LG LLDMWW0-15K902A User Manual
LG LLDMWW0-15K902A User Manual

LG LLDMWW0-15K902A User Manual

15w class led module

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15W Class LED Module

User Manual

LLDMWW0-15K902A
Model :

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Summary of Contents for LG LLDMWW0-15K902A

  • Page 1: User Manual

    15W Class LED Module User Manual LLDMWW0-15K902A Model :...
  • Page 2: Table Of Contents

    Table of Contents 1 Product Description 1. Product Description ································ 2. Specification ································ 3. LED Module Instruction Manual ································ 4. Applications ································ 5. Warranty ································ 6. Ordering Information ································ Appendix. A. Derived Models ································ Appendix. B. LED Package Properties ································ Appendix.
  • Page 3: Product Description

    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.
  • Page 4: Specification

    ◈ Models in the Appendix. A are measured to determine all values above with input current 500mA. ◈ All values above are measured by the Integrating Sphere of LG Innotek with EC1000S / WT210. ◈ All optic values are measured at 10± 2sec. in the Integrating Sphere.
  • Page 5 ◆ Module Specification with Type III lens and 6500K CCT(Base Model) Type III Lens III L Horizontal view Vertical view ◆ Beam Angle : H 135 ° V 60° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 1000...
  • Page 6 ◆ Module Specification with Type II lens and 6500K CCT Type II Lens II L Horizontal view Vertical view ◆ Beam Angle : H 160 ° V 70 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 6500...
  • Page 7 ◆ Module Specification with Type V(Sq130°) lens and 6500K CCT Type V(Sq130°) Lens V(S 130°) L Horizontal view Vertical view ◆ Beam Angle : H 130 ° V 130 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K]...
  • Page 8 ◆ Module Specification with Type V(130°) lens and 6500K CCT Type V(130°) Lens V(130°) L Horizontal view Vertical view ◆ Beam Angle : H 130° V 130 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 1000 1055...
  • Page 9 ◆ Module Specification with Type V(115°) lens and 6500K CCT Type V(115°) Lens V(115°) L Horizontal view Vertical view ◆ Beam Angle : H 115° V 115 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 1100 1180...
  • Page 10 ◆ Module Specification with Type V(30°) lens and 6500K CCT Type V(30°) Lens V(30°) L Horizontal view Vertical view ◆ Beam Angle : H 30° V 30 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 1100 1180...
  • Page 11 ◆ Module Specification with Type V(20°) lens and 6500K CCT Type V(20°) Lens V(20°) L Horizontal view Vertical view ◆ Beam Angle : H 20° V 20 ° Light Distribution Table 1. Luminance values depending on Input Current [mA] Luminance [lm] CCT[K] 1100 1180...
  • Page 12: Led Module Instruction Manual

    The LED module must be used only with certain power supplies recommended by LG Innotek or a power which is satisfied for all the values in the Specification on Page 2. ◈ Heatsink which takes the thermal energy from the LED module should be tightly attached on the module so that the module temperature, especially at Tc, can keep the condition lower than 70 ˚C.
  • Page 13: Applications

    4. Applications - 11 -...
  • Page 14: Warranty

    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.
  • Page 15: Ordering Information

    6. Ordering Information Item Option Code 3000K 4000K 6500K Type II (H:135ºC V:60ºC) Type III (H:135ºC V:60ºC) Type V (Square 130ºC) Lens Type V (Circle 130ºC) Type V (Circle 115ºC) Type V (Circle 115 C) Type V (Circle 30ºC) Type V (Circle 20ºC) JWPF, waterproof Connector JST Mfg.
  • Page 16: Appendix. A. Derived Models

    Appendix. A. Model Information 1. Model Name Lens Model Name Remarks Type II LLDMWW0-15K901A LRD01-11J4A Type III Base Model (LLDMWW0-15K902A) Type V(Sq 130°) LLDMWW0-15K903A 6500K Type V(130°) LLDMWW0-15K904A Type V(115°) LLDMWW0-15K905A Type V(30°) LLDMWW0-15K906A Type V(20°) LLDMWW0-15K907A 2. Model Dimension...
  • Page 17: Appendix. B. Led Package Properties

    Appendix. B. LED Package Properties 1. LED PKG Flux Characteristics (t = 25ºC) CCT Range Color Luminous Flux [lm] @ 350mA Typical CRI Cool White 5000K 8300K 2. LED PKG Characteristics Characteristics Unit Typical Maximum Thermal Resistance(Junction to Solder Point) ºC/W Viewing Angle Degrees...
  • Page 18 4. PKG Multi-Rank Mixing(M.R.M) • CCT = 6530K ± 510K 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.
  • Page 19: Appendix. C. Thermal Management A Di C Th L M T

    Appendix. C. Thermal Management 1. Overview 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. •...
  • Page 20 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.
  • Page 21 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 Thermal Pad (Tj ~ Tc) total...
  • Page 22 5 PKG Property depending on Junction Temperature (Tj) 5. PKG Property depending on Junction Temperature (Tj) Current Ta(℃) Tsp(℃) Tj(℃) L70(hours) 350mA 174,071 1000mA 74,773 ※Reliability test result of PKG ※Current at 350mA Figure 9. Luminous Flux VS. Time VS Ti Figure10.
  • Page 23: Lens Instruction Guide

    Appendix. D. Module with Asymmetry Lens Instruction Guide Since type II and type III lens have their own light distribution direction, the LED module III l th i li ht di t ib ti th LED 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.

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