L1Q0-278000000ZZZ0 LUMILEDS | Alldatasheet

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Technical content

LUXEON Q Datasheet DS118 ©2014 Philips Lumileds Lighting Company. Features Benefits Key Applications

  • Industry standard 3535 package
  • LUXEON Flip Chip, high performance Chip Scale Package (CSP) LED
  • High efficacy at high drive current
  • Freedom from Binning - 3 & 5 SDCM
  • Hot tested at Tj = 85°C
  • UL-recognized component [E352519] with level 4 enclosure consideration
  • Faster time to market
  • Industry leading performance
  • High lumen and lm/$ at high lm/W
  • Delivers color consistency
  • Downlights
  • High bay & Low bay
  • Lamps
  • Outdoor - Outdoor Area - Roadway & Parking - Tunnel
  • Specialty LUXEON Q Industry Standard 3535 Footprint Delivering High Efficacy at High Drive Current Introduction LUXEON® Q delivers superior performance in a high power emitter that serves as a direct drop-in replacement for products that use the standard 3535 surface mount package. LUXEON Q is the first high-power LED based on LUXEON Flip Chip die, Philips Lumileds high performance Chip Scale Package (CSP) device architecture. The LUXEON Q takes advantage of a fully developed ecosystem for 3535 components, including optics, to speed the time-to-market for indoor and outdoor luminaires.

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. i Table of Contents

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 2 General Information Product Nomenclature LUXEON Q emitters are specified and binned “hot” under conditions comparable to those found in “real-world” lighting products. The test conditions for LUXEON Q are 350 mA DC with junction temperature at 85°C. The part number designation is explained as follows: L 1 Q 0 - x x y y 0 0 0 0 0 z z z 0 Where: xx — designates nominal ANSI CCT (27 for 2700K, 30 for 3000K) yy — designates minimum CRI performance (70 for 70 CRI, 80 for 80 CRI) zzz — designates minimum flux performance at standard binning current and temperature (090 for 90lm, 110 for 110lm, etc) Therefore, 80 CRI products tested and binned at 3000K with a 100lm minimum flux at binning current and temperature will have the part numbering scheme: L1Q0-3080000001000 Therefore, 70 CRI products tested and binned at 5700K with a 120lm minimum flux at binning current and temperature will have the following part numbering scheme: L1Q0-5770000001200 Average Lumen Maintenance Characteristics LUXEON Q products are tested in compliance with LM-80. Please visit www.philipslumileds.com/support/documentation/ lumen-maintenance or contact your local Philips Lumileds Technical Solutions Manager for TM-21 extrapolations or other support. Environmental Compliance Philips Lumileds is committed to providing environmentally friendly products to the solid-state lighting market. LUXEON Q is compliant to the European Union directives on the restriction of hazardous substances in electronic equipment, namely the RoHS and REACH directives. Philips Lumileds will not intentionally add the following restricted material to the LUXEON Q: lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (PBB) or polybrominated diphenyl ethers (PBDE).

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 3 Product Selection & Optical Characteristics Product Selection Guide for LUXEON Q Emitters Junction T emperature = 85°C T able 1. Typical Performance Characteristics at 350 mA, 700 mA, and 1000 mA for LUXEON Q, Junction T emperature = 85°C Part Number Nominal ANSI CCT CRI Luminous Flux (lm) Min Typical Luminous Flux (lm) Typical Forward Voltage (Vf) Typical Efficacy (lm/W) 700 mA 350 mA 350 mA 700 mA 1000 mA 350 mA 700 mA 1000 mA 350 mA 700 mA 1000 mA L1Q0-278000000zzz0 2700K 80 min 80 100 177 231 2.81 2.93 2.99 102 86 77 L1Q0-308000000zzz0 3000K 80 min 90 102 183 240 2.81 2.93 2.99 104 89 80 L1Q0-358000000zzz0 3500K 80 min 90 106 189 251 2.81 2.93 2.99 108 92 84 L1Q0-407000000zzz0 4000K 70 min 110 123 220 293 2.81 2.93 2.99 125 107 98 L1Q0-577000000zzz0 5700K 70 min 110 127 229 305 2.81 2.93 2.99 129 112 102 Notes for Table 1: 1. Philips Lumileds maintains a tolerance of ± 6.5% on luminous flux and ± 2 on CRI measurements. Optical Characteristics LUXEON Q at T est Current [1], Junction T emperature = 85°C T able 2. Nominal ANSI CCT Part Number Typical Color T emperature CCT Typical T otal Included Angle [2] (degrees) u0 .90V Typical Viewing Angle [3] (degrees) 2u 1/2 2700K L1Q0-278000000zzz0 2725K 160 135 3000K L1Q0-308000000zzz0 3045K 160 135 3500K L1Q0-358000000zzz0 3465K 160 135 4000K L1Q0-407000000zzz0 3985K 160 135 5700K L1Q0-577000000zzz0 5665K 160 135 Notes for Table 2: 1. Test current is 350 mA D.C. for all L1Q0-xxyy00000zzz0 emitters. 2. T otal angle at which 90% of total luminous flux is captured. 3. Viewing angle is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value.

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 4

Electrical Characteristics

Electrical Characteristics at test current for LUXEON Q Junction T emperature = 85°C T able 3. Nominal ANSI CCT Forward Voltage Vf (V) [1] Typical T emperature Coefficient of Forward Voltage [2] (mV/°C) DVF / DTJ Typical Thermal Resistance Junction to Thermal Pad (°C/W) Ru J-CMinimum Maximum 2700K 2.75 3.25 -1.6 7 3000K 2.75 3.25 -1.6 7 3500K 2.75 3.25 -1.6 7 4000K 2.75 3.25 -1.6 7 5700K 2.75 3.25 -1.6 7 Notes for Table 3: 1. Philips Lumileds maintains a tolerance of ± 0.06V on forward voltage measurements. 2. Measured between TJ = 25°C and TJ = 110°C at If = 350 mA. Absolute Maximum Ratings T able 4. Parameter LUXEON Q DC Forward Current (mA) [1] [2] 1050 Peak Pulsed Forward Current (mA) [1] [3] 1200 ESD Sensitivity < 8000V Human Body Model (HBM) Class 3A JESD22-A114-E LED Junction Temperature [1] 135°C Operating Case Temperature at 700 mA -40°C - 135°C Storage Temperature -40°C - 135°C Soldering Temperature JEDEC 020c 260°C Allowable Reflow Cycles 3 Reverse Voltage (Vr) [4] [5] LUXEON Q LEDs are not designed to be driven in reverse bias Notes for Table 4: 1. Proper current derating must be observed to maintain junction temperature below the maximum. For additional information on thermal measurement guidelines please refer to Application Brief AB118 (not available yet). 2. Residual periodic variations due to power conversion from alternating current (AC) to direct current (DC), also called “ripple”, with frequencies ≥ 100 Hz and amplitude ≤ 150 mA are acceptable, assuming the average current throughout each cycle does not exceed 1050 mA. 3. Pulsed operation with a peak drive current of 1200 mA is acceptable if the pulse on-time is ≤ 5 ms per cycle and the duty cycle is ≤ 50% 4. Transient reverse voltages and surge currents due to electrical switching or supply interruptions are acceptable if these events do not last for more than 10ms, the amplitude of the reverse voltage does not exceed 5V and the reverse current is less than 200μA. 5. Max 5V reverse for up to 10s is an acceptable beginning of life, one time test condition.

Figure 1. T emperature Profile for T able 6.

  1. All dimensions are in millimeters.
  2. The thermal pad is electrically isolated from the anode and cathode contact pads.
  3. Do not handle the device by the lens. Excessive force on the lens may damage the lens itself or the interior of the device.
  4. T olerances (UNLESS OTHERWISE SPECIFIED)

Figure 2. Package outline drawing for LUXEON Q.

  • The photograph shows the recommended LUXEON Q layout on Printed Circuit Board (PCB).
  • For more information on assembly and layout, please refer to Application Brief 118 (AB118).

Figure 3. Solder pad layout.

Figure 8. T ypical forward current vs. forward volatage, L1Q0-xxyy00000zzz0.

Figure 11. Emitter pocket tape packaging.

Figure 12. Emitter reel packaging.

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 14 Product Binning and Labeling Purpose of Product Binning In the manufacturing of semiconductor products, there are variations in performance around the average values given in the technical data sheets. For this reason, Philips Lumileds bins the LED components for luminous flux and forward voltage (Vf). Color is offered in a single 3-step or 5-step MacAdam ellipse color space centered on the ANSI CCT color bins. For additional information please review the MacAdam ellipse technical definition section. Decoding Product Bin Labeling LUXEON Q 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. Reels of LUXEON Q emitters are labeled with a four digit alphanumeric CAT code following the format below: ABCD A = Flux/Radiometric power bin (L, M, etc.) B, C = Color bin (5A, 5B, 5C, 5D etc.) D = VF bin (R, S)

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 15 Luminous Flux and Forward Voltage Bins Table 7 lists the standard photometric luminous flux bins for LUXEON Q emitters (tested and binned at 350 mA and Tj = 85°C). 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) 8 80 90 9 90 100 A 100 110 B 110 120 C 120 130 D 130 140 E 140 150 F 150 160 G 160 170 Table 8 lists minimum and maximum Vf bin values per emitter. Although several bins are outlined, product availability in a particular bin varies by production run and by product performance. T able 8. Vf Bins Bin Code Minimum Forward Voltage (V) Maximum Forward Voltage (V) R 2.75 3.00 S 3.00 3.25

LUXEON Q Datasheet DS118 20140109 ©2014 Philips Lumileds Lighting Company. 16 LUXEON Q 3-step and 5-step MacAdam Ellipse Color Definition T able 9. LUXEON Q Product Characteristics for 3-step MacAdam Ellipse Nominal ANSI CCT Color Space Center Point (cx, cy) Major Axis, a Minor Axis, b Ellipse Rotation Angle Min 80 CRI 3-step color bins available above (3U) and below (3L) the blackbody line . Min 70 CRI 3-step is not divided into bins above and below the blackbody line . T able 10. LUXEON Q Product Characteristics for 5-step MacAdam Ellipse Nominal ANSI CCT Color Space Center Point (cx, cy) Major Axis, a Minor Axis, b Ellipse Rotation Angle Min 70 and min 80 CRI 5-step is divided into quadrants (5A, 5B, 5C, and 5D) . Notes for Tables 9 & 10: 1. Philips Lumileds maintains a tester tolerance of ± 0.005 on x, y color coordinates. 0.380 0.390 0.400 0.410 0.420 0.430 435 440 445 450 455 460 465 470 475 480 485 ANSI C78.377-2008 3-step MacAdam ellipse 5-step MacAdam ellipse BBL "Quadrant" lines AD AB AC AA 5B 5C Note: Color bin space illustration for 2700K, 3000K, and 3500K. For CCTs 4000K and above the ellipse centers are all above the blackbody line. Color Space Definition for above and below blackbody Parameter Definition of MacAdam EllipseColor Space Definition for Above and Below Blackbody

LUXEON Q Datasheet DS118 20140109 ©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 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. Y ou as user agree to this disclaimer and user agreement with the download or use of the provided materials, information and data. 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. T oday 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.