Emergency lighting units EM powerled

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CPS FX 80 W ED Driver for AC and DC power supplies Product description Fixed-output ED Driver for mains operation with integrated Simple CORRIDOR FUCTIO (CF) Emergency lighting function for use in central battery systems For ED modules with a forward voltage of 50 230 V For luminaire installation ow-profile casing (21 x 30 mm cross-section) 5 years guarantee Properties 25 80 W output power Constant current ED operation 150 500 ma output current selectable with I-SEECT PUG in steps of 25 ma Simple CORRIDOR FUCTIO (CF) with 10 % light level ight output in DC operation (EoF I ): 0.1 or 1 Automatic shutdown of output if ED load is out of range For emergency lighting systems as per E 50172 È Standards, page 6 Wiring diagrams and installation examples, page 8 www.tridonic.com 1

E CPS FX 80 W ED Driver for AC and DC power supplies Technical data Rated supply voltage 220 240 V Voltage range AC 198 264 V Voltage range DC 176 280 V Mains frequency 0 / 50 / 60 Hz Typ. λ (at 230 V, 50 Hz, normal operation) 0.97 Typ. λ (at 230 V, 50 Hz, CF operation) 0.65c eakage current (PE) < 0.5 ma Overvoltage protection 320 V (for 1 h) Max. open circuit voltage 250 V Time to light < 0.5 s Output F current ripple (< 120 Hz) < 2 % Output current tolerance ± 7 % THD normal operation < 10 % THD CF operation < 25 % Ambient temperature ta 65 W -5... +55 C Ambient temperature ta > 65 W -5... +50 C Max. casing temperature tc 80 C Dimensions xwxh 360 x 30 x 21 mm Type of protection IP20 5 ø4,1 6 tc point 350 180 180 360 348 ote: I-SEECT PUG must be set before mains connection. Ordering data Type 3 Article number Packaging, carton 10,5 4,1 30 21 Packaging, pallet Weight per pc. CPS FX P 80W 89800435 10 pc(s). 600 pc(s). 0.253 kg www.tridonic.com 2

Specific technical data Type 3 ormal operation AC / DC (100 %) CPS FX P 80W CF operation AC / DC (10 %) CPS FX P 80W Output current Min. output voltage 2 Max. output voltage 2 Min. output power Max. output power Input power (230 V, 50 / 0 Hz, full load) Input current (230 V, 50 / 0 Hz, full load) Efficiency (230 V, 50 Hz) λ (at 230 V, full load) AC DC Ambient temperature ta 1 tc/ta for I sel 50.000 h 1 resistor value 150 ma 168 V 230 V 25 W 34.5 W 40 W 200 / 170 ma 86 % 0.85c 1-5 +55 C 78 / 55 C open 175 ma 142 V 230 V 25 W 40.3 W 45 W 220 / 190 ma 90 % 0.90c 1-5 +55 C 78 / 55 C 64.90 kω 200 ma 126 V 230 V 25 W 46.0 W 50 W 250 / 220 ma 92 % 0.90c 1-5 +55 C 78 / 55 C 56.00 kω 225 ma 111 V 230 V 25 W 51.8 W 56 W 270 / 240 ma 93 % 0.90c 1-5 +55 C 78 / 55 C 48.70 kω 250 ma 100 V 230 V 25 W 57.5 W 62 W 300 / 270 ma 93 % 0.95 1-5 +55 C 78 / 55 C 43.20 kω 275 ma 90 V 230 V 25 W 63.3 W 68 W 320 / 300 ma 93 % 0.95 1-5 +50 C 78 / 50 C 36.50 kω 300 ma 83 V 230 V 25 W 69.0 W 74 W 350 / 320 ma 93 % 0.97 1-5 +50 C 78 / 50 C 32.40 kω 325 ma 76 V 230 V 25 W 74.8 W 80 W 370 / 350 ma 94 % 0.97 1-5 +50 C 78 / 50 C 28.70 kω 350 ma 70 V 228 V 25 W 80.0 W 87 W 400 / 375 ma 92 % 0.97 1-5 +50 C 78 / 50 C 22.00 kω 375 ma 67 V 213 V 25 W 80.0 W 87 W 400 / 380 ma 92 % 0.97 1-5 +50 C 78 / 50 C 17.80 kω 400 ma 62 V 200 V 25 W 80.0 W 87 W 400 / 380 ma 92 % 0.97 1-5 +50 C 78 / 50 C 15.00 kω 425 ma 59 V 188 V 25 W 80.0 W 87 W 400 / 380 ma 92 % 0.97 1-5 +50 C 78 / 50 C 12.10 kω 450 ma 56 V 177 V 25 W 80.0 W 87 W 400 / 380 ma 92 % 0.97 1-5 +50 C 78 / 50 C 9.30 kω 475 ma 51 V 169 V 25 W 80.0 W 87 W 400 / 380 ma 92 % 0.97 1-5 +50 C 78 / 50 C 6.49 kω 500 ma 50 V 160 V 25 W 80.0 W 90 W 400 / 380 ma 89 % 0.97 1-5 +50 C 78 / 50 C short circuit (0 Ω) 14 ma 2.4 W 3 W 5.0 W 75 / 20 ma 60 % 0.30c 1 open 17 ma 2.4 W 4 W 6.0 W 75 / 25 ma 67 % 0.35c 1 64.90 kω 19 ma 2.4 W 4 W 6.0 W 75 / 25 ma 67 % 0.35c 1 56.00 kω 23 ma 2.6 W 5 W 7.0 W 80 / 30 ma 71 % 0.40c 1 48.70 kω 23 ma 2.3 W 5 W 7.0 W 80 / 30 ma 71 % 0.40c 1 43.20 kω 28 ma 2.5 W 6 W 8.0 W 80 / 35 ma 75 % 0.45c 1 36.50 kω 28 ma 2.3 W 6 W 8.0 W 80 / 35 ma 75 % 0.45c 1 32.40 kω 32 ma 2.4 W 7 W 9.0 W 85 / 40 ma 78 % 0.45c 1 28.70 kω 32 ma 2.2 W 7 W 9.0 W 85 / 40 ma 78 % 0.45c 1 22.00 kω 36 ma 2.4 W 7 W 9.5 W 85 / 40 ma 74 % 0.50c 1 17.80 kω 42 ma 2.6 W 7 W 10.0 W 85 / 45 ma 70 % 0.50c 1 15.00 kω 42 ma 2.5 W 7 W 10.0 W 85 / 45 ma 70 % 0.50c 1 12.10 kω 45 ma 2.5 W 7 W 10.0 W 85 / 45 ma 70 % 0.50c 1 9.30 kω 46 ma 2.3 W 7 W 10.0 W 85 / 45 ma 70 % 0.50c 1 6.49 kω 50 ma 2.5 W 7 W 10.0 W 85 / 45 ma 70 % 0.50c 1 short circuit (0 Ω) 1 Ambient temperature range ta defined in normal operation 2 Output voltage range defined in normal operation. ED forward voltage will decrease in CF operation. 3 EM = Emergency www.tridonic.com 3

ACCES- SORIES smartswitch HF 5DP f Automatic switching based on motion and light level Product description Motion detector for luminaire installation Motion detection through glass and thin materials (except metal) For automatic on/off switching of electronic ballasts Bright-out function: luminaire is not switched on if there is adequate brightness Delay time, detection range and light value for the bright-out function can be set via 9 dip switches Max. installation height 5 m Two housing options allowing flexible installation Variable detection area (100 10 %) Zero cross switching supported 5-year guarantee smartswitch HF 5DP f smartswitch HF 5DP S f Ordering data Type Article number Dimensions x W x H Packaging, carton Weight per pc. smartswitch HF 5DP f 28002214 70 x 36.5 x 24.5 mm 5 pc(s). 0.040 kg smartswitch HF 5DP S f 28002235 58 x 48.5 x 24.5 mm 5 pc(s). 0.040 kg www.tridonic.com 4

ACCES- SORIES I-SEECT PUG Product description Ready-for-use resistor to set output current value Resistor is base isolated Resistor power 0.25 W Resistor value tolerance ± 1 % 5,5 3,5 xxxx 6 9 13,5 3,5 Ordering data Type Article number Colour Marking Resistor value Output current Packaging bag Weight per pc. I-SEECT PUG E 28000628 Green 64k9 64,90 kω 175 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000627 Green 56k 56,00 kω 200 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000626 Green 48k7 48,70 kω 225 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000625 Green 43k2 43,20 kω 250 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000624 Green 36k5 36,50 kω 275 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000623 Green 32k4 32,40 kω 300 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000622 Green 28k7 28,70 kω 325 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000621 Green 22k 22,00 kω 350 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000620 Green 17k8 17,80 kω 375 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000619 Green 15k 15,00 kω 400 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000618 Green 12k1 12,10 kω 425 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000617 Green 9k3 9,30 kω 450 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000616 Green 6k49 6,49 kω 475 ma 10 pc(s). 0.001 kg I-SEECT PUG E 28000612 Green 0R 0,00 kω 500 ma 10 pc(s). 0.001 kg www.tridonic.com 5

Standards E 55015 E 61000-3-2 E 61000-3-3 E 61347-2-13 E 61547 E 62384 according to E 60598-2-22 according to E 50172 Mechanichal details Channel manufactured from galvanised steel. Cover manufactured from white pre-coated steel. Electrical connections Wiring ED module/ed Driver/supply Output current setting Output current can be set by connecting a resistor between the 2 I set terminals. Relationship between output current and resistor value can be found at the table Specific technical data. Resistor values specified from standardised resistor value ranges. Resistor value tolerance has to be 1 %. Resistor power has to be 0.1 W. Resistor detection at each start. Change of the resistor value during the operation will be not considered. Resistors for the main output current values can be ordered from Tridonic (see accessories). ote: The I SET terminals are rated as on-sev Overload protection ED Driver will switch off at overload operation. Mains reset is required to restart the ED Driver. Underload operation ED Driver will switch off at underload operation. Mains reset is required to restart the ED Driver. Short-circuit behaviour In case of a short circuit the unit switches to shut down mode. After elimination of the short circuit a mains reset is necessary. Forward voltage out of range If the forward voltage is out of range the unit switches to shut down mode. After elimination of the short circuit a mains reset is necessary. o-load operation or load loss during operation ED Driver will detect a load loss during operation. In this case and no-load operation the max. output voltage can apply at the ED output for max. 5 s before ED Driver shuts down. Mains reset is required to restart the ED Driver. Isolation and electric strength testing of luminaires Electronic ED Drivers can be damaged by high voltage. This has to be considered during the routine testing of the luminaires in production. According to IEC 60598-1 Annex Q (informative only!) or EEC 303-Annex A, each luminaire should be submitted to an isolation test with 500 VDC 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 60598-1 Annex Q describes a test of the electrical strength with 1,500 VAC (or 1,414 x 1,500 VDC). To avoid damage to the electronic devices this test must not be conducted. wire preparation: 0.5 0.75 mm² 8 9 mm IDC interface solid wire with a cross section of 0.5 mm² according to the specification from IDC terminals Earth connection oosen wire through twisting and pulling The earth connection is conducted as protection earth (PE). The ED Driver can be earthed via earth terminal or metal housing. If the ED Driver will be earthed, protection earth (PE) has to be used. There is no earth connection required for the functionality of the ED Driver. Earth connection is recommended to improve following behaviour. Electromagnetic interferences (EMI) ED glowing at standby Transmission of mains transients to the ED output In general it is recommended to earth the ED Driver if the ED module is mounted on earthed luminaire parts respectively heat sinks and thereby representing a high capacity against earth. Wiring type and cross section Solid wire with a cross section of 0.5 0.75 mm². Strip 8 9 mm of insulation from the cables to ensure perfect operation of terminals. Installation instruction Max. torque for the mounting screws: 0.5 m / M4. You must make sure that the ED is connected with the correct polarity. EDs that are connected to should have polarity reversal protection such as a Schottky diode. There may be irreversible damage if the ED is connected with the wrong polarity. The protection device must be capable of handling a load of more than 700 ma. www.tridonic.com 6

ife-time Average life-time 50,000 hours under rated conditions with a failure rate of less than 10 %. Average failure rate of 0.2 % per 1000 operating hours. Maximum total lead length ED 3 m Storage conditions Humidity: 5 % up to max. 85 %, not condensed (max. 56 days/year at 85 %) Storage temperature: -40 C up to max. +80 C The devices have to be within the specified temperature range (ta) before they are operated. Expected life-time Type Output power ta 40 C 50 C 55 C 25 W tc 57 C 60 C 72 C life-time > 100,000 h > 100,000 h 85,000 h CPS FX P 80W 45 W tc 61 C 71 C 71 C life-time > 100,000 h 75,000 h 55,000 h 65 W tc 63 C 70 C 73 C life-time > 100,000 h 70,000 h 70,000 h 80 W tc 67 C 70 C x life-time > 100,000 h 50,000 h x x = not permitted Maximum loading of automatic circuit breakers Automatic circuit breaker type C10 C13 C16 C20 B10 B13 B16 B20 Inrush current Installation Ø 1.5 mm 2 1.5 mm 2 2.5 mm 2 2.5 mm 2 1.5 mm 2 1.5 mm 2 2.5 mm 2 2.5 mm 2 I max time CPS FX P 80W 12 18 24 28 6 9 12 14 32.6 A 260 μs Harmonic distortion in the mains supply (at 230 V / 50 Hz and full load) in % Type THD 3 5 7 CPS FX P 80W 10 % 8 % 3 % 3 % Switching behaviour CF ED off off off off on off on off 10 % on on 100 % The mains power must be removed before changing the ED load. Secondary switching of EDs is not allowed and may cause damage to the EDs. The hot plug-in of EDs during normal operation may result in high current peaks. DC operation behaviour: The emergency level EoF I (0.1 or 1) depends on the polarity of the DC voltage. Polarity of the DC voltage + + CF + Emergency level EoF I 1 0.1 The sensor is not activ in DC operation. www.tridonic.com 7

Wiring guidelines The output to the ED is DC but has high frequency content, which should be considered for good EMC compliance. ED leads should be separated from the mains connections and wiring for good EMC performance. Maximum total lead length on the ED terminals is 3 m. For a good EMC performance keep the ED wiring as short as possible. 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.). Within the luminaire the switched and unswitched 50 Hz supply wiring must be routed as short as possible and be kept as far away as possible from the ED leads.through wiring may affect the emc performance of the luminaire. The length of ED leads must not be exceeded. The output current depends on the forward voltage and the tolerance of the ED modules. Wiring diagram CPS FX without sensor Wiring diagram CPS FX with sensor 220 240 V 0/50/60 Hz 220 240 V 0/50/60 Hz cf CPS FX + ED I select + ED module 50 230V cf CPS FX ED I select + + ED module 50 230V The connected ED module will be used for mains and emergency operation. Tridonic sensor PIR output 230 V ote The CPS FX P 80W uses pulse width modulation (PWM) for the ED operation in CORRIDOR mode. This can have an adverse effect on video recording equipment e.g. cctv. Caution should be observed when using the CORRIDOR FUCTIO in cctv monitored areas. This applies also to the reduced power level (10%) when the CPS FX P 80W is operated on a central battery in DC mode. 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. www.tridonic.com 8