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  snapled 75 and snapled 150 automotive led signal lighting snapled 75 snapled 150 flexible led solutions for automotive signal lighting technical datasheet ds12 introduction snapled 75 and snapled 150 are dual-mode binned making it easy to choose the right automotive signal product. designers and consumers can count on snapled for color stability in rear combination lamps, front turn signals, and high mount stop lamp applications. the snapled package utilizes philips lumileds pioneering solderless clinch technology, designed specifcally to meet the automotive industrys need for extreme reliability. the solderless clinch technology uses a formable metal substrate which offers ease of manufacturing, styling fexibility, and thermal conductivity unmatched by other led assemblies. the effcient optical design, high-brightness material, and high-current capability reduces the number of leds required for lighting functions and lowers the total cost and engineering complexity. snapled products meet sae/ece/jis automotive color requirements and are aec-q101c qualifed. snapled emitters are used for: ? rear combination lamps ? front turn signal lamps ? high mount stop lamps meets sae/ece automotive color requirements ? mirror turn ? rear fog lamp
snapled 75/150 datasheet ds12 20121212 2 general information ..................................................................................................................................................... 3 product nomenclature .......................................................................................................................................... 3 environmental compliance .................................................................................................................................... 3 selection guide ............................................................................................................................................................ 4 dual product binning .............................................................................................................................................. 4 reliability testing ...................................................................................................................................................... 5 electrostatic discharge (esd) test ....................................................................................................................... 5 maximum ratings, t j =25c .................................................................................................................................... 5 optical & electrical characteristics .......................................................................................................................... 6 mechanical dimensions ............................................................................................................................................... 7 typical spatial radiation pattern ................................................................................................................................ 8 typical relative luminous flux .................................................................................................................................. 9 typical junction temperature vs. intensity ............................................................................................................. 10 typical forward current characteristics ............................................................................................................. 11 current derating curves .......................................................................................................................................... 12 thermal resistance .................................................................................................................................................... 13 typical wavelength characteristics ......................................................................................................................... 14 bin and option code specifcations ....................................................................................................................... 15 low current luminous flux bin defnitions ....................................................................................................... 16 bin range option codes .......................................................................................................................................... 17 color bin defnition and wavelength ................................................................................................................... 17 product labeling information ................................................................................................................................... 19 table of contents
snapled 75/150 datasheet ds12 20121212 3 product nomenclature the part number designation is explained as follows: sslabc-defg-xxxx where: ssl - designates the product type abc - designates the current bin (150 ma or 75 ma) d - designates the package type (n = narrow or w = wide) e - designates the color (o = red-orange, a = amber) f - indicates the chip information and binning and packaging scheme g - indicates the binning and testing scheme. x - designates the minimum fux and fux bin range xxx - option codes for full standard part number. test conditions for optical characteristics at junction temperature philips lumileds tests snapled emitters for 20ms integration time at t a = 25oc. this datasheet specifes performance at a constant temperature of 25c, except where noted. environmental compliance philips lumileds is committed to providing environmentally friendly products to the solid-state lighting market. snapled 75 and snapled 150 is compliant to the european union directives on the restriction of hazardous substances in electronic equipment, namely the rohs directive. philips lumileds will not intentionally add the following restricted materials to the snapled 75 and snapled 150 lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (pbb) or polybrominated biphenyl ethers (pbde). general information
snapled 75/150 datasheet ds12 20121212 4 product selection guide [1, 2] table 1. led color part number drive current viewing angle 2 u 1/2 snapled 75 dual mode (degrees) [1] ty p. ssl075-no88 75 ma - 2.5 ma 45 ssl075-wo88 75 ma - 2.5 ma 85 ssl075-na88 75 ma - 2.5 ma 45 ssl075-wa88 75 ma - 2.5 ma 85 snapled 150 ssl150-no88 150 ma - 5 ma 45 ssl150-wo88 150 ma - 5 ma 85 ssl150-na88 150 ma - 5 ma 45 SSL150-WA88 150 ma - 5 ma 85 notes for table 1: 1 . 2 u 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity. 2. refer to page 21 for flux bin selection and contact your respective technical service consultant for detail of flux f v (lm) supportability. dual product binning automotive lamp makers can now take advantage of philips lumileds fux stability across a wide operating range with snapled 75 and snapled 150 dual binning. the dual binnned products are designated with an 88 in the part number. snapled emitters are optimized and binned for use in dual-mode drive current applications such as automotive stop and tail lights, car and truck marker-turn, and tail-turn applications using low-cost, high-reliability resistor-diode drive circuits. the optimized dual binned emitters offer 100% fux stabilization at temperature, allowing the user to operate the leds with fux & color stability over a dynamic range of forward voltages: snapled 75 from 75 maC2.5 ma and snapled 150 from 150 maC5 ma. this industry leading feature enables plug and play, immediate use of the snapled products without the need for additional handling, treatment or further characterization. key features include: - flexible dual binning scheme - higher maximum junction temperature of 135oc - higher fux at high & low currents - consistent color at high current - forward voltage bins with high current spacing of 60mv and with low current spacing of 30mv - 20% fux bins at both high and low current with a guaranteed fux ratio between high and low current. 100% of the snapled 75 and snapled 150 products have 5 character binning eliminating the need to segregate parts between single and dual mode applications. dual binning simplifes the production process, and ensures light output and color consistency over a wide operating range. selection guide amber red-orange amber red-orange
snapled 75/150 datasheet ds12 20121212 5 reliability testing philips lumileds conducts extensive reliability stress testing before the introduction of new products to ensure that they meet the reliability expectations of the automotive market. the development of snapled includes reliability test simulations for both high voltage (24v) jump start and high voltage (18v) alternator failure conditions to ensure led survivability, performance and quality integrity as well as design margin allowance. table 2. ssl150 ssl75 stress duration parameter pre-test condition i f (ma) i f (ma) t a (c) (minute) current overstress high voltage (24v) jump start simulation 300 150 55 5 high voltage (18v) alternator failure simulation 200 100 55 120 temperature overstress max 185c (junction temperature) electrostatic discharge (esd) test table 3. electrostatic discharge (esd) test test conditions rating human body model 8000 v, 3 positive pulses, 3 negative pulses jedec class 3b (aec: class h3a) machine model 400 v, 3 positive pulses, 3 negative pulses jedec class b (aec: class 3m) charged device model 1000v, 3 positive pulses, 3 negative pulses jedec class iii (aec : class c4) maximum ratings, t j =25c table 4. parameter symbol ssl150 rating ssl075 rating units dc forward current [1, 2] i f 150 75 ma pulsed forward current i fp 300 150 ma min dc forward current [2] i f 5 2.5 ma power dissipation 446 223 mw ambient temperature range t a -40 to +115 oc storage temperature range -55 to +110 oc high temperature chamber 125 (2 hrs) 125 (2 hrs) oc led junction temperature t j 135 135 oc notes for table 4: 1. derating is linearly as shown in derating curves. 2. min and max currents recommended for continuous dc mode.
snapled 75/150 datasheet ds12 20121212 6 optical characteristics, t j =25c [5] table 5. ratio of luminous intensity to dominant peak wavelength viewing total flux wavelength (nm) [2] l peak total included angle angle 2 u 1/2 part i v (cd/ f v (lm) [1] l d (nm) [2] u 0.90 v (degrees) [3] (degrees) [4] number typ. typ. typ. peak (nm) typ. typ. ssl075-no88 2.0 617 626 70 45 ssl075-wo88 0.6 617 626 120 85 ssl075-na88 2.0 590 592 70 45 ssl075-wa88 0.6 590 592 120 85 ssl150-no88 2.0 617 628 70 45 ssl150-wo88 0.6 617 628 120 85 ssl150-na88 2.0 592 593 70 45 SSL150-WA88 0.6 592 593 120 85 notes for table 5: 1. intensity/flux at hv axis 2. 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. 3 . u 0.90 v is the included angle at which 90% of the total luminous fux is captured. 4 . 2 u 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity. electrical characteristics, t j = 25oc table 6. parameter symbol ssl150 rating ssl075 rating units forward voltage v f (v) v f 2.8 2.8 v (typ) reverse voltage (i r = 100 a) v r 10 10 v capacitance v f =0, f=1mhz c 50 25 pf(typ) thermal resistance r u j-pin 60 75 oc/w speed of response time t s 20 20 ns constant, e- t/ t s optical & electrical characteristics
snapled 75/150 datasheet ds12 20121212 7 mechanical dimensions figure 1. package outline drawing. notes for figure 1: - dimensions are in millimeters. - dimensions without tolerances are nominal. - cathode lead is indicated with a c and anode lead is indicated with an a. (image is for illustration purposes) - clinch joint locations shown in dashed lines on top view of the emitter (11.50 mm spacing). for more detailed information please visit www.philpslumileds.com or www.philipslumileds.cn.com.
snapled 75/150 datasheet ds12 20121212 8 typical spatial radiation pattern snapled wide (phi=0) snapled narrow (phi=0) 0.7 0.8 0.9 1.0 nominal e lative intensity 02 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 off axis angle (degrees) re l 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 off axis angle (degrees) figure 2. relative luminous intensity vs. off axis angle (degrees). n tensity 0.6 0.7 0.8 0.9 1.0 nominal relative in 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 off axis angle (degrees) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 figure 3. relative luminous intensity vs. axis angle (degrees).
snapled 75/150 datasheet ds12 20121212 9 typical relative luminous flux typical relative luminous flux vs. forward current for snapled 75 typical relative luminous flux vs. forward current for snapled 150 0.5 0.8 1.0 1.3 1.5 z ed luminous flux lm 0.0 0.3 0.5 0 50 100 150 200 250 300 normali z forward current ma figure 5. typical relative fux vs. foward current for snapled 150, red-orange & amber, junction temperature = 25c. ? 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 50 100 150 200 250 normalized luminous flux lm forward current ma figure 4. typical relative luminous fux vs. forward current for snapled 75, red-orange & amber, junction temperature = 25c.
snapled 75/150 datasheet ds12 20121212 10 typical junction temperature vs. intensity snapled 75 and snapled 150 red-orange and amber luminous flux vs. junction temperature 1.5 2.0 2.5 3.0 3.5 a lized luminous flux amber red \ orange 0.0 0.5 1.0 -40 -15 10 35 60 85 110 135 norm a temperature - degrees c red orange 25 c reference temperature figure 6. snapled luminous fux vs. junction temperature.
snapled 75/150 datasheet ds12 20121212 11 typical forward current characteristics typical forward current characteristics, junction temperature = 25c snapled 75 snapled 150 75 45 60 75 n t (ma) 30 45 60 75 forward current (ma) 0 15 30 45 60 75 forward current (ma) 0 15 30 45 60 75 1.7 1.9 2.1 2.3 2.5 2.7 2.9 forward current (ma) forward voltage (v) figure 7. snapled 75 red-orange & amber forward current vs. forward voltage. values are typical unless specifed as maximum. 135 150 90 105 120 135 150 (ma) 45 60 75 90 105 120 135 150 forward current (ma) 0 15 30 45 60 75 90 105 120 135 150 forward current (ma) 0 15 30 45 60 75 90 105 120 135 150 1.6 1.8 2 2.2 2.4 2.6 2.8 3 3.2 forward current (ma) forward voltage (v) figure 8. snapled 150 red-orange & amber forward current vs. forward voltage. values are typical unless specifed as maximum.
snapled 75/150 datasheet ds12 20121212 12 current derating curves snapled 75 snapled 150 new cur der curve 75.xls 30 45 60 75 u m dc curent - ma 100 c/w 200 c/w 300 c/w 400 c/w 500 c/w 600 c/w 0 15 0 15 30 45 60 75 90 105 120 135 150 maxim u ambient temperature - degrees c figure 11. current derating curve for snapled 75 ma drive current. new cur der curve 150.xls 60 75 90 105 120 135 150 u m dc curent - ma 75 c/w 100 c/w 150 c/w 200 c/w 250 c/w 0 15 30 45 0 15 30 45 60 75 90 105 120 135 150 maxim u ambient temperature - degrees c 250 c/w figure 12. current derating curve for snapled 150 ma drive current.
snapled 75/150 datasheet ds12 20121212 13 thermal resistance approximate total thermal resistance vs. clinch frame area per cathode snapled 75 snapled 150 300 260 280 (c/w) 220 240 t o-ambient 200 220 e , junction- t 160 180 r esistanc e 120 140 thermal r 100 200 300 400 500 600 700 800 900 array area/led (mm2) figure 13. approximate total thermal resistance vs. clinch frame area/led - snapled 75. 160 180 140 n t (c/w) 100 120 on to ambie n 80 s tance juncti 40 60 h ermal resi s 20 t h 0 0 0.5 1 1.5 2 2.5 clinch frame area (inch^2) figure 14. approximate total thermal resistance vs. clinch frame area/led - snapled 150.
snapled 75/150 datasheet ds12 20121212 14 typical wavelength characteristics typical wavelength characteristics, junction temperature = 25c 0.9 1.0 07 0.8 t ion red \ orange amber 0.6 0 . 7 o wer distribu t 0.4 0.5 v e spectral p o 0.3 relati v 0.1 0.2 0.0 550 560 570 580 590 600 610 620 630 640 650 660 670 wavelength (nm) figure 15. relative intensity vs. wavelength.
snapled 75/150 datasheet ds12 20121212 15 bin and option code specifcations this section provides bin selection assistance for snapled leds. product availability varies by color and other factors, and not all bin selection combinations are available. contact your philips lumileds representative for further assistance. product availability varies by color and other factors, and not all bin selection combinations are available. table 7. min flux bin @ high current high flux bin minimum flux (lm) maximum flux (lm) low flux bin snapled 150 (ssl150-xo88) g 10.4 12.5 f, g, h h 12.5 15.0 g, h, j j 15.0 18.0 h, j, m m 18.0 21.0 j, m, n n 21.0 25.0 m, n, p p 25.0 30.0 n, p, r r 30.0 36.0 p, r, u snapled 150 (ssl150-xa88) e 7.3 8.7 c, d, e, f, g f 8.7 10.4 d, e, f, g, h g 10.4 12.5 e, f, g, h, j h 12.5 15.0 f, g, h, j, m j 15.0 18.0 g, h, j, m, n m 18.0 21.0 h, j, m, n, p n 21.0 25.0 j, m, n, p, r snapled 75 (ssl075-xo88) d 6.1 7.3 c, d, e e 7.3 8.7 d, e, f f 8.7 10.4 e, f, g g 10.4 12.5 f, g, h h 12.5 15.0 g, h, j j 15.0 18.0 h, j, m m 18.0 21.0 j, m, n snapled 75 (ssl075-xa88) b 4.3 5.1 a, b, c, d c 5.1 6.1 a, b, c, d, e d 6.1 7.3 b, c, d, e, f e 7.3 8.7 c, d, e, f, g f 8.7 10.4 d, e, f, g, h g 10.4 12.5 e, f, g, h, j h 12.5 15.0 f, g, h, j, m note for table 7: - refer to low current luminous fux bin table for low current bin information.
snapled 75/150 datasheet ds12 20121212 16 low current luminous flux bin defnitions table 8. low current luminous flux binning applicable min luminous flux max luminous flux color product bin code (lm) (lm) f 0.29 0.35 g 0.35 0.42 h 0.42 0.50 j 0.50 0.60 red-orange ssl150-xo88 m 0.60 0.72 n 0.72 0.86 p 0.86 1.02 r 1.02 1.22 u 1.22 1.46 c 0.17 0.20 d 0.20 0.24 e 0.24 0.29 f 0.29 0.35 g 0.35 0.42 amber ssl150-xa88 h 0.42 0.50 j 0.50 0.60 m 0.60 0.72 n 0.72 0.86 p 0.86 1.02 r 1.02 1.22 c 0.17 0.20 d 0.20 0.24 e 0.24 0.29 f 0.29 0.35 red-orange ssl075-xo88 g 0.35 0.42 h 0.42 0.50 j 0.50 0.60 m 0.60 0.72 n 0.72 0.86 a 0.12 0.14 b 0.14 0.17 c 0.17 0.20 d 0.20 0.24 e 0.24 0.29 amber ssl075-xa88 f 0.29 0.35 g 0.35 0.42 h 0.42 0.50 j 0.50 0.60 m 0.60 0.72 red-orange amber red-orange amber
snapled 75/150 datasheet ds12 20121212 17 bin range option codes product availability varies by color and other factors and not all bin selection combinations are available. table 9. high current flux bin codes bin range option codes bin range 0 all bin above the minimum 2 2 fux bin 3 3 fux bin 4 4 fux bin 5 5 fux bin 6 6 fux bin notes: - option codes indicate the inclusive range of fux bins allowed above the indicated requested bin. color bin defnition and wavelength table 10. color color code min (nm) max (nm) 1 588 590 2 590 594 3 613 618 4 618 623 5 623 628 note for table 10: - tester error for wavelength maintained at 1nm. red-orange amber
snapled 75/150 datasheet ds12 20121212 18 table 11. v f defnition high current v f binning (150 ma / 75 ma) color v f label min v f max v f amber 1 2.37 2.43 red-orange 2 2.43 2.49 red-orange 3 2.49 2.55 red-orange 4 2.55 2.61 red-orange 5 2.61 2.67 red-orange 6 2.67 2.73 red-orange 7 2.73 2.79 red-orange 8 2.79 2.85 red-orange 9 2.85 2.91 amber a 2.91 2.97 low current v f binning (5 ma - 2.5 ma) red-orange and amber 1 1.78 1.81 red-orange and amber 2 1.81 1.84 red-orange and amber 3 1.84 1.87 red-orange and amber 4 1.87 1.90 red-orange and amber 5 1.90 1.93 red-orange and amber 6 1.93 1.96 red-orange and amber 7 1.96 1.99 amber 8 1.99 2.02 table 12. v f defnitions high current v f binning (150 ma / 75 ma) low current v f binning (5 ma - 2.5 ma) color high v f low v f red-orange 2 1 red-orange 3 1, 2 red-orange 4 1, 2, 3 red-orange 5 1, 2, 3, 4 red-orange 6 1, 2, 3, 4, 5 red-orange 7 1, 2, 3, 4, 5, 6 red-orange 8 2, 3, 4, 5, 6, 7 red-orange 9 3, 4, 5, 6, 7 notes: - v f pairing defnition applicable to red-orange only. - all measurements done with 20ms integration time at t a = 25oc. - tester error maintained at 3sigma = 10%. (applies to lumin only). - tester error maintained at 3sigma = +/-0.06v (applies to forward voltage only). - tester error maintained at 3sigma = 1nm (applies to wavelength only).
snapled 75/150 datasheet ds12 20121212 19 product labeling information snapled tubes snapled leds are packaged in tubes for use with automatic insertion equipment. each tube contains 60 leds. the leds in each tube come from a single category code, ensuring they are all well-matched for light output, color, and forward voltage. each tube contains a rubber stopper at each end. the tube label has both alphanumeric and bar code information. figure 16 shows a sample label and a snapled led tube. labels include the philips lumileds logo, the led device type in alphanumeric above the corresponding bar code, a large 5-digit category code. baby label snapled bundles snapled emitter tubes are also available in shrink wrapped bundles. each bundle includes 600 snapled emitters: ten snapled tubes. as with the individual tubes, bundles contain tubes from a single category code. product bundles include the following information: philips lumileds part number, 5 digit category code, lot code (for philips lumileds internal use), quantity, and the date code range. in addition, the following felds are provided for customer-specifc information: vendor code, customer part number, customer revision level, and customer purchase order number. there are some restrictions regarding the format of each feld, so please consult your philips lumileds representative for more information. bundle label each bundle of tubes will have a bundle label as shown in figure 20. the label indicates the part number of snapled products with cat code and the quantity of the products contained inside the box. tubes will be packed into bundles of 10 tubes maximum and shipped in boxes measuring is (49.2 cm x 20.1 cm x 11.8 cm). figure 16. (ip) pa rt # ssl150 -n 088-f6000 (30p) pa rt op t : ssl150 -n 088-f600 jj373 (q)q uan ty : 600 (9 d) die : 0941 (p) cu st pr od id : (k ) po no : bu nd le id : 091029130164 vend or (v ) lu mi le ds ligh ti ng p/ n: ssl 150- n0 88 -f 6000 ca t: jj373 bi n: sn ap le d tm oc t ma de in : de pt no : mf g da te : ta pe da te : qa da te : 2009 : fg i pool : ca t: jj3 73 figure 18. device ?????? ssl150 \ no88 jj373 lot ? no. ? sh9402009 cat ? jj373 qty ? 60 d/c ??? 0941 ? figure 17. snapled bundle.
company information ?2012 philips lumileds lighting company. all rights reserved. product specifcations are subject to change without notice. luxeon is a registered trademark of the philips lumileds lighting company in the united states and other countries. philips lumileds is a leading provider of leds for everyday lighting applications. the companys records for light output, effcacy and thermal management are direct results of the ongoing commitment to advancing solid-state lighting technology and enabling lighting solutions that are more environmentally friendly, help reduce co 2 emissions and reduce the need for power plant expansion. philips lumileds luxeon ? leds are enabling never before possible applications in outdoor lighting, shop lighting, home lighting, consumer electronics, and automotive lighting. philips lumileds is a fully integrated supplier, producing core led material in all three base colors, (red, green, blue) and white. philips lumileds has r&d centers in san jose, california and in the netherlands, and production capabilities in san jose, singapore and penang, malaysia. founded in 1999, philips lumileds is the high fux led technology leader and is dedicated to bridging the gap between solid-state technology and the lighting world. more information about the companys luxeon led products and solid-state lighting technologies can be found at www.philipslumileds.com. www.philipslumileds.com www.philipslumileds.cn.com


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