 Power [kw] 0,4 0,35 0,3 0,25 0,2 0,15 0,1 0,05 Maximum speed Rated speed OVERALL SOUND POWER EXTRACT SIZE Lw[dB(A)]

21 Characteristic curves size C 90% PERFORMANCE RECOVERY UNIT SIZE 013 Performance [%] C 90% 0 C 90% 5 C 90% Air expelled at 20 C and 50% u.r SFP [kw/mc/s] Lw[dB(A)] SPECIFIC FAN POWER SIZE 013 6,5 6,0 5,5 Speed maximum 5,0 4,5 4,0 Speed rated The values refer to both the fans at the same flow rate 3,5 3,0 2,5 2,0 1,5 1,0 0, SOUND POWER EXTERNAL CASING SIZE 013 The values refer to both the fans at the same flow rate

22 0 Maximum prevalence FLOW RATE PREVALENCE SUPPLY SIZE Rated prevalence Static pressure [Pa] 600 Minimum prevalence ,5 ELECTRIC POWER INPUT SUPPLY FAN SIZE 013 Power [kw] 0,45 0,4 0,35 0,3 0,25 0,2 0,15 0,1 0,05 Maximum speed Rated speed OVERALL SOUND POWER EXTRACT SIZE Lw[dB(A)]

23 0 800 Maximum prevalence FLOW RATE PREVALENCE EXTRACT SIZE 013 Static pressure [Pa] 600 Rated prevalence Minimum prevalence ,5 ELECTRIC POWER INPUT FAN RECOVERY SIZE 013 Power [kw] 0,45 0,4 0,35 0,3 0,25 0,2 0,15 0,1 0,05 Maximum speed OVERALL SOUND POWER EXTRACT SIZE 013 Lw[dB(A)]

24 Characteristic curves size C 90% PERFORMANCE RECOVERY UNIT SIZE 020 Performance [%] C 90% 0 C 90% 5 C 90% Air expelled at 20 C and 50% u.r SPECIFIC FAN POWER SIZE 020 4,0 SFP [kw/mc/s] 3,5 3,0 2,5 2,0 1,5 1,0 Maximum speed Rated speed The values refer to both the fans at the same flow rate 0, SOUND POWER EXTERNAL CASING SIZE 020 Lw[dB(A)] The values refer to both the fans at the same flow rate

25 Maximum prevalence Rated prevalence FLOW RATE PREVALENCE SUPPLY SIZE 020 Static pressure [Pa] Minimum prevalence ,8 ELECTRIC POWER INPUT SUPPLY FAN SIZE 020 0,7 Power [kw] 0,6 0,5 0,4 0,3 0,2 0,1 Maximum speed Rated speed Lw[dB(A)] OVERALL SOUND POWER SUPPLY SIZE

26 Maximum prevalence Rated prevalence FLOW RATE PREVALENCE EXTRACT SIZE 020 Static pressure [Pa] Minimum prevalence ,8 ELECTRIC POWER INPUT FAN RECOVERY SIZE 020 Power [kw] 0,7 0,6 0,5 0,4 0,3 0,2 0,1 Maximum speed Rated speed OVERALL SOUND POWER EXTRACT SIZE 020 Lw[dB(A)]

27 Characteristic curves size C 90% PERFORMANCE RECOVERY UNIT SIZE 031 Performance [%] C 90% 0 C 90% 5 C 90% Air expelled at 20 C and 50% u.r ,0 SPECIFIC FAN POWER SIZE 031 SFP [kw/mc/s] 4,5 4,0 3,5 3,0 Rated speed Maximum speed The values refer to both the fans at the same flow rate 2,5 2,0 1,5 1,0 0, SOUND POWER EXTERNAL CASING SIZE 031 Lw[dB(A)] The values refer to both the fans at the same flow rate

28 FLOW RATE PREVALENCE SUPPLY SIZE Maximum prevalence Rated prevalence Static pressure [Pa] Minimum prevalence ELECTRIC POWER INPUT SUPPLY FAN SIZE 031 Power [kw] 0,9 0,8 0,7 0,6 0,5 0,4 0,3 0,2 0,1 Maximum speed Rated speed OVERALL SOUND POWER SUPPLY SIZE 031 Lw[dB(A)]

29 Maximum prevalence Rated prevalence FLOW RATE PREVALENCE EXTRACT SIZE 031 Static pressure [Pa] 500 Minimum prevalence ELECTRIC POWER INPUT FAN EXTRACT SIZE 031 1,0 Power [kw] 0,9 0,8 0,7 0,6 0,5 0,4 0,3 0,2 0,1 Maximum speed Rated speed 0, OVERALL SOUND POWER EXTRACT SIZE 031 Lw[dB(A)]

30 Characteristic curves size PERFORMANCE RECOVERY UNIT SIZE C 90% Performance [%] C 90% 0 C 90% 5 C 90% Air expelled at 20 C and 50% u.r ,0 Maximum speed SPECIFIC FAN POWER SIZE 042 SFP [kw/mc/s] 5,0 4,0 3,0 2,0 1,0 Rated speed The values refer to both the fans at the same flow rate 0, SOUND POWER EXTERNAL CASING SIZE 042 Lw[dB(A)] The values refer to both the fans at the same flow rate

31 Static pressure [Pa] Rated prevalence Minimum prevalence Maximum prevalence FLOW RATE PREVALENCE SUPPLY SIZE ELECTRIC POWER INPUT SUPPLY FAN SIZE 042 1,4 Power [kw] 1,2 1,0 0,8 0,6 0,4 0,2 Maximum speed Rated speed 0, OVERALL SOUND POWER SUPPLY SIZE 042 Lw[dB(A)]

32 Rated prevalence Maximum prevalence FLOW RATE PREVALENCE EXTRACT SIZE 042 Static pressure [Pa] 500 Minimum prevalence ,4 ELECTRIC POWER INPUT FAN EXTRACT SIZE 042 Power [kw] 1,2 1,0 0,8 0,6 0,4 0,2 Maximum speed Rated speed 0, OVERALL SOUND POWER EXTRACT SIZE 042 Lw[dB(A)]

33 Internal performance hot water heating coils Size 008 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ *entering the coil Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load Lloss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load Lloss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load Lloss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load Lloss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Size 010 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 33

34 Size 013 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil Size 020 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 34

35 Size 031 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil Size 042 water C / C air C (*) Air flow rate. m 3 /h /50 45/40 90/70 80/ Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) Power (kw) / Temp air output ( C) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 35

36 Performance internal electric heating coils Size 008 Mode Abbreviation Power kw Power supply Stages Pre-heating EH025F 2.5 (1+1,5) 230/1/50 Hz 2 Heating EH025H 2.5 (1+1,5) 230/1/50Hz 2 Heating EH025MH /1/50Hz Modulating Pre-heating + Heating EH025F + EH025H /1/50Hz 2-2 Pre-heating + Heating EH025F + EH025MH /1/50Hz 2 + Modulating Size 010 Mode Abbreviation Power kw Power supply Stages Pre-heating EH037F 3.75 (1.5+2,25) 230/1/50 Hz 2 Heating IS025H 2.5 (1+1,5) 230/1/50 Hz 2 Heating EH037H 3.75 (1.5+2,25) 230/1/50 Hz 2 Heating EH025MH /1/50 Hz modulating Heating EH037MH /1/50 Hz modulating Pre-heating + Heating EH037F+E025H /1/50 Hz 2-2 Pre-heating + Heating EH037F+EH025MH /1/50 Hz 2 + Modulating Pre-heating + Heating EH037F+EH37H /1/50 Hz 2-2 Pre-heating + Heating EH037F+EH37MH /1/50 Hz 2 + Modulating 36

37 Size 013 Mode Abbreviation Power kw Power supply Stages Pre-heating EH037F 3.75 (1.5+2,25) 230/1/50 Hz 2 Pre-heating EH052F 5.25 (2.1+3,15) /3/50 Hz 2 Heating EH037H 3.75 (1.5+2,25) 230/1/50 Hz 2 Heating EH038H 3.75 (1.5+2,25) /3/50 Hz 2* Heating EH052H 5.25 (2.1+3,15) /3/50 Hz 2* Heating EH037MH /1/50 Hz Modulating Heating EH038MH 3.75 /3/50 Hz Modulating Heating EH052MH 5.25 /3/50 Hz Modulating Pre-heating + Heating EH037F + EH037H /1/50 Hz 2-2 Pre-heating + Heating EH037F + EH037MH /1/50 Hz 2 + Modulating Pre-heating + Heating EH052F + EH038H /3/50 Hz 2 + 2* Pre-heating + Heating EH052F + EH052H /3/50 Hz 2 + 2* Pre-heating + Heating EH052F + EH038MH /3/50 Hz 2 + Modulating Pre-heating + Heating EH052F + EH052MH /3/50 Hz 2 + Modulating * for the vertical version the coil will be one-stage Size 020 Mode Abbreviation Power kw Power supply Stages Pre-heating EH037F 3.75 (1.5+2,25) 230/1/50 Hz 2 Pre-heating EH067F 6.75 (2.7+4,05) /3/50 Hz 2 Heating EH037H 3.75 (1.5+2,25) 230/1/50 Hz 2 Heating EH038H 3.75 (1.5+2,25) /3/50 Hz 2* Heating EH067H 6.75 (2.7+4,05) /3/50 Hz 2* Heating EH037MH /1/50 Hz Modulating Heating EH038MH 3.75 /3/50 Hz Modulating Heating EH067MH 6.75 /3/50 Hz Modulating Pre-heating + Heating EH037F + EH037H /1/50 Hz 2-2 Pre-heating + Heating EH037F + EH037MH /1/50 Hz 2 + Modulating Pre-heating + Heating EH067F + EH038H /3/50 Hz 2 + 2* Pre-heating + Heating EH067F + EH067H /3/50 Hz 2 + 2* Pre-heating + Heating EH067F + EH038MH /3/50 Hz 2 + Modulating Pre-heating + Heating EH067F + EH067MH /3/50 Hz 2 + Modulating * for the vertical version the coil will be one-stage 37

38 Size 031 Mode Abbreviation Power kw Power supply Stages Pre-heating EH082F 8.25 (3.3+4,95) /3/50 Hz 2 Heating EH067H 6.75 (2.7+4,05) /3/50 Hz 2 Heating EH135H 13.5 (5.4+8,10) /3/50 Hz 2 Heating EH067MH 6.75 /3/50 Hz Modulating Heating EH135MH 13.5 /3/50 Hz Modulating Pre-heating + Heating EH082F + EH067H /3/50 Hz 2-2 Pre-heating + Heating EH082F + EH135H /3/50 Hz 2-2 Pre-heating + Heating EH082F + EH067MH /3/50 Hz 2 + Modulating Pre-heating + Heating EH082F + EH135MH /3/50 Hz 2 + Modulating Size 042 Mode Abbreviation Power kw Power supply Stages Pre-heating EH180F 18.0 (7.2+10,8) /3/50 Hz 2 Heating EH067H 6.75 (2.7+4,05) /3/50 Hz 2 Heating EH135H 13.5 (5.4+8,10) /3/50 Hz 2 Heating EH067MH 6.75 /3/50 Hz Modulating Heating EH135MH 13.5 /3/50 Hz Modulating Pre-heating + Heating EH180F + EH067H /3/50 Hz 2-2 Pre-heating + Heating EH180F + EH135H /3/50 Hz 2-2 Pre-heating + Heating EH180F + EH067MH /3/50 Hz 2 + Modulating Pre-heating + Heating EH180F + EH135MH /3/50 Hz 2 + Modulating 38

39 Performance external module water coils Cold water operation Size 008 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 39

40 Size 010 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 40

41 Size 013 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 41

42 Size 020 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 42

43 Size 031 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 43

44 Size 042 water C / C air C (*) Air flow rate. m 3 /h /10 7/12 10/ Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) Total power (kw) / Sensible power (kw) air output ( C) / Humidity air output (%) Water flow rate (l/h) / Load loss water side (kpa) *entering the coil 44

45 Notes

46 Notes

47 Notes

48 Carta reciclata Recycled paper Recyclingpapier Papier recyclé Papel reciclado I dati tecnici riportati sulla seguente documentazione non sono impegnativi. FAST si riserva la facoltà di apportare in qualsiasi momento tutte le modifiche ritenute necessarie per il miglioramento del prodotto Technical data shown in this booklet are not binding. FAST S.p.A. shall have the right to introduce at any time whatever modifications deemed necessary to the improvement of the product. Die technischen Daten in der folgenden Dokumente sind nicht bindend. FAST behält sich das Recht vor, jederzeit Änderungen als notwendig für die Verbesserung der Produkt. Les caractéristiques techniques figurant dans la documentation suivante ne sont pas contractuelles. La société Fast se réserve la faculté d apporter à tout moment toutes les modifications estimées nécessaires pour l amélioration du produit. Los datos técnicos indicados en la siguiente documentación no son vinculantes. FAST se reserva el derecho de introducir, en cualquier momento, todas las modificaciones que retenga necesarias paramejorar el producto. FAST S.p.A. TRATTAMENTO DELL'ARIA 44 Montagnana (PD) - Italy Via Luppia Alberi, 170 Tel. (+39) Fax info@fastaer.com

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