DS91 BRIDGELUX | Alldatasheet
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13 Array
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 configurations, engineered to enable new degrees of flexibility 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 Décor Series™ is our state-of-the-art color line designed specifically for premium applications, producing unmatched LED light quality with brilliant color-rendering options and pleasing lighting palettes. Bridgelux Décor Series color points are available on Vero® SE Series, Vero® Series, V Series™ and V Series™ HD. Décor Series™ Class A is based on human response testing, providing color points with a combined GAI and CRI metric. Décor 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. Décor Series Ultra is also designed as a replacement for halogen lamps. Décor Series™ Showcase is the optimal solution for replacing ceramic metal halide lamps, incorporating the same pure white light with enhanced spectrum coverage and higher efficacy. Vero® Series
Features
- Efficacy of 170 lm/W typical
- Lumen output performance ranges from 460 to 7,300 lumens
- Broad range of CCT options from 2700K to 6500K
- CRI options include; minimum 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
- Onboard connector port
- Top side part number markings
- V f bin code backside marking Benefits
- 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 field upgradability
- Improved inventory management and quality control
The part number designation for Bridgelux Vero LED arrays is explained as follows: 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 CRI C = 70 CRI min. E = 80 CRI min. G = 90 CRI min. H = 97 CRI typ. A = Class A Array Configuration 27 = 2,700K 30 = 3,000K 35 = 3,500K 40 = 4,000K 50 = 5,000K 57 = 5,700K 65 = 6,500K BXRC – 30 E 200 0 – C – 7 3 Color Targeting Designator 0 = Cold Targeted 1 = Hot Targeted C = Decor Series Showcase Target Gen. 7Nominal CCT Flux Indicator 200x = 2000 lm Vero 13 is the second smallest form factor in the Vero family of the 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. 2D Bar code provides full manufacturing traceability Polarity indication marks simplify manufacturing operator instructions Optics location/mounting features Mounting holes Zhaga Book 3 compatible mounting locations 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 Correlates to the true case temperature on the back surface of the LED array Radial die configuration improves lumen density and beam control Top side part number marking improves inventory management and outgoing quality control Optional Bridgelux Vero wire harness (sold separately)
The following product configurations are available: Table 1: Selection Guide, Pulsed Measurement Data (Tj = Tc = 25°C) Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical Pulsed Flux4,5,6 Tc = 25ºC (lm) Minimum Pulsed Flux6,7 Tc = 25ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-27E2000-B-7x 2700 80 450 2506 2255 34.8 15.7 160 BXRC-27E2000-C-7x 2700 80 630 3508 3157 34.8 21.9 160 BXRC-27E2000-D-7x 2700 80 500 2544 2290 31.8 15.9 160 BXRC-27G20H0-B-7x 2700 90 450 2145 1931 34.8 15.7 137 BXRC-27G20H0-C-7x 2700 90 630 3004 2703 34.8 21.9 137 BXRC-27G20H0-D-7x 2700 90 500 2178 1960 31.8 15.9 137 BXRC-27G2000-B-7x 2700 90 450 2067 1860 34.8 15.7 132 BXRC-27G2000-C-7x 2700 90 630 2894 2605 34.8 21.9 132 BXRC-27G2000-D-7x 2700 90 500 2099 1889 31.8 15.9 132 BXRC-27H2000-B-7x 2700 97 450 1832 1649 34.8 15.7 117 BXRC-27H2000-C-7x 2700 97 630 2565 2309 34.8 21.9 117 BXRC-27H2000-D-7x 2700 97 500 1860 1674 31.8 15.9 117 BXRC-30C2001-B-7x 3000 70 450 2787 2509 34.8 15.7 178 BXRC-30C2001-C-7x 3000 70 630 3902 3512 34.8 21.9 178 BXRC-30C2001-D-7x 3000 70 500 2830 2547 31.8 15.9 178 BXRC-30E2000-B-7x 3000 80 450 2662 2396 34.8 15.7 170 BXRC-30E2000-C-7x 3000 80 630 3727 3354 34.8 21.9 170 BXRC-30E2000-D-7x 3000 80 500 2703 2433 31.8 15.9 170 BXRC-30G20H0-B-7x 3000 90 450 2255 2030 34.8 15.7 144 BXRC-30G20H0-C-7x 3000 90 630 3157 2841 34.8 21.9 144 BXRC-30G20H0-D-7x 3000 90 500 2290 2061 31.8 15.9 144 BXRC-30G2000-B-7x 3000 90 450 2161 1945 34.8 15.7 138 BXRC-30G2000-C-7x 3000 90 630 3026 2723 34.8 21.9 138 BXRC-30G2000-D-7x 3000 90 500 2194 1975 31.8 15.9 138 BXRC-30G200C-B-7x 3000 90 450 2095 1885 35.0 15.8 133 BXRC-30G200C-D-7x 3000 90 500 2115 1903 31.8 15.9 133 BXRC-30H2000-B-7x 3000 97 450 1958 1762 34.8 15.7 125 BXRC-30H2000-C-7x 3000 97 630 2741 2466 34.8 21.9 125 BXRC-30H2000-D-7x 3000 97 500 1988 1789 31.8 15.9 125 BXRC-30A2001-B-7x8,9 3000 93 450 1942 1748 34.8 15.7 124 BXRC-30A2001-C-7x8,9 3000 93 630 2719 2447 34.8 21.9 124 BXRC-30A2001-D-7x8,9 3000 93 500 1972 1774 31.8 15.9 124 Notes for Table 1: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 Tj (junction temperature) = Tc (case temperature) = 25°C. 5. Typical performance values are provided as a reference only and are not a guarantee of performance. 6. Bridgelux maintains a ±7% tolerance on flux measurements. 7. Minimum flux values at the nominal test current are guaranteed by 100% test. 8. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 9. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
Table 1: Selection Guide, Pulsed Measurement Data (Tj = Tc = 25°C) (continued) Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical Pulsed Flux4,5,6 Tc = 25ºC (lm) Minimum Pulsed Flux6,7 Tc = 25ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-35E2000-B-7x 3500 80 450 2725 2452 34.8 15.7 174 BXRC-35E2000-C-7x 3500 80 630 3815 3433 34.8 21.9 174 BXRC-35E2000-D-7x 3500 80 500 2767 2490 31.8 15.9 174 BXRC-35G2000-B-7x 3500 90 450 2239 2015 34.8 15.7 143 BXRC-35G2000-C-7x 3500 90 630 3135 2822 34.8 21.9 143 BXRC-35G2000-D-7x 3500 90 500 2274 2046 31.8 15.9 143 BXRC-35A2001-B-7x8,9 3500 93 450 2067 1860 34.8 15.7 132 BXRC-35A2001-C-7x8,9 3500 93 630 2894 2605 34.8 21.9 132 BXRC-35A2001-D-7x8,9 3500 93 500 2099 1889 31.8 15.9 132 BXRC-40C2001-B-7x 4000 70 450 2866 2579 34.8 15.7 183 BXRC-40C2001-C-7x 4000 70 630 4012 3611 34.8 21.9 183 BXRC-40C2001-D-7x 4000 70 500 2910 2619 31.8 15.9 183 BXRC-40E2000-B-7x 4000 80 450 2741 2466 34.8 15.7 175 BXRC-40E2000-C-7x 4000 80 630 3837 3453 34.8 21.9 175 BXRC-40E2000-D-7x 4000 80 500 2783 2504 31.8 15.9 175 BXRC-40G2000-B-7x 4000 90 450 2286 2058 34.8 15.7 146 BXRC-40G2000-C-7x 4000 90 630 3201 2881 34.8 21.9 146 BXRC-40G2000-D-7x 4000 90 500 2321 2089 31.8 15.9 146 BXRC-40H2000-B-7x 4000 97 450 2067 1860 34.8 15.7 132 BXRC-40H2000-C-7x 4000 97 630 2894 2605 34.8 21.9 132 BXRC-40H2000-D-7x 4000 97 500 2099 1889 31.8 15.9 132 BXRC-40A2001-B-7x8,9 4000 93 450 2239 2015 34.8 15.7 143 BXRC-40A2001-C-7x8,9 4000 93 630 3135 2822 34.8 21.9 143 BXRC-40A2001-D-7x8,9 4000 93 500 2274 2046 31.8 15.9 143 BXRC-50C2001-B-7x 5000 70 450 2881 2593 34.8 15.7 184 BXRC-50C2001-C-7x 5000 70 630 4034 3631 34.8 21.9 184 BXRC-50C2001-D-7x 5000 70 500 2926 2633 31.8 15.9 184 BXRC-50E2001-B-7x 5000 80 450 2772 2495 34.8 15.7 177 BXRC-50E2001-C-7x 5000 80 630 3881 3492 34.8 21.9 177 BXRC-50E2001-D-7x 5000 80 500 2814 2533 31.8 15.9 177 BXRC-50G2001-B-7x 5000 90 450 2396 2156 34.8 15.7 153 BXRC-50G2001-C-7x 5000 90 630 3354 3019 34.8 21.9 153 BXRC-50G2001-D-7x 5000 90 500 2433 2189 31.8 15.9 153 Notes for Table 1: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 Tj (junction temperature) = Tc (case temperature) = 25°C. 5. Typical performance values are provided as a reference only and are not a guarantee of performance. 6. Bridgelux maintains a ±7% tolerance on flux measurements. 7. Minimum flux values at the nominal test current are guaranteed by 100% test. 8. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 9. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
Table 1: Selection Guide, Pulsed Measurement Data (Tj = Tc = 25°C) (continued) Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical Pulsed Flux4,5,6 Tc = 25ºC (lm) Minimum Pulsed Flux6,7 Tc = 25ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-57C2001-B-7x 5700 70 450 2803 2523 34.8 15.7 179 BXRC-57C2001-C-7x 5700 70 630 3924 3532 34.8 21.9 179 BXRC-57C2001-D-7x 5700 70 500 2846 2561 31.8 15.9 179 BXRC-57E2001-B-7x 5700 80 450 2662 2396 34.8 15.7 170 BXRC-57E2001-C-7x 5700 80 630 3727 3354 34.8 21.9 170 BXRC-57E2001-D-7x 5700 80 500 2703 2433 31.8 15.9 170 BXRC-65C2001-B-7x 6500 70 450 2803 2523 34.8 15.7 179 BXRC-65C2001-C-7x 6500 70 630 3924 3532 34.8 21.9 179 BXRC-65C2001-D-7x 6500 70 500 2846 2561 31.8 15.9 179 BXRC-65E2001-B-7x 6500 80 450 2694 2424 34.8 15.7 172 BXRC-65E2001-C-7x 6500 80 630 3771 3394 34.8 21.9 172 BXRC-65E2001-D-7x 6500 80 500 2735 2461 31.8 15.9 172 Notes for Table 1: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 Tj (junction temperature) = Tc (case temperature) = 25°C. 5. Typical performance values are provided as a reference only and are not a guarantee of performance. 6. Bridgelux maintains a ±7% tolerance on flux measurements. 7. Minimum flux values at the nominal test current are guaranteed by 100% test. 8. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 9. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
Table 2: Selection Guide, Stabilized DC Performance (Tc = 70°C) 7,8 Part Number Nominal CCT1 (K) GAI2 CRI3 Nominal Drive Current4 (mA) Typical DC Flux5,6 Tc = 70ºC (lm) Minimum DC Flux6,9 Tc = 70ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-30A2001-B-7x 3000 80 93 450 1806 1625 34.4 15.5 117 BXRC-30A2001-C-7x 3000 80 93 630 2528 2275 34.4 21.6 117 BXRC-30A2001-D-7x 3000 80 93 500 1834 1650 31.2 15.6 118 BXRC-35A2001-B-7x 3500 80 93 450 1922 1730 34.4 15.5 124 BXRC-35A2001-C-7x 3500 80 93 630 2691 2422 34.4 21.6 124 BXRC-35A2001-D-7x 3500 80 93 500 1952 1757 31.2 15.6 125 BXRC-40A2001-B-7x 4000 80 93 450 2083 1874 34.4 15.5 135 BXRC-40A2001-C-7x 4000 80 93 630 2916 2624 34.4 21.6 135 BXRC-40A2001-D-7x 4000 80 93 500 2115 1903 31.2 15.6 136 Notes for Table 2: 1. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 2. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance. 3. CRI Values are specified 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 flux 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 specified 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 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.
Table 3: Selection Guide, Stabilized DC Performance (Tc = 85°C) 4,5 Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical DC Flux4,5 Tc = 85ºC (lm) Minimum DC Flux6 Tc = 85ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-27E2000-B-7x 2700 80 450 2255 2030 33.9 15.3 148 BXRC-27E2000-C-7x 2700 80 630 3157 2841 33.9 21.4 148 BXRC-27E2000-D-7x 2700 80 500 2290 2061 30.9 15.5 148 BXRC-27G20H0-B-7x 2700 90 450 1931 1738 33.9 15.3 127 BXRC-27G20H0-C-7x 2700 90 630 2703 2433 33.9 21.4 127 BXRC-27G20H0-D-7x 2700 90 500 1960 1764 30.9 15.5 127 BXRC-27G2000-B-7x 2700 90 450 1860 1674 33.9 15.3 122 BXRC-27G2000-C-7x 2700 90 630 2605 2344 33.9 21.4 122 BXRC-27G2000-D-7x 2700 90 500 1889 1700 30.9 15.5 122 BXRC-27H2000-B-7x 2700 97 450 1649 1484 33.9 15.3 108 BXRC-27H2000-C-7x 2700 97 630 2309 2078 33.9 21.4 108 BXRC-27H2000-D-7x 2700 97 500 1674 1507 30.9 15.5 108 BXRC-30C2001-B-7x 3000 70 450 2509 2258 33.9 15.3 164 BXRC-30C2001-C-7x 3000 70 630 3512 3161 33.9 21.4 164 BXRC-30C2001-D-7x 3000 70 500 2547 2292 30.9 15.5 165 BXRC-30E2000-B-7x 3000 80 450 2396 2156 33.9 15.3 157 BXRC-30E2000-C-7x 3000 80 630 3354 3019 33.9 21.4 157 BXRC-30E2000-D-7x 3000 80 500 2433 2189 30.9 15.5 157 BXRC-30G20H0-B-7x 3000 90 450 2030 1827 33.9 15.3 133 BXRC-30G20H0-C-7x 3000 90 630 2841 2557 33.9 21.4 133 BXRC-30G20H0-D-7x 3000 90 500 2061 1855 30.9 15.5 133 BXRC-30G2000-B-7x 3000 90 450 1945 1750 33.9 15.3 127 BXRC-30G2000-C-7x 3000 90 630 2723 2451 33.9 21.4 127 BXRC-30G2000-D-7x 3000 90 500 1975 1777 30.9 15.5 128 BXRC-30G200C-B-7x 3000 90 450 1885 1697 34.1 15.3 123 BXRC-30G200C-D-7x 3000 90 500 1903 1713 30.9 15.5 123 BXRC-30H2000-B-7x 3000 97 450 1762 1586 33.9 15.3 115 BXRC-30H2000-C-7x 3000 97 630 2466 2220 33.9 21.4 115 BXRC-30H2000-D-7x 3000 97 500 1789 1610 30.9 15.5 116 BXRC-30A2001-B-7x7,8 3000 93 450 1748 1573 33.9 15.3 115 BXRC-30A2001-C-7x7,8 3000 93 630 2447 2202 33.9 21.4 115 BXRC-30A2001-D-7x7,8 3000 93 500 1774 1597 30.9 15.5 115 Notes for Table 3: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. All CRI values are measured at Tj = Tc = 25°C. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 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. 6. 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. 7. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 8. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
Table 3: Selection Guide, Stabilized DC Performance (Tc = 85°C) 4,5 (continued) Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical DC Flux4,5 Tc = 85ºC (lm) Minimum DC Flux6 Tc = 85ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-35E2000-B-7x 3500 80 450 2452 2207 33.9 15.3 161 BXRC-35E2000-C-7x 3500 80 630 3433 3090 33.9 21.4 161 BXRC-35E2000-D-7x 3500 80 500 2490 2241 30.9 15.5 161 BXRC-35G2000-B-7x 3500 90 450 2015 1814 33.9 15.3 132 BXRC-35G2000-C-7x 3500 90 630 2822 2539 33.9 21.4 132 BXRC-35G2000-D-7x 3500 90 500 2046 1842 30.9 15.5 132 BXRC-35A2001-B-7x7,8 3500 93 450 1860 1674 33.9 15.3 122 BXRC-35A2001-C-7x7,8 3500 93 630 2605 2344 33.9 21.4 122 BXRC-35A2001-D-7x7,8 3500 93 500 1889 1700 30.9 15.5 122 BXRC-40C2001-B-7x 4000 70 450 2579 2321 33.9 15.3 169 BXRC-40C2001-C-7x 4000 70 630 3611 3250 33.9 21.4 169 BXRC-40C2001-D-7x 4000 70 500 2619 2357 30.9 15.5 169 BXRC-40E2000-B-7x 4000 80 450 2466 2220 33.9 15.3 162 BXRC-40E2000-C-7x 4000 80 630 3453 3108 33.9 21.4 162 BXRC-40E2000-D-7x 4000 80 500 2504 2254 30.9 15.5 162 BXRC-40G2000-B-7x 4000 90 450 2058 1852 33.9 15.3 135 BXRC-40G2000-C-7x 4000 90 630 2881 2593 33.9 21.4 135 BXRC-40G2000-D-7x 4000 90 500 2089 1880 30.9 15.5 135 BXRC-40H2000-B-7x 4000 97 450 1860 1674 33.9 15.3 122 BXRC-40H2000-C-7x 4000 97 630 2605 2344 33.9 21.4 122 BXRC-40H2000-D-7x 4000 97 500 1889 1700 30.9 15.5 122 BXRC-40A2001-B-7x7,8 4000 93 450 2015 1814 33.9 15.3 132 BXRC-40A2001-C-7x7,8 4000 93 630 2822 2539 33.9 21.4 132 BXRC-40A2001-D-7x7,8 4000 93 500 2046 1842 30.9 15.5 132 BXRC-50C2001-B-7x 5000 70 450 2593 2334 33.9 15.3 170 BXRC-50C2001-C-7x 5000 70 630 3631 3268 33.9 21.4 170 BXRC-50C2001-D-7x 5000 70 500 2633 2370 30.9 15.5 170 BXRC-50E2001-B-7x 5000 80 450 2495 2245 33.9 15.3 164 BXRC-50E2001-C-7x 5000 80 630 3492 3143 33.9 21.4 164 BXRC-50E2001-D-7x 5000 80 500 2533 2280 30.9 15.5 164 BXRC-50G2001-B-7x 5000 90 450 2156 1941 33.9 15.3 141 BXRC-50G2001-C-7x 5000 90 630 3019 2717 33.9 21.4 141 BXRC-50G2001-D-7x 5000 90 500 2189 1970 30.9 15.5 142 Notes for Table 3: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. All CRI values are measured at Tj = Tc = 25°C. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 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. 6. 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. 7. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 8. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
Table 3: Selection Guide, Stabilized DC Performance (Tc = 85°C) 4,5 Part Number Nominal CCT1 (K) CRI2 Nominal Drive Current3 (mA) Typical DC Flux4,5 Tc = 85ºC (lm) Minimum DC Flux6 Tc = 85ºC (lm) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXRC-57C2001-B-7x 5700 70 450 2523 2271 33.9 15.3 165 BXRC-57C2001-C-7x 5700 70 630 3532 3179 33.9 21.4 165 BXRC-57C2001-D-7x 5700 70 500 2561 2305 30.9 15.5 166 BXRC-57E2001-B-7x 5700 80 450 2396 2156 33.9 15.3 157 BXRC-57E2001-C-7x 5700 80 630 3354 3019 33.9 21.4 157 BXRC-57E2001-D-7x 5700 80 500 2433 2189 30.9 15.5 157 BXRC-65C2001-B-7x 6500 70 450 2523 2271 33.9 15.3 165 BXRC-65C2001-C-7x 6500 70 630 3532 3179 33.9 21.4 165 BXRC-65C2001-D-7x 6500 70 500 2561 2305 30.9 15.5 166 BXRC-65E2001-B-7x 6500 80 450 2424 2182 33.9 15.3 159 BXRC-65E2001-C-7x 6500 80 630 3394 3054 33.9 21.4 159 BXRC-65E2001-D-7x 6500 80 500 2461 2215 30.9 15.5 159 Notes for Table 3: 1. Nominal CCT as defined by ANSI C78.377-2011. Products with a CCT of 5000K-6500K are hot targeted to Tc = 85°C. 2. All CRI values are measured at Tj = Tc = 25°C. CRI values are typical for Decor Series Ultra, Decor Series Street and Landmark 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 value for 90 CRI products is 50, the minimum R9 value for 97 CRI products is 93. Bridgelux maintains a ± 3 tolerance on CRI and 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 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. 6. 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. 7. Nominal CCT is defined by the Lighting Research Center’s Class A definition. The center of the Class A color bin is on the corresponding isothermal line. 8. GAI value is 80. To help ensure optimal fixture level performance, GAI is measured at the fixture level, on axis, at a case temperature of 70°C. GAI may vary depending on fixture design and performance.
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 4 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 4: 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 Regis- tration No URL to Product Information Sheet in EPREL Database Notes for Table 4: 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.
European Product Registry for Energy Labeling Table 4: Part numbers registered in European Product Registry for Energy Labeling (Continued) PART NUMBER1 CCT (K) CRI Current2 (mA) Vf (V) Useful flux3 (Φuse) at 85C (lm) Pow- er (W) Efficacy (lm/W) Energy efficiency class4 Regis- tration No URL to Product Information Sheet in EPREL Database Notes for Table 4: 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.
European Product Registry for Energy Labeling Table 4: Part numbers registered in European Product Registry for Energy Labeling (Continued) PART NUMBER1 CCT (K) CRI Current2 (mA) Vf (V) Useful flux3 (Φuse) at 85C (lm) Pow- er (W) Efficacy (lm/W) Energy efficiency class4 Regis- tration No URL to Product Information Sheet in EPREL Database Notes for Table 4: 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 LED arrays are tested to the specifications shown using the nominal drive currents in Table 1. Vero 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 1, 2 & 3 and the flux vs. current characteristics shown in Figures 4, 5 & 6. The performance at commonly used drive currents is summarized in Table 5. Table 5: 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-27E2000-B-7x 80 113 33.2 3.7 682 625 183 225 34.0 7.7 1321 1198 173 450 34.8 15.7 2506 2255 160 675 35.6 24.1 3621 3171 151 900 36.1 32.5 4619 3967 142 BXRC-27E2000-C-7x 80 158 33.2 5.2 948 896 181 315 34.0 10.7 1835 1728 171 630 34.8 21.9 3508 3157 160 945 35.6 33.7 5035 4707 150 1260 36.1 45.5 6426 5987 141 BXRC-27E2000-D-7x 80 125 29.6 3.7 673 643 182 250 30.3 7.6 1305 1243 172 500 31.8 15.9 2544 2290 160 750 33.2 24.9 3595 3406 144 1000 34.4 34.4 4597 4344 134 BXRC-27G20H0-B-7x 90 113 33.2 3.7 584 535 156 225 34.0 7.7 1131 1026 148 450 34.8 15.7 2145 1931 137 675 35.6 24.1 3100 2715 129 900 36.1 32.5 3955 3397 122 BXRC-27G20H0-C-7x 90 158 33.2 5.2 812 767 155 315 34.0 10.7 1571 1479 147 630 34.8 21.9 3004 2703 137 945 35.6 33.7 4311 4030 128 1260 36.1 45.5 5502 5127 121 BXRC-27G20H0-D-7x 90 125 29.6 3.7 577 551 156 250 30.3 7.6 1118 1065 147 500 31.8 15.9 2178 1960 137 750 33.2 24.9 3078 2916 124 1000 34.4 34.4 3936 3719 114 BXRC-27G2000-B-7x 90 113 33.2 3.7 563 516 151 225 34.0 7.7 1090 988 142 450 34.8 15.7 2067 1860 132 675 35.6 24.1 2987 2616 124 900 36.1 32.5 3811 3273 117 BXRC-27G2000-C-7x 90 158 33.2 5.2 782 739 149 315 34.0 10.7 1514 1425 141 630 34.8 21.9 2894 2605 132 945 35.6 33.7 4154 3883 123 1260 36.1 45.5 5301 4940 116 Notes for Table 5: 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 5: 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-27G2000-D-7x 90 125 29.6 3.7 556 531 150 250 30.3 7.6 1077 1026 142 500 31.8 15.9 2099 1889 132 750 33.2 24.9 2966 2810 119 1000 34.4 34.4 3792 3584 110 BXRC-27H2000-B-7x 97 113 33.2 3.7 499 457 134 225 34.0 7.7 966 876 126 450 34.8 15.7 1832 1649 117 675 35.6 24.1 2648 2319 110 900 36.1 32.5 3378 2901 104 BXRC-27H2000-C-7x 97 158 33.2 5.2 693 655 132 315 34.0 10.7 1342 1263 125 630 34.8 21.9 2565 2309 117 945 35.6 33.7 3682 3442 109 1260 36.1 45.5 4699 4378 103 BXRC-27H2000-D-7x 97 125 29.6 3.7 492 470 133 250 30.3 7.6 955 909 126 500 31.8 15.9 1860 1674 117 750 33.2 24.9 2629 2490 106 1000 34.4 34.4 3361 3176 98 BXRC-30C2001-B-7x 70 113 33.2 3.7 759 696 203 225 34.0 7.7 1469 1333 192 450 34.8 15.7 2787 2509 178 675 35.6 24.1 4028 3528 167 900 36.1 32.5 5138 4414 158 BXRC-30C2001-C-7x 70 158 33.2 5.2 1054 997 202 315 34.0 10.7 2041 1922 191 630 34.8 21.9 3902 3512 178 945 35.6 33.7 5601 5236 166 1260 36.1 45.5 7149 6661 157 BXRC-30C2001-D-7x 70 125 29.6 3.7 749 716 203 250 30.3 7.6 1452 1383 191 500 31.8 15.9 2830 2547 178 750 33.2 24.9 3999 3789 161 1000 34.4 34.4 5114 4833 149 BXRC-30E2000-B-7x 80 113 33.2 3.7 725 664 194 225 34.0 7.7 1403 1273 183 450 34.8 15.7 2662 2396 170 675 35.6 24.1 3847 3369 160 900 36.1 32.5 4907 4215 151 BXRC-30E2000-C-7x 80 158 33.2 5.2 1007 952 193 315 34.0 10.7 1949 1836 182 630 34.8 21.9 3727 3354 170 945 35.6 33.7 5349 5001 159 1260 36.1 45.5 6828 6362 150 Notes for Table 5: 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.
Table 5: 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-30E2000-D-7x 80 125 29.6 3.7 716 683 194 250 30.3 7.6 1387 1321 183 500 31.8 15.9 2703 2433 170 750 33.2 24.9 3820 3619 153 1000 34.4 34.4 4884 4615 142 BXRC-30G20H0-B-7x 90 113 33.2 3.7 614 563 164 225 34.0 7.7 1189 1078 155 450 34.8 15.7 2255 2030 144 675 35.6 24.1 3259 2854 135 900 36.1 32.5 4157 3571 128 BXRC-30G20H0-C-7x 90 158 33.2 5.2 853 806 163 315 34.0 10.7 1651 1555 154 630 34.8 21.9 3157 2841 144 945 35.6 33.7 4531 4236 135 1260 36.1 45.5 5783 5389 127 BXRC-30G20H0-D-7x 90 125 29.6 3.7 606 579 164 250 30.3 7.6 1175 1119 155 500 31.8 15.9 2290 2061 144 750 33.2 24.9 3236 3065 130 1000 34.4 34.4 4137 3909 120 BXRC-30G2000-B-7x 90 113 33.2 3.7 589 539 158 225 34.0 7.7 1139 1033 149 450 34.8 15.7 2161 1945 138 675 35.6 24.1 3123 2735 130 900 36.1 32.5 3984 3422 122 BXRC-30G2000-C-7x 90 158 33.2 5.2 817 773 156 315 34.0 10.7 1583 1490 148 630 34.8 21.9 3026 2723 138 945 35.6 33.7 4343 4060 129 1260 36.1 45.5 5542 5164 122 BXRC-30G2000-D-7x 90 125 29.6 3.7 581 555 157 250 30.3 7.6 1126 1072 148 500 31.8 15.9 2194 1975 138 750 33.2 24.9 3101 2937 125 1000 34.4 34.4 3965 3747 115 BXRC-30G200C-B-7x 90 113 33.2 3.7 570 523 153 225 34.0 7.7 1104 1001 144 450 34.8 15.7 2095 1885 134 675 35.6 24.1 3027 2651 126 900 36.1 32.5 3861 3317 119 BXRC-30G200C-D-7x 90 125 29.6 3.7 560 535 152 250 30.3 7.6 1085 1034 143 500 31.8 15.9 2115 1903 133 750 33.2 24.9 2988 2831 120 1000 34.4 34.4 3821 3611 111 Notes for Table 5: 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
Performance at Commonly Used Drive Currents Table 5: 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-30H2000-B-7x 97 113 33.2 3.7 533 489 143 225 34.0 7.7 1032 936 135 450 34.8 15.7 1958 1762 125 675 35.6 24.1 2829 2477 118 900 36.1 32.5 3608 3100 111 BXRC-30H2000-C-7x 97 158 33.2 5.2 740 700 142 315 34.0 10.7 1433 1350 134 630 34.8 21.9 2741 2466 125 945 35.6 33.7 3933 3677 117 1260 36.1 45.5 5020 4678 110 BXRC-30H2000-D-7x 97 125 29.6 3.7 526 502 142 250 30.3 7.6 1020 971 134 500 31.8 15.9 1988 1789 125 750 33.2 24.9 2809 2661 113 1000 34.4 34.4 3591 3394 104 BXRC-30A2001-B-7x 93 113 33.2 3.7 529 485 142 225 34.0 7.7 1024 928 134 450 34.8 15.7 1942 1748 124 675 35.6 24.1 2806 2458 117 900 36.1 32.5 3580 3075 110 BXRC-30A2001-C-7x 93 158 33.2 5.2 735 694 140 315 34.0 10.7 1422 1339 133 630 34.8 21.9 2719 2447 124 945 35.6 33.7 3902 3648 116 1260 36.1 45.5 4980 4640 109 BXRC-30A2001-D-7x 93 125 29.6 3.7 522 498 141 250 30.3 7.6 1012 964 133 500 31.8 15.9 1972 1774 124 750 33.2 24.9 2786 2639 112 1000 34.4 34.4 3562 3367 103 BXRC-35E2000-B-7x 80 113 33.2 3.7 742 680 199 225 34.0 7.7 1436 1303 188 450 34.8 15.7 2725 2452 174 675 35.6 24.1 3938 3449 164 900 36.1 32.5 5023 4315 154 BXRC-35E2000-C-7x 80 158 33.2 5.2 1031 974 197 315 34.0 10.7 1995 1879 186 630 34.8 21.9 3815 3433 174 945 35.6 33.7 5475 5119 163 1260 36.1 45.5 6988 6511 153 BXRC-35E2000-D-7x 80 125 29.6 3.7 732 699 198 250 30.3 7.6 1420 1352 187 500 31.8 15.9 2767 2490 174 750 33.2 24.9 3910 3704 157 1000 34.4 34.4 4999 4724 145 Notes for Table 5: 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 5: 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-35G2000-B-7x 90 113 33.2 3.7 610 559 163 225 34.0 7.7 1180 1071 154 450 34.8 15.7 2239 2015 143 675 35.6 24.1 3236 2834 135 900 36.1 32.5 4128 3546 127 BXRC-35G2000-C-7x 90 158 33.2 5.2 847 801 162 315 34.0 10.7 1640 1544 153 630 34.8 21.9 3135 2822 143 945 35.6 33.7 4500 4207 134 1260 36.1 45.5 5743 5351 126 BXRC-35G2000-D-7x 90 125 29.6 3.7 602 575 163 250 30.3 7.6 1167 1111 154 500 31.8 15.9 2274 2046 143 750 33.2 24.9 3213 3044 129 1000 34.4 34.4 4108 3882 119 BXRC-35A2001-B-7x 93 113 33.2 3.7 563 516 151 225 34.0 7.7 1090 988 142 450 34.8 15.7 2067 1860 132 675 35.6 24.1 2987 2616 124 900 36.1 32.5 3811 3273 117 BXRC-35A2001-C-7x 93 158 33.2 5.2 782 739 149 315 34.0 10.7 1514 1425 141 630 34.8 21.9 2894 2605 132 945 35.6 33.7 4154 3883 123 1260 36.1 45.5 5301 4940 116 BXRC-35A2001-D-7x 93 125 29.6 3.7 556 531 150 250 30.3 7.6 1077 1026 142 500 31.8 15.9 2099 1889 132 750 33.2 24.9 2966 2810 119 1000 34.4 34.4 3792 3584 110 BXRC-40C2001-B-7x 70 113 33.2 3.7 780 715 209 225 34.0 7.7 1511 1370 197 450 34.8 15.7 2866 2579 183 675 35.6 24.1 4141 3627 172 900 36.1 32.5 5283 4538 162 BXRC-40C2001-C-7x 70 158 33.2 5.2 1084 1025 207 315 34.0 10.7 2099 1976 196 630 34.8 21.9 4012 3611 183 945 35.6 33.7 5759 5383 171 1260 36.1 45.5 7350 6848 161 BXRC-40C2001-D-7x 70 125 29.6 3.7 770 736 209 250 30.3 7.6 1493 1422 197 500 31.8 15.9 2910 2619 183 750 33.2 24.9 4112 3895 165 1000 34.4 34.4 5258 4968 153 Notes for Table 5: 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 5: 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-40E2000-B-7x 80 113 33.2 3.7 746 684 200 225 34.0 7.7 1445 1310 189 450 34.8 15.7 2741 2466 175 675 35.6 24.1 3960 3468 165 900 36.1 32.5 5052 4339 155 BXRC-40E2000-C-7x 80 158 33.2 5.2 1037 980 198 315 34.0 10.7 2007 1890 187 630 34.8 21.9 3837 3453 175 945 35.6 33.7 5507 5148 164 1260 36.1 45.5 7028 6549 154 BXRC-40E2000-D-7x 80 125 29.6 3.7 737 703 199 250 30.3 7.6 1428 1360 188 500 31.8 15.9 2783 2504 175 750 33.2 24.9 3932 3725 158 1000 34.4 34.4 5028 4751 146 BXRC-40G2000-B-7x 90 113 33.2 3.7 623 571 167 225 34.0 7.7 1205 1093 158 450 34.8 15.7 2286 2058 146 675 35.6 24.1 3304 2894 137 900 36.1 32.5 4215 3620 130 BXRC-40G2000-C-7x 90 158 33.2 5.2 865 818 165 315 34.0 10.7 1674 1577 156 630 34.8 21.9 3201 2881 146 945 35.6 33.7 4594 4295 136 1260 36.1 45.5 5864 5464 129 BXRC-40G2000-D-7x 90 125 29.6 3.7 615 587 166 250 30.3 7.6 1191 1135 157 500 31.8 15.9 2321 2089 146 750 33.2 24.9 3280 3108 132 1000 34.4 34.4 4195 3964 122 BXRC-40H2000-B-7x 97 113 33.2 3.7 563 516 151 225 34.0 7.7 1090 988 142 450 34.8 15.7 2067 1860 132 675 35.6 24.1 2987 2616 124 900 36.1 32.5 3811 3273 117 BXRC-40H2000-C-7x 97 158 33.2 5.2 782 739 149 315 34.0 10.7 1514 1425 141 630 34.8 21.9 2894 2605 132 945 35.6 33.7 4154 3883 123 1260 36.1 45.5 5301 4940 116 BXRC-40H2000-D-7x 97 125 29.6 3.7 556 531 150 250 30.3 7.6 1077 1026 142 500 31.8 15.9 2099 1889 132 750 33.2 24.9 2966 2810 119 1000 34.4 34.4 3792 3584 110 Notes for Table 5: 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 5: 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-40A2001-B-7x 93 113 33.2 3.7 610 559 163 225 34.0 7.7 1180 1071 154 450 34.8 15.7 2239 2015 143 675 35.6 24.1 3236 2834 135 900 36.1 32.5 4128 3546 127 BXRC-40A2001-C-7x 93 158 33.2 5.2 847 801 162 315 34.0 10.7 1640 1544 153 630 34.8 21.9 3135 2822 143 945 35.6 33.7 4500 4207 134 1260 36.1 45.5 5743 5351 126 BXRC-40A2001-D-7x 93 125 29.6 3.7 602 575 163 250 30.3 7.6 1167 1111 154 500 31.8 15.9 2274 2046 143 750 33.2 24.9 3213 3044 129 1000 34.4 34.4 4108 3882 119 BXRC-50C2001-B-7x 70 113 33.2 3.7 785 719 210 225 34.0 7.7 1519 1378 199 450 34.8 15.7 2881 2593 184 675 35.6 24.1 4164 3647 173 900 36.1 32.5 5312 4562 163 BXRC-50C2001-C-7x 70 158 33.2 5.2 1090 1030 208 315 34.0 10.7 2110 1987 197 630 34.8 21.9 4034 3631 184 945 35.6 33.7 5790 5413 172 1260 36.1 45.5 7390 6886 162 BXRC-50C2001-D-7x 70 125 29.6 3.7 774 740 210 250 30.3 7.6 1501 1430 198 500 31.8 15.9 2926 2633 184 750 33.2 24.9 4134 3917 166 1000 34.4 34.4 5286 4995 154 BXRC-50E2001-B-7x 80 113 33.2 3.7 755 692 202 225 34.0 7.7 1461 1325 191 450 34.8 15.7 2772 2495 177 675 35.6 24.1 4006 3508 167 900 36.1 32.5 5110 4389 157 BXRC-50E2001-C-7x 80 158 33.2 5.2 1048 991 200 315 34.0 10.7 2030 1911 189 630 34.8 21.9 3881 3492 177 945 35.6 33.7 5570 5207 165 1260 36.1 45.5 7109 6624 156 BXRC-50E2001-D-7x 80 125 29.6 3.7 745 711 202 250 30.3 7.6 1444 1375 190 500 31.8 15.9 2814 2533 177 750 33.2 24.9 3977 3768 160 1000 34.4 34.4 5085 4805 148 Notes for Table 5: 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 5: 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-50G2001-B-7x 90 113 33.2 3.7 653 598 175 225 34.0 7.7 1263 1145 165 450 34.8 15.7 2396 2156 153 675 35.6 24.1 3463 3032 144 900 36.1 32.5 4417 3794 136 BXRC-50G2001-C-7x 90 158 33.2 5.2 906 857 173 315 34.0 10.7 1755 1652 164 630 34.8 21.9 3354 3019 153 945 35.6 33.7 4815 4501 143 1260 36.1 45.5 6145 5726 135 BXRC-50G2001-D-7x 90 125 29.6 3.7 644 615 174 250 30.3 7.6 1248 1189 165 500 31.8 15.9 2433 2189 153 750 33.2 24.9 3438 3257 138 1000 34.4 34.4 4396 4154 128 BXRC-57C2001-B-7x 70 113 33.2 3.7 763 700 204 225 34.0 7.7 1478 1340 193 450 34.8 15.7 2803 2523 179 675 35.6 24.1 4051 3548 168 900 36.1 32.5 5167 4438 159 BXRC-57C2001-C-7x 70 158 33.2 5.2 1060 1002 203 315 34.0 10.7 2053 1933 192 630 34.8 21.9 3924 3532 179 945 35.6 33.7 5633 5266 167 1260 36.1 45.5 7189 6698 158 BXRC-57C2001-D-7x 70 125 29.6 3.7 753 720 204 250 30.3 7.6 1460 1391 193 500 31.8 15.9 2846 2561 179 750 33.2 24.9 4022 3810 162 1000 34.4 34.4 5143 4860 149 BXRC-57E2001-B-7x 80 113 33.2 3.7 725 664 194 225 34.0 7.7 1403 1273 183 450 34.8 15.7 2662 2396 170 675 35.6 24.1 3847 3369 160 900 36.1 32.5 4907 4215 151 BXRC-57E2001-C-7x 80 158 33.2 5.2 1007 952 193 315 34.0 10.7 1949 1836 182 630 34.8 21.9 3727 3354 170 945 35.6 33.7 5349 5001 159 1260 36.1 45.5 6828 6362 150 BXRC-57E2001-D-7x 80 125 29.6 3.7 716 683 194 250 30.3 7.6 1387 1321 183 500 31.8 15.9 2703 2433 170 750 33.2 24.9 3820 3619 153 1000 34.4 34.4 4884 4615 142 Notes for Table 5: 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 5: 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-65C2001-B-7x 70 113 33.2 3.7 763 700 204 225 34.0 7.7 1478 1340 193 450 34.8 15.7 2803 2523 179 675 35.6 24.1 4051 3548 168 900 36.1 32.5 5167 4438 159 BXRC-65C2001-C-7x 70 158 33.2 5.2 1060 1002 203 315 34.0 10.7 2053 1933 192 630 34.8 21.9 3924 3532 179 945 35.6 33.7 5633 5266 167 1260 36.1 45.5 7189 6698 158 BXRC-65C2001-D-7x 70 125 29.6 3.7 753 720 204 250 30.3 7.6 1460 1391 193 500 31.8 15.9 2846 2561 179 750 33.2 24.9 4022 3810 162 1000 34.4 34.4 5143 4860 149 BXRC-65E2001-B-7x 80 113 33.2 3.7 734 672 196 225 34.0 7.7 1420 1288 186 450 34.8 15.7 2694 2424 172 675 35.6 24.1 3893 3409 162 900 36.1 32.5 4965 4265 153 BXRC-65E2001-C-7x 80 158 33.2 5.2 1019 963 195 315 34.0 10.7 1972 1857 184 630 34.8 21.9 3771 3394 172 945 35.6 33.7 5412 5060 161 1260 36.1 45.5 6908 6437 152 BXRC-65E2001-D-7x 80 125 29.6 3.7 724 691 196 250 30.3 7.6 1403 1337 185 500 31.8 15.9 2735 2461 172 750 33.2 24.9 3865 3661 155 1000 34.4 34.4 4942 4670 144 Notes for Table 5: 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 6: 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-xxx200x-B-7x BXRC-xxx200x-C-7x BXRC-xxx200x-D-7x Notes for Table 6: 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 7: Eye Safety Risk Group (RG) Classifications Part Number Drive Current 5 (mA) CCT1,5 2700K/3000K 4000K2 5000K3 6500K4 BXRC-xxx200x-B-7x
450 RG1 RG1 RG1 RG1
675 RG1 RG1 RG1 RG2
900 RG1 RG1 RG2 RG2
630 RG1 RG1 RG1 RG1
945 RG1 RG1 RG2 RG2
1260 RG1 RG2 RG2 RG2
500 RG1 RG1 RG1 RG1
750 RG1 RG1 RG1 RG2
1000 RG1 RG1 RG2 RG2
Notes for Table 7: 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. 5. Please contact your Bridgelux sales representative for Ethr values at specific drive currents and CCTs not listed.
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-xxx200x-B-7x BXRC-xxx200x-C-7x BXRC-xxx200x-D-7x Maximum Drive Current3 900mA 1260mA 1000mA Maximum Peak Pulsed Drive Current4 1290mA 1800mA 1430mA Maximum Reverse Voltage5 -60V -60V -55V Notes for Table 8: 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 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.
Figure 20: Drawing for Vero 13 LED Array Notes for Figure 20: 1. Drawings are not to scale. 2. Drawing dimensions are in millimeters. 3. Unless otherwise specified, tolerances are ±0.1mm. 4. Mounting holes (2X) are for M2.5 screws. 5. Bridgelux recommends two tapped holes for mounting screws with 31.4 ± 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 application 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 21: Warm and Neutral White Test Bins in xy Color Space Color Binning Information Bin Code 2700K 3000K1 3500K1 4000K1 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) (0.4578, 0.4101) (0.4338, 0.403) Table 9: 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) (5395K- 5970K) (6200K - 6910K) 73 (3 SDCM) (4835K - 5215K) (5460K- 5891K) (6279K -6811K) Table 10: Cool White xy Bin Coordinates and Associated Typical CCT (product is hot targeted to Tc = 85°C) Notes for Table 9: 1. Color Binning information excludes Décor Series Class A products. Please contact your Bridgelux Sales Representative for more information. 2. Center Point for Decor Series Showcase. 3. Bridgelux maintains a tolerance of +/- 0.007 on x and y color coordinates in the CIE 1931 color Space. Note: Pulsed Test Conditions, Tc = 25°C Note: Pulsed Test Conditions, Tc = 25°C Figure 22: Cool White Test Bins in xy Color Space 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
Note for Tables 10: 1. Bridgelux maintains a tolerance of +/- 0.007 on x and y color coordinates in the CIE 1931 color Space.
Figure 23: Drawing for Vero 13 Packaging Tray 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™ © 2023 Bridgelux, Inc. All rights reserve. Product specifications are subject to change without notice. Bridgelux, the Bridgelux stylized logo design, Vero, V Series and V Series HD 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 13 Array Series Product Data Sheet DS91 Rev. S (08/2023)
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