basicdim Wireless Wireless module for basicdim

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Wireless Wireless module for Product description Wireless controllable with a Android / ios smart device o need for an external gateway device Forms automatically a wireless communication network with up to 127 nodes Small form factor for luminaire installation Configurable analog / digital output Analog output: 0 10 V / 1 10 V sinking / sourcing Digital output: Standalone DAI (compatible) Easily implemented RGB and colour temperature controls Controllable switched mains output Device firmware can be updated over-the-air 5-year guarantee È Standards, page 4 www.tridonic.com 1

Wireless Wireless module for Technical data Rated supply voltage 220 240 V Mains frequency 50 / 60 Hz Radio transceiver operating frequencies 2.4 2.483 GHz Max. output power radio transceiver +4 dbm Bus voltage DC DAI output 12 V Shortcircuit current DAI output 7 ma Max. DAI wiring length 1 m at 1 mm² cross section Operating temperature -20... +50 C tc point 70 C Storage temperature -25... +75 C Dimensions xwxh 56.5 x 35.8 x 22.3 mm Type of protection IP20 10 ø3,5 Ordering data 42,4 49,5 56,5 10 tc 35,8 Type Article number Packaging, carton Weight per pc. Wireless 28002212 100 pc(s). 0.048 kg 22,3 www.tridonic.com 2

ACCES- SORIES Wireless User Interface Product description Battery powered, wireless wall switch Controls all types of wireless devices 4 scenes Dim up / down Colour temperature control 5-year guarantee Ordering data Type Article number Packaging carton Weight per pc. Wireless User Interface 28002213 50 pc(s). 0.078 kg www.tridonic.com 3

1. Standards E 55015 E 61000-3-2 E 61000-3-3 E 61347-1 E 61347-2-11 E 61547 1.1 Glow wire test according to E 61347-2-11 with increased temperature of 850 C passed. 2. Common 2.1 Description Wireless is a wireless control unit for dimmable ED Drivers with 0 10 V, 1 10 V or DAI dimming interface. The device is intended to be integrated into a luminaire. The control output can be configured either as analog 0 10 V (and 1 10 V) or digital Standalone DAI control interface. When the output is configured as Standalone DAI, Wireless acts both as a controller and as a power supply making it possible to connect directly to an ED Driver with DAI interface without the need for an external DAI power supply. This so called Standalone DAI makes it possible to implement multi-channel luminaires with adjustable colour (RGB) or colour temperature, while keeping the wiring and number of components at their minimum. Wireless does not comply with IEC 60929 and therefore is not designed to be connected to an existing DAI network. The module can be used only in a closed system, i.e. inside a luminaire which does not have an external DAI interface. Wireless is controlled wirelessly by a smartphone or tablet with control app. Devices form automatically a secure wireless mesh network so that a large number of fixtures can be controlled from any point. o external gateway module is needed. Wireless can be controlled also from standard on/off wall switches. 2.2 Operation Tridonic Wireless is a wireless control unit for ED Drivers with 0 10 V, 1 10 V or DAI dimming interface. The device is intended to be integrated into a luminaire. The output can be configured either as analog 0 10 V (and 1 10 V) or digital Standalone DAI control interface. When the output is configured as Standalone DAI, Wireless acts both as a controller and a power supply making it possible to connect directly to an ED Driver with DAI interface without the need for an external DAI power supply. For applications where the ED Driver cannot be turned completely off through its control interface, Wireless has a controllable switched mains output. This mains output is taken directly from the mains input and routed through a fuse and a solid-state relay. The control output of Wireless is double insulated from the mains voltage. The control output is protected against short circuit. Wireless is controlled wirelessly by a smartphone or a tablet with control app. Multiple devices form automatically a mesh network, which can be controlled from any point. The network communicates directly with the smartphone or tablet. o external gateway device or Wireless A network is needed. Wireless has an integrated 2.4 GHz antenna. For optimum RF-performance, a special attention will have to be given when the device is integrated to a luminaire. See chapter 5.4 Placement for further instructions. The device can be operated also from a regular on/off wall switch. By flicking the switch on and off the user can select different pre-set modes. These modes can affect one or several devices on the network. This way the user does not have to have the smartphone or tablet at hand all the time in order to select the desired settings or modes. The settings and modes can be configured using the control app. They are automatically stored in the Tridonic cloud service. This way the same settings are available for everyone who is connected to the network. 3. Thermal details and life-time 3.1 Expected life-time Expected life-time Type ta 50 C Wireless tc 70 C ife-time 100,000 h The device is designed for a life-time stated above under reference conditions and with a failure probability of less than 10 %. www.tridonic.com 4

4. Interfaces / communication 4.1 Standalone DAI output By default, the output of Wireless is configured as DAI interface. In this mode Wireless can be connected to any ED Driver with DAI interface. The control output of Wireless can be configured also as a digital Standalone DAI control interface. With this configuration the module can be connected to an ED Driver with DAI interface. The DAI interface makes it possible, for example, to use multi-channel ED Drivers in applications where colour or colour temperature can be controlled. Wireless is designed to control only one ED Driver, whether it has a 0 10 V or DAI control interface. If multiple channels are wanted to be controlled simultaneously, a multi-channel ED Driver with DAI interface, or multiple Wirelesss connected to individual ED Drivers, will have to be used. The operation of the DAI interface has been divided into two. Basic operation does not require the use of ED Driver short addresses, i.e. it does not require pre-configured ED Drivers. Instead it utilizes broadcast commands forcing the ED Driver into a desired state. This method of control does not support multi-channel systems. For multi-channel systems, an advanced DAI interface will have to be used. This requires assigning short addresses to the ED Driver as well as configuring these addresses to the Wireless firmware. The short addresses are assigned to the ED Driver by using a USB-DAI configuration tool which is usually provided by the ED Driver manufacturer. The Wireless firmware can be configured by using Tridonic Utility application. ED Drivers with DAI interface can be switched off though DAI commands, so when using the Wireless in Standalone DAI configuration, it is recommended to power the ED Driver directly from mains voltage and not through Wireless. This way the ED Driver power consumption and inrush current may be ignored when designing a luminaire. Wireless is not designed according to IEC 60929 and therefore should not be connected to an existing DAI network. The module can be used only in a closed system, i.e. inside a luminaire which does not have an external DAI interface. To make a distinction between regular DAI system and a closed DAI system, term Standalone DAI is used in this datasheet. Wireless is designed to control only one ED Driver, whether it has a 0 10 V or DAI control interface. If multiple channels are wanted to be controlled simultaneously, a multi-channel ED Driver with DAI interface, or multiple Wirelesss connected to individual ED Drivers, will have to be used. 4.3 Mains output For applications where the ED Driver cannot be turned completely off through its control interface (e.g. 0 10 V and 1 10 V), Wireless has a controllable switched mains output. This mains output is taken from the mains input and routed through a solid-state relay. Solid-state relay switches only the live wire of mains voltage, while neutral is directly connected between mains input and output. Both the mains input and output are protected with a common 2 A slow blow fuse connected to the live wire. Do not connect the mains output directly to the ED Driver. It is strongly recommended to use an external relay to switch the mains supply for the ED Driver. The max. load of the relay output is 5 W. See 5.2 wiring diagram with external relay. 4.2 0 10 V output The output of the Wireless can also be configured as analog 0 10 V / 1 10 V dimming interface. The analog dimming interface of Wireless can sink or source up to 7 ma and is protected against short circuit. 0 10 V dimming interface enables only one channel dimming. If several channels are required, for example in RGB solution, multiple Wireless modules will have to be used together with multiple ED Drivers with 0 10 V dimming interface. The 0 10 V output may be used with only one ED Driver and it should never be branched to multiple ED Drivers. It is important to make sure that the wires of 0 10 V control interface are connected in right polarity. For this there are plus and minus signs printed on the top cover of Wireless. Wireless has also a switched mains output for powering the connected ED Driver. See chapter 4.3 for more information on this feature. www.tridonic.com 5

5. Installation / wiring 5.1 Wiring diagram DAI (compatible mode) * Wireless R ED Driver ~ ~ Isel2-1 Isel2-2 (GD) DA/ DA/ PRI SEC + ED ED * Max. wiring length 1 m with a cross section of 1 mm². 5.2 Wiring diagram analog dimming (0 10 V / 1 10 V) with external relay contact + ED Driver Wireless PE PRI SEC + ED ED Relais 5.3 Wiring diagram as push button module for wireless switching 5.4 Wiring diagram as sensor module for wireless switching Wireless Smart SWITCH Wireless www.tridonic.com 6

5.3 Wiring type and cross section The wiring can be in stranded wires with ferrules or solid with a cross section of 0.75 1.5 mm² (14 22 AWG). Strip 6 7 mm of insulation from the cables to ensure perfect operation of the push-wire terminals. Use one wire for each terminal connector only. Use each strain relief channel for one cable only. wire preparation: 0.75 1.5 mm² 6. Miscellaneous 6.1 Conditions of use and storage Environmental conditions: 0 % up to max. 80 %, not condensed Storage temperature: -25 C up to max. +75 C The devices have to be acclimatised to the specified temperature range (ta) before they can be operated. 6 7 mm 5.4 Placement Wireless has an integrated antenna for easy integration. In order to maximize the range in every direction some design guidelines should be taken into consideration when mounting the device. The antenna is located on the corner of the enclosure. It is on the bottom side of the internal PCB (Printed Circuit Board) right above the bottom of the device. Wireless has some large components on the top side of the PCB, so by placing the antenna on the bottom side the other components have as little impact on the antenna performance as possible. When the device is mounted on a metal plate (e.g. frame of a luminaire), it may efficiently block the radio frequency signal. In this case, a cut-out underneath the antenna may be needed for the RF signal to exit the structure. The cut-out area should be as large as possible. Also the device should be placed as far away from any vertical metal structures as possible. 6.2 Additional information Additional technical information at www.tridonic.com Technical Data Guarantee conditions at www.tridonic.com Services ife-time declarations are informative and represent no warranty claim. o warranty if device was opened. 16 3,5 12 2,5 Antenna cutout is located on the bottom of the device. The range of the communication signal is depending on the environment e.g. luminaire, construction of the building, furnitures or humans and needs to be tested and approved in the installation. To ensure a good radio connection, do not cover the Wireless completely with metal! 5.5 Installation note Max. torque at the clamping screw: 0.5 m / M3. www.tridonic.com 7