Bridgelux Gen. 7 Décor Series Class A LED Array
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1 Bridgelux Gen. 7 Décor Series Class A LED Array Product Data Sheet DS95 BXRC-30A A A A10K1 BXRC-35A A A A10K1 BXRC-40A A A A10K1
2 Introduction Vero Bridgelux Décor Series Class A products are a revolutionary advancement in lighting designed to match how humans perceive and prefer light. The Class A specification was created by the Lighting Research Center (LRC) behavior studies in conjunction with Bridgelux and other ASSIST members. Based on human factor response testing, the Décor Series Class A products provide vibrant, natural and brilliant looking light, evoking an emotional attraction and response. The Décor Series Class A products were developed for high-end retail, museum, architectural, premium building and hospitality applications. Bridgelux Décor Series Class A products are available on all Vero form factors. The Vero platform has been engineered with advanced connectivity options and can operate over a broad current range, enabling multiple degrees of flexibility in luminaire design optimization. Features Light quality is based on human perception of color and light High gamma area index (GAI) No harmful UV or near IR light in the spectrum Substantially broader GAI and color spectrum than halogen Radial die pattern enhances optical uniformity Based on Bridgelux Vero COB LED array platform 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 manufacturability
3 Contents Product Feature Map 2 Product Nomenclature 2 Product Selection Guide 3 Performance at Commonly Used Drive Currents 6 Electrical Characteristics 11 Absolute Maximum Ratings 12 Performance Curves 13 Radiation Pattern 19 Mechanical Dimensions 20 Packaging and Labeling 24 Design Resources 27 Precautions 27 Disclaimers 27 About Bridgelux 28 1
4 Product Feature Map In addition to delivering the performance and light quality required for many lighting applications, Décor Series Class A LED arrays incorporate several features to simplify the design integration and manufacturing process, accelerate time to market and reduce system costs. 2D barcode provides full manufacturing traceability Thermally isolated solder pads reduce manufacturing cycle time and complexity Polarity indication marks simplify manufacturing operator instructions Optics location/mounting features Measurement point Mounting holes Zhaga Book 3 compatible mounting locations Radial die configuration improves lumen density and beam control Top side part number marking improves inventory management and outgoing quality control Solderless connector port enables simplified manufacturing processes, reduced inventory carrying costs and can enable field upgradability Optional Molex Pico-EZmate connector harness (sold separately) Product Nomenclature The part number designation for Bridgelux Vero LED Class A arrays is explained as follows: BXRC 30 A 1001 B 7 3 Product Family Nominal CCT 30 = 3,000K 35 = 3,500K 40 = 4,000K Gen. 7 Array Configuration CCT Bin Options 3 = 3 SDCM GAI GAI >80 Nominal Flux lm lm lm 10K1-10,000lm 2
5 Product Selection Guide The following product configurations are available: Table 1: Selection Guide, Pulsed Measurement Data (T j = = 25 C) Product Part Number Nominal CCT 1 (K) GAI 2 CRI 3 Nominal Drive Current 4 (ma) Pulsed Flux 5,6,7 Minimum Pulsed Flux 7,8 V f (V) Power (W) Efficacy (lm/w) Vero 10 BXRC-30A1001-B Vero 10 BXRC-30A1001-C Vero 10 BXRC-30A1001-D Vero 10 BXRC-35A1001-B Vero 10 BXRC-35A1001-C Vero 10 BXRC-35A1001-D Vero 10 BXRC-40A1001-B Vero 10 BXRC-40A1001-C Vero 10 BXRC-40A1001-D Vero 13 BXRC-30A2001-B Vero 13 BXRC-30A2001-C Vero 13 BXRC-30A2001-D Vero 13 BXRC-35A2001-B Vero 13 BXRC-35A2001-C Vero 13 BXRC-35A2001-D Vero 13 BXRC-40A2001-B Vero 13 BXRC-40A2001-C Vero 13 BXRC-40A2001-D Vero 18 BXRC-30A4001-B Vero 18 BXRC-30A4001-C Vero 18 BXRC-30A4001-D Vero 18 BXRC-35A4001-B Vero 18 BXRC-35A4001-C Vero 18 BXRC-35A4001-D Vero 18 BXRC-40A4001-B Vero 18 BXRC-40A4001-C Vero 18 BXRC-40A4001-D Vero 29 BXRC-30A10K1-B Vero 29 BXRC-30A10K1-C Vero 29 BXRC-30A10K1-D Vero 29 BXRC-35A10K1-B Vero 29 BXRC-35A10K1-C Vero 29 BXRC-35A10K1-D Vero 29 BXRC-40A10K1-B Vero 29 BXRC-40A10K1-C Vero 29 BXRC-40A10K1-D Notes for Table 1: 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. Products tested under pulsed condition (10ms pulse width) at nominal test current where T j (junction temperature) = (case temperature) = 25 C. 6. performance values are provided as a reference only and are not a guarantee of performance. 7. Bridgelux maintains a ±7% tolerance on flux measurements. 8. Minimum flux values at the nominal test current are guaranteed by test. 3
6 Product Selection Guide The following product configurations are available: Table 2: Selection Guide, Stabilized DC Performance ( = 70 C) 7,8 Product Part Number Nominal CCT 1 (K) GAI 2 CRI 3 Nominal Drive Current 4 (ma) DC Flux 5,6 = 70ºC Minimum DC Flux 6,9 = 70ºC V f (V) Power (W) Efficacy (lm/w) Vero 10 BXRC-30A1001-B Vero 10 BXRC-30A1001-C Vero 10 BXRC-30A1001-D Vero 10 BXRC-35A1001-B Vero 10 BXRC-35A1001-C Vero 10 BXRC-35A1001-D Vero 10 BXRC-40A1001-B Vero 10 BXRC-40A1001-C Vero 10 BXRC-40A1001-D Vero 13 BXRC-30A2001-B Vero 13 BXRC-30A2001-C Vero 13 BXRC-30A2001-D Vero 13 BXRC-35A2001-B Vero 13 BXRC-35A2001-C Vero 13 BXRC-35A2001-D Vero 13 BXRC-40A2001-B Vero 13 BXRC-40A2001-C Vero 13 BXRC-40A2001-D Vero 18 BXRC-30A4001-B Vero 18 BXRC-30A4001-C Vero 18 BXRC-30A4001-D Vero 18 BXRC-35A4001-B Vero 18 BXRC-35A4001-C Vero 18 BXRC-35A4001-D Vero 18 BXRC-40A4001-B Vero 18 BXRC-40A4001-C Vero 18 BXRC-40A4001-D Vero 29 BXRC-30A10K1-B Vero 29 BXRC-30A10K1-C Vero 29 BXRC-30A10K1-D Vero 29 BXRC-35A10K1-B Vero 29 BXRC-35A10K1-C Vero 29 BXRC-35A10K1-D Vero 29 BXRC-40A10K1-B Vero 29 BXRC-40A10K1-C Vero 29 BXRC-40A10K1-D 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. 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. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 8. 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 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. 4
7 Product Selection Guide The following product configurations are available: Table 3: Selection Guide, Stabilized DC Performance ( = 85 C) 7,8 Product Notes for Table 3: 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. Part Number 4. Drive current is referred to as nominal drive current. Nominal CCT 1 (K) 5. performance values are provided as a reference only and are not a guarantee of performance. 6. Bridgelux maintains a ±7% tolerance on flux measurements. GAI 2 CRI 3 Nominal Drive Current 4 (ma) DC Flux 5,6 = 85ºC Minimum DC Flux 6,9 = 85ºC 7. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 8. 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 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. 5 V f (V) Power (W) Vero 10 BXRC-30A1001-B Vero 10 BXRC-30A1001-C Vero 10 BXRC-30A1001-D Vero 10 BXRC-35A1001-B Vero 10 BXRC-35A1001-C Vero 10 BXRC-35A1001-D Vero 10 BXRC-40A1001-B Vero 10 BXRC-40A1001-C Vero 10 BXRC-40A1001-D Vero 13 BXRC-30A2001-B Vero 13 BXRC-30A2001-C Vero 13 BXRC-30A2001-D Vero 13 BXRC-35A2001-B Vero 13 BXRC-35A2001-C Vero 13 BXRC-35A2001-D Vero 13 BXRC-40A2001-B Vero 13 BXRC-40A2001-C Vero 13 BXRC-40A2001-D Vero 18 BXRC-30A4001-B Vero 18 BXRC-30A4001-C Vero 18 BXRC-30A4001-D Vero 18 BXRC-35A4001-B Vero 18 BXRC-35A4001-C Vero 18 BXRC-35A4001-D Vero 18 BXRC-40A4001-B Vero 18 BXRC-40A4001-C Vero 18 BXRC-40A4001-D Vero 29 BXRC-30A10K1-B Vero 29 BXRC-30A10K1-C Vero 29 BXRC-30A10K1-D Vero 29 BXRC-35A10K1-B Vero 29 BXRC-35A10K1-C Vero 29 BXRC-35A10K1-D Vero 29 BXRC-40A10K1-B Vero 29 BXRC-40A10K1-C Vero 29 BXRC-40A10K1-D Efficacy (lm/w)
8 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 Figure 1-12 and the flux vs. current characteristics shown in Figures The performance at commonly used drive currents is summarized in Table 4. Table 4: Product Performance at Commonly Used Drive Currents Product Part Number GAI CRI Décor Class A Vero 10 Décor Class A Vero 10 Décor Class A Vero 10 Décor Class A Vero 10 Décor Class A Vero 10 Décor Class A Vero 10 Notes for Table 4: BXRC-30A1001-B BXRC-30A1001-C BXRC-30A1001-D BXRC-35A1001-B BXRC-35A1001-C BXRC-35A1001-D Drive Current 1 (ma) V f (V) Power (W) Flux 2 DC Flux 3 = 85ºC Efficacy (lm/w) Alternate drive currents in Table 4 are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a ± 7% tolerance on flux measurements. 3. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 6
9 Performance at Commonly Used Drive Currents Table 4: Product Performance at Commonly Used Drive Currents (Continued) Product Part Number GAI CRI Vero 10 Vero 10 Vero 10 Vero 13 Vero 13 Vero 13 Vero 13 Vero 13 Vero 13 BXRC-40A1001-B BXRC-40A1001-C BXRC-40A1001-D BXRC-30A2001-B BXRC-30A2001-C BXRC-30A2001-D BXRC-35A2001-B BXRC-35A2001-C BXRC-35A2001-D Drive Current 1 (ma) V f (V) Power (W) Flux 2 DC Flux 3 = 85ºC Efficacy (lm/w) Notes for Table 4: 1. Alternate drive currents in Table 4 are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a ± 7% tolerance on flux measurements. 3. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 7
10 Performance at Commonly Used Drive Currents Table 4: Product Performance at Commonly Used Drive Currents (Continued) Product Part Number GAI CRI Vero 13 Vero 13 Vero 13 Vero 18 Vero 18 Vero 18 Vero 18 Vero 18 Vero 18 BXRC-40A2001-B BXRC-40A2001-C BXRC-40A2001-D BXRC-30A4001-B BXRC-30A4001-C BXRC-30A4001-D BXRC-35A4001-B BXRC-35A4001-C BXRC-35A4001-D Drive Current 1 (ma) V f (V) Power (W) Flux 2 DC Flux 3 = 85ºC Efficacy (lm/w) Notes for Table 4: 1. Alternate drive currents in Table 4 are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a ± 7% tolerance on flux measurements. 3. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 8
11 Performance at Commonly Used Drive Currents Table 4: Product Performance at Commonly Used Drive Currents (Continued) Product Part Number GAI CRI Vero 18 Vero 18 Vero 18 Vero 29 Vero 29 Vero 29 Vero 29 Vero 29 Vero 29 BXRC-40A4001-B BXRC-40A4001-C BXRC-40A4001-D BXRC-30A10K1-B BXRC-30A10K1-C BXRC-30A10K1-D BXRC-35A10K1-B BXRC-35A10K1-C BXRC-35A10K1-D Drive Current 1 (ma) V f (V) Power (W) Flux 2 DC Flux 3 = 85ºC Efficacy (lm/w) Notes for Table 4: 1. Alternate drive currents in Table 4 are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a ± 7% tolerance on flux measurements. 3. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 9
12 Performance at Commonly Used Drive Currents Table 4: Product Performance at Commonly Used Drive Currents (Continued) Product Part Number GAI CRI Vero 29 Vero 29 Vero 29 BXRC-40A10K1-B BXRC-40A10K1-C BXRC-40A10K1-D Drive Current 1 (ma) V f (V) Power (W) Flux 2 DC Flux 3 = 85ºC Efficacy (lm/w) Notes for Table 4: 1. Alternate drive currents in Table 4 are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a ± 7% tolerance on flux measurements. 3. stabilized DC performance values are provided as reference only and are not a guarantee of performance. 10
13 Electrical Characteristics Table 5: Electrical Characteristics Part Number Nominal Drive Current 1 (ma) Forward Voltage 1, 2,3, 8 Pulsed, (V) Minimum Maximum Coefficient of Forward Voltage 4 V f / T C (mv/ºc) Thermal Resistance Junction to Case 5,6 R j-c (C/W) Driver Selection Voltages 7 (V) V f Min. Hot = 105ºC (V) V f Max. Cold 4 = -40ºC (V) BXRC-xxx100x-B-7x BXRC-xxx100x-C-7x BXRC-xxx100x-D-7x BXRC-xxx200x-B-7x BXRC-xxx200x-C-7x BXRC-xxx200x-D-7x BXRC-xxx400x-B-7x BXRC-xxx400x-C-7x BXRC-xxx400x-D-7x BXRC-xxx10Kx-B-7x BXRC-xxx10Kx-C-7x BXRC-xxx10Kx-D-7x Notes for Table 5: 1. Parts are tested in pulsed conditions, = 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 ± O.10V on forward voltage measurements. 4. coefficient of forward voltage tolerance is ± O.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. V f 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 62031:2014. This product has passed dielectric withstand voltage testing at 1120 V. The working voltage designated for the insulation is 60V d.c. The maximum allowable voltage across the array must be determined in the end product application. 11
14 Absolute Maximum Ratings Table 6: Maximum Ratings Parameter Maximum Rating LED Junction Temperature 125 C Storage Temperature -40 C to +105 C Operating Case Temperature C Soldering Temperature C or lower for a maximum of 10 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 771mA 1029mA 1000mA Maximum Reverse Voltage 5-60V -60V -45V BXRC-xxx200x-B-7x BXRC-xxx200x-C-7x BXRC-xxx200x-D-7x Maximum Drive Current 3 900mA 1260mA 1000mA Maximum Peak Pulsed Drive Current mA 1800mA 1429mA Maximum Reverse Voltage 5-60V -60V -55V BXRC-xxx400x-B-7x BXRC-xxx400x-C-7x BXRC-xxx400x-D-7x Maximum Drive Current mA 2340mA 2100mA Maximum Peak Pulsed Drive Current mA 3343mA 3000mA Maximum Reverse Voltage 5-60V -60V -50V BXRC-xxx10Kx-B-7x BXRC-xxx10Kx-C-7x BXRC-xxx10Kx-D-7x Maximum Drive Current mA 3420mA 4200mA Maximum Peak Pulsed Drive Current mA 4886mA 6000mA Maximum Reverse Voltage 5-90V -120V -65V Notes for Table 6: 1. For IEC requirement, please contact Bridgelux Sales Support. 2. Refer to Bridgelux Application Note AN31, Handling and Assembly of Bridgelux Vero LED arrays, for more information. 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 20ms when operating LED Arrays at the maximum peak pulsed current specified. Maximum peak pulsed current indicate values where the LED array 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. 12
15 Performance Curves Figure 1: Vero 10B Drive Current vs. Forward Voltage (T j = =25 C) Figure 2: Vero 10C Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) Figure 3: Vero 10D Drive Current vs. Forward Voltage (T j = =25 C) Figure 4: Vero 13B Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) Figure 5: Vero 13C Drive Current vs. Forward Voltage (T j = =25 C) Figure 6: Vero 13D Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) 13
16 Performance Curves Figure 7: Vero 18B Drive Current vs. Forward Voltage (T j = =25 C) Figure 8: Vero 18C Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) Figure 9: Vero 18D Drive Current vs. Forward Voltage (T j = =25 C) Figure 10: Vero 29B Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) Figure 11: Vero 29C Drive Current vs. Forward Voltage (T j = =25 C) Figure 12: Vero 29D Drive Current vs. Forward Voltage (T j = =25 C) Forward Voltage (V) Forward Voltage (V) 14
17 Performance Curves Figure 13: Vero 10B vs. Drive Current Figure 14: Vero 10C vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0% Figure 15: Vero 10D vs. Drive Current Figure 16: Vero 13B vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0% Figure 17: Vero 13C vs. Drive Current Figure 18: Vero 13D vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0%
18 Performance Curves Figure 19: Vero 18B vs. Drive Current Figure 20: Vero 18C vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0% Figure 21: Vero 18D vs. Drive Current Figure 22: Vero 29B vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0% Figure 23: Vero 29C vs. Drive Current Figure 24: Vero 29C vs. Drive Current 200% 180% 160% 200% 180% 160% 140% 120% 80% 60% 40% 20% 0% % 120% 80% 60% 40% 20% 0%
19 Performance Curves Figure 25: Vero 10 DC Flux vs. Case Temperature 1 Figure 26: Vero 13 DC Flux vs. Case Temperature 1 103% 97% 94% 91% 88% Warm White Neutral White Cool White 25 C Pulsed 103% 97% 94% 91% 88% Warm White Neutral White Cool White 25 C Pulsed 85% 85% 82% Case Temperature ( C) 82% Case Temperature ( C) Figure 27: Vero 18 DC Flux vs. Case Temperature 1 Figure 28: Vero 29 DC Flux vs. Case Temperature 1 103% 97% 94% 91% 88% Warm White Neutral White Cool White 25 C Pulsed 103% 97% 94% 91% 88% Warm White Neutral White Cool White 25 C Pulsed 85% 85% 82% Case Temperature ( C) 82% Case Temperature ( C) Note for Figures 25-28: 1. Flux measurements taken under DC conditions. 2. Characteristics shown for warm white based on 3000K and 80 CRI. 3. Characteristics shown for neutral white based on 4000K and 80 CRI. 4. Characteristics shown for cool white based on 5000K and 70 CRI. 5. For other color SKUs, the shift in color will vary. Please contact your Bridgelux Sales Representative for more information. 17
20 Performance Curves Figure 29: 3000K Class A Color Shift vs. Case Temperature 1 Figure 30: 3500K Class A Color Shift vs. Case Temperature 1 ccy C 70 C 25 C 45 C Pulsed Center Point Color, =25 C C ccx 15 C ccy C 85 C 70 C 45 C 25 C 15 C Pulsed Center Point Color, =25 C ccx Figure 31: 4000K Class A Color Shift vs. Case Temperature C 15 C Pulsed Center Point Color, =25 C C ccy C C C ccx Note for Figures 29-31: 1. Measurements made under DC test conditions at the nominal drive current. 2. color shift is shown with a tolerance of ±
21 Radiation Pattern Figure 32: Spatial Radiation Pattern Notes for Figure 32: 1. viewing angle is 120 ⁰. 2. The viewing angle is defined as the off axis angle from the centerline where Iv is ½ of the peak value. Figure 33: Polar Radiation Pattern 19
22 Mechanical Dimensions Figure 34: Drawing for Vero 10 LED Array Notes for Figure 34: 1. Drawings are not to scale. 2. Drawing dimensions are in millimeters. 3. Unless otherwise specified, tolerances are ±0.01mm. 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 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. 20
23 Mechanical Dimensions Figure 35: Drawing for Vero 13 LED Array Notes for Figure 35: 1. Drawings are not to scale. 2. Drawing dimensions are in millimeters. 3. Unless otherwise specified, tolerances are ±0.01mm. 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. 21
24 Mechanical Dimensions Figure 36: Drawing for Vero 18 LED Array Notes for Figure 36: 1. Drawings are not to scale. 2. Drawing dimensions are in millimeters. 3. Unless otherwise specified, tolerances are ±0.01mm. 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. 22
25 Mechanical Dimensions Figure 37: Drawing for Vero 29 LED Array Notes for Figure 37: 1. Drawings are not to scale. 2. Drawing dimensions are in millimeters. 3. Unless otherwise specified, tolerances are ±0.01mm. 4. Mounting holes (2X) are for M3 screws. 5. Bridgelux recommends two tapped holes for mounting screws with 43.0 ± 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 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. 23
26 Packaging and Labeling Figure 38: Drawing for Vero 10 Packaging Tray Notes for Figure 38: 1. Dimensions are in millimeters. 2. Drawing is not to scale. Figure 39: Drawing for Vero 13 Packaging Tray Notes for Figure 39: 1. Dimensions are in millimeters. 2. Drawing is not to scale. 24
27 Packaging Labeling Figure 40: Drawing for Vero 18 Packaging Tray Notes for Figure 40: 1. Dimensions are in millimeters. 2. Drawing is not to scale. Figure 41: Drawing for Vero 29 Packaging Tray Notes for Figure 41: 1. Dimensions are in millimeters. 2. Drawing is not to scale. 25
28 Packaging and Labeling Figure 42: Vero Series Packaging and Labeling Notes for Figure 42: 1. Each tray holds for Vero 10: 200 COBs, Vero 13: 100 COBs, Vero 18: 100 COBs, Vero 29: 50 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 43: Product Labeling Bridgelux COB arrays have laser markings on the back side of the substrate to help with product identification. In addition to the product identification 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 Internal Bridgelux use only. 26
29 Design Resources 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 Optical Source Models Optical source models and ray set files are available for all Bridgelux products. For a list of available formats, visit Precautions 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 is on going. Please contact your Bridgelux sales representative for more information. 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: EYE SAFETY Eye safety classification for the use of Bridgelux Vero Series LED arrays is in accordance with specification IEC/TR 62778: Application of IEC for the assessment of blue light hazard to light sources and luminaires. Vero Series LED arrays are classified as Risk Group 2 (Moderate Risk) when operated at or below 2.5 times the nominal drive current. The Ethr value is lux per IEC/TR Please use appropriate precautions. Under many operating conditions the Vero Series LED arrays are classified as Risk Group 1, for more information please contact your Bridgelux sales representative. It is important that employees working with LEDs are trained to use them safely. Disclaimers 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. 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. 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. STANDARD TEST CONDITIONS Unless otherwise stated, array testing is performed at the nominal drive current. 27
30 About Bridgelux: We Build Light That Transforms 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 WeChat ID: BridgeluxInChina 101 Portola Avenue Livermore, CA Tel (925) Fax (925) Bridgelux, Inc. All rights reserved Product specifications 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 Decor Series Class A Product Data Sheet DS95 Rev A (07/2016) 28
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