COMFORT APPLICATION HYDRONIC TERMINALS ELEGANCE AND DESIGN FOR YOUR RESIDENTIAL COMFORT
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1 COMFORT APPLICATION HYDRONIC TERMINALS ELEGANCE AND DESIGN FOR YOUR RESIDENTIAL COMFORT climaveneta.com
2 COMFORT APPLICATION HYDRONIC TERMINALS between elegance, comfort and energy savings Conceived to make every kind of residential environment more comfortable, the new i-life2 Slim fan coil integrates excellent performance with an irresistible charm. 02/03
3 02/03 13 cm ELEGANT DESIGN i-life2 Slim is the new Climaveneta brand fan coil specially designed to perfectly fit the environment where it is installed. Featuring a harmonious design and an extraordinary depth of only 13 cm, i-life2 Slim complements the real interior design and fits perfectly in modern architectures. -50% REDUCED ENERGY CONSUMPTION Thanks to the DC motor with Inverter technology, i-life2 Slim features an electrical absorption rate 50% lower than traditional fan coil units with the same size. The innovative combination of the radiant effect with the finned coil ensures the heating function with lower water temperature compared to a traditional radiator (45 C instead of 65 C), with a very low energy expense.
4 COMFORT APPLICATION HYDRONIC TERMINALS 04/05
5 04/05 for heating, cooling and dehumidifying Breathing clean air is a key element for a healthy lifestyle. i-life2 Slim is the wellness that you can see and feel. SILENT COMFORT The i-life2 Slim fan coil is a synonym of perfect comfort in the environment, in every season. The brushless motor quickly reaches the desired comfort level to keep this general wellness over time, without any temperature fluctuation. Centrifugal fans operate through continuous air flow modulation, generating extremely low sound emissions. CLEAN AIR FOR A HEALTHY LIFESTYLE Your wellness is in the air: with i-life2 Slim you can breathe cleaner air. The fan coil is equipped with an UVC emitter that helps environmental sterilization and ensures a high quality of indoor air treatment. It is well-known that UVC rays have high antibacterial efficacy. The use of this component guarantees a cleaner and healthier environment and provides a feeling of well-being and relaxation.
6 COMFORT APPLICATION HYDRONIC TERMINALS AIR DEFLECTORS The new automatic opening and closing system smartly manages the airflow from the deflectors, ensuring quick comfort in the environment. CABINET The elegant layout of the i-life2 Slim has been specifically designed to perfectly fit into its environment. The linear and modern design of its casing with minimal lines and gentle curves is obtained by using high quality plastic materials combined with traditional galvanized sheet steel and epoxy powder coating. AIR FILTER AND FRONT AIR INTAKE All the units are provided with a honeycomb polypropylene regenerable filter (Class G1). There is easy access to the filter through the removable front grid in order to make cleaning easier. For environments with high air quality requirements, an UVC emitter is available as an accessory. The UV rays guarantee antibacterial efficacy, ensuring perfect sterilization and providing the feeling of well-being for the occupants. 06/07
7 06/07 Smart and functional technological choices conceived to ensure perfect comfort in every moment. Cooling, heating, ventilation and air purification combined with reduced energy consumption and sound emissions: this is now possible thanks to high quality components designed for the well-being of the tenants. DESIRED TEMPERATURE REACHED QUICKLY Thanks to the advanced functions of the panel with PID logic, the desired temperature is reached quickly. With a simple click, in a few minutes you can achieve the desired level of comfort, without wasting precious energy. HEAT EXCHANGER The heat exchanger has an extensive front surface that ensures high airflows to be achieved with low pressure loss. All units are supplied with hydraulic connections on the left, and upon request on the right. VENTILATION SECTION The fan is tangential with asymmetric blades and a DC electronic inverter motor. Thanks to the inverter technology, the fan speed is continuously modulated for better comfort and real energy savings.
8 COMFORT APPLICATION HYDRONIC TERMINALS Thanks to 4 versions with cabinet and built-in mounting, for horizontal or vertical installation, the ideal solution is guaranteed for any project. i-life2 Slim DLRV With cabinet and radiating effect for vertical wall installation 08/09
9 08/09 i-life2 Slim DLMO With cabinet, for horizontal ceiling installation i-life Slim Box i-life2 Slim DLMO Box module for wall installation i-life2 Slim DLIU Built-in version, for vertical/horizontal installation i-life Slim DLIU i-life2 Slim DLMV With cabinet and feet, for vertical floor installation
10 COMFORT APPLICATION HYDRONIC TERMINALS With cabinet and radiating effect for vertical installation The key feature of the DLRV version is the micro fans positioned between the heat exchanger and the front panel. These micro fans are connected in parallel to the water valves and they start functioning when the water temperature rises above 35 C. Through a simple function selection on the control panel, the tangential fan stops and the micro fans start working releasing hot air through the frontal panel, thus ensuring natural radiant heat dispersion and convection with the lowest sound emissions. Heat dispersion and convention towards the environment Hot air transit Micro fans Air intake 10/11
11 10/11 Box module for wall installation Built-in DLIU unit Galvanized steel wall niche Closure panel manufactured in galvanized steel Different sizes available according to the different sizes of the fan coil units Quick and easy cleaning of the components Painted external frame to perfectly hide eventual imperfections in the wall i-life2 Slim Box has been specifically designed to fit the rational architecture of modern buildings. From the first stage of the building s construction, the unit can be positioned into the wall niches and render the execution of the system more rational, efficient and aesthetically harmonious. The fan coil, accurately embedded inside the wall module, will be practically invisible and hidden behind the wall. Simplified operations on the construction sites During the first stages of installation, the casing for built-in installation is placed in the wall niche and the electrical and water connections are prepared. The positioning of the fan coil is easy and can be carried out when site operations are concluded. Thanks to its reduced thickness, i-life2 Slim can blend easily into all types of walls and false ceilings, including thin ones.
12 COMFORT APPLICATION HYDRONIC TERMINALS Controllers The wide range of available wall-mounted and on-board controllers, allows for a user-friendly and complete regulation of all the functions. The advanced management system with PID logic modulates the fan speed maintaining a perfect temperature and humidity level, reducing the sound emissions and ensuring high efficiency. iks2 On-board control for units with cabinet complete with keypad with 8 touch keys, LCD display with white light symbols. Modulating fan speed with PID logic, Temperature regulation, Winter/Summer mode, Automatic mode for speed regulation, Night mode for a silent operation Minimum water temperature probe and solenoid valve management. ATS2 On-board controller for units with cabinet. Interface with 4 keys for the temperature selection. Winter/Summer mode, 4 speed regulation, Display for the visualization of the room temperature, Minimum water temperature probe and solenoid valve management. All i-life2 Slim units can be part of a network of units managed by the Idrorelax centalized system. In this case a IRS bridge will be included in each fan coil. On board or remote controls in multiple connection configuration Remote Control IKW2 Power Board IHBS2 Power Board IHBS2 Power Board IHBS2 Power Board ihbs2 Power Board ihbs2 It s possible to connect up to 31 units with 1 remote control IKSW2 12/13
13 12/13 iksw2+ihbs2 Remote controller for built-in and with cabinet units complete with keypad with 8 touch keys, LCD display with white light symbols. Modulating fan speed with PID logic, Temperature regulation, Winter/Summer mode, Automatic mode for speed regulation, Night mode for a silent operation, Minimum water temperature probe and solenoid valve management. A maximum of 31 fan coils can be connected to the iksw2 controller for open space rooms. ihbs2 control board Simple control board for built-in and with cabinet units to be coupled with remote controller iksw2. ihbs2 features an ON/OFF touch button and a LED for the visualization of the device s operation. All the parameters are set from the iksw2. ATW2+HBS2 Room thermostat for built-in and with cabinet units. Manual and automatic speed regulation, Room probe and minimum temperature probe Control of solenoid valves, Multifunctional digital contact Dip switch configuration. The ATW2 control must be coupled with the HBS2 power board. The HBS2 0-10V power board is available for the 0-10V signal. On board and remote controllers, multiple connections and idrorelax. Remote Control IKSW2 Power Board IHBS2 Remote Control IKSW2 Power Board IHBS2 Power Board IS2 Bridge IRS2 i-life SLIM w/o casing i-life SLIM w/o casing i-life SLIM w/o casing Control IKS2 Bridge IRS2 Control IKS2 Bridge IRS2 Power Board IHBS2 Remote Control IKSW2
14 COMFORT APPLICATION HYDRONIC TERMINALS FAN COIL UNIT WITH DC INVERTER MOTOR AND TANGENTIAL FAN i-life2 Slim units are managed by a DC motor with Inverter technology that continuously modulates the fan VERSIONS speed. The values at high, medium and low speed are Eurovent certified and are presented below. DLIU Built-in version for universal installation DLMV DLMO DLRV Version with cabinet for vertical installation Version with cabinet for horizontal installation Radiant Version with cabinet for vertical installation i-life2 SLIM / DLMO - DLMV ELECTRICAL DATA Power supply V/ph/Hz 230/1/50 230/1/50 230/1/50 230/1/50 230/1/50 2 PIPES SYSTEM CONFIGURATION ENERGY EFFICIENCY COOLING (EN14511 VALUE) FCEER (1)(6) kw/kw FCEER Class B A A A A HEATING ONLY (EN14511 VALUE) FCCOP (2)(6) kw/kw FCCOP Class B B A A A PERFORMANCE MIN SPEED Fan Power Input (1) W 0,70 1,62 1,82 2,47 4,91 Air flow rate (1) m³/h Total capacity in cooling mode (1) kw 0,40 0,81 1,32 1,62 2,00 Total Net Cooling Capacity (1)(6)(7) kw 0,40 0,81 1,32 1,62 2,00 Sensible capacity in cooling mode (1) kw 0,30 0,67 1,03 1,38 1,71 Net sensible cooling capacity (1)(6)(7) kw 0,30 0,67 1,03 1,38 1,70 Net latent power in cooling (1)(6)(7) kw 0,10 0,14 0,29 0,24 0,30 Max water flow (1) l/s 0,02 0,04 0,06 0,08 0,10 Pressure Drop in cooling mode (1) kpa Total capacity (heating mode) (2) kw 0,50 1,06 1,54 2,22 2,48 Total Net Heating Capacity (2)(6) kw 0,50 1,06 1,54 2,22 2,48 Water flow in heating mode (2) l/s 0,02 0,05 0,07 0,11 0,12 Pressure drop in heating mode (2) kpa Sound Pressure (3) db(a) Sound Power (4)(7) db(a) /15
15 i-life2 SLIM / DLMO - DLMV ELECTRICAL DATA Power supply V/ph/Hz 230/1/50 230/1/50 230/1/50 230/1/50 230/1/50 2 PIPES SYSTEM CONFIGURATION ENERGY EFFICIENCY COOLING (EN14511 VALUE) FCEER (1)(6) kw/kw 150 i-life2 SLIM / DLIU 080 FANCOIL PIPES TANGENT CONTROL FCEER Class B A A A A ELECTRICAL HEATING ONLY DATA (EN14511 VALUE) Power FCCOP supply (2)(6) V/ph/Hz kw/kw 230/1/ /1/ /1/ /1/ /1/ FCCOP PIPES Class SYSTEM CONFIGURATION B B A A A ENERGY PERFORMANCE EFFICIENCY COOLING MIN SPEED(EN14511 VALUE) FCEER Fan i-life2 Power SLIM Input / DLRV (1)(6) kw/kww 0, , , , , FCEER Air flow rate Class (1) B A A A A ELECTRICAL DATA m³/h HEATING Total capacity ONLY in (EN14511 cooling mode VALUE) (1) Power supply V/ph/Hz kw 230/1/50 0,40 230/1/50 0,81 230/1/50 1,32 230/1/50 1,62 230/1/50 2,00 FCCOP Total Net Cooling Capacity (1)(6)(7) (2)(6) kw/kw PIPES SYSTEM CONFIGURATION 0,40 0,81 1,32 1,62 2,00 FCCOP Sensible Class capacity in cooling mode (1) kw 0,30 B 0,67 B 1,03 A 1,38 A 1,71 A ENERGY EFFICIENCY PERFORMANCE Net sensible cooling capacity (1)(6)(7) kw 0,30 0,67 1,03 1,38 1,70 MIN Net COOLING latent SPEED power (EN14511 in cooling VALUE) (1)(6)(7) kw 0,10 0,14 0,29 0,24 0,30 Sound Fan Max FCEER i-life2 Power SLIM (4)(7) (1)(6) Power water flow Input (1) kw/kw db(a) l/s W 0,70 0, ,62 0, ,82 0, ,47 0, ,91 0, MED Air Pressure FCEER SPEED Class flow rate Drop in cooling mode (1) m³/h kpa B 51 2 A A A A Fan Total HEATING Power capacity ONLY Input (heating (EN14511 cooling mode) VALUE) (1) (2) kww 4,46 0,40 0,50 10,1 0,81 1,06 9,86 1,32 1,54 11,3 1,62 2,22 12,3 2,00 2,48 Air Total FCCOP flow Net rate Cooling Heating Capacity (1)(6)(7) (2)(6) kw/kw m³/h 0,40 0, ,81 1, ,32 1, ,62 2, ,00 2, Total Sensible Water FCCOP flow Class capacity in heating cooling mode mode (1) (2) kw l/s 0,69 0,30 0,02 B 1,39 0,67 0,05 B 2,18 1,03 0,07 A 2,52 1,38 0,11 A 2,82 1,71 0,12 A Total Net Pressure PERFORMANCE sensible Net drop Cooling cooling heating Capacity capacity mode (1)(6)(7) (2) kpa kw 0,69 0,30 3 1,38 0,67 2 2,17 1,03 8 2,51 1,38 9 2,81 1,70 10 Sensible Net Sound MIN latent SPEED Pressure capacity power in in cooling mode (1)(6)(7) (3) db(a) kw 0,54 0, ,17 0, ,72 0, ,24 0, ,40 0,30 31 Net Max Sound Fan sensible Power water Power flow Input cooling capacity (1)(6)(7) (4)(7) db(a) kw l/s W 0,54 0,02 0, ,62 1,16 0, ,71 0,06 1, ,47 2,23 0, ,39 0,10 4,91 40 Net Pressure MED Air flow latent SPEED rate Drop power in cooling mode (1)(6)(7) m³/h kpa kw 0, , , , , Max Fan Total Power water capacity flow Input (heating cooling mode) (2) (1) kw l/s W 0,03 0,50 4,46 0,40 0,81 0,07 1,06 10,1 0,10 1,54 9,86 1,32 1,62 0,12 2,22 11,3 0,14 2,48 12,3 2,00 Pressure Air Total flow Net rate Drop Heating Cooling cooling Capacity mode (1)(6)(7) (2)(6) m³/h kpa kw 0,50 0, ,81 1, ,54 1, ,62 2, ,48 2, Water Total Sensible flow capacity in (heating cooling mode mode) mode (2) (1) kw l/s 0,78 0,02 0,69 0,30 0,67 1,65 0,05 1,39 2,40 0,07 2,18 1,03 1,38 3,07 0,11 2,52 3,41 0,12 2,82 1,71 Pressure Total Net sensible Net drop Heating Cooling cooling heating Capacity capacity mode (1)(6)(7) (2)(6) kpa kw 0,78 0,69 0,30 3 0,67 1,66 1,38 2 2,41 2,17 1,03 8 1,38 3,08 2,51 9 3,43 2,81 1,70 10 Water Sound Sensible Net latent flow Pressure capacity power in heating cooling mode mode (1)(6)(7) (2) (3) db(a) kw l/s 0,04 0,54 0, ,14 0,08 1, ,12 1,72 0, ,24 0,15 2, ,16 2,40 0,30 31 Pressure Sound Net Max sensible water Power drop flow cooling heating capacity mode (1)(6)(7) (4)(7) (2) db(a) kpa kw l/s 0,54 0, ,04 1, ,71 0, ,08 2, ,39 0, Sound MED Net Pressure latent SPEED Pressure Drop power in cooling mode (1)(6)(7) (3) db(a) kpa kw 0, , , , , Sound Fan Max Total Power water capacity Power flow Input (heating mode) (4)(7) (1) (2) db(a) kw l/s W 4,46 0,03 0, ,06 10,1 0, ,86 0,10 1, ,22 11,3 0, ,3 0,14 2,48 MAX Air Pressure Total flow SPEED Net rate Drop Heating cooling Capacity mode (2)(6) (1) m³/h kpa kw 0, , , , , Fan Total Water Power capacity flow in Input (heating cooling mode mode) (1) (2) kw l/s W 10,7 0,69 0,78 0,02 0,05 19,0 1,39 1,65 20,0 2,18 2,40 0,07 0,11 29,0 2,52 3,07 33,0 2,82 3,41 0,12 Air Total Pressure flow Net rate drop Cooling Heating heating Capacity mode (1)(6)(7) (2)(6) m³/h kpa kw 0,69 0, ,38 1, ,17 2, ,51 3, ,81 3, Total Sensible Water Sound flow Pressure capacity in heating cooling mode mode (1) (2) (3) db(a) kw l/s 0,76 0,54 0, ,75 1,17 0, ,75 1,72 0, ,22 2,24 0, ,76 2,40 0,16 31 Total Net Pressure Sound sensible Net Power drop Cooling cooling heating Capacity capacity mode (1)(6)(7) (4)(7) (2) db(a) kpa kw 0,75 0, ,73 1, ,73 1, ,19 2, ,73 2, Sensible Net Sound MED latent SPEED Pressure capacity power in in cooling mode (1)(6)(7) (3) db(a) kw 0,66 0, ,53 0, ,21 0, ,02 0, ,30 0,42 39 Net Max Sound Fan sensible Power water Power flow Input cooling capacity (1)(6)(7) (4)(7) db(a) kw l/s W 0,65 0,03 4, ,1 1,51 0, ,19 0,10 9, ,3 2,99 0, ,27 0,14 12,3 48 Net Pressure MAX Air flow latent SPEED rate Drop power in cooling mode (1)(6)(7) m³/h kpa kw 0, , , , , Max Fan Total Power water capacity flow Input (heating cooling mode) (2) (1) kw l/s W 0,04 0,78 10,7 0,69 1,39 0,08 1,65 19,0 0,13 2,40 20,0 2,18 2,52 0,15 3,07 29,0 0,18 3,41 33,0 2,82 Pressure Air Total flow Net rate Drop Heating Cooling cooling Capacity mode (1)(6)(7) (2)(6) m³/h kpa kw 0,78 0, ,38 1, ,41 2, ,51 3, ,43 2, Water Total Sensible flow capacity in (heating cooling mode mode) mode (2) (1) kw l/s 0,88 0,04 0,76 0,54 1,17 2,11 0,08 1,75 3,27 0,12 2,75 1,72 2,24 3,88 0,15 3,22 4,33 0,16 3,76 2,40 Pressure Total Net sensible Net drop Heating Cooling cooling heating Capacity capacity mode (1)(6)(7) (2)(6) kpa kw 0,89 0,75 0,54 6 1,16 2,13 1,73 5 3,29 2,73 1, ,23 3,91 3, ,36 3,73 2,39 20 Water Sound Sensible Net latent flow Pressure capacity power in heating cooling mode mode (1)(6)(7) (2) (3) db(a) kw l/s 0,04 0,66 0, ,22 0,10 1, ,16 2,21 0, ,28 0,19 3, ,21 3,30 0,42 39 Pressure Sound Net Max sensible water Power drop flow cooling heating capacity mode (1)(6)(7) (4)(7) (2) db(a) kpa kw l/s 0,65 0, ,07 1, ,19 0, ,12 2, ,27 0, Sound MAX Net Pressure latent SPEED Pressure Drop power in cooling mode (1)(6)(7) (3) db(a) kpa kw 0, , , , , Sound Fan Max Total Power water capacity Power flow Input (heating mode) (4)(7) (1) (2) db(a) kw l/s W 10,7 0,04 0, ,65 19,0 0, ,0 0,13 2, ,07 29,0 0, ,0 0,18 3,41 56 Air Pressure Total flow Net rate Drop Heating cooling Capacity mode (2)(6) (1) m³/h kpa kw 0, , , , , Total Water capacity flow in (heating cooling mode mode) (1) (2) kw l/s 0,76 0,88 0,04 0,08 1,75 2,11 2,75 3,27 0,12 0,15 3,22 3,88 3,76 4,33 0,16 Total Pressure Net drop Cooling Heating heating Capacity mode (1)(6)(7) (2)(6) kpa kw 0,75 0,89 6 1,73 2,13 5 2,73 3, ,19 3, ,73 4,36 20 Sensible Water Sound flow Pressure capacity in heating cooling mode mode (1) (2) (3) db(a) kw l/s 0,66 0, ,53 0, ,21 0, ,02 0, ,30 0,21 39 Net Pressure Sound sensible Power drop cooling heating capacity mode (1)(6)(7) (4)(7) (2) db(a) kpa kw 0, , , , , Net Sound MAX latent SPEED Pressure power in cooling (1)(6)(7) (3) db(a) kw 0, , , , ,46 47 Max Sound Fan i-life2 Power water Power SLIM flow Input / DLMO - DLMV (4)(7) (1) db(a) l/s W 0,04 10, ,0 0, ,13 20, ,0 0, ,18 33, Pressure SIZE Air flow AND rate Drop WEIGHT in cooling mode (1) m³/h kpa A Total capacity (heating cooling mode) (2) (5) (1) mm kw 0,88 0, ,75 2, ,27 2, ,22 3, ,33 3,76 B Total Net Heating Cooling Capacity (1)(6)(7) (2)(6) (5) mm kw 0,89 0, ,73 2, ,29 2, ,19 3, ,36 3, Water H Sensible flow capacity in heating cooling mode mode (2) (5) (1) mm kw l/s 0,04 0, ,53 0, ,16 2, ,02 0, ,21 3, Pressure Operating Net sensible drop weight cooling heating capacity mode (1)(6)(7) (2) (5) kpa kw kg 0, , , , , Notes: Sound Net latent Pressure power in cooling (1)(6)(7) (3) db(a) kw 0, , , , , Sound Max i-life2 Room water temperature Power SLIM flow / 27 DLMO C d.b./19 - DLIU C w.b.; Chilled water (4)(7) (in/out) (1) 7/12 db(a) C. l/s 0, , , , , SIZE Pressure Room AND temperature Drop WEIGHT in cooling 20 C d.b.; mode Hot water (in/out) 45/40 C (1) kpa Sound pressure level free field on a reflective surface, A Total capacity (heating mode) (5) (2) 1 m from fan front and 1 m from the ground. Non -binding value obtained fron sound power level. mm kw 0, , , , ,33 4 Sound power on the basis of measurements made in compliance with ISO 3741 and Eurovent 8/2. B Total Net Heating Capacity (2)(6) (5) 5 Unit in standard configuration/execution, without optional accessories. mm kw 0, , , , , H Water flow in heating mode Values in compliance with EN :2013. (5) (2) mm l/s 0, , , , , Operating Pressure Values compliance drop weight in heating with [REGULATION mode (UE) N.2016/2281] (5) (2) kpa kg Sound Notes: Certified Pressure data in EUROVENT (3) db(a) Sound i-life2 Room temperature Power SLIM / 27 DLMO C d.b./19 - DLRV (4)(7) C w.b.; Chilled water (in/out) 7/12 db(a) C SIZE Room AND temperature WEIGHT 20 C d.b.; Hot water (in/out) 45/40 C 3 A Sound pressure level in free field on a reflective surface, (5) 1 m from fan mmfront and m from the ground. 937 Non -binding value 1137 obtained fron sound 1337 power level B Sound power on the basis of measurements made in compliance (5) with mmiso 3741 and 131Eurovent 8/ H Unit in standard configuration/execution, without optional (5) accessories. mm Values in compliance with EN :2013. Operating weight (5) kg Values in compliance with [REGULATION (UE) N.2016/2281] Notes: Certified data in EUROVENT 1 Room temperature 27 C d.b./19 C w.b.; Chilled water (in/out) 7/12 C. 2 Room temperature 20 C d.b.; Hot water (in/out) 45/40 C 3 Sound pressure level in free field on a reflective surface, 1 m from fan front and 1 m from the ground. Non -binding value obtained fron sound power level.= 4 Sound power on the basis of measurements made in compliance with ISO 3741 and Eurovent 8/2.= 5 Unit in standard configuration/execution, without optional accessories. 6 Values in compliance with EN : Values in compliance with [REGULATION (UE) N.2016/2281] Certified data in EUROVENT 14/15 Notes: 1 Room temperature 27 C d.b./19 C w.b.; Chilled water (in/out) 7/12 C. 2 2 Room temperature 20 C d.b.; Hot water (in/out) 45/40 C 3 Sound pressure level in free field on a reflective surface, 1 m from fan front and 1 m from the ground. Non -binding value obtained fron sound power level.= 4 Sound power on the basis of measurements made in compliance with ISO 3741 and Eurovent 8/2.= 5 Unit in standard configuration/execution, without optional accessories. 6 Values in compliance with EN : Values in compliance with [REGULATION (UE) N.2016/2281] Certified data in EUROVENT 3
16 Head Office: Via Caduti di Cefalonia Bassano del Grappa (VI) - Italy Tel (+39) Fax (+39) CV_i-LIFE2 Slim_ENG_
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