TOSHIBA AIR CONDITIONING

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1 Introduction The following specification describes the Toshiba Super Digital Inverter Heat Pump air conditioning system(s) to be installed at the site below: (ADD SITE NAME) The system(s) shall consist of the following components. It shall be the responsibility of the nominated installer to supply and install these system components in accordance with Toshiba Installation Guidelines. 1) Toshiba Super Digital Inverter external air cooled condensing unit(s) 2) Toshiba Super Digital Inverter compatible type indoor units 3) Interconnecting control wiring from Outdoor Unit(s) to Indoor Unit(s) 4) Toshiba TCC Link Integrated Controls 5) Interconnecting refrigerant pipe work from Outdoor Unit(s) to Indoor Unit(s). System Operating Range Mode of operation Cooling Heating Max. Outdoor Air Temperature Min. Outdoor Air Temperature Max. Indoor Air Temperature Min. Indoor Air Temperature 0 C db C db (564/804) -20 (1104/1404) 0 C db C wb 28-0 C db C wb 15 - Maximum indoor Humidity % RH 80 System Description The installation shall provide an energy efficient R410A Direct Expansion (DX) comfort air conditioning system(s) to the designated area(s)/zone(s) as per the (insert either equipment schedules, drawings, schematics etc) attached, utilising Toshiba Digital Inverter Heat Pump system(s) and shall be installed in accordance with relevant codes of practice and regulations. The system(s) shall comprise of a Toshiba Super Digital Inverter Heat Pump outdoor unit connected to 1 or 2 Super Digital Inverter 4-Way Cassette/Ducted/High-Wall/Ceiling type heat pump indoor fan coil units. It is recommended that the air conditioning installing contractor is a Refcom Certified Toshiba Additions Member. Full details on our website: Customer Support.

2 The system(s) shall be controlled with Toshiba s TCC-Link controls system selected in accordance with the specific control requirements detailed below: (Insert controls requirements) DELETE WARRANTIES THAT DO NOT APPLY All equipment supplied shall have a manufacturer s warranty of at least 3-years on all parts and labour in accordance with Toshiba s warranty and installation guidelines. Equipment to be installed by a Toshiba Registered installer or Qualified or Accredited All equipment supplied shall have a manufacturer s warranty of 5-years on all parts and labour in accordance with Toshiba s warranty and installation guidelines. Equipment to be installed by a Toshiba Qualified or Accredited installer. All equipment supplied shall have a manufacturer s warranty of 5-years on all parts and labour in accordance with Toshiba s warranty and installation guidelines. Equipment to be installed by a Toshiba Qualified or Accredited installer. All equipment supplied shall have a manufacturer s 7 year Total Peace of Mind (TPM) warranty on all parts and labour in accordance with Toshiba s warranty and installation guidelines. Equipment to be installed by a Toshiba Accredited (TPM) installer. Design Criteria The air conditioning system(s) shall be designed and equipment selected to conform to the following design criteria: Internal Conditions Summer 22 C db, 50% RH Winter 21 C db External Conditions Summer 29 C db, 21.5 C wb Winter -5 C db System Specification The system(s) shall be of the Toshiba Super Digital Inverter Heat Pump variety. The system will be capable of both heating and cooling. Each system will use non-ozone depleting HFC refrigerant R410A. These systems can be used for replacement technology, re-using old pipework designed for old R22 & R407C refrigerants* (provided the existing pipework meets currrent legislation regarding the pressure rating of R410A) The system shall allow a user-driven operating environment to be established where users can directly request their own choice of temperature and on/off control etc. The equipment must be suitable for operating on a Volt, single-phase, 50 Hz supply. Outdoor Unit(s)

3 Toshiba Model References Max Piping Length Max Lift Max Drop RAV-SP404ATP-E 30 m 30 m 30 m RAV-SP564ATP-E 50 m 30 m 30 m RAV-SP804ATP-E 50 m 30 m 30 m RAV-SP1104AT-E 75 m 30 m 30 m RAV-SP1404AT-E 75 m 30 m 30 m RAV-SP1104AT8-E* 75 m 30 m 30 m RAV-SP1404AT8-E* 75 m 30 m 30 m RAV-SP1604AT8-E* 75 m 30 m 30 m (* 3 phase unit) The outdoor unit shall be factory assembled, pre-wired, works tested, supplied with a refrigerant pre-charge suitable for 20 m (404 & 564) and 30m ( ) of main piping and complete with fully sealed pipe work connections. It shall not be necessary to include oil traps, sight glasses, or external driers. The access panel shall be easily removable for servicing. The condensing unit shall be fitted with its own electrical compartment with all necessary electrical and control components. The casing shall be manufactured from Galvatite steel plate with a Silky Shade (Munsell 1Y ) electrostatic spray finish protected to IP X4 and shall contain the following components: Inverter Driven Twin Rotary Compressor The compressor shall be of the twin rotary type and driven by a High-Speed Calculation Vector Control Inverter, creating seamless capacity control to match the connected indoor unit(s) cooling or heating demand. Fixed speed compressors of any type are not to be used. The compressor shall be factory mounted on springs and shock-absorbing rubber to minimise vibration. Heat Exchanger The heat exchanger shall be factory constructed of rifled copper tubing, mechanically bonded to aluminium fins. The aluminium fin material shall be coated with a double synthetic hydrophilic coating to prevent corrosion and to assist condensate dispersal. The condensing coil shall have a large surface area to minimize noise and maximise heat transfer. Fan and Motor Each outdoor unit is to be fitted with no more than a single fan. The fan shall be a three-blade, flash-wing, low noise type and shall be both dynamically and statically balanced to produce minimum noise and vibration. The fan shall be directly coupled and driven by a drip proof, permanently lubricated variable speed high-efficiency inverter controlled motor. The outdoor fan speed shall be matched automatically to the energy demands of the heat exchanger. The fan must be able to overcome an external static resistance of 15Pa. Suction Line Accumulator The cylindrical accumulator shall be fabricated from press formed mild steel plates. The accumulator shall have sufficient capacity to prevent any liquid refrigerant from flowing back into the compressor section. Additional Features & Safety Devices: 4-way reversing valve, solenoid valves, pulse-modulating valve, strainer, dryer, service valves with 5/16 gauge ports, thermal protection for compressor, recycling guard timer, over-current protection, compressor suction and discharge temperature sensors, terminals, internal wiring and controls. A pulse-modulating valve will provide capacity control by maintaining suction

4 temperatures of between 1 and 5 K higher than the evaporator inlet temperature additionally, the indoor heat exchanger will be limited to temperatures of no less than 2ºC when cooling. The outdoor unit will automatically defrost in the heating cycle. Indoor Units Each indoor unit shall be from Toshiba s Digital Inverter range of units and must operate on Volt, single-phase, 50 Hz supply taken from the outdoor unit. It must be fully compatible with all TCC-Link network systems, including a self-diagnostic TCC-Link remote controller or TCC-Link central controller with LCD to set mode, room temperature, timer, louvre (as applicable), fan speed and on/off functions. In the event of a fault, an alphanumeric malfunction code will be displayed. An auxiliary 12V DC output is to be available using the CN32 connection. This can be used to operate a ventilation fan via a relay (RBC-SMFI) when the indoor unit is operated. The heat exchanger shall be factory constructed of rifled copper tubing, mechanically bonded to aluminium fins. The aluminium fin material shall be coated with a hydrophilic coating to prevent corrosion and to assist condensate dispersal. The coil shall have a large surface area to minimize noise and maximise heat transfer. A fully insulated condensate drip tray must be fitted, which spans the full width of the coil connections and complete with a drain connection point. All indoor units are provided with a return air temperature sensor. The heat exchanger will be protected against excessive temperatures both low and high. Cold draughts will be avoided when heating by automatically stopping the indoor fan motor when the heat exchanger is too cold. Excess heat is to be dissipated by operating the indoor fan motor for a further 30 seconds after unit shutdown. The evaporator fan shall be of the multi-blade type, performance matched to the coil. The fan shall be statically and dynamically balanced to ensure low noise and vibration free operation and be driven by a permanently lubricated configurable DC motor with speed control and stall protection and fitted with maintenance free sealed-for-life sleeve bearings. 4-Way Cassette RAV-SM564UTP-E RAV-SM804UTP-E RAV-SM1104UTP-E RAV-SM1404UTP-E RAV-SM1604UTP-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam. Knockouts are to be incorporated into the main chassis of the unit: One to provide a fresh-air intake facility to allow up to 10% fresh air (un-tempered) to be introduced into the conditioned space via the unit; Three further discharge ports (2 on one side and 1 on the opposite side) are to enable a maximum of 2 spur ducts to be fitted to supply improved air distribution characteristics in irregular shaped rooms or to provide nominal cooling to adjacent areas. An integral condensate lift pump is provided with a 640mm lift capability from the drain outlet.

5 The cassette fascia panel is to be manufactured from ABS plastic, finished in Moon White (Munsell 2.5GY 9.0/0.5) and complete with four synchronised, motor driven, fully adjustable discharge louvres. Each corner of the panel shall be removable to provide access to the drop rods to enable precise height adjustment. The airflow from the unit is to be configurable from the remote controller to compensate for high ceilings. The central return air grille must be fitted with a washable, long life air filter. An optional kit shall be made available (ref: TCB- BC1602UE) incorporating blockers to allow up to two air discharge ports to be closed to create a 2, or 3-way discharge pattern as required. An optional infrared remote control kit with inclusive temperature sensor (ref: RBC- AX32U(W)-E is to be available). Compact (600 x 600) 4-Way Cassette RAV-SM404MUT-E RAV-SM564MUT-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam. Knockouts are to be incorporated into the main chassis of the unit: One to provide a fresh-air intake facility to allow up to 10% fresh air (un-tempered) to be introduced into the conditioned space; Two further discharge ports (1 on each side) are to enable a maximum of 2 spur ducts to be fitted to supply improved air distribution characteristics in irregular shaped rooms or to provide nominal cooling to adjacent areas. An integral condensate lift pump is to be provided with a 627 mm lift capability from the drain outlet. The cassette fascia panel is to be manufactured from ABS plastic, finished in Moon White (Munsell 2.5GY 9.0/0.5) and complete with four synchronised, motor driven, fully adjustable discharge louvres. Each corner of the panel shall be removable to provide access to the drop rods to enable precise height adjustment. The airflow from the unit is to be configurable from the remote controller to compensate for high ceilings. The central return air grille must be fitted with a washable, long life air filter. An optional infrared remote control kit with inclusive temperature sensor (ref: TCB-AX32E2) is to be available. Slim Ducted RAV-SM404SDT-E RAV-SM564SDT-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam and supplied complete with front discharge plenums The DC fan motor will be configurable, allowing a maximum external static resistance of 45 Pa to be overcome. Return air is to flow through the lower rear of the unit to allow for the return air to be taken from the conditioned space, or taken from the ceiling void. A knockout is to be provided to allow up to 10% fresh air (un-tempered) to be introduced into the conditioned space via the unit. An integral condensate lift pump is to be provided with a 271mm lift capability from the drain outlet.

6 An optional filter kit is to be available and is to include a disposable, long life air filter and shelter plates to convert the return air location from the lower rear, to the back of the unit. An optional infrared remote control kit with inclusive temperature sensor (ref: TCB-AX32E2) is to be available. Ducted RAV-SM406BTP-E RAV-SM566BTP-E RAV-SM806BTP-E RAV-SM1106BTP-E RAV-SM1406BTP-E RAV-SM1606BTP-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam. The DC fan motor will be configurable, allowing a maximum external static resistance of 100 Pa to be overcome. Return air is to flow through the lower rear of the unit to allow for the return air to be taken from the conditioned space, or taken from the ceiling void. A knockout is to be provided to allow up to 10% fresh air (un-tempered) to be introduced into the conditioned space via the unit. An integral condensate lift pump is to be provided with a 271mm lift capability from the drain outlet. An optional filter kit is to be available and is to include a disposable, long life air filter and shelter plates to convert the return air location from the lower rear, to the back of the unit. An optional infrared remote control kit with inclusive temperature sensor (ref: TCB-AX32E2) is to be available. Optional spigot kits are available as follows:- TCB-SF56C6BE (2 x 200 spigots (406 / 566BT)) TCB-SF80C6BE (3 x 200 spigots (806BT)) TCB-SF160C6BE (4 x 200 spigots (1106 / 1406 / 1606BT)) Ceiling Suspended RAV-SM407CTP-E RAV-SM567CTP-E RAV-SM807CTP-E RAV-SM1107CTP-E RAV-SM1407CTP-E RAV-SM1607CTP-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam and encased in an ABS plastic shell, finished in Shine White. A front mounted, motor driven, fully adjustable louvre is to be fitted. Primary, manually set louvres are to be incorporated to assist the air spread given by the motorised louvre. Return air is to flow

7 through washable, long life air filters mounted within the intake grilles on the underside of the unit. A rear knockout is to be incorporated into the main chassis of the unit to allow up to 10% fresh air (un-tempered) to be introduced into the conditioned space via the unit. Optional infrared remote control kit (ref: RBC-AX33CE2) and drain pump (ref: TCB- DP22CE) are to be available. High-Wall RAV-SM407KRT-E RAV-SM566KRT-E RAV-SM806KRT-E The unit will be manufactured from galvanised steel sheet, insulated with closed cell expanded polyurethane foam and encased in an ABS plastic shell, finished in Pure White. A lower front mounted, motor driven, fully adjustable louvre is to be fitted. Primary, manually set louvres are to be incorporated to assist the air spread given by the motorised louvre. Return air is to flow through washable air filters mounted within the intake grilles on the upper front of the unit. An infra-red controller is to be supplied as standard. Refrigerant Pipework All pipework shall be manufactured using de-oxidised, refrigerant quality copper to BS EN 1057:1996, and must be heat-treated as follows: 6.4mm (1/4 ) OD to 15.9mm (5/8 ) OD - Soft, Half Hard or Hard Tempered The length/height difference parameters and outside diameter of all piping is to be in accordance with the appropriate Toshiba manuals. Interconnecting Controls Wiring The nominated installer shall be responsible for the following interconnecting controls wiring: 3-core & earth = Outdoor unit to Indoor Unit (1, 2, 3) 2-core, non-polar = Indoor units to Remote Controller (A, B) 2-core, twisted, screened, non-polar = External Controls Network (U3, U4 and/or X, Y)

8 All electrical wiring, bonding and earthing shall be in accordance with the current edition of BS 7671: 2008 (IEE Wiring Regulations 17 th Edition). The voltages stated are EC harmonised voltages, but the equipment shall be suitable for volts single phase. Controls The 3-Pipe VRF Super Heat Recovery Multi system(s) shall be complete with the following TCC-Link controls. Simplified TCC-Link Remote Controller RBC-AS41E The remote controller(s) shall be surface mounted and hard wired to the indoor unit(s) via the AB connections, to provide the user with either local individual control of the air-conditioned space. The controller shall be manufactured in ABS plastic with a liquid crystal display (LCD). A temperature sensor is to be incorporated within the casing to allow the user to set the sensing point at the controller, or at the indoor unit. The controller shall display an alphanumeric fault code in the event of system malfunction. The controller shall provide control of the following primary functions: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). 0.5 degree set point change Fan speed (high, medium, low & auto). Louver position (where applicable). Filter check. Test run (heating & cooling). Screw type terminal Standard TCC-Link Remote Controller RBC-AMT32E The remote controller(s) shall be surface mounted and hard wired to the indoor unit(s) via the AB connections, to provide the user with either local individual control of the air-conditioned space, or group control of up to 8 indoor units. The controller shall be manufactured in ABS plastic with a liquid crystal display (LCD). A temperature sensor is to be incorporated within the casing to allow the user to set the sensing point at the controller, or at the indoor unit. The controller shall enable the user to interrogate the system and display an alphanumeric fault code in the event of system malfunction. The controller shall be able to provide control or indicate status of the following functions: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Fan speed (high, medium, low & auto). Louver position (where applicable). Individual Louvre Control (where applicable). Filter check.

9 Test run (heating & cooling). Minimum and maximum temperature settings in each mode Dead band between heating and cooling. Stratification control. Central control address. Auto-restart. Temperature sensor in use. High ceiling compensation. Elapsed timer lock. Sensor data available from all associated indoor and outdoor units Integral elapsed timer Standard TCC-Link Remote Controller with 24 Hour, Seven Day Timer RBC-AMS41E The remote controller(s) shall be surface mounted and hard wired to the indoor unit(s) via the AB connections, to provide the user with either local individual control of the air-conditioned space, or group control of up to 8 indoor units. The controller shall be manufactured in ABS plastic with a liquid crystal display (LCD). A temperature sensor is to be incorporated within the casing to allow the user to set the sensing point at the controller, or at the indoor unit. The controller shall enable the user to interrogate the system and display an alphanumeric fault code in the event of system malfunction. The controller shall be able to provide control or indicate status of the following functions: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Fan speed (high, medium, low & auto). Louver position (where applicable). Individual Louvre Control (where applicable). Filter check. Test run (heating & cooling). Minimum and maximum temperature settings in each mode Dead band between heating and cooling. Stratification control. Central control address. Auto-restart. Temperature sensor in use. High ceiling compensation. Elapsed timer lock. Sensor data available from all associated indoor and outdoor units Integral 24 Hour, Seven Day Timer. The Lite Vision Plus Remote Controller RBC-AMS51E-ES

10 The remote controller(s) shall be surface mounted and hard wired to the indoor unit(s) via the AB connections, to provide the user with either local individual control of the air-conditioned space, or group control of up to 8 indoor units. The controller shall be manufactured in ABS plastic with a new liquid crystal display (LCD) with backlight. A temperature sensor is to be incorporated within the casing to allow the user to set the sensing point at the controller, or at the indoor unit. The controller shall enable the user to interrogate the system and display an alphanumeric fault code in the event of system malfunction. The controller shall be able to provide control or indicate status of the following functions: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Increments of 0.5 C. Fan speed (high, medium, low & auto). Louvre position (where applicable). Filter check. Test run (heating & cooling). Save mode (dependant on model & system) Schedule 7 day timer operation (Operation time, start/stop, temp setting & restriction) Timer operation (Countdown timer) Minimum and maximum temperature settings in each mode Dead band between heating and cooling. Stratification control. Central control address. Auto-restart. Temperature sensor in use. High ceiling compensation. Elapsed timer lock. Sensor data available from all associated indoor and outdoor units Unique Energy Saver Function Menu based operational strategy Weekly timer function with multi programmable settings Fully compatible with Toshiba DI / SDI and VRF systems Programmable button restrictions Individual registering of the room name Illuminated display Option to display service providers name and telephone number Full ventilation options when used in conjunction with Toshiba s new VN-M air to air heat exchanger unit(s) Built in backup power settings. Settings kept in memory up to 48 hours in case of power failure. Wireless Infra-red Controller TCB-AX32E2 Receiver kit for wall and ceiling units RBC-AX33CE VRF ceiling models and VRF one-way cassette RBC-AX32U(W)-E DI/S-DI and VRF 4-way standard cassette RBC-AX32UW(W)-E VRF two way cassette The remote controller(s) can be placed anywhere in the room where the units is located. The receiver unit is hard wired to the indoor unit(s) via the AB connections. The controller shall be

11 manufactured in ABS plastic with a new liquid crystal display (LCD). The controller shall enable the user to provide control or indicate status of the following functions: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Fan speed (high, medium, low & auto). Louvre position (where applicable). Fault code Indication with flashing LED on receiver unit Schedule functions: Countdown timer with on, off & repeat off settings. Hi Power: Extra strong air flow for quick cooling. Energy Saving Mode: For night operation with reduced fan speed and unit shut off after 1, 3, 5 or 9 hours. Silent Mode: the indoor unit can operate at extra low speed with very low noise level. Wired Remote controller for Air to Air Heat Exchanger NRC-01HE The remote controller(s) shall be surface mounted and hard wired to the Air to Air Heat Exchanger unit(s) via the AB connections, to provide the user with either local individual control of the air-conditioned space, or group control of up to 8 air to air heat exchanger units. The controller shall be manufactured in ABS plastic with a liquid crystal display (LCD). A temperature sensor is to be incorporated within the casing to allow the user to set the sensing point at the controller, or at the indoor unit. The controller shall enable the user to interrogate the system and display an alphanumeric fault code in the event of system malfunction. The controller shall be able to provide control or indicate status of the following functions: Start/stop. Switchable ventilation modes (Automatic/Air to Air/Normal) Switchable ventilation air volume (Extra-high/High-Low) Central control address. Auto-restart. Temperature sensor in use. Two remote controllers can operate a single Air to Air Heat Exchanger. Schedule Timer Controller RBC-EXS21TLE The schedule / weekly timer can be wall mounted and manufactured in ABS plastic with an LCD display. The controller shall provide 3 on/off periods per day in a 7-day cycle with a day omit capability. In addition the controller shall be able to auto-restart the whole system after a power failure and have 100 hours backup memory. (Weekly Timer Mode) A weekly timer shall be connected to either the central controller, Smart Manager controller, and/or each standard remote controller. It should be connected via a dedicated 4-core lead supplied with the timer. (Schedule Timer Mode)

12 A schedule timer shall be connected to either the central controller, Smart manager controller or a local standard remote controller for its power ONLY. It shall be connected to the air conditioning systems via the U3/U4 network for its communication. TCC-Link Central Controller TCB-SC642TLE2 A central controller shall be recess mounted and hard wired to the outdoor unit(s) via the U3/U4 network, to provide the user with individual control of up to 64 master indoor units. The controller shall be manufactured in ABS plastic with a liquid crystal display. It shall be supplied from a V ac 50 Hz power source. A maximum of 10 central control devices must be able to be fitted to a single control network (U3/U4). It must be possible to switch the controller on and off from a remote source via a volt-free contact connected across the A series terminals. The B series terminals must provide operation and general fault outputs. The controller shall enable the user to interrogate the system and display a hexadecimal fault code for each master indoor unit in the event of system malfunction. The central controller shall display status and provide control of the following primary functions for each master indoor unit: Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Fan speed (high, medium, low & auto). Louver position (where applicable). Filter check. Automatic or manual central control addressing with the further option to provide this from the controller. Four levels of remote controller permit/prohibit functions. In addition the central controller shall facilitate the use of all remote controllers (RBC- AMT32E/RBC-AS41E/RBC-AMS51E-ES/RBC-AS41E) to provide the user with localised control of the air-conditioned space. When standard remote controllers are used, each master unit must have the capability to control up to 7 slave units if required (all will operate to the same conditions as the master unit). The central controller can restrict the operation of local controllers, preventing changes being made to: On/Off settings. On/Off, Mode and temperature settings. Mode and temperature settings. Mode settings. When used in conjunction with a weekly timer (RBC-EXW21E) the following configurable relationships must be available: Indoor units are turned on/off with the weekly timer and remain open to local override for one time period. Indoor units are turned off with the weekly timer and rely on local override to operate for one time period. Indoor units have on/off control disabled with the weekly timer and rely on local override to operate for one ON time period.

13 Indoor units are stopped and have on/off control disabled with the weekly timer and rely on local override to operate for one ON time period. Indoor units have all functions disabled with the weekly timer and rely on local override to operate for one ON time period. Indoor units are stopped and have all functions disabled with the weekly timer and rely on local override to operate for one ON time period. SMART Touch Screen Controller The Toshiba Touch Screen Controller provides a modern compact approach to management control technology utilising easy to use icons and simple navigation to deliver precise control and data analysis. The Toshiba Touch Screen Controller is simple to install and configure and offers three levels of operation and are password protectable. The Toshiba Touch Screen controller features a built-in web browser interface, unit status, unit enable and disable, time and alarm management control and fault indication. Features Built in Web Browser Back-up and Restore Customisable appearance Multi-language preference Alarm Settings Unit setup, status and inhibit Programmable time and date events Maximum 64 Indoor Units/Groups and 16 Outdoor systems can be connected TCB-PCNT30TLE2 Network adapter required for connection of DI/SDI to provide TCC Link Connection. Please note: This device is limited to standard network restrictions applied to the TCC Link network with a maximum indoor unit count of 64 indoor units. TCC-Link Central Smart Manager with data analyser BMS-SM1280ETLE A Smart Manager central controller shall be recess mounted and hard wired to the outdoor unit(s) via the U3/U4 network, to provide the user with individual control of up to 128 indoor units. The controller shall be manufactured in ABS plastic with a liquid crystal display. It shall be supplied from a V ac 50 Hz power source. A maximum of 10 central control devices must be able to be fitted to a single control network (U3/U4). The controller shall allow the possibility of remotely connecting to a PC. The PC shall be able to control all functions of the controller via a suitable Web browser, including 24 hour / 7 day timer schedules.

14 The Controller shall allow connection of suitable energy monitoring kits (RBC-EM1-PE), via a relay interface (BMS-IFWH5E). Up to 4 No. relay interfaces will be connected to a single smart manager controller. The controller shall also allow for the connection of a Digital Input/Output Relay Interface for the connection of ancillary equipment. The Controller shall allow the possibility of switching the system(s), to which it is connected, on and off from a remote source via a volt-free (or pulse) contact connected at the rear of the wiring panel. It must also provide the facility to shut down the entire system(s), to which it is connected, via a suitable signal (volt free or pulse) from a local fire detection panel. A manual restart of the systems after the all clear is given by the local fire alarm panel, will be required by the user. The Controller shall also provide operation and general fault outputs, via a closed contact circuit (for both system running & system stop fault ), also at the rear of the wiring panel. The controller shall enable the user to interrogate the system and display a hexadecimal fault code for each master indoor unit in the event of system malfunction. The central controller shall display status and provide control of the following primary functions for each master indoor unit or group : Start/stop. Operating mode (auto, cool, heat, dry, fan only). Temperature set point (18 C to 29 C). Fan speed (high, medium, low & auto). Louver position (where applicable). Filter check. Automatic or manual central control addressing with the further option to provide this from the controller. In addition the central controller shall facilitate the use of remote controllers (RBC-AMT32E, RBC-AMS41E, RBC-AMS51E-ES or RBC-AS41E) to provide the user with localised control of the air-conditioned space. When standard remote controllers are used, each master unit must have the capability to control up to 7 slave units if required (all will operate to the same conditions as the master unit). The Smart Manager central controller can restrict the operation of local controllers, preventing changes being made to: On /off settings. On/off, mode and temperature settings. Mode and temperature settings. Mode settings. Web Browser Control Software The controller can be connected to a computer via an Ethernet cable and accessed via a fixed IP address to view the units. The layout can be selected in terms of Area Name, Floor Name or Tenant Name. Other key features are: On/Off, Mode and temperature settings. Advanced Operation and Master Schedule functions available Up to 4 users can be connected at any one time. Up to 32 User accounts can be programmed with different levels of access. Error Code history.

15 Energy monitoring and report creation functions available Additional devices with use with BMS-SM1280ETLE BMS-IFWH5E The energy monitoring relay interface connects to the RS485 Network and provides a means of interface to the pulse power meters. Up to eight power meters can be connected to each relay interface. BMS-IFDDO2E2 The D/I module connects to the RS485 network and provides 8 inputs and 4 outputs, which could be used to interface a fire alarm or a room occupancy sensor. The D/I module output could be used as a means of remote fault indication to another system Power Meter Locally Procured Switching HUB and LAN cable Locally Procured PC for Web Browsing Control & Energy monitoring functions Locally Procured Lon Works Interface TCB-IFLN642TLE A Lon Works Interface shall be hard wired to each header outdoor unit via the U3 & U4 network, to enable the user to individually control up to 64 indoor units. The Lon Works interface can provide 28 network variables for the sending of control commands and receiving unit information. Multiple interfaces may be connected to a single TCC-Link network and addressed using switches on the device. This is to enable ease of installation, for example buildings with separate areas or where one interface may be used for each area or floor. The interface shall enable the PC to display status, diagnostics by unit number and provide control of the following primary functions for each master indoor unit: - Mode of Operation (Auto, Cool, Heat, Fan Only) Temperature Set Point (18 C to 29 C) Fan Speed (High, Medium, Low & Auto) Louver Position (Where applicable) On/Off The Lon Works gateway is a device that allows the Toshiba indoor units to be connected to a Lon Works based BMS.. In addition, the interface shall facilitate the use of Remote Controllers (RBC-AMT32E, RBC-AMS41E, RBC-AMS51E-ES or RBC-AS41E) to provide the user with local control of the air-conditioned space. When standard remote controllers are used, each master unit must have the capability to control up to 7 slave units if required (all will operate to the same conditions as the master unit).

16 Each Toshiba Lon Works Interface can be connected to up to 64 indoor units on the TCC-Link Central Control Network. Up to 16 refrigerant systems can be connected to each Lon Works device on a single TCC-Link Network. Up to 10 TCB-IFLN642TLE Interfaces can be connected to a single TCC-Link Network Windows Package & Windows Gateway RBC-WP1-PE TCB-IFLN642TLE A Windows Package (RBC-WP1-PE) shall be used in conjunction with a LonWorks Gateway (TCB-IFLN642TLE). This is the front-end software package that controls all aspects of the air conditioning systems software is installed on a PC. The Windows Package shall enable the user to control up to 1024 individual indoor units, and via the Gateway be capable of adjusting, managing and displaying all the following control functions: Mode of Operation (Auto, Cool, Heat, Dry, Fan Only) Temperature Set Point (18 C to 29 C) Fan Speed (High, Medium, Low & Auto) Louver Position (Where applicable) On/Off Fault Code Diagnostics, (Hexadecimal code with short explanation of fault for quick diagnosis) Sensor Data Indoor Unit can be prohibited On/Off Control Only Multiple Time Scheduling; (24 events a day) Frost Protection Energy Monitoring (RBC-EM1-PE power meter is required for this function) In addition local control may be provided to any or all zones by the use of Remote Controllers (RBC-AMT32E, RBC-AMS41E, RBC-AMS51E-ES or RBC-AS41E). When remote controllers are used, each master unit must have the capability to control up to 7 slave units if required (all will operate to the same conditions as the master unit). The controls software shall also enable the user to display unit locations via site specific floor plans and transmit system alarms via the following media types: - Fax, SMS, Modems, and Pager. The Interactive Intelligence software tool is a Building Management Control software designed for use on the Lon Works network protocol and can not only be used to control Toshiba Air Conditioner systems but also any building system that is required by the client to be controlled(i.e. Lighting, security, etc ) The following Interactive Intelligence software provides a means for the Toshiba Leak Detection and overall control of the VRF systems to be monitored & controlled from a central

17 point. The format and visual appearance of the software can be set up to however the end user wishes to view this with the following levels of access to be set. Level 1 - Monitoring all areas only with no ability to change Level 2 - View all areas and enable changes to be made Level 3 - Administration or Engineering Access Level Full ability to monitor, change and see recorded data regarding the performance of the system Additional Features Connection to R410A equipment using TCB-IFLN642TLE Connection to R407C equipment using RBC-WG1-PE Remote access available using RBC-IK1-PE Integration with other site equipment using RBC-DI1-PE Digital Input/Output device Linked to Toshiba Leak Detection to monitor the systems connected. To enable the Windows Package to be installed the following minimum system requirements shall be provided either by the end-user or the installer: - P4 2GHz or Equivalent 20G HDD (Minimum) 512M RAM (Minimum) Full size case to accept a Standard size PCI card (Not Mini PCI/PCIe) Windows XP professional or Windows 7 Professional 32Bit Version USB port For Dongle Toshiba Controls Reference RBC-WP1 Interactive Software 1No per 1024 Indoor Units TCB-IFLN642TLE LonWorks Gateway 1No per 64No Indoor Units (Typically to help with system addressing apply 1No Interface per floor) Note:- To cover the customisation set up of the Interactive Software as an initial cost please allow the following sub for software configuration. This allows for 1 ½ days to cover the time required to set up the WP1. Software Configuration 1,000 Exc VAT (Any additional time to be charged at 620 per day). Energy Monitoring Kit RBC-EM1-PE Energy Monitoring kit(s) shall be fitted and used in conjunction with the Windows Package and LonWorks Interface(s) to provide a means of calculating total power consumption of the air-conditioning system, broken down by indoor unit. Using this data the Windows Package can generate bill reports to specific requirements and export data to billing software or an external site. Each kit consists of a power meter and a set of current transformers that are to be placed on the supply cables of up to six outdoor units. One power meter kit for each refrigerant circuit Please note: One power meter kit for each refrigerant circuit.

18 Digital Input/Output Interface RBC-DI1-PE The RBC-DI1-PE is a module that connects to the Lon Works network that links backto Windows Interactive Intelligence software. The module has 8 digital inputs and eight relay outputs. These inputs can be used to control external plant or accept inputs from other plant. The relay outputs can also enable external plant in conjunction with the AC or plant which is independent. Please note: Each device requires a power supply Each device has a limit of eight inputs and eight outputs. Black Pear Controller RBC-BPB1 BACnet Interface RBC-BPM1 Modbus Interface RBC-BPT1 Trend Interface The Black Pear Toshiba HVAC controller is the most versatile connecting straight onto the U3/U4 network. The interface has an integrated LCD display which can provide an engineer s interface for local control removing the need for a Central controller and separate interface. The units will operate on systems with or without a central controller and supports Modbus, BACnet and Trend protocols. The indoors units can easily be configured by using the integrated keypad in the event of a BMS failure in providing and enabling continuous communication. Features BACnet I/P Modbus RTU or I/P TREND Via and Outstation Maximum 64 indoor units/groups and 16 outdoor systems can be connected TCB-PCNT30TLE2 Network adaptor required for connection of DI/SDI units. Minimum required equipment for BACnet Black Pear RBC-BPB1 BACnet controller TCS-Net Relay Interface TCB-PCNT30TLE2 BACnet Control System Minimum required equipment for Modbus Black Pear RBC-BPM1 Modbus Controller TCS-Net Relay Interface TCB-PCNT30TLE2 Modbus Master Device Upper Side Modbus Graphic Control System Sourced from TOSHIBA Sourced from TOSHIBA Local supply Sourced from TOSHIBA Sourced from TOSHIBA Local supply Local supply Minimum required equipment for Trend Control System Black Pear RBC-BPT1 Trend Controller Sourced from TOSHIBA TCS-Net Relay Interface TCB-PCNT30TLE2 Sourced from TOSHIBA Trend IQ3/4 outstation with spare memory Local supply

19 Please note: The device is limited to standard network restrictions applied to the TCC Link network with a maximum indoor unit count of 64 indoor units. Intesis WIFI Network Controller IS-IR-WiFi-1 For use with residential systems TO-RC-WiFi-1 For use with most VRF/DI/SDI systems Intesis WIFI controller is connected to A+B terminals on RAV and VRF products to enable control through the Internet using a PC, Tablet or Smartphone Features Control your air conditioner from anywhere with your Smartphone, Tablet or Computer Control and monitor: On/Off, Mode, Set Temp, Room Temp, Fan Speed & Louvre(limited) Easy to install: Wall or desktop mounted Attractive Design ON/OFF status and mode indicated by LED light Automatic firmware updates The TO-RC-WiFi-1 is not compatible with the RBC-AMS51E-ES remote controller Outside Unit Control Board Toshiba Model Reference TCB-PCMO4E An additional PCB is to be fitted to each master outdoor unit to provide one of the following functions: a) Mode selection This allows an external switch to determine the choice of operating mode.(cool or Heat) b) Snowfall Fan Control When activated the outdoor unit fan will run independently of the compressor to prevent snow from settling on the unit when not in normal operation. c) On/Off External master start, or stop signals can enable, or disable each system. d) Set-Back When activated, the compressor and fan will be restricted in speed to provide a reduction in sound pressure level for a single unit from 59 db(a) to 50 db(a). Operation Output Control TCB-PCIN4E An additional PCB is to be fitted to each master outdoor unit to provide an output signal based on the On/Off status of the connected units and an error output signal based on detected faults on the system.

20 When connected to the SMMS-I product, the TCB-PCIN4E can be used to output the On/Off operation status of the compressors to output system operation rate. Start/Stop and Fault Interface TCB-IFCB-4E2 Each indoor unit (master unit if grouped) is to be fitted with an interface to allow each indoor unit to be externally switched on and off by means of any volt-free external terminals. The interface shall be linked to the indoor unit using CN61 on the PCB. This device must also have the capability of providing a positive indication of the operation of the indoor unit and signal any errors (system and indoor unit stopping faults) via externally fitted volt-free contacts. The interface shall be fitted in position near the relevant indoor unit. External switching components can include: Time switch BMS Passive infra-red occupation sensor Auto restart Frost thermostat Fire alarm Power Peak Cut Control RBC-PCDM4E This device is designed for use where it is necessary to limit the electrical demand of systems at certain times. At certain time a signal can be sent to the device via a relay contact closure, which will limit the demand to pre-set levels. The Power Peak Cut accessory PC Board connects to connector CN513 of the Header Outdoor Unit PC Board. Sound Reduction and Demand Control for DI TCB-PCOS1E2 The device is intended for installation on the DI outdoor unit range and has been designed to limit the outdoor unit noise production in cooling mode by 5dB, limit the maximum power consumption and give a compressor operation signal. This application connects to the CN510 connector of the outdoor unit interface PC board (DI only) Peak-Cut Control, Night Operation & Compressor Output for DI/SDI TCB-KBOS2E The accessory is compatible with Series 4 DI and SDI equipment (excludes SDI RS Units) and can be used to provide three possible functions. These are:

21 Power Peak-Cut Control Provides 3 levels of power saving levels Night Operation Reduces the noise of the outdoor unit by restricting the fan and compressor operation. Compressor Output Provides a non-voltage contact that is on whilst the compressor is operating. On/Off & Locking Lead RBC-SMCN61 This leads connects to any R410A Di/SDI or SMMS/SHRM indoor unit. This accessory allows the indoor unit to be enabled/disabled by a volt free contact closure. It also allows the remote to be locked to prevent the unit being switched on. This interface lead connects to the master unit on CN61 connector located on the indoor PCB. If this lead is to be used for the ON/Off function jumper J05 is to be removed. When the external contact is operated, all connected systems will be enabled or disabled, depending on whether the contact is opened or closed. Individual units cannot be omitted from the On/Off control process. Locking Lead RBC-SMCN61L This lead will allow the ON/OFF functions of the remote to be locked in the ON or OFF position. The interface lead must be plugged into the CN61 connector on the indoor unit PCB. If the units are grouped the lead should be connected to the master unit. Timer Interface Lead RBC-SMTI This leads connects direct to the following accessories: RBC-AMT32E NRC-01HE TCB-SC642TLE2 TCB-CC163TLE2 This lead is used to allow single or group of units connected to the above devices to be enabled or disabled by means of an external contact. The interface lead is connected to the CN02 connection. When the external contact is operated, all connected systems will be enabled or disabled, depending on whether the contact is opened or closed. Individual units cannot be omitted from the On/Off control process. Fan Interface Lead

22 RBC-SMFI This lead is used to allow an external ventilation fan to be controlled from an indoor unit. This lead connects to a digital inverter or VRF indoor unit. The interface should be mounted adjacent to the indoor unit and connected into CN32. The remote controller will require configuring to allow the operation of the auxiliary ventilation button. When the external contact is operated, all connected systems will be enabled or disabled, depending on whether the contact is opened or closed. Individual units cannot be omitted from the On/Off control process. Timer Interface Lead RBC-IT4-PE This leads can be used with Toshiba RAV and VRF range of indoor units. The timer interface lead enables these systems to be externally switched On/Off by any volt-free external terminals rated at 230 volts AC. The device is connected to the indoor unit PCB via the CN06 socket on the 560/800 KRT models and the CN61 socket on all others models. This lead must be fitted to the header indoor unit. If fitted to slave/follower unit, incorrect system shut down may occur. When connected into CN06/CN61 the remote controller On/Off is disabled but the other functions Indicator Module Mode RBC-SMIM2 This device is designed to give operational status of DI/SDI and SMMS/SHRMi systems. An indication is given as to whether the unit is heating, cooling or the fan is operating. The indication is given via a series of LED s and the activation of a relay output. The volt free relay output terminals allow for remote interfacing with a control panel or BMS system. The device is to be located adjacent to the indoor unit and connected to the PCB via the CN60 socket. Indicator Module, On/Off and Stopping Fault RBC-SMIM3 This device is designed to give operational and fault status of DI/SDI/SMMS/SHRMi systems. An indication is given as to whether the unit is heating, cooling or the fan is operating or whether the unit has a stopping fault. The indication is given via a series of LED s and the activation of a relay output. The volt free relay output terminals allow for remote interfacing with a control panel or BMS system.

23 The device is to be located adjacent to the indoor unit and connected to the PCB via the CN61 socket. Indicator Module On/Off, Stopping Fault and Unit Enable RBC-SMIM4 This device is designed to give operational status of an air conditioning system and also to enable remote On/Off control, with a remote controller lock facility where required. There are LED s on the interface giving a local indication of the RUN and FAULT status and relay outputs are provided to give a remote indication facility. There are also two input contacts for On/Off and On/Off lock. When the On/Off lock contact is mde the On/Off button on the remote controller is disabled. The device is to be located adjacent to the indoor unit and connected to the PCB via the CN61 socket. Jumper J01 must be removed from the indoor PCB to enable switching operation. Network Adaptor TCB-PCNT20E The device is intended for use on the DI/SDI/SMMS/SHRM ranges of equipment and is designed to convert TCC Link to AI network protocol. This enables earlier types of control equipment to be interfaced with the current range. Network Adaptor TCB-PCNT30TLE2 To facilitate the connection of Digital Inverter or Super Digital Inverter indoor units with the exception of indoor High Wall models SM-KRT-E. The adaptor is designed to enable Network devices such as central controllers and BMS systems to interface with DI/SDI systems. The device connects to the indoor unit PCB via socket CN50. VN Unit Interface Lead RBC-VNL1 Interface module for BMS Enable/Disable This lead will allow the VN unit to be controlled from volt free contact closures. Separate contacts are required for On/Off, remote controller lock, increased fan speed and damper position. The interface must be plugged into the CN705 connector on the VN unit PCB. If a lead is used with a remote controller it will operate in last one touched mode. If the VN units are grouped it can be connected to any VN unit in the group. BMS Interface

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