MSL-204B UOT | Alldatasheet
Document overview
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Technical content
Features
l Package : white P-LCC-2 package with clear epoxy l Feature of the device : extremely wide viewing angle; ideal for backlighting and coupling in light guides l Wavelength : 640 nm (red), 625 nm (red) 605 nm (orange), 590 nm (amber), 573nm (green), 525 nm (true green), 470 nm (blue) l Viewing angle : Lambertian Emitter (120 o) l Technology : AlGaAs (red) AlInGaP (red, orange, amber, green) InGaN (True green, blue) l Optical efficiency : 1.5 lm/W (super-red, orange, yellow), 2.5 lm/W (green), 0.6 lm/W (pure green) l Grouping parameter : luminous intensity l Assembly methods : suitable for all SMT assembly methods l Soldering methods : IR reflow soldering and TTW soldering l Preconditioning : acc. to JEDEC Level 2 l Taping : 8-mm tape with 2000/reel, φ180mm
Applications
l Automotive : Dashboards , stop lamps , turn signals l Backlighting : LCDs , Key pads , advertising l Lighting : Signal & symbol luminare , marker lights Substitution of micor incandescent lamps l Displays : Indoor & outdoor signboards , Message boards l Status indicators : Comsumer & industrial electronics Technical Data ALLEDs Unity Opto Technology Co., Ltd.
Recommended Solder Patterns Method of Taping / Polarity and Orientation Packing unit 2000/reel Notes : 1. All dimensions are in millimeters (inches) 2. Polarity of MSL-204DR is inverted Unit : mm (inch) Notes : 1. All dimensions are in millimeters (inches) 2. Polarity of MSL-204DR is inverted
C1 : 0.28 ~ 0.36 P1 : 45 ~ 56 Unit C2 : 0.36 ~ 0.45 P2 : 56 ~ 71 UOL,SO B,UB,MB D1 : 0.45 ~ 0.56 Q1 : 71 ~ 90 UYL,UG TG,UTG D2 : 0.56 ~ 0.71 Q2 : 90 ~ 112 TUYL,TUOL MTG E1 : 0.71 ~ 0.90 R1 : 112 ~ 140 Operating Temp. range T OP oC E2 : 0.90 ~ 1.12 R2 : 140 ~ 180 Storage Temp. range T stg oC F1 : 1.12 ~ 1.40 S1 : 180 ~ 224 Junction temperature T j 125 110 oC F2 : 1.40 ~ 1.80 S2 : 224 ~ 280 Forward current I F mA G1 : 1.80 ~ 2.24 T1 : 280 ~ 355 Surge current I FM A G2 : 2.24 ~ 2.80 T2 : 355 ~ 450 t < 10ms, D=0.005 H1 : 2.80 ~ 3.55 U1 : 450 ~ 560 Reverse Voltage V R V H2 : 3.55 ~ 4.50 U2 : 560 ~ 710 Power dissipation P tot 80 85 mW J1 : 4.50 ~ 5.60 V1 : 710 ~ 900 Thermal resistance J2 : 5.60 ~ 7.10 V2 : 900 ~ 1120 (Junction/ambient) K1 : 7.10 ~ 9.00 AA : 1120 ~ 1400 Thermal resistance K2 : 9.00 ~ 11.20 AB : 1400 ~ 1800 (Junction/soldering point) L1 : 11.20 ~ 14.00 BA : 1800 ~ 2240 mounted on PC board FR4 (pad size 16 mm2) L2 : 14.00 ~ 18.00 BB : 2240 ~ 2800 M1 : 18.00 ~ 22.40 CA : 2800 ~ 3550 M2 : 22.40 ~ 28.00 CB : 3550 ~ 4500 N1 : 28.00 ~ 35.50 DA : 4500 ~ 5600 N2 : 35.50 ~ 45.00 DB : 5600 ~ 7100 Luminous intensity is tested at a current pulse duration MSL-204MTG Green 500 1440 Colorless clear MSL-204MB Blue 120 345 180 870 520 440 150 350 440 Luminous Flux FV (mlm) @ 20mA 120 230 410 810 230 Luminous Intensity IV (mcd) @ 20mA Orange Red Red Part Number Yellow-Green Color of Emission Blue MSL-204SO MSL-204UOL MSL-204DR of 25 ms and an accuracy of +/- 11% MSL-204UB MSL-204TG MSL-204UTG MSL-204UG MSL-204UYL Yellow Selection Guide MSL-204B Color of the Light Emitting Area Blue Green Green R th JA Luminous Intensity Groups MSL-204HW White White 130 -40 ~ +100 0.5 280 180 K/WR th JS 1160400 580 K/W500 400 -40 ~ +100 Value 200 Symbol 140 200 580 380 280 120 150 150 300 Parameter MSL-204TUYL MSL-204TUOL MSL-204MW White MSL-204UW White Yellow Red MSL-204W
Optical Characteristics at TA=25oC Color, Viewing Optical Temperature Spectral Peak Dominant Angle Efficiency Coefficient Bandwidth Part Number Wavelength Wavelength 2q 1/2 @IF=20mA of VF at 50% lpeak (nm) ld (nm) (Degrees) (lm / W) @IF=20mA,Tcv Irel max Typ. Typ. Typ. (mV /K) (nm) MSL-204B 468 470 120 2 -2.6 26 MSL-204UB 468 470 120 3 -2.6 26 MSL-204MB 468 470 120 6 -1.6 27 MSL-204TG 523 525 120 6 -3.1 36 MSL-204UTG 518 525 120 11 -3.1 35 MSL-205MTG 518 525 121 18 -3.1 35 MSL-204UG 576 572 120 6 -2.6 16 MSL204UYL 592 590 120 9 -2.3 16 MSL-204SO 611 605 120 11 -2.3 20 MSL-204UOL 633 625 120 11 -2.3 20 MSL-204DR 657 640 120 4 -2.5 20 MSL-204TUYL 594 592 120 9 -2.3 16 MSL-204TUOL 633 625 120 11 -2.3 20 Viewing Angle Optical 2q 1/2 Efficiency x y (Degrees) @IF=20mA Typ. Typ. Typ. (lm / W) MSL-204W 0.33 0.33 120 4 MSL-204UW 0.33 0.33 120 6 MSL-204MW 0.33 0.33 120 6 MSL-204HW 0.33 0.33 120 5 Thermal Thermal Resistance Resistance Device Type RqJ-S (oC/W) RqJ-A(oC/W) MSL-204B - 3.5 4.0 0.01 10 180 400 MSL-204UB - 3.5 4.0 0.01 10 180 400 MSL-204MB - 3.5 4.0 0.01 10 180 400 MSL-204TG - 3.5 4.0 0.01 10 180 400 MSL-204UTG - 3.5 4.0 0.01 10 180 400 MSL-204MTG - 3.5 4.0 0.01 10 180 400 MSL-204UG - 2.0 2.5 0.01 10 280 500 MSL-204UYL - 2.0 2.5 0.01 10 280 500 MSL-204SO - 2.0 2.5 0.01 10 280 500 MSL-204UOL - 2.0 2.5 0.01 10 280 500 MSL-204DR - 1.8 2.4 0.01 10 280 500 MSL-204TUYL - 2.0 2.7 0.01 10 280 500 MSL-204TUOL - 2.0 2.7 0.01 10 280 500 MSL-204W 3.5 4.0 0.01 10 180 400 MSL-204UW 3.5 4.0 0.01 10 180 400 MSL-204MW 3.5 4.0 0.01 10 180 400 MSL-204HW 3.4 4.0 0.01 50 180 400 Voltages are tested at a current pulse dration of 1 ms and a accuracy of ±0.05V 28 50 90 180 Part Number Chromaticity Coordinates (Typ.) IV (mcd) @ 20mA Intensity Luminous Typ. 140 150 VF (Volts) @ VR = 5V Forward Reverse Voltage Current @IF = 20mA IR (uA) IV (mcd) @ 20mA 500280 12070 140 22.4 Typ. 150 140 35.5 300 Luminous Intensity 120 Min. 280 35.5 Temperature Coefficient of VF @IF=20mA, Tcv 200 -2.6 (mV /K) -2.6 -2.6 130 200 400 -2.6
Relative spektrale Emission Irel = f (l), TA = 25oC, IF = 20mA V(l) = Standard eye response curve Forward Current IF = f (VF) Relative Luminous Intensity IV/IV (20mA) = f (IF) TA = 25oC TA = 25oC Max. Permissible Forward Current IF = f (TA) Radiation Characteristic Irel = f (j) IF GREEN/BLUE RED/ORANGE/ YELLOW VF IV IF 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 0 10 20 30 40mA TA TS IF 0 20 40 60 80 100 mA T (oC) Irel λ redorangeambergreen 100 400 450 500 550 600 650 700 true greenblue Vλ 0o 10o 20o 30o 40o 50o 60o 70o 80o 90o 0.8 0.9 1.0 TA temp. ambient TS temp. solder point
IR Reflow Soldering Profile Time Pre-heating 120~150oC Temp 120sec. Max. 40sec. Max. Above 200oC 2.5~5oC / sec. 2.5~5oC / sec. Temperature-Profile 240oC Max. 5sec. Max.
C1 : 0.28 ~ 0.36 P1 : 45 ~ 56 C2 : 0.36 ~ 0.45 P2 : 56 ~ 71 D1 : 0.45 ~ 0.56 Q1 : 71 ~ 90 D2 : 0.56 ~ 0.71 Q2 : 90 ~ 112 E1 : 0.71 ~ 0.90 R1 : 112 ~ 140 E2 : 0.90 ~ 1.12 R2 : 140 ~ 180 F1 : 2.12 ~ 1.40 S1 : 180 ~ 224 F2 : 1.40 ~ 1.80 S2 : 224 ~ 280 G1 : 1.80 ~ 2.24 T1 : 280 ~ 355 G2 : 2.24 ~ 2.80 T2 : 355 ~ 450 H1 : 2.80 ~ 3.55 U1 : 450 ~ 560 H2 : 3.55 ~ 4.50 U2 : 560 ~ 710 J1 : 4.50 ~ 5.60 V1 : 710 ~ 900 J2 : 5.60 ~ 7.10 V2 : 900 ~ 1120 K1 : 7.10 ~ 9.00 AA : 1120 ~ 1400 K2 : 9.00 ~ 11.20 AB : 1400 ~ 1800 L1 : 11.20 ~ 14.00 BA : 1800 ~ 2240 L2 : 14.00 ~ 18.00 BB : 2240 ~ 2800 M1 : 18.00 ~ 22.40 CA : 2800 ~ 3550 M2 : 22.40 ~ 28.00 CB : 3550 ~ 4500 N1 : 28.00 ~ 35.50 DA : 4500 ~ 5600 N2 : 35.50 ~ 45.00 DB : 5600 ~ 7100 Luminous intensity is tested at a current pulse duration minimum maximum minimum maximum minimum maximum UOL Red 615 621 621 627 627 633 TG Green 519 525 525 531 531 537 B Blue 464 468 468 472 472 476 Wavelength groups are tested at a current pulse duration of 25 ms and an accuracy of +/- 1nm P/N BIN A Luminous Intensity Group of 25 ms and an accuracy of +/- 11% CB Dominant Wavelength (in nanometers) @ IF=20mA Unity ALLED Bin Codes B Category Code C
C1 : 0.28 ~ 0.36 P1 : 45 ~ 56 C2 : 0.36 ~ 0.45 P2 : 56 ~ 71 D1 : 0.45 ~ 0.56 Q1 : 71 ~ 90 D2 : 0.56 ~ 0.71 Q2 : 90 ~ 112 E1 : 0.71 ~ 0.90 R1 : 112 ~ 140 E2 : 0.90 ~ 1.12 R2 : 140 ~ 180 F1 : 2.12 ~ 1.40 S1 : 180 ~ 224 F2 : 1.40 ~ 1.80 S2 : 224 ~ 280 G1 : 1.80 ~ 2.24 T1 : 280 ~ 355 G2 : 2.24 ~ 2.80 T2 : 355 ~ 450 H1 : 2.80 ~ 3.55 U1 : 450 ~ 560 H2 : 3.55 ~ 4.50 U2 : 560 ~ 710 J1 : 4.50 ~ 5.60 V1 : 710 ~ 900 J2 : 5.60 ~ 7.10 V2 : 900 ~ 1120 K1 : 7.10 ~ 9.00 AA : 1120 ~ 1400 K2 : 9.00 ~ 11.20 AB : 1400 ~ 1800 L1 : 11.20 ~ 14.00 BA : 1800 ~ 2240 L2 : 14.00 ~ 18.00 BB : 2240 ~ 2800 M1 : 18.00 ~ 22.40 CA : 2800 ~ 3550 M2 : 22.40 ~ 28.00 CB : 3550 ~ 4500 N1 : 28.00 ~ 35.50 DA : 4500 ~ 5600 N2 : 35.50 ~ 45.00 DB : 5600 ~ 7100 Luminous intensity is tested at a current pulse duration of 25 ms and an accuracy of ± 11% X Y X Y X Y X Y Chromaticity coordinate groups are tested at a current pulse duration of 25 ms and a tolerance of ±0.01 Luminous Intensity Group Dominant Wavelength (in nanometers) @ IF=20mA Bin Code 2 3 4 Unity White ALLED Bin Codes C B Category Code
Surface Mount Moisture Sensitivity Specifications 1. Controlling Moisture Unity Opto Technology, in its design of packing materials and packing methods, takes into consideration the susceptibility of some Unity packages to moisture induced damage. The risk of this damage is caused when the LED lens plastic encapsulation material is exposed to increases or decreases in the Relative Humidity of the surrounding environment. Such damage may include delamination between the die and the LED lens plastic encapsulation material, which may result in open connections due to broken wire bonds. Moisture in the package having reached a critical level will fracture the package in order to escape when exposed to peak temperature conditions, typical in soldering practices. Therefore, the control of moisture levels in the LED package is critical to reduce the risk of moisture-induced failures. Please follow JEDEC-STD-033A standards for handling moisture sensitive devices. 2. Packaging SMD devices: Unity packages all SMD devices into dry pack bags (moisture barrier bags). Unity includes a desiccant pouch in each bag. Testing confirms that the desiccant pouch greatly reduces the presence of moisture by maintaining the environment in the bag, thus protecting the devices during shipment and storage. 3. Handling Dry Packed Parts Upon receipt, the bags should be inspected for damage to ensure that the bag’s integrity has been maintained. Inspection should verify that there are no holes, gouges, tears, or punctures of any kind that may expose the contents of the bag. To open the bag, simply cut across the top of the bag as close to the original seal as possible being careful not to damage the contents. Once open the desired quantity of units should be removed and the bag resealed. If the bag is left open longer than 2 hours, the desiccant pouch should be replaced with a dry desiccant and the bag should be sealed immediately to avoid moisture damage.