CBT-90 LEDs. CBT-90 Product Datasheet. Features: Table of Contents. Applications. Technology Overview...2

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1 CBT-9 LEDs Table of Contents Technology Overview...2 Test Specifications...2 White Binning Structure...3 White Chromaticity Bins...4 Green, Blue Binning Structure...5 Product Shipping & Labeling Information...6 White Electrical Characteristics...7 Features: Extremely high optical output: Over 2,25 White Lumens Over 1,8 Green lumens Over 65 Blue Lumens High thermal conductivity package - junction to case thermal resistance of only.8 C/W CBT-9-W available in 57K and 65K Color points (typ) Large, monolithic chip with uniform emitting area of 9 mm 2 Unencapsulated die with low profile protective window optimizes optical coupling in etendue-limited applications Lumen maintenance of greater than 7% after 6, hours Environmentally friendly: RoHS and Halogen compliant White Optical and Electrical Characteristics...8 Green/Blue Optical and Electrical Characteristics...9 Green/Blue Lifetime and Lumen Maintenance Radiation Patterns Thermal Resistance Mechanical Dimensions.. 16 Ordering Information Applications Fiber-coupled Illumination Architectural and Entertainment Lighting Medical Lighting Machine Vision Microscopy Displays and Signage General Illumination Spot Lighting Emergency Vehicle Lighting Projection Systems 1

2 Technology Overview Luminus LEDs benefit from a suite of innovations in the fields of chip technology, packaging and thermal management. These breakthroughs allow illumination engineers and designers to achieve solutions that are high brightness and high efficiency. LED Technology Luminus LED technology enables large area LED chips with uniform brightness over the entire LED chip surface. The optical power and brightness produced by these large monolithic chips enable solutions which replace arc and halogen lamps where arrays of traditional high power LEDs cannot. Packaging Technology Thermal management is critical in high power LED applications. With a thermal resistance from junction to case of.8º C/W, Luminus CBT-9 LEDs have the lowest thermal resistance of any LED on the market. This allows the LED to be driven at higher current densities while maintaining a low junction temperature, thereby resulting in brighter solutions and longer lifetimes. Reliability Luminus LEDs are one of the most reliable light sources in the world today. LEDs have passed a rigorous suite of environmental and mechanical stress tests, including mechanical shock, vibration, temperature cycling and humidity, and have been fully qualified for use in extreme high power and high current applications. With very low failure rates and median lifetimes that typically exceed 6, hours, Luminus LEDs are ready for even the most demanding applications. (Refer to Luminus Reliability application note for more information.) Environmental Benefits Luminus LEDs help reduce power consumption and the amount of hazardous waste entering the environment. All LED products manufactured by Luminus are RoHS and REACH compliant and free of hazardous materials, including lead and mercury. Luminus LED Test Specifications Every Luminus LED is fully tested to ensure that it meets the high quality standards expected from Luminus products. Testing Temperature Luminus core board products are measured in an equivalent way the devices will operate in a system. The device is mounted on a 4ºC heat sink and allowed to reach thermal equilibrium under full power. The measurement is taken after equilibrium is reached. This method of measurement ensures that Luminus LEDs perform in the field just as they are specified. Specification Measurement Condition (9A,13.5 A) The tables on the following pages provide typical optical and electrical characteristics measured at 9A for white, 13.5A for Green and Blue. The associated junction temperature is T J = 7 ºC for white and T J = 75 º - 9 º C for GB. The CBT-9 can be operated over a wide range of current drive conditions from 2mA to 18A and duty cycle from <1% to 1%). 2

3 CBT-9 White Binning Structure CBT-9 white LEDs are tested for luminous flux and chromaticity at a drive current of 9. A (1. A/mm 2 ) and placed into one of the following luminous flux (FF) and chromaticity (WW) bins: Color W57S (57K) and W65S (65K) 65K, Standard CRI (typ. 7) Flux Bins ( At Test Condition 1 ) Flux Bin (FF) Minimum Flux (lm) at 9.A Maximum Flux (lm) at 9.A MA 1,38 1,485 MB 1,485 1,59 NA 1,59 1,71 NB 1,71 1,83 PA 1,83 1,966 PB 1,966 2,1 QA QB Note 1: W57H 57K, High CRI (typ. 92) MB Luminus maintains a +/- 6% tolerance on flux measurements and a +/- 2% tolerance on CRI measurements. Chromaticity Bins 2 Luminus Standard Chromaticity Bins: 1931 CIE Curve KA 1,8 1,12 KB 1,12 1,2 LA 1,2 1,29 LB 1,29 1,38 MA EH J4 BB Locus EF G4 H4 J3 CIEy.33 F4 G3 H3 DJ DE F3 DG.35 DF CIEx 3

4 CBT-9 White Chromaticity Bins The following tables describe the four chromaticity points that bound each chromaticity bin. Chromaticity bins are grouped together based on the color temperature. Bin Code (WW) DG F3* F4* G3* G4* EF DE DF 65K Chromaticity Bins CIEx CIEy Bin Code (WW) DJ H3* H4* J3* J4* EH 57K Chromaticity Bins CIEx CIEy *Sub-bins within ANSI defined quadrangles per ANSI C

5 (Part CBT-9 #) Product Datasheet CBT-9 Green/Blue Bin Structure CBT-9 G/B : Not recommended for new designs. Please consider CBT-9 TE version instead as documented in PDS-2547 datasheet All CBT-9 monochromatic LEDs are tested for luminous flux/ dominant wavelength and placed into one of the following flux/ wave length bins. The binning structure is universally applied across each monochromatic color of the CBT-9 product line. Consult the local sales person for the available flux/ wavelength bins for the product: Flux Bins (At Test Condition*) Color Luminous Flux Bin (FF) Minumum Flux 13.5A Maximum Flux 13.5A Green Blue CK 1,5 2, CM 2, 2,3 DJ DK DM Dominant Wavelength Bins Color Wavelength Bin (FF) Minumum 13.5A Maximum 13.5A Green Blue *Note: Luminus maintains a +/- 6% tolerance on flux measurements. G G G G B B B B

6 Product Shipping & Labeling Information All CBT-9 products are packaged and labeled with their respective bin as outlined in the tables and charts on pages 3, 4. & 5. When shipped, each package will only contain one bin. The part number designation is as follows: CBT-9 White CBT 9 WNNX C11 FF WW Product Family Chip Area Color Package Configuration Flux Bin Chromaticity Bin CBT: Chip on Board (window) 9: 9. mm 2 CCT & CRI See Note 1 below Internal Code See page 3 for bins See page 4 for bins Note 1: WNNX nomenclature corresponds to the following: W = White NN = color temperature, where: 57 corresponds to 57K 65 corresponds to 65K X = color rendering index, where: S (standard) corresponds to a typical CRI of 7 H (High) corresponds to a typical CRI of 92 Example 1: The part label CBT-9-W65S-C11-NA-G4 refers to a 65K standard CRI white, CBT-9 emitter, with a flux range from 1,59 to 1,71 lumens and a CBT-9 Green/Blue 2 CBT-9 G/B : Not recommended for new designs. Please consider CBT-9 TE version instead as documented in PDS-2547 datasheet CBT 9 X C11 FF WW Product Family Chip Area Color Package Configuration Flux Bin Wavelength Bin CBT: Chip on Board (window) 9: 9. mm 2 G: Green B: Blue Internal Code See page 5 for bins See page 5 for bins Note 2: X nomenclature corresponds to the following: G = Green B = Blue Example 2: The part number CBT-9-B-C11-DK-B6 refers to a blue, CBT-9 module, with a flux range 35-4 lumens and a wavelength range 46 nm to 465 nm. 6

7 CBT-9 White Electrical Characteristics 1 Optical and Electrical Characteristics Drive Condition 2 9. A Continuous Parameter Symbol Values at Test Currents Unit Current Density j 1. A/mm 2 V F, min 2.9 V Forward Voltage V F, typ 3.3 V V F, max 3.8 V Common Characteristics Parameter Symbol Values Unit Emitting Area 9. mm 2 Emitting Area Dimensions 3 x 3 mm mm Color Temperature 3 (typ) CCT 5,7/6,5 K Color Rendering Index 4 (Typical) R a 72 Forward Voltage Temperature Coefficient mv/ºc Absolute Maximum Ratings Parameter Symbol Values Unit Absolute Minimum Operating Current.2 A Maximum Current 6 18 A Maximum Junction Temperature 7 T j-max 15 ºC Storage Temperature Range -4/+1 ºC Note 1: Note 2: All measured values are with a constant heat sink temperature T heat sinks = 4ºC. CBT-9 white devices can be driven at currents ranging from 1A to 18A and at duty cycles ranging from 1% to 1%. Drive current and duty cycle should be adjusted as necessary to maintain the junction temperature desired to meet application lifetime requirements. In pulsed operation, rise time from 1-9% of forward current should be larger than.5 microseconds Note 3: CCT value based off of CIE measurement. CIE measurement uncertainty for white devices is estimated to be +/-.1. Note 4: Color Rendering Index (CRI) is measured to within + or - 2. Note 5: Note 6: Forward voltage temperature coefficient at current density of 1. A/mm 2. Contact Luminus for value at other drive conditions. CBT-9 White LEDs are designed for operation to an absolute maximum forward drive current density of 2. A/mm 2. Product lifetime data is specified at recommended forward drive currents. Note 7: Lifetime dependent on LED junction temperature. Input power and thermal system must be properly managed to ensure lifetime. See charts on pg 8 for further information. Note 8: Special design considerations must be observed for operation under 1 A. Please contact Luminus for further information. 7

8 Relative Output Flux vs. Forward Current CBT-9 White Optical & Electrical Characteristics Forward Current vs. Forward Voltage 18 Relative Luminous Flux Current (A) Current (A) Forward Voltage (V) Mean Lifetime 1 Lumen Maintenance vs. Time Device Junction Temperature ( C) Lumen Maintenance (%) L Median Lifetime Extrapolation (Hours) Time (hours) Typical Spectrum 3 Current Derating Curve Relative Spectral Power Distribution LED Drive Current (A) Rth j-a = 1.22 C/W Rth j-a = 1.5 C/W Rth j-a = 1.75 C/W Rth j-a = 2. C/W Wavelength (nm) Ambient Temperature (C) Note 1: Note 2: Note 3: 8 Mean expected lifetime in dependence of junction temperature at 1. A/mm 2 in continuous operation. Lifetime defined as time to 7% of initial intensity. Based on lifetime test data. Data can be used to model failure rate over typical product lifetime (contact Luminus for lifetime reliability test data for 1A/mm 2 condition). Lumen maintenance in dependence of time at 1. A/mm 2 in continuous operation with junction temperatures of 13 ºC. Typical spectrum at current density of 1. A/mm 2 in continuous operation.

9 Drive Condition (1,2) Green 13.5 A Continuous Parameter Symbol Values 4 Unit Current Density J 1.5 A/mm 2 Forward Voltage CBT-9 Green/Blue Optical & Electrical Characteristics CBT-9 G/B : Not recommended for new designs. Please consider CBT-9 TE version instead as documented in PDS-2547 datasheet V F min 3.2 V V f 4.2 V V F max 5.2 V Luminous Flux 3 Φ V 2,15 lm Radiometric Flux Φ r 4.2 W Luminous Efficacy η 38 lm/w Dominant Wavelength 4 λ d 53 nm Peak Wavelength λ p 523 nm FWHM Δλ 1/2 36 nm Chromaticity x Coordinates 5 y.7 - Relative Output Flux vs. Forward Current 1 Forward Current vs. Forward Voltage Relative Luminous Flux I F (A) Current (A) V F (V) Notes: See page 12 9

10 CBT-9 Green/Blue Optical & Electrical Characteristics Drive Condition (1,2) Blue 13.5 A Continuous Parameter Symbol Values 4 Unit Current Density J 1.5 A/mm 2 Forward Voltage V F min 2.8 V V f 3.4 V V F max 4. V Luminous Flux 3 Φ V typ 425 lm Radiometric Flux Φ r 9.5 W Luminous Efficacy η 1 lm/w Dominant Wavelength 4 λ d 46 nm Peak Wavelength λ p 455 nm FWHM Δλ 1/2 2 nm Chromaticity x Coordinates 5 y.38 - Relative Output Flux vs. Forward Current 1 Forward Current vs. Forward Voltage Relative Luminous Flux I F (A) Current (A) V F (V) Notes: See page 12 1

11 CBT-9 Green/Blue Reference Optical & Electrical Characteristics Common Characteristics Symbol Green Blue Unit Emitting Area mm 2 Emitting Area Dimensions 3.x3. 3.x3. mmxmm Thermal Coefficient of Photometric Flux %/ ºC Thermal Coefficient of Radiometric Flux %/ ºC Thermal Coefficient of Junction Voltage mv/ ºC Symbol Green Blue Unit Absolute Minimum Operating Current.2.2 A Maximum Current A Maximum Junction Temperature 7,8 T jmax ºC Storage Temperature Range -4/+1-4/+1 ºC Note 1: All ratings are based on operation with a constant T heat sink = 4 ºC. Note 2: Note 3: Note 4: Note 5: Note 6: Note 7: CBT-9 RGB devices can be driven at currents ranging from 2mA to 18 A and at duty cycles ranging from 1% to 1%. Drive current and duty cycle should be adjusted as necessary to maintain the junction temperature desired to meet application lifetime requirements. Total flux from emitting area at listed dominant wavelength. Minimum and Maximum Dominant Wavelengths are based on typical values +/- 5nm for Red, +/- 8nm for Green and +/- 6nm for Blue. For reference only. Forward voltage temperature coefficient at current density of 1. A/mm 2. Contact Luminus for value at other drive conditions. CBT-9 G,B LEDs are designed for operation to an absolute maximum current as specified above. Product lifetime data is specified at recommended forward drive currents. Sustained operation at or beyond absolute maximum currents will result in a reduction of device lifetime compared to recommended forward drive currents. Actual device lifetimes will also depend on junction temperature. Refer to the lifetime derating curves for further information. In pulsed operation, rise time from 1-9% of forward current should be larger than.5 microseconds. Note 8: Lifetime dependent on LED junction temperature. Input power and thermal system must be properly managed to ensure lifetime. See charts on pg 13 for further information. Note 9: Note 1: Special design considerations must be observed for operation under 1 A. Please contact Luminus for further information. Caution must be taken not to stare at the light emitted from these LEDs. Under special circumstances, the high intensity could damage the eye. 11

12 CBT-9 Green/Blue Lifetime and Lumen Maintenance Light Output and Spectral Characteristics Over Heat Sink Temperature Relative Luminous Flux (%) 12% 11% 1% 9% 8% 7% 6% 5% 4% Heat Sink Temperature Relative Dominant Wavelength Shift (nm) Heat Sink Temperature Median Lifetime Estimate vs. Tj 1 Lumen Maintenance 2 Device Junction Temperature ( C) , 1, Median Lifetime Estimate (hours) 1, Lumen Maintenance (%) 12% 1% 8% 6% 4% 2% % Measured L7 L5 Extrapolated 1 1, 1, 1, Time (hours) Typical Spectrum 3 Note 1: Note 2: Note 3: Median lifetime estimate as a function of junction temperature at.35a/mm 2 in continuous operation. Lifetime defined as time to 7% of initial intensity. Based on preliminary lifetime test data. Data can be used to model failure rate over typical product lifetime. Lumen maintenance vs. time at.35a/mm 2 in continuous operation, Red junction temperature of 7ºC, Green junction temperatures of 12ºC, Blue junction temperatures of 1ºC. Typical spectrum at current density of.35 A/mm 2 in continuous operation. 12

13 Typical Radiation Patterns Typical Polar Radiation Pattern for White, Green and Blue Typical Angular Radiation Pattern for White, Green and Blue 12% % 8% -6 6 Relative Intensity (%) 6% 4% 2% -12% -1% -8% -6% -4% -2% % 2% 4% 6% 8% 1% 12% % Anglular Displacement (Degrees) 13

14 Thermal Resistance T j Window Die Junction Typical Thermal Resistance R θj-b 1.8 ºC/W T b Window Frame R θb-hs 1.12 ºC/W Thermistor R θj-hs 2.92 ºC/W T hs T ref Copper Core-Board R θj-ref 1.83 ºC/W Thermal Interface Material Heat Sink Note 1: Thermal resistance values are based on FEA model results correlated to measured R θj-hs data. T a T hs definition = 3 mm from core-board Note 2: Thermal resistance is measured using egraf 125 thermal interface material. Thermistor Information Electrical Pinout The thermistor used in CBT-9 LEDs mounted on core-boards is from Murata Manufacturing Co. The global part number is NCP18XH13J3RB. Please see for details on calculating thermistor temperature

15 Mechanical Dimensions CBT-9 Emitter Recommended connectors for Anode and Cathode: Panduit Disco Lok Series P/N: DNF14-25FIB-C JST Manufacturing Co: SPS-61T-25 Thermistor Connector: MOLEX P/N or GCT P/N WTB8-21S- F. Recommended Female: MOLEX P/N , GCT P/N WTB6-21S-F or equivalent 15

16 Ordering Information Ordering Part Number 1,2 Color Description CBT-9-W57S-C11-NA1 CBT-9-W65S-C11-NA1 CBT-9-W57H-C11-KB2 CBT-9-G-C11-JK2 CBT-9-B-C11-KJ3 57K White 65K White 57K White High CRI Green Blue White LED CBT-9 consisting of a 9 mm 2 LED, thermistor, and connector, mounted on a copper-core PCB Green LED CBT-9 consisting of 9 mm 2 LED, thermistor, and connector, mounted on a copper-core PCB. CBT-9 G : Product Discountinued. Please consider CBT-9 TE version instead as documented in PDS-2547 datasheet. Blue LED CBT-9 consisting of 9 mm 2 LED, thermistor, and connector, mounted on a copper-core PCB. CBT-9 B : Product Discountinued. Please consider CBT-9 TE version instead as documented in PDS-2547 datasheet. Note 1: Note 2: NA1 - denotes a bin kit comprising of all flux bins with a minimum flux of 1,59 lumens and chromaticity bins at the 65K color point. KB2 - denotes a bin kit comprising of all flux bins with a minimum flux of 1,12 lumens and chromaticity bins at the 57K color point. Note 3: JK2 - denotes a bin kit comprising of all green flux and wavelength bins as specified on page 5 KJ3 - denotes a bin kit comprising of all blue flux and wavelength bins as specified on page 5. Note 4: For ordering information on all available bin kits, please reference PDS-1694: CBT-9 Binning & Labeling document. Note 5: Standard packaging increment (SPI) is 1. Note 6: Red CBT-9 has been discontinued - please refer to PDS-2547 (CBT-9 Thermally Enhanced version) for information on current red porduct offering Green- C11 product has been moved to EOL Status - Please consider use of Thermally enhanced version for new design applications. 16

17 Rev Date Description of Change 14 9/27/216 History of Changes Clarified applicable minimum operating current Editorial Changes CBT-9 G/B product discontinued.please consider CBT-9 TE version instead as documented in PDS-2547 datasheet Updated thermistor connector information Adding 57K 15 12/4/217 Documented higher flux bins for CBT-9-W products. Remove EOL references for CBT-9-W57H The products, their specifications and other information appearing in this document are subject to change by Luminus Devices without notice. Luminus Devices assumes no liability for errors that may appear in this document, and no liability otherwise arising from the application or use of the product or information contained herein. None of the information provided herein should be considered to be a representation of the fitness or suitability of the product for any particular application or as any other form of warranty. Luminus Devices product warranties are limited to only such warranties as accompany a purchase contract or purchase order for such products. Nothing herein is to be construed as constituting an additional warranty. No information contained in this publication may be considered as a waiver by Luminus Devices of any intellectual property rights that Luminus Devices may have in such information. LEDs is a registered trademark of Luminus Devices, Inc., all rights reserved. This product is protected by U.S. Patents 6,831,32; 7,74,631; 7,83,993; 7,84,434; 7,98,589; 7,15,861; 7,138,666; 7,166,87; 7,166,871; 7,17,1; 7,196,354; 7,211,831; 7,262,55; 7,274,43; 7,31,271; 7,341,88; 7,344,93; 7,345,416; 7,348,63; 7,388,233; 7,391,59 Patents Pending in the U.S. and other countries. 17

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