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power light source Luxeon TM V Star Technical Data DS3 Luxeon is a revolutionary, energy efficient and ultra compact new light source, combining the lifetime and reliability advantages of Light Emitting Diodes with the brightness of conventional lighting. Luxeon Power Light Sources give you total design freedom and unmatched brightness, creating a new world of light. The Luxeon V offers extreme luminous density, providing lumens per package of 4X a standard Luxeon or up to 5X that of alternative solid state light sources creating new opportunities for solid state lighting to displace conventional lighting technologies. For high volume applications, custom Luxeon power light source designs are available upon request, to meet your specific needs. Features Highest Flux per LED in the world 4X the Flux of a comparable Luxeon and up to 5X the Flux of standard through hole LEDs Extreme Luminous Density 2X the lm/mm 2 of a standard through hole LED Very long operating life (up to 1k hours) Available in Green, Blue, Royal Blue, and Cyan Lambertian or Side Emitting Distribution Pattern More Energy Efficient than Incandescent and most Halogen lamps Low voltage DC operated Cool beam, safe to the touch Instant light (less than 1 ns) Fully dimmable No UV Superior ESD protection Typical Applications Portable (flashlight, bicycle) Architectural Detail Lighting Decorative Fiber Optic Alternative Medical Applications Power Signaling / Airfield / Taxiway Lighting Edge-Lit Signs (Exit, Point Of Sale) LCD Backlights / Light Guides Emitters can be purchased in rsampl kits contains a strip of 5 taped emitters. To order a sample kit, add Luxeon V Star is available in green, blue, royal blue and cyan.

Mechanical Dimensions Luxeon V Star Side Emitting Lambertian Notes: 1. Slots in aluminum-core PCB for M3 or #4 mounting screw. 2. Electrical interconnection pads labeled on the aluminum-core PCB with + and - to denote positive and negative, respectively. All positive pads are interconnected, as are all negative pads, allowing for flexibility in array interconnection. 3. Electrical insulation between neighboring Stars is required aluminum board is not electrically neutral. 4. Drawings not to scale. 5. All dimensions are in millimeters. Flux Characteristics at 7mA, Junction Temperature, T J = 25 o C Color Part Number Minimum Luminous Flux (lm) or Radiometric Power (mw) ΦV [1,2] Typical Luminous Flux (lm) Or Radiometric Power (mw) ΦV [2] Radiation Pattern Green LXHL-LM5C 67.2 12 Cyan LXHL-LE5C 67.2 12 Lambertian Blue [3] LXHL-LB5C 18.1 45 Royal Blue [4] LXHL-LR5C 275 mw 5 mw Green LXHL-FM5C 67.2 11 Cyan LXHL-FE5C 67.2 11 Side Emitting Blue [3] LXHL-FB5C 18.1 4 Royal Blue [4] LXHL-FR5C 275 mw 45 mw Notes: 1. Minimum luminous flux or radiometric power performance guaranteed within published operating conditions. Lumileds maintains a tolerance of ± 1% on flux and power measurements. 2. Luxeon types with even higher luminous flux levels will become available in the future. Please consult your Lumileds Authorized Distributor or Lumileds sales representative for more information. 3. Minimum flux value for 47 nm devices. Due to the CIE eye response curve in the short blue wavelength range, the minimum luminous flux will vary over the Lumileds blue color range. Luminous flux will vary from a minimum of 13.9 lm at 46 nm to a typical of 4 lm at 48 nm due to this effect. Although the luminous power efficiency is lower in the short blue wavelength range, radiometric power efficiency increases as wavelength decreases. For more information, consult the Luxeon Design Guide, available upon request. 4. Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant wavelength. Luxeon V Star 2 Document #: DS3 (2/4)

Optical Characteristics at 7mA, Junction Temperature, T J = 25 o C Temperature Coefficient Radiation Dominant Wavelength [1] λd or Peak Wavelength [2] λp Spectral Half-Width [3] (nm) of Dominant Wavelength (nm/ o C) Pattern Color Min. Typ. Max. λ1/2 λd/ ΤJ Green 52 nm 53 nm 55 nm 35.4 Lambertian Cyan 49 nm 55 nm 52 nm 3.4 Blue 46 nm 47 nm 49 nm 25.4 Royal Blue [2] 44 nm 455 nm 46 nm 2.4 Green 52 nm 53 nm 55 nm 35.4 Side Emitting Cyan 49 nm 55 nm 52 nm 3.4 Blue 46 nm 47 nm 49 nm 25.4 Royal Blue [2] 44 nm 455 nm 46 nm 2.4 Optical Characteristics at 7mA, Junction Temperature, T J = 25 o C, Continued Radiation pattern Color Total included angle [4] (degree) θ.9v viewing angle [5] (degree) 2θ 1/2 Green 15 15 Lambertian Cyan 15 15 Blue 15 15 Royal Blue 15 15 Notes: (for all three optical tables) 1. Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color. Lumileds maintains a tolerance of ±.5nm for dominant wavelength measurements. 2. Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant wavelength. Lumileds maintains a tolerance of ± 2nm for peak wavelength measurements. 3. Spectral width at ½ of the peak intensity. 4. Total angle at which 9% of total luminous flux is captured. 5. θ½ is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value. 6. Cumulative flux percent within ± 45 from optical axis. 7. Off axis angle from lamp centerline where the luminous intensity reaches the peak value. On axis peak may be higher than off axis peak. 8. All products built with Indium Gallium Nitride (InGaN). 9. Blue and Royal Blue power light sources represented here are IEC825 Class 2 for eye safety. Optical Characteristics at 7mA, Junction Temperature, T J = 25 o C, Continued Typical total flux percent Typical angle of Radiation within first 45 [6] peak intensity [7] Pattern Color Cum Φ 45 θ PEAK Green <3% 75-85 Side Emitting Cyan <3% 75-85 Blue <3% 75-85 Royal blue <3% 75-85 Luxeon V Star 3 Document #: DS3 (2/4)

Electrical Characteristics at 7mA, Junction Temperature, T J = 25 o C Temperature coefficient of forward voltage [3] (mv/ o C) Thermal resistance, junction to board Dynamic Forward Voltage VF (V) [1] resistance [2] Color Min. Typ. Max. (Ω) RD VF/ TJ ( o C/W) RθJ-B Green 5.43 6.84 8.31 1. -4. 11 Cyan 5.43 6.84 8.31 1. -4. 11 Blue 5.43 6.84 8.31 1. -4. 11 Royal Blue 5.43 6.84 8.31 1. -4. 11 Notes: 1. Lumileds maintains a tolerance of ±.6V on forward voltage measurements. 2. Dynamic resistance is the inverse of the slope in linear forward voltage model for LEDs. See Figure 3. 3. Measured between 25 o C TJ 11 o C at I F = 7mA. Absolute Maximum Ratings Parameter Green/Cyan/ Blue/Royal Blue DC Forward Current (ma) [1] 7 Peak Pulsed Forward Current (ma) 1 Average Forward Current (ma) 7 ESD Sensitivity [2] ± 16,V HBM LED Junction Temperature ( o C) 135 Aluminum-Core PCB Temperature ( o C) [3] 7 Storage & Operating Temperature ( o C) -4 to +12 Notes: 1. Proper current derating must be observed to maintain junction temperature below the maximum. For more information, consult Luxeon Design Guide, available upon request. 2. LEDs are not designed to be driven in reverse bias. Please consult Lumileds Application Brief AB11 for further information. 3. Allowable board temperature to avoid exceeding maximum junction temperature at maximum V f limit at 7 ma based on thermal resistance of Star assembly. Wavelength Characteristics, T J = 25 o C Relative Spectral Power Distribution 1..8.6.4.2. ROYAL BLUE BLUE BL GREEN CYAN 4 45 5 55 6 65 7 Wavelength (nm) Figure 1. Relative Intensity vs. Wavelength. Luxeon V Star 4 Document #: DS3 (2/4)

Luxeon V Star 5 Document #: DS3 (2/4)

Light Output Characteristics Relative Light Output (%) 15 14 Green Photometric 13 Cyan Photometric 12 Blue Photometric 11 Royal Blue Radiometric 1 9 8 7 6 5-2 2 4 6 8 1 12 Figure 2. Relative Light Output vs. Junction Temperature. Figure 2a. Relative Light Output vs. Junction Temperature for White, Green, Cyan, Blue and Royal Blue. Junction Temperature, T J ( o C) Forward Current Characteristics, T J = 25 o C I F - Average Forward Current (ma) 8 7 6 5 4 3 2 1. 1. 2. 3. 4. 5. 6. 7. 8. V F - Forw ard Voltage (Volts) Figure 3. Forward Current vs. Forward Voltage. 1.2 Normalized Relative Luminous Flux 1.8.6.4.2 2 1 4 2 6 3 8 4 Figure 4. Relative Luminous Flux vs. Forward Current at T J = 25 o C maintained. I F - Average Forw ard Current (ma) Luxeon V Star 6 Document #: DS3 (2/4)

Current Derating Curve I F - Forward Current (ma) 8 7 6 5 4 3 2 1 Rθ J-A =2 o C/W Rθ J-A =15 o C/W 25 5 75 1 125 15 T A - Ambient Temperature ( ο C) Figure 5. Maximum Forward Current vs. Ambient Temperature. Derating based on T JMAX = 135 o C. Note: Additional heatsinking is required, even for extremely brief periods. Please consult AB5, Luxeon Thermal Design Guide, for additional information. Representative Typical Spatial Radiation Pattern Lambertian Radiation Pattern 1 9 8 7 6 5 4 3 2 1 Typical Upper Bound Typical Lower Bound -1-8 -6-4 -2 2 4 6 8 1 Angular Displacement (Degrees) Figure 6. Representative Typical Spatial Radiation Pattern for Luxeon V Star. Side Emitting Radiation Pattern Relative Intensity (%) 1 9 8 7 6 5 4 3 2 Figure 7. Representative Typical Spatial Radiation Pattern for Luxeon V Star. 1-12 -1-8 -6-4 -2 2 4 6 8 1 12 Angular Displacement (Degrees) Luxeon V Star 7 Document #: DS3 (2/4)

About Luxeon Luxeon is the new world of solid state lighting (LED) technology. Luxeon Power Light Source Solutions offer huge advantages over conventional lighting and huge advantages over other LED solutions. Luxeon enables partners to create and market products that, until now, were impossible to create. This means the opportunity to create products with a clear competitive advantage in the market. Products that are smaller, lighter, sleeker, cooler, and brighter. Products that are more fun to use, more efficient, and more environmentally conscious than ever before possible! Company Information Luxeon is developed, manufactured and marketed by Lumileds Lighting, LLC. Lumileds is a world-class supplier of Light Emitting Diodes (LEDs) producing billions of LEDs annually. Lumileds is a fully integrated supplier, producing core LED material in all three base colors (Red, Green, Blue) and White. Lumileds has R&D development centers in San Jose, California and Best, The Netherlands. Production capabilities in San Jose, California and Malaysia. Lumileds is pioneering the high-flux LED technology and bridging the gap between solid state LED technology and the lighting world. Lumileds is absolutely dedicated to bringing the best and brightest LED technology to enable new applications and markets in the Lighting world. 23 Lumileds Lighting. All rights reserved. Luxeon is a trademark of Lumileds Lighting, U.S., LLC. Product specifications are subject to change without notice. Lumileds may make process or materials changes affecting the performance or other characteristics of Luxeon. These products supplied after such change will continue to meet published specifications, but may not be identical to products supplied as samples or under prior orders. LUMILEDS www.luxeon.com www.lumileds.com Note: For more detailed technical information For technical assistance or the regarding Luxeon radiation patterns, location of your nearest Lumileds please consult your Lumileds Authorized sales office, call: Distributor or Lumileds sales representative. Worldwide: +1 48-435-644 US Toll free: 877-298-9455 Europe: +31 499 339 439 Asia: +65 6248 4759 Fax: 48-435-6855 Email us at info@lumileds.com Lumileds Lighting, U.S., LLC 37 West Trimble Road San Jose, CA 95131 Luxeon V Star 8 Document #: DS3 (2/4)