JRGB1316LS PLCC-6 Type Tri-color Features PLCC-6 Type, Milky White resin Package Product features ・Outer Dimension 6.0 x 6.0 x 1.6mm ( L x W x H ) ・Temperature range Storage Temperature : -40℃~100℃ Operating Temperature: -40℃~85℃ ・Lead–free soldering compatible ・RoHS compliant Dominant wavelength Blue Green Red : 470nm : 525nm : 625nm Half Intensity Angle 120 deg. Die materials Blue, Green Red Rank grouping parameter Sorted by chromaticity per rank taping Assembly method Auto pick & place machine (Auto Mounter) Soldering methods Reflow soldering and manual soldering Taping and reel 1,000pcs per reel in a 12mm width tape. (Standard) Reel diameter: φ180mm : InGaN : AlGaInP Recommended Applications Cellular Phone, Electric Household Appliances, Amusement Equipment, Other General Applications 2009.3.23 Page 1 JRGB1316LS PLCC-6 Type Tri-color Color and Luminous Intensity (Ta=25℃) < One L E D Die lig hte d> Part No. J RGB1316L S Material Emitted Color InGa N Blue InGa N Gre e n AlGa InP Re d Lens Color Milky White Dominant Wavelength Luminous Intens ity λ d (nm) Iv (mc d) T YP. IF MIN. T YP. IF 470 10 - 220 10 525 20 - 1,100 20 625 30 - 480 30 < White S orting of S imulta ne ous RGB L ig hting > Part No. Emitted Color Total Luminous Intens ity Iv (mc d) MIN. T YP . Blue J RGB1316L S Gre e n Re d 2009.3.23 IF Chromatic ity Coordinates x T YP . y T YP . 0.29 0.29 10 - 1,800 20 30 Page 2 JRGB1316LS PLCC-6 Type Tri-color Absolute Maximum Ratings (Ta=25℃) Item Symbol Power Dissipation Pd Total Value of Power Dissipation Pd Absolute Maximum Ratings Blue Green Red 120 168 140 360※ 1 Unit mW mW One Diode Lighted IF 30 40 45 mA All Diodes Lighted IF 20 35 45 mA One Diode Lighted IFRM 150 150 150 mA All Diodes Lighted IFRM 120 120 120 mA ⊿ IF 0.8 1.0 1.0 mA/℃ ⊿ IFRM 3.6 3.6 3.6 mA/℃ ⊿ IF 0.6 1.0 1.0 mA/℃ ⊿ IFRM 3.6 3.6 3.6 mA/℃ Reverse Voltage VR 5 5 5 V Operating Temperature T opr -40~ +85 ℃ Storage Temperature Tstg -40~ +100 ℃ Forward Current Pulse Forward Current ※ 2 One Diode Lighted Derating (Ta=60℃ or higher) All Diodes Lighted ※1 The maximum Power Dissipation at the time of Simultaneous RGB Lighting (White lighting) ※2 IFRM Measurement condition : Pulse Width≦1ms., Duty≦1/20. 2009.3.23 Page 3 JRGB1316LS PLCC-6 Type Tri-color Electro-Optical Characteristics Item Conditions (Ta=25℃) Characteristics Symbol Blue Green Red TYP. 3.07 3.2 2.35 MAX. 3.8 4.0 3.0 Unit Blue:IF=10mA Green:IF=20mA Red:IF=30mA VF Reverse Current VR =5V IR MAX. 100 100 100 μA Dominant Wavelength Blue:IF=10mA Green:IF=20mA Red:IF=30mA λd TYP. 470 525 625 nm Spectral Line Half Width Blue:IF=10mA Green:IF=20mA Red:IF=30mA ⊿λ TYP. 19 32 18 nm 2 θ1/2 TYP. 120 120 120 deg. Forward Voltage Blue:IF=10mA Half Intensity Angle Green:IF=20mA Red:IF=30mA 2009.3.23 V Page 4 JRGB1316LS PLCC-6 Type Tri-color Sorting Chart for Chromaticity Coordinates (Ta=25℃) <White Sorting of Simultaneous RGB Lighting> LEFT DOWN point LEFT UP point RIGHT UP point RIGHT UP point Condtions Rank x y x y x y x y A 0.240 0.330 0.240 0.380 0.290 0.390 0.290 0.340 Blue B 0.290 0.340 0.290 0.390 0.340 0.410 0.340 0.360 IF =10mA C 0.340 0.360 0.340 0.410 0.390 0.420 0.390 0.370 Green D 0.240 0.280 0.240 0.330 0.290 0.340 0.290 0.290 IF =20mA E 0.290 0.290 0.290 0.340 0.340 0.360 0.340 0.310 Red F 0.340 0.310 0.340 0.360 0.390 0.370 0.390 0.320 IF =30mA G 0.240 0.230 0.240 0.280 0.290 0.290 0.290 0.240 H 0.290 0.240 0.290 0.290 0.340 0.310 0.340 0.260 J 0.340 0.260 0.340 0.310 0.390 0.320 0.390 0.270 Chromaticity Coordinates Tolerance Each Rank : +/-0.02 ※Please contact our sales staff concerning rank designation. 2009.3.23 Page 5 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Blue) Spectral Distribution Spatial Distribution Example Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 12mA Relative Intensity Condition : Ta = 25℃ Wavelength [nm] Forward Voltage vs. Forward Current Forward Current vs. Relative Intensity Forward Voltage VF(V) 2009.3.23 Condition : Ta = 25℃ Relative Intensity Forward Current IF(mA) Condition : Ta = 25℃ Forward Current IF(mA) Page 6 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Blue) Derating Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Maximum Forward Current : IF MAX. (mA) Maximum Forward Current : IF MAX. (mA) Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Ambient Temperature vs. Relative Intensity Duty Cycle vs. Maximum Forward Current Relative Intensity Maximum Forward Current : IF MAX. (mA) Ambient Temperature : Ta(℃) Ambient Temperature : Ta(℃) 2009.3.23 Duty (%) Page 7 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Green) Spectral Distribution Spatial Distribution Example Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 27mA Relative Intensity Condition : Ta = 25℃ Wavelength [nm] Forward Voltage vs. Forward Current Forward Current vs. Relative Intensity Forward Voltage VF(V) 2009.3.23 Condition : Ta = 25℃ Relative Intensity Forward Current IF(mA) Condition : Ta = 25℃ Forward Current IF(mA) Page 8 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Green) Derating Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Maximum Forward Current : IF MAX. (mA) Maximum Forward Current : IF MAX. (mA) Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Ambient Temperature vs. Relative Intensity Duty Cycle vs. Maximum Forward Current Relative Intensity Maximum Forward Current : IF MAX. (mA) Ambient Temperature : Ta(℃) Ambient Temperature : Ta(℃) 2009.3.23 Duty (%) Page 9 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Red) Spectral Distribution Spatial Distribution Example Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 23mA Relative Intensity Condition : Ta = 25℃ Wavelength [nm] Forward Voltage vs. Forward Current Forward Current vs. Relative Intensity Forward Voltage VF(V) 2009.3.23 Condition : Ta = 25℃ Relative Intensity Forward Current IF(mA) Condition : Ta = 25℃ Forward Current IF(mA) Page 10 JRGB1316LS PLCC-6 Type Tri-color Technical Data(Red) Derating Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Maximum Forward Current : IF MAX. (mA) Maximum Forward Current : IF MAX. (mA) Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Ambient Temperature vs. Relative Intensity Duty Cycle vs. Maximum Forward Current Relative Intensity Maximum Forward Current : IF MAX. (mA) Ambient Temperature : Ta(℃) Ambient Temperature : Ta(℃) 2009.3.23 Duty (%) Page 11 JRGB1316LS PLCC-6 Type Tri-color Package Dimensions (Unit: mm) Weight: (113.1)mg Recommended Soldering Pattern Taping Specification (Unit: mm) (Unit: mm) Quantity: 1,000pcs/ reel (standard) 2009.3.23 Page 12 JRGB1316LS PLCC-6 Type Tri-color Reflow Soldering Conditions 1) The above profile temperature gives the maximum temperature of the LED resin surface. Please set the temperature so as to avoid exceeding this range. 2) Total times of reflow soldering process shall be no more than 2 times. When the second reflow soldering process is performed, intervals between the first and second reflow should be short as possible (while allowing some time for the component to return to normal temperature after the first reflow) in order to prevent the LED from absorbing moisture. 3) Temperature fluctuation to the LED during the pre-heating process shall be minimized. (6℃ maximum) Manual Soldering Conditions Iron tip temp. Soldering time and frequency 2009.3.23 350 ℃ 3 s 1 time (MAX.) (MAX.) (MAX.) Page 13 JRGB1316LS PLCC-6 Type Tri-color Reliability Testing Result Reliability Testing Result Room Temp. Operating Life Resistance to Soldering Heat Temperature Cycling Wet High Temp. Storage Life High Temp. Storage Life Low Temp. Storage Life Vibration, Variable Frequency Applicable Standard Testing Conditions Duration Ta = 25℃, EIAJ EDIF = 20mA(Blue), IF = 35mA(Green), IF = 45mA(Red), 4701/100(101) All Diodes Lighted. Pre-heating : 150~180℃ 120s Max. EIAJ EDOperation Heating : 230℃ 40s Max. 4701/300(301) Peak Temperature : 260℃ Minimum Rated Storage Temperature(30min) ~Normal Temperature(15min) EIAJ ED4701/100(105) ~Maximum Rated Storage Temperature(30min) ~Normal Temperature(15min) EIAJ EDTa = 60±2℃, RH = 90±5% 4701/100(103) EIAJ EDTa = Maximum Rated Storage Temperature 4701/200(201) EIAJ EDTa = Minimum Rated Storage Temperature 4701/200(202) 2 EIAJ ED98.1m/s (10G), 100 ~ 2KHz sweep for 20min., 4701/400(403) XYZ each direction Failure 1,000 h 0/25 Twice 0/25 5 cycles 0/25 1,000 h 0/25 1,000 h 0/25 1,000 h 0/25 2h 0/10 Failure Criteria Items Symbols Luminous Intensity Iv Forward Voltage VF Reverse Current IR Cosmetic Appearance - 2009.3.23 Conditions IF Value of each product Luminous Intensity IF Value of each product Forward Voltage VR = Maximum Rated Reverse Voltage V - Failure criteria Testing Min. Value < Spec. Min. Value x 0.5 Testing Max. Value ≧ Spec. Max. Value x 1.2 Testing Max. Value ≧ Spec. Max. Value x 2.5 Occurrence of notable decoloration, deformation and cracking Page 14 JRGB1316LS PLCC-6 Type Tri-color Special Notice to Customers Using the Products and Technical Information Shown in This Data Sheet 1) The technical information shown in the data sheets are limited to the typical characteristics and circuit examples of the referenced products. It does not constitute the warranting of industrial property nor the granting of any license. 2) For the purpose of product improvement, the specifications, characteristics and technical data described in the data sheets are subject to change without prior notice. Therefore it is recommended that the most updated specifications be used in your design. 3) When using the products described in the data sheets, please adhere to the maximum ratings for operating voltage, heat dissipation characteristics, and other precautions for use. We are not responsible for any damage which may occur if these specifications are exceeded. 4) The products that have been described to this catalog are manufactured so that they will be used for the electrical instrument of the benchmark (OA equipment, telecommunications equipment, AV machine, home appliance and measuring instrument). The application of aircrafts, space borne application, transportation equipment, medical equipment and nuclear power control equipment, etc. needs a high reliability and safety, and the breakdown and the wrong operation might influence the life or the human body. Please consult us beforehand if you plan to use our product for the usages of aircrafts, space borne application, transportation equipment, medical equipment and nuclear power control equipment, etc. except OA equipment, telecommunications equipment, AV machine, home appliance and measuring instrument. 5) In order to export the products or technologies described in this data sheet which are under the “Foreign Exchange and Foreign Trade Control Law,” it is necessary to first obtain an export permit from the Japanese government. 6) No part of this data sheet may be reprinted or reproduced without prior written permission from Stanley Electric Co., Ltd. 7) The most updated edition of this data sheet can be obtained from the address below: http://www.stanley-components.com 2009.3.23 Page 15