AT-BB-IN. RF input unit. Product Guide. Overview. Features
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1 Product Guide AT-BB-IN RF input unit Overview The AT-BB-IN Input Unit provides a control interface between a lighting system and external devices such as: Button/switch plates Security systems AV equipment 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 RF control message to other devices, triggering various actions such as recalling a scene, raising/lowering light levels, turning override on/off, starting and stopping sequences, etc. The integral RF transceiver allows wireless communication with other An- compatible products. All functionality is fully programmable using an infrared handset (e.g. the UHS4 or UNCDHS) or PC based AC programming software. The unit is powered either by the internal battery or via an external Vdc supply. Front features Features Infrared Receiver (IR) Allows the unit to receive programming commands from an IR Handset (e.g. the UHS4) when IR Receive mode is activated (see Config Button and Status EDs below). Config Button Press this to put the unit into IR Receive mode, enabling it to receive programming commands from an IR Handset. Back features Status EDs These flash Red and/or Green to indicate the following: IR Receive mode active Valid setting received Invalid setting received Software reset received Factory reset received at second intervals Battery (type CR477) Provides power to the unit if an external supply is not used. Optional Vdc Supply Terminal To power the unit from an external supply, connect the supply to this terminal ensuring correct polarity. Refer to Technical Data on page 8 for power supply specification. Plug-in RJ45 lead and socket A short 8 core flat cable with plug that is supplied with each unit, used to connect the inputs to external devices.
2 Installation The AT-BB-IN Input Unit can either be mounted to any suitable solid surface or concealed inside a backbox. ounting bracket location for surface mounting. Surface ounting ethod Fit the two snap-on mounting brackets on the back side of the unit as shown in opposite. Use the holes in the mounting brackets to affix the unit to a wall or other solid surface using suitable screw fixings. Backbox ounting ethod 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 opposite. The unit can then be secured to the backbox using suitable fixing screws (up to.5). ounting bracket location for secured backbox mounting. NOTE: The mounting bracket holes are spaced to suit either a UK (6.mm pitch) or European (6mm pitch) backbox. CAUTION: Do not over tighten the fixing screws as this may cause the brackets to split. Electrical connection Connections to the AT-BB-IN Input Unit are made via the RJ45 lead supplied. The lead has 8 wires, comprising 7 switch inputs plus a common connection (see below). Connect the lead wires to suitable push-buttons or switches as required (see wiring examples on page ). Each input has two possible states: Inactive when the input is unconnected (i.e. open circuit), and Active when the input is connected to common, (i.e. during button or switch closure). Each input can be configured (using the Switch Type parameter) for use with either momentary or latching type buttons and switches. omentary operation is the default, used for normallyopen push-buttons or centre-retractive type switches. atching operation is typically used for toggle type switches that remain in either a closed or open state. IPORTANT NOTE: atching ode is not suited to battery operation due to the continuous current drain while a switch is closed. An external V power supply must, therefore, Input connection identification
3 Wiring examples Example : Using individual push-buttons Example : Using centre retractive switches Example : Using latching switches (for use with external Vdc supply only) IPORTANT NOTE: atching ode is not suited to battery operation due to the continuous current drain while a switch is closed. An external V power supply must, therefore, be connected if atching ode is used.
4 Basic programming The functionality of the AT-BB-IN Input Unit is controlled by a number of parameters which can be changed or programmed by any of the following devices: UHS4 Infrared Handset UNCDHS Infrared Handset (with CD). See advanced programming section starting on page 6. AC programming software + AT-PC-USB RF USB Dongle This product guide shows how to program the AT-BB-IN using the UHS and UNCDHS. Step : Entry into Configuration mode Configuration parameters can be programmed via Infrared or RF commands. For RF command connect the AT-PC-USB and run AC programming software. Function IR mode RF mode Entry Press button momentarily to enable IR data reception Press button for secs to activate configuration via RF commands Timeout secs Every time a config parameter is received in active mode it will set timeout to secs. ED indication Turns red ED to state IR mode is enabled. Blinks green ed if parameter is programmed correctly. Blinks red ed if parameter is not programmed correctly. Step : Set input channel addresses The addressing for an input channel defines the devices that will respond to any control messages sent by the input unit. For example, activating an input that has its ocal Code set to, generates a control message that will only be actioned by devices that also have a ocal Code of. To program the settings for a specific input channel you must specify the appropriate channel number (i.e. to 7) using the programming device. If no channel number (or channel ) is specified, all input channels will be set to the same address. Turn green ED to state RF mode is enabled. 4
5 Basic programming Step : Choose a preset configuration To simplify the programming of commonly used applications, a number of Preset Configurations are available. Preset is implemented by default. Preset will set default values in circuit mode for omentary type switch and preset will set default values for atch type switch. Preset will set default values in scene mode for omentary type switch and preset will set default values for atch type switch. Addressing parameters will not change on changing presets. Configuration parameters will not change between Preset,, for circuit mode and between preset, and for scene mode. Hint: Where scene numbers or channel numbers are given in a Preset Configuration, these can be changed (after applying the Preset) by using the ap Scene/Channel to Button/Input command. Refer to the UHS4 user instructions for further assistance. Circuit mode =/off/raise/lower Preset No. Input Input Input Input 4 Input 5 Input 6 Input 7 (default) Function Circuit No. evel time Function Circuit No. evel time Function Circuit No. Function Circuit No. evel time / Up / / /down / / / Up / / /down O4 4 / / /up 5 5 / / /down 6 6 / / Em Test Em Test Em Test Em Test Scene mode =/off/raise/lower Preset No. Input Input Input Input 4 Input 5 Input 6 Input 7 Function Scene No. time Function Scene No. time Function Scene No. Function Scene No. time /Up / Key - switch types omentary push to make switch atching switch /Down / /up / 4 /down 4 4 / Up Active Scene /Up 5 5 / Down Active Scene /Down 6 6 / 5
6 Advanced programming (UNCDHS) Input Behaviour Changes in the state of an input (e.g. from inactive to active) generate different events that can then be used to trigger various control functions. The events generated depend on whether momentary or latching mode is selected (via the Switch Type parameter - Param Set ). omentary ode Operation In this mode the input is usually inactive (open circuit) and only active (shorted to common) when the button or switch is pressed. This gives rise to four possible input events: Single Press Double Press ong Press Hold (switch closed for longer than ms) ong Press Release (switch opened after ong Press Hold) atching ode Operation This mode is typically used for toggle type switches that remain in either a closed or open state for long periods. atching mode, therefore, gives rise to two possible events: Pressed (switch closed) Released (switch open) Programming notes Parameter Name Default Value Range / options Description Device Addressing - This will set the addressing parameters for all the channels in input unit. ocal Code to 999 This number denotes the local code for all input channels available. Sub ocal Code Not set to 99 to clear A number corresponding to the Sub ocal Code to be controlled by the associated input channel. Area Code(s) Not set to 999 A number corresponding to the Area Code of all input channels. Up to area codes can be set for each channel. Product ID Automatically assigned by the device to 999 A number used to uniquely identify each device within a range of devices that are set to the same ocal Code. Building Code to 999 A number shared by all devices that belong to the same building or system. Individual Input Channel - If a particular channel needs to be modified, press channel button and select particular channel number. Addressing Same method as device addressing above. The addressing for each individual input can be changed. ap to Scene to to for ocal scenes. to for area scenes. Control Functions Each type of input event can be used to trigger any of the following control functions: Scene Select used to select a specific lighting scene. Depending on the input channel addressing both ocal and/or Area scenes can be selected. Scene Raise or ower used to increase or decrease the overall lighting levels for the currently active scene. Circuit Absolute evel used to set the level of a specific output channel. Circuit Raise or ower used to increase or decrease the level of a specific output channel. Sequence Control used to start, stop or pause a sequence of scenes. Override Control used to select global override scenes, typically during emergency situations (e.g. fire evacuation). Emergency Test used to test device/systems for correct operation during By default at first Power Addressing parameters will be set to default values. Set addressing parameters as required. Select the required Preset from the Device Config menu from handset. If the user wants to operate in circuit mode, before selecting any preset select preset. This will set all circuit mode parameters to default. Now select the required preset and change the parameters in configuration as required. Similarly for Scene mode operation select Preset first and then required preset. To configure custom parameters from the handset. Navigate to Input channels, AN Select Product AT-BB- IN-RF Input Channels. Using the Channel Button, select the particular channel to be configured or select A channels to configure all channels. Scroll down to Param Set and select the correct Param Set number for the type of switch and operation required (see page 7 of product guide). Example. Two position momentary switch select and send Param Set number 4 for each input used. Next navigate to Input Function, select and send the required input function number for each input (see opposite). Example. scene Recall on input, select input using the channel button, and send a Input Function number, for scene recall on input, select input and send Input Function number. If it is set to NONE for particular input no action will be generated. After these two parameters are set other parameters like ocal scene, rate etc can be configured. ap a scene to the button/input number specified. 6
7 Parameter Name Default Value Range / options Description Individual Input Channel - continued Advanced programming (UNCDHS) ap to Circuit to ap a circuit to the button/input number specified. Fade Time to It is same as Rate for particular channel. Param Set Events for a latching switch Edge Press Edge Release Events for a toggle latching switch Edge Press Edge Release Events for a momentary switch 4 Single press 5 Double press 6 Single press and hold 7 Double press and hold Events for a toggle momentary switch 4 Single press 5 Double press 6 Single press and hold 7 Double press and hold Input function. None. scene recall. scene recall. Scene raise 4. Scene lower 5. Scene stop 6. at last scene 7. at last manual scene 8. at last level 9. circuit absolute. circuit absolute. Circuit raise. Circuit lower. Circuit stop 4. Run sequence 5. Pause sequence 6. Stop sequence 7. Partition open 8. Partition close 9. User override on. User override off. User override release. System override on. System override off 4. System override release 5. Emergency test start 6. Emergency test stop Dbl Press time 9 (4ms) Hold time 98 (s) ocal Scene / evel ocal Step Scene / evel Selects the Input Parameters which are to be modified on the next IR command. Input switch can be configured to be active on one of the event selected. Selects one of the input functions for the event. Values < 5 will change the input function with initialisation of all the function parameters to default. If the values are offset with 5 it will change input function without initialisation of all the function parameters to default. User override will override presence detection and lights will remain until new command is issued from input unit. System Override will override presence detection and any other command issued by input unit. It is like permanent override only disabled by system override release command. Starts/Stop Emergency test. to 999 Time (in 's of milliseconds) that a second (the double) button press must occur within before the input action is interpreted as a single press. to 999 Time (in 's of milliseconds) that the button must be held down for before it is interpreted as a press & hold. Scene ode to to will select local ON scene. to will select Area ON scene Circuit ode to will select ocal ON evel to will select Area ON evel. Scene ode to to will select local Step scene. to will select Area Step scene Circuit ode to will select ocal Step evel to will select Area Step evel. The local scene request sent to all devices with the same ocal Code, when movement is detected. If input function selected is Scene recall then this parameter can act as local or area scene depending on the value set. If input function selected is circuit absolute or circuit absolute then if value is set between to it will set ocal ON level to the level set. If value is set between to it will set Area ON evel to normalized to to % level. Value of to will correspond to to % of light level. If a ocal Step Scene is specified this will be requested first when the Sensor switches off. If a Step Scene is not specified, or if it times out, the ocal Of f Scene will be implemented. Step Scene is only implemented when no movement is detected during timeout period. 7
8 Advanced programming (UNCDHS) Parameter Name Default Value Range / options Description Individual Input Channel - continued ocal Scene / evel to to will select local OFF scene. to will select Area OFF scene ocal Time to Ignore the on scene to 59 to 59 in second increments. 6 to 77 to 59.5 minutes in 5 minutes increment. 78 to 54 to hours in 5mins increment. Infinite timeout. The local scene that is activated to turn the lights off. (says area scene in UNCDHS help) This is common Time parameter between Input function ON/OFF Scene Recall, ON/OFF Circuit Absolute, Start/Stop Emergency. ocal Step Time to Same as ocal time for scene and circuit modes. ocal Rate seconds to instant to 59 to 59 in second increments. 6 to 77 to 59.5 minutes in.5 minutes increment. 78 to 54 to hours in 5mins increment. Infinite This is common parameter between input functions depending on which is enabled. It is common between scene recall, scene raise/ lower, at last scene, at last manual scene at last level, Circuit Circuit raise/lower. ocal Rate seconds to Fade at end of step time to off scene. This is common parameter between functions scene recall, Circuit, scene raise/lower. at Output No Yes/No Enable/disable toggling at the output (eg used by a scene plate). s between raise/lower of scene or circuit if enabled. at input No Yes/No Enable/disable toggling at the input (eg single-button system). s between Set and Set parameters. This is used in Preset and for toggle function. Circuit Number to 999 Sets the circuit number for the corresponding input switch function below. at last level circuit absolute circuit absolute Circuit raise Circuit lower Sequence Number to 999 Configure the sequence number to be active. Device config menu RF Enabled +Rx+Tx +Rx+Tx -Rx+Tx +Rx-Tx -Rx-Tx Enable / disable radio communication between units. IR Enabled Yes Yes/No ce IR reception is disabled, the only IR command that works is this one to allow re-enabling. Prevents device from responding to IR. RF Channel, or 868Hz band radio channels G, G, Gwith different duty cycle restrictions RF Tx Power to 7 =-dbm, =-dbm, =-5dBm, =dbm, 4=+dBm, 5=+5dBm, 6=+8dBm, 7=+dBm Discovery Declare Send a requested Discovery Declare Presence message and stay awake. Soft Reset Value doesn t matter Start the processing from scratch, clearing temporary variables, but no loss of configs. Factory Reset Preset Config to for circuit mode to for Scene mode Restores factory default settings, also called hard reset. An- products require the device code. 8
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10 Replacing the Battery Press-in the large retaining clip sufficiently to allow the two halves of the casing to be separated. ift out the PCB module, taking care not to damage the electronic components. Slide out the battery from its mounting clip and insert a replacement battery (type CR477 or equivalent), ensuring correct polarity. Carefully reassemble the unit, ensuring that the three retaining lugs are correctly located before clipping the casing back together. Accessing the internal battery Due to our policy of continual product improvement CP Electronics reserves the right to alter the specification of this product without prior notice. Technical data Weight.5kg Battery Vdc lithium battery, type CR477 (supplied with unit) Battery ife Greater than 7 years with typical usage Optional External Supply Requirements: Supply Voltage Vdc regulated Supply Current 5mA max. Supply Power 6mW max. Terminal Capacity.5mm Order code blank Region European Union -A Australia & New Zealand Part numbers EBDSPIR-AT-PR EBDSPIR-AT-DD EBDSPIR-AT-AD AT-S-R AT-S-R-SA AT-S-DDR AT-S-DDR-SA AT-S-ADR AT-S-ADR-SA VIT4-ATOD VIT6-ATOD-AD VIT6-ATOD-DD UNCDHS F ES 545 Radio frequency 868Hz Compliance EN - V.. EN 489- V.8. EN 489- V.. 95Hz AS/NZS 468:8 Receiver Class Transmitter Duty Cycle <% on g band (default band) <.% on g band <% on g band Range The maximum RF range between An- devices is m in free air and up to m indoors. However the materials used within a building will vary and this will impact upon the RF range. In reality the nature of how the An- s hybrid-mesh works means that in most scenarios the individual range of an An- product will not be important. Temperature ºC to 5ºC Humidity 5 to 95% non-condensing aterial (casing) Flame retardant polycarbonate Dimensions - without brackets Dimensions - with brackets RF Ceiling PIR presence detector switched RF Ceiling PIR presence detector DAI/DSI dimming RF Ceiling PIR presence detector -V dimming RF relay controller RF relay controller (standalone) RF DAI/DSI + relay controller RF DAI/DSI + relay controller (standalone) RF -V + relay controller RF -V + relay controller (standalone) RF Switching module RF VIT6 -V module RF VIT6 DAI/DSI module Universal CD IR handset Hereby, CP Electronics td, declares that this AT-BB-IN is in compliance with the essential requirements and other relevant provisions of Directive 999/5/EC. The declaration of conformity may be obtained for CP Electronics td Brent Crescent, ondon, NW 7XR, UK. If any of these symbols are on the product or battery, the product or battery must be disposed of in the correct manner and must not be treated as household or general waste. C.P. Electronics td Brent Crescent ondon NW 7XR United Kingdom Tel: + 44 () 9 67 Fax: + 44 () enquiry@cpelectronics.co.uk Ref: #WD7 Issue
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