DS325 BRIDGELUX | Alldatasheet

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BXRC-27S|30S|35S|40S|50S|57S|65S Bridgelux Gen 7 Vero 10 Thrive™ Array Product Data Sheet DS325

Bridgelux Thrive™ combines unique chip, phosphor and packaging technology to closely match the spectra of natural light over the visible wavelength range. Thrive can be used in constant color point luminaires to bring full spectrum natural light indoors or in tunable white luminaires to incorporate circadian elements that may impact human well-being. The high fidelity spectral output of Thrive creates stunning environments with excellent color rendering and outstanding TM30 metrics. Thrive is available in both SMD components and LED arrays to enable a broad range of lighting applications including retail, hospitality, office, education, architectural, museums, healthcare and residential lighting.

Features

  • Engineered spectrum to closely match natural light
  • CRI >95, R1-R15 >90, high Rf and Rg values
  • High efficacy full spectrum solution
  • No violet chip augmentation
  • Hot color targeted
  • Form factor consistent with existing Bridgelux COB arrays
  • Broad product platform availability (SMDs and COBs) Benefits
  • Full consistent spectrum with fewer spectral spikes
  • Natural and vivid color rendering
  • Greater energy savings, lower utility costs
  • Economical, high efficiency solution
  • Uniform and consistent white light at application conditions
  • Ease of design and rapid go-to-market
  • Enables greater design flexibility and platform color consistency Vero® Thrive

The part number designation for Bridgelux COB arrays is explained as follows: BXRC – 30 S 1001 – C – 7 3 1 2 3 4 – 5 6 7 8 9 10 11 – 12 – 13 14 Product Family CCT Bin Options 2 = 2 SDCM 3 = 3 SDCM 4 = 4 SDCM Flux Indicator 1001 = 1000 lm Minimum CRI S = Thrive Array Configuration Nominal CCT 27 = 2,700K 30 = 3,000K 35 = 3,500K 40 = 4,000K 50 = 5,000K 57 = 5,700K 65 = 6,500K Gen 7 Optional Bridgelux Vero wire harness (sold separately) Mounting holes Polarity indication marks simplify manufacturing operator instructions 2D Bar code provides full manufacturing traceability Solderless connector port enables simplified manufacturing processes, reduced inventory carrying costs and can enable field upgradability Thermally isolated solder pads reduce manufacturing cycle time and complexity Tc Measurement point Radial die configuration improves lumen density and beam control Top side part number marking improves inventory management and outgoing quality control Vero 10 is the smallest form factor in the Vero family of next generation solid state light sources. In addition to delivering the performance and light quality required for many lighting applications, Vero incorporates several features to simplify the design integration and manufacturing process, accelerate time to market and reduce system costs. Please visit www.bridgelux.com for more information on the Vero Series family of products.

The following product configurations are available: Table 1: Selection Guide, Pulsed Measurement Data (Tc= 25°C) Part Number1,6 Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical Vf (V) Typical Pulsed Flux4,5,6,7 Tc = 25ºC (lm) Minimum Pulsed Flux6,7,8 Tc = 25ºC (lm) Typical Power (W) Typical Efficacy (lm/W) Typical Photosynthetic Photon Flux (PPF) Typical Photon Efficiency (µmol/J) BXRC-27S1001-B-73 2700 95 270 34.4 1003 858 9.3 108 17.5 1.9 BXRC-27S1001-C-73 2700 95 360 34.4 1337 1144 12.4 108 23.33 1.9 BXRC-27S1001-D-73 2700 95 360 25.8 975 858 9.3 105 17.46 1.88 BXRC-30S1001-B-73 3000 95 270 34.4 1077 915 9.3 116 18.4 1.99 BXRC-30S1001-C-73 3000 95 360 34.4 1437 1221 12.4 116 24.55 1.99 BXRC-30S1001-D-73 3000 95 360 25.8 1040 915 9.3 112 17.95 1.93 BXRC-35S1001-B-73 3500 95 270 34.4 1124 989 9.3 121 18.6 1.99 BXRC-35S1001-C-73 3500 95 360 34.4 1498 1319 12.4 121 24.79 1.99 BXRC-35S1001-D-73 3500 95 360 25.8 1156 1017 9.3 124 19.83 2.13 BXRC-40S1001-B-73 4000 95 270 34.4 1142 1005 9.3 123 18.59 1.97 BXRC-40S1001-C-73 4000 95 360 34.4 1523 1340 12.4 123 24.79 1.97 BXRC-40S1001-D-73 4000 95 360 25.8 1207 1062 9.3 130 20.04 2.16 BXRC-50S1001-B-74 5000 95 270 34.4 1198 1054 9.3 129 19.64 2.06 BXRC-50S1001-C-74 5000 95 360 34.4 1598 1406 12.4 129 26.19 2.06 BXRC-50S1001-D-74 5000 95 360 25.8 1260 1109 9.3 136 20.87 2.25 BXRC-57S1001-B-74 5700 95 270 34.4 1226 1079 9.3 132 20.16 2.1 BXRC-57S1001-C-74 5700 95 360 34.4 1635 1439 12.4 132 26.88 2.1 BXRC-57S1001-D-74 5700 95 360 25.8 1271 1119 9.3 137 20.80 2.24 BXRC-65S1001-B-74 6500 95 270 34.4 1207 1063 9.3 130 19.85 2.07 BXRC-65S1001-C-74 6500 95 360 34.4 1610 1417 12.4 130 26.47 2.07 BXRC-65S1001-D-74 6500 95 360 25.8 1239 1090 9.3 133 20.71 2.23 Notes for Table 1 : 1. Product CCT is hot targeted at Tj= 85°C. Nominal CCT as defined by ANSI C78.377-2011. 2. All CRI values are measured at Tj = Tc = 25°C. CRI values are minimums. Bridgelux maintains a ± 3 tolerance on CRI 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 Tj (junction temperature) = Tc (case temperature) = 25°C. Typical stabilized DC performance values are provided as reference only and are not a guarantee of performance. 5. Typical performance values are provided as a reference only and are not a guarantee of performance. 6. 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 85°C. 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. Bridgelux maintains a ±7% tolerance on flux measurements. 8. Minimum flux values at the nominal test current are guaranteed by 100% test.

The following product configurations are available: Table 2: Selection Guide, Stabilized DC Test Performance (Tc= 85°C)4,5,6 Part Number1,6 Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical Vf (V) Typical DC Flux4,5,6,7 Tc = 85ºC (lm) Mini- mum DC Flux6,7,8,9 Tc = 85ºC (lm) Typical Power (W) Typical Efficacy (lm/W) Typical Photosynthetic Photon Flux (PPF) Typical Photon Efficiency (µmol/J) BXRC-27S1001-B-73 2700 95 270 33.7 903 772 9.1 99 15.76 1.9 BXRC-27S1001-C-73 2700 95 360 33.7 1204 1029 12.1 99 21.01 1.9 BXRC-27S1001-D-73 2700 95 360 25.3 888 781 9.1 98 15.79 1.74 BXRC-30S1001-B-73 3000 95 270 33.7 970 823 9.1 107 16.57 1.99 BXRC-30S1001-C-73 3000 95 360 33.7 1293 1098 12.1 107 22.09 1.99 BXRC-30S1001-D-73 3000 95 360 25.3 947 833 9.1 104 16.18 1.78 BXRC-35S1001-B-73 3500 95 270 33.7 1011 890 9.1 111 16.73 1.99 BXRC-35S1001-C-73 3500 95 360 33.7 1349 1187 12.1 111 22.33 1.99 BXRC-35S1001-D-73 3500 95 360 25.3 1052 926 9.1 116 17.82 1.96 BXRC-40S1001-B-73 4000 95 270 33.7 1028 905 9.1 113 16.73 1.97 BXRC-40S1001-C-73 4000 95 360 33.7 1371 1206 12.1 113 22.31 1.97 BXRC-40S1001-D-73 4000 95 360 25.3 1098 967 9.1 121 18.13 1.99 BXRC-50S1001-B-74 5000 95 270 33.7 1078 949 9.1 119 17.67 2.06 BXRC-50S1001-C-74 5000 95 360 33.7 1438 1265 12.1 119 23.57 2.06 BXRC-50S1001-D-74 5000 95 360 25.3 1147 1009 9.1 126 18.74 2.06 BXRC-57S1001-B-74 5700 95 270 33.7 1103 971 9.1 121 18.14 2.1 BXRC-57S1001-C-74 5700 95 360 33.7 1471 1295 12.1 121 24.19 2.1 BXRC-57S1001-D-74 5700 95 360 25.3 1157 1018 9.1 127 18.79 2.06 BXRC-65S1001-B-74 6500 95 270 33.7 1087 956 9.1 119 17.87 2.07 BXRC-65S1001-C-74 6500 95 360 33.7 1449 1275 12.1 119 23.82 2.07 BXRC-65S1001-D-74 6500 95 360 25.3 1127 992 9.1 124 18.86 2.07 Notes for Table 2: 1. Product CCT is hot targeted at Tj= 85°C. Nominal CCT as defined by ANSI C78.377-2011. 2. All CRI values are measured at Tj = Tc = 25°C. CRI values are minimums. Bridgelux maintains a ± 3 tolerance on CRI 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 Tj (junction temperature) = Tc (case temperature) = 25°C. Typical stabilized DC performance values are provided as reference only and are not a guarantee of performance. 5. Typical performance values are provided as a reference only and are not a guarantee of performance. 6. 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 85°C. 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. Bridgelux maintains a ±7% tolerance on flux measurements. 8. Minimum flux values at the nominal test current are guaranteed by 100% test. 9. Minimum flux 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.

European Product Registry for Energy Labeling The European Product Registry for Energy Labeling (EPREL) is defined in the EU Regulation 2017/1369 to provide import- ant energy efficiency information to consumers. Together with Energy Labeling Regulation ELR (EU) 2019/2015 which was amended by regulation (EU) 2021/340 for energy labelling of light sources, manufacturers are required to declare an ener- gy class based on key technical specifications from each of their product and register it in an open data base managed by EPREL It is now a legal requirement for a vendor of light sources to upload information about their products into the EPREL database before placing these products on the market in the EU. Table 3 below provides a list of part numbers that are in compliance with ELR and are currently listed in the EPREL data- base. At Bridgelux, we are fully committed to supplying products that are compliant with pertinent laws, rules, and obligation imposed by relevant government bodies including the European Energy Labeling regulation. Customers can use these products with full confidence for any projects that fall under the ELR. Table 3: Part numbers registered in European Product Registry for Energy Labeling PART NUMBER1 CCT (K) CRI Current2 (mA) Vf (V) Useful flux3 (Φuse) at 85C (lm) Pow- er (W) Efficacy (lm/W) Energy efficiency class4 Registra- tion No URL to Product Information Sheet in EPREL Database Notes for Table 3: 1. All device listed here must be disposed as e-waste upon its end of life according to local country guideline in each country. 2. For information on performance values at alternative drive conditions. please refer to the Product Selection Guide, Absolute Maximum Rating Table and Performance Curves in this data sheet. 3. For a definition of useful luminous flux (ΦΦuse), please see the ELR regulations at https:/ /tinyurl.com/4b6zvt4m. 4. EPREL requires an arrow symbol containing the letter of the energy efficiency class to be displayed. on technical promotional material. Refer to this energy efficiency class column for specific energy efficiency class on each part number.

Performance at Commonly Used Drive Currents Vero Thrive LED arrays are tested to the specifications shown using the nominal drive currents in Table 1. Vero Thrive LED Arrays may also be driven at other drive currents dependent on specific application design requirements. The performance at any drive current can be derived from the current vs. voltage characteristics shown in Figures 11, 12 & 13 and the flux vs. current characteristics shown in Figures 14, 15 & 16. 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 Current1 (mA) Typical Vf Tc = 25ºC (V) Typical Power Tc = 25ºC (W) Typical Flux2 Tc = 25ºC (lm) Typical DC Flux3 Tc = 85ºC (lm) Typical Efficacy Tc = 25ºC (lm/W) BXRC-27S1001-B-73 95 135 33.2 4.4 535 480 121 180 33.6 6.1 701 629 116 270 34.4 9.3 1003 903 108 405 35.6 14.3 1472 1309 103 540 36.6 19.3 1885 1669 98 BXRC-27S1001-C-73 95 180 33.2 5.9 711 635 120 240 33.6 8.1 932 828 115 360 34.4 12.4 1337 1204 108 540 35.6 19.0 1948 1692 102 720 36.6 25.7 2488 2130 97 BXRC-27S1001-D-73 95 180 24.9 4.5 507 467 113 240 25.2 6.0 667 613 110 360 25.8 9.3 975 888 105 540 26.7 14.4 1407 1262 98 720 27.5 19.8 1818 1378 92 BXRC-30S1001-B-73 95 135 33.2 4.4 574 516 130 180 33.6 6.1 753 675 124 270 34.4 9.3 1077 970 116 405 35.6 14.3 1581 1406 111 540 36.6 19.3 2025 1792 105 BXRC-30S1001-C-73 95 180 33.2 5.9 764 682 129 240 33.6 8.1 1001 889 124 360 34.4 12.4 1437 1293 116 540 35.6 19.0 2092 1817 110 720 36.6 25.7 2672 2287 104 BXRC-30S1001-D-73 95 180 24.9 4.5 541 498 121 240 25.2 6.0 711 654 118 360 25.8 9.3 1040 947 112 540 26.7 14.4 1500 1347 104 720 27.5 19.8 1939 1470 98 BXRC-35S1001-B-73 95 135 33.2 4.4 599 538 135 180 33.6 6.1 785 704 130 270 34.4 9.3 1124 1011 121 405 35.6 14.3 1649 1467 116 540 36.6 19.3 2112 1870 109 BXRC-35S1001-C-73 95 180 33.2 5.9 797 711 135 240 33.6 8.1 1044 927 129 360 34.4 12.4 1498 1349 121 540 35.6 19.0 2182 1896 115 720 36.6 25.7 2787 2386 108 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 flux 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 Table 4: Product Performance at Commonly Used Drive Currents (Continued) Part Number CRI Drive Current1 (mA) Typical Vf Tc = 25ºC (V) Typical Power Tc = 25ºC (W) Typical Flux2 Tc = 25ºC (lm) Typical DC Flux3 Tc = 85ºC (lm) Typical Efficacy Tc = 25ºC (lm/W) BXRC-35S1001-D-73 95 180 24.9 4.5 601 554 134 240 25.2 6.0 790 726 131 360 25.8 9.3 1156 1052 124 540 26.7 14.4 1667 1496 116 720 27.5 19.8 2154 1633 109 BXRC-40S1001-B-73 95 135 33.2 4.4 609 547 137 180 33.6 6.1 798 716 132 270 34.4 9.3 1142 1028 123 405 35.6 14.3 1676 1491 117 540 36.6 19.3 2147 1900 111 BXRC-40S1001-C-73 95 180 33.2 5.9 810 723 137 240 33.6 8.1 1061 943 132 360 34.4 12.4 1523 1371 123 540 35.6 19.0 2218 1927 117 720 36.6 25.7 2833 2425 110 BXRC-40S1001-D-73 95 180 24.9 4.5 627 578 140 240 25.2 6.0 825 758 136 360 25.8 9.3 1207 1098 130 540 26.7 14.4 1741 1562 121 720 27.5 19.8 2250 1705 114 BXRC-50S1001-B-74 95 135 33.2 4.4 638 574 144 180 33.6 6.1 837 751 138 270 34.4 9.3 1198 1078 129 405 35.6 14.3 1758 1564 123 540 36.6 19.3 2252 1993 117 BXRC-50S1001-C-74 95 180 33.2 5.9 849 758 144 240 33.6 8.1 1113 989 138 360 34.4 12.4 1598 1438 129 540 35.6 19.0 2326 2021 122 720 36.6 25.7 2972 2544 116 BXRC-50S1001-D-73 95 180 24.9 4.5 655 604 146 240 25.2 6.0 862 792 142 360 25.8 9.3 1260 1147 136 540 26.7 14.4 1818 1631 126 720 27.5 19.8 2349 1781 119 BXRC-57S1001-B-74 95 135 33.2 4.4 653 587 147 180 33.6 6.1 857 768 142 270 34.4 9.3 1226 1103 132 405 35.6 14.3 1799 1600 126 540 36.6 19.3 2304 2039 119 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 flux 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 Table 4: Product Performance at Commonly Used Drive Currents (Continued)

Performance at Commonly Used Drive Currents Table 4: Product Performance at Commonly Used Drive Currents (Continued) Part Number CRI Drive Current1 (mA) Typical Vf Tc = 25ºC (V) Typical Power Tc = 25ºC (W) Typical Flux2 Tc = 25ºC (lm) Typical DC Flux3 Tc = 85ºC (lm) Typical Efficacy Tc = 25ºC (lm/W) BXRC-57S1001-C-74 95 180 33.2 5.9 869 776 147 240 33.6 8.1 1139 1012 141 360 34.4 12.4 1635 1471 132 540 35.6 19.0 2380 2068 125 720 36.6 25.7 3041 2603 118 BXRC-57S1001-D-74 95 180 24.9 4.5 660 609 147 240 25.2 6.0 869 798 144 360 25.8 9.3 1271 1157 137 540 26.7 14.4 1833 1645 127 720 27.5 19.8 2369 1796 120 BXRC-65S1001-B-74 95 135 33.2 4.4 643 578 145 180 33.6 6.1 844 757 139 270 34.4 9.3 1207 1087 130 405 35.6 14.3 1771 1576 124 540 36.6 19.3 2269 2009 118 BXRC-65S1001-C-74 95 180 33.2 5.9 856 764 145 240 33.6 8.1 1121 996 139 360 34.4 12.4 1610 1449 130 540 35.6 19.0 2344 2037 123 720 36.6 25.7 2995 2563 116 BXRC-65S1001-D-74 95 180 24.9 4.5 644 593 144 240 25.2 6.0 847 778 140 360 25.8 9.3 1239 1127 133 540 26.7 14.4 1787 1603 124 720 27.5 19.8 2309 1750 117 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 flux measurements. 3. Typical stabilized DC performance values are provided as reference only and are not a guarantee of performance.

Electrical Characteristics

Table 7: Electrical Characteristics Part Number Drive Current (mA) Forward Voltage Pulsed, Tc = 25ºC (V) 1, 2, 3, 8 Typical Coefficient of Forward Voltage4 ∆Vf/∆Tc (mV/ºC) Typical Thermal Resistance Junction to Case5,6 Rj-c (ºC/W) Driver Selection Voltages7 (V) Minimum Typical Maximum Vf Min. Hot Tc = 105ºC (V) Vf Max. Cold Tc = -40ºC (V) BXRC-xxx1001-B-7x BXRC-xxx1001-C-7x BXRC-xxx1001-D-7x Notes for Table 7: 1. Parts are tested in pulsed conditions, Tc = 25°C. Pulse width is 10ms. 2. Voltage minimum and maximum are provided for reference only and are not a guarantee of performance. 3. Bridgelux maintains a tester tolerance of ± 0.10V on forward voltage measurements. 4. Typical coefficient of forward voltage tolerance is ± 0.1mV for nominal current. 5. Thermal resistance values are based from test data of a 3000K 80 CRI product. 6. Thermal resistance value was calculated using total electrical input power; optical power was not subtracted from input power. The thermal interface material used during testing is not included in the thermal resistance value. 7. Vf min hot and max cold values are provided as reference only and are not guaranteed by test. These values are provided to aid in driver design and selection over the operating range of the product. 8. This product has been designed and manufactured per IEC 62031:2018. This product has passed dielectric withstand voltage testing at 1160 V. The working voltage designated for the insulation is 80V d.c. The maximum allowable voltage across the array must be determined in the end product application.

Table 8: Maximum Ratings Parameter Maximum Rating LED Junction Temperature (Tj) 150°C Storage Temperature -40°C to +105°C Operating Case Temperature1 (Tc) 105°C Soldering Temperature2 300°C or lower for a maximum of 6 seconds BXRC-xxx1001-B-7x BXRC-xxx1001-C-7x BXRC-xxx1001-D-7x Maximum Drive Current3 540mA 720mA 720mA Maximum Peak Pulsed Drive Current4 770mA 1030mA 1030mA Maximum Reverse Voltage5 -60V -60V -45V Notes for Table 8: 1. For IEC 62717 requirement, please consult your Bridgelux sales representative. 2. Refer to Bridgelux Application Note AN31: Handling and Assembly of Vero, Vero SE and Vesta SE LED Modules. 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 specified. 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 9: Eye Safety Risk Group (RG) Classifications Part Number Drive Current 5 (mA) CCT1,5 2700K/3000K 4000K2 5000K3 6500K4 BXRC-xxx100x-B-7x

270 RG1 RG1 RG1 RG1

405 RG1 RG1 RG1 RG2

540 RG1 RG1 RG2 RG2

360 RG1 RG1 RG1 RG2

720 RG1 RG2 RG2 RG2

720 RG1 RG1 RG2 RG2

Notes for Table 9: 1. Eye safety classification for the use of Bridgelux Vero Series LED arrays is in accordance with specification IEC/TR 62778: Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires. 2. For products classified as RG2 at 4000K, Ethr= 1847.5 lx. 3. For products classified as RG2 at 5000K Ethr= 1315.8 lx. 4. For products classified as RG2 at 6500K, Ethr= 1124.5 lx. Eye Safety

Table 10: 2-, 3- and 4-step MacAdam Ellipse Color Bin Definitions CCT Center Point Degree 2-step 3-step 4-step x y λ(°) a b a b a b Notes for Table 10: 1. Color binning at Tc=85°C 2. Bridgelux maintains a tolerance of ± 0.007 on x and y color coordinates in the CIE 1931 color space. Figure 10: C.I.E. 1931 Chromaticity Diagram (Color targeted at Tc=85°C) 0.34 0.36 0.38 0.4 0.42 0.44 Y X

3 SDCM

2 SDCM

0.3 0.31 0.32 0.33 0.34 0.35 0.36 0.37 0.38 0.39 Y X

4 SDCM

Figure 22: Drawing for Vero 10 LED Array Notes for Figure 22: 1. Drawings are not to scale. 2. Dimensions are in mm. 3. Unless otherwise specified, 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 flat shoulders (pan, dome, button, round, truss, mushroom) provide optimal torque control. Do NOT use flat, 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 appli- cation specific 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 defined by the mechanical center of the array to a tolerance of ± 0.2mm. 11. Bridgelux maintains a flatness of 0.10mm across the mounting surface of the array.

Figure 23: Vero 10 Packaging Notes for Figure 23: 1. Dimensions are in millimeters. 2. Drawings are not to scale.

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 files are available for all Bridgelux products. For a list of available formats, visit www.bridgelux.com. MINOR PRODUCT CHANGE POLICY The rigorous qualification testing on products offered by Bridgelux provides performance assurance. Slight cosmetic changes that do not affect form, fit, 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 CAUTION: RISK OF BURN Do not touch the Vero LED array during operation. Allow the array to cool for a sufficient 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 reflectors 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.

About Bridgelux: Bridging Light and Life™ © 2021 Bridgelux, Inc. Product specifications are subject to change without notice. Bridgelux and the Bridgelux stylized logo design are registered trademarks of Bridgelux, Inc. All other trademarks are the property of their respective owners. Bridgelux Gen 7 Vero10 Thrive Array Product Data Sheet DS325 Rev. A (03/2022)

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Fremont, CA 94538 USA Tel (925) 583-8400 www.bridgelux.com At Bridgelux, we help companies, industries and people experience the power and possibility of light. Since 2002, we’ve designed LED solutions that are high performing, energy efficient, cost effective and easy to integrate. Our focus is on light’s impact on human behavior, delivering products that create better environments, experiences and returns—both experiential and financial. 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 linkedin.com/company/bridgelux-inc-_2 youtube.com/user/Bridgelux WeChat ID: BridgeluxInChina