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Design-in guide - Philips Lighting

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ContentsIntroduction of the <strong>Philips</strong> Fortimo LED DownlightModule (DLM) System 3Features and benefits 4Applications 4<strong>Philips</strong> Fortimo LED DLM system 5Fortimo LED DLM portfolio 5Fortimo LED DLM “4000 K” 5Fortimo LED DLM “3500 K” 5Fortimo LED DLM “3000 K” 5Fortimo LED DLM cable 5Fortimo LED DLM driver 5The basic pr<strong>in</strong>ciples of the Fortimo LED DLM system 6Start<strong>in</strong>g characteristics 6Lum<strong>in</strong>ous flux dur<strong>in</strong>g start period 6Lumen ma<strong>in</strong>tenance 6Dimm<strong>in</strong>g 6Future range extensions 6About the Fortimo LED DLM (downlight module) 7Dimensions of Fortimo LED DLM module and driver 7Mechanical fixation 8About the Fortimo LED DLM driver 8About the Fortimo LED DLM cables 8System performance specifications 9Light<strong>in</strong>g performance characteristics 10Specification of the system after 100 hours 10UV and other hazards 10Spectral power distribution 3000K, 3500K, 4000K 11Dimm<strong>in</strong>g characteristics 11<strong>Design</strong><strong>in</strong>g a lum<strong>in</strong>aire 12UL recommendations 12Electrostatic device (ESD) measures 12Installation <strong>in</strong>structions 12Wir<strong>in</strong>g 12Connect<strong>in</strong>g to the ma<strong>in</strong>s supply 12Connect<strong>in</strong>g to protective ground 12Connect<strong>in</strong>g to 12 V 12Connect<strong>in</strong>g a Xitanium LED DLM driver to aFortimo module 12Fortimo LED DLM cable 13Outdoor lum<strong>in</strong>aires 13Secondary optics 13Heat s<strong>in</strong>k design and temperature measurements 14General 14Test requirements 14Maximum temperature 14Critical measurement po<strong>in</strong>ts 14Operation under built-<strong>in</strong> conditions 14Case temperature and thermal circuit 15Case temperature and Fortimo module performance 15Operation <strong>in</strong> free air 15Heat s<strong>in</strong>k design 16Thermal conductivity 16Emission coefficients 16Size of heat s<strong>in</strong>k 17Active and passive cool<strong>in</strong>g 17Passive cool<strong>in</strong>g 17Air flow 18Thermal design 18From the temperature test po<strong>in</strong>t Tc (po<strong>in</strong>t 1)to the side surfaces (po<strong>in</strong>t 2) 18From the heat s<strong>in</strong>k to ambient (po<strong>in</strong>t 3) 18Thermal model 19Calculat<strong>in</strong>g your heat s<strong>in</strong>k 20Technical Specifications 20Shape of heat s<strong>in</strong>k 21The Fortimo LED DLM with the two connectedheat s<strong>in</strong>ks and three thermo couples <strong>in</strong>stalled 21How to measure Tc 21SynJet cool<strong>in</strong>g from Nuventix 22Nuventix contact <strong>in</strong>formation 22Light<strong>in</strong>g <strong>in</strong>stallations and the environment 23Electromagnetic compatibility 23Humidity 23Exposure to direct sunlight 23Vibration and shocks 23Standards and approvals 23IP codes, dust and moisture protection 23End-of-life behavior 23Fortimo LED DLM system disposal 23Schematic lum<strong>in</strong>aire with the Fortimo LED DLM system 242<strong>Philips</strong> Fortimo LED Downlight Module (DLM) System

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