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HS HI S,, PCS outdoor DIM chronostep outdoor Product description Pulse packets for increased ignition energy (pulsecotro technology) Flicker-free light Colour stability thanks to constant power o acoustic resonance Safety shutdown if a lamp is faulty or missing Greatly reduced reignition time Hardly any EMC interference in the ignition phase Screw terminals: 1. mm² for stranded wire, 2. mm² for solid wire Dimming via digital interface oise-free precise control via DAI, DSI or stepdim Fault reporting in DAI mode Unit fully encased to protect against dust, moisture and vibration Enhanced protection against mains transients Enhanced insulation Casing: polycarbonate, black -year guarantee È Standards, page Wiring diagrams and installation examples, page www.tridonic.com 1

S,, PCS outdoor DIM chronostep outdoor Technical data Mains voltage range AC voltage range Mains frequency Max. ignition voltage, S Max. ignition voltage PCS Operating frequency of protection 220 20 V 18 2 V 0 / 0 Hz kvp 2. kvp 1 Hz IP20 0 0, Ordering data 10 10 Article number Packaging, carton Packaging, pallet Weight per pc. For luminaires with 1 lamp PCS 0 outdoor DIM chronostep 80 1 pc(s). 80 pc(s). 0.20 kg S 100 outdoor DIM chronostep 80 1 pc(s). 80 pc(s). 0.0 kg S 10 outdoor DIM chronostep 80 1 pc(s). 80 pc(s). 0. kg Specific technical data amp wattage amp type For luminaires with 1 lamp Article number Dimensions x W x H amp power Circuit power1 EEI Efficiency Current at 0 Hz 20 V λ at 0 Hz 20 V Max. cable tc point length to lamp max. Ambient tc/ta for temperature ta 0,000 h 1 x 0 W HS PCS 0 outdoor DIM chronostep 80 10 x 0 x 0 mm W 81 W A2 > 88 % 0. A 0. m / 00 pf 0 C -2 + C 0/ C 1 x 100 W HI & HS S 100 outdoor DIM chronostep 80 10 x 0 x 0 mm 100 W 10 W A2 > 1 % 0.0 A 0. m / 00 pf 0 C -2 + C 0/ C 1 x 10 W HI & HS S 10 outdoor DIM chronostep 80 10 x 0 x 0 mm 1 W 11 W A2 > 1 % 0.0 A 0. m / 00 pf C -2 + C / C 1 At ta = 2 C. www.tridonic.com 2

Installation instructions Wiring type and cross section Stranded wire with end ferrule with a cross section of 1. mm² or solid wire up to 2. mm² may be used for wiring. Strip mm of insulation from the cables to ensure perfect operation of the screw terminals. wire preparation: 0. 2. mm² mm ote on wiring The length of the lamp wires is limited by the value of cable capacitance. The maximum of 00 pf would enable connection of approximately metres of lamp wire. To avoid the damage of the control gear, the wiring must be protected against short circuits to earth (sharp edged metal parts, metal cable clips, louver, etc.). In class 1 luminaires it is necessary to earth the ballast and the luminaire via the earth terminal. Protection class 2 luminaires do not need an earth connection. Insulation must be provided by the luminaire design. 1 DA Circuit diagram S class 1 application 1 DA Radio interference Do not cross mains and lamp cables. Do not lay mains cables together with lamp cables (ideally they should be 10 cm apart). Do not lead mains cables too closely along the electronic ballast. Twist lamp cables. Increase the distance between lamp cables and earthed metal surfaces. Keep the mains cable in the luminaire short. Parallel runs (x) of mains and lamp cables must be kept as short as possible. Mounting recommendation To ensure optimum heat removal the ECG should be mounted on a metal plate (luminaire body). o insulators between the ECG and the the cooling surface (air, adhesive tape, etc.). Finally, the temperature measurement remains important. luminaire gap luminaire If several ballasts are installed in masts, boxes, etc., measures must be taken to avoid overheating of individual components. Harmonic distortion in the mains supply THD PCS 0 outdoor DIM chronostep < 10 % S 100 outdoor DIM chronostep < 10 % S 10 outdoor DIM chronostep < 10 % Ballast lumen factor E 02 8.1 AC/DC-BF at U = 18 2 V, 2 C PCS 0 outdoor DIM chronostep 1.00 S 100 outdoor DIM chronostep 1.00 S 10 outdoor DIM chronostep 1.00 Safety switch off End of life of the lamps At the end of their useful life, lamps often cycle on/ off. The S ballast recognises this condition and switches off the lamp, after three complete on/off cycles and whilst the supply has been unswitched. Complete lamp switch-off enables easy identification of a defective lamp in the application. After a change of the faulty lamp and an interruption of the mains supply (mains reset) or send a O-OFF sequence the ballast will strike the lamp. When there is no lamp in circuit or a defective lamp is connected to the ballast, the ballast will switch off after apr. 2 minutes. Overtemperature shutdown The ballasts are equipped with a thermal shutdown to protect against destruction. After shutdown they can be restored with an OFF-O sequence via or with a mains reset. Overload strength 20 V AC / 1 h Important advise When a lamp is changed (at the end of its life), if a lamp is missing, or after overtemperature shutdown the mains voltage of the ECG must be disconnected. Alternatively an OFF O sequence can be sent. Warning starting voltage up to! ot suitable for use with lamps with integral ignitors. A list of released lamps for the save operation with S can be found on www.tridonic.com Techn. Data amp matrix amp Matrix for HID Standards E 01 (radio interference) E 1000--2 (mains harmonics) E 1-2-12 E 1 (interference immunity) IEC 28-20 (DAI standard) CE mark EEC mark Transient protection /-PE - PCS 0 outdoor DIM chronostep kv kv S 100 outdoor DIM chronostep kv kv S 10 outdoor DIM chronostep kv kv according to E 1000--. Protected against a single 10 kv pulse. Circuit diagram S class 2 application www.tridonic.com

oading of automatic circuit breakers Automatic circuit breaker type C10 C1 C1 C20 B10 B1 B1 B20 Installation Ø 1. mm 2 1. mm 2 1. mm 2 2. mm 2 1. mm 2 1. mm 2 1. mm 2 2. mm 2 PCS 0 outdoor DIM chronostep 1 2 2 8 1 2 0 S 100 outdoor DIM chronostep 10 18 2 0 10 1 1 S 10 outdoor DIM chronostep 1 20 20 Dimming of HID lamps Using S ballasts HID lamps can be dimmed down up to 0 % light output. In principle all sodium lamps can be dimmed down to 0 %. Due to the lamp characteristics of metal halide lamps only selected lamps are released for dimming. The minimum dim level of / 0 / 0 / 10 outdoor DIM chronostep is set according to the lamp specification. If lamps are operated below their specified minimum dim level, performance and life-time can be declined. After starting up the S stepdim the connected lamp needs to be burned in for the first 1 min in operation. A power reduction within these 1 min is not possible. After the burn in phase, when leaving the interface open the ballasts stay on 100 % light output. At a dimming level of 0 % the light output can vary due to the lamp characteristics between 20 and %. A list of released lamps for the save operation with S can be found on www.tridonic.com Techn. Data amp matrix amp Matrix for HID Factory settings minimum dimming value DAI DAI % PCS 0 outdoor DIM chronostep 222 0 % S 100 outdoor DIM chronostep 22 0 % S 10 outdoor DIM chronostep 22 0 % Dimming via Via the lamp can be dimmed between the preadjusted minimum and DAI 2 / DSI 2 (100 %). Using levels between 1 and the preadjusted minimum dimm level the light output is the minimum dimm level. 100% amp Power ight Output Dimming via stepdim Via stepdim it is possible to select 2 dim levels via mains. The two levels are programmable using. When connecting mains (e.g. via ZRM UM A00*) to the interface the ballast regulates to 100 %. After switching off the interface the ballast regulates to 0 % within 0 s. e.g. ZRM UM A00* 100 % 1 DA 8 S outdoor DIM B011 S outdoor DIM chronostep 100 % operating SK1 amp e.g. ZRM UM A00* 0 % 1 DA 8 S outdoor DIM B011 S outdoor DIM chronostep 0 % operating SK1 amp Control via Control input (DA) Digital signal can be wired on the terminals DA. Digital signal The control input is non-polar and protected against accidental connection with a mains voltage up to 2 V. The control signal is not SEV. Control cable should be installed in accordance with the requirements of low voltage installations. Different functions depending on each module. Standards (DAI) HID EVG device type 2 DAI 0 = 0 % light DAI 1 222 = 0 % light Programmable parameters Groups 1 1 Scenes 1 1 (values 0 % / 0 % 100 % / MASK) Power On evel (values 0 % / 0 % 100 %) System Failure evel (values 0 % / 0 % 100 %) Queries via DAI standard: amp wattage (value yes/no) amp error (value yes/no) via Tridonic mastercofigurator: amp type Device type Article number Production date Serial number Software version Commissioning 0% % 20% 1 222 2 OEM Memory Bank The customer can store additional luminaire information in the ECG (Memory Bank 1), such as luminaire type and article number. Data is written to Memory Bank 1 in accordance with DAI standard IEC 28. www.tridonic.com

Commissioning of S outdoor DIM ballasts Because of the special characteristics of HID light sources, S outdoor DIM ballasts (Device 2) cannot be addressed in the same way as conventional DAI ballasts for fluorescent or halogen lamps for example. For visualisation during the grouping phase the HID lamps must remain switched off before and during the addressing phase as they can only be properly ignited in the cold state. Dimmed operation of these lamps is not recommended, which also calls for different handling during commissioning. Tridonic recommends mastercofigurator V2.0.0 software for commissioning S outdoor DIM ballasts (download from www.tridonic.com Services Software). IMPORTAT: Other DAI controllers can only be used for commissioning if they handle DAI Device 2 units appropriately (see Requirements of control products). Requirements of control products Initialization/addressing phase: IITIAIZE RECA MI EVE TERMIATE (This command must be sent first) When the IITIAIZE command is sent, S outdoor DIM devices change the RECA MI value to 0 % Ê devices switch off/remain switched off (ast command in the initialization phase) When the TERMIATE command is sent, S outdoor DIM changes the RECA MI value back to 0 % (100 % light) The high ignition voltage of high pressure lamps can lead to interferences. During the ignition time the communication can be disturbed. Therefore the ballast might not react during the ignition phase. This has to be considered especially when using gateways. Realisation with Tridonic controls Commissioning Operation DAI GC G x-touchpae G G x-touchbox G G DAI TOUCHPAE G Software mastercofigurator G G Overview commissioning cycle with mastercofigurator V2.0.0 100% light 1. Cooling phase 2. Initialization/ addressing phase. Grouping phase. Operation Step-by-step commissioning with mastercofigurator V2.0.0 1. Cooling phase HID EVG Device 2 The lighting must have been switched off before startup for at least 10 min. (visualization/grouping is not possible with hot lamps) 0% 10 min. lamp first device first outdoor DIM lamp second device second outdoor DIM 2. Initialisation and addressing phase aunch DAI mastercofigurator Click on Adressing wizzard and follow the on-screen instructions. start Commissioning comparison table Before commissioning the installation Initialisation and addressing phase Visualisation in the grouping phase Operation first device selected (Recall Max.) DAI HID ballast S outdoor DIM Devices must have been switched off for at least 10 minutes! Devices remain switched off Selected device starts the lamp at 100 % If a different device is selected the previously selected device switches off with a maximum delay of 10 s Visualisation/grouping is not possible with hot HID lamps! Devices can be controlled/operated with other control products second device selected (Recall Max.) Standard DAI ballast e.g. PCA Excel oneall end Devices fade to minimum value On successful addressing the devices fade up to 100 % At the end of the addressing phase the devices fade down to the minimum value Selected device fades from minimum value to 100 % If a different device is selected the previously selected device fades to the minimum value Devices can be controlled/operated with other control products S outdoor DIM devices remain dark during the entire addressing phase. In contrast, DAI devices for fluorescent lamps, EDs and incandescent lamps fade down to their minimum value and go to 100 % during the addressing phase. At the end of the addressing phase they fade back to their minimum value.. Visualisation in the grouping phase Activate the Enable optical selection feedback by ticking the checkbox. If a S outdoor DIM device (Device 2, special symbol) is selected in mastercofigurator the appropriate device switches on. It remains on until a different DAI device is selected in the system. S outdoor DIM then switches off after a maximum delay of 10 seconds.. Operation S outdoor DIM devices can be switched powerless with a broadcast signal (DAI or DSI, without addressing of the devices) S outdoor DIM devices can be addressed and operated individually or in groups with a DAI signal. For examples with Tridonic controls please see matrix above. www.tridonic.com

chronostep function In the outdoor lighting and street lighting sector, it often makes sense to dim the lighting level during night hours in order to save energy. The chronostep function is a tool that makes this easy to do. The device automatically measures the switch-on and switch-off times of the lighting installation over the past three days. The switch-on and switch-off times are typically the times at which the sun sets and rises. The midpoint of these two reference points is the time referred to as Virtual Midnight. The overall time interval between switch-on and switch-off points is called On Time. Programming With appropriate software and a USB interface different functions can be activated and various parameters can be configured in the outdoor DIM. All that is needed is a DAI-USB and the software (mastercofigurator). mastercofigurator For programming the device configuration and for resetting. For further information of the programming use the product manual please visit www.tridonic.com otice When calculating the On-Time, only values between 2 and 2 hours are counted. Values less than 2 hours could indicate a power failure and are therefore not saved. For settings longer than 2 hours, 2 hours is saved as the maximum possible value. Two different output profiles are used to adjust the function settings. These profiles define which parameters can be adjusted. Profile 1: Setting Time 1 and Time 2 Two time intervals can be defined using Profile 1 (formerly UM):Time 1 defines how many hours before Virtual Midnight the lighting is dimmed to a lower level; Time 2 defines how many hours after Virtual Midnight the dimming level is raised again. The two dimming levels are preset to fixed percentage values that cannot be modified. Dimming level Virtual midnight 100 % 100 % 0 % On Time 1 Time 2 Off Time On time Time 1 and Time 2 can be set via O/OFF cycles of the mains supply voltage (programming mode 1). Profile 2: Setting Time 1, 2,, and and Dimming level 1, 2 and Profile 2 can be used to define four time intervals and three dimming levels. The combination of values allows more precise control of the dimming level at different times before and after Virtual Midnight. Dimming level Virtual midnight Dimming level 1 Dimming level 2 Dimming level On Time 1 Time 2 Time Time Off Time On time www.tridonic.com

Temperature range The ta temperature value is the basis for specifying the rated life. The relationship between the tc temperature and the ta temperature depends on the design of the luminaire. S outdoor chronostep is designed for an average life of 0,000 hours under rated conditions, with a failure probability of less than 10 %. This corresponds to an average failure rate of 0.2 % per 1,000 hours of operation. The specified tc temperature is the maximum permitted value (rated temperature according to E 1-1). Above this safety-related value the thermal cutout protects the device against damage. The expected life-time values are shown in the following table. The tc values are the relevant values here. Isolation and electric strength testing of luminaires devices can be damaged by high voltage. This has to be considered during the routine testing of the luminaires in production. According to IEC 08-1 Annex Q (informative only!) or EEC 0-Annex A, each luminaire should be submitted to an isolation test with 00 V DC for 1 second. This test voltage should be connected between the interconnected phase and neutral terminals and the earth terminal. The isolation resistance must be at least 2 MΩ. As an alternative, IEC 08-1 Annex Q describes a test of the electrical strength with 100 V AC (or 1.1 x 100 V DC). To avoid damage to the electronic devices this test must not be conducted. Expected life-time amp type amp power ta 0 C 0 C C 0 C PCS 0 outdoor DIM chronostep HS 1x0 W tc C C 0 C x ife-time > 100,000 h 80,000 h 0,000 h x S 100 outdoor DIM chronostep HI/HS 1x100 W tc C C 0 C x ife-time > 100,000 h 80,000 h 0,000 h x S 10 outdoor DIM chronostep HI/HS 1x10 W tc 0 C 0 C C x ife-time > 100,000 h 80,000 h 0,000 h x Storage conditions Humidity: % up to max. 8 %, not condensed (max. days/year at 8 %) Storage temperature: -0 C up to max. +80 C The devices have to be within the specified temperature range (ta) before they can be operated. Additional information Additional technical information at www.tridonic.com Technical Data Guarantee conditions at www.tridonic.com Services o warranty if device was opened. www.tridonic.com