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Module LLE G4 16mm 65lm ADV Module LLE advanced Product description Ideal for compact linear luminaires designs Homogenous illumination thanks to small package distance SELV module the single module has a forward voltage < 6 V Typ. luminous flux 65 and 1,3 lm LED system solution with outstanding system efficacy up to 162 lm/w, consisting of linear LED modules and dimmable LED Driver LCA 5W 4mA lp PRE Efficacy of the module up to 183 lm/w High colour rendering index CRI > 8 Small colour tolerance MacAdam 3 1 Small luminous flux tolerances Colour temperatures 2,7 K, 3, K and 4, K Perfectly uniform light, even if several LED modules are used together in a line Push terminals for quick and simple wiring of LED module to LED module Simple installation (e.g. screws) Long life-time: 5, hours (L8F1) 5-year guarantee LLE G4.63x11 inch 65lm ADV LLE G4.63x22 inch 13lm ADV È Standards, page 7 Colour temperatures and tolerances, page 11 www.tridonic.com 1

Module LLE G4 16mm 65lm ADV Module LLE advanced Technical data Beam characteristic 12 Ambient temperature range -4... +149 F tp rated 149 F tc 185 F Irated 225 ma Imax 5 ma Max. DC forward current 6 ma Max. permissible LF current ripple 66 ma Max. permissible peak current 78 ma / max. 1 ms Max. working voltage for insulation 2 4 V Insulation test voltage 1.8 kv CTI of the printed circuit board 6 ESD classification severity level 4 Risk group (IEC 62471:28) 3 RG1 Classification acc. to IEC 6231 Built-in Type of protection IP ø3.2/.13 279.6/11.1 186.5/7.34 LLE G4.63x11 inch 65lm ADV ø3.2/.13 LLE G4.63x22 inch 13lm ADV tc tc 559.6/22.3 94.1/3.7 28.6/11.5 467.1/18.39 15.8/.62 ø5.5/.22 15.8/.62 ø5.5/.22 Dimensions in mm / inch Ordering data Type Article number Colour Packaging temperature carton Weight per pc. LLE G4 16x28mm 65lm 827 2T ADV 281723 2,7 K 4 pc(s)..64 lbs LLE G4 16x28mm 65lm 83 2T ADV 281724 3, K 4 pc(s)..64 lbs LLE G4 16x28mm 65lm 84 2T ADV 281725 4, K 4 pc(s)..64 lbs LLE G4 16x56mm 13lm 827 2T ADV 281728 2,7 K 48 pc(s)..143 lbs LLE G4 16x56mm 13lm 83 2T ADV 281729 3, K 48 pc(s)..143 lbs LLE G4 16x56mm 13lm 84 2T ADV 28173 4, K 48 pc(s)..143 lbs www.tridonic.com 2

Specific technical data Type 4 Operating mode HE at 225 ma Typ. Typ. luminous flux luminous flux at tp = 77 F 5 at tp = 149 F 5 Typ. forward current Min. forward voltage at tp = 149 F Max. forward voltage at tp = 77 F Typ. power consumption at tp = 149 F 5 Efficacy of the module at tp = 77 F Efficacy of the module at tp = 149 F Efficacy of the system at tp = 149 F LLE G4 16x28mm 65lm 827 ADV 63 lm 6 lm 225 ma 15.5 V 17.9 V 3.8 W 165 lm/w 159 lm/w 146 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 66 lm 63 lm 225 ma 15.5 V 17.9 V 3.8 W 174 lm/w 169 lm/w 155 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 7 lm 66 lm 225 ma 15.5 V 17.9 V 3.8 W 183 lm/w 176 lm/w 162 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 1,25 lm 1,2 lm 225 ma 3.9 V 35.8 V 7.5 W 165 lm/w 159 lm/w 146 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 1,33 lm 1,27 lm 225 ma 3.9 V 35.8 V 7.5 W 174 lm/w 169 lm/w 155 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 1,39 lm 1,32 lm 225 ma 3.9 V 35.8 V 7.5 W 183 lm/w 176 lm/w 162 lm/w > 8 Operating mode NM at 3 ma LLE G4 16x28mm 65lm 827 ADV 82 lm 79 lm 3 ma 15.8 V 18.3 V 5.1 W 16 lm/w 155 lm/w 143 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 87 lm 83 lm 3 ma 15.8 V 18.3 V 5.1 W 17 lm/w 164 lm/w 151 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 91 lm 87 lm 3 ma 15.8 V 18.3 V 5.1 W 178 lm/w 171 lm/w 157 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 1,65 lm 1,57 lm 3 ma 31.6 V 36.5 V 1.1 W 16 lm/w 155 lm/w 143 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 1,75 lm 1,66 lm 3 ma 31.6 V 36.5 V 1.1 W 17 lm/w 164 lm/w 151 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 1,83 lm 1,74 lm 3 ma 31.6 V 36.5 V 1.1 W 178 lm/w 171 lm/w 157 lm/w > 8 Operating mode NM at 35 ma LLE G4 16x28mm 65lm 827 ADV 95 lm 91 lm 35 ma 16. V 18.5 V 6. W 157 lm/w 152 lm/w 14 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 1,1 lm 96 lm 35 ma 16. V 18.5 V 6. W 166 lm/w 16 lm/w 147 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 1,6 lm 1, lm 35 ma 16. V 18.5 V 6. W 174 lm/w 167 lm/w 154 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 1,9 lm 1,82 lm 35 ma 32. V 36.9 V 12. W 157 lm/w 152 lm/w 14 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 2,2 lm 1,92 lm 35 ma 32. V 36.9 V 12. W 166 lm/w 16 lm/w 147 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 2,11 lm 2, lm 35 ma 32. V 36.9 V 12. W 174 lm/w 167 lm/w 154 lm/w > 8 Operating mode HO at 4 ma LLE G4 16x28mm 65lm 827 ADV 1,6 lm 1,1 lm 4 ma 16.2 V 18.7 V 6.9 W 151 lm/w 146 lm/w 134 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 1,13 lm 1,7 lm 4 ma 16.2 V 18.7 V 6.9 W 16 lm/w 154 lm/w 142 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 1,18 lm 1,12 lm 4 ma 16.2 V 18.7 V 6.9 W 168 lm/w 162 lm/w 149 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 2,12 lm 2,2 lm 4 ma 32.4 V 37.3 V 13.8 W 151 lm/w 146 lm/w 134 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 2,25 lm 2,14 lm 4 ma 32.4 V 37.3 V 13.8 W 16 lm/w 154 lm/w 142 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 2,37 lm 2,24 lm 4 ma 32.4 V 37.3 V 13.8 W 168 lm/w 162 lm/w 149 lm/w > 8 Operating mode HO at 45 ma LLE G4 16x28mm 65lm 827 ADV 1,18 lm 1,13 lm 45 ma 16.4 V 18.9 V 7.8 W 148 lm/w 144 lm/w 132 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 1,25 lm 1,19 lm 45 ma 16.4 V 18.9 V 7.8 W 157 lm/w 152 lm/w 14 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 1,31 lm 1,25 lm 45 ma 16.4 V 18.9 V 7.8 W 165 lm/w 158 lm/w 145 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 2,36 lm 2,26 lm 45 ma 32.8 V 37.7 V 15.7 W 148 lm/w 144 lm/w 132 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 2,5 lm 2,39 lm 45 ma 32.8 V 37.7 V 15.7 W 157 lm/w 152 lm/w 14 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 2,62 lm 2,49 lm 45 ma 32.8 V 37.7 V 15.7 W 165 lm/w 158 lm/w 145 lm/w > 8 Operating mode HO at 5 ma LLE G4 16x28mm 65lm 827 ADV 1,29 lm 1,23 lm 5 ma 16.6 V 19.1 V 8.8 W 144 lm/w 139 lm/w 128 lm/w > 8 LLE G4 16x28mm 65lm 83 ADV 1,36 lm 1,3 lm 5 ma 16.6 V 19.1 V 8.8 W 152 lm/w 147 lm/w 135 lm/w > 8 LLE G4 16x28mm 65lm 84 ADV 1,43 lm 1,36 lm 5 ma 16.6 V 19.1 V 8.8 W 16 lm/w 154 lm/w 142 lm/w > 8 LLE G4 16x56mm 13lm 827 ADV 2,58 lm 2,46 lm 5 ma 33.2 V 38.1 V 17.7 W 144 lm/w 139 lm/w 128 lm/w > 8 LLE G4 16x56mm 13lm 83 ADV 2,73 lm 2,6 lm 5 ma 33.2 V 38.1 V 17.7 W 152 lm/w 147 lm/w 135 lm/w > 8 LLE G4 16x56mm 13lm 84 ADV 2,86 lm 2,71 lm 5 ma 33.2 V 38.1 V 17.7 W 16 lm/w 154 lm/w 142 lm/w > 8 1 Integral measurement over the complete module. 2 If mounted with ACL BRIDGE LLE16 PUSH-FIX. 3 Measured at operating mode HO. 4 HE... high efficiency, NM... nominal mode, HO... high output. 5 Tolerance range for optical and electrical data: ±1 %. Colour rendering index CRI www.tridonic.com 3

ACCES- SORIES BRIDGE LLE16 Product description Clip for fixation for LLE16 Fast snap on mounting (for sheet thickness.2.4 inch) For drilling hole.12 inch Clip made of polycarbonate 22.2/.87 1.2/.5 ø6.4/ ø.25 7.4/.29 ø4/ ø.16 15.8±.1.62 Dimensions in mm / inch 2,3/.9 Ordering data Type Article number Colour Packaging bag 1 Weight per pc. ACL BRIDGE LLE16 PUSH-FIX 28135 White 2 pc(s)..2 lbs 1 Minimum sales quantity 2 pcs. www.tridonic.com 4

ACCES- SORIES ACL LINEAR COVER 16x16mm Product description LINEAR COVER for LLE 16 Protection against direct touch for non-selv applications Fast snap on mounting on to LLE 16 with clips or plastic washers High transmission: transparent 94 %, semi-transparent 87 %, diffuse 76 % Linear lense made of PMMA Tolerances LINEAR COVER: +.79 inch for 62.99 inch length (ends raw) R13/.51 2±.3.79±.1 1.3±.1.5 17+.2/-.4.67±.2 26±.3 1.2±.1 Dimensions in mm / inch 1.4/.5 Ordering data Type Article number Colour Length Packaging carton Weight per pc. ACL LINEAR COVER 16x16mm TRANSPARENT 28949 Transparent 62.99 inch 24 pc(s)..324 lbs ACL LINEAR COVER 16x16mm FROSTED 2895 Semi- transparent 62.99 inch 24 pc(s)..324 lbs ACL LINEAR COVER 16x16mm DIFFUSE 28951 Diffuse 62.99 inch 24 pc(s)..324 lbs www.tridonic.com 5

1. Standards IEC 6231 IEC 62471 IEC 6-4-2 1.1 Energy classification Typ LLE G4 16mm ADV 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 LLE a tp temperature of 149 F 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. 2.2 Storage and humidity Storage temperature -4... +212 F 2.3 Thermal design and heat sink Energieklassifizierung A++ Operation only in non condensing environment. Humidity during processing of the module should be between to 6 %. 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 LLE will be greatly reduced or the LLE may be destroyed. 2.4 Heat sink values LLE G4 16x28mm 65lm 8xx ADV ta tp Forward current Rth, hs-a Cooling area 77 F 149 F 225 ma self cooling 77 F 149 F 3 ma self cooling 77 F 149 F 4 ma 11.4 K/W 8.99 inch² 77 F 149 F 5 ma 8.6 K/W 12.9 inch² 95 F 149 F 225 ma self cooling 95 F 149 F 3 ma 12.2 K/W 8.53 inch² 95 F 149 F 4 ma 8.6 K/W 1.9 inch² 95 F 149 F 5 ma 6.4 K/W 16.12 inch² 113 F 149 F 225 ma 11.4 K/W 8.99 inch² 113 F 149 F 3 ma 8.1 K/W 12.71 inch² 113 F 149 F 4 ma 5.7 K/W 18.14 inch² 113 F 149 F 5 ma 4.3 K/W 24.18 inch² 131 F 149 F 225 ma 5.7 K/W 18.14 inch² 131 F 149 F 3 ma 4.1 K/W 25.42 inch² 131 F 149 F 4 ma 2.8 K/W 36.27 inch² 131 F 149 F 5 ma 2.1 K/W 48.36 inch² LLE G4 16x56mm 13lm 8xx ADV ta tp Forward current Rth, hs-a Cooling area 77 F 149 F 225 ma self cooling 77 F 149 F 3 ma self cooling 77 F 149 F 4 ma 5.7 K/W 18.14 inch² 77 F 149 F 5 ma 4.3 K/W 24.3 inch² 95 F 149 F 225 ma self cooling 95 F 149 F 3 ma 6.1 K/W 16.9 inch² 95 F 149 F 4 ma 4.3 K/W 24.18 inch² 95 F 149 F 5 ma 3.2 K/W 32.9 inch² 113 F 149 F 225 ma 5.7 K/W 18.14 inch² 113 F 149 F 3 ma 4.1 K/W 25.42 inch² 113 F 149 F 4 ma 2.9 K/W 36.27 inch² 113 F 149 F 5 ma 2.1 K/W 48.21 inch² 131 F 149 F 225 ma 2.9 K/W 36.27 inch² 131 F 149 F 3 ma 2. K/W 51. inch² 131 F 149 F 4 ma 1.4 K/W 72.7 inch² 131 F 149 F 5 ma 1.1 K/W 96.72 inch² Notes The actual cooling surface can differ because of the material, the structural shape, outside influences and the installation situation. Depending on the heat sink a heat conducting paste or heat conducting film might be necessary to keep the specified tp temperature. www.tridonic.com 6

3. Installation / wiring 3.2 Wiring 3.1 Electrical supply/choice of LED Driver in + out LLE modules from Tridonic are 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 LLE modules guarantees the necessary protection for safe and reliable operation. Wiring examples L N + + + + + If a LED Driver other than Tridonic is used, it must provide the following protection: Short-circuit protection Overload protection Overtemperature protection LLE modules 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 LLE. With parallel wiring tolerance-related differences in output are possible (thermal stress of the module) and can cause differences in brightness. If a wire breaks or a complete module fails then the current passing through the other module increases. This may reduce its life considerably. Udriver 3.3 Wiring type and cross section The wiring can be in solid with a cross section of.14 to.5 mm² (AWG26 to AWG22). No reconnection with smaller diameters possible if used with >.34 mm² (>AWG22). wire preparation:.14.34 mm² / AWG26 AWG23 4 5.5 mm.16.22 inch wire preparation:.5 mm² / AWG22 6 7.5 mm.24.3 inch To remove the wires use a suitabel tool (Wago 26-859) or through twist and pull. LLE modules can be operated either from SELV LED Drivers or from LED Drivers with LV output voltage. LLE modules are basic isolated up to 4 V (if mounted with ACL BRIDGE LLE16 PUSH-FIX) 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 4 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. www.tridonic.com 7

3.4 Mounting instruction 4.2 Lumen maintenance for LLE G4.63 inch ADV 3.5 EOS/ESD safety guidelines 4. Life-time None of the components of the LLE (substrate, LED, electronic components etc.) may be exposed to tensile or compressive stresses. Max. torque for fixing:.5 Nm. The LED modules are mounted onto a heat sink with min. 6 M3 screws with plastic washers per module or ACL BRIDGE LLE16 PUSH-FIX. 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. 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. 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 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 maintenance 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 initial luminous flux, respectively 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. Forward current ma 15 ma 2 ma 225 ma 275 ma 325 ma 4 ma 45 ma 5 ma tp temperature L9 / F1 L9 / F5 L8 / F1 L8 / F5 L7 / F1 L7 / F5 113 F 38, h 43, h >6, h >6, h >6, h >6, h 131 F 35, h 4, h >6, h >6, h >6, h >6, h 149 F 3, h 34, h >6, h >6, h >6, h >6, h 167 F 26, h 29, h 54, h >6, h >6, h >6, h 113 F 37, h 43, h >6, h >6, h >6, h >6, h 131 F 34, h 38, h >6, h >6, h >6, h >6, h 149 F 29, h 32, h 58, h >6, h >6, h >6, h 167 F 25, h 28, h 51, h 57, h >6, h >6, h 113 F 37, h 42, h >6, h >6, h >6, h >6, h 131 F 33, h 37, h >6, h >6, h >6, h >6, h 149 F 28, h 31, h 55, h >6, h >6, h >6, h 167 F 23, h 26, h 48, h 54, h >6, h >6, h 113 F 37, h 42, h >6, h >6, h >6, h >6, h 131 F 32, h 37, h >6, h >6, h >6, h >6, h 149 F 27, h 3, h 54, h >6, h >6, h >6, h 167 F 23, h 25, h 46, h 52, h >6, h >6, h 113 F 36, h 41, h >6, h >6, h >6, h >6, h 131 F 31, h 36, h >6, h >6, h >6, h >6, h 149 F 26, h 29, h 51, h 59, h >6, h >6, h 167 F 21, h 24, h 43, h 48, h >6, h >6, h 113 F 36, h 41, h >6, h >6, h >6, h >6, h 131 F 3, h 34, h 58, h >6, h >6, h >6, h 149 F 25, h 27, h 48, h 56, h >6, h >6, h 167 F 2, h 22, h 4, h 45, h >6, h >6, h 113 F 36, h 4, h >6, h >6, h >6, h >6, h 131 F 29, h 33, h 55, h >6, h >6, h >6, h 149 F 23, h 25, h 44, h 51, h >6, h >6, h 167 F 18, h 19, h 35, h 4, h 59, h >6, h 113 F 35, h 4, h >6, h >6, h >6, h >6, h 131 F 28, h 32, h 53, h 6, h >6, h >6, h 149 F 21, h 23, h 41, h 48, h >6, h >6, h 167 F 16, h 18, h 32, h 36, h 54, h >6, h 113 F 35, h 39, h >6, h >6, h >6, h >6, h 131 F 27, h 3, h 51, h >6, h >6, h >6, h 149 F 2, h 22, h 38, h 44, h >6, h >6, h 167 F 15, h 16, h 29, h 32, h 49, h 56, h www.tridonic.com 8

5. Electrical values 5.1 Declaration of electrical parameters Irated... Nominal operating current the module is designed for. Imax... Max. permissible continuous operating current. Max. DC forward current... Max. permissible continuous operating current incl. the tolerances of the LED Driver. LED module may be destroyed if this value is exceeded. Max. permissible LF current ripple... Max. output current of the LED Driver incl. Tolerances and LF current ripple must not exceed this value. Max. permissible peak current... The max. output peak current of the LED Driver must not exceed this value. 5.2 Typ. forward voltage vs. forward current LLE G4 16x14mm 325lm 8xx ADV 5 LLE G4 16x28mm 65lm 8xx ADV 5 4 4 Forward current [ma] 3 Forward current [ma] 3 2 2 8, 8,1 8,2 8,3 8,4 8,5 8,6 8,7 8,8 8,9 Forward voltage [V] 9, 16, 16,5 17, 17,5 Forward voltage [V] 18, LLE G4 16x56mm 13lm 8xx ADV 5.3 Forward voltage vs. tc temperature 5 115 Forward current [ma] 4 3 2 Rel. forward voltage [%] 11 15 32 The diagrams are based on statistic values. The real values can be different. 33 34 35 Forward voltage [V] 36 95-58 -22 14 5 86 122 158 194 tc [ F] www.tridonic.com 9

6. Photometric characteristics 6.1 Coordinates and tolerances according to CIE 1931 The specified colour coordinates are integral measured by current impulse of 325 ma and a duration of ms. The ambient temperature of the measurement is ta = 77 F. The measurement tolerance of the colour coordinates are ±.1. 2,7 K x y Centre.4578.493,43,425,42,415,4,45,4,395 norm. intensity [%] 8 6 4 2,39,44,445,45,455,46,465,47,475,48 38 42 46 5 54 58 62 66 7 74 78 MacAdam Ellipse: 3SDCM wave length [nm] 3, K x y Centre.434.426,425,42,415,4,45,4,395,39 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.3822.3794,4,395,39,385,38,375,37,365 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] www.tridonic.com 1

6.2 Light distribution 6.4 Relative luminous flux vs. operating current The optical design of the LLE product line ensures optimum homogeneity for the light distribution. relative intensity Iv/Iv, max 8 6-6 4 2-5 - -4-8 -3-6 -2-4 -1 1 2-2 2 4 3 6 4 5 6 8 7 8 9 Rel. luminous flux [%] 125 75 5 25 2 Operating current [ma] 3 4 6.3 Relative luminous flux vs. tc temperature 11 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 homogeneous light distribution a suitable optic (e. g. PMMA diffuser) and a sufficient spacing between module and optic (typ. 4 cm) should be used. The diagrams are based on statistic values. The real values can be different. 7. Miscellaneous 7.1 Additional information Additional technical information at www.tridonic.com Technical Data Guarantee conditions at www.tridonic.com Services Life-time declarations are informative and represent no warranty claim. rel. luminous flux [%] 9 8 7 77 95 113 131 149 167 tc [ F] 185 www.tridonic.com 11