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CMT1925 Datasheet(PDF) 19 Page - Cree, Inc |
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CMT1925 Datasheet(HTML) 19 Page - Cree, Inc |
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19 / 21 page ![]() Copyright © 2017-2018 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree®, the Cree logo, XLamp® and EasyWhite® are registered trademarks and eTone™ is a trademark of Cree, Inc. UL® and the UR logo are registered trademarks of UL LLC. 19 XLamp® CmT1925 LED ThErMaL DEsign The CMT family of LeD arrays can include over a hundred different LeD die inside one package, and thus over a hundred different junction temperatures (T J). Cree has intentionally removed junction-temperature-based operating limits and replaced the commonplace maximum T J calculations with maximum ratings based on forward current (IF) and case temperature (Tc). No additional calculations are required to ensure the CMT LED is being operated within its designed limits. LES temperature measurement provides additional verification of good thermal design. Please refer to page 3 for the Operating Limit specification. There is no need to calculate for T J inside the package, as the thermal management design process, specifically from solder point (TSP) to ambient (T a), remains identical to any other LeD component. For more information on thermal management of Cree XLamp LeDs, please refer to the Thermal Management application note. For CMT soldering recommendations and more information on thermal interface materials (TIM), LeS temperature measurement, and connection methods, please refer to the Cree XLamp CM Family LeDs soldering and handling document. To keep the CMT1925 LeD at or below the maximum rated Tc, the case to ambient temperature thermal resistance (R_c-a) must be at or below the maximum R_c-a value shown on the following graph, depending on the operating environment. The y-axis in the graph is a base 10 logarithmic scale. As the figure at right shows, the R_c‑a value is the sum of the thermal resistance of the TIM (R_tim) plus the thermal resistance of the heat sink (R_hs). R_j-c Tc R_tim R_hs Ta R_j-c Tc R_c-a Ta CMT1930 0.01 0.10 1.00 10.00 100.00 200 350 500 650 800 950 1100 1250 1400 1550 1700 1850 2000 Current (mA) Ta = 25 °C Ta = 55 °C Ta = 85 °C Ta = 105 °C |
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