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LUXEON C Power Light Source Introduction The LUXEON C is the power LED that enables manufacturers of appliances, portable lighting solutions and power tools to economically incorporate high quality, high performance LEDs in their applications. LUXEON C delivers high lumens per dollar and 70% lumen maintenance at 20K hours in a very compact package that can be easily integrated into the smallest of spaces. Features Benefits Key Applications Typical light output of 95 lumens at 350 ma Small un-encapsulated light source simplifies optic design Die on ceramic construction reduces thermal management Maximum junction temperature of 135 C Maximum drive current 500 ma Best moisture sensitivity: JEDEC Level1, unlimited floor life no need for reconditioning Small form factor: 2.04 x 1.64 x 0.7 mm Leading flux density allows you to reduce the number of LEDs used, reducing your manufacturing cost Design smaller, sleeker solutions with ultra compact LEDs Small source size allows you to create efficient optical designs enabling lighting solutions with fewer LEDs Minimized thermal management reduces design complexity for optimized solutions High efficacy emitters require less electricity than conventional solutions Flash LUXEON C Datasheet DS41 2014 Philips Lumileds Lighting Company.

Table of Contents General Information......................................................................................... 2 Product Nomenclature...2 Average Lumen Maintenance Characteristics...2 Environmental Compliance...2 Electrical and Optical Characteristics...3 Absolute Maximum Ratings...3 JEDEC Moisture Sensitivity...3 Reflow Soldering Characteristics....4 Mechanical Dimensions...5 Pad Configuration...6 Solder Pad Design....6 Wavelength Characteristics...7 Light Output Characteristics over Temperature....8 Typical Forward Current Characteristics...9 Current Derating Curves....10 Typical Spatial Radiation Pattern... 11 Emitter Pocket Tape Packaging....12 Emitter Reel Packaging...13 Product Binning and Labeling...14 LUXEON C Bin Structure...14 LUXEON C Bin Coordinates...15 Luminous Flux Bins....15 LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. i

General Information Product Nomenclature LUXEON C is tested and binned at 350 ma, with current pulse duration of 20 ms. All characteristic charts where the thermal pad is kept at constant temperature (25 C typically) are measured with current pulse duration of 20 ms. The part number designation is explained as follows: L X C L A B C D E F G H Where: A designates package and radiation pattern (value E for lambertian emitter) B designates off-state color (value Y for yellow) C designates on-state color (value W for LUXEON C series) D designates generation EFGH reserved for future product offerings Therefore products tested and binned at 350 ma follow the part numbering scheme: L X C L - E Y W 4 Average Lumen Maintenance Characteristics Lumen maintenance for solid-state lighting devices (LEDs) is typically defined in terms of the percentage of initial light output remaining after a specified period of time. Philips Lumileds projects that LUXEON C products will deliver, on average, 70% lumen maintenance (L70) at 20,000 hours of operation at a forward current of up to 350 ma. This projection is based on constant current operation with junction temperature maintained at or below 135 C. This performance is based on independent test data, Philips Lumileds historical data from tests run on similar material systems, and internal LUXEON reliability testing. Observation of design limits included in this data sheet is required in order to achieve this projected lumen maintenance. Environmental Compliance Philips Lumileds is committed to providing environmentally friendly products to the solid-state lighting market. LUXEON C is compliant to the European Union directives on the restriction of hazardous substances in electronic equipment, including the RoHS directive and REACH compliance. Philips Lumileds will not intentionally add the following restricted materials to the LUXEON C: lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (PBB) or polybrominated diphenyl ethers (PBDE). Product Selection Guide Table 1. Part Number Description Package Quantity LXCL-EYW4 LUXEON C 5,000 Notes for Table 1: 1. Philips Lumileds maintains a tolerance of ± 10% on luminous flux. 2. LUXEON C products with higher performance levels may become available in the future. Please consult Philips Lumileds for more information. 3. Test current is 350 ma for all LXCL-EYW4 products. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 2

Electrical and Optical Characteristics LUXEON C at Test Current (350 ma) Thermal Pad Temperature = 25 C Table 2. Parameter Minimum Typical Maximum Units Luminous Flux 1 80 95 lm Forward Voltage 2 2.80 2.95 3.57 V Color Temperature 3 5028K 5310K 5665K CRI 75 Dynamic Resistance 4 0.64 Ω Temp Coefficient of Forward Voltage 5-3.0 mv/ C Thermal Resistance, junction-case Notes for Table 2: 8 C/W Viewing Angle 120 deg 1. Philips Lumileds maintains a tester tolerance of ±10% on flux measurements. 2. Philips Lumileds maintains a tolerance of ±0.06V on forward voltage measurements. Absolute Maximum Ratings Table 3. Parameter LUXEON C DC Forward Current (ma) [1] 500 Peak Pulsed Forward Current (ma) [2] 1500 ESD Sensitivity (JEDEC 3b) < 8000V Human Body Model (HBM) Class 3B JESD22-A114-E Storage Temperature -40 C - 120 C Reflow Soldering Temperature 260 for 40 sec. max LED Junction Temperature 135 C Operating CaseTemperature at 350 ma -40 C - 85 C Moisture Sensitivity Level (MSL) [3] 1 Notes for Table 3: 1. Operation below 100 ma not recommended. 2. Peak pulse current with a maximum pulse duration not to exceed 500 ms and a maximum duty factor of 10%. 3. Per IPC/JEDEC J-STD-20 MSL. 4. LEDs are not designed to be driven in reverse bias. 5. Stresses in excess of the absolute maximum ratings can cause damage to the emitter. Maximum rating limits apply to each parameter in isolation, all parameters having values within the current derating curves. It should be assumed that limiting values of more than one parameter can be applied to the product at the same time. Exposures to the absolute maximum ratings for extended periods can adversely affect device reliability. JEDEC Moisture Sensitivity Table 4. Level 1 unlimited Floor Life Soak Requirements Standard Time Conditions Time Conditions [30 C / 85% RH 168h + 5 / - 0 85 C / 85% RH LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 3

Reflow Soldering Characteristics Figure 1. Temperature Profile for Table 5. Table 5. Profile Feature Average Ramp-Up Rate ( Ts max to T p ) Lead Free Assembly 3 C / second max Preheat Temperature Min ( Ts min ) 150 C Preheat Temperature Max ( Ts max ) 200 C Preheat Time ( ts min to ts max ) 60-180 seconds Time Maintained Above Temperature T L 217 C Time Maintained Above Time ( t L ) 60-150 seconds Peak / Classification Temperature ( T P ) 260 C Time Within 5 C of Actual Peak Temperature ( t P ) Ramp-Down Rate Time 25 C to Peak Temperature 20-40 seconds 6 C / second max 8 minutes max Note for Table 5: 1. All temperatures refer to the application Printed Circuit Board (PCB), measured on the surface adjacent to the package body. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 4

Mechanical Dimensions Light emi ng surface 1.64 ± 0.10 2.04 ± 0.10 Indicates op cal center TOP VIEW Typical 0.72 ± 0.10 0.15 0.7±0.10 SIDE VIEW 0.125± 0.05 1.10±0.05 1.45±0.05 0.725±0.05. BOTTOM VIEW - + 0.50±0.05 0.25± 0.05 Anode Figure 2. Package outline drawing for LUXEON C. Notes for Figure 2: 1. Drawings not to scale. 2. All dimensions are in millimeters. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 5

Pad Configuration Cathode Anode Bo om view Figure 3. Pad configuration. Solder Pad Design anode Figure 4. Solder pad layout. Notes for Figures 3 and 4: 1. The photograph shows the recommended LUXEON C layout on Printed Circuit Board (PCB) with white solder mask. 2. Application brief AB36 provides extensive details of this layout including the solder stencil mask design. In addition, the.dwg files are available at www.philipslumileds.com and www.philipslumileds.cn.com. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 6

Wavelength Characteristics LUXEON C at Test Current, Case Temperature = 25 C Typical Spectral Power Distribution Figure 5. Color spectrum of 5000K to 7000K emitters, integrated measurement. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 7

Light Output Characteristics over Temperature Typical Relative Luminous Flux vs. Case Temperature 1.1 1.05 1 Rela ve luminous flux 0.95 0.9 0.85 0.8 0.75 0.7 0.65 0.6-40 -20 0 20 40 60 80 LED case temperature ( C) Figure 6. Relative light output vs. temperature. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 8

Typical Forward Current Characteristics Typical Forward Current vs. Forward Voltage, T a = 25 C Thermal Pad Temperature = 25 C 500 400 nt (ma) Forw ward Curre 300 200 100 0 2.50 2.60 2.70 2.80 2.90 3.00 3.10 3.20 3.30 3.40 3.50 Forward voltage (V) Figure 7. Typical forward current vs. forward volatage. Typical Relative Luminous Flux vs. Forward Current T a = 25 C 1.4 1.2 1 tive Lumino ous Flux Relat 0.8 0.6 0.4 0.2 0 0 100 200 300 400 500 Forward Current (ma) Figure 8. Typical relative luminous flux vs. forward current. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 9

Current Derating Curves Current Derating Curve for 350 ma Drive Current 400 350 300 ) Forward Cu urrent (ma) 250 200 150 15 C/W 25 C/W 35 C/W 45 C/W I F - 100 50 0 0 25 50 75 100 125 150 T A - Ambient Temperature ( C) Figure 9. Maximum forward current vs. ambient temperature, based on T JMAX = 135 C. Current Derating Curve for 500 ma Drive Current 600 500 I F - Forward Cu urrent (ma) 400 300 200 15 C/W 25 C/W 35 C/W 45 C/W 100 0 0 25 50 75 100 125 150 T A - Ambient Temperature ( C) Figure 10. Maximum forward current vs. ambient temperature, based on T JMAX = 135 C. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 10

Typical Spatial Radiation Pattern Typical Angular Intensity Distribution 1.2 1.0 Flux Intens sity 0.8 Luminous Relative 0.6 0.4 02 0.2 0.0-90 -60-30 0 30 60 90 Angle (degrees) Figure 11. Typical angular intensity distribution. Typical Polar Radiation Pattern 90 120 60 150 30 0% 20% 40% 60% 80% 100% Figure 12. Typical polar radiation pattern. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 11

Emitter Pocket Tape Packaging Figure 13. Emitter pocket tape packaging. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 12

Emitter Reel Packaging Figure 14. Emitter reel packaging. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 13

Product Binning and Labeling Purpose of Product Binning In the manufacturing of semiconductor products, there is a variation of performance around the average values given in the technical data sheets. For this reason, Philips Lumileds bins the LED components for luminous flux, color and forward voltage (V f ). Decoding Product Bin Labeling LUXEON C emitters are labeled using a four digit alphanumeric code (CAT code) depicting the bin values for emitters packaged on a single reel. At this time LUXEON C is binned for color and luminous flux. All emitters packaged within a reel are of the same 2-variable bin combination. Using these codes, it is possible to determine the optimum mixing and matching of products for consistency in a given application. Reels are labeled with a four digit alphanumeric CAT code following the format below. ABCD A, B & C = Color bin (84A, 85A, etc.) D = Flux bin (7 or 8) Although several bins are outlined, product availability in a particular bin varies by production run and by product performance. LUXEON C Bin Structure 0.44 2700K 0.42 3500K 7B 3000K 7C 8B 8C blackbody locus y 0.40 0.38 0.36 5700K 3B 5000K 3C 4B 4A 4500K 4D 4C 5A 5B 3985K ±275K 4000K 5D 5C 6A 6B 3465K ±245K 6D 6C 7A 3045K ±175K 7D 8A 2725K ±145K 8D 0.34 6500K 1B 1C 1D 2B 2A 2C 2D 3A 3D 4503K ±243K 0.32 1A 5028K ±283K 0.30 6530K ±510K 5665K ±355K 0.28 0.28 0.30 0.32 0.34 0.36 0.38 0.40 0.42 0.44 0.46 0.48 0.50 x Figure 15. LUXEON C bin structure. LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 14

LUXEON C Bin Coordinates LUXEON C emitters are tested and binned by x, y coordinates. Four ANSI fine bins cover the CCT range 5028K to 5665K. Table 6. Flux Bins Nominal CCT ANSI Bins CAT Bin Codes X Y 5000K 3A 86A 5000K 3B 84A 5700K 2C 85A 5700K 2D 87A Notes for Table 6: 1. Philips Lumileds maintains a tester tolerence of ±0.005 on x,y color coordinates. 0.344719 0.336916 0.336600 0.343985 0.346260 0.337600 0.336916 0.344719 0.337600 0.329053 0.329231 0.336916 0.336916 0.329231 0.329330 0.336600 0.351301 0.344873 0.336900 0.342749 0.368726 0.361600 0.344873 0.351301 0.361600 0.353812 0.338266 0.344873 0.344873 0.338226 0.330539 0.336900 Luminous Flux Bins Table 7 lists the standard photometric luminous flux bins for LUXEON C emitters (tested and binned at 350 ma). Table 7. Flux Bins - All Colors Bin Code Minimum Photometric Flux (lm) Maximum Photometric Flux (lm) 7 80 90 8 90 100 9 100 110 LUXEON C Datasheet DS41 20140604 2014 Philips Lumileds Lighting Company. 15

Who We Are Philips Lumileds focuses on one goal: Creating the world s highest performing LEDs. The company pioneered the use of solid-state lighting in breakthrough products such as the first LED backlit TV, the first LED flash in camera phones, and the first LED daytime running lights for cars. Today we offer the most comprehensive portfolio of high quality LEDs and uncompromising service. Philips Lumileds brings LED s qualities of energy efficiency, digital control and long life to spotlights, downlights, high bay and low bay lighting, indoor area lighting, architectural and specialty lighting as well as retrofit lamps. Our products are engineered for optimal light quality and unprecedented efficacy at the lowest overall cost. By offering LEDs in chip, packaged and module form, we deliver supply chain flexibility to the inventors of next generation illumination. Philips Lumileds understands that solid state lighting is not just about energy efficiency. It is about elegant design. Reinventing form. Engineering new materials. Pioneering markets and simplifying the supply chain. It s about a shared vision. Learn more about our comprehensive portfolio of LEDs at www.philipslumileds.com. No. E352519 RoHS COMPLIANT Philips Lumileds Lighting Company shall not be liable for any kind of loss of data or any other damages, direct, indirect or consequential, resulting from the use of the provided information and data. Although Philips Lumileds Lighting Company has attempted to provide the most accurate information and data, the materials and services information and data are provided as is and Philips Lumileds Lighting Company neither warranties, nor guarantees the contents and correctness of the provided information and data. Philips Lumileds Lighting Company reserves the right to make changes without notice. You as user agree to this disclaimer and user agreement with the download or use of the provided materials, information and data. 2014 Philips Lumileds Lighting Company. All rights reserved. LUXEON is a registered trademark of the Philips Lumileds Lighting Company in the United States and other countries. www.philipslumileds.com www.philipslumileds.cn.com LUXEON C Datasheet DS41 20140604

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