PHASED OUT. DALI interface terminals are provided to allow control and monitoring via a seperate controller.

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1 Emergency lighting modules with DAI interface T, T, TC-DD, TC-F, TC- linear and compact lamps EM 00 V 0/0 Hz RoHS 0 0 Description: ow profile emergency lighting modules with DAI interface and automatic testing facility to cover hour and hour duration operating from icd and imh batteries. All modules incorporate five pole technology for use with HF ballasts and have preheat starting and permanent cathode heating during the emergency operation. Boost starting for seconds at higher power levels is provided for all lamps to ensure rapid warm up, optimised lamp life and improved initial visibility during an emergency operation. Power control technology ensures maximum emergency ballast lumen factors for all lamps on a given module. 0 DAI interface terminals are provided to allow control and monitoring via a seperate controller. When the EM operates in Selftest mode testing is being conducted on a default weekly functional and weeks duration basis with adaptive duration testing feature to minimise risk. Fitted with the unique EZ easy addressing feature which uses the ED to indicate the DAI address during commissioning. EM h duration icd.0 Ah D cells or imh.0 Ah EM 999 EM 999 EM 9999 EM h duration standard BF icd. Ah or imh.0 Ah EM 9990 EM 999 EM 999 EM PRO HO EZ h duration high output icd.0 Ah D cells or imh.0 Ah EM HO 999 EM HO 999 EM HO 999 icd. Ah Accu-iCd C A stick 9999 Accu-iCd C B * side by side 9999 Accu-iCd C C * stick stick 9999 Accu-iCd C A stick 9999 Accu-iCd C B * side by side 9999 Accu-iCd C C * stick stick 9999 Accu-icd C A stick 9999 Accu-iCd C C stick stick icd.0 Ah D cells Accu-iCd A stick 999 Accu-iCd B side by side 999 Accu-iCd C stick stick 999 Accu-iCd A stick 999 Accu-iCd B stick stick 999 Accu-iCd A stick stick 999 imh.0 Ah Accu-iMh C A stick Accu-iMh C A stick 9990 Accu-iMh C B * side by side 9990 Accu-iMh C A stick 9990 Accu-iMh C C stick stick 9990 imh.0 Ah Accu-iMh C A stick 9990 Accu-iMh C A stick 999 Accu-iMh C A stick 999 Accu-iMh C C stick stick 999 * on request Features: Module DAI interface for control and reporting ow profile cross section ( mm x 0 mm) pole technology For use with HF ballasts icd or imh battey options 0 hour accu recharge time hour and hour operation High and standard BF for hour versions Bi-colour ED to indicate status AC operation of lamps Pre-heating of cathodes during emergency operation Permanent cathode heating during emergency operation Boost starting facility for all lamps Rest mode function Electronic multilevel charging system Deep discharge protection ing condition amp condition Charge condition Patented EZ easy addressing feature using ED icd or imh options D or High temperature cells Spade terminals for easy connection Standards E 0 E 0-- E 09 IEC 0 Allows compliance with E 09-- DAI standard E -0 E -0 E E IEC 00-- IEC IEC ED bi-colour 9990 ED bi-colour high brightness 999 switch EM 90 Data sheet /0-- We reserve the right to make technical changes without prior notice.

2 Emergency lighting modules with DAI interface T, T, TC-DD, TC-F, TC- linear and compact lamps Technical data: EM hour hour Rated mains supply voltage 0 0 V 0 0 V Mains frequency 0 / 0 Hz 0 / 0 Hz Mains supply current 0 ma max 0 ma max Mains supply power < 0.0 W < 0.0 W Overvoltage protection 0 V for hour 0 V for hour Max. working voltage U-OUT 0 V 0 V Output frequency range 0 khz 0 khz Recharge period hours 0 hours Discharge current. A. A Charge current: Initial 0 ma 0 ma Fast 0 ma 0 ma Trickle 0 ma 0 ma Earth leakage current < 0. ma < 0. ma Ambient temperature range - C to 0 C - C to 0 C Maximum case temperature tc 0 C 0 C Mains change over voltage in accordance with in accordance with E 09-- E 09-- Min. lamp starting temperature (emergency mode) - C - C Ingress protection IP0 IP0 Protection class class I class I Function test 0 seconds 0 seconds via DAI command via DAI command Duration test hr via hr via DAI command DAI command Timer crystal controlled crystal controlled Boost starting time seconds seconds ing: DAI Control A DAI command from a suitable control unit can be used to initiate function and duration tests at individually selected times. Status flags are set for report back and data logging of results. When a DAI bus has not been connected or when a DAI bus is connected but the DAI default DEAY and ITERVA times have not been re-set by sending appropriate DAI commands, then the EM will conduct self-tests in accordance with the default times set within the EEPROM. These default times are factory pre-set, in accordance with the DAI standard E -0, to conduct an automatic function test every days and a duration test every weeks. Since the DEAY time is factory pre-set to Zero, all units are tested at the same time. times can be changed with a command over the DAI bus. The DEAY and ITERVA time values must be re-set when the emergency system test times are to be scheduled by a and monitoring system. ote that once the default values have been set to Zero, tests will only be conducted following a command from the control system. If the DAI bus is disconnected the EM PRO EZ does not revert to self-testing mode. Addressing The EM includes the new EZ easy addressing system which allows addressing and identification by using the bi-colour ED in conjunction with the EZ PRO ADDRESS tool. Binary address codes given by the ED can be simply converted to the DAI addresses 0 to. For single handed addressing using this method it is necessary to send a broadcast ident command every to 9 seconds. During this command the main fluorescent lamp will be switched off and the ED will flash the bit binary address preceded by a second start indication period. Functional test The time of day and frequency of the 0 seconds function test can be set by the DAI controller. The default setting is a 0 seconds test on a weekly basis. Rest Mode Rest mode can be initiated by the ler. The appropriate command should be sent after the mains supply has been disconnected and whilst the module is in emergency operation. A mains reset is required to exit the rest mode. EM does not support the re-light command via the DAI bus. switch An optional test switch can be wired to each. This can be used to initiate a 0 seconds function test by a short press < second. DAI Controller lers and hardware/software solutions are available from Tridonic. Please refer to the ighting controls section. Service life Average service life 0,000 hours under rated conditions with a failure rate of less than 0 %. Average failure rate of 0. % per 000 operating hours. Accu-iCd case temperature range 0 C to C to ensure years design life storage life in temperate conditions years battery voltage/cell. V capacity D.0 Ah capacity Cs. Ah Accu-iMh case temperature range (to ensure years design life).0 Ah Cs 0 C to C.0 Ah Cs 0 C to 0 C storage life in temperate conditions years battery voltage. V capacity Cs.0 Ah.0 Ah Mechanical details Channel manufactured from galvanised steel. Cover manufactured from white pre-coated steel. ED bi-colour status indicator Green / red Mounting hole. mm dia ead length 000 mm Insulation rating: 90 C switch Mounting hole.0 mm dia ead length 0 mm leads Quantity: red and black ength: 00 mm Wire : 0. mm² solid conductor Insulation rating: 90 C end termination Push on. mm receptacle to suit battery spade fitted with insulating cover Duration test The time of day and frequency of the duration test can be set by the ler. The default setting is a duration test conducted every weeks. Prolong time Prolong time can be set by the ler. This is the delay time between return of the mains supply and the end of the emergency operation. The default prolong time is set as minutes as specified within the DAI standard. Module end termination.0 mm stripped insulation Two-piece batteries are supplied with a 00 mm lead with. mm receptacles at each end and insulating covers to connect the separate sticks together. Data sheet /0-- We reserve the right to make technical changes without prior notice.

3 Emergency lighting modules with DAI interface T, T, TC-DD, TC-F, TC- linear and compact lamps Connection method:. x 0. mm spade tag welded to end of cell For stick packs this connection is accessible after the battery caps have been fitted. To inhibit inverter operation disconnect the batteries by removing the connector from the battery spade tag. For battery data see separate data sheet. Emergency light output factors (BF) in %: Type TC-DD TC-SE TC-DE TC-TE TC-F TC- T FH T FQ T C T T EM hours hour EM EM EM EM Status indication System status is indicated by a bi-colour ED and by a DAI status flag. ED Permanent green Fast flashing green Slow flashing green Permanent red Fast flashing red Slow flashing red Double pulsing green EM 0 EM HO Status System OK Function test underway Duration test underway amp fault Charging fault fault Inhibit mode hour high output EM HO EM HO 9 Data sheet /0-- We reserve the right to make technical changes without prior notice.

4 Emergency lighting modules with DAI interface T, T, TC-DD, TC-F, TC- linear and compact lamps Isolation and electric strength testing of luminaires Electronic devices can be damaged by high voltage. This has to be considered during the routine testing of the luminaires in production. According to IEC 09- Annex Q (informative only!) or EEC 0-Annex A, each luminaire should be submitted to an isolation test with 00 VDC for 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 MΩ. As an alternative, IEC 09- Annex Q describes a test of the electrical strength with,00 VAC (or, x,00 VDC). To avoid damage to the electronic devices this test must not be conducted. Wiring guidelines To ensure that a luminaire containing high frequency emergency units complies with E 0 for radio frequency conducted interference in both normal and emergency mode it is essential to follow good practice in the wiring layout. Within the luminaire the switched and unswitched 0 Hz supply wiring must be routed as short as possible and be kept as far away as possible from the lamp leads. This means, for example, in a linear T or T luminaire the mains wiring should be routed along one side of the luminaire body, while the wires to the emergency lamp from the emergency module are routed along the other side. Electrical connections: An earthed starting aid is recommended. The module should be earthed by the fixings used to attach it to the luminaire. Wiring: amp/ballast/supply wire preparation: mm² 9 mm EM FT filter When the EM is used in a remote appli-cation, where the lamp leads and ED indicator leads are routed together in close proximity, it is possible to have electrical interference picked up in the indicator leads. Under certain conditions this interference can cause a lock-up of the EM micro-controller. oosen wire through twisting and pulling The high frequency emergency lamp wiring contains hot leads at pins and, which have high voltage to earth. These should be kept as short as possible and separated from other wiring to minimize coupling. They also have a restriction on capacitance to other wiring and earth of 00 pf, which must be observed to ensure good lamp starting. With an earth connection of the metal case of the emergency module the noise suppression can be further improved. The wiring of the earth should be kept as short as possible. Through wiring may affect the emc performance of the luminaire. To overcome this problem in such applications it is necessary to fit the filter EM FT between the indicator ED and the EM unit. To be effective the filter must be connected close to the EM module. For further information please contact Tridonic. Technical data: Push wire terminals 0.. mm² solid conductor Product EM FT 9999 EM FT filter 0,,, 0,,, Circuit diagram with EM FT filter IDC interface solid wire with a cross section of 0. mm² according to the specification from WAGO alternatively a flexible lead with a cross section of 0. mm² Horizontal interface solid wire with a cross section of 0.0. mm² according to the specification from WAGO solid wire with a cross section of.0 mm² with an insulation diameter up to. mm strip 9 mm of insulation from the cables oosen wire through twisting and pulling /ED/ switch push terminal with button release: 0. mm². mm strip Maximum lamp lead capacitance terminals and (* hot leads) 00 pf ) terminals and 00 pf ) ) ote: care should be taken not to exceed the total maximum lamp lead capacitance for HF ballast. eads should always be kept as short as possible. With the use of the fifth pole possible compatibility problems between the products can be prevented. Depending on the luminaire wiring the radio suppression in the emergency mode of operation can be further improved. Capacitive loading limits of lamp leads must not be exceeded. ote the capacitance of the emergency lamp leads adds to the capacitance of the leads from the ballast to the EM BASIC module when considering ballast loading. The ED and test switch wiring should be routed separately and kept as far away as possible from the high frequency lamp leads to avoid coupling., EM FT out in D EM D EMERGECY MODUE ED ED, Data sheet /0-- We reserve the right to make technical changes without prior notice.

5 Emergency lighting modules with DAI interface T, T, TC-DD, TC-F, TC- linear and compact lamps emergency module wiring diagrams ot for use with magnetic ballasts and switch start circuits ed line out to ballast ine in from switch eutral eutral to ballast Wiring diagram for single lamp high frequency ballasts o connection to be made eutral ed line out to ballast ine in from switch eutral eutral to ballast out in D D ED pink () ED orange () ED out in D D ED pink () ED orange () ED out in D D ED pink () ED orange () ED EMERGECY MODUE EMERGECY MODUE HF BAAST U-OUT max. 0 V EMERGECY MODUE HF BAAST U-OUT max. 0 V Wiring diagram for non-maintained operation Wiring diagram for twin lamp high frequency ballasts with terminals amp ote: All hot leads normally marked with an * should be kept as short as possible. For comprehensive wiring diagrams and instructions consult the TridonicAtco website ed line out to ballast ine in from switch eutral eutral to ballast out in D D ED pink () ED orange () ED EMERGECY MODUE HF BAAST U-OUT max. 0 V Wiring diagram for twin lamp high frequency ballasts with terminals ed line out to ballast ine in from switch eutral eutral to ballast out in D D ED pink () ED orange () ED EMERGECY MODUE HF BAAST U-OUT max. 0 V Wiring diagram for twin lamp high frequency ballasts with terminals amp Addressing Tool An addressing tool is available to convert the ED binary identification signal to a DAI address of between 0 to. This simple tool is powered from a 9 V battery (not supplied). amp Packing quantities: : units per carton Accu icd: pieces per box EM FT: pieces per box Bi-colour ED: pieces per bag Accu imh: pieces per box EZ PRO ADDRESS: 999 Data sheet /0-- We reserve the right to make technical changes without prior notice.

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