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LMR2 データシート(PDF) 2 Page - Cree, Inc |
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LMR2 データシート(HTML) 2 Page - Cree, Inc |
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2 / 5 page ![]() 2 CLM-DS05 LMR2 Rev 1 Cree, Inc. 4600 Silicon Drive Durham, NC 27703 USA Tel: +1.919.313.5300 www.cree.com/modules Copyright © 2011 Cree, Inc. All rights reserved. The information in this document is subject to change without notice. Cree, the Cree logo, and TrueWhite are registered trademarks, and Cree TrueWhite and the Cree TrueWhite Technology logo are trademarks of Cree, Inc. Characteristics The following table provides several base order codes for the Cree LED module LMR2, as well as a description of the order-code nomenclature. CCT* Nominal Luminous Flux (lm) CRI Input Power Input Volt- age/Freq Power Factor Order Code 4000 K 650 90 11 W 120 V/60 Hz >.80 LMR020-0650-40F9-10100TW 230 V/50 Hz >.90 LMR020-0650-40F9-20100TW 3500 K 650 90 11 W 120 V/60 Hz >.80 LMR020-0650-35F9-10100TW 230 V/50 Hz >.90 LMR020-0650-35F9-20100TW 3000 K 650 90 11 W 120 V/60 Hz >.80 LMR020-0650-30F9-10100TW 230 V/50 Hz >.90 LMR020-0650-30F9-20100TW 2700 K 650 90 11 W 120 V/60 Hz >.80 LMR020-0650-27F9-10100TW 230 V/50 Hz >.90 LMR020-0650-27F9-20100TW * Refer to section below on chromaticity for more details Note: Cree maintains a tolerance of +/- 7% on flux and power measurements Thermal Management Guidelines Acceptable ambient starting and operating temperatures of the Cree LED Module LMR2 are between 0° C and 50° C. The lifetime and performance estimates described in this document require the T C limit stated in this Thermal Manage- ment Guidelines section is adhered to and only the modifications described in this document are implemented. The LED module is flexible; use of the optional heat sink depends on the thermal path options available in your design requirements. Secondary optics added to the module will reduce the light output and could also alter the color charac- teristics of the final luminaire design. The Cree LED module LMR2 is designed to perform in a variety of environments; however, the LED module lifetime is highly dependent upon the T C temperature. To achieve lifetime and performance estimates and to maintain the war- ranty, the final design cannot exceed 70° C at thermal equilibrium, based on the thermocouple (T C) location shown in the Form Factor section below and tested in situ. |
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