LED light engines LED linear / area. Module STARK QLE G3 SELECT Modules QLE EXCITE

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Module STARK QLE G3 SELECT Modules QLE EXCITE Product description Ideal for linear and panel lights Luminous flux range from 1,9 1,62 lm LED system solution with outstanding system efficacy up to 137 lm/w, consisting of squared LED modules and dimmable LED Driver LCA 5W 1 4mA lp PRE Efficacy of the module up to 156 lm/w Outstanding colour rendering index CRI > 9 Small colour tolerance MacAdam 3 1 Small luminous flux tolerances Colour temperatures 3, and 4, K Perfectly uniform light, even if several LED modules are used together in a line Self cooling (no additional heat sink required) Push terminals for quick and simple wiring of LED module to LED module Simple installation (e.g. screws) Long life-time: 5, hours 5-year guarantee È Standards, page 4 Colour temperatures and tolerances, page 7 www.tridonic.com 1

Module STARK QLE G3 SELECT Modules QLE EXCITE Technical data Beam characteristic 12 Ambient temperature range -3... +55 C tp rated 45 C tc 85 C Max. DC forward current 9 ma Max. permissible LF current ripple 99 ma Max. permissible peak current 1,5 ma / max. 1 µs Max. permissible output voltage of LED Driver 2 5 V Insulation test voltage 2 kv ESD classification severity level 4 Risk group (EN 62471:28) 1 Type of protection IP QLE-G3-27 27 222 tc Ø4,3 18 27 1 5,5 25 25,6 1 5,5 tc Ø4,3 166,7 25 QLE-G3-27 Ordering data Type Article number Colour temperature Packaging carton Weight per pc. STARK-QLE-G3-27-125-93-SEL 28356 3, K 4 pc(s)..14 kg STARK-QLE-G3-27-125-94-SEL 28357 4, K 4 pc(s)..14 kg STARK-QLE-G3-25-125-93-SEL 28354 3, K 4 pc(s)..12 kg STARK-QLE-G3-25-125-94-SEL 28355 4, K 4 pc(s)..12 kg www.tridonic.com 2

Specific technical data Type 4 Operating mode HE at 25 ma Photometric code Typ. luminous flux at tp = 25 C 3 Typ. luminous flux at tp = 45 C 3 Typ. forward current Min. forward voltage at tp = 45 C Max. forward voltage at tp = 25 C Typ. power consumption at tp = 45 C 3 Efficacy of the module at tp = 25 C Efficacy of the module at tp = 45 C Efficacy of the system at tp = 45 C STARK-QLE-G3-27-125-93-SEL 93/359 1,11 lm 1,9 lm 25 ma 26.3 V 33. V 7.6 W 149 lm/w 146 lm/w 131 lm/w > 9 STARK-QLE-G3-27-125-94-SEL 94/359 1,17 lm 1,14 lm 25 ma 26.3 V 33. V 7.6 W 156 lm/w 152 lm/w 137 lm/w > 9 STARK-QLE-G3-25-125-93-SEL 93/359 1,11 lm 1,9 lm 25 ma 26.3 V 33. V 7.6 W 149 lm/w 146 lm/w 131 lm/w > 9 STARK-QLE-G3-25-125-94-SEL 94/359 1,17 lm 1,14 lm 25 ma 26.3 V 33. V 7.6 W 156 lm/w 152 lm/w 137 lm/w > 9 Operating mode HO at 3 ma STARK-QLE-G3-27-125-93-SEL 93/359 1,33 lm 1,3 lm 3 ma 26.8 V 33.5 V 9.2 W 144 lm/w 141 lm/w 127 lm/w > 9 STARK-QLE-G3-27-125-94-SEL 94/359 1,4 lm 1,36 lm 3 ma 26.8 V 33.5 V 9.2 W 151 lm/w 148 lm/w 133 lm/w > 9 STARK-QLE-G3-25-125-93-SEL 93/359 1,33 lm 1,3 lm 3 ma 26.8 V 33.5 V 9.2 W 144 lm/w 141 lm/w 127 lm/w > 9 STARK-QLE-G3-25-125-94-SEL 94/359 1,4 lm 1,36 lm 3 ma 26.8 V 33.5 V 9.2 W 151 lm/w 148 lm/w 133 lm/w > 9 Operating mode HO at 35 ma STARK-QLE-G3-27-125-93-SEL 93/359 1,54 lm 1,5 lm 35 ma 27.3 V 34. V 1.8 W 141 lm/w 138 lm/w 124 lm/w > 9 STARK-QLE-G3-27-125-94-SEL 94/359 1,62 lm 1,58 lm 35 ma 27.3 V 34. V 1.8 W 147 lm/w 144 lm/w 13 lm/w > 9 STARK-QLE-G3-25-125-93-SEL 93/359 1,54 lm 1,5 lm 35 ma 27.3 V 34. V 1.8 W 141 lm/w 138 lm/w 124 lm/w > 9 STARK-QLE-G3-25-125-94-SEL 94/359 1,62 lm 1,58 lm 35 ma 27.3 V 34. V 1.8 W 147 lm/w 144 lm/w 13 lm/w > 9 1 Integral measurement over the complete module. 2 If mounted with M4 screws. 3 Tolerance range for optical data: ±7.5 % and electrical data: ±1 %. 4 HE... high efficiency, HO... high output. Colour rendering index CRI www.tridonic.com 3

1. Standards EN 6231 EN 62471 EN 61347-1 EN 61547 EN 5515 1.1 Photometric code Key for photometric code, e. g. 83 / 449 1 st digit 2 nd + 3 rd digit 4 th digit 5 th digit 6 th digit Luminous flux after 25% Code CRI McAdam after of the life-time (max.6h) Colour temperature in McAdam 25% of the Code Luminous flux 7 7 79 initial life-time 7 7 % Kelvin x 1 8 8 89 (max.6h) 8 8 % 9 9 9 9 % 1.2 Energy classification Type Forward current Energy classification 25 ma A++ QLE-G3-XXX-125-93-SEL 3 ma A++ 35 ma A++ 25 ma A++ QLE-G3-XXX-125-94-SEL 3 ma A++ 35 ma A++ 2. Thermal details 2.1 tc point, ambient temperature and life-time The temperature at tp reference point is crucial for the light output and life-time of a LED product. For the STARK QLE a tp temperature of 45 C has to be complied in order to achieve an optimum between heat sink requirements, light output and life-time. Compliance with the maximum permissible reference temperature at the tc point must be checked under operating conditions in a thermally stable state. The maximum value must be determined under worst-case conditions for the relevant application. The tc and tp temperature of LED modules from Tridonic are measured at the same reference point. 3. Installation / wiring 3.1 Electrical supply/choice of LED Driver The STARK QLE from Tridonic is not protected against overvoltages, overcurrents, overloads or short-circuit currents. Safe and reliable operation can only be guaranteed in conjunction with a LED Driver which complies with the relevant standards. The use of LED Driver from Tridonic in combination with the STARK QLE guarantees the necessary protection for safe and reliable operation. If a LED Driver other than from Tridonic is used, it must provide the following protection: Short-circuit protection Overload protection Overtemperature protection 3.2 Wiring STARK QLE must be supplied by a constant current LED Driver. Operation with a constant voltage LED Driver will lead to an irreversible damage of the module. Wrong polarity can damage the STARK QLE. With parallel wiring tolerance-related differences in output are possible (thermal stress of the module) and can cause differences in brightness. If one module fails, the remaining modules may be overloaded. The STARK QLE can be operated either from SELV LED Drivers or from LED Drivers with LV output voltage. The STARK QLE is basic isolated up to 5 V against ground and can be mounted directly on earthed metal parts of the luminaire. If the max. output voltage of the LED Driver (also against earth) is above 5 V, an additional isolation between LED module and heat sink is required (for example by isolated thermal pads) or by a suitable luminaire construction. At voltages > 6 V an additional protection against direct touch (test finger) to the light emitting side of the module has to be guaranteed. This is typically achieved by means of a non removable light distributor over the module. out 2.2 Storage and humidity Storage temperature -4... +85 C Operation only in non condensing environment. Humidity during processing of the module should be between to 7 %. in + 2.3 Thermal design and heat sink Wiring examples The rated life of LED products depends to a large extent on the temperature. If the permissible temperature limits are exceeded, the life of the STARK QLE will be greatly reduced or the STARK QLE may be destroyed. L N + Udriver LCAI 65W 15 4mA ECO lp + + + + www.tridonic.com 4

3.3 Wiring type and cross section The wiring can be in stranded wires with ferrules or solid with a cross section of.2 to.75 mm². For the push-wire connection you have to strip the insulation (8 9 mm). wire preparation:.2.75 mm² 8 9 mm To remove the wires use a suitabel tool (e.g. Microcon release pin) or through twist and pull. 3.4 Mounting instruction None of the components of the STARK QLE (substrate, LED, electronic components etc.) may be exposed to tensile or compressive stresses. Max. torque for fixing:.5 Nm. The LED modules are mounted with 4 screws per module. In order not to damage the modules only rounded head screws and an additional plastic flat washer should be used. Chemical substance may harm the LED module. Chemical reactions could lead to colour shift, reduced luminous flux or a total failure of the module caused by corrosion of electrical connections. 4. Life-time 4.1 Life-time, lumen maintenance and failure rate The light output of an LED Module decreases over the life-time, this is characterized with the L value. L7 means that the LED module will give 7 % of its initial luminous flux. This value is always related to the number of operation hours and therefore defines the life-time of an LED module. As the L value is a statistical value and the lumen maintenace may vary over the delivered LED modules. The B value defines the amount of modules which are below the specific L value, e.g. L7B1 means 1 % of the LED modules are below 7 % of the inital luminous flux, respectivly 9 % will be above 7 % of the initial value. In addition the percentage of failed modules (fatal failure) is characterized by the C value. The F value is the combination of the B and C value. That means for F degradation and complete failures are considered, e.g. L7F1 means 1 % of the LED modules may fail or be below 7 % of the initial luminous flux. 4.2 Lumen maintenance for STARK QLE Forward current tp L9 / F1 temperature L9 / F5 L8 / F1 L8 / F5 L7 / F1 L7 / F5 25 ma 45 C > 4, h > 5, h > 9, h > 1, h > 1, h > 1, h 3 ma 45 C > 4, h > 5, h > 8, h > 1, h > 1, h > 1, h 35 ma 45 C > 3, h > 4, h > 7, h > 9, h > 1, h > 1, h Materials which are used in LED applications (e.g. sealings, adhesives) must not produce dissolver gas. They must not be condensation curing based, acetate curing based or contain sulfur, chlorine or phthalate. Avoid corrosive atmosphere during usage and storage. 3.5 EOS/ESD safety guidelines The device / module contains components that are sensitive to electrostatic discharge and may only be installed in the factory and on site if appropriate EOS/ESD protection measures have been taken. No special measures need be taken for devices/modules with enclosed casings (contact with the pc board not possible), just normal installation practice. Please note the requirements set out in the document EOS / ESD guidelines (Guideline_EOS_ESD.pdf) at: http://www.tridonic.com/esd-protection www.tridonic.com 5

5. Electrical values 5.1 Typ. forward voltage vs. forward current 35 3 Forward current [ma] 25 2 15 1 29, 29,5 3, 3,5 31, Forward voltage [V] 31,5 5.2 Forward voltage vs. tp temperature 1,1,55 Rel. forward voltage [V], -,55-1,1-1,65-2,2 25 35 45 55 65 75 85 tc [ C] The diagrams are based on statistic values. The real values can be different. www.tridonic.com 6

6. Photometric charcteristics 6.1 Coordinates and tolerances according to CIE 1931 The specified colour coordinates are measured integral by a current impulse of 25 ma and a duration of 1 ms. The ambient temperature of the measurement is ta = 25 C. The measurement tolerance of the colour coordinates are ±.1. 3, K x y Centre.4344.432,425 1,42,415,41,45,4,395,39 norm. intensity [%] 8 6 4 2,385,415,42,425,43,435,44,445,45,455 38 42 46 5 54 58 62 66 7 74 78 MacAdam Ellipse: 3SDCM wave length [nm] 4, K x y Centre.3828.383,4 1,395,39,385,38,375,37,365 norm. intensity [%] 8 6 4 2,36,36,365,37,375,38,385,39,395,4 38 42 46 5 54 58 62 66 7 74 78 MacAdam Ellipse: 3SDCM wave length [nm] 6.2 Colour rendering Ri values CCT Ri1 Ri2 Ri3 Ri4 Ri5 Ri6 Ri7 Ri8 Ri9 Ri1 Ri11 Ri12 Ri13 Ri14 Ri15 3, K 94 95 95 94 94 95 93 86 68 89 95 87 94 97 91 4, K 94 94 92 95 93 9 97 94 8 84 94 71 93 95 91 www.tridonic.com 7

6.3 Light distribution The optical design of the STARK QLE product line ensures optimum homogenity for the light distribution. 6.5 Relative luminous flux vs. operating current 1,1 relative intensity Iv/Iv, max 1-4 8-5 6-6 4 2-1 -8-3 -6-2 -4-1 1 2-2 2 4 3 6 4 5 6 7 8 9 8 1 rel. luminous flux [a.u.] 1,,9,8,7 25 35 45 55 65 75 tc [ C] 85 The colour temperature is measured integral over the complete module. The single LED light points can have deviations in the colour coordinates within MacAdam 7. To ensure an ideal mixture of colours and a homogenious light distribution a suitable optic (e. g. PMMA diffuser) and a sufficient spacing between module and optic (typ. 6 cm) should be used. For further information see Design-in Guide, 3D data and photometric data on www.tridonic.com or on request. 6.4 Relative luminous flux vs. tc temperature 15 125 Rel. luminous flux [%] 1 75 5 25 5 1 15 2 25 3 35 Operating current [ma] www.tridonic.com 8