Features. ProLight PM6B-3LFx 3W RGB Power LED Technical Datasheet Version: /03

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ProLight PM6B-3LFx 3W RGB Power LED Technical Datasheet Version: 1.7 Features R, G, B three color in one Package High flux per LED Good color uniformity Lead free reflow soldering More energy efficient than incandescent and most halogen lamps Low Voltage DC operated Instant light (less than 100ns) No UV 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) LCD backlights 1 2013/03

Emitter Mechanical Dimensions TOP VIEW BOTTOM VIEW Notes: 1. The Anode side of the device is denoted by a hole in the lead frame. 2. Electrical insulation between the case and the board is required. Do not electrically connect either the anode or cathode to the slug. 3. Drawing not to scale. 4. All dimensions are in millimeters. 5. Unless otherwise indicated, tolerances are ± 0.20mm. 6. Please do not bend the leads of the LED, otherwise it will damage the LED. 7. Please do not use a force of over 3kgf impact or pressure on the lens of the LED, otherwise it will cause a catastrophic failure. *The appearance and specifications of the product may be modified for improvement without notice. 2

Star Mechanical Dimensions 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. 5. Unless otherwise indicated, tolerances are ± 0.20mm. 6. Please do not use a force of over 3kgf impact or pressure on the lens of the LED, otherwise it will cause a catastrophic failure. *The appearance and specifications of the product may be modified for improvement without notice. 3

Flux Characteristics at 350mA, T J = 25 C Radiation Part Number Lumious Flux Φ V (lm) Color Pattern Emitter Star Minimum Typical Lambertian Red 32 38 Green PM6B-3LFE PM6B-3LFS 65 76 Blue 14.5 17 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. Optical Characteristics at 350mA, T J = 25 C Color Dominant Wavelength λ D, Total included Angle (degrees) Viewing Angle (degrees) Min. Typ. Max. θ 0.90V 2 θ 1/2 Red 613.5 nm 623 nm 631 nm 180 130 Green 515 nm 525 nm 535 nm 180 130 Blue 455 nm 465 nm 475 nm 180 130 ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements. Electrical Characteristics at 350mA, T J = 25 C Forward Voltage V F (V) Color Min. Typ. Max. Red 1.75 2.2 3.1 Green 2.85 3.4 4.1 Blue 2.85 3.4 4.1 4

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 Operating Board Temperature at Maximum DC Forward Current Storage Temperature Soldering Temperature Allowable Reflow Cycles Reverse Voltage Red/Green/Blue 350 500 (less than 1/10 duty cycle@1khz) 350 > ±500V 120 C -40 C - 105 C -40 C - 120 C JEDEC 020c 260 C 3 Not designed to be driven in reverse bias 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 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. 5

Relative Light Output (%) Relative Spectral Power Distribution Color Spectrum, T J = 25 C 1. Blue Green Red 1.0 0.8 Blue Green Red 0.6 0.4 0.2 0.0 400 450 500 550 600 650 700 Wavelength (nm) Light Output Characteristics Relative Light Output vs. Junction Temperature at 350mA 160 140 120 100 80 60 40 20 Red Green Blue 0-20 1 20 20 3 404 60 5 80 6 100 7 120 8 Junction Temperature, T J ( ) 6

Relative Luminous Flux Relative Luminous Flux Average Forward Current (ma) Average Forward Current (ma) Forward Current Characteristics, T J = 25 C 1. Forward Voltage vs. Forward Current 400 350 Green, Blue 400 350 Red 300 300 250 250 200 200 150 150 100 100 50 50 0 0 0.5 1 1.5 2 2.5 3 3.5 4 0 0 0.5 1 1.5 2 2.5 3 Forward Voltage (V) Forward Voltage (V) 2. Forward Current vs. Normalized Relative Luminous Flux 1.2 1.0 Green, Blue 1.2 1.0 Red 0.8 0.8 0.6 0.6 0.4 0.4 0.2 0.2 0.0 0 100 200 300 400 0.0 0 100 200 300 400 Forward Current (ma) Forward Current (ma) 7

Relative Intensity Typical Representative Spatial Radiation Pattern Lambertian Radiation Pattern 1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0-90 -80-70 -60-50 -40-30 -20-10 0 10 20 30 40 50 60 70 80 90 Angular Displacement (Degrees) 8

Qualification Reliability Testing Stress Test Stress Conditions Stress Duration Failure Criteria Room Temperature Operating Life (RTOL) Wet High Temperature Operating Life (WHTOL) Wet High Temperature Storage Life (WHTSL) High Temperature Storage Life (HTSL) Low Temperature Storage Life (LTSL) 25 C, I F = max DC (Note 1) 85 C/60%RH, I F = max DC (Note 1) 85 C/85%RH, non-operating 110 C, non-operating -40 C, non-operating 1000 hours 1000 hours 1000 hours 1000 hours 1000 hours Non-operating Non-operating -40 C to 120 C, 30 min. dwell, -40 C to 120 C, 20 min. dwell, Temperature Cycle (TMCL) Thermal Shock (TMSK) <5 min. transfer <20 sec. transfer 200 cycles 200 cycles Mechanical Shock 1500 G, 0.5 msec. pulse, 5 shocks each 6 axis Note 3 Natural Drop On concrete from 1.2 m, 3X Note 3 Variable Vibration Frequency Solderability 10-2000-10 Hz, log or linear sweep rate, 20 G about 1 min., 1.5 mm, 3X/axis Steam age for 16 hrs., then solder dip at 260 C for 5 sec. Note 3 Solder coverage on lead Notes: 1. Depending on the maximum derating curve. 2. Criteria for judging failure Item Test Condition Criteria for Judgement Min. Max. Forward Voltage (V F ) I F = max DC -- Initial Level x 1.1 Luminous Flux or Radiometric Power (Φ V ) I F = max DC Initial Level x 0.7 -- Reverse Current (I R ) V R = 5V -- 50 μa * The test is performed after the LED is cooled down to the room temperature. 3. A failure is an LED that is open or shorted. 9

Recommended Solder Pad Design All dimensions are in millimeters. Electrical isolation is required between Slug and Solder Pad. 10

Reflow Soldering Condition Profile Feature Sn-Pb Eutectic Assembly Pb-Free Assembly Average Ramp-Up Rate (T Smax to T P ) 3 C / second max. 3 C / second max. Preheat Temperature Min (T Smin ) 100 C 150 C Temperature Max (T Smax ) 150 C 200 C Time (t Smin to t Smax ) 60-120 seconds 60-180 seconds Time maintained above: Temperature (T L ) 183 C 217 C Time (t L ) 60-150 seconds 60-150 seconds Peak/Classification Temperature (T P ) 240 C 260 C Time Within 5 C of Actual Peak Temperature (t P ) 10-30 seconds 20-40 seconds Ramp-Down Rate 6 C/second max. 6 C/second max. Time 25 C to Peak Temperature 6 minutes max. 8 minutes max. We recommend using the M705-S101-S4 solder paste from SMIC (Senju Metal Industry Co., Ltd.) for lead-free soldering. All temperatures refer to topside of the package, measured on the package body surface. Repairing should not be done after the LEDs have been soldered. When repairing is unavoidable, a double-head soldering iron should be used. It should be confirmed beforehand whether the characteristics of the LEDs will or will not be damaged by repairing. Reflow soldering should not be done more than three times. When soldering, do not put stress on the LEDs during heating. After soldering, do not warp the circuit board. 11

Emitter Tube Packaging Star Tube Packaging Notes: 1. Emitter 50 pieces per tube and Star 20 pieces per tube. 2. Drawing not to scale. 3. All dimensions are in millimeters. 4. All dimendions without tolerances are for reference only. **Please do not open the moisture barrier bag (MBB) more than one week. This may cause the leads of LED discoloration. We recommend storing ProLight s LEDs in a dry box after opening the MBB. The recommended storage conditions are temperature 5 to 30 C and humidity less than 40% RH. 12

Precaution for Use Storage Please do not open the moisture barrier bag (MBB) more than one week. This may cause the leads of LED discoloration. We recommend storing ProLight s LEDs in a dry box after opening the MBB. The recommended storage conditions are temperature 5 to 30 C and humidity less than 40% RH. It is also recommended to return the LEDs to the MBB and to reseal the MBB. The slug is is not electrically neutral. Therefore, we recommend to isolate the heat sink. We recommend using the M705-S101-S4 solder paste from SMIC (Senju Metal Industry Co., Ltd.) for lead-free soldering. Any mechanical force or any excess vibration shall not be accepted to apply during cooling process to normal temperature after soldering. Please avoid rapid cooling after soldering. Components should not be mounted on warped direction of PCB. Repairing should not be done after the LEDs have been soldered. When repairing is unavoidable, a heat plate should be used. It should be confirmed beforehand whether the characteristics of the LEDs will or will not be damaged by repairing. This device should not be used in any type of fluid such as water, oil, organic solvent and etc. When cleaning is required, isopropyl alcohol should be used. When the LEDs are illuminating, operating current should be decide after considering the package maximum temperature. The appearance, specifications and flux bin of the product may be modified for improvement without notice. Please refer to the below website for the latest datasheets. http://www.prolightopto.com/ 13