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Technology Corporation ProLight PG1M-3LXP-3SC 9W Power LED Module Technical Datasheet Version: 1.1 Features High flux per LED Very long operating life(up to 1k hours) Various colors Good color uniformity RoHS compliant More energy efficient than incandescent and most halogen lamps Low Voltage DC operated Instant light (less than 1ns) No UV Superior ESD protection Typical Applications Reading lights (car, bus, aircraft) Portable (flashlight, bicycle) Uplighters/Downlighters Decorative/Entertainment Bollards/Security/Garden Cove/Undershelf/Task Indoor/Outdoor Commercial and Residential Architectural Automotive Ext (Stop-Tail-Turn, CHMSL, Mirror Side Repeat) 1

Mechanical Dimensions Notes: 1. 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. 2. Drawing not to scale. 3. All dimensions are in millimeters. 4. All dimendions without tolerances are for reference only. *The appearance and specifications of the product may be modified for improvement without notice. 2

Flux Characteristics at 7mA, T J = 25 C Radiation Part Number Lumious Flux Φ V (lm) Color Pattern Module Minimum Typical Lambertian White PG1M-3LWP-3SC 155.1 33 Warm White PG1M-3LVP-3SC 155.1 3 Green PG1M-3LGP-3SC 21.6 285 Blue PG1M-3LBP-3SC 41.7 78 Red PG1M-3LRP-3SC 119.4 24 ProLight maintains a tolerance of ± 1% on flux and power measurements. Please do not drive at rated current more than 1 second without proper heat sink. Electrical Characteristics at 7mA, T J = 25 C Temperature Thermal Coefficient of Resistance Forward Voltage V F (V) Dynamic V F (mv/ C) Junction to Color Min. Typ. Max. Resistance (Ω) ΔV F / ΔT J Board ( C/ W) White 8.4 1.5 12. 1. -2. 3 Warm White 8.4 1.5 12. 1. -2. 3 Green 8.4 1.5 12. 1. -2. 3 Blue 8.4 1.5 12. 1. -2. 3 Red 5.7 6.6 9.3 2.4-2. 3 Optical Characteristics at 7mA, T J = 25 C Temperature Coefficient of Total Dominant Wavelength λ D, Spectral Dominant included Viewing or Color Temperature CCT Half-width Wavelength Angle Angle Radiation (nm) (nm/ C) (degrees) (degrees) Color Pattern Min. Typ. Max. Δλ 1/2 Δλ D / ΔT J θ.9v 2 θ 1/2 Lambertian White 41 K 55 K 1 K --- --- 16 14 Warm White 27 K 33 K 41 K --- --- 16 14 Green 52 nm 53 nm 54 nm 35.4 16 14 Blue 455 nm 465 nm 475 nm 25.4 16 14 Red 61 nm 62 nm 631 nm 2.5 16 14 ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements. ProLight maintains a tolerance of ± 5% for CCT measurements. 3

Absolute Maximum Ratings Parameter White/Warm White/ Green/Blue Red DC Forward Current (ma) 7 77 Peak Pulsed Forward Current (ma) 1 11 Average Forward Current (ma) 7 7 ESD Sensitivity ±16V HBM LED Junction Temperature ( C) 135 12 Aluminum-core PCB Temperature ( C) 15 15 Storage & Operating Temperature ( C) -4 to +15-4 to +15 Soldering Temperature( C) 26 for 5 seconds Max. Photometric Luminous Flux Bin Structure of Each LED Color Bin Code Minimum Photometric Flux (lm) Maximum Photometric Flux (lm) White S T U V 51.7 67.2 67.2 87.4 87.4 113.6 113.6 147.7 Warm White S T U V 51.7 67.2 67.2 87.4 87.4 113.6 113.6 147.7 Green T U V 67.2 87.4 87.4 113.6 113.6 147.7 Blue M N P Q 13.9 18.1 18.1 23.5 23.5 3.6 3.6 39.8 Red S T 51.7 67.2 67.2 87.4 ProLight maintains a tolerance of ± 1% on flux and power measurements. 4

Color Bin White and Warm White Binning Structure Graphical Representation.48 y.46.44.42.4.38.36.34.32.3.28 1 K 7 K Y YA 63 K 565 K WM XM WN XN W X WP WQ XP VM VN V VP 5 K 325 K 35 K 285 K 27 K 35 K MM NM 38 K PM QM M1 41 K RM N1 P1 45 K SM Q1 M R1 N Planckian TM P S1 Q MA (BBL) R NA UM TN PA S QA UN T RA SA U TP Warm White UP White.26.26.28.3.32.34.36.38.4.42.44.46.48.5 x 5

Color Bins White Bin Structure Bin Code x y Typ. CCT Typ. CCT Bin Code x y (K) (K).378.382.329.345 T.374.366 43 W.329.331.36.357.317.32 597.362.372.316.333.382.397.329.345 TN.378.382 43 WN.316.333.362.372.315.344 597.365.386.329.357.374.366.329.331 TP.37.351 43 WP.329.32.357.342.318.31 597.36.357.317.32.386.413.329.32 TM.382.397 43 WQ.329.31.365.386.319.3 597.367.4.318.31.362.372.329.369 U.36.357 475 WM.329.357.344.344.315.344 597.346.359.314.355.365.386.38.311 UN.362.372 475 X.35.322.346.359.316.333 665.347.372.317.32.36.357.35.322 UP.357.342 475 XN.33.333.343.331.315.344 665.344.344.316.333.365.386.38.311 UM.367.4 475 XP.317.32.348.385.319.3 665.347.372.311.293.329.331.31.342 V.329.345 532 XM.314.355.346.359.315.344 665.344.344.33.333.329.345.38.311 VN.329.357 532 Y.283.284.347.372.274.31 8.346.359.33.333.329.331.38.311 VP.344.344 532 YA.311.293.343.331.29.27 8.329.32.283.284.329.357 VM.329.369.348.385 532.347.372 Tolerance on each color bin (x, y) is ±.1 Note: Although several bins are outlined, product availability in a particular bin varies by production run and by product performance. Not all bins are available in all colors. 6

Color Bins Warm White Bin Structure Bin Code x y Typ. CCT Typ. CCT Bin Code x y (K) (K).453.416.49.4 M.444.399 277 Q.42.382.459.43.416.389 337.467.419.424.47.46.43.414.414 M1.453.416 277 Q1.49.4.467.419.424.47 337.473.432.43.421.459.43.416.389 MA.444.399 277 QA.42.382.436.384.396.367 337.451.389.41.374.471.451.421.433 MM.46.43 277 QM.414.414.473.432.43.421 337.486.455.438.44.438.412.392.391 N.429.394 295 R.387.374.444.399.42.382 365.453.416.49.4.444.426.414.414 N1.438.412 295 R1.49.4.453.416.392.391 365.46.43.397.46.444.399.387.374 NA.429.394 295 RA.383.36.422.379.396.367 365.436.384.42.382.454.446.421.433 NM.444.426 295 RM.414.414.46.43.397.46 365.471.451.42.423.424.47.392.391 P.416.389 315 S.387.374.429.394.374.366 395.438.412.378.382.43.421.397.46 P1.424.47 315 S1.392.391.438.412.378.382 395.444.426.382.397.429.394.387.374 PA.416.389 315 SA.383.36.41.374.37.351 395.422.379.374.366.438.44.42.423 PM.43.421 315 SM.397.46.444.426.382.397 395.454.446.386.413 Tolerance on each color bin (x, y) is ±.1 Note: Although several bins are outlined, product availability in a particular bin varies by production run and by product performance. Not all bins are available in all colors. 7

Dominant Wavelength Bin Structure Color Bin Code Minimum Dominant Wavelength (nm) Maximum Dominant Wavelength (nm) Green 1 2 3 4 52 525 525 53 53 535 535 54 Blue A 1 2 3 455 46 465 47 46 465 47 475 Red 1 2 4 61 613.5 62.5 613.5 62.5 631. ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements. 8

Color Spectrum, T J = 25 C 1. White Relative Spectral Power Distribution 1..8.6.4.2 White Standard Eye Response Cruve. 35 4 45 5 55 6 65 7 75 8 85 Wavelength(nm) 2. Warm White Relative Spectral Power Distribution 1. Standard Eye Response Cruve.8.6.4.2 Warm White. 35 4 45 5 55 6 65 7 75 8 85 Wavelength(nm) 3. Blue Green Red Relative Spectral Power Distribution 1..8.6.4.2 Blue Green Red. 4 45 5 55 6 65 7 Wavelength(nm) 9

Light Output Characteristics Relative Light Output vs. Junction Temperature at 7mA Relative Light Output (%) 16 14 12 1 8 6 4 2 White, Warm White Green Blue -2 1 2 2 3 44 6 5 8 6 1 7 12 8 Junction Temperature, T J ( ) Relative Light Output (%) 16 14 12 1 8 6 4 2 Red -2 1 2 2 3 44 6 5 8 6 1 7 12 8 Junction Temperature, T J ( ) 1

Forward Current Characteristics, T J = 25 C 1. Forward Voltage vs. Forward Current Average Forward Current (ma) 8 7 6 5 4 3 2 1 White, Warm White, Green, Blue 2 4 6 8 1 12 Average Forward Current (ma) 8 7 6 5 4 3 2 1 Red 2 4 6 8 1 12 Forward Voltage (V) Forward Voltage (V) 2. Forward Current vs. Normalized Relative Luminous Flux 1.2 1. White, Warm White, Green, Blue 1.2 1 Red Relative Luminous Flux.8.6.4.2. 2 4 6 8 Forward Current (ma) Relative Luminous Flux.8.6.4.2 2 4 6 8 Forward Current (ma) 11

Ambient Temperature vs. Maximum Forward Current 1. White, Warm White, Green, Blue (T JMAX = 135 C) Forward Current (ma) 8 7 6 5 4 3 2 1 Rθ J-A = 1 C/W Rθ J-A = 8.3 C/W Rθ J-A =6.6 C/W Rθ J-A = 5 C/W 25 5 75 1 125 15 Ambient Temperature ( ) 2. Red (T JMAX = 12 C) 8 Forward Current (ma) 7 6 5 4 3 2 1 Rθ J-A = 1 C/W Rθ J-A = 8.3 C/W Rθ J-A = 6.6 C/W Rθ J-A = 5 C/W 25 5 75 1 125 15 Ambient Temperature ( ) 12

Typical Representative Spatial Radiation Pattern Lambertian Radiation Pattern Relative Intensity (%) 1.9.8.7.6.5.4.3.2.1-9 -8-7 -6-5 -4-3 -2-1 1 2 3 4 5 6 7 8 9 Angular Displacement (Degrees) 13