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EBDSPIR-AT-DD User Guide

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1. 1 Scene 1 Brown E OO i o 2 Scene2 Blue 5 3 Scene3 Yellow OQ L O 4 Scene4 Green 5 5 Raise Red ee Q 6 Lower Black Onnan A 7 Off Orange 8 Common Grey Using centre retractive switches RJ45 Lead 1 Scene 1 Brown 2 Scene 2 Blue 3 Scene3 Yellow Oaa 4 Scene4 Green Oy 5 Raise Red O 6 Lower Black OO 7 Off Orange O_o NC O 8 Common Grey Basic programming The UHS5 handset has limited functionality when used with the DM BB IN Point the handset at the input unit and send the required programming commands to the unit as shown below Ensure that the IR receiver is not covered Valid commands will be indicated by a green LED flash Parameter Default UHS5 Handset Graphics Name Value Description ON ee O OI Button Activation On Raise Turn lights on or to raise lights Off Lower Turn lights off or to lower lights Scene lock Locks unlocks the input unit so that Scenes Walk test cannot be saved To prevent scenes being button overwritten Defaults Returns the unit to the default settings Burn in Determines how long the output will be at 100 Only use when 50 so that lamps burn in The burn in time is not input unit is a affected by power supply interruptions master Preset ABS Master 2 presets for Master Slave configuration A M
2. Product Guide lectronics intelligent energy control DM BB IN D Mate input unit Overview The DM BB IN Input Unit provides a control interface between a D Mate lighting control system and external devices such as Button switch scene plates e Security systems AV equipment P The unit features seven Volt free switch inputs that can be activated by the contact closure of push buttons switches or relays Activating an input causes the unit to transmit a scene raise or lower light levels messages to the D Mate system Scene programming is via the UNLCDHS only Front features IR Receiver Receives control and programming commands from an IR infrared handset IR Receiver Status LEDs The LEDs flash Green or Red to indicate the following Valid setting received X Button press release ERE Status LEDs Factory reset X DRE BRS D Mate connection Connection to the D Mate bus The D Mate bus is polarity DO O Oo insensitive Back features Plug in RJ45 lead and socket A short 8 core flat cable with plug that is supplied with each Plug in RJ45 D Mate unit used to connect the inputs to external devices lead and connection socket D Mate is a Lighting Control System suitable for small to medium scale applications offering the following key benefits 4 independently dimmable lighting circuits An additional 4 circuits can be programmed via the UNLCDHS Scene setting 4 user programmable scenes
3. LVD 2006 95 EC CE Dimensions without brackets 50 1 H 22 Part number Description Input unit DM BB IN D Mate input unit Accessories UHS5 IR programming handset UHS7 IR user handset UNLCDHS IMPORTANT NOTICE This device should be installed by a qualified electrician in accordance with the latest edition of the IEE Wiring Regulations and any applicable Building Regulations Universal LCD programming handset FM 45789 EMS 534520 Due to our policy of continual product improvement CP Electronics reserves the right to alter the specification of this product without prior notice 8 ESTA energy services and technology association UK Patent no GB2467196 International patents pending KP ecroncs C P Electronics Ltd Brent Crescent London NW10 7XR United Kingdom Tel 44 0 333 900 0671 Fax 44 0 333 900 0674 www cpelectronics co uk enquiry cpelectronics co uk Ref WD476 Issue2
4. acket holes are spaced to suit either a UK 60 3mm pitch or European 60mm pitch backbox CAUTION Do not over tighten the fixing screws as this may cause the brackets to split Mounting bracket location for surface mounting Mounting bracket location for secured backbox mounting System wiring example Power Supply Scene Plate Input Unit 4 1 Vv To additional Scene Plates Inout Units or Detectors D MATE DATA BUS Detector Addressers ATA DALI DSI CIRCUIT 0 BALLAST CONTROL DALI DSI CIRCUIT 1 BALLAST CONTROL R DALI DSI CIRCUIT 2 lt BALLAST ps as is amp LOAD gt 4 aos To additional Addressers RELAY SWITCHED MAINS SUPPLY 1 10V CIRCUIT 3 MAINS i SUPPLY RELAY SWITCHED MAINS SUPPLY Wiring diagrams Input connections to the DM BB IN Input Unit are made via the RJ45 lead supplied The lead has 8 wires comprising 7 switch inputs plus a common connection Connect the lead wires to suitable push buttons or switches as required see wiring examples below The inputs are mapped to the following functions Connections to the D Mate data bus are shown below right nput connection da__ 1 Switch 1 Brown 3 Switch 2 Blue 3 Switch 3 Yellow 4 Switch 4 Green 6 Switch 6 Black 7 Switch 7 Orange 8 Common Grey Note The use of latching switches are not recommended Using individual push buttons RJ45 Lead
5. aster B Clear Master Preset PRS 2 presets for Master Slave configuration A Slave B Clear Slave Default scene levels The D Mate system is factory set to provide the following scene levels Scene 1 all circuits at 100 Scene 2 all circuits at 75 Scene 3 all circuits at 50 Scene 4 all circuits at 25 To change scene levels see page 7 Master input unit activation When there is a system that has no detectors but has multiple plates and or input units one will need to be set as the master To effect this either Use the UHS5 to set the unit as a slave using the method above or Use the UNLCHS to set the master slave configurations see advanced programming section Advanced programming Only use when input unit is a 1 to 999 hours in time is not affected by power supply interruptions Parameter Name Default Value Range Options Description UHS5 UNLCDHS Absence Time Out 30 seconds 0 999 seconds If the lights are turned on and no activity is detected within the Absence Time out Time adjustment the lights will turn off IR Enabled N YorN Enable or disable device control or programming by IR handset Burn in 0 0 disabled or Determines how long the output will be at 100 so that lamps burn in The burn vA Ch1 4 x v x v v master Fade Time 2 1 second 8 8 0s Sets the default fade rate for circuit
6. e total length of all cable including spurs within a system should not exceed 200m There is no requirement to use screened cable However the routing of cables through electrically noisy environments should be avoided to prevent possible interference on the bus w Da Line or Daisy Chain 7 Star Tree The data bus power connections to all D Mate devices are designed to operate correctly with reversed polarity However it is good practice to ensure all devices are wired with correct polarity DALI and DSI ballasts are tolerant to reversed polarity however 1 10V ballasts are not Multiple Device Control Master and Slaves It is possible to use multiple D Mate control devices such as detectors and plates in a system For example there may be a need to have two plates in a room where the master plate controls all the circuits in the room but the slave plate is used to control a subset of circuits An application of this would be where there are two detectors in a large room where one would be the master and the other the slave Where multiple control devices are used on the same circuit one device must be designated the master This is the device that is responsible for sending control messages to the Addressers The master device also stores the levels for each Scene for the circuit s it controls The other control devices on that circuit must be designated as slaves These do not control the Addressers di
7. o each of the four channels circuits when Scene 4 is selected x vA Ch1 4 Scene 5 9 Levels 100 0 100 Levels applied to each of the four channels circuits when Scene 5 6 7 9 or 9 are x WA selected User Modes On Off Raise Lower Scene up Scene down Select Scene Circuit Number Circuit Level Save Scene Selects last Scene Turns lights off Increase light level Reverts when occupancy cycle complete Decrease light level Reverts when occupancy cycle complete Steps up between 9 pre defined scenes Steps down between 9 pre defined scenes 0 9 Select the individual scene AGGRCERREES amp A Select the circuit to adjust level of Set the circuit level for the circuit above 0 99 s Saves the set levels in the selected scene Technical data See diagrams opposite 9 5VDC 22 5VDC via DALI Dimensions Weight 0 03kg Supply Voltage Supply Current 6mA D Mate bus Terminal Capacity Fixing method Cannot be considered as SELV since DALI DSI and 1 10V ballasts only offer basic insulation therefore all devices on the D Mate bus must be wired as if carrying mains potential 2 5mm Surface fixing 35mm deep plastic surface mount moulded box Flush fixing 25mm steel backbox or 25mm deep cavity backbox Temperature 10 C to 35 C Humidity 5 to 95 non condensing Material casing Flame retardant PC Type Class 2 IP rating IP40 Compliance EMC 2004 108 EC
8. plus an off scene per Scene plate Scene recall via push button Scene Plates Input Units or IR handsets Presence and absence operation using detectors Lux switching and lux dimming maintained illuminance operation Introduction Devices within the D Mate system communicate via a simple two wire data bus The bus is powered via the D Mate PSU and data is passed between devices using a format based around the DALI standard The bus operates at a nominal voltage of 16 Volts DC which serves to provide operating power to each device connected to the bus A maximum current of 200mA is available from the PSU Therefore in any D Mate system the maximum number of devices will be dependant on the total current consumption of all devices including ballasts Note The use of additional D Mate PSUs or third party PSUs with a higher current rating is not permitted The output from the DM SL PSU is fully isolated from the mains input and may be regarded as an SELV device However as DALI ballasts only offer basic insulation all devices on the D Mate bus must be wired as if carrying mains potential Physical requirements Data bus connections between devices must be made using suitable mains rated two core cable such as two core flex or bell wire The minimum recommended core size is 0 75mm for most applications The data bus may be wired using any convenient network topology e g line star or tree However whichever topology is used th
9. rectly but send messages to the master device which then sends messages to the Addressers Where a detector exists on a circuit it must always be the master device with any additional detectors or scene plates configured as slaves Where a single detector is used with one more scene plates it will automatically set the plates to slaves for the corresponding circuits When there are no detectors in a system and only plates or input units one of the plates or input units will need to be set as the master To set the input unit as a master see page 7 Scene Plate slave Input Unit slave Detector slave Detector master D MATE DATA BUS Installation The DM BB IN Input Unit can either be mounted to any suitable solid surface or concealed inside a backbox Surface Mounting Method Fit the two snap on mounting brackets on the back side of the unit as shown Use the holes in the mounting brackets to affix the unit to a wall or other solid surface using suitable screw fixings Backbox Mounting Method For unsecured fixing the unit can be simply placed inside a UK or European backbox without fitting the snap on mounting brackets This enables a proprietary switch plate to be connected and screwed to the backbox Alternatively for secured fixing fit the two snap on mounting brackets on the front side of the unit as shown The unit can then be secured to the backbox using suitable fixing screws up to M3 5 NOTE The mounting br
10. s using DALI ballasts Value is sent to all x vA 9 11 3s Addressers on Detector Plate Input unt power up and must be set to the same 10 16 0s value for all devices 11 22 6s 12 32 0s 13 45 3s 14 64 9s 15 90 5s Max Value 99 0 99 Sets the maximum light level for all circuits Min Value 0 0 99 Sets the minimum light level for all circuits Master Circuit Ch1 0 0 14 First circuit number that device is a master of Master Circuit Ch2 1 0 14 Second circuit number that device is a master of Master Circuit Ch3 2 0 14 Third circuit number that device is a master of Master Circuit Ch4 3 0 14 Fourth circuit number that device is a master of Slave Circuit Ch1 0 0 14 First circuit number that device is a slave of Slave Circuit Ch2 1 0 14 Second circuit number that device is a slave of Slave Circuit Ch3 2 0 14 Third circuit number that device is a slave of Slave Circuit Ch4 3 0 14 Fourth circuit number that device is a slave of Scene 0 Levels 0 0 100 Levels applied to each of the four channels circuits when Scene 0 off scene is x Ch1 4 selected Scene 1 Levels 100 0 100 Levels applied to each of the four channels circuits when Scene 1 is selected x vA Ch1 4 Scene 2 Levels 75 0 100 Levels applied to each of the four channels circuits when Scene 2 is selected x s Ch1 4 Scene 3 Levels 50 0 100 Levels applied to each of the four channels circuits when Scene 3 is selected x vA Ch1 4 Scene 4 Levels 25 0 100 Levels applied t

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