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XHP50B-00-0000-0D00J20DV Datasheet(PDF) 1 Page - Cree, Inc |
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XHP50B-00-0000-0D00J20DV Datasheet(HTML) 1 Page - Cree, Inc |
1 / 25 page 11 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® XHP50.2 LEDs ProDuCt DEsCriPtion The XLamp XHP50.2 LeD is the next generation of extreme High Power LeDs that delivers the lowest system cost through the best lumen density, reliability and color consistency. Built on Cree’s latest high-power LeD technology, the XHP50.2 LeD improves the lumen density, voltage characteristics, reliability and optical performance of the XHP50 LeD in the same 5.0 mm x 5.0 mm footprint. The new XHP50.2 LeD provides an easy drop-in upgrade to achieve higher system LPW for lighting manufacturers with existing XHP50 designs, eliminating redesign costs. Its unparalleled lumen density and longer lifetime at higher operating temperatures also enables new and innovative lighting designs at lower system costs. FEAturEs • Available in white, configurable to 6 V or 12 V by PCB layout • Available in 5-step easyWhite® bins at 3000 K to 5000 K CCT, 3-step EasyWhite bins at 2700 K to 5000 K and 2-step EasyWhite bins at 2700 K to 4000 K CCT • Available in ANSI white bins at 3000 K to 7000 K CCT • Available in standard, 70-, 80-, and 90-minimum CRI options • Binned at 85 °C • Maximum drive current: 3000 mA (6 V), 1500 mA (12 V) • Low thermal resistance: 1.2 °C/W • Wide viewing angle: 120° • Unlimited floor life at ≤ 30 ºC/85% RH • Reflow solderable - JEDEC J-STD-020C • UL® recognized component (E349212) tAbLE oF ContEnts Characteristics ..............................................2 Flux Characteristics, easyWhite® Order Codes and Bins .............................................3 Flux Characteristics, ANSI White Order Codes and Bins .............................................5 Relative Spectral Power Distribution ...........7 Relative Flux vs. Junction Temperature.......7 electrical Characteristics..............................8 Relative Flux vs. Current ...............................9 Relative Chromaticity vs Current............... 10 Relative Chromaticity vs Temperature...... 11 Typical Spatial Distribution........................ 11 Thermal Design.......................................... 12 Performance Groups – Luminous Flux..... 13 Performance Groups – Chromaticity........ 13 Cree’s easyWhite® Chromaticity Regions Plotted on the 1931 CIe Curve .................. 16 Cree’s ANSI Cool White Kits Plotted on ANSI Standard Chromaticity Regions....... 17 Cree’s ANSI Warm and Neutral White Kits Plotted on ANSI Standard Chromaticity Regions....................................................... 18 Bin and Order Code Formats..................... 19 Reflow Soldering Characteristics.............. 20 Notes .......................................................... 21 Mechanical Dimensions ............................ 22 Electrical Configuration ............................. 23 Tape and Reel............................................. 24 Packaging................................................... 25 |
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