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  1 bridgelux ? gen 7 vero ? 10 array series product data sheet ds90
introduction vero? series is a revolutionary advancement in chip on board (cob) light source technology and innovation. vero led light sources simplify luminaire design and manufacturing processes vero chip on board (cob) led arrays are available in four les confgurations, engineered to enable new degrees of fexibility and reliability over a broad range of electrical currents. . vero arrays deliver increased lumen density to enable improved beam control and precision lighting with 2 and 3 sdcm color control standard for clean and consistent uniform lighting. vero products include an onboard connector port that enables a solder-free electrical interconnect, and simple mounting features for plug-and-play installation. bridgelux dcor series? is our state-of-the-art color line designed specifcally for premium applications, producing unmatched led light quality with brilliant color-rendering options and pleasing lighting palettes. bridgelux dcor series color points are available on vero? se series, vero? series, v series? and h series?. dcor series class a is based on human response testing, providing color points with a combined gai and cri metric. dcor series? ultra products provide a high cri of 97 and minimum r9 value of 93, which emphasizes the reds and color tones to which the human eye is most receptive - perfect for the most luxurious retail shops and world renowned museums. dcor series ultra is designed as a replacement for halogen lamps. dcor series? street and landmark is designed to be a direct replacement for high pressure sodium lamps. dcor series? showcase is the optimal solution for replacing ceramic metal halide lamps, incorporating the same pure white light with enhanced spectrum coverage and higher efcacy. vero ? series features ? efcacy of 150 lm/w typical ? lumen output performance ranges from 583 to 3,970 lumens ? broad range of cct options from 2700k to 6500k ? cri options include minimum 65, 70, 80, and 90 ? 2 and 3 sdcm color control for 2700k-4000k cct ? reliable operation at up to 2x nominal drive current ? radial die pattern and improved lumen density ? thermally isolated solder pads ? on-board connector port ? top side part number markings ? v f bin code backside marking benefts ? broad application coverage for interior and exterior lighting ? flexibility for application driven lighting design requirements ? high quality true color reproduction ? uniform consistent white light ? flexibility in design optimization ? enhanced ease of use and assembly ? solderless connectivity enables plug & play installation and feld upgradability ? improved inventory management and quality control
1 contents product feature map 2 product nomenclature 2 product selection guide 3 performance at commonly used drive currents 8 electrical characteristics 15 eye safety 16 absolute maximum ratings 17 performance curves 18 typical radiation pattern 21 typical color spectrum 22 mechanical dimensions 23 color binning information 24 packaging and labeling 25 design resources 27 precautions 27 disclaimers 27 about bridgelux 28
2 product feature map product nomenclature the part number designation for bridgelux vero led arrays is explained as follows: 1 2 3 4 5 6 7 8 9 10 11 C 12 C 13 14 product family cct bin options 2 = 2 sdcm 3 = 3 sdcm 4 = 4 sdcm cri b = 65 cri min. c = 70 cri min. e = 80 cri min. g = 90 cri min. h = 97 cri typ. a = class a array confguration 20 = 2,000k 27 = 2,700k 30 = 3,000k 35 = 3,500k 40 = 4,000k 50 = 5,000k 57 = 5,700k 65 = 6,500k bxrc C 30 e 100 0 C c C 7 3 optional molex pico-ezmate ? connector harness (sold separately) color targeting designator 0 = cold targeted 1 = hot targeted c = decor series showcase target gen. 7 nominal cct flux indicator 100x = 1000 lm vero 10 is the smallest form factor in the vero family of next generation solid state light sources. in addition to for many lighting applications, vero incorporates several manufacturing process, accelerate time to market and reduce system costs. please visit www.bridgelux.com for mounting holes polarity indication marks simplify manufacturing operator instructions 2d bar code provides full manufacturing traceability solderless connector port enables simplifed manufacturing processes, reduced inventory carrying costs and can enable feld upgradability thermally isolated solder pads reduce manufacturing cycle time and complexity t c measurement point radial die confguration improves lumen density and beam control top side part number marking improves inventory management and outgoing quality control
3 product selection guide the following product confgurations are available: table 1: selection guide, pulsed measurement data (t = t = 25c) part number nominal cct 1 (k) cri 2 nominal drive current 3 (ma) typical pulsed flux 4,5,6 t c = 25oc (lm) minimum pulsed flux 6,7 t c = 25oc (lm) typical v f (v) typical power (w) typical efcacy (lm/w) bxrc-20b1001-b-73 2000 65 270 1328 1169 34.8 9.4 141 bxrc-20b1001-d-73 2000 65 350 1284 1130 26.0 9.1 141 bxrc-27e1000-b-7x 2700 80 270 1348 1187 34.8 9.4 144 bxrc-27e1000-c-7x 2700 80 360 1797 1581 34.8 12.5 143 bxrc-27e1000-d-7x 2700 80 350 1310 1153 26.0 9.1 144 bxrc-27g1000-b-7x 2700 90 270 1124 989 34.8 9.4 120 bxrc-27g1000-c-7x 2700 90 360 1498 1318 34.8 12.5 120 bxrc-27g1000-d-7x 2700 90 350 1092 961 26.0 9.1 120 bxrc-27h1000-b-7x 2700 97 270 984 866 34.8 9.4 105 bxrc-27h1000-c-7x 2700 97 360 1311 1154 34.8 12.5 105 bxrc-27h1000-d-7x 2700 97 350 956 841 26.0 9.1 105 bxrc-30e1000-b-7x 3000 80 270 1418 1247 34.8 9.4 151 bxrc-30e1000-c-7x 3000 80 360 1890 1663 34.8 12.5 151 bxrc-30e1000-d-7x 3000 80 350 1365 1201 26.0 9.1 150 bxrc-30g1000-b-7x 3000 90 270 1166 1026 34.8 9.4 124 bxrc-30g1000-c-7x 3000 90 360 1554 1367 34.8 12.5 124 bxrc-30g1000-d-7x 3000 90 350 1133 997 26.0 9.1 125 bxrc-30g100c-b-73 3000 90 270 1092 961 35.0 9.5 116 bxrc-30g100c-d-73 3000 90 350 1056 929 26.0 9.1 116 bxrc-30h1000-b-7x 3000 97 270 1054 927 34.8 9.4 112 bxrc-30h1000-c-7x 3000 97 360 1404 1236 34.8 12.5 112 bxrc-30h1000-d-7x 3000 97 350 1024 901 26.0 9.1 113 bxrc-30a1001-b-73 8,9 3000 93 270 1086 956 34.8 9.4 116 bxrc-30a1001-c-73 8,9 3000 93 360 1448 1274 34.8 12.5 116 bxrc-30a1001-d-73 8,9 3000 93 350 1056 929 26.0 9.1 116 bxrc-35e1000-b-7x 3500 80 270 1447 1273 34.8 9.4 154 bxrc-35e1000-c-7x 3500 80 360 1928 1697 34.8 12.5 154 bxrc-35e1000-d-7x 3500 80 350 1406 1237 26.0 9.1 155 bxrc-35g1000-b-7x 3500 90 270 1208 1063 34.8 9.4 129 bxrc-35g1000-c-7x 3500 90 360 1610 1417 34.8 12.5 129 bxrc-35g1000-d-7x 3500 90 350 1174 1033 26.0 9.1 129 notes for table 1: 1. nominal cct as defned by ansi c78.377-2011. products with a cct of 5000k-6500k are hot targeted to t = 85c. 2. cri values are typical for decor series ultra and decor series class a products. cri values are minimums for all other products. minimum r9 value for 80 cri products is 0, the minimum r9 values for 90 cri products is 50, the minimum r9 values for 97 cri products is 93. bridgelux maintains a 3 tolerance on r9 values 3. drive current is referred to as nominal drive current. 4. products tested under pulsed condition (10ms pulse width) at nominal test current where t (junction temperature) = t (case temperature) = 25c. 5. typical performance values are provided as a reference only and are not a guarantee of performance. 6. bridgelux maintains a 7% tolerance on fux measurements. 7. minimum fux values at the nominal test current are guaranteed by 100% test. 8. nominal cct is defned by the lighting research centers class a defnition. the center of the class a color bin is on the corresponding isothermal line. 9. gai value is 80. to help ensure optimal fxture level performance, gai is measured at the fxture level, on axis, at a case temperature of 70c.? gai may vary depending on fxture design and performance.
4 product selection guide table 1: selection guide, pulsed measurement data (t = t = 25c) (continued) part number nominal cct 1 (k) cri 2 nominal drive current 3 (ma) typical pulsed flux 4,5,6 t c = 25oc (lm) minimum pulsed flux 6,7 t c = 25oc (lm) typical v f (v) typical power (w) typical efcacy (lm/w) bxrc-35a1001-b-73 8,9 3500 93 270 1170 1030 34.8 9.4 125 bxrc-35a1001-c-73 8,9 3500 93 360 1560 1373 34.8 12.5 125 bxrc-35a1001-d-73 8,9 3500 93 350 1138 1001 26.0 9.1 125 bxrc-40e1000-b-7x 4000 80 270 1461 1285 34.8 9.4 155 bxrc-40e1000-c-7x 4000 80 360 1947 1713 34.8 12.5 155 bxrc-40e1000-d-7x 4000 80 350 1420 1249 26.0 9.1 156 bxrc-40g1000-b-7x 4000 90 270 1250 1100 34.8 9.4 133 bxrc-40g1000-c-7x 4000 90 360 1666 1466 34.8 12.5 133 bxrc-40g1000-d-7x 4000 90 350 1215 1069 26.0 9.1 134 bxrc-40a1001-b-73 8,9 4000 93 270 1245 1096 34.8 9.4 133 bxrc-40a1001-c-73 8,9 4000 93 360 1660 1461 34.8 12.5 133 bxrc-40a1001-d-73 8,9 4000 93 350 1210 1065 26.0 9.1 133 bxrc-50c1001-b-7x 5000 70 270 1601 1409 34.8 9.4 170 bxrc-50c1001-c-7x 5000 70 360 2134 1878 34.8 12.5 170 bxrc-50c1001-d-7x 5000 70 350 1556 1369 26.0 9.1 171 bxrc-50e1001-b-7x 5000 80 270 1505 1324 34.8 9.4 160 bxrc-50e1001-c-7x 5000 80 360 2006 1765 34.8 12.5 160 bxrc-50e1001-d-7x 5000 80 350 1463 1287 26.0 9.1 161 bxrc-50g1001-b-7x 5000 90 270 1281 1127 34.8 9.4 136 bxrc-50g1001-c-7x 5000 90 360 1707 1502 34.8 12.5 136 bxrc-50g1001-d-7x 5000 90 350 1245 1095 26.0 9.1 137 bxrc-57c1001-b-7x 5700 70 270 1545 1360 34.8 9.4 164 bxrc-57c1001-c-7x 5700 70 360 2059 1812 34.8 12.5 164 bxrc-57c1001-d-7x 5700 70 350 1502 1321 26.0 9.1 165 bxrc-57e1001-b-7x 5700 80 270 1531 1347 34.8 9.4 163 bxrc-57e1001-c-7x 5700 80 360 2040 1796 34.8 12.5 163 bxrc-57e1001-d-7x 5700 80 350 1488 1309 26.0 9.1 164 bxrc-65c1001-b-7x 6500 70 270 1573 1384 34.8 9.4 167 bxrc-65c1001-c-7x 6500 70 360 2097 1845 34.8 12.5 167 bxrc-65c1001-d-7x 6500 70 350 1529 1345 26.0 9.1 168 bxrc-65e1001-b-7x 6500 80 270 1559 1372 34.8 9.4 166 bxrc-65e1001-c-7x 6500 80 360 2078 1829 34.8 12.5 166 bxrc-65e1001-d-7x 6500 80 350 1515 1333 26.0 9.1 167 notes for table 1: 1. nominal cct as defned by ansi c78.377-2011. products with a cct of 5000k-6500k are hot targeted to t = 85c. 2. cri values are typical for decor series ultra and decor series class a products. cri values are minimums for all other products. minimum r9 value for 80 cri products is 0, the minimum r9 values for 90 cri products is 50, the minimum r9 values for 97 cri products is 93 . bridgelux maintains a 3 tolerance on r9 values 3. drive current is referred to as nominal drive current. 4. products tested under pulsed condition (10ms pulse width) at nominal test current where t (junction temperature) = t (case temperature) = 25c. 5. typical performance values are provided as a reference only and are not a guarantee of performance. 6. bridgelux maintains a 7% tolerance on fux measurements. 7. minimum fux values at the nominal test current are guaranteed by 100% test. 8. nominal cct is defned by the lighting research centers class a defnition. the center of the class a color bin is on the corresponding isothermal line. 9. gai value is 80. to help ensure optimal fxture level performance, gai is measured at the fxture level, on axis, at a case temperature of 70c.? gai may vary depending on fxture design and performance.
5 product selection guide table 2: selection guide, stabilized dc performance (t = 70c) 7,8 part number nominal cct 1 (k) gai 2 cri 3 nominal drive current 4 (ma) typical dc flux 5,6 t c = 70oc (lm) minimum dc flux 6,9 t c = 70oc (lm) typical v f (v) typical power (w) typical efcacy (lm/w) bxrc-30a1001-b-73 3000 80 93 270 1010 889 34.3 9.3 109 bxrc-30a1001-c-73 3000 80 93 360 1347 1185 34.3 12.3 109 bxrc-30a1001-d-73 3000 80 93 350 982 864 25.5 8.9 110 bxrc-35a1001-b-73 3500 80 93 270 1088 958 34.3 9.3 118 bxrc-35a1001-c-73 3500 80 93 360 1451 1277 34.3 12.3 118 bxrc-35a1001-d-73 3500 80 93 350 1058 931 25.5 8.9 119 bxrc-40a1001-b-73 4000 80 93 270 1158 1019 34.3 9.3 125 bxrc-40a1001-c-73 4000 80 93 360 1544 1359 34.3 12.3 125 bxrc-40a1001-d-73 4000 80 93 350 1125 990 25.5 8.9 126 notes for table 2: 1. nominal cct is defned by the lighting research centers class a defnition. the center of the class a color bin is on the corresponding isothermal line. 2. to help ensure optimal fxture level performance, gai is measured at the fxture level, on axis, at a case temperature of 70c.? gai may vary depending on fxture design and performance. 3. cri values are specifed as typical. 4. drive current is referred to as nominal drive current. 5. typical performance values are provided as a reference only and are not a guarantee of performance. 6. bridgelux maintains a 7% tolerance on fux measurements. 7. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance. 8. typical performance is estimated based on operation under dc (direct current) with led array mounted onto a heat sink with thermal interface material and the case temperature maintained at specifed temperature. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected. 9. minimum fux values at elevated temperatures are provided for reference only and are not guaranteed by 100% production testing. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected.
6 product selection guide table 3: selection guide, stabilized dc performance (t = 85c) 4,5 part number nominal cct 1 (k) cri 2 nominal drive current 3 (ma) typical dc flux 4,5 t c = 85oc (lm) minimum dc flux 6 t c = 85oc (lm) typical v f (v) typical power (w) typical efcacy (lm/w) bxrc-20b1001-b-73 2000 65 270 1195 1052 33.8 9.1 131 bxrc-20b1001-d-73 2000 65 350 1156 1017 25.3 8.9 131 bxrc-27e1000-b-7x 2700 80 270 1214 1068 33.8 9.1 133 bxrc-27e1000-c-7x 2700 80 360 1617 1423 33.8 12.2 133 bxrc-27e1000-d-7x 2700 80 350 1179 1038 25.3 8.9 133 bxrc-27g1000-b-7x 2700 90 270 1011 890 33.8 9.1 111 bxrc-27g1000-c-7x 2700 90 360 1348 1186 33.8 12.2 111 bxrc-27g1000-d-7x 2700 90 350 983 865 25.3 8.9 111 bxrc-27h1000-b-7x 2700 97 270 886 779 34.8 9.4 94 bxrc-27h1000-c-7x 2700 97 360 1180 1039 34.8 12.5 94 bxrc-27h1000-d-7x 2700 97 350 860 757 26.0 9.1 95 bxrc-30e1000-b-7x 3000 80 270 1276 1123 33.8 9.1 140 bxrc-30e1000-c-7x 3000 80 360 1701 1497 33.8 12.2 140 bxrc-30e1000-d-7x 3000 80 350 1229 1081 25.3 8.9 139 bxrc-30g1000-b-7x 3000 90 270 1049 923 33.8 9.1 115 bxrc-30g1000-c-7x 3000 90 360 1398 1231 33.8 12.2 115 bxrc-30g1000-d-7x 3000 90 350 1020 897 25.3 8.9 115 bxrc-30g100c-b-73 3000 90 270 983 846 34.0 9.2 107 bxrc-30g100c-d-73 3000 90 350 950 818 25.3 8.9 107 bxrc-30h1000-b-7x 3000 97 270 948 835 34.8 9.4 101 bxrc-30h1000-c-7x 3000 97 360 1264 1112 34.8 12.5 101 bxrc-30h1000-d-7x 3000 97 350 922 811 26.0 9.1 101 bxrc-30a1001-b-73 7,8 3000 93 270 977 860 34.8 9.4 104 bxrc-30a1001-c-73 7,8 3000 93 360 1303 1147 34.8 12.5 104 bxrc-30a1001-d-73 7,8 3000 93 350 950 836 26.0 9.1 104 bxrc-35e1000-b-7x 3500 80 270 1302 1146 33.8 9.1 143 bxrc-35e1000-c-7x 3500 80 360 1735 1527 33.8 12.2 142 bxrc-35e1000-d-7x 3500 80 350 1265 1114 25.3 8.9 143 bxrc-35g1000-b-7x 3500 90 270 1087 957 33.8 9.1 119 bxrc-35g1000-c-7x 3500 90 360 1449 1275 33.8 12.2 119 bxrc-35g1000-d-7x 3500 90 350 1057 930 25.0 8.8 121 bxrc-35a1001-b-73 7,8 3500 93 270 1053 927 33.8 9.1 115 bxrc-35a1001-c-73 7,8 3500 93 360 1404 1236 33.8 12.2 115 bxrc-35a1001-d-73 7,8 3500 93 350 1024 901 25.0 8.8 117 notes for table 3: 1. nominal cct as defned by ansi c78.377-2011. products with a cct of 5000k-6500k are hot targeted to t = 85c. 2. all cri values are measured at t = t = 25c. cri values are typical for decor series ultra and decor series class a products. cri values are minimums for all other products. minimum r9 value for 80 cri products is 0, the minimum r9 values for 90 cri products is 50, the minimum r9 values for 97 cri prod ucts is 93. bridgelux maintains a 3 tolerance on r9 values 3. drive current is referred to as nominal drive current. 4. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance. 5. typical performance is estimated based on operation under dc (direct current) with led array mounted onto a heat sink with thermal interface material and the case temperature maintained at 85c. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected. 6. minimum fux values at elevated temperatures are provided for reference only and are not guaranteed by 100% production testing. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected. 7. nominal cct is defned by the lighting research centers class a defnition. the center of the class a color bin is on the corresponding isothermal line. 8. gai value is 80. to help ensure optimal fxture level performance, gai is measured at the fxture level, on axis, at a case temperature of 70c. gai may vary depending on fxture design and performance.
7 product selection guide table 3: selection guide, stabilized dc performance (t = 85c) 4,5 part number nominal cct 1 (k) cri 2 nominal drive current 3 (ma) typical dc flux 4,5 t c = 85oc (lm) minimum dc flux 6 t c = 85oc (lm) typical v f (v) typical power (w) typical efcacy (lm/w) bxrc-40e1000-b-7x 4000 80 270 1315 1157 33.8 9.1 144 bxrc-40e1000-c-7x 4000 80 360 1752 1542 33.8 12.2 144 bxrc-40e1000-d-7x 4000 80 350 1278 1124 25.0 8.8 146 bxrc-40g1000-b-7x 4000 90 270 1125 990 33.8 9.1 123 bxrc-40g1000-c-7x 4000 90 360 1499 1320 33.8 12.2 123 bxrc-40g1000-d-7x 4000 90 350 1093 962 25.0 8.8 125 bxrc-40a1001-b-73 7,8 4000 93 270 1121 986 33.8 9.1 123 bxrc-40a1001-c-73 7,8 4000 93 360 1494 1315 33.8 12.2 123 bxrc-40a1001-d-73 7,8 4000 93 350 1089 958 25.0 8.8 124 bxrc-50c1001-b-7x 5000 70 270 1441 1268 33.8 9.1 158 bxrc-50c1001-c-7x 5000 70 360 1921 1690 33.8 12.2 158 bxrc-50c1001-d-7x 5000 70 350 1400 1232 25.0 8.8 160 bxrc-50e1001-b-7x 5000 80 270 1355 1192 33.8 9.1 148 bxrc-50e1001-c-7x 5000 80 360 1805 1589 33.8 12.2 148 bxrc-50e1001-d-7x 5000 80 350 1316 1158 25.0 8.8 150 bxrc-50g1001-b-7x 5000 90 270 1153 1015 33.8 9.1 126 bxrc-50g1001-c-7x 5000 90 360 1537 1352 33.8 12.2 126 bxrc-50g1001-d-7x 5000 90 350 1120 986 25.0 8.8 128 bxrc-57c1001-b-7x 5700 70 270 1390 1224 33.8 9.1 152 bxrc-57c1001-c-7x 5700 70 360 1853 1631 33.8 12.2 152 bxrc-57c1001-d-7x 5700 70 350 1351 1189 25.0 8.8 154 bxrc-57e1001-b-7x 5700 80 270 1378 1213 33.8 9.1 151 bxrc-57e1001-c-7x 5700 80 360 1836 1616 33.8 12.2 151 bxrc-57e1001-d-7x 5700 80 350 1339 1178 25.0 8.8 153 bxrc-65c1001-b-7x 6500 70 270 1416 1246 33.8 9.1 155 bxrc-65c1001-c-7x 6500 70 360 1887 1661 33.8 12.2 155 bxrc-65c1001-d-7x 6500 70 350 1376 1211 25.0 8.8 157 bxrc-65e1001-b-7x 6500 80 270 1403 1235 33.8 9.1 154 bxrc-65e1001-c-7x 6500 80 360 1870 1646 33.8 12.2 154 bxrc-65e1001-d-7x 6500 80 350 1364 1200 25.0 8.8 156 bxrc-65e1001-c-7x 6500 80 360 1870 1646 34.0 12.3 153 bxrc-65e1001-d-7x 6500 80 350 1364 1200 25.3 8.9 154 notes for table 3: 1. nominal cct as defned by ansi c78.377-2011. products with a cct of 5000k-6500k are hot targeted to t = 85c. 2. all cri values are measured at t = t = 25c. cri values are typical for decor series ultra and decor series class a products. cri values are minimums for all other products. minimum r9 value for 80 cri products is 0, the minimum r9 values for 90 cri products is 50, the minimum r9 values for 97 cri products is 93. bridgelux maintains a 3 tolerance on r9 values 3. drive current is referred to as nominal drive current. 4. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance. 5. typical performance is estimated based on operation under dc (direct current) with led array mounted onto a heat sink with thermal interface material and the case temperature maintained at 85c. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected. 6. minimum fux values at elevated temperatures are provided for reference only and are not guaranteed by 100% production testing. based on bridgelux test setup, values may vary depending on the thermal design of the luminaire and/or the exposed environment to which the product is subjected. 7. nominal cct is defned by the lighting research centers class a defnition. the center of the class a color bin is on the corresponding isothermal line. 8. gai value is 80. to help ensure optimal fxture level performance, gai is measured at the fxture level, on axis, at a case temperature of 70c. gai may vary depending on fxture design and performance.
8 performance at commonly used drive currents vero led arrays are tested to the specifcations shown using the nominal drive currents in table 1. vero may also be driven at other drive currents dependent on specifc application design requirements. the performance at any drive current can be derived from the current vs. voltage characteristics shown in figures 1, 2 & 3 and the fux vs. current characteristics shown in figures 4, 5 & 6. the performance at commonly used drive currents is summarized in table 4. table 4: product performance at commonly used drive currents part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-20b1001-b-73 65 135 33.2 4.5 708 636 158 180 34.0 6.1 928 832 152 270 34.8 9.4 1328 1195 141 405 35.6 14.4 1948 1733 135 540 36.1 19.5 2496 2209 128 bxrc-20b1001-d-73 65 175 24.9 4.4 686 623 157 233 25.4 5.9 899 809 152 350 26.0 9.1 1284 1156 141 525 27.4 14.4 1890 1630 132 700 28.4 19.9 2421 2039 122 bxrc-27e1000-b-7x 80 135 33.2 4.5 719 646 160 180 34.0 6.1 942 845 154 270 34.8 9.4 1348 1214 144 405 35.6 14.4 1978 1760 137 540 36.1 19.5 2534 2243 130 bxrc-27e1000-c-7x 80 180 33.2 6.0 955 853 160 240 34.0 8.2 1252 1112 153 360 34.8 12.5 1797 1617 143 540 35.6 19.2 2617 2273 136 720 36.1 26.0 3343 2861 128 bxrc-27e1000-d-7x 80 175 24.9 4.4 700 636 160 233 25.4 5.9 918 825 155 350 26.0 9.1 1310 1179 144 525 27.4 14.4 1929 1664 134 700 28.4 19.9 2471 2081 124 bxrc-27g1000-b-7x 90 135 33.2 4.5 599 538 134 180 34.0 6.1 785 704 128 270 34.8 9.4 1124 1011 120 405 35.6 14.4 1648 1466 114 540 36.1 19.5 2112 1869 108 bxrc-27g1000-c-7x 90 180 33.2 6.0 796 710 133 240 34.0 8.2 1043 927 128 360 34.8 12.5 1498 1348 120 540 35.6 19.2 2181 1894 113 720 36.1 26.0 2786 2385 107 bxrc-27g1000-d-7x 90 175 24.9 4.4 583 530 134 233 25.4 5.9 765 688 129 350 26.0 9.1 1092 983 120 525 27.4 14.4 1607 1386 112 700 28.4 19.9 2059 1734 104 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
9 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-27h1000-b-7x 97 135 33.2 4.5 524 471 117 180 34.0 6.1 687 617 112 270 34.8 9.4 984 886 105 405 35.6 14.4 1444 1284 100 540 36.1 19.5 1849 1637 95 bxrc-27h1000-c-7x 97 180 33.2 6.0 697 622 117 240 34.0 8.2 913 811 112 360 34.8 12.5 1311 1180 105 540 35.6 19.2 1909 1659 99 720 36.1 26.0 2439 2088 94 bxrc-27h1000-d-7x 97 175 24.9 4.4 510 464 117 233 25.4 5.9 670 602 113 350 26.0 9.1 956 860 105 525 27.4 14.4 1407 1214 98 700 28.4 19.9 1803 1518 91 bxrc-30e1000-b-7x 80 135 33.2 4.5 755 679 168 180 34.0 6.1 990 888 162 270 34.8 9.4 1418 1276 151 405 35.6 14.4 2080 1850 144 540 36.1 19.5 2664 2358 137 bxrc-30e1000-c-7x 80 180 33.2 6.0 1005 897 168 240 34.0 8.2 1316 1169 161 360 34.8 12.5 1890 1701 151 540 35.6 19.2 2752 2391 143 720 36.1 26.0 3516 3009 135 bxrc-30e1000-d-7x 80 175 24.9 4.4 729 663 167 233 25.4 5.9 956 860 162 350 26.0 9.1 1365 1229 150 525 27.4 14.4 2009 1733 140 700 28.4 19.9 2574 2168 129 bxrc-30g1000-b-7x 90 135 33.2 4.5 621 558 139 180 34.0 6.1 815 731 133 270 34.8 9.4 1166 1049 124 405 35.6 14.4 1710 1521 118 540 36.1 19.5 2191 1939 112 bxrc-30g1000-c-7x 90 180 33.2 6.0 826 737 138 240 34.0 8.2 1082 961 133 360 34.8 12.5 1554 1398 124 540 35.6 19.2 2262 1965 118 720 36.1 26.0 2890 2474 111 bxrc-30g1000-d-7x 90 175 24.9 4.4 605 550 139 233 25.4 5.9 794 714 134 350 26.0 9.1 1133 1020 125 525 27.4 14.4 1668 1438 116 700 28.4 19.9 2137 1799 107 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
10 table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-30g100c-b-73 90 135 33.2 4.5 582 523 130 180 34.0 6.1 763 684 125 270 34.8 9.4 1092 983 116 405 35.6 14.4 1602 1425 111 540 36.1 19.5 2052 1817 105 bxrc-30g100c-d-73 90 175 24.9 4.4 564 513 129 233 25.4 5.9 740 665 125 350 26.0 9.1 1056 950 116 525 27.4 14.4 1554 1341 108 700 28.4 19.9 1991 1677 100 bxrc-30h1000-b-7x 97 135 33.2 4.5 561 505 125 180 34.0 6.1 736 660 120 270 34.8 9.4 1054 948 112 405 35.6 14.4 1546 1375 107 540 36.1 19.5 1980 1753 101 bxrc-30h1000-c-7x 97 180 33.2 6.0 747 666 125 240 34.0 8.2 978 869 120 360 34.8 12.5 1404 1264 112 540 35.6 19.2 2045 1776 106 720 36.1 26.0 2612 2236 100 bxrc-30h1000-d-7x 97 175 24.9 4.4 547 497 125 233 25.4 5.9 717 645 121 350 26.0 9.1 1024 922 113 525 27.4 14.4 1507 1300 105 700 28.4 19.9 1931 1626 97 bxrc-30a1001-b-73 93 135 33.2 4.5 579 520 129 180 34.0 6.1 759 681 124 270 34.8 9.4 1086 977 116 405 35.6 14.4 1593 1417 110 540 36.1 19.5 2041 1807 105 bxrc-30a1001-c-73 93 180 33.2 6.0 770 687 129 240 34.0 8.2 1009 896 124 360 34.8 12.5 1448 1303 116 540 35.6 19.2 2108 1832 110 720 36.1 26.0 2693 2306 103 bxrc-30a1001-d-73 93 175 24.9 4.4 564 513 129 233 25.4 5.9 740 665 125 350 26.0 9.1 1056 950 116 525 27.4 14.4 1554 1341 108 700 28.4 19.9 1991 1677 100 bxrc-35e1000-b-7x 80 135 33.2 4.5 771 693 172 180 34.0 6.1 1011 907 165 270 34.8 9.4 1447 1302 154 405 35.6 14.4 2122 1888 147 540 36.1 19.5 2719 2407 139 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance. performance at commonly used drive currents
11 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-35e1000-c-7x 80 180 33.2 6.0 1025 915 171 240 34.0 8.2 1343 1193 165 360 34.8 12.5 1928 1735 154 540 35.6 19.2 2808 2439 146 720 36.1 26.0 3586 3070 138 bxrc-35e1000-d-7x 80 175 24.9 4.4 751 683 172 233 25.4 5.9 985 885 166 350 26.0 9.1 1406 1265 155 525 27.4 14.4 2069 1785 144 700 28.4 19.9 2651 2233 133 bxrc-35g1000-b-7x 90 135 33.2 4.5 644 578 144 180 34.0 6.1 844 757 138 270 34.8 9.4 1208 1087 129 405 35.6 14.4 1772 1576 123 540 36.1 19.5 2270 2009 116 bxrc-35g1000-c-7x 90 180 33.2 6.0 856 764 143 240 34.0 8.2 1121 996 137 360 34.8 12.5 1610 1449 129 540 35.6 19.2 2344 2037 122 720 36.1 26.0 2995 2563 115 bxrc-35g1000-d-7x 90 175 24.9 4.4 627 570 144 233 25.4 5.9 822 739 139 350 26.0 9.1 1174 1057 129 525 27.4 14.4 1728 1490 120 700 28.4 19.9 2214 1864 111 bxrc-35a1001-b-73 93 135 33.2 4.5 623 560 139 180 34.0 6.1 817 733 134 270 34.8 9.4 1170 1053 125 405 35.6 14.4 1716 1527 119 540 36.1 19.5 2199 1946 113 bxrc-35a1001-c-73 93 180 33.2 6.0 829 740 139 240 34.0 8.2 1087 965 133 360 34.8 12.5 1560 1404 125 540 35.6 19.2 2272 1973 118 720 36.1 26.0 2902 2484 112 bxrc-35a1001-d-73 93 175 24.9 4.4 608 552 139 233 25.4 5.9 797 717 135 350 26.0 9.1 1138 1024 125 525 27.4 14.4 1675 1445 117 700 28.4 19.9 2146 1807 108 bxrc-40e1000-b-7x 80 135 33.2 4.5 778 700 174 180 34.0 6.1 1021 915 167 270 34.8 9.4 1461 1315 155 405 35.6 14.4 2143 1906 148 540 36.1 19.5 2745 2430 141 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
12 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-40e1000-c-7x 80 180 33.2 6.0 1035 924 173 240 34.0 8.2 1356 1205 166 360 34.8 12.5 1947 1752 155 540 35.6 19.2 2835 2463 147 720 36.1 26.0 3621 3100 139 bxrc-40e1000-d-7x 80 175 24.9 4.4 758 689 174 233 25.4 5.9 994 894 168 350 26.0 9.1 1420 1278 156 525 27.4 14.4 2090 1802 145 700 28.4 19.9 2677 2254 135 bxrc-40g1000-b-7x 90 135 33.2 4.5 666 599 149 180 34.0 6.1 873 783 143 270 34.8 9.4 1250 1125 133 405 35.6 14.4 1834 1631 127 540 36.1 19.5 2349 2079 120 bxrc-40g1000-c-7x 90 180 33.2 6.0 886 790 148 240 34.0 8.2 1160 1031 142 360 34.8 12.5 1666 1499 133 540 35.6 19.2 2426 2108 126 720 36.1 26.0 3099 2653 119 bxrc-40g1000-d-7x 90 175 24.9 4.4 649 590 149 233 25.4 5.9 851 765 144 350 26.0 9.1 1215 1093 134 525 27.4 14.4 1788 1542 124 700 28.4 19.9 2291 1929 115 bxrc-40a1001-b-73 93 135 33.2 4.5 663 596 148 180 34.0 6.1 870 780 142 270 34.8 9.4 1245 1121 133 405 35.6 14.4 1827 1625 127 540 36.1 19.5 2340 2071 120 bxrc-40a1001-c-73 93 180 33.2 6.0 883 788 148 240 34.0 8.2 1156 1027 142 360 34.8 12.5 1660 1494 133 540 35.6 19.2 2417 2100 126 720 36.1 26.0 3088 2643 119 bxrc-40a1001-d-73 93 175 24.9 4.4 646 587 148 233 25.4 5.9 848 762 143 350 26.0 9.1 1210 1089 133 525 27.4 14.4 1781 1536 124 700 28.4 19.9 2282 1921 115 bxrc-50c1001-b-7x 70 135 33.2 4.5 853 767 190 180 34.0 6.1 1119 1003 183 270 34.8 9.4 1601 1441 170 405 35.6 14.4 2349 2090 163 540 36.1 19.5 3009 2664 154 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
13 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-50c1001-c-7x 70 180 33.2 6.0 1135 1012 190 240 34.0 8.2 1486 1321 182 360 34.8 12.5 2134 1921 170 540 35.6 19.2 3108 2700 161 720 36.1 26.0 3970 3398 153 bxrc-50c1001-d-7x 70 175 24.9 4.4 831 755 190 233 25.4 5.9 1090 980 184 350 26.0 9.1 1556 1400 171 525 27.4 14.4 2290 1975 159 700 28.4 19.9 2934 2471 148 bxrc-50e1001-b-7x 80 135 33.2 4.5 802 721 179 180 34.0 6.1 1052 943 172 270 34.8 9.4 1505 1355 160 405 35.6 14.4 2208 1964 153 540 36.1 19.5 2829 2504 145 bxrc-50e1001-c-7x 80 180 33.2 6.0 1067 952 178 240 34.0 8.2 1397 1241 171 360 34.8 12.5 2006 1805 160 540 35.6 19.2 2921 2538 152 720 36.1 26.0 3731 3194 143 bxrc-50e1001-d-7x 80 175 24.9 4.4 781 710 179 233 25.4 5.9 1025 921 173 350 26.0 9.1 1463 1316 161 525 27.4 14.4 2153 1857 150 700 28.4 19.9 2758 2323 139 bxrc-50g1001-b-7x 90 135 33.2 4.5 683 613 152 180 34.0 6.1 895 803 146 270 34.8 9.4 1281 1153 136 405 35.6 14.4 1879 1672 130 540 36.1 19.5 2408 2131 123 bxrc-50g1001-c-7x 90 180 33.2 6.0 908 810 152 240 34.0 8.2 1189 1056 146 360 34.8 12.5 1707 1537 136 540 35.6 19.2 2486 2160 129 720 36.1 26.0 3176 2718 122 bxrc-50g1001-d-7x 90 175 24.9 4.4 665 604 152 233 25.4 5.9 872 784 147 350 26.0 9.1 1245 1120 137 525 27.4 14.4 1832 1580 127 700 28.4 19.9 2348 1977 118 bxrc-57c1001-b-7x 70 135 33.2 4.5 823 740 184 180 34.0 6.1 1079 968 176 270 34.8 9.4 1545 1390 164 405 35.6 14.4 2267 2016 157 540 36.1 19.5 2904 2570 149 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
14 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-57c1001-c-7x 70 180 33.2 6.0 1095 977 183 240 34.0 8.2 1434 1274 176 360 34.8 12.5 2059 1853 164 540 35.6 19.2 2998 2605 156 720 36.1 26.0 3830 3279 147 bxrc-57c1001-d-7x 70 175 24.9 4.4 802 729 184 233 25.4 5.9 1052 946 178 350 26.0 9.1 1502 1351 165 525 27.4 14.4 2210 1906 154 700 28.4 19.9 2832 2384 142 bxrc-57e1001-b-7x 80 135 33.2 4.5 816 733 182 180 34.0 6.1 1070 959 175 270 34.8 9.4 1531 1378 163 405 35.6 14.4 2246 1998 156 540 36.1 19.5 2877 2547 147 bxrc-57e1001-c-7x 80 180 33.2 6.0 1085 968 181 240 34.0 8.2 1421 1263 174 360 34.8 12.5 2040 1836 163 540 35.6 19.2 2971 2581 154 720 36.1 26.0 3795 3249 146 bxrc-57e1001-d-7x 80 175 24.9 4.4 794 722 182 233 25.4 5.9 1042 937 176 350 26.0 9.1 1488 1339 164 525 27.4 14.4 2190 1889 152 700 28.4 19.9 2806 2363 141 bxrc-65c1001-b-7x 70 135 33.2 4.5 838 753 187 180 34.0 6.1 1099 986 180 270 34.8 9.4 1573 1416 167 405 35.6 14.4 2308 2053 160 540 36.1 19.5 2957 2617 151 bxrc-65c1001-c-7x 70 180 33.2 6.0 1115 995 186 240 34.0 8.2 1460 1297 179 360 34.8 12.5 2097 1887 167 540 35.6 19.2 3053 2652 159 720 36.1 26.0 3900 3338 150 bxrc-65c1001-d-7x 70 175 24.9 4.4 816 742 187 233 25.4 5.9 1071 963 181 350 26.0 9.1 1529 1376 168 525 27.4 14.4 2250 1941 157 700 28.4 19.9 2883 2428 145 bxrc-65e1001-b-7x 80 135 33.2 4.5 831 747 185 180 34.0 6.1 1089 977 178 270 34.8 9.4 1559 1403 166 405 35.6 14.4 2287 2035 158 540 36.1 19.5 2930 2593 150 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
15 performance at commonly used drive currents table 4: product performance at commonly used drive currents (continued) part number cri drive current 1 (ma) typical v f t c = 25 o c (v) typical power t c = 25 o c (w) typical flux 2 t c = 25 o c (lm) typical dc flux 3 t c = 85 o c (lm) typical efcacy t c = 25 o c (lm/w) bxrc-65e1001-c-7x 80 180 33.2 6.0 1105 986 185 240 34.0 8.2 1447 1286 177 360 34.8 12.5 2078 1870 166 540 35.6 19.2 3026 2629 157 720 36.1 26.0 3865 3309 149 bxrc-65e1001-d-7x 80 175 24.9 4.4 809 736 185 233 25.4 5.9 1061 954 179 350 26.0 9.1 1515 1364 167 525 27.4 14.4 2230 1923 155 700 28.4 19.9 2857 2406 144 notes for table 4: 1. alternate drive currents are provided for reference only and are not a guarantee of performance. 2. bridgelux maintains a 7% tolerance on fux measurements. 3. typical stabilized dc performance values are provided as reference only and are not a guarantee of performance.
16 electrical characteristics table 5: electrical characteristics part number drive current (ma) forward voltage pulsed, t c = 25 o c (v) 1, 2, 3, 8 typical coefcient of forward voltage 4 ? v f / ? t c (mv/oc) typical thermal resistance junction to case 5,6 r j-c (oc/w) driver selection voltages 7 (v) minimum typical maximum v f min. hot t c = 105oc (v) v f max. cold t c = -40oc (v) n c c c ncn c c c c cn c ncn c cn c n c c c ncn c c c c cn c ncn c cn c n cn c c nnc c cn c c c c nnc c c nc cexes, nc sxsx9,xe9e9x c cnc c esseesssesesesesc c ssesefcneessesc c eeesseesfcnesessc c sssseefsec c sseseseesesseescss material used during testing is not included in the thermal resistance value. c f eessessesescsseess selection over the operating range of the product. csessf)nncsesennces) - eesecceesesssseec
17 eye safety table 6: eye safety risk group (rg) classifcations part number drive current 5 (ma) cct 1,5 2700k/3000k 4000k 2 5000k 3 6500k 4 bxrc-xxx100x-b-7x 270 rg1 rg1 rg1 rg1 405 rg1 rg1 rg1 rg2 540 rg1 rg1 rg2 rg2 bxrc-xxx100x-c-7x 360 rg1 rg1 rg1 rg2 540 rg1 rg1 rg2 rg2 720 rg1 rg2 rg2 rg2 bxrc-xxx100x-d-7x 350 rg1 rg1 rg1 rg1 525 rg1 rg1 rg1 rg2 700 rg1 rg1 rg2 rg2 notes for table 6: 1. eye safety classifcation for the use of bridgelux vero series led arrays is in accordance with specifcation iec/tr 62778: application of iec 62471 for the assessment of blue light hazard to light sources and luminaires. 2. for products classifed as rg2 at 4000k, e thr = 1847.5 lx. 3. for products classifed as rg2 at 5000k e thr = 1315.8 lx. 4. for products classifed as rg2 at 6500k, e thr = 1124.5 lx. 5. please contact your bridgelux sales representative for e thr values at specifc drive currents and ccts not listed.
18 absolute maximum ratings parameter maximum rating led junction temperature (t j ) 125c storage temperature -40c to +105c operating case temperature 1 (t c ) 105c soldering temperature 2 300c or lower for a maximum of 6 seconds bxrc-xxx100x-b-7x bxrc-xxx100x-c-7x bxrc-xxx100x-d-7x maximum drive current 3 540ma 720ma 700ma maximum peak pulsed drive current 4 770ma 1030ma 1000ma maximum reverse voltage 5 -60v -60v -45v notes for table 7: 1. for iec 62717 requirement, please consult your bridgelux sales representative. 2. refer to bridgelux application note an31: assembly considerations for bridgelux vero led arrays. 3. arrays may be driven at higher currents however lumen maintenance may be reduced. 4. bridgelux recommends a maximum duty cycle of 10% and pulse width of 20 ms when operating led arrays at maximum peak pulsed current specifed. maximum peak pulsed currents indicate values where led arrays can be driven without catastrophic failures. 5. light emitting diodes are not designed to be driven in reverse voltage and will not produce light under this condition. maximum rating provided for reference only. table 7: maximum ratings
19 performance curves figure 3: vero 10d drive current vs. voltage figure 4: vero 10b typical relative flux vs. current notes for figure 1-6: 1. bridgelux does not recommend driving high power leds at low currents. doing so may produce unpredictable results. pulse width modulation (pwm) is recommended for dimming efects. 2. products tested under pulsed condition (10ms pulse width) at nominal test current where t j (junction temperature) = t c (case temperature) = 25c. figure 5: vero 10c typical relative flux vs. current figure 6 vero 10d typical relative flux vs. current figure 1: vero 10b drive current vs. voltage figure 2: vero 10c drive current vs. voltage 0 100 200 300 400 500 600 700 800 24 25 26 27 28 29 forward current (ma) forward voltage (v) 0 100 200 300 400 500 600 32 33 34 35 36 37 38 forward current (ma) forward voltage (v) forward current (ma) forward voltage (v) 0% 20% 40% 60% 80% 100% 120% 140% 160% 180% 200% 0 100 200 300 400 500 600 relative luminous flux forward current (ma) 0% 20% 40% 60% 80% 100% 120% 140% 160% 180% 200% 0 100 200 300 400 500 600 700 800 relative luminous flux forward current (ma) 0% 20% 40% 60% 80% 100% 120% 140% 160% 180% 200% 0 100 200 300 400 500 600 700 800 relative luminous flux forward current (ma)
20 performance curves figure 7: typical dc flux vs. case temperature 82% 85% 88% 91% 94% 97% 100% 103% 0 25 50 75 100 125 relative luminous flux case temperature ( c) warm white neutral white cool white 25c pulsed notes for figures 7 - 9: 1. characteristics shown for warm white based on 3000k and 80 cri. 2. characteristics shown for neutral white based on 4000k and 80 cri. 3. characteristics shown for cool white based on 5000k and 70 cri. 4. for other color skus, the shift in color will vary. please contact your bridgelux sales representative for more information. figure 9: typical dc ccx shift vs. case temperature figure 8: typical dc ccy shift vs. case temperature -0.012 -0.010 -0.008 -0.006 -0.004 -0.002 0.000 0 25 50 75 100 125 ccx shift case temperature ( c) warm white neutral white cool white 25c pulsed -0.015 -0.012 -0.009 -0.006 -0.003 0.000 0.003 0 25 50 75 100 125 ccy shift case temperature ( c) warm white neutral white cool white 25c pulsed figure 10: 2000k, 65 cri color shift vs. case temperature 105 c 85 c 65 c 45 c 25 c 15 c pulsed center point t c =25 c 0.409 0.4091 0.4092 0.4093 0.4094 0.4095 0.4096 0.4097 0.4098 0.4099 0.41 0.4101 0.525 0.526 0.527 0.528 0.529 0.53 0.531 0.532 ccy ccx
21 figure 8: typical dc ccy shift vs. case temperature performance curves figure 11: 2700k, 97 cri color shift vs. case temperature 1 figure 12: 3000k, 97 cri color shift vs. case temperature 1 note for figures 10-16: 1. measurements made under dc test conditions at the nominal drive current. 2. typical color shift is shown with a tolerance of 0.002. 3. characteristics shown for decor series showcase products, bxrc-30g100c-x-73 figure 14: 3000k class a color shift vs. case temperature 1 figure 16: 4000k class a color shift vs. case temperature 1 figure 15: 3500k class a color shift vs. case temperature 1 15 c 25 c 45 c 65 c 85 c 105 c pulsed center point t c = 25 c 0.4030 0.4040 0.4050 0.4060 0.4070 0.4080 0.4090 0.4100 0.4110 0.457 0.4572 0.4574 0.4576 0.4578 0.458 ccy ccx 15 c 25 c 45 c 70 c 85 c 105 c pulsed center point t c = 25 c 0.3950 0.3970 0.3990 0.4010 0.4030 0.4050 0.4323 0.4328 0.4333 0.4338 0.4343 0.4348 0.4353 ccy ccx 0.36 0.361 0.362 0.363 0.364 0.365 0.366 0.367 0.368 0.369 0.416 0.4165 0.417 0.4175 0.418 0.4185 ccy ccx pulsed center point t c =2 5 c 25 c 45 c 85 c 105 c 70 c 15 c 0.358 0.36 0.362 0.364 0.366 0.368 0.37 0.392 0.393 0.394 0.395 0.396 0.397 ccy ccx pulsed center point t c =2 5 c 15 c 45 c 85 c 105 c 70 c 25 c 0.3620 0.3640 0.3660 0.3680 0.3700 0.3720 0.3740 0.3760 0.373 0.374 0.375 0.376 0.377 0.378 0.379 ccy ccx pulsed center point t c =2 5 c 15 c 45 c 85 c 105 c 70 c 25 c figure 13: 3000k, 90 cri color shift vs. case temperature 3 pulsed center point t c =25 c 15 c 25 c 45 c 65 c 85 c 105 c 0.395 0.396 0.397 0.398 0.399 0.4 0.401 0.402 0.403 0.444 0.4445 0.445 0.4455 0.446 0.4465 0.447 ccy ccx
22 typical radiation pattern figure 17: typical spatial radiation pattern figure 18: typical polar radiation pattern note for figure 17: 1. typical viewing angle is 120 ? . 2. the viewing angle is defned as the of axis angle from the centerline where intensity is ? of the peak value.
23 typical color spectrum figure 19: typical color spectrum note for figure 19: 1. color spectra measured at nominal current for t j = t c = 25c. 2. color spectra shown is 3000k and 80 cri. 3. color spectra shown is 4000k and 80 cri. 4. color spectra shown is 5000k and 70 cri. 4. color spectra shown is 6500k and 70 cri. 0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 110% 400 450 500 550 600 650 700 750 800 relative spectral power distribution wavelength (nm) 3000k 4000k 5000k 6500k figure 20: typical color spectrum for vero 10 with d cor series note for figure 20: 1. color spectra measured at nominal current for t j = t c = 25c. 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 400 450 500 550 600 650 700 750 800 relative spectral power distribution wavelength (nm) 20b 27h 30g (dcor series showcase) 30h
24 mechanical dimensions figure 21: drawing for vero 10 led array notes for figure 21: 1. drawings are not to scale. 2. dimensions are in mm. 3. unless otherwise specifed, tolerances are 0.10mm. 4. mounting slots (2x) are for m2.5 screws. 5. bridgelux recommends two tapped holes for mounting screws with 19.0 0.10mm center-to-center spacing. 6. screws with fat shoulders (pan, dome, button, round, truss, mushroom) provide optimal torque control. do not use fat, countersink, or raised head screws. 7. solder pads and connector port are labeled + and - to denote positive and negative, respectively. 8. it is not necessary to provide electrical connections to both the solder pads and the connector port. either set may be used depending on application specifc design requirements. 9. refer to application notes an30 and an31 for product handling, mounting and heat sink recommendations. 10. the optical center of the led array is nominally defned by the mechanical center of the array to a tolerance of 0.2mm. 11. bridgelux maintains a fatness of 0.10mm across the mounting surface of the array.
25 figure 22: warm and neutral white test bins in xy color space color binning information bin code 2000k 2700k 3000k 1 3500k 1 4000k 1 ansi bin (for reference only) - (2580k - 2870k) (2870k - 3220k) (3220k - 3710k) (3710k - 4260k) 73 (3 sdcm) - (2651k - 2794k) (2968k - 3136k) (3369k - 3586k) (3851k - 4130k) 72 (2 sdcm) - (2674k - 2769k) (2995k - 3107k) (3404k - 3548k) (3895k - 4081k) center point (x,y) (0.5280, 0.4100) (0.4578, 0.4101) (0.4338, 0.403) (0.4465, 0.4024) 2 (0.4073, 0.3917) (0.3818, 0.3797) table 8: warm and neutral white xy bin coordinates and associated typical cct bin code 5000k 5700k 6500k ansi bin (for reference only) (4745k - 5311k) (5312k - 6022k) (6022k - 7042k) 74 (4 sdcm) (4801k - 5282k) (5481k - 5829k) (6270k - 6765k) 73 (3 sdcm) (4835k-5215k) (5490k-5820k) (6250k-6745k) center point (x,y) (0.3447, 0.3553) (0.3287, 0.3417) (0.3123, 0.3282) table 9: cool white xy bin coordinates and associated typical cct (product is hot targeted to t c = 85c) note: pulsed test conditions, t c = 25c note for table 8: 1. color binning information excludes decor series class a products. please contact your bridgelux sales representative for more information. 2. center point for decor series showcase. figure 23: graph of cool white test bins in xy color space note: pulsed test conditions, t c = 25c 0.34 0.36 0.38 0.4 0.42 0.44 0.36 0.39 0.42 0.45 0.48 0.51 0.54 y x 3 sdcm 2 sdcm 3500k 2000k 3sdcm 2700k 3000k 4000k 0.3 0.31 0.32 0.33 0.34 0.35 0.36 0.37 0.38 0.39 0.3 0.31 0.32 0.33 0.34 0.35 0.36 y x 4 sdcm 3 sdcm 6500k 5700k 5000k
26 packaging and labeling figure 24: drawing for vero 10 packaging tray notes for figure 24: 1. dimensions are in millimeters. 2. drawings are not to scale.
27 packaging and labeling figure 25: vero series packaging and labeling notes for figure 25: 1. each tray holds 200 cobs. 2. each tray is vacuum sealed in an anti-static bag and placed in its own box. 3. each tray, bag and box is to be labeled as shown above. figure 26: gen. 7 product labeling bridgelux cob arrays have laser markings on the back side of the substrate to help with product identifcation. in addition to the product identifcation markings, bridgelux cob arrays also contain markings for internal bridgelux manufacturing use only. the image below shows which markings are for customer use and which ones are for bridgelux internal use only. the bridgelux internal manufacturing markings are subject to change without notice, however these will not impact the form, function or performance of the cob array. customer use- 2d barcode scannable barcode provides product part number and other bridgelux internal production information. customer use- product part number 30e1000c 73 2f customer use- v f bin code included to enable greater luminaire design fexibility. refer to an92 for bin code defnitions.
28 design resources disclaimers precautions application notes bridgelux has developed a comprehensive set of application notes and design resources to assist customers in successfully designing with the vero product family of led array products. for all available application notes visit www.bridgelux.com. optical source models optical source models and ray set fles are available for all bridgelux products. for a list of available formats, visit www.bridgelux.com. minor product change policy the rigorous qualifcation testing on products ofered by bridgelux provides performance assurance. slight cosmetic changes that do not afect form, ft, or function may occur as bridgelux continues product optimization. caution: chemical exposure hazard exposure to some chemicals commonly used in luminaire manufacturing and assembly can cause damage to the led array. please consult bridgelux application note an31 for additional information. caution: risk of burn do not touch the vero led array during operation. allow the array to cool for a sufcient period of time before handling. the vero led array may reach elevated temperatures such that could burn skin when touched. 3d cad models three dimensional cad models depicting the product outline of all bridgelux vero led arrays are available in both igs and step formats. please contact your bridgelux sales representative for assistance. lm80 lm80 testing has been completed and the lm80 report is now available. please contact your bridgelux sales rep - resentative for lm-80 report. caution contact with light emitting surface (les) avoid any contact with the les. do not touch the les of the led array or apply stress to the les (yellow phosphor resin area). contact may cause damage to the led array. optics and refectors must not be mounted in contact with the les (yellow phosphor resin area). optical devices may be mounted on the top surface of the plastic housing of the vero led array. use the mechanical features of the led array housing, edges and/or mounting holes to locate and secure optical devices as needed. standard test conditions unless otherwise stated, array testing is performed at the nominal drive current.
29 about bridgelux: we build light that transforms ? 2016-2017 bridgelux, inc. all rights reserved 2016. product specifcations are subject to change without notice. bridgelux, the bridgelux stylized logo design and vero are registered trademarks, and decor series is a trademark of bridgelux, inc. all other trademarks are the property of their respective owners. bridgelux gen 7 vero 10 array series product data sheet ds90 rev. j (6/2017) 46430 fremont boulevard fremont, ca 94538 tel (925) 583-8400 www.bridgelux.com at bridgelux, we help companies, industries and people experience the power and possibility of light. since 2002, weve designed led solutions that are high performing, energy efcient, cost efective and easy to integrate. our focus is on lights impact on human behavior, delivering products that create better environments, experiences and returnsboth experiential and fnancial. and our patented technology drives new platforms for commercial and industrial luminaires. for more information about the company, please visit bridgelux.com twitter.com/bridgelux facebook.com/bridgelux youtube.com/user/bridgelux linkedin.com/company/bridgelux-inc-_2 wechat id: bridgeluxinchina


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