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MHBBWT-0000-000N0BD440E Datasheet(PDF) 1 Page - Cree, Inc |
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MHBBWT-0000-000N0BD440E Datasheet(HTML) 1 Page - Cree, Inc |
1 / 25 page Product family data sheet Copyright © 2016 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, XLamp® and EasyWhite® are registered trademarks and the Cree logo is a trademark of Cree, Inc. UL® and the UR logo are registered trademarks of UL LLC. Cree, Inc. 4600 Silicon Drive Durham, NC 27703 USA Tel: +1.919.313.5300 Cree® XLamp® MHB-B LEDs ProDuCt DEsCriPtion The XLamp® MHB-B LeD is a new high- power LeD that enables a more effective way to lower system costs for high lumen lighting applications, such as high-bay, roadway and outdoor area, than mid-power LeDs. Leveraging key elements of Cree’s SC5 Technology™ Platform, the ceramic MHB-B LeDs combine high light output, high efficacy and high reliability to enable high lumen LeD designs that are not possible with mid-power LeDs. The MHB-B LeD delivers higher LPW than the MHB-A LeD in the same 5mm x 5mm package, allowing lighting manufacturers to quickly increase performance for existing MHB designs without any additional investment. FEAturEs • Flexible 9-v, 18-v or 36-v options • Maximum drive current: 700 mA (9 V), 350 mA (18 V), 175 mA (36 V) • viewing angle: 115° • Available in 70-CRI, 80-CRI and 90-CRI options • Unlimited floor life at ≤ 30 ºC/85% RH • Reflow solderable - JEDEC J-STD-020C • electrically neutral thermal path • RoHS- and ReACh-compliant • UL® recognized component (E349212) tABLE oF ContEnts Characteristics ...........................................2 Flux Characteristics, easyWhite® Order Codes and Bins - 9 V..................................3 Flux Characteristics, easyWhite® Order Codes and Bins - 18 V................................5 Flux Characteristics, easyWhite® Order Codes and Bins - 36 V................................7 Relative Spectral Power Distribution ........9 Relative Flux vs. Junction Temperature....9 electrical Characteristics.........................10 Relative Flux vs. Current ..........................11 Relative Chromaticity vs. Current............13 Relative Chromaticity vs. Temperature...14 Typical Spatial Distribution......................14 Thermal Design........................................15 Performance Groups – Luminous Flux ..16 Thermal Design - Continued....................16 Performance Groups – Chromaticity......17 Cree’s Standard White Chromaticity Regions Plotted on the 1931 CIe Curve..18 Bin and Order Code Formats...................19 Reflow Soldering Characteristics............20 Notes ........................................................21 Mechanical Dimensions ..........................23 Tape and Reel...........................................24 Packaging.................................................25 |
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