LG LLDMWW0-15K902A Operation & User’s Manual
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Table of Contents 1 Product Description ································ 1 1 . Product Description 1 2. Specification ································ 2 3. LED Module Instruction Manual ································ 10 4. Applications ···············
LG LLDMWW0-15K902A, 1. Product Description The product is a LED module used for outdoor lights which is designed to endure in The product is a LED module used for outdoor lights which is designed to endure in severe conditions such as, extremely high and low temperature, and highly humid condition, even to operate in the water. The LED Module also can be applied with 7 Variety-Lens depending on distribution type of light in the field of outdoor light applicat
Items Unit Specification Remarks 2. Specification Input Current mA Min Typ Max DC - 500 - Color Temperature K 6530 ± 510 LED Q’TY EA 8 Forward Volta g eV 24 ± 10% g Total Luminous flux Lm 1000↑ Luminous efficiency lm/W 80 ↑ Storage Temperature ºC - 40 ~ 80 Operating Temperature ºC - 40 ~ 50 Module Spec. Weight g 92 ± 3% Connector not included Power Consumption (VDC) W12 ±
LG LLDMWW0-15K902A, T III L ◆ Module Specification with Type III lens and 6500K CCT(Base Model) Ty pe III L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 135 ° V 60° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1000 6500 72 550 1055 600 1100 650(M ) 1150 650(M ax ) 1150 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing
LG LLDMWW0-15K902A, TIIL ◆ Module Specification with Type II lens and 6500K CCT Ty pe II L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 160 ° V 70 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 900 6500 72 550 950 600 990 650(M ) 1020 650(M ax ) 1020 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research Institute (Public Approval Institution) -4 -
LG LLDMWW0-15K902A, T V(S 130 ° )L ◆ Module Specification with Type V(Sq130°) lens and 6500K CCT Ty pe V(S q 130 ° ) L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 130 ° V 130 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1000 6500 72 550 1055 600 1100 650(M ) 1150 650(M ax ) 1150 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research Institute (Public Approval Institution) -5 -
LG LLDMWW0-15K902A, T V(130 ° )L ◆ Module Specification with Type V(130°) lens and 6500K CCT Ty pe V(130 ° ) L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 130° V 130 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1000 6500 72 550 1055 600 1100 650(M ) 1150 650(M ax ) 1150 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research Institute (Public Approval Institution) -6 -
LG LLDMWW0-15K902A, ◆ Module Specification with Type V(115°) lens and 6500K CCT TV(115 ° )L Ty pe V(115 ° ) L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 115° V 115 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1100 6500 72 550 1180 600 1250 650(M ) 1300 650(M ax ) 1300 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research Institute (Public Approval Institution) -7 -
LG LLDMWW0-15K902A, ◆ Module Specification with Type V(30°) lens and 6500K CCT TV(30 ° )L Ty pe V(30 ° ) L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 30° V 30 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1100 6500 72 550 1180 600 1250 650(M ) 1300 650(M ax ) 1300 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research Institute (Public Approval Institution) -8 -
LG LLDMWW0-15K902A, ◆ Module Specification with Type V(20°) lens and 6500K CCT TV(20 ° )L Ty pe V(20 ° ) L ens Horizontal view Light Distribution Vertical view ◆ Beam Angle : H 20° V 20 ° I f [mA] Luminance [lm] CCT[K] CRI Table 1. Luminance values depending on Input Current 500 1100 6500 72 550 1180 600 1250 650(M ) 1300 650(M ax ) 1300 All Values @ Tc = 65ºC * Values measured by KTR, 2011.5 * All values can have tolerances in the range of 5% caused by Measuring Instruments. KTR : Korea Testing & Research In
LG LLDMWW0-15K902A, ◆ LED Module Installation 3. LED Module Instruction Manual ◈ When the LED module with Type II or III lens is mounted on a heatsink or luminaire, the connector way-out of the LED module should be oriented in a certain direction due to its asymmetric light distribution. Refer to the Appendix D. ◈ Combining the LED module with a heat-sink is very important for stable and normal operation of the LED module. There should be no gap between a thermal pad attached on the LED module plate, and the heatsink after they are assembled . Refer to Figure 8. ◆ Ci on the LED module plate, and the
LG LLDMWW0-15K902A, 5. Warranty LG Innotek warrants the LED module for a period of five years from the date of sale to the buyer when properly installed on a Heatsink or Luminaire and under normal conditions of use. The buyer agrees to make all claims regarding defects or deficiencies in the LED module according to the terms of LG Innotek ' s official warranty Warranty claims should be made in according to the terms of LG Innotek s official warranty . Warranty claims should be made in writing a
6. Ordering Information Item Option Code CCT 3000K WW 4000K NW 6500K CW Lens Type II (H:135ºC V:60ºC) A Type III (H:135ºC V:60ºC) B Type V (Square 130ºC) C Type V (Circle 130ºC) D Type V (Circle 115 º C) E Type V (Circle 115 C) E Type V (Circle 30ºC) F Type V (Circle 20ºC) G Connector JWPF, waterproof Connector JST Mfg. Co, Ltd. U No connector - N Cable Length 10
Appendix. A. Model Information 1. Model Name CCT Lens Model Name Remarks Type II LLDMWW0-15K901A Type III LRD01-11J4A (LLDMWW0-15K902A) Base Model 6500K Type V(Sq 130°) LLDMWW0-15K903A Type V(130°) LLDMWW0-15K904A Type V(115°) LLDMWW0-15K905A Type V(30°) LLDMWW0-15K906A Type V(20°) LLDMWW0-15K907A 2. Model Dimension - 14 -
LG LLDMWW0-15K902A, 1. LED PKG Flux Characteristics ( t j = 25ºC ) Appendix. B. LED Package Properties ( j ) Color CCT Range Luminous Flux [lm] @ 350mA Typical CRI Min Max Cool White 5000K 8300K 122 75 2. LED PKG Characteristics Characteristics Unit Typical Maximum Thermal Resistance(Junction to Solder Point) ºC/W 6 75 Viewing Angle Degrees 125 Temperature Coefficient of voltage mV/ºC -2.1 ESD Classification (HBM per Mil-Std-883D) - Class 2 DC Forward Current mA - 1500 Reverse Voltage V - 5 Forward Voltage @ 350mA V 3.0 3.75 Forward Voltage @ 700mA V 3.2 Forward Voltage @ 1000mA V 3.3 LED Junction Temperature ºC - 150 3. LED PKG Characteristic Cu
LG LLDMWW0-15K902A, 4. PKG Multi-Rank Mixing(M.R.M) • CCT = 6530K ± 510K To keep the value of CCT of the LED Module in the specified range, the PKG Rank enclosed with red line in the Figure 9 should be mixed as shown in the Table2. Arrangement of the LED PKG on the Metal PCB is recommended as shown Figure 10. CCT 6530K ± 510K Figure.3 Chromaticity Region for ANSI Cool White PKG M.R.M P1 P1 P1 P1 P2 P2 P2 P2 P2 P2 PKG A 1A 1B 1B 1A 1S 1T 1B 1A 1C 1D Table1. The Order of Priority for PKG M.R.M PKG
1 . Overview Appendix. C. Thermal Management 1 . Overview • Since heat-sink design for the module would affect lifetime and performance of the module, a heat-sink or luminaire should be designed with thermal considerations to smoothly dissipate the thermal energy to the ambient. • End product with the LED module should be designed in a manner whic
LG LLDMWW0-15K902A, 3 . Case Temperature & Junction Temperature 3 . Case Temperature & Junction Temperature • Junction Temperature(Tj) Definition of Junction Temperature(Tj) is internal temperature of a chip at which temperature has the highest value. Since it is hard to measure Junction Temperature(Tj) at firsthand the value of the Tj Since it is hard to measure Junction Temperature(Tj) at firsthand , the value of the Tj can be assumed by the equation shown in Figure.11 on the next page. • Case Temperature (Tc)
LG LLDMWW0-15K902A, 4 Estimation of Junction Temperature (Tj) 4 . Estimation of Junction Temperature (Tj) • Junction temperature (Tj) could be estimated by the equation below in Figure 11. • Tc point can be measured as described in Figure 10. Fixture or Heat sink Tc Rjc (Tj ~ Tc) Thermal Pad Tj = Tc + Ptotal xRjc Tj Figure8. Temperature of the Module at each position • How to obtain the value of Tj when Tc is measured at 50℃ ※ Basic Equation → Tj = Tc + Ptotal x Rjc - Ptotal = Typical Input Current x Forward Voltage = 0 5[A] x 24 0[V] = 12 0[W] Ptotal Typical Input Current x Forward Voltage 0 . 5[A] x 24 .
LG LLDMWW0-15K902A, 5 PKG Property depending on Junction Temperature (Tj) 5 . PKG Property depending on Junction Temperature (Tj) Current Ta(℃)Tsp(℃)Tj(℃) L70(hours) 350mA 85 85 91 174,071 1000mA 85 85 105 74,773 ※Reliability test result of PKG ※Current at 350mA Fi 9 L i Fl VS Ti Fi 10 R l ti Fl VS J ti T LED Module Thermal Specifications Parameter Min Tpical Ma Unit Remarks Fig ure 9 . L um i nous Fl ux VS . Ti me Fig ure 10 . R e l a ti ve Fl ux VS . J unc ti on T emp. Parameter
LG LLDMWW0-15K902A, Si t II d t III l h th i li ht ditibti di ti th LED dl Appendix. D. Module with Asymmetry Lens Instruction Guide Si nce t ype II an d t ype III l ens h ave th e i r own li g ht di s t r ib u ti on di rec ti on, th e LED mo d u l e with a type II or III lens has asymmetry light distribution unlike other lenses. Therefore, intended light distribution should be considered before attaching the LED module on a heatsink or luminaire. As shown below Figure 14, the LED module with type III lens should be mounted correctly in th
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