DS204 LUMILEDS | Alldatasheet
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DS204 LUXEON 3535 2D Product Datasheet ©2016 Lumileds Holding B.V. All rights reserved. RoHS COMPLIANT LUXEON 3535 2D is a mid power LED delivering optimized performance in combination with the Quality of Light needed for distributed light source applications. In addition, the product comes in specified correlated color temperature and color rendering combinations for high brightness systems while improving system lm/$. LUXEON 3535 2D emitters deliver the efficacy and reliability required by the indoor and outdoor illumination markets. LUXEON 3535 2D High flux in a 3535 package with full range of CCTs and CRIs FEATURES AND BENEFITS PRIMARY APPLICATIONS Industry standard package enables drop-in replacement for existing 3535 packages Architectural High efficacy for sustainable designs Downlights 80CRI minimum and R9>0 for quality indoor lighting High Bay & Low Bay 1/6th and 1/9th ANSI color binning delivers tight color control Indoor Area Lighting Full range of CCTs and CRIs Lamps Outdoor Specialty Lighting Spotlights NO LONGER ORDERABLE
- LUXEON 3030 2D For NEW designs consider this replacement product:
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. i Table of Contents NO LONGER ORDERABLE
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 2 General Information Part Number Nomenclature LUXEON Mid-Power Illumination emitters are tested and binned at 100mA, with current pulse duration of 20ms. All characteristic charts where the thermal pad is kept at constant temperature (25°C typically) are measured with current pulse duration of 20ms. Under these conditions, junction temperature and thermal pad temperature are the same. The part number designations for the MXCA series is explained as follows: M X C A - B C D E - I J K L Where: A — designates minimum CRI performance (value 7 = 70 minimum and 8 = 80 minimum) B — designates radiation pattern (value P = Lambertian) C — designates color (value W = White) D, E — designates nominal ANSI CCT (for example, 30 = 3000K and 40 = 4000K) I, J, K & L — additional part number designation Therefore products in this series with minimum CRI value of 80, CCT of 4000K will have the part numbering scheme: M X C 8 - P W 4 0 - 0 0 0 0 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. LM-80 test reports are available upon request. Environmental Compliance Lumileds is committed to providing environmentally friendly products to the solid-state lighting market. LUXEON Mid-Power LEDs are compliant to the European Union directives on the restriction of hazardous substances in electronic equipment, namely REACH and the RoHS directive. Lumileds will not intentionally add the following restricted materials to these LEDs: lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (PBB) or polybrominated diphenyl ethers (PBDE). NO LONGER ORDERABLE
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 3 Product Selection Product Selection for Mid-Power LEDs Solder Pad Temperature = 25°C, Test Current = 100mA Table 1. Nominal CCT Part Number Minimum CRI Typical CRI R9 Min Luminous Flux (lm) ɸ V Typ Luminous Flux (lm) ɸ V 2700K MXC8-PW27-0000 80 82 R9>0 55 80 MXC9-PW27-1111 85 90 R9>50 50 68 MXC9-PW27-0000 90 92 R9>50 50 68 3000K MXC8-PW30-0000 80 82 R9>0 55 80 MXC9-PW30-1111 85 90 R9>50 50 68 MXC9-PW30-0000 90 92 R9>50 50 68 3500K MXC8-PW35-0000 80 82 R9>0 55 80 MXC9-PW35-0000 85 90 typ 50 50 68 4000K MXC7-PW40-0000 70 72 - 70 77 MXC8-PW40-0000 80 82 R>0 60 82 MXC9-PW40-0000 85 90 typ 50 55 65 5000K MXC7-PW50-0000 70 72 - 70 77 MXC8-PW50-0000 80 82 R>0 60 83 5700K MXC7-PW57-0000 70 72 - 70 77 MXC8-PW57-0000 80 82 R>0 60 73 6500K MXC7-PW65-0000 70 72 - 70 77 MXC8-PW65-0000 80 82 R9>0 60 81 MXC9-PW65-0000 86 90 R9>46 60 76 Note for Table 1: 1. Lumileds maintains a tolerance of ±7.5% on luminous flux and ±2 on CRI measurements. NO LONGER ORDERABLE
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 4 Optical Characteristics Optical Characteristics of Mid-Power LEDs Solder Pad Temperature = 25°C, Test Current = 100mA Table 2. Nominal CCT Color Temperature CCT Typical Total Included Angle [1] (degrees) u0.90V Typical Viewing Angle [2] (degrees) 2u ½Minimum Typical Maximum 2700K 2550K 2700K 2850K 150 115 3000K 2850K 3000K 3200K 150 115 3500K 3200K 3500K 3750K 150 115 4000K 3750K 4000K 4250K 150 115 5000K 4700K 5000K 5300K 150 115 5700K 5300K 5700K 6000K 150 115 6500K 6000K 6500K 7000K 150 115 Notes for Table 2: 1. Total angle at which 90% of total luminous flux is captured. 2. Viewing angle is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value.
Electrical Characteristics
Electrical Characteristics of Mid-Power LEDs Thermal Pad Temperature = 25°C, Test Current = 100mA Table 3. Part Number Forward Voltage Vf [1] (V) Typical Temperature Coefficient of Forward Voltage [2] (mV/°C) DVF / DTJ Typical Thermal Resistance Junction to Solder Pad (°C/W) Ru J-C Minimum Typical Maximum Notes for Table 3: 1. Lumileds maintains a tolerance of ±0.10V on forward voltage measurements. 2. Measured at Tj between 25°C and 110°C. NO LONGER ORDERABLE
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 5 Absolute Maximum Ratings Table 4. Parameter Maximum Performance DC Forward Current (mA) [1] 200 Peak Pulsed Forward Current (mA) 240 ESD Sensitivity Class 2 HBM per ANSI/ESDA/JEDEC JS-001-2012 Pass 400V MM per JEDEC JESD22-A115C LED Junction Temperature [2] 125°C Operating Case Temperature at 100 mA -40°C - 105°C Storage Temperature -40°C - 105°C Soldering Temperature JEDEC 020D 260°C Allowable Reflow Cycles 3 Reverse Voltage (Vr) [3], [4] -5V Notes for Table 4: 1. Ripple current with a frequency of 50-150 Hz is allowed, as long as the average of the current waveform is below 200mA, and the maximum of the current waveform is lower than 200mA. 2. Proper current derating must be observed to maintain junction temperature below the maximum. 3. LUXEON Mid-Power LEDs are not designed to be driven in reverse bias. 4. At maximum reverse current of 10µA. JEDEC Moisture Sensitivity Table 5. Level Floor Life Soak Requirements Standard Time Conditions Time Conditions 2 1 year [ 30°C / 60% RH 168 Hrs. + 5 / - 0 Hrs. [85°C / 60% RH NO LONGER ORDERABLE
Table 6. Reflow Profile in Accordance with J-Std-020D.
- All temperatures refer to the application Printed Circuit Board (PCB), measured on the surface adjacent to the package body.
Temperature profile for Table 6.
- All dimensions are in millimeters.
- Lead Frame: Copper Alloy with Silver Plating
- Package Body: High Temperature Thermal Plastic
- Encapsulant: Silicone Resin
- Solder Lead Finish: Sn-Sn Plating 2.6
3.7 MAX
Figure 1. Package outline drawing.
- The drawing above shows the recommended solder pad layout on Printed Circuit Board (PCB).
directly or indirectly reacting with the silicone. fluxes, conformal coating materials, potting materials and even some of the inks that are used to print the PCBs. permeability increases with temperature, more VOCs may diffuse into and/or evaporate out from the silicone. Please refer to AB203 for more details on VOCs and other incompatible chemicals. Figure 2. Solder pad layout.
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 10 Relative Intensity vs. Wavelength, MXC9-PWxx Figure 3c. Typical color spectrum of MXC9-PWxx emitter, integrated measurement at solder pad temperature = 25°C, forward current = 100mA. NO LONGER ORDERABLE
Figure 6. Typical emitter efficacy versus forward current, solder pad temperature = 25°C.
Figure 7. Typical forward current vs. forward voltage, solder pad temperature = 25°C.
- All dimensions are in millimeters
- Empty component pockets sealed with top cover tape
- The maximum number of consecutive missing LEDs is two.
Figure 10. Emitter pocket tape packaging.
- All dimentions are in millimeters.
- Empty component pockets sealed with top cover tape.
- 329 mm reel - 5000 pieces per reel.
- Minimum packing quantity is 5000 pieces.
- The maximum number of consecutive missing LEDs is two.
- In accordance with EIA-481-1-B specification. 329 12,4 □13,1 +0,5-0,2 1.5 min 18.4 (max, measure at hub) 100 +/-0.5
Figure 11. Emitter reel packaging.
DS204 LUXEON 3535 2D Product Datasheet 20160628 ©2016 Lumileds Holding B.V. All rights reserved. 17 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, Lumileds bins the LED components for luminous flux, color and forward voltage (Vf ). Decoding Product Bin Labeling LUXEON Mid-Power emitters are labeled using a four digit alphanumeric code (CAT code) depicting the bin values for emitters packaged on a single reel. All emitters packaged within a reel are of the same 3-variable bin combination. Using these codes, it is possible to determine optimum mixing and matching of products for consistency in a given application. Reels of 2700K, 3000K, 3500K, 4000K, 5000K, 5700K and 6500K emitters are labeled with a four or five digit alphanumeric CAT code following the format below. A B C D or A x B C D Where: A = Flux bin (D, etc.) x = Lumileds internal use B and C = Color bin (For example 51, 52, 53, 54, 55, 56 or 5D, 5E, 8F, 8G, 8H, 8J, 8K, 8L, 8M) D = Vf bin Luminous Flux Bins Table 7 lists the standard photometric luminous flux bins for LUXEON Mid-Power emitters (tested and binned at 100mA). Although several bins are outlined, product availability in a particular bin varies by production run and by product performance. Not all bins are available in all colors. T able 7. Flux Bins Bin Code Minimum Photometric Flux (lm) Maximum Photometric Flux (lm) A 55 60 B 60 65 C 65 70 D 70 75 E 75 80 F 80 85 G 85 90 H 90 95 J 95 100 K 100 105 L 105 110 M 110 115 N 115 120 Tested and binned at 25°C, If=100mA. Tester tolerance: ±7.5%. NO LONGER ORDERABLE
Table 8. Vf Bins Tested and binned at 25°C, If = 100mA. Tester tolerance: ±0.10V.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 12. ANSI 2700K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 13. ANSI 2700K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 14. ANSI 3000K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 15. ANSI 3000K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 16. ANSI 3500K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 17. ANSI 3500K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 18. ANSI 4000K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 19. ANSI 4000K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 20. ANSI 5000K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 21. ANSI 5000K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 22. ANSI 5700K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 23. ANSI 5700K 1/9th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100 mA. Tester tolerance: +/- 0.01 in x and y coordinates
Figure 24. ANSI 6500K 1/6th color bin structure.
LUXEON Mid-Power Emitters are tested and binned by x,y coordinates.
- Tested and binned at 25°C and If = 100mA. Tester tolerance: +/- 0.01 in x and y coordinates.
Figure 25. ANSI 6500K 1/9th color bin structure.
Product Datasheet 20160628 Neither Lumileds Holding B.V. nor its affiliates shall 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 Lumileds Holding B.V. and/or its affiliates have attempted to provide the most accurate information and data, the materials and services information and data are provided “as is,” and neither Lumileds Holding B.V. nor its affiliates warrants or guarantees the contents and correctness of the provided information and data. Lumileds Holding B.V. and its affiliates reserve 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. ©2016 Lumileds Holding B.V. All rights reserved. LUXEON is a registered trademark of the Lumileds Holding B.V. in the United States and other countries. lumileds.com About Lumileds Lumileds is the global leader in light engine technology. The company develops, manufactures and distributes groundbreaking LEDs and automotive lighting products that shatter the status quo and help customers gain and maintain a competitive edge. With a rich history of industry “firsts,” Lumileds is uniquely positioned to deliver lighting advancements well into the future by maintaining an unwavering focus on quality, innovation and reliability. To learn more about our portfolio of light engines, visit lumileds.com. NO LONGER ORDERABLE