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5000K LUXEON Z White LED on a Saber Z1 10mm Square Base - 148 lm @ 500mA |
The SZ-01-M6 LED module features a single LXZ1-5070 5000K LUXEON Z LED soldered to a thermally efficient, 10mm (0.4") square, 1.6mm (0.063") thick MCPCB aluminum base with temperature test point.
This ready-to-use LED module offers both easy handling and a small size that can be worked with using standard bench top tools and hand soldering techniques. This opens up new opportunities for makers, R&D, MRO and low to medium volume OEM manufacturers to use the super small series of LUXEON Z LEDs without the need for specialized pick and place equipment or reflow soldering. |
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Neutral White (4100K) Rebel LED on a SinkPAD-II 25mm Square Base with 9° Optic - 180 lm @ 700mA |
The SP-12-N2 LED module has been specifically designed to work as a drop-in replacement for the original Luxeon Star/O LED series that are no longer manufactured by Lumileds. This LED module is built using a Fraen FLP-N4-RE-HRF optic and has a near identical form factor to the original Star/O. It can typically be cooled and powered using the same heat sink and driver used for the original Star/O.
This module features LXML-PWN1-0100 Neutral White, Rebel LED soldered to a SinkPAD-II™. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, lumens output and overall reliability. |
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Neutral White (4100K) Rebel LED on a SinkPAD-II 25mm Square Base with 9° Optic - 220 lm @ 700mA |
The SP-12-N3 LED module has been specifically designed to work as a drop-in replacement for the original Luxeon Star/O LED series that are no longer manufactured by Lumileds. This LED module is built using a Fraen FLP-N4-RE-HRF optic and has a near identical form factor to the original Star/O. It can typically be cooled and powered using the same heat sink and driver used for the original Star/O.
This module features LXML-PWN1-0120 Neutral White, Rebel LED soldered to a SinkPAD-II™. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, lumens output and overall reliability. |
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Cool White (6500K) Rebel LED on a SinkPAD-II 25mm Square Base with 9° Optic - 180 lm @ 700mA |
The SP-12-W3 LED module has been specifically designed to work as a drop-in replacement for the original Luxeon Star/O LED series that are no longer manufactured by Lumileds. This LED module is built using a Fraen FLP-N4-RE-HRF optic and has a near identical form factor to the original Star/O. It can typically be cooled and powered using the same heat sink and driver used for the original Star/O.
This module features LXML-PWC1-0100 Cool White, Rebel LED soldered to a SinkPAD-II™. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, lumens output and overall reliability. |
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Cool White (6500K) Rebel LED on a SinkPAD-II 25mm Square Base with 9° Optic - 220 lm @ 700mA |
The SP-12-W4 LED module has been specifically designed to work as a drop-in replacement for the original Luxeon Star/O LED series that are no longer manufactured by Lumileds. This LED module is built using a Fraen FLP-N4-RE-HRF optic and has a near identical form factor to the original Star/O. It can typically be cooled and powered using the same heat sink and driver used for the original Star/O.
This module features LXML-PWC1-0120 Cool White, Rebel LED soldered to a SinkPAD-II™. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, lumens output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 20mm Star Base - 186 lm @ 700mA |
The SP-01-T9 LED module features a single LX18-P150-3 ANSI White, Rebel LED soldered to a SinkPAD-II™ 20mm Star base.
The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 20mm Tri-Star Base - 558 lm @ 700mA |
The SP-03-T9 LED module features 3 LX18-P150-3 ANSI White, Rebel LEDs soldered to a SinkPAD-II™ 20mm Tri-Star base. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 10mm Square Base - 186 lm @ 700mA |
The SP-05-T9 LED module features a single LX18-P150-3 ANSI White, Rebel LED soldered to a SinkPAD-II™ 10mm Square base.
The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 23mm Quad Base - 558 lm @ 700mA |
The SP-08-T9 LED module features 4 LX18-P150-3 ANSI White, Rebel LEDs soldered to a SinkPAD-II™ 23mm Quad base. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 40mm Round 7-Up Base - 742 lm @350ma |
The SP-02-T9 LED module features 7 LX18-P150-3 ANSI White, Rebel LEDs and NTC thermistor soldered to a SinkPAD-II™ 40mm Round base. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 25mm Square Base with 9° Optic - 186 lm @ 700mA |
The SP-12-T9 LED module has been specifically designed to work as a drop-in replacement for the original Luxeon Star/O LED series that are no longer manufactured by Lumileds. This LED module is built using a Fraen FLP-N4-RE-HRF optic and has a near identical form factor to the original Star/O. It can typically be cooled and powered using the same heat sink and driver used for the original Star/O.
This module features LX18-P150-3 ANSI White, Rebel LED soldered to a SinkPAD-II™. The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, lumens output and overall reliability. |
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ANSI White (5000K) Rebel LED on a SinkPAD-II 25mm Round Base - 186 lm @ 700mA |
The SP-06-T9 LED module features a single LX18-P150-3 ANSI White, Rebel LED soldered to a SinkPAD-II™ 25mm Round base.
The SinkPAD-II™ uses second generation technology to minimize thermal resistance by eliminating the dielectric layer so that the LED thermal pad is soldered directly to the aluminium base. This ensures the lowest possible LED junction temperature, resulting in increased LED life, light power output and overall reliability. |
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