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Cree XLamp XM-L Color LED Data Sheet

Product family data sheetCopyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL , Silicon DriveDurham, NC 27703 USA Tel: + Rev 5eCree XLamp XM-L Color LEDsProDuCt DEsCriPtionThe XLamp XM-L Color LeD is a multi- Color LeD that provides high lumen output in a small package. Compared to discrete LeDs, XLamp XM-L Color LeDs reduce the distance between LeD die, creating a small optical source for excellent optical control and efficient Color mixing. XLamp XM-L Color LeDs can reduce LeD system complexity by reducing the number of components XLamp XM-L Color LeDs bring high performance and quality of light to a wide range of lighting applications, including Color -changing lighting, stage lighting, architectural lighting, indoor directional lighting, and entertainment Available in red, green, blue and white in a single 5 mm x 5 mm package Maximum drive current per LeD die: 1 A Individually addressable LeDs Reflow solderable JEDEC J-STD-020 electrically neutral thermal path RoHS and ReACh compliant UL recognized component (E349212)tAbLE oF ContEntsCharacteristics - Complete Package.

Copyright 1-18 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree ® and XLamp are registered trademarks and the Cree logo

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Transcription of Cree XLamp XM-L Color LED Data Sheet

1 Product family data sheetCopyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL , Silicon DriveDurham, NC 27703 USA Tel: + Rev 5eCree XLamp XM-L Color LEDsProDuCt DEsCriPtionThe XLamp XM-L Color LeD is a multi- Color LeD that provides high lumen output in a small package. Compared to discrete LeDs, XLamp XM-L Color LeDs reduce the distance between LeD die, creating a small optical source for excellent optical control and efficient Color mixing. XLamp XM-L Color LeDs can reduce LeD system complexity by reducing the number of components XLamp XM-L Color LeDs bring high performance and quality of light to a wide range of lighting applications, including Color -changing lighting, stage lighting, architectural lighting, indoor directional lighting, and entertainment Available in red, green, blue and white in a single 5 mm x 5 mm package Maximum drive current per LeD die: 1 A Individually addressable LeDs Reflow solderable JEDEC J-STD-020 electrically neutral thermal path RoHS and ReACh compliant UL recognized component (E349212)tAbLE oF ContEntsCharacteristics - Complete Package.

2 2 Characteristics - Per LeD Characteristics ..3 Relative Spectral Power Distribution ..3 Relative Flux vs Junction Temperature ..4electrical Characteristics ..4 Relative Flux vs. Current ..5 Typical Spatial Distribution ..5 Bin and Order Code Formats ..6 Performance Groups Luminous Groups Chromaticity ..7 Performance Groups Dominant Wavelength ..8 Standard Order Codes and Bins ..8 Reflow Soldering Characteristics ..10 Notes ..11 Mechanical Dimensions ..12 Tape and Reel ..13 Packaging ..14 Copyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL Xm-L Color LEDChArACtEristiCs - CoMPLEtE PACkAgEThe following table lists the product characteristics for the XLamp XM-L Color LeD package, measured with all LeD dies on simultaneously and each LED die connected to independent drive circuits at 350 resistance, junction to solder point angle (FWHM)degrees ( )130 ESD withstand voltage (HBM per Mil-Std-883D)v8000 LeD junction temperature C150 ChArACtEristiCs - PEr LED DiEThe following table lists the product characteristics for each LeD die within the XLamp XM-L Color LeD coefficient of voltage - redmv/ coefficient of voltage - greenmv/ C-4 Temperature coefficient of voltage - blue, whitemv/ C-3DC forward current - red, green, blue, whitemA1000 Forward voltage (@ 350 mA, 25 C) - voltage (@ 350 mA, 25 C) - voltage (@ 350 mA, 25 C) - blue, 2012-2018 Cree, Inc.

3 All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDFLuX ChArACtEristiCs, (tJ = 25 C)The following tables provide several base order codes for XM-L Color LeDs. For a complete description of the order code nomenclature, please refer to the Bin and Order Code Formats section (page 6).ColorCCt / Dominant Wavelength rangeMinimum Luminous Flux@ 350 mAorder CodeMinimumMaximumgroupFlux (lm) Color + Cool WhiteRed620 nm630 nm535 nm465 White5700 K8000 K100 Color + Neutral WhiteRed620 nm630 nm535 nm465 White3700 K4300 K80 Color + Warm WhiteRed620 nm630 nm535 nm465 White2700 K3700 K80 Notes: Cree maintains a tolerance of 7% on flux and power measurements, on chromaticity (CCx, CCy) measurements and 1 nm on dominant wavelength measurements. See the Measurements section (page 11).

4 Flux and chromaticity are measured with each LED die connected to independent drive circuits at 350 mA. The flux and chromaticity of each LeD die within the XLamp XM-L Color LeD package are measured sPECtrAL PoWEr Distribution (iF = 350 mA per LeD Die, 25 C)The following graph represents typical spectral output of the XLamp XM-L Color LeD with each LeD die on Spectral Power Distribution (If = 350 mA per LED)The following graph represents typical spectral output of the XM-L RGBW Color LED with each LED on 3000 K data from XP-G3 ( )0% 20% 40% 60% 80% 100% 380 430 480 530 580 630 680 730 780 Relative Radiant Power Wavelength (nm) Red Green Blue White 3000 K White 4000 K White 6000 K Copyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDrELAtivE FLuX vs JunCtion tEMPErAturE ( iF = 350 mA)The following graph represents typical performance of each LeD die in the XLamp XM-L Color ChArACtEristiCs (tJ = 25 C)The following graph represents typical performance of each LeD die in the XLamp XM-L Color Flux Output vs.

5 Junction Temperature (If = 350 mA)The following graph represents typical performance of each LED die in the XM-L RGBW LED 0% 20% 40% 60% 80% 100% 25 50 75 100 125 150 Relative Luminous Flux Junction Temperature ( C) Red Green Blue White Electrical Characteristics (Tj = 25 C)The following graph represents typical performance of each LED die in the XM-L RGBW LED 0 100 200 300 400 500 600 700 800 900 1000 Forward Current (mA) Forward Voltage (V) Red Green Blue, White Copyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDrELAtivE FLuX vs. CurrEnt (tJ = 25 C)The following graph represents typical performance of each LeD die in the XLamp XM-L Color sPAtiAL DistributionThe following graph represents typical output of the XLamp XM-L Color LeD with all four LeDs on Intensity vs.

6 Current (Tj = 25 C)0% 50% 100% 150% 200% 250% 300% 0 100 200 300 400 500 600 700 800 900 1000 Relative Luminous Flux Forward Current (mA) Red Green Blue White Typical Spatial Radiation PatternThe following graph represents typical spectral output of the XLamp MC-E LED with all four LEDs on 20% 40% 60% 80% 100% -90 -60 -30 0 30 60 90 Relative Luminous Intensity Angle ( ) Copyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDbin AnD o rDEr CoDE ForMAtsBin codes and order codes are configured in the following manner:order Codebin CodePErForMAnCE grouPs LuMinous FLuXEach LED die in the XLamp XM-L Color LED is tested individually for luminous flux and placed into one of the following luminous-flux CodeMinimum Luminous Flux (lm) @ 350 mAMaximum Luminous Flux (lm) @ 350 mA) Flux and chromaticity are measured with each LED die connected to independent drive circuits at 350 XML = XMLC olor CTW = Red, green, blue, whiteReel sizeInternal codeDominant wavelength kit (RGB)Chromaticity kit for whiteFlux kitInternal codePackage configuration A = Individually addressableSSSCCC-B-HHHH-NNNMMKKKKC hromaticity bin for white dieFlux bin for each die (RGBW)Package configuration A = Individually addressableSeries XML = XMLC olor CTW = Red, green, blue, whiteDominant wavelength bin for each die (RGB)Internal codeCopyright 2012-2018 Cree, Inc.

7 All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDPErForMAnCE grouPs ChroMAtiCity (iF = 350 mA p er L eD Die)The white LED die in the XLamp XM-L Color LED is individually tested for chromaticity at 350 mA and placed into one of the regions defined by the bounding coordinates shown 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDPErForMAnCE grouPs DoMinAnt WAvELEngthThe red, green and blue LED dies in the XLamp XM-L Color LED are tested individually for dominant wavelength (DWL) and sorted into one of the DWL bins defined groupMinimum DWL@ 350 mAMaximum DWL@ 350 mABlueK450455L455460M460465 Green252052535255304530535 RedA620630stAnDArD o rDEr CoDEs AnD binsThe following table list sstandard kit numbers and performance bins.

8 Kit numbers completely describe an order code s Color or chromaticity bins and luminous flux Minimum Luminous Flux (lm) @ 350 mA*DWL / Chromaticity binskit numbergroupFlux (lm) , 3, , L, MWhite3100WC, WD, WF, WG, WB, We, WM, , 3, , L, MWhite2805A, 5B, 5C, , 3, , L, MWhite2807A, 7B, 7C, 7 DFor other flux and chromaticity combinations, contact Cree or an authorized distributor.* Cree XLamp XM-L Color LED order codes specify only a minimum flux bin and not a maximum. Cree may ship reels in flux bins higher than the minimum specified by the order code without advance notice. Shipments will always adhere to the chromaticity or DWL bin restrictions specified by the order 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeD2700 K3000 K3500 K4000 K4500 K5000 K5700 K6500 K8000 K10000 KWAWBWCWDWEWFWGWHWJWKWMWNWP3A3B3C3D4A4B4 C4D5A5B5C5D6A6B6C6D7A7B7C7D8A8B8C8D0.

9 310. 320. 330. 380. 390. 400. o rDEr CoDEs AnD bins - ContnuEDCopyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL Xm-L Color LEDrEFLoW soLDEring ChArACtEristiCsIn testing, Cree has found XLamp XM-L Color LEDs to be compatible with JEDEC J-STD-020C, using the parameters listed below. As a general guideline, Cree recommends that users follow the recommended soldering profile provided by the manufacturer of the solder paste used, and therefore it is the lamp or luminaire manufacturer s responsibility to determine applicable soldering that this general guideline may not apply to all PCB designs and configurations of reflow soldering FeatureLead-Free solderAverage Ramp-Up Rate (Tsmax to Tp) C/secondPreheat: Temperature Min (Tsmin) 120 CPreheat: Temperature Max (Tsmax)170 CPreheat: Time (tsmin to tsmax)65-150 secondsTime Maintained Above: Temperature (TL)217 CTime Maintained Above: Time (tL)45-90 secondsPeak/Classification Temperature (Tp)235 - 245 CTime Within 5 C of Actual Peak Temperature (tp)20-40 secondsRamp-Down Rate1 - 6 C/secondTime 25 C to Peak Temperature4 minutes.

10 All temperatures refer to the topside of the package, measured on the package body 25 C to PeakPreheattstStP25 Ramp-downRamp-upCritical ZoneTL to TPTsmaxTsminCopyright 2012-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree and XLamp are registered trademarks and the Cree logo and XM-L are trademarks of Cree, Inc. UL and the UR logo are registered trademarks of UL XM-L Color LeDnotEsMeasurementsThe luminous flux, radiant power, chromaticity, forward voltage and CRI measurements in this document are binning specifications only and solely represent product measurements as of the date of shipment. These measurements will change over time based on a number of factors that are not within Cree s control and are not intended or provided as operational specifications for the products. Calculated values are provided for informational purposes only and are not intended or provided as release Qualification TestingPlease read the LeD Reliability Overview for details of the qualification process Cree applies to ensure long-term reliability for XLamp LEDs and details of Cree s pre-release qualification testing for XLamp ComplianceThe levels of RoHS restricted materials in this product are below the maximum concentration values (also referred to as the threshold limits) permitted for such substances, or are used in an exempted application, in accordance with EU Directive 2011/65/EC (RoHS2), as implemented January 2, 2013.


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