Features. Typical Applications. ProLight STAR/O with PG1C-1LxE Technical Datasheet Version: /04

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ProLight STAR/O with PG1C-1LxE Technical Datasheet Version: 1.2 Features High Flux per LED Various colors Good color uniformity More energy efficient than incandescent and most halogen lamps Low Voltage DC operated Instant light (less than 100ns) 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 2010/04

Table of Contents Part Number List Mechanical Dimensions Flux Characteristics of LED Electrical Characteristics of Module Optical Characteristics of Module Absolute Maximum Ratings Photometric Luminous Flux Bin Structure of LE Color Bin Dominant Wavelength Bin Structure Color Spectrum Light Output Characteristics Forward Current Characteristics Ambient Temperature vs. Maximum Forward Current Typical Representative Spatial Radiation Patter Part Number List Part Number Description LED module MCPCB Collimator P/N Holder P/N PG1C-1LxC PG1C-1LxE Star/O 15 Square Type PG1N-NX15 PG1N-SO02 PG1C-1LxG PG1C-1LxE Star/O 25 Square Type PG1N-NX23 PG1N-SO02 PG1C-1LxE PG1C-1LxH PG1C-1LxE Star/O 35 Square Type PG1C-NX36 PG1N-SO01 PG1C-1LxD PG1C-1LxE Star/O 45 Square Type PG1N-NX43 PG1N-SO02 2

Mechanical Dimensions and Illuminance Chart Part Number:PG1C-1LxC 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. Drawing not to scale. 4. All dimensions are in millimeters. *The appearance and specifications of the product may be modified for improvement without notice. 3

Mechanical Dimensions and Illuminance Chart Part Number:PG1C-1LxG 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. Drawing not to scale. 4. All dimensions are in millimeters. *The appearance and specifications of the product may be modified for improvement without notice. 4

Mechanical Dimensions and Illuminance Chart Part Number:PG1C-1LxH 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. Drawing not to scale. 4. All dimensions are in millimeters. *The appearance and specifications of the product may be modified for improvement without notice. 5

Mechanical Dimensions and Illuminance Chart Part Number:PG1C-1LxD 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. Drawing not to scale. 4. All dimensions are in millimeters. *The appearance and specifications of the product may be modified for improvement without notice. 6

Flux Characteristics of LED at 350mA, T J = 25 C Radiation Part Number LumiousFlux or Power Color Pattern Module Minimum Typical Lambertian White PG1C-1LWx 76.6 87 Warm White PG1C-1LVx 67.2 81 Red PG1C-1LRx 30.6 45 Amber PG1C-1LAx 30.6 47 Green PG1C-1LGx 58.9 66 Blue PG1C-1LBx 10.7 18 ProLight maintains a tolerance of ± 10% on flux and power measurements. Please do not drive at rated current more than 1 second without proper heat sink. Electrical Characteristics of Module at 350mA, T J = 25 C Forward Voltage V F (V) Color Min. Typ. Max. White 2.85 3.5 4.1 Warm White 2.85 3.5 4.1 Red 1.75 2.2 3.0 Amber 1.75 2.2 3.0 Green 2.85 3.5 4.1 Blue 2.85 3.5 4.1 Thermal Resistance Junction to Board ( C/ W) 15 15 15 15 15 15 Optical Characteristics of Module at 350mA, T J = 25 C Dominant Wavelength λd, or Color Temperature CCT PG1C-1LxC PG1C-1LxG PG1C-1LxH PG1C-1LxD Color Min. Typ. Max. VA BA X VA BA X VA BA X VA BA X White 4100 K 5500 K 10000 K 15 10 38 20 15 17 30 20 15 40 25 6 Warm White 2700 K 3300 K 4100 K 15 10 38 20 15 17 30 20 15 40 25 6 Red 613.5 nm 623 nm 631 nm 15 10 55 20 15 22 30 20 17 40 25 6 Amber 587 nm 592 nm 597 nm 15 10 55 20 15 22 30 20 17 40 25 6 Green 515 nm 525 nm 535 nm 15 10 55 20 15 22 30 20 17 40 25 6 Blue 455 nm 465 nm 475 nm 15 10 55 20 15 22 30 20 17 40 25 6 ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements. ProLight maintains a tolerance of ± 5% for CCT measurements. 7

Absolute Maximum Ratings Parameter DC Forward Current (ma) Peak Pulsed Forward Current (ma) Average Forward Current (ma) ESD Sensitivity (HBM per MIL-STD-883E Method 3015.7) LED Junction Temperature ( C) Aluminum-core PCB Temperature ( C) Storage & Operating Temperature ( C) White/Warm White/ Red/Amber/Green/Blue 350 500 350 ±4000V (Class III) 120 75-40 to +75 Photometric Luminous Flux Bin Structure Color White Bin Code T2 U1 Minimum Maximum Available Photometric Flux (lm) Photometric Flux (lm) Color Bins 76.6 87.4 All 87.4 99.6 Yx, Xx, Wx, Vx, Ux 1 Warm White T1 T2 U1 67.2 76.6 All 76.6 87.4 All 87.4 99.6 Sx, Rx 1 Red Q R S1 30.6 39.8 All 39.8 51.7 All 51.7 58.9 1 Amber Q R S1 30.6 39.8 All 39.8 51.7 All 51.7 58.9 1 Green S2 T1 T2 58.9 67.2 All 67.2 76.6 All 76.6 87.4 1 Blue L M N 10.7 13.9 A, 1 1 13.9 18.1 A, 1, 2 1 18.1 23.5 2 1 ProLight maintains a tolerance of ± 10% on flux and power measurements. The flux bin of the product may be modified for improvement without notice. 1 The rest of color bins are not 100% ready for order currently. Please ask for quote and order possibility. 8

y Color Bin White and Warm White Binning Structure Graphical Representation 0.48 0.46 0.44 3500 K 3250 K 3050 K 2850 K 2700 K 0.42 0.40 0.38 0.36 0.34 7000 K 5650 K 6300 K VN WN V0 XN W0 4500 K 5000 K TN UN T0 U0 4100 K S0 S1 3800 K R0 R1 Q0 Q1 P0 P1 Warm White N0 N1 M0 M1 Planckian (BBL) 0.32 0.30 10000 K Y0 YA X0 WP XP White 0.28 0.26 0.26 0.28 0.30 0.32 0.34 0.36 0.38 0.40 0.42 0.44 0.46 0.48 0.50 x 9

Color Bins Y0 YA CCT 8000KCCT 7000K CCT 6000K X0X1CCT WA W05500K V0 CCT 5000K V1 CCT 4500K White Bin Structure Bin Code x y Typ. CCT Typ. CCT Bin Code x y (K) (K) 0.378 0.382 0.329 0.345 T0 0.374 0.366 0.316 0.333 4300 WN 0.360 0.357 0.315 0.344 5970 0.362 0.372 0.329 0.357 0.382 0.397 0.329 0.331 TN 0.378 0.382 0.329 0.320 4300 WP 0.362 0.372 0.318 0.310 5970 0.365 0.386 0.317 0.320 0.362 0.372 0.308 0.311 U0 0.360 0.357 0.305 0.322 4750 X0 0.344 0.344 0.316 0.333 6650 0.346 0.359 0.317 0.320 0.365 0.386 0.305 0.322 UN 0.362 0.372 0.303 0.333 4750 XN 0.346 0.359 0.315 0.344 6650 0.347 0.372 0.316 0.333 0.329 0.331 0.308 0.311 V0 0.329 0.345 0.317 0.320 5320 XP 0.346 0.359 0.319 0.300 6650 0.344 0.344 0.311 0.293 0.329 0.345 0.308 0.311 VN 0.329 0.357 0.283 0.284 5320 Y0 0.347 0.372 0.274 0.301 8000 0.346 0.359 0.303 0.333 0.329 0.345 0.308 0.311 W0 0.329 0.331 0.311 0.293 5970 YA 0.317 0.320 0.290 0.270 8000 0.316 0.333 0.283 0.284 Tolerance on each color bin (x, y) is ± 0.01 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. 10

Color Bins Y0 YA CCT 8000KCCT 7000K CCT 6000K X0X1CCT WA W05500K V0 CCT 5000K V1 CCT 4500K Warm White Bin Structure Bin Code x y Typ. CCT Typ. CCT Bin Code x y (K) (K) 0.453 0.416 0.409 0.400 M0 0.444 0.399 0.402 0.382 2770 Q0 0.459 0.403 0.416 0.389 3370 0.467 0.419 0.424 0.407 0.460 0.430 0.414 0.414 M1 0.453 0.416 0.409 0.400 2770 Q1 0.467 0.419 0.424 0.407 3370 0.473 0.432 0.430 0.421 0.438 0.412 0.392 0.391 N0 0.429 0.394 0.387 0.374 2950 R0 0.444 0.399 0.402 0.382 3650 0.453 0.416 0.409 0.400 0.444 0.426 0.414 0.414 N1 0.438 0.412 0.409 0.400 2950 R1 0.453 0.416 0.392 0.391 3650 0.460 0.430 0.397 0.406 0.424 0.407 0.392 0.391 P0 0.416 0.389 0.387 0.374 3150 S0 0.429 0.394 0.374 0.366 3950 0.438 0.412 0.378 0.382 0.430 0.421 0.397 0.406 P1 0.424 0.407 0.392 0.391 3150 S1 0.438 0.412 0.378 0.382 3950 0.444 0.426 0.382 0.397 Tolerance on each color bin (x, y) is ± 0.01 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. 11

Dominant Wavelength Bin Structure Color Bin Code Minimum Dominant Wavelength (nm) Maximum Dominant Wavelength (nm) Red 2 4 613.5 620.5 620.5 631.0 Amber 2 4 6 7 587.0 589.5 589.5 592.0 592.0 594.5 594.5 597.0 Green A 1 2 3 515 520 520 525 525 530 530 535 Blue A 1 2 3 455 460 460 465 465 470 470 475 ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements. 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. 12

Color Spectrum, T J = 25 C 1. White 1.0 Relative Spectral Power Distribution 0.8 0.6 0.4 0.2 White Standard Eye Response Cruve 0.0 350 400 450 500 550 600 650 700 750 800 850 Wavelength(nm) 2. Warm White Relative Spectral Power Distribution 1.0 Standard Eye Response Cruve 0.8 0.6 0.4 0.2 Warm White 0.0 350 400 450 500 550 600 650 700 750 800 850 Wavelength(nm) 3. Blue Green Amber Red Relative Spectral Power Distribution 1.0 0.8 0.6 0.4 0.2 0.0 Blue Green Amber Red 400 450 500 550 600 650 700 Wavelength(nm) 13

Light Output Characteristics Relative Light Output vs. Junction Temperature at 350mA Relative Light Output (%) 160 140 120 100 80 60 40 20 White, Warm White Green Blue 0-20 1 20 20 3 40 4 60 5 80 6 100 7 120 8 Junction Temperature, T J ( ) 160 140 Red Amber Relative Light Output (%) 120 100 80 60 40 20 0-20 0 20 40 60 80 100 120 Junction Temperature, T J ( ) 14

Forward Current Characteristics, T J = 25 C 1. Forward Voltage vs. Forward Current Average Forward Current (ma) 400 350 300 250 200 150 100 50 0 White, Warm White, Green, Blue 0 0.5 1 1.5 2 2.5 3 3.5 4 Forward Voltage (V) Average Forward Current (ma) 400 350 300 250 200 150 100 50 0 Red, Amber 0 0.5 1 1.5 2 2.5 3 Forward Voltage (V) 2. Forward Current vs. Normalized Relative Luminous Flux Relative Luminous Flux 1.2 1.0 0.8 0.6 0.4 0.2 White, Warm White, Green, Blue Relative Luminous Flux 1.2 1.0 0.8 0.6 0.4 0.2 Red, Amber 0.0 0 100 200 300 400 0.0 0 100 200 300 400 Forward Current (ma) Forward Current (ma) 15

Ambient Temperature vs. Maximum Forward Current 1. White, Warm White, Green, Blue (T JMAX = 120 C, T Ambient = 75 C) 400 350 Forward Current (ma) 300 250 200 150 100 50 0 Rθ J-A = 60 C/W Rθ J-A = 50 C/W Rθ J-A = 40 C/W Rθ J-A = 30 C/W 0 25 50 75 100 125 150 Ambient Temperature ( ) 2. Red, Amber (T JMAX = 120 C, T Ambient = 75 C) 400 350 Forward Current (ma) 300 250 200 150 100 50 0 Rθ J-A = 60 C/W Rθ J-A = 50 C/W Rθ J-A = 40 C/W Rθ J-A = 30 C/W 0 25 50 75 100 125 150 Ambient Temperature ( ) 16

Typical Fig Representative 1. Forward Current vs. Spatial Forward Radiation Pattern Fig 2. Relative Luminous Flux vs. Spot Radiation Pattern Relative Intensity 1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0-100 -80-60 -40-20 0 20 40 60 80 100 Angular Displacement (Degrees) PG1C-1LxC PG1C-1LxG PG1C-1LxH PG1C-1LxD 17