NEW. MB control board. communication protocol. for Modbus. Air Conditioning Carisma CRSO High Pressure Fan Coil Units
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- Winifred Sharp
- 5 years ago
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1 NEW MB control board for Modbus communication protocol Compliant with ERP 0 Regulation (EU) No. 7/0 Quality management systems ISO 900 Cert. n 0/ Air Conditioning High Pressure Fan Coil Units
2 INTRODUCTION In line with innovative trends and modern industrial design, the fan coil range meets today s demanding requirements of performance, size, acoustics, low energy, ease of installation and maintenance. The fan coil unit has been designed around a platform of models, versions and accessories, all of which have been independently tested and certified by Eurovent. All fan coils with centrifugal fans are equipped with electric motors which reduce electrical consumption comparative to previous models, with speed motors as standard offering greater flexibility in the selection of products. New market trends have also led to an extension of the four pipe model which now has a two row LTHW battery giving improved outputs at lower flow and return temperatures. A full range of control options is available including the Free patented wireless control offering greater flexibility in the installation of units, with the highest precision in monitoring and maintaining the desired comfort conditions. The model is complemented with a full range of accessories: various types of adjustment valves, additional electric heater, auxiliary condensate pump, air inlet/outlet diffusers for fitted installations. CONTENTS Presentation Construction features Dimension, Weight, Water content EUROVENT Certification Main performance and technical characteristics Cooling emission tables Heating emission tables Correction factors table Operation limits Water pressure drop Accessories Wall electronic controls FreeSabiana wireless control system Controls and units MB Management system for a network of fan coils PSM-DI and Sabianet electronic boards Sabiana take part to the Eurovent program of fan coil performance certification. The official figures are published in the web site and in the web site The tested performances are: Cooling total emission at the following conditions: - Water temperature +7 C E.W.T. + C L.W.T. - Entering air temperature +7 C dry bulb +9 C wet bulb Heating emission ( pipe units) at the following conditions: - Entering water temperature +0 C - Entering air temperature +0 C Cooling sensible emission at the following conditions: - Water temperature +7 C E.W.T. + C L.W.T. - Entering air temperature +7 C dry bulb +9 C wet bulb Heating emission ( pipe units) at the following conditions: - Water temperature +70 C E.W.T. +60 C L.W.T. - Entering air temperature +0 C Available pressure Fan absorption Water pressure drop Sound power
3 Presentation version with centrifugal fan Range includes air flow rates (from 7 to 0 m /h), each equipped with or row coil and with the possibility to add a or row coil for pipe systems. It is the most comprehensive range, perfect to meet all air-conditioning requirements of work environments like offices, shops, restaurants and hotel rooms featuring ducted installations with available pressure up to 80 Pa. Compliant with ERP 0 Regulation (EU) No. 7/0 Construction features Casing Made from mm galvanized steel insulated with polyolefin (PO) foam (class M). Filter Polypropylene cellular fabric regenerating filter. The filter frame of galvanized steel is inserted into special plastic sliding guides fastened to the internal structure for easy insertion and removal of the filter. Fan assembly The fans have aluminium or plastic blades directly keyed on the motor with double aspiration and they are dynamically and statically balanced during manufacture in order to have an extremely quiet operation. Electric motor The motor is wired for single phase and has five speeds with capacitor. The motor is fitted on sealed for life bearings and is secured on anti-vibration and self-lubricating mountings. Internal thermal protection with automatic reset, protection IP 0, class B. Coil It is manufactured from drawn copper tube and the aluminium fins are mechanically bonded onto the tube by an expansion process. The coil has two / inch BSP internal connections and /8 inch BSP air vent and drain. The coil is not suitable for use in corrosive atmosphere or in environments where aluminium may be subject to corrosion. The connections are on the left hand side looking from the air outlet of the unit (see picture). On request or on site the connections can be moved to the other side. Condensate collection tray Made from plastic (ABS UL9 HB) with an L -shaped plastic fitted on the inner casing; the tray is insulated with polyolefin (PO) foam (class M). The outside diameter of the condensate discharge pipe is mm. Accessories and Controls See pages 8 -.
4 version Dimensions, Weight, Water content Coil connections on the left Vertical Installation D G 0 F Ø ext. 7 9* D 7 O WATER OUTLET S WATER OUTLET 7 N U R 7 9* H G D H E* * Supply frame dimension = E x 9 mm Auxiliary condensate tray (optional) Horizontal Installation E* 0 Ø ext. 0 F 0 * Supply frame dimension = E x 9 mm COIL CONNECTIONS U or row coils Heating additional coil ( or rows) G H M 0 Ø ext. Ø /" F WATER INLET G H P 0 Ø ext. Ø /" F WATER INLET
5 version 600 X Y,, 0,9,9,8 0,6,,6, 0,,0 0,9, 0, 0,6 Rows Rows 6, 7,6 8, 7, 8,9 9, 0,,0 0,, 7,7 0,0 9,,8 0,,,,9,7,,6, 7, 7, 9, 0, 8,8 0,6,,0,9,8 6, 7, 8, 9, 8, 9, Model Weight without packaging Weight with packaging Model D E F G H M N O P R S U X Y Model PACKAGING Dimension, Weight, Water content Dimension (mm) Weight (kg) Water content (litres)
6 version EUROVENT Certification pipe units. ˆ ˆ COOLING ˆ Œ Ž ŒŽ Œ Ž Œ Ž HEATING ˆ Œ Ž ˆ ŒŽ ˆ (E) (E) Model (E) ˆ (E) ˆ (E) ˆ (E) Š ˆ (E) Š ˆ (E) (E) (E) Œ (E) ( * ) Œ ( * ) ƒ (E) (E) (E) Model (E) ˆ (E) ˆ (E) ˆ (E) Š ˆ (E) Š ˆ (E) (E) (E) Œ (E) ( * ) Œ ( * ) ƒ (E) ƒ ƒ ƒ ƒ ƒ ƒ pipe units. ˆ ˆ COOLING ˆ Œ Ž ŒŽ Œ Ž Œ Ž HEATING ˆ Œ Ž Water temperature + 70 C E.W.T C L.W.T. (E) (E) Model (E) ˆ (E) ˆ (E) ˆ (E) Š ˆ (E) Š ˆ (E) (E) (E) Œ (E) ( * ) Œ ( * ) ƒ (E) ƒ ƒ ƒ (E) ( * )
7 version Main performance and technical characteristics pipe units. The following standard rating conditions are used: COOLING Entering air temperature + 7 C d.b. + 9 C w.b. Water temperature + 7 C E.W.T. + C L.W.T. AVAILABLE PRESSURE: 0 Pa HEATING Entering air temperature + 0 C Entering water temperature + 0 C Water flow rate as for the cooling conditions Model Speed Air flow Cooling total emission Cooling sensible emission Heating Dp Cooling Dp Heating Fan Sound power Lw Sound pressure ( * ) m /h W db(a) db(a) 7,,6,6 6,6 8, ,6,76,9 8, 0, ,9,96,7,8, 0,8,8,89,7, ,0,,8 8,7 7, ,7,86 6, 6, 8, ,,9 6,89 9,, ,8, 7,6,6, 0 80,,7,0,9 7, ,0,0 8,76 7,7 6, ,6,0 0,8,66 0 6,8,9 8,78 0,,0,9 8,7 8,7, 9 0,9, ,8, 7,9, 6, ,68,7,0,8, ,,9 9,90 9,6, ,69,88,78, 7, ,9 7,0, 8,, ,8 7,88 7,,0, ,9 8,6 8,9, 6, Model Speed Air flow Cooling total emission Cooling sensible emission Heating Dp Cooling Dp Heating Fan Sound power Lw Sound pressure ( * ) m /h W db(a) db(a) 0,68,96,,7 6, ,96,9,86, 7,7 0,7,6,8 6,8 9, ,0,8,98 0,, 7 8 9,0,66,9 9,0, ,7,0 6,8 9,, ,7,7 7,7,0 9, ,6,8 8,9,,0 0 80,8,77 6,06,, ,8, 9,97, 0, ,6, 0 6,,9 0 7,06,7 9,,08,,0 7, 6, 9, ,, ,7,7 7,6 9,, ,0,78,,, ,8,9 0,0,9 7, ,6 6,,7 9,, 9 6 0,07 7,6 6, 6,0 6, 8 60,6 8,9 8,6, 0, 7 6,0 9, 0,0,9, pipe units. The following standard rating conditions are used: COOLING Entering air temperature + 7 C d.b. + 9 C w.b. Water temperature + 7 C E.W.T. + C L.W.T. AVAILABLE PRESSURE: 0 Pa HEATING Entering air temperature + 0 C Water temperature + 70 C E.W.T C L.W.T. Model Speed Air flow Cooling total emission Cooling sensible emission Heating Dp Cooling Dp Heating Fan Sound power Lw Sound pressure ( * ) m /h W db(a) db(a) 7,,6, 6,6 9, ,6,76,9 8, 0, ,9,96,6,8,0 0,8,8,8,7, ,0,,0 8,7, ,7,86,8 6,, ,,9,9 9, 6, ,8,,,6 7,7 0 80,,7,8,9, ,0,0,76 7,7 9, ,6,0,79,9 8,0 0,8,66,0 8,7 0, ,8,9,89,9, ,8,,08, 6, ,68,7 6,6,8, ,69,88 7,0, 0, ,9 7,0 8, 8, 7, ,8 7,88 8,9,0, ,,9,76 9,6, ,9 8,6 9,6, 6, ( * ) = The sound pressure levels are 9 db(a) lower than the sound power levels and apply to the reverberant field of a 00 m room and a reverberation time of 0. sec.. 7
8 version Cooling emission of row coil Entering air temperature: 7 C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,,0,78,,8,,8,,0,68 7, 6,9 6,,9,7, 0,6 9,66 8, 6,69,,6,9,7,6,96,7,,8,,,06,7,96,8 8,0 7,7 6,9,8, ,8 9,,9,0 8,8,8 6,0, 8,8,9 7,,,6 7,,8 8,8,, 6,,0,9,7,,9,,8,,98,6, 6, 6,7,66,99, 0, 9, 8,6 7, 6,0,9,0,8,6,,78,0,99,68,0,,8,6,76,0 8,0 7,6 6,6,0, ,9, 0, 7,,,9, 8,,,0, 0, 7,,0 0,, 0,6 7,, 9,0,6,,9,76,6,77,6,08,80,,0,80,8,8,6 7,9 7,8 6,68,7,6,0,86,67,9,8,8,0,7,,6,7,6,98,0,78 7, 6,76,98,96, ,8,0,7 0,7 9,6 6,,, 9,6 8,,0,9,0 8,7 6,,8,9 0,8 8,,,70,9,,0,,8,,9,07,88,79,6,8,86,0 6,00,,99,,8,70,9,,0,,8,,9,07,88,79,6,8,86,0 6,00,,99,, ,0 8,8 7, 6,, 9,8 7,8 6,6,,6 8, 7,7 6,,,7 8,8 7,6 6,,7, Cooling emission of row coil Entering air temperature: 6 C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,90,7,9,7,,8,,96,6,9 6, 6,,6,97, 0,7 9,6 8,60 7,0,98,0,0,8,6,,78,0,99,68,,,8,6,76, 8,0 7,7 6,7,, ,8,0 0, 7,,,8, 8,,,0, 0, 7,,9 0,, 0, 7,, 9,0,7,,0,0,89,8,8,,9,9,69,,98,9,7 9,0 8,8 7,6 6,,7,0,9,7,7,6,6,,8,,8,90,6,6,7,9 7,70 7,0 6,6,, , 9, 6,,8, 0,7 6,9,, 0, 7,7 6,,9, 8, 8,7 6,,8 0, 7,,97,8,67,,,9,9,67,,0,8,8,8,,8 6,9 6,,80,96,97,9,78,8,,,9,88,8,0,0,8,8,80,,6 6,9 6,,69,7, ,,7 9,8 8, 7,,8 0, 8,8 7, 6,,0 0, 8, 6,7,9,6 0, 8, 6,,,6,6,,,0,,6,96,77,60,7,,8,,0,7,76,7,6,86,6,6,,,0,,6,96,77,60,7,,8,,0,7,76,7,6, ,6 6,7,6,6, 7,,9,0,, 6,,9,9,8,7 6,7,8,8,, Correction factors for different R.H. Legend R.H. 8% 6% WT: Pc Ps Pc Ps 7/ C 0,9 0,90 8/ C 0,9 0,88 0/ C /7 C WT = Water temperature Pc = Cooling total emission Ps = Cooling sensible emission = Water flow = Water pressure drop Speed = Fan speed = High speed = Medium speed = Low speed Qv = Air flow 8
9 version Cooling emission of row coil Entering air temperature: C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,6,,9,00,88,7,8,9,8,90,68,,96,8,7 9,00 8,6 7,8 6,,,0,9,7,7,6,6,,8,,8,90,6,6,8,9 7,70 7,0 6,6,, , 9, 6,,7, 0,7 6,9,, 0, 7,7 6,,9, 8, 8,7 6,,8 0, 7,,6,,9,76,6,76,,07,79,,0,78,7,8, 7,9 7,6 6,67,7,60,0,86,66,9,8,7,00,7,,6,69,,97,0,78 7,8 6,7,96,9, ,9,,8 0,8 9,6 6,,, 9,6 8,,,0,0 8,8 6,,9,0 0,9 8,,6,7,60,,,,86,,,09,89,8,6,0,88, 6,0,7,0,7,0,7,60,,,,86,,,09,89,8,6,0,88, 6,0,7,0,7, , 9,0 7, 6,,6 0,0 8,0 6,8,7,7 8, 7,8 6,6,,8 9,0 7,8 6,,8,,,6,0 0,9 0,87,,88,67,0,,7,96,9,6,7,88,7,78,0,0,,6,0 0,9 0,87,,88,67,0,,7,96,9,6,7,88,7,78,0, ,7,0,,,0 6,,6,7,, 6,,,,0,0 6,,0,8,6,7 Correction factors for different R.H. Legend R.H. 8% 6% WT: Pc Ps Pc Ps 7/ C 0,9 0,90 8/ C 0,9 0,88 0/ C /7 C WT = Water temperature Pc = Cooling total emission Ps = Cooling sensible emission = Water flow = Water pressure drop Speed = Fan speed = High speed = Medium speed = Low speed Qv = Air flow 9
10 version Cooling emission of row coil Entering air temperature: 7 C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,78,,9,88,69 6,7,,06,7, 8,00 7,6 6,96 6,09,0,06,08 0,89 9, 7,,6,,8,9,8,9,8,,09,77,69,0,86,9, 9,7 8,9 7,6 6,, ,9 9, 6,,,8 8, 6,7 9,7,0 7,,, 9,0,9 0,8, 6,0 9,9,,6,9,7,87,60,,6,00,7,,7 7, 6,8 6,,6,8,67 0,80 9,7 8,0 6,60,9,0,0,8,70,,60,,9,60,0,,9,9, 8,80 8,0 7,,9, ,8,8,,0 9,8 8,0 8,7,9 7,,8 9,8 8,,, 8,9,7 9,, 8,,,6,,0,99,86,7,86,,8,88,,6,78,9,0 9,0 8, 7,9 6,7,0,,0,8,6,0,7,,90,8,0,9,6,,,88 7,97 7, 6,0,8, ,0 9,7 8, 6,8 6,0 0,0,0 0, 7,0,,, 9, 7,, 0,9 8,,0, 7,,9,79,6,,,,8,9,,0,,9,,07,6 6,70 6,7,,66,67,9,79,6,,,,8,9,0,0,,9,,07,6 6,70 6,7,,66, ,,6,6,8, 7,,8,6 9,6 8,0 7, 6,6,,,, 0, 8,6 6,, Cooling emission of row coil Entering air temperature: 6 C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,7,,8,8,,6,98,,0,7 7, 6,80 6,9,,6,6 0,7 9,70 8,6 6,6,9,0,06,8,7,,6,6,9,6,,,60,96, 8,8 8,0 7,,96, ,8,7,,0 9,7 7,9 8,,7 7,,6 9,8 8,,, 8,9, 9,, 8,,0,98,78,,8,,97,0,0,6,9 6,9 6,00,6,79,0 0,7 9,0 8,7 7,9,79,6,8,9,7,6,9,,08,7,,,88,7,7,06 8,8 7,6 6,76,6, ,, 0, 8,7 7,7 8, 0,7 6,,8 8,,7,, 9,6 7,0 6,8, 9,, 9,,,0,90,7,60,79,,0,7,8,79,6,,6,0 7,8 7, 6,8,8,,,9,7,,,7,07,7,,7,70,,9,,7 7,8 6,88 6,06,98, , 7, 6,,,6, 8,,7,0 0,8 9, 8,8 7,,7, 6,,0,6 8,6,6,6,,6,,,78,,0,97,77,,,0,6,6,7,6,70,9,09,6,,6,,,78,,0,97,77,,,0,6,6,7,6,70,9, ,7,,,8,, 0, 8,7 7,,9,,0,,, 9, 7,9 6,,7,0 Correction factors for different R.H. Legend R.H. 8% 6% WT: Pc Ps Pc Ps 7/ C 0,9 0,90 8/ C 0,9 0,88 0/ C /7 C WT = Water temperature Pc = Cooling total emission Ps = Cooling sensible emission = Water flow = Water pressure drop Speed = Fan speed = High speed = Medium speed = Low speed Qv = Air flow 0
11 version Cooling emission of row coil Entering air temperature: C R. H.: 0% Available pressure: 0 Pa WT: 7/ C WT: 8/ C WT: 0/ C WT: /7 C Mod. Speed Qv m /h ,97,77,,7,,96,9,0,6,8 6,7,98,,77,00 0, 9,7 8, 7,6,77,6,8,9,7,6,9,,08,7,,6,88,7,7,07 8,7 7,6 6,77,6, ,, 0, 8,7 7,7 8, 0,7 6,,8 8,,7,, 9,6 7,0 6,7, 9,, 9,,60,,9,98,8,6,8,,7,87,0,,77,7,9 8,99 8,0 7,8 6,,0,,06,8,6,,7,,9,9,,9,6,,,89 7,96 7, 6,0,9, , 9,8 8, 6,8 6,0 0,, 0, 7,,,, 9,6 7,,,0 8,,, 7,,9,80,6,6,6,7,87,6,,,,9,7,0,8 6,7 6,,7,70,70,9,80,6,,,7,87,60,0,0,,9,7,0,6 6,7 6,,7,69, ,,7,7,9, 7,9,,9 9,9 8, 7, 6,7,6,,, 0,7 8,8 6,,,8,8,,0 0,9,,0,8,6,8,,9,8,0,8,07,,9,0,6,8,8,,0 0,9,,0,8,6,8,,9,8,0,8,07,,9,0, ,,0,,0,8 9,8 7,6 6,,,,,9,,,6 7, 6,0,7,, Correction factors for different R.H. Legend R.H. 8% 6% WT: Pc Ps Pc Ps 7/ C 0,9 0,90 8/ C 0,9 0,88 0/ C /7 C WT = Water temperature Pc = Cooling total emission Ps = Cooling sensible emission = Water flow = Water pressure drop Speed = Fan speed = High speed = Medium speed = Low speed Qv = Air flow
12 version ,89 6,7,69,09,7, 9,9 8,99 8,0 7,6,7,90,6,7 9,6,70,6 0,09 6,69, ,,9 9,,9,9 6, 0,6 7,,9,,,8 7,9,6 9,,9, 7,, 7,7,8,89,7,9,6 8,76 7,6 6,89 6,,0,0,0 0, 8,78 7,9 8,9 7,,,78 9, ,6,, 0, 8,9 6,9,,0 8,9 7,,,9, 8,7 6, 6,0,6,0 7,9,0,8,,7,,08 7, 6,6,8,,66 0,7 9,6 8,66 7, 6,09 6,0,6,0 0,8 8, ,,6 9, 7,8 6,8,8 9,9 8, 6,8,,6 0, 8,7 6,6,6,0 0, 8, 6,0,8,68,0,0,7, 6,08,9,79,8,8 8, 7,89 7,09 6,0,00,09,99 0,68 8,89 6, , 8, 6,8,,9 9, 7,,9,8,9 8, 7, 6,,7, 8, 7,,9,,7,,90,9,,89 7,00 6,0,0,9,9 9,6 9, 8,9 7,0,7,,8,9 0, 7, ,0 6, 9,9,, 0,, 6,, 7, 6,8, 7, 0,8, 8,, 6, 8,9,8,,6,8,,,67,9,6,98,6 7,80 7,9 6,6,69, ,, 0,9 7,0,9 8,,0 8,,9,,6, 9,, 0, 7,7 7, 6,,60,7,97,6 0,0 8,86 7,86 7, 6,0,,8 9,9 6,66,, 7,67, ,,8,9 9,6 8, 6,7,7 9,, 9,0 0,8 8,8,, 7,8 7,,,0 7,7 0,9,9,8,86,,98 9,97 8,9 7,7 6,8 6,06,,,08 9, 7,6 0,0 8,6 6,,7 0, , 9, 7,7 6,, 0,,0 9,0,,,,0 9,8 7,,0,7 0, 6,, 7,0,06,6,,6,8 8,8 7,0 6,,80,6, 0, 9,8 7,99 6,9 7,9,76,9, 8, , 7,,8,7,,9 7,,,6 9, 0,0 9, 7,,,8 7,9,, 8,6,,,8,9,0,78 6,96 6,0,9,78, 9, 8,60 7,68 6,,,6,90, 9, 7, ,0,,,,9 6,,6 0, 8, 6,7 7, 6,,,9,7,7 0,8 8,6 6,,8,7,7,87,,7 7,9 6,8 6,,,8 0,0 9,9 8,8 7, 6,09 6,0,8, 0,8 8, ,,7 8,,7,7 7,6,6,9 6,0 9,0,9 8,8, 7,,9 6,7 7,9 8, 7, 6,7,86,,,79,7 6,,,98,,9 8,0 8,0 7,7 6,09,9,,0 0,6 8,79 6, ,,9,7 0, 8,9 0, 8,,, 0,, 0, 6,, 8, 9,6, 6,7 9,0,7 Qv Qv m /h m /h Speed Speed WT: 70/60 C WT: 70/60 C WT: 60/0 C WT: 60/0 C WT: / C WT: / C WT: 0/0 C WT: 0/0 C WT: 0/ C WT: 0/ C WT: /0 C WT: /0 C Heating emission of row coil Heating emission of row coil Entering air temperature: 0 C Available pressure: 0 Pa Entering air temperature: 0 C Available pressure: 0 Pa = High speed = Medium speed = Low speed Legend WT = Water temperature = Emission = Water flow = Water pressure drop Qv = Air flow Speed = Fan speed Mod. Mod.
13 version Mod. Speed Qv m /h ,77,,,96,79,96,,90,8,09 7,68 7, 6,7,9,08,9, 0,07 8,7 7, ,6 0, 7,,6,,7, 9,6 8, 7,0 8, 6,8,, 8,7,0,8 8, 9,6 0,6 Heating emission of row additional coil Entering air temperature: 0 C Available pressure: 0 Pa WT: 80/70 C WT: 7/6 C WT: 70/60 C WT: 6/ C WT: 60/0 C WT: / C,0,0,9,68,,7,79,,0,68 6,9 6,6 6,06,7,9 0,78 0,0 9, 7,88 6, , 7,,,,, 9, 8, 6,9,8,,, 9,7 7,,0 8,6,,0 7,,0,8,6,9,,76,,9,8,8 6,6,89,0,79,08 9,6 8,9 8, 7,0, ,8,,0 0, 9, 9, 7,7 6,7,7,8,7,7 0,0 8,0 6,0 6,6,0 7,0 0,8,,67,,9,0,98,7,7,,,87,0,8,7,9,9 8,7 7,88 7,6 6,, ,8, 9,7 8, 7, 7, 6,,,,9 0, 9, 8,0 6,,9 9,,9,8 6,8,7,0,6,98,8,7,7,9,9,69,7,6,,08,6,09 7, 6,8 6,9,6, ,9 8,9 7,6 6,,8,8,7,,,0 7,9 7, 6,,0,8,0 0, 7,0, 9,,9,8,66,,,97,66,6,,06,89,7,,0,9 6,7,7,,, , 6,6,6,8,,,,0,6,,8,,6,7,8 7,,,7 9,8 6,9 Mod. Speed Qv m /h ,9,9,88,,9 7,60 6,7 6,,6,0 0,6 9,79 8,9 7,79 6, ,0,,,7, 0, 6,,8, 9,6 6,,,9 8, 0, Heating emission of row additional coil Entering air temperature: 0 C Available pressure: 0 Pa WT: 6/ C WT: 60/0 C WT: / C WT: 0/0 C WT: /0 C WT: / C,96,70,,0,8 6,8,8,,8, 8,90 8,9 7,7 6,76, ,7,,,9,6,8,7 0,8 9,0 7, 6,, 8,, 6,,,,8,,9,,9,0,06,68 7, 7,9 6,,7, ,,,6,,9,9 9, 8, 6,8,7 7,,, 6,7,,69,,9,07,9,,0,67,,00 6,6,87,,68, ,,,8,, 8, 6,7,7,8,0 9, 7,9,,8 8,6,7,,7,97,8,7,78,,,8,77,0,00,8, ,9 7,0,8,9, 6,, 8,,,6 60,8,8 7,0 7,0 6,9,06,9,7,9,9,9,0,8,7,,77,6,,6, ,,,,0 0,9,,,7,,6,, 9,7 7,7,6 Legend WT = Water temperature = Emission = Water flow = Water pressure drop Qv = Air flow Speed = Fan speed = High speed = Medium speed = Low speed
14 version Air flow (m /h) depending on speed and requested available pressure Mod. Speed Available pressure (Pa) Power absorption (Watt) depending on air flow and available pressure Mod. Speed Available pressure (Pa)
15 version 0,97 0,97 0,96 0,96 0,9 0,98 0,97 0,96 0,96 0,96 0,98 0,98 0,98 0,97 0,96 0,98 0,98 0,98 0,99 0,99 0,9 0,9 0,9 0,9 0,89 0,9 0,9 0,9 0,9 0,9 0,97 0,96 0,96 0,9 0,9 0,9 0,96 0,96 0,98 0,99 0,9 0,89 0,87 0,8 0,8 0,9 0,9 0,89 0,87 0,88 0,9 0,9 0,9 0,9 0,89 0,9 0,9 0,9 0,96 0,98 0,86 0,8 0,8 0,78 0,7 0,89 0,87 0,8 0,8 0,8 0,9 0,9 0,9 0,89 0,8 0,90 0,9 0,9 0,9 0,96 0,8 0,78 0,7 0,70 0,6 0,8 0,8 0,8 0,78 0,77 0,88 0,87 0,87 0,8 0,80 0,87 0,88 0,89 0,9 0,9 0,7 0,7 0,66 0,6 0, 0,8 0,79 0,76 0,7 0,70 0,8 0,8 0,8 0,80 0,76 0,8 0,8 0,86 0,89 0,9 0,66 0,6 0,7 0,0 0,76 0,7 0,7 0,66 0,6 0,80 0,78 0,77 0,7 0,69 0,80 0,80 0,8 0,8 0,90 0,6 0, 0, 0,70 0,67 0,6 0,7 0,7 0,7 0,68 0,6 0,76 0,76 0,78 0,80 0,8 0,96 0,96 0,9 0,9 0,9 0,97 0,96 0,9 0,9 0,9 0,98 0,98 0,98 0,97 0,9 0,97 0,97 0,98 0,98 0,99 0,9 0,9 0,90 0,88 0,86 0,9 0,9 0,9 0,89 0,89 0,9 0,9 0,9 0,9 0,90 0,9 0,9 0,9 0,97 0,98 0,88 0,86 0,8 0,8 0,77 0,90 0,88 0,86 0,8 0,8 0,9 0,9 0,9 0,89 0,86 0,9 0,9 0,9 0,9 0,97 0,8 0,80 0,77 0,7 0,68 0,86 0,8 0,8 0,78 0,78 0,89 0,88 0,88 0,8 0,80 0,87 0,88 0,89 0,9 0,9 0,76 0,7 0,69 0,6 0,7 0,8 0,79 0,77 0,7 0,7 0,8 0,8 0,8 0,80 0,7 0,8 0,8 0,86 0,89 0,9 0,68 0,6 0,60 0, 0,7 0,77 0,7 0,7 0,66 0,6 0,80 0,79 0,78 0,7 0,70 0,79 0,80 0,8 0,8 0,9 0,60 0, 0,0 0, 0,7 0,68 0,6 0,9 0,7 0,7 0,7 0,7 0,69 0,6 0,7 0,7 0,78 0,80 0,87 0,9 0, 0,8 0,6 0,6 0,7 0,69 0,68 0,66 0,6 0,6 0,70 0,70 0,7 0,7 0, Speed Speed Available pressure (Pa) Available pressure (Pa) Mod. Mod. Correction factors for Total cooling emission Correction factors for Sensible cooling emission and Heating emission
16 version Operation limits Highest water inlet temperature C Lowest water inlet temperature... + C for entering water temperatures below + C, contact SABIANA technical department Highest working pressure (0 bars) Water flow limits for row coil () Model Lowest Highest Water flow limits for row coil () Model Lowest Highest Water flow limits for row additional coil () Model Lowest Highest Water flow limits for row additional coil () Model Lowest Highest Motor electrical data (max. absorption) Model 0/ 0Hz W A , 0,6 0,8, 6
17 version Water pressure drop Dp row coil row coil Dp Water flow () The water pressure drop figures refer to a mean water temperature of 0 C; for different temperatures, multiply the pressure drop figures by the correction factors K Water flow () C K 0,9 0,90 0,86 0,8 0,78 0,7 0,70 Dp row additional coil row additional coil Dp Water flow () Water flow () The water pressure drop figures refer to a mean water temperature of 6 C; for different temperatures, multiply the pressure drop figures by the correction factors K. C K,,08,0 0,96 0,90 7
18 Accessories for version VBP main coil way valve Control valve kit: way valve, ON-OFF, with electric motor and mounting kit with micrometric lockshield valve. Dimensions ± 0 mm Mod. Dimensions (mm) Valve A B C D E DN (Ø) Kvs / / / /,6,, Micrometric lockshield valve DN (Ø) Kvs 0 / F / F / F / F, FITTED 90666H 90607H 90607H 90690H NOT FITTED H 90607H 90607H H VBA additional coil way valve Control valve kit: way valve, ON-OFF, with electric motor and mounting kit with micrometric lockshield valve. Dimensions ± 0 mm Mod. Dimensions (mm) Valve A B C D DN (Ø) Kvs / / /,6,6,6 Micrometric lockshield valve DN (Ø) Kvs / F / F / F FITTED 90607H 90607H 90607H NOT FITTED 90607H 90607H 90607H Dp Kvs,6 Kvs Kvs, Kvs, Kvs Water flow ()
19 Accessories for version VS simplified kit for way valve way valve, (ON-OFF) with electric motor and mounting kit. Valve with flat connection without micrometric lockshield valve. Dimensions ± 0 mm Mod. Dimensions (mm) Main Additional Main Additional A A B B C 6 DN Valve Valve (Ø) Kvs FITTED NOT FITTED DN (Ø) Kvs FITTED NOT FITTED /, H H /, 90608H 90608H /, H H /, 90608H 90608H / 90690H 90690H V way valve for main and additional coil Control valve kit: way valve, ON-OFF, with electric motor and mounting kit. Dimensions ± 0 mm Dimensions (mm) Main Additional Mod. Main Additional A C D E H Valve DN (Ø) Kvs 0 0 / / /,7,8,8 FITTED H H H 90690H NOT FITTED H H H 90690H Valve DN (Ø) Kvs /,7 FITTED H NOT FITTED H Dp - 0 Kvs, Kvs,7 Kvs,8 Kvs,6 Kvs Water flow ()
20 Accessories for version BEL electric heater PHASE 0V Electric heater with integral: safety thermostat and relay control. Size Watt BSV extension condensate collection tray to cover valve assembly (for vertical units) BSO extension condensate collection tray to cover valve assembly (for horizontal units) Connection side Type LEFT BSO-SX RIGHT BSO-DX DRPV-C condensate pump (for vertical units) Type Fitted Not Fitted DRPV-C-M DRPV-C-S Height Water flow () depending on the length of horizontal flow for vertical flow (m) m 0 m 7,6,6,0, 7,,,7,9 0
21 Accessories for version DRPO-C fitted condensate pump (for horizontal units) Type DRPO-C Height Water flow () depending on the length of horizontal flow for vertical flow (m) m 0 m 7,6,6,0, 7,,,7,9 SCR plastic condensate drain pipe with fast connection (allows correct condensate drain) KAF frontal intake kit Bottom closing panel and filter sliding guides. Size FRD straight inlet flange Can be used together with GRAG air inlet grid. Made of galvanized steel. Size Type A B C D G FRD - / FRD - S FRD - 8/9 FRD - 8S , 7,,
22 Accessories for version FR inlet flange Can be used together with GRAP air inlet grid. Made of galvanized steel. Size Type FR90 - / FR90 - S FR90-8/9 FR90-8S A B C D G , , 6 9 0, GRAP air inlet grid To be used with FR inlet flange. Made of anodized aluminium. Size Type GRAP - / GRAP - /6 GRAP - 7/9 GRAP - S Description Grid 600x0 Grid 800x0 Grid 000x0 Grid 0x0 B GRAG air inlet grid To be used with FRD straight inlet flange. Made of anodized aluminium. Size Type GRAG - / GRAG - /6 GRAG - 7/9 GRAG - S Description Grid 600x00 Grid 800x00 Grid 000x00 Grid 0x00 B FMD straight outlet flange Made of galvanized steel. Size Type FMD - / FMD - S FMD - 8/9 FMD - 8S A B C D , , , E
23 Accessories for version FM outlet flange Made of galvanized steel insulated with polyethylene lining. Size Type FM90 - / FM90 - S FM90-8/9 FM90-8S A B C D , , , E BMA air outlet grid Double louvre grid to be fitted to the duct, to the FMD straight outlet flange or to the FM outlet flange. Made of anodized aluminium. Size Type BMA - / BMA - /6 BMA - 7/9 BMA - 8S B PRC air inlet spigot plenum Made of galvanized steel insulated with polyethylene lining. All the plenums are supplied with spigots for the connection of flexible ducts. Size Type PRC - / PRC - S PRC - 8/9 PRC - 8S A B C D 70 7, 60 Spigots N N N N PMC spigot diffuser Made of galvanized steel insulated with polyethylene lining. All the plenums are supplied with spigots for the connection of flexible ducts. Size Type PMC - / PMC - S PMC - 8/9 PMC - 8S A B C D 70 7, 60 Spigots N N N N
24 Control functions Electrical diagrams are shown on the installation, use and maintenance manual TMO-T-AU-IAQ 9060 TMO-T-IAQ 9060 TT TMO-DI TMO-0-SV TMO-T-AU TMO-T CR-T MO-V CONTROL OPERATIONS CONTROL IDENTIFICATION ON-OFF switch ON-OFF switch for electric heater Manual speed switch Manual/Automatic speed selection Summer/Winter switch Remote centralized Summer/Winter switch or by an automatic change-over fitted on the water pipe Automatic Summer/Winter switch with neutral zone for pipe installation with valves Room thermostat for fan control (ON-OFF) Room thermostat for valve control ( pipe installation) Room thermostat for valve control ( pipe installation) Simultaneous thermostatic control of the valves and fan Room thermostat for chilled water valve (SUMMER) and electric heater (WINTER) control (in winter only the heater is working) Room thermostat for fan and electric heater control Installation of electronic low temperature CUT-OUT thermostat (TME) Installation of bimetallic low temperature CUT-OUT thermostat (TMM) CONTROL CODES Electronic controls The units can be controlled using the remote controls above; in the standard version, the motor speeds connected to the main terminal block, are: - for sizes, and motor speeds, and are connected while the wires for speeds and are connected to a two-pole support terminal block. - for size motor speeds, and are connected while the wires for speeds and are connected to a two-pole support terminal block.
25 Wall electronic controls Identification MO-V ON-OFF switch and speed switch. Without thermostatic control. It allows to control the low temperature cut-out thermostat (TMM). Dimensions: x9x7 mm Identification CR-T ON-OFF switch. Manual speed switch. Manual Summer/Winter switch. Electronic room thermostat for fan or valve control (ON-OFF). It allows to control the low temperature cut-out thermostat (TMM). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter (otherwise please use TMO-T-IAQ control with on/off switch for the electric heater). Dimensions: x9x7 mm Identification TMO-T ON-OFF switch. Manual speed switch. Summer/Winter switch. Electronic room thermostat for fan or valve control (ON-OFF). It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter (otherwise please use TMO-T-IAQ control with on/off switch for the electric heater). It allows to control the summer/winter cycle with a centralized and remote switch or with an automatic change-over fitted on the water pipe (for -tube installations only). Dimensions: x9x7 mm Identification TMO-T-AU ON-OFF switch. Manual or automatic speed switch. Summer/Winter switch. Electronic room thermostat for fan or valve control (ON-OFF). Simultaneus thermostatic control of the valves and fan. It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter (otherwise please use TMO-T-AU-IAQ control with on/off switch for the electric heater). It allows to control the summer/winter cycle with a centralized and remote switch or with an automatic change-over fitted on the water pipe (for -tube installations only). N.B.: with pipe installations and continuous chilled and hot water supply, it allows the automatic summer winter change-over in accordance to the room temperature (- C = Winter, + C = Summer, Neutral Zone C). Dimensions: x9x7 mm
26 Wall electronic controls Identification TMO-0-SV The TMO-0-SV control for fan coils with valves, is designed to be installed in a DIN 0 wall box. It is easy to use, it has a big and clear display, and a great precision. The control is supplied integral with the external frame, but it is possible to use frames of the most known brand on the market (BTicino, Vimar, AVE, Gewiss). The highest working electric absorbtion is 00 W. If the fan coil has an higher absorbtion or more units are connected to the same control, the speed switch SEL-CR must be installed (on size the SEL-CR switch must be installed). Manual or automatic speed switch. Manual Summer/Winter switch. Electronic thermostat for valves control (ON-OFF). Simultaneus thermostatic control of the valves and fan. It allows to control the low temperature cut-out thermostat, included with the control. Dimensions: 8x87x8 mm N.B.: with pipe installations and continuous chilled and hot water supply, it allows the automatic summer/ winter change-over in accordance to the room temperature (- C = Winter, + C = Summer, Neutral Zone C). Identification TMO-DI Dimensions on the wall: x9x7 mm Dimensions in the DIN 0 box: x9x8 mm To be installed on the wall or in the DIN 0 box. Manual or automatic speed switch. Manual or centralized Summer/Winter switch. Electronic thermostat for fan control (ON-OFF). Electronic thermostat for valve control (ON-OFF). Simultaneus thermostatic control of the valves and fan. It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter. It allows to control the fan and the electric heater. It allows to control up to 0 units with SEL-DI speed switch. N.B.: with pipe installations and continuous chilled and hot water supply, it allows the automatic summer/ winter change-over in accordance to the room temperature (- C = Winter, + C = Summer, Neutral Zone C). Identification TT pipes units only. ON-OFF switch. speed switch. Manual Summer/Winter switch. Thermostatic control on the fan. Thermostatic control on the valve and continuous fan operation. Simultaneous thermostatic control of the valve and fan. Cannot be used with speed switch (master-slave). Dimensions: 8x7x mm 6
27 Wall electronic controls for units with electric heater Identification TMO-T-IAQ 9060 ON-OFF switch. Manual speed switch. Summer/Winter switch. Electric heater ON-OFF switch. Electronic room thermostat for fan or valve control (ON-OFF). It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter. It allows to control the summer/winter cycle with a centralized and remote switch or with an automatic change-over fitted on the water pipe (for -tube installations only). Dimensions: x9x7 mm Identification TMO-T-AU-IAQ 9060 ON-OFF switch. Manual or automatic speed switch. Summer/Winter switch. Electric heater ON-OFF switch. Electronic room thermostat for fan or valve control (ON-OFF). Simultaneus thermostatic control on the valves and fan. It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter. It allows to control the summer/winter cycle with a centralized and remote switch or with an automatic change-over fitted on the water pipe (for -tube installations only). N.B.: with pipe installations and continuous chilled and hot water supply, it allows the automatic summer/ winter change-over in accordance to the room temperature (- C = Winter, + C = Summer, Neutral Zone C). Dimensions: x9x7 mm Identification TMO-DI Dimensions on the wall: x9x7 mm Dimensions in the DIN 0 box: x9x8 mm To be installed on the wall or in the DIN 0 box. Manual or automatic speed switch. Manual or centralized Summer/Winter switch. Electronic thermostat for fan control (ON-OFF). Electronic thermostat for valve control (ON-OFF). Simultaneus thermostatic control of the valves and fan. It allows to control the low temperature cut-out thermostat (TME). It allows to control the chilled water valve (ON-OFF) and the electric heater (BEL) only in case that hot water is not used in winter. It allows to control the fan and the electric heater. It allows to control up to 0 units with SEL-DI speed switch. N.B.: with pipe installations and continuous chilled and hot water supply, it allows the automatic summer/ winter change-over in accordance to the room temperature (- C = Winter, + C = Summer, Neutral Zone C). 7
28 Speed switches Identification SEL-CR Speed switch (Slave). It allows to control up to 8 units with only one centralized wall control ( speed switch for each unit). For controls CR-T, TMO-T, TMO-T-AU and TMO-0-SV. 6 Identification SEL-DI Speed switch (Slave) for TMO-DI It allows to control up to 0 units with only one TMO-DI centralized wall control. 8
29 Wall electronic control accessories for version TME low temperature cut-out thermostat To be fitted between the coil fins; when connecting the control, the TME probe cable must be separated from the power supply wires. To be used with the following controls: TMO-T, TMO-T-AU, TMO-DI and corresponding IAQ controls. It stops the fan when the water temperature is lower than 8 C and it starts the fan when is higher than C. 009 TMM low temperature cut-out thermostat To be installed in contact with the hot water circuit. To eliminate cold air blow. Installed by the installing engineer. To be used with the MO-V and CR-T controls. For units working on heating only. It stops the fan when the water temperature is lower than 0 C and it starts the fan when is higher than 8 C. RED BROWN 9008 Change-Over CH - Automatic summer/winter switch to be installed in contact with the water circuit. For -tube installations only (not to be used with way valve). To be used with the following controls: TMO-T, TMO-T-AU, TMO-DI. RED BLACK
30 FreeSabiana wireless control system FreeSabiana Free Sabiana is an innovative, fully wireless, electronic system for use with fan coil units, based on radio communication. This technology provides installation flexibility and a more accurate measurement of the room temperature. The probe can be moved until the most suitable position is found, without the worry of changes in the room layout and of its furniture and also without mounting it on a wall. If a new fan coil unit is added, no electrical wiring for the control system is required: just define the control unit and the probe which regulates it. The improved measurement accuracy is a result of the possibility to position the probe near the user location: this enables to keep the temperature exactly at the required value with more energy savings compared with a traditional measurement system. Transmission is based on communication protocol IEE80.., the most suitable way to transmit a relatively low amount of information with very low consumption and high reliability. The system has been certified by a leading independent body, officially recognized by the EU authorities and its sale has been authorized in all the EU and EFTA countries. Main components Free Sabiana includes main components: A remote control which features a button panel and LCD display and can be wall-mounted or positioned on a dedicated table support. It enables the control of all the operating variables of the fan coil units in different configurations. The control is battery powered. The temperature and the operating speed of the fan coil unit are set with two large buttons featuring user friendly graphics. Description Remote control Identification Free-Com Control unit with support A power unit to be installed on the fan coil (fan coil interface). It controls the fan and the valves of the fan coil. The power unit is connected to the electric supply. The power unit receives the information required to control the fan coil both from the remote control and locally, such as the temperature of the coil. Description Power unit fitted on the unit Power unit not fitted on the unit Identification Free-Upm Free-Ups Power unit A room temperature probe, which can be wallmounted or positioned on a dedicated table support. It is a battery powered device, able to measure the air temperature in the spot where it is positioned, generating temperature information which is communicated to the other devices. Description Temperature probe Identification Free-Sen Probe with support
31 FreeSabiana wireless control system Main features of the remote control The control enables: Fan coil on/off switching Fan speed selection (high - medium - low - automatic) Summer/winter operation selection Valve on/off Real time clock setting Temperature setting Daily switch on/off setting (timer function) Enable/disable the timer function Activation of the (optional) electrostatic filter Activation of the (optional) electric heater Main information displayed: On-off status Summer operation Winter operation Automatic season change Electric heater Electrostatic filter Room temperature (with decimal accuracy) Fan operating speed Required/measured temperature Timer Clock Transmission signal Battery level Main features of the power unit to be installed on the fan coil The power unit controls the fan and the valves of the fan coil. The power unit receives the information required to control such units both from the remote control and locally. It enables the following main actions: Fan on/off at a set speed Fan speed change (fan on/off) Water valve/s on/off ( valve for tube system - valves for tube system) Fan speed change operating the water valve/s Control of the electric heater as main heating unit or as integration to the battery supplied with hot water Control of the operation of the electrostatic filter (in parallel to the fan) Management of the dead zone function for -tube systems Available functional inputs: Consent for remote on/off Consent for remote Summer/Winter switch (centralized) Consent for the activation of the Energy Saving function with setting change Minimum probe Probe for season change Main features of the temperature probe This device is able to measure the temperature of the air in the spot where it is positioned and to transmit it by means of radio communication to the other devices in the system. It is battery powered and can be freely positioned in the area to be air-conditioned. Display: Measured environment temperature Transmission signal Clock Battery status
32 Controls and units MB version All the units can be supplied with a wide range of controls, which allows managing one single unit or several units by using the Modbus RTU - RS 8 communication protocol. Units can be managed according to the Master/Slave logic (up to 0 units) or by supervisory components. The system consists in a MB board and a series of controls, such as the T-MB wall control, the RT0 infra-red remote control, the PSM-DI multifunction control and the Sabianet supervisory program. MB electronic board Description MB electronic board fitted on the unit MB electronic board supplied with separate packaging Identification MB-M 9066 MB-S 9066 The MB electronic board, to be mounted on the fan coil internal unit, is set to carry out different functions and adjustment modes, in order to meet the installation requirements. These modes are selected by setting the configuration dip switches on the board. / pipe system. Fan ON/OFF thermostatic control. Valve ON/OFF thermostatic control and continuous ventilation. Valve and simultaneous ventilation ON/OFF thermostatic control. Fan operation control depending on the coil temperature (cut-out T probe fitted), which can be activated only in heating mode or heating and cooling mode. Automatic switch of the operating mode by means of T water probe (optional) applied on the pipe system. Seasonal switch by means of remote contact. ON/OFF of the fan coil by means of the remote contact (window or clock contact). Electric heater control. By activating the cut-out T probe function, the fan is stopped in winter when the coil temperature is lower than C and started when the temperature reaches 6 C. In summer mode, the fan stops when the temperature inside the coil exceeds C and starts when it drops below 8 C. The following connections are located on the power board: Receiver for infra-red remote control. T-MB wall mounted control. RS 8 serial connection to manage several fan coils in Master/Slave configuration or to create a supervisory network.
33 Controls and units MB version T-MB wall control Wall control (to be used with MB board only) Description Identification T-MB 9066E Wall control with display that allows controlling one or more units in Master/ Slave mode. The control is equipped with internal sensor to detect the room temperature, which can be defined as a priority compared to the return air sensor on the fan coil. The T-MB control features the following functions: Switch the appliance ON and OFF. Temperature set. Modify the set point (when used as a +/- variation of the set point configured from Sabianet supervisory program or PSM-DI). Set the fan speed (low, medium, high or autofan). Set the operation mode (fan only, cooling, heating; auto for pipe systems with mode selection depending on the air temperature). Time setting. Weekly ON/OFF program. Display and change of the fan coil operation parameters. RT0 infra-red remote control Description Identification RT0 infra-red remote control with receiver supplied with separate packaging (to be used with MB board only) RT0 infra-red remote control supplied with separate packaging (to be used with MB board only) Receiver for RT0 infra-red remote control supplied with separate packaging (to be used with MB board only) RS-RT RT0 00 RS The infra-red remote control allows setting by a remote position the fan coil operation parameters. The RT0 infra-red remote control features the following functions: Switch the appliance ON and OFF. Temperature set. Set the fan speed (low, medium, high or autofan). Set the operation mode (fan only, cooling, heating; auto for pipe systems with mode selection depending on the air temperature). Time setting. hours ON/OFF program. Installation example with infra-red remote control
34 Controls and units MB version A group of units with MB electronic board can be connected via a serial link and can consequently be managed at the same time by just one T-MB wall control or RT0 infra-red remote control. Using the special jumper present on the MB board, one unit must be configured as the master, and all the others as slaves. It is clear that the remote control must be pointed at the receiver on the master unit. To avoid problems, it is recommended to install and connect the receiver only on the master unit. With T-MB wall control One control for each unit (Maximum length of the connection cable = 0 m) One control for more units (0 units max.) (Maximum total length of the connection cable = 800 m) With RT0 infra-red remote control One control for each unit One control for more units (0 units max.) (Maximum total length of the connection cable = 800 m) T accessory for units with MB electronic board Identification T 900 The T sensor can be combined with MB boards to be placed on the water supply pipe upstream way valves (not to be used with way valve). The T sensor must be used as described below: - Change-Over for -pipe system for the automatic switch of the operating mode. If water temperature is lower than 0 C, cooling mode is set; on the other hand, if water temperature exceeds 0 C, heating mode is set. - It can be used on units with electric heater and hot water supply. The T priority probe activates the electric heater or water valve, depending on the water temperature detected. If water temperature exceeds C, the water valve ON-OFF control is activated; on the other hand, if water temperature is lower than 0 C, the electric heater is activated.
35 Controls and units MB version PSM-DI multifunction control panel Description Multifunction control panel (to be used with MB board only) Identification PSM-DI 09 Another option available for the serial communication between the units is the possibility to connect up to 60 units in series and manage them with just one wall mounted PSM-DI controller. The wall mounted controller can be used to set the operating mode for each individual unit connected, display the operating conditions of each individual unit, and set the ON/OFF time sets for each day of the week (the program can be set for all the units and for a maximum of two groups of units). If more than 60 units need to be connected, two or more controllers must be used. Each unit must have a MB board. The PSM-DI control is used to manage a series of fan coils, up to a maximum of 60 units (the maximum length of the RS 8 connection cable must not exceed 800 m), from one single control point. The PSM-DI control communicates via a serial line with all the units connected, with the possibility of controlling them all together or individually. In fact, the unique address of each individual fan coil means that all the units can be called at the same time, or the individual unit called, to perform the following functions: - display the current operating mode, the fan speed, the set point; - display the room temperature measured on the individual unit; - turn all the units ON and OFF at the same time or alternatively each unit individually; - change the operating mode (fan only, heating, cooling, automatic changeover); - change the set point; - modify the values and operation parameters of the fan speed. Each function can then be sent to all the units connected, or alternatively to each individual unit. Different set points or operating modes can be set for each individual unit. The PSM-DI panel can also be used for the time management of the units over the week. Four ON times and four OFF times can be set on the units for each day of the week. A different Temperature set that will be considered as Operation set for all connected appliances, can be set for each event. If the Temperature set is not entered for the individual event, it must be set during programming for each individual unit or for the entire network. Units without receiver or with receiver can be connected within the network: the former can receive instructions only from the PSM-DI wall mounted panel; while the latter can receive information from both the wall mounted panel (PSM-DI) and infra-red remote control. Use the infra-red remote control to force ON mode of the individual unit, if ON/OFF daily time programming has been set. The unit will regain the settings from the PSM-DI panel during execution of successive start-up program. The PSM-DI panel cannot be used together with the Sabianet management program (see next page). Note: set the configuration Dip Switches of each fan coil as illustrated in the remote control use manual, based on the required solutions. Note: the RS 8 network s overall length must not exceed 700/800 metres.
36 Management system for a network of fan coils Sabianet program for managing a network of Sabiana MB fan coils Description Hardware/software supervisory system (to be used with MB board only) Identification Sabianet Sabianet is a centralised control system for networks of Sabiana MB fan coils, based on software that runs on LINUX. The Sabianet software offers a practical and economical solution for managing the units, with the simple click of the mouse. The main characteristics include simplicity of use, an extremely complete and functional weekly program, and the possibility to access the historical operating data for each individual unit connected. The program exploits all the potential of our units with remote controls, representing an addition to the latter. The Sabianet program is a control tool that can be used as a replacement for the remote control, or in parallel, however the settings made using Sabianet can have priority over those made using the remote control. The program can be used to: - Create uniform groups (groups of units on individual floors, in offices or rooms). - Save weekly programs configured for different types of operation (summer, winter, mid seasons, closing periods etc.); these can then be recalled and activated with a simple click of the mouse. Weekly on/off cycles can be set for individual units or groups of units. - Set the operating conditions for each individual unit or groups of units (operating mode, fan speed, temperature setting). - Set the set point limits for each individual unit or groups of units. - Switch each individual unit or groups of units ON or OFF. The main program screen can display and interact with the entire network of units. An individual unit, a group of units or the entire network can be called so as to make modifications to the operating mode and the set point. The user can then check the operating status of each individual unit, read the room temperature, the coil temperature and the operating status of the condensate drain pump or any alarms. MONITORING Screen 6
37 Management system for a network of fan coils Displaying a unit The MONITORING Screen shows the units that are connected to the network and scanned by the program. The icon of the terminal unit provides the following information: - Unit name ( C000000) - Set temperature ( TSET ) - Room temperature ( TA ) - Unit status: ON or OFF - Mode: Summer Auto Winter Fan only - Fan speed: Low High Medium AutoFan The Weekly Program can be used to set the unit operating parameters for each day of the week. Up to 0 different weekly programs can be set. EVENT MANAGEMENT Screen Time bands are available for each day of the week. The time and the type of operation to be performed by the unit can be set for each band. The time and the operating parameters can then be displayed before being sent to the unit and implemented. 7
38 Management system for a network of fan coils PC Sabianet Software Power input Outputs for system Power input Outputs for system Power input Outputs for system Connection of a network with MB electronic board unit unit 60 units max. ( * ) unit RS 8 MC Jumper to be closed. End of network. ( * ) In the event of more than 60 units, add one or more Router-S (see below). USB-RS 8 CONVERTER SABIANET RS 8 serial connection cable Shielded cable to be used: Belden 98, RS-8, xx AWG SFTP, 0 Ohm PSM-DI and Sabianet electronic boards for HPO units Identification SIOS 09 SIOS is a board equipped with 8 relays with potential free contact to control the activation or deactivation of remote electric utilities. Moreover, the board has 8 digital inlets to display the actuators or external consents, such as motor or other. The SIOS boards can be connected: - inside a network managed by Sabianet; - to a PSM-DI panel (one SIOS for each PSM-DI panel). Identification Router-S 090 The Router-S is an electronic board that: - allows creating networks with more than 60 units (minimum Router-S are required) or to divide the network (per floor, building, etc.); - it allows creating a Master/Slave sub-network to be controlled as an indipendent group. The Router-S can be used only inside a network managed by Sabianet. The number of Router-S to be used is: - up to 60 units: no Router-S - from 6 to 0 units: Router-S - every 60 subsequent units: additional Router-S 8
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