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  luxeon z ds105 ?2014 philips lumileds lighting company. features benefts key applications ? 2.2 mm 2 micro footprint ? undomed ? tested and binned at 500 ma ? up to 1a max drive current ? up to 150c max t j ? industrys leading lm/mm 2 for high fux density solutions ? highest degree of design fexibility ? superior color mixing and beam control through choice of optics ? enables customizable light sources: linear, rectangular, circular. ? architecture - entertainment - studio ? lamps - remote phosphor ? specialty - emergency vehicle luxeon z color portfolio introduction luxeon? z is a broad portfolio of color and white leds that enable never before seen lumen density, fexibility and freedom of design. available in the full spectrum of colors from 440nm to 670nm and a complete selection of white color temperatures, luxeon z is ideal for entertainment/stage lighting, indoor and outdoor architectural lighting, emergency vehicle lighting, remote phosphor applications and a wide variety of specialty lighting applications.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. i table of contents general information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 product selection & optical characteristics .......................................................... 3 flux performance, binning, and supportability ................................................... 4 electrical characteristics ........................................................................... 5 absolute maximum ratings ..................................................................... 6 jedec moisture sensitivity ..................................................................... 6 refow soldering characteristics .................................................................... 7 mechanical dimensions ........................................................................... 8 pad confguration ............................................................................. 11 solder pad design ............................................................................ 11 wavelength characteristics ....................................................................... 12 typical light output characteristics ................................................................ 13 typical forward current characterisics ............................................................. 14 typical relative luminous flux .................................................................... 15 typical radiation patterns: ........................................................................ 16 emitter pocket tape packaging .................................................................... 19 emitter reel packaging ........................................................................... 21 luminous flux bins ............................................................................... 22 forward voltage bins ............................................................................. 23 color bins ....................................................................................... 24
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 2 general information product nomenclature luxeon z color emitters are tested and binned at 25c or 85c, 500 ma, depending on the product. the part number designation for luxeon z color leds is explained as follows: l x z 1 - a b c d - e f g h where: a designates radiation pattern (value p for lambertian) b designates color (see luxeon z color binning and labeling section) c designates color variant (0 for color variants) d designates color version (1, 2, etc.) e open slot to accommodate additional requirements per product and part number fgh (optional) minimum luminous fux (lm) or radiometric power (mw) performance please see ds120 for luxeon z white part number designation.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 3 product selection & optical characteristics product selection guide for luxeon z color junction temperature = 25c table 1. color part number performance @ 500 ma performance @ 700 ma minimum luminous flux (lm) or radiometric power (mw) typical efcacy (lm/w) or radiant efcacy typical luminous flux (lm) or radiometric power (mw) typical efcacy (lm/w) or radiant efcacy green lxz1-pm01 104 96 88 80 71 63 59 54 128 120 113 103 61 53 50 46 cyan lxz1-pe01 64 56 48 44 39 35 84 74 67 38 33 30 blue lxz1-pb01 40 32 24 30 26 21 57 49 39 27 23 19 royal blue lxz1-pr01 600 550 500 43% 40% 37% 823 757 704 40% 37% 35% deep red lxz1-pa01 350 300 34% 32% 454 416 31% 29% red LXZ1-PD01 56 48 40 54 50 42 77 70 60 49 46 38 red-orange lxz1-ph01 72 64 56 69 63 57 99 90 82 66 58 53 amber lxz1-pl01 64 56 48 63 57 51 90 82 73 59 53 48 notes for table 1: 1. minimum luminous fux or radiometric pow er performance guaranteed within published operating conditions. philips lumileds maintains a tolerance of 6.5% on fux and power measurements. 2. typical luminous fux or radiometric power performance when device is operated within published operating conditions. product selection guide for luxeon z color junction temperature = 85c table 2. color part number performance @ 500 ma performance @ 700 ma minimum luminous flux (lm) typical efcacy (lm/w) typical luminous flux (lm) typical efcacy (lm/w) lime lxz1-px01 184 174 164 154 144 131 124 118 113 107 245 233 221 212 200 notes for table 2: 1. minimum luminous fux or radiometric pow er performance guaranteed within published operating conditions. philips lumileds maintains a tolerance of 6.5% on fux and power measurements. 2. typical luminous fux or radiometric power performance when device is operated at specifed conditions. 124 118 107 10 11 1 0
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 4 flux performance, binning, and supportability leds are produced with semiconductor technology that is subject to process variation, yielding a range of fux performance that is approximately gaussian in nature. in order to provide customers with fne granularity within the overall fux distribution, philips lumileds separates leds into fxed, easy to design with, minimum luminous fux bins. to verify supportability of parts chosen for your application design, please consult your philips lumileds sales representative. optical characteristics luxeon z color at 500 ma, test temperature table 3. color part number dominant wavelength [1] , l d or peak wavelength [2] , l p (nm) typical spectral half-width [3] (nm) d l 1/2 typical temp coefcient of dominant or peak wavelength (nm/c) dl d / d t j typical total included angle [4] (degrees) u 90v typical viewing angle [5] (degrees) 2 u ? min typ max green [6] lxz1-pm01 520.0 530.0 540.0 30 0.04 140 125 cyan [6] lxz1-pe01 490.0 505.0 510.0 30 0.03 140 125 blue [6] lxz1-pb01 460.0 470.0 480.0 20 0.03 140 125 royal blue [2] [6] lxz1-pr01 440.0 447.5 460.0 20 0.03 140 125 red [7] LXZ1-PD01 620.0 627.0 645.0 20 0.06 150 145 deep red [2] [7] lxz1-pa01 650.0 655.0 670.0 20 0.06 150 145 red-orange [7] lxz1-ph01 610.0 617.0 620.0 20 0.06 150 145 amber [7] lxz1-pl01 585.0 590.0 595.0 20 0.10 150 145 lime [8] lxz1-px01 566.0 567.5 569.0 100 0.01 140 125 notes for table 3: 1. dominant wavelength is derived from the cie 1931 chromaticity diagram and represents the perceived color. philips lumileds maintains a tolerance of 0.5 nm for dominant wavelength measurements. 2. royal blue and deep red leds are binned by radiometric power and peak wavelength rather than photometric lumens. philips lumileds maintains a tolerance of 2nm for peak wavelength measurements. 3. spectral width at ? of the peak intensity. 4. total angle at which 90% of total luminous fux is captured. 5. viewing angle is the of axis angle from lamp centerline where the luminous intensity is ? of the peak value. 6. green, cyan, blue, royal blue, lime and white products are built with indium gallium nitride (ingan). 7. all red, deep red, red-orange, and amber are built with aluminum indium gallium phosphide (alingap). 8. luxeon z lime is tested and binned at t j = 85c. all other luxeon z color emitters are tested and binned at t j = 25c. v olume luminous flux bins
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 5 electrical characteristics electrical characteristics for luxeon z colors at test current and temperature table 4. color part number forward voltage v f [1] (v) @ 500 ma typical forward voltage @ 700 ma v f typical temperature coefcient of forward voltage (mv/c) d v f / d t j typical thermal resistance junction to case (c/w) r u j-c minimum typical maximum green lxz1-pm01 2.50 3.05 3.50 3.15 -2 to -4 5 cyan lxz1-pe01 2.50 2.95 3.50 3.05 -2 to -4 5 blue lxz1-pb01 2.50 3.15 3.50 3.25 -2 to -4 5 royal blue lxz1-pr01 2.50 2.90 3.50 2.95 -2 to -4 5 red LXZ1-PD01 1.75 2.20 2.75 2.40 -2 to -4 8 deep red lxz1-pa01 1.75 2.25 2.75 2.40 -2 to -4 8 red-orange lxz1-ph01 1.75 2.20 2.75 2.40 -2 to -4 8 amber lxz1-pl01 1.75 2.15 2.75 2.35 -2 to -4 8 lime lxz1-px01 2.50 2.85 3.50 2.80 -2 to -4 5 notes for table 4: 1. measured between t j = 25c and t j = 85c at i f = 500 ma. 2. philips lumileds maintains a tolerance of 0.06v on forward voltage measurements. 3. luxeon z lime is tested and binned at tj = 85c. all other luxeon z color emitters are tested and binned at tj = 25c.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 6 absolute maximum ratings table 5. parameter green/cyan/ blue/royal blue red/deep-red red-orange/amber/lime lime dc forward current (ma) 1000 700 700 peak pulsed forward current (ma) 1000 700 700 esd sensitivity human body model (hbm) esd class 3a (<8000v), jedec js-001-2012 led junction temperature [1] 150c 135c 135c operating case temperature at 500 ma -40c - 135c -40c - 120c -40c - 110c storage temperature -40c - 135c -40c - 135c -40c - 135c soldering temperature jedec 020c 260c jedec 020c 260c jedec 020c 260c allowable refow cycles 3 3 3 reverse voltage (v r ) luxeon z color portfolio leds are not designed to be driven in reverse bias. notes for table 5: 1. proper current derating must be observed to maintain junction temperature below the maximum. jedec moisture sensitivity table 6. level floor life soak requirements standard time conditions time conditions 1 unlimited [ 30c / 85% rh 168 hrs. + 5 / -0 hrs. 85c / 85% rh
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 7 refow soldering characteristics table 7. profle feature lead free assembly average ramp-up rate ( ts max to t p ) 3c / second max preheat temperature min ( t smin ) 150c preheat temperature max ( ts max ) 200c preheat time ( ts min to ts max ) 60 - 180 seconds temperature t l ( t l ) 217c time maintained above temperature t l ( t l ) 60 - 150 seconds peak / classifcation temperature ( t p ) 260c time within 5c of actual peak temperature ( t p ) 20 - 40 seconds ramp-down rate 6c / second max time 25c to peak temperature 8 minutes max note for table 7: 1. all temperatures refer to the application printed circuit board (pcb), measured on the surface adjacent to the package body. temperature profle for table 7.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 8 mechanical dimensions luxeon z blue, green, royal blue and cyan notes for figure 1: 1. to avoid damage, do not manually exert any force to the top surface. see ab105 for handling precautions. 2. drawings not to scale. 3. all dimensions are in millimeters. figure 1. package outline drawing for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 9 mechanical dimensions luxeon z lime notes for figure 2: 1. to avoid damage, do not manually exert any force to the top surface. see ab105 for handling precautions. 2. drawings not to scale. 3. all dimensions are in millimeters. figure 2. package outline drawing for lxz1-px01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 10 mechanical dimensions luxeon z red, red-orange, amber and deep red notes for figure 3: 1. to avoid damage, do not manually exert any force to the top surface or handle from the sides of the silicone layer. see ab105 for handling precautions. 2. drawings not to scale. 3. all dimensions are in millimeters. figure 3. package outline drawing for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 11 pad confguration solder pad design figure 5. solder pad layout. figure 4. pad confguration.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 12 wavelength characteristics luxeon z green, cyan, blue, royal blue, red, red-orange and amber at 500 ma, 25c luxeon z lime at 500 ma, 85c 0.8 1.0 0.6 0.4 0.2 0.0 400 450 500 550 600 650 700 red- orange red amber green cyan blue royal blue relative spectral power distribution wa velength (nm) figure 6. relative intensity vs. wavelength. 0 0.2 0.4 0.6 0.8 1 350 400 450 500 550 600 650 700 750 800 relative spectral power distribution wavelength (nm) lime figure 7. relative intensity vs. wavelength.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 13 typical light output characteristics relative light output vs. thermal pad temperature, test current = 500 ma 0.5 0.6 0.7 0.8 0.9 1 1.1 0 20 40 60 80 100 120 140 relative luminous/radiant flux thermal pad temperature (c) royal blue (lxz1-pr01) radiometric blue (lxz1-pb01) photometric cyan (lxz1-pe01) photometric green (lxz1-pm01) photometric figure 8. relative light output vs. thermal pad temperature, lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01. 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 1.1 0 20 40 60 80 100 120 140 relative luminous/radiant flux thermal pad temperature (c) amber (lxz1-pl01) photometric deep red (lxz1-pa01) radiometric red (LXZ1-PD01) photometric red orange (lxz1-ph01) photometric figure 9. relative light output vs. thermal pad temperature, lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01. 0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 0 20 40 60 80 100 120 140 relative luminous/radiant flux thermal pad temperature (c) lime (lxz1-px01) figure 10. relative light output vs. thermal pad temperature for lxz1-px01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 14 typical forward current characterisics forward current vs. forward voltage junction temperature = 25c forward current vs. forward voltage junction temperature = 85c 1200 blue (lxz1 - pb01) 800 1000 a ) blue (lxz1 - pb01) green (lxz1-pm01) cyan (lxz1-pe01) ro y al-blue ( lxz1-pr01 ) 600 800 r rent (m a y ( ) 400 w ard cu r 200 for w 0 2.5 2.6 2.7 2.8 2.9 3 3.1 3.2 3.3 3.4 forward voltage (v) figure 11. forward current vs. forward voltage for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01. 700 800 600 m a) amber (lxz1-pl01) deep red (lxz1-pa01) r d (lxz1 pd01) 400 500 urrent ( m r e d (lxz1 - pd01) red orange (lxz1-ph01) 300 400 o rward c 100 200 f o 0 100 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 forward voltage (v) figure 12. forward current vs. forward voltage for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01. 0 100 200 300 400 500 600 700 800 2.5 2.55 2.6 2.65 2.7 2.75 2.8 2.85 2.9 2.95 3 forward current (ma) forward voltage (v) lime (lxz1-px01) figure 13. forward current vs. forward voltage for lxz1-px01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 15 typical relative luminous flux relative luminous flux vs. forward current junction temperature = 25c relative luminous flux vs. forward current junction temperature = 85c 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 200 400 600 800 1000 1200 relative luminous/radiant flux forward current (ma) royal blue (lzx1-pr01) radiometric blue (lxz1-pb01) photometric cyan (lxz1-pe01) photometric green (lzx1-mp01) photometric figure 14. relative luminous fux vs. forward current for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01. 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 0 100 200 300 400 500 600 700 800 relative luminous flux forward current (ma) amber (lxz1-pl01) deep red (lxz1-pa01) red (LXZ1-PD01) red orange (lxz1-ph01) figure 15. relative luminous fux vs. forward current for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01. 0 0.2 0.4 0.6 0.8 1 1.2 1.4 0 100 200 300 400 500 600 700 800 relative luminous/radiant flux forward current (ma) lime (lxz1-px01) figure 16. relative luminous fux vs. forward current for lxz1-px01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 16 typical radiation patterns: luxeon z green, cyan, blue and royal blue spatial radiation pattern polar radiation pattern 120% 100% 80% y (%) 60% e intensit y 40% relativ e blue (lxz1-pb01) cyan (lxz1-pe01) green (lxz1-pm01) 20% royal blue (lxz1-pr01) 0% -90 -75 -60 -45 -30 -15 0 15 30 45 60 75 90 anglular displacement (deg) figure 17. typical spatial radiation pattern for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01. 1 0 0.6 0.8 30 -30 0.2 0.4 60 -60 0 90 -90 120 -120 blue (lxz1-pb01) cyan (lxz1-pe01) green (lxz1-pm01) royal blue (lxz1-pr01) 150 180 -150 180 figure 18. typical polar radiation pattern for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 17 typical radiation patterns: luxeon z red, red-orange, amber and deep red spatial radiation pattern polar radiation pattern 0% 20% 40% 60% 80% 100% 120% - 90 - 75 - 60 - 45 - 30 - 15 0 15 30 45 60 75 90 relative intensity (% ) anglular displacement (deg ) red red orange deep red amber figure 19. spatial radiation pattern for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01. 0 0.2 0.4 0.6 0.8 1 0 3 0 6 0 9 0 120 150 180 -150 -120 -90 -60 -30 deep red red orange red amber figure 20. typical polar radiation pattern for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 18 typical radiation patterns: luxeon z lime spatial radiation pattern polar radiation pattern 0% 20% 40% 60% 80% 100% 120% -90 -75 -60 -45 -30 -15 0 15 30 45 60 75 90 relative intensity (%) anglular displacement (deg) lime (lxz1-px01) figure 21. typical spatial radiation pattern for lxz1-px01. 0 0.2 0.4 0.6 0.8 1 0 30 60 90 120 150 180 -150 -120 -90 -60 -30 lime (lxz1-px01) figure 22. typical polar radiation pattern for lxz1-px01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 19 emitter pocket tape packaging luxeon z blue, green, royal blue, cyan, and lime figure 23. emitter pocket tape packaging for lxz1-pr01, lxz1-pb01, lxz1-pe01 and lxz1-pm01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 20 red, red-orange, amber and deep red figure 24. emitter pocket tape packaging for lxz1-pl01, lxz1-pa01, LXZ1-PD01 and lxz1-ph01.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 21 emitter reel packaging figure 25. emitter reel packaging.
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 22 luminous flux bins tables 8 and 9 list the standard photometric luminous fux/radiometric power bins for luxeon z color emitters (tested and binned at 500 ma). 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. table 8. luxeon z luminous flux bins - all colors (excluding royal blue and deep red) bin code minimum flux (lm) maximum flux (lm) a 24 32 b 32 40 c 40 48 d 48 56 e 56 64 f 64 72 g 72 80 h 80 88 j 88 96 k 96 104 l 104 114 m 114 124 n 124 134 p 134 144 q 144 154 r 154 164 s 164 174 t 174 184 table 9. luxeon z radiometric power bins for royal blue and deep red bin code minimum radiometric flux (mw) maximum radiometric flux (mw) a 250 300 b 300 350 c 350 400 d 400 450 e 450 500 f 500 550 g 550 600 h 600 650 i 650 700
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 23 forward voltage bins the following forward voltage bins include the minimum and maximum v f bin values for the emitter. although several bins are outlined, product availability in a particular bin varies by production run and by product performance. table 10. voltage bins bin code minimum forward voltage (v) maximum forward voltage (v) 1 1.75 2.00 2 2.00 2.25 3 2.25 2.50 4 2.50 2.75 5 2.75 3.00 6 3.00 3.25 7 3.25 3.50
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 24 color bins table 11. dominant wavelength bin structure for luxeon z green (lxz1-pm01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 1 520 525 2 525 530 3 530 535 4 535 540 table 12. dominant wavelength bin structure for luxeon z cyan (lxz1-pe01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 1 490 498 2 498 508 6 490 495 7 495 500 8 500 505 9 505 510 table 13. dominant wavelength bin structure for luxeon z blue (lxz1-pb01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 1 460 465 2 465 470 3 470 475 4 475 480 5 480 485 table 14. peak wavelength bin structure for luxeon z royal blue (lxz1-pr01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 3 440 445 4 445 450 5 450 455 6 455 460 table 15. dominant wavelength bin structure for luxeon z red (LXZ1-PD01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 4 620 630 5 630 640 table 16. dominant wavelength bin structure for luxeon z red-orange (lxz1-ph01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 2 610 620
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 25 color bins, continued table 17. dominant wavelength bin structure for luxeon z amber (lxz1-pl01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 1 585 587 2 587 590 4 590 592 6 592 595 table 18. peak wavelength bin structure for luxeon z deep red (lxz1-pa01) bin code minimum dominant wavelength (nm) maximum dominant wavelength (nm) 6 650 660 7 660 670
luxeon z datasheet ds105 20140214 ?2014 philips lumileds lighting company. 26 color bins, continued table 19. dominant wavelength bin structure for luxeon z lime (lxz1-px01) color bin code x y lime 1 0.3819 0.4191 0.4327 0.3972 0.5055 0.5790 0.5655 0.4986 note for table 19: 1. luxeon z lime emitters are tested and binned by x,y chromaticity coordinates. 0.49 0.5 0.51 0.52 0.53 0.54 0.55 0.56 0.57 0.58 0.59 0.36 0.37 0.38 0.39 0.4 0.41 0.42 0.43 0.44 0.45 0.46 y x lime figure 26. color bin structure for lxz1-px01.
luxeon z datasheet ds105 20140214 ?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. you 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 worlds highest performing leds. the company pioneered the use of solid-state lighting in breakthrough products such as the frst led backlit tv, the frst led fash in camera phones, and the frst led daytime running lights for cars. today we ofer the most comprehensive portfolio of high quality leds and uncompromising service. philips lumileds brings leds qualities of energy efciency, digital control and long life to spotlights, downlights, high bay and low bay lighting, indoor area lighting, architectural and specialty lighting as well as retroft lamps. our products are engineered for optimal light quality and unprecedented efcacy at the lowest overall cost. by ofering leds in chip, packaged and module form, we deliver supply chain fexibility to the inventors of next generation illumination. philips lumileds understands that solid state lighting is not just about energy efciency. it is about elegant design. reinventing form. engineering new materials. pioneering markets and simplifying the supply chain. its about a shared vision. learn more about our comprehensive portfolio of leds at www.philipslumileds.com .


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