IceLED Ultra VS Cree XLamp modular active Star LED Cooler ø99mm Cree XLamp Active Star LED Cooler ø99mm

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Features & Benefits The IceLED Ultra VS modular active LED coolers are specifically designed for luminaires using the Cree XLamp LED array. Mechanical compatibility with direct mounting of the LED modules to the LED cooler and thermal performance matching the lumen packages. For high bays, flood lights and industrial lighting designs from 5,000 to 20,000 lumen Thermal resistance Rth 0.26 C/W Modular design with mounting holes foreseen for Cree XLamp CXA18 / CXB18, CXA25 / CXB25, CXA30 / CXB30 LED array by use of Zhaga Book 3 LED holder. Diameter 99mm - Height 75mm Other heights on request High lifetime design > 60Khrs (L 10 life time @40 C) Warranty 5 years Order Information Example : IceLED Ultra VS IceLED 1 1 Ultra VS is designed in this way that you can mount various LED modules on the same LED cooler Simple mounting with self tapping screws Recommened screw force 6lb/in Screws are avaliable from MechaTronix Page 1/5

Product Details Model n Dimension (mm)*1 ø99 x h75 Fan Voltage (Vdc)*2 12 Fan Speed (RPM) 2600 Noise @ 1m (dba) <35.6 Weight (gr) 425 Thermal Resistance ( C/W) 0.26 Power Pd (W)*4 150 Heat Sink Material AL6063-T5 *1 3D files are avaliable in ParaSolid, STP and IGS on request *2 The fan requires a constant voltage power source of 12Vdc, 160mA, 1.8W The thermal resistance Rth is determined with a calibrated heat source of 30mm x 30mm central placed on the heat sink, Tamb 40 and an open environment. Reference data @ heat sink to ambient temperature rise Ths-amb 50 C The thermal resistance of a LED cooler is not a fix value and will vary with the applied dissipated power Pd *4 Dissipated power Pd. Reference data @ heat sink to ambient temperature rise Ths-amb 50 C The maximal dissipated power needs to be verified in function of required case temperature Tc or junction temperature Tj and related to the estimated ambient temperature where the light fixture will be placed Please be aware the dissipated power Pd is not the same as the electrical power Pe of a LED module To calculate the dissipated power please use the following formula: Pd = Pe x (1-ηL) Pd - Dissipated power Pe - Electrical power ηl = Light effciency of the LED module Notes: Page 2/5 - MechaTronix reserves the right to change products or specifications without prior notice. - Mentioned models are an extraction of full product range. - For specific mechanical adaptations please contact MechaTronix.

Options The IceLED Ultra VS modular active LED cooler is standard foreseen from a variety of mounting holes which allow direct mounting of LED engines, COB's and secondary optics on the LED heat sink. In this way mechanical afterwork and related costs can be avoided, and lighting designers can standardize their designs on a limited number of LED coolers. Below you find an overview of Cree XLamp LED array which standard fit on the IceLED Ultra VS LED cooler. MechaTronix performs thermal validation tests on each of the LED modules mounted on the LED cooler and publishes this data in the LED brand thermal validation reports. For a full overview of avaliable LED coolers for Cree XLamp LEDs, please refer to the Cree XLamp LED cooler overview on www.led-heatsink.com/download.php or scan the QR code here. Cree XLamp LED Array Cree XLamp LEDs deliver the industry s best lighting-class performance and are application-optimized to enable the lowest system cost. Cree s new CXA LED Arrays deliver high lumen output and efficacy in a family of single, easy-to-use components. Optimized to simplify designs and lower system cost, Cree s CXA LED arrays are available in system level performance from 300 to over 16,000 lumens and can enable applications ranging from GU10s and commercial downlights to outdoor area lighting and high-bay lighting. indicator marks overview MechaTronix recommends the use of a high thermal conductive interface between the LED module and the LED cooler. Either thermal grease, a thermal pad or a phase change thermal pad thickness 0.1-0.15mm is recommended. Thermal pads or phase change thermal pads can be preapplied from MechaTronix. Cree XLamp CXA18 / CXB18 LED Array CXA1830-xxxx CXB1830-xxxx CXA1850-xxxx BJB Spotlight connector 47.319.2131 (CXA1830 excluded) Ideal Industries Chip-Lok holder 50-2101CR TE Connectivity Lumawise type Z50 2213401-1 TE Connectivity Lumawise type Z50 2213401-2 Cree XLamp CXA25 / CXB25 LED Array CXA2520-xxxx CXA2530-xxxx CXB2530-xxxx CXA2540-xxxx CXB2540-xxxx CXA2590-xxxx BJB Spotlight connector 47.319.2141 Ideal Industries Chip-Lok holder 50-2102CR TE Connectivity Lumawise type Z50 2213407-1 TE Connectivity Lumawise type Z50 2213407-2 Page 3/5

Options Cree XLamp CXA30 / CXB30 LED Array CXA3050-xxxx CXB3050-xxxx CXA3070-xxxx CXB3070-xxxx BJB Spotlight connector 47.319.2151 Ideal Industries Chip-Lok holder 50-2234C Page 4/5

Drawings & Dimensions Example: IceLED Ultra VS Thermal Data Dissipated Power Pd(W) Pd = Pe x (1-ηL) LED Light efficiency, ηl (%) Heat sink to ambient thermal resistance R hs-amb ( C/W) Heat sink to ambient temperature rise T hs-amb ( C) 17% 20% 25% IceLED Ultra VS IceLED Ultra VS 50 Electrical 60.2 62.5 66.6 0.26 13.0 75 Power 90.3 93.7 100.0 0.26 19.5 Pe(W) 100 120.4 125.0 133.3 0.26 26.0 150 180.7 187.5 200.0 0.26 39.0 Heat sink to ambient temperature rise T hs-amb ( C) IceLED Ultra VS 40 30 20 10 50 Dissipated Power Pd(W) 70 90 110 130 150 Page 5/5