DS192 BRIDGELUX | Alldatasheet
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Vesta® Series Dim-To-Warm Gen 2 13mm Array Product Data Sheet DS192
Bridgelux arrays are fully engineered devices that provide consistent thermal and optical performance on an engineered mechanical platform. The arrays incorporate several features to simplify design integration and assembly. Please visit www.bridgelux.com for more information on the Vesta Series family of products. Product Nomenclature The part number designation for Bridgelux Vesta Series arrays is explained as follows: Fully engineered substrate for consistent thermal, mechanical and optical properties Yellow phosphor Light Emitting Surface (LES) Designed to comply with global safety standards for creepage and clearance distances Note: Part number and lot codes are scribed on back of array Polarity symbols Solder Pads White ring around LES Case Temperature (Tc) Measurement Point Dimming control component 1 2 3 4 - 5 6 - 7 8 9 10 11 - 12131415 - 16 - 17 18 Product Family CCT Bin Options 3 = 3 SDCM at 2700K and 3000K,
5 SDCM at 1800K
2000 = 13mm LES Minimum CRI G = 90 CRI H = 95 CRI Array Configuration A = 20W Nominal CCT 18 = 1,800K 27 = 2,700K 30 = 3,000K BXRV DR – 1830 G – 2000 – A – 23 Dim-To-Warm Array Product Generation 2 = Gen 2
The following product configurations are available: Table 1: Selection Guide, Measurement Data Part Number Nominal CCT 1 Tc=25°C (K) Minimum CRI 2 Drive Current (mA) Typical Vf Tc=25°C (V) Typical Power Tc=25°C (W) Typical Pulsed Flux 3, 4, 5 Tc=25°C (lm) Typical Efficacy Tc=25°C (lm/W) Minimum Pulsed Flux 6 Tc=25°C (lm) Typical DC Flux 7, 8 Tc=85°C (lm) BXRV-DR-1827G-2000-A-23 2700 90 600 33.5 20.1 2251 112 2026 2026 1800 90 20 26.9 0.5 47 88 42 42 BXRV-DR-1827H-2000-A-23 2700 95 600 33.5 20.1 1990 99 1791 1791 1800 93 20 26.9 0.5 39 73 35 35 BXRV-DR-1830G-2000-A-23 3000 90 600 33.5 20.1 2432 121 2189 2189 1800 90 20 26.9 0.5 56 104 50 50 BXRV-DR-1830H-2000-A-23 3000 95 600 33.5 20.1 2111 105 1899 1899 1800 93 20 26.9 0.5 47 87 42 42 Notes for Table 1: 1. Nominal CCT as defined by ANSI C78.377-2011. 2. Minimum R9 value for 90/90 CRI products is 50. Minimum R9 value for 93/95 CRI products is 85. Bridgelux maintains a ±3 tolerance on all CRI and R9 values. 3. Products tested under pulsed condition (10ms pulse width) at nominal drive current where Tj (junction temperature) = Tc (case temperature) = 25°C. 4. Typical performance values are provided as a reference only and are not a guarantee of performance. 5. Bridgelux maintains a ±7% tolerance on flux measurements. 6. Minimum flux values at the nominal drive current are guaranteed by 100% test. 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 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.
European Product Registry for Energy Labeling Part Number CCT (K) CRI Cur- rent 3 (mA) Volt- age 3 (V) Useful Flux 2 ØΦuseful T c=85C (lm) Power (W) Efficacy (lm/W) Energy Efficiency Class 4 Regis- tration No URL 1 BXRV-DR-1827G-2000-A-23 2700 90 290 30.2 1080 8.8 123 E 879005 https:/ /tinyurl.com/3dcjv3d8 BXRV-DR-1827H-2000-A-23 2700 95 190 29.4 640 5.6 114 F 879015 https:/ /tinyurl.com/45r4kfke BXRV-DR-1830G-2000-A-23 3000 90 490 31.6 1892 15.5 121 E 879019 https:/ /tinyurl.com/ype592x3 BXRV-DR-1830H-2000-A-23 3000 95 240 29.8 847 7.2 118 F 879029 https:/ /tinyurl.com/2h9ckwza Notes for Table 2: 1. The performance data in this table is a subset of the data that was submitted to EPREL for obtaining the energy class listed here. For accessing a complete set of technical documentation of Bridgelux registered products in the EPREL database, please visit one of the hyperlinks listed above. 2. For a definition of useful luminous flux (ØΦuseful), please see the ELR regulations at https:/ /tinyurl.com/4b6zvt4m. 3. 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. 4. EPREL requires a symbol for displaying the energy classification of a product in marketing literature. This symbol consists of a letter stating a product’s energy efficiency class inside a specific arrow logo as defined by EPREL. 5. All products listed here must be disposed as e-waste according to the guidelines in the country in which the product is used. Table 2: Table of products registered in the European Product Registry for Energy Labeling (EPREL) The European Product Registry for Energy Labeling (EPREL) is defined in the EU Regulation 2017/1369 to provide information about a product’s energy efficiency 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 energy 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 2 provides a list of part numbers that are in compliance with EPREL regulations and are currently listed in the EPREL database. 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 ELR regulation. Customers can use these products with full confidence for any projects that fall under the EPREL requirement. A G X
Electrical Characteristics
Table 3: Electrical Characteristics Part Number Drive Current (mA) Forward Voltage Pulsed, Tc = 25ºC 1, 2, 3, 7 Typical Coefficient of Forward Voltage ∆Vf/∆Tc (mV/ºC) Typical Thermal Resistance Junction to Case 4, 5 (ºC/W) Driver Selection Voltages 6 Minimum (V) Typical (V) Maximum (V) Vf Min. Hot Tc = 105ºC (V) Vf Max. Cold Tc = -40ºC (V) BXRV-DR-xxxxx-2000-A-23 Notes for Table 3: 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 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. 6. 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. 7. This product has been designed and manufactured per IEC 62031:2018. This product has passed dielectric withstand voltage testing at 500 V. The working voltage designated for the insulation is 45V d.c. The maximum allowable voltage across the array must be determined in the end product application.
Table 4: Maximum Ratings Parameter Maximum Rating LED Junction Temperature (Tj) 125°C Storage Temperature -40°C to +105°C Operating Case Temperature1 (Tc) 105°C Soldering Temperature2 350°C or lower for a maximum of 10 seconds Maximum Drive Current3 720mA Maximum Peak Pulsed Drive Current4 1030mA Maximum Reverse Voltage5 -60V Notes for Table 4: 1. For IEC 62717 requirement, please contact Bridgelux Sales Support. 2. See Bridgelux Application Note AN101 “Handling and Assembly of LED Arrays” for more information. 3. Please refer to Figure 8 for drive current derating curves. 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 currents 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.
Figure 11: Typical Color Spectrum Note for Figure 11: 1. Color spectra measured at nominal current for Tj = Tc = 25°C. 20% 40% 60% 80% 100% 120% 400 450 500 550 600 650 700 750 800 1800K (20mA) 2700K (600mA or 950mA) 3000K (600mA or 950mA) Relative Spectral Power Distribution (%) Wavelength (nm) (600mA)(600mA) (600mA)
Figure 12: Mechanical Drawing Specification Notes for Figure 12: 1. Solder pads are labeled “+” to denote positive polarity and “-” to denote negative polarity. 2. Drawing is not to scale. 3. Drawing dimensions are in millimeters. 4. Unless otherwise specified, tolerances are ± 0.10mm. 5. The optical center of the LED array is nominally defined by the mechanical center of the array. The light emitting surface (LES) is centered on the mechanical center of the array to a tolerance of ± 0.2 mm 6. Bridgelux maintains a flatness of 0.1 mm across the mounting surface of the array. Refer to Application Notes for product handling, mounting and heat sink recommendations.
x, y, center point a b φ Figure 13: Definition of the McAdam ellipse Notes for Table 5: 1. The x,y center points are the center points of the respective ANSI bins in the CIE 1931 xy Color Space 2. Products are binned at Tc=25°C 3. Bridgelux maintains a tolerance of +/-0.007 on x and y color coordinates in the CIE 1931 Color Space CCT Center Point Bin Size Axis a Axis b Rotation Angle 1800K x=0.5496 y=0.4081 5 SDCM 0.01164 0.00655 40.00º 2700K x=0.4578 y= 0.4101 3 SDCM 0.00810 0.00420 53.70º 3000K x=0.4338 y=0.4030 3 SDCM 0.00834 0.00408 53.22º Table 5: MacAdam ellipse CCT color bin definitions for product operating at Tc = 25ºC
Bridgelux has developed a comprehensive set of application notes and design resources to assist customers in successfully designing with the Vesta Series product family of LED array products. Please see Bridgelux Application Note, AN101 for more information. For a list of resources under development, 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 cos- metic 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: EYE SAFETY Eye safety classification for the use of Bridgelux Vesta Series is in accordance with IEC/TR62778: Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires. Vesta Series Dim-To-Warm arrays are classified as Risk Group 1 when operated at or below the maximum drive current. Please use appropriate precautions. It is important that employees working with LEDs are trained to use them safely. CAUTION: RISK OF BURN Do not touch the Vesta Series LED array during operation. Allow the array to cool for a sufficient period of time before handling. The Vesta Series 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 Vesta Series LED arrays are avail- able in both IGES and STEP formats. Please contact your Bridgelux sales representative for assistance. CAUTION CONTACT WITH LIGHT EMITTING SURFACE (LES) Avoid any contact with the LES and resistors. Do not touch the LES or resistors 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 Vesta Series LED array. Use the mechanical features of the LED array housing and edges to locate and secure optical devices as needed. STANDARD TEST CONDITIONS Unless otherwise stated, array testing is performed at the nominal drive current. LM80 LM80 testing has been completed and the LM80 report is now available. Please contact your Bridgelux sales representative for LM-80 report.
About Bridgelux: Bridging Light and Life™ © 2021 Bridgelux, Inc. All rights reserved 2021. Product specifications are subject to change without notice. Bridgelux, the Bridgelux stylized logo design and Vesta are registered trademarks of Bridgelux, Inc, All other trademarks are the property of their respective owners. Bridgelux Vesta Series Dim-To-Warm 13mm Gen 2 Array Product Data Sheet DS192 Rev. B (08/2021)
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