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1.6 x 1.5 x 0.7mm ( L x W x H ) Temperature range Storage Temperature Operating Temperature Lead–free soldering compatible RoHS compliant Low current type(5mA) is available.(FRYPY1211C-0005) Power Consumption : 55% reduction Compared with 20mA standard current type. Package Product features : -40℃~100℃ :- 4 0℃~85℃(FRYPY) -30℃~85℃(BRBG,BRPG,BRPY) Bi-Color Type(1.6 x 1.5mm), Milky White resin 2010.7.15
Color chart and Luminous Intensity Page 2 Bi-color Type (1.6 X 1.5 mm) 1211C Series (Ta=25℃) TYP. IF MIN. TYP. IF FR Red 626 20 40.0 80.0 20 YPY Yellow Green 572 20 25.0 50.0 20 BR GaAlAs Red 647 20 7.0 11.7 20 BG GaP Green 558 20 1.7 2.4 20 BR GaAlAs Red 647 20 7.0 11.7 20 PG GaP Green 567 20 4.5 6.4 20 BR GaAlAs Red 647 20 7.0 11.7 20 PY GaP Yellow Green 572 20 7.0 11.7 20 Milky White FRYPY1211C BRBG1211C BRPY1211C AlGaInP BRPG1211C Die Name Emitted ColorPart No. Material Iv (mcd) Lens Color Dominant Wavelength Luminous Intensity λd (nm) Low current type TYP. I F M I N . TYP. I F FR Red 626 5 14.0 30.0 5 YPY Yellow Green 570 5 6.3 12.0 5 Iv (m c d) Lens Color Dominant Wavelength Luminous Intens ity λd (nm)Die Na m e Emitted ColorPart N o. M aterial F RYP Y1211C-
0005 AlGaInP Mi l k y
2010.7.15
Power Dissipation P d 70 70 70 78 81 70 mW Continuous forward current IF 25 25 25 30 30 25 mA Repetitive peak forward current※1 IFRM 60 60 60 100 100 60 mA Reverse Voltage V R 444554 V Operating Temperature Topr -30~+85 -40 ~+85 -30 ~+85 ℃ Storage Temperature T stg -40~+100 ℃ Item Symbol Unit Derating linearly (Ta=25℃ or higher) Bi-color Type (1.6 X 1.5 mm) 1211C Series (Ta=25℃) ※1 IFRMMeasurement condition : Pulse Width≦1ms., Duty≦1/20. The ratings specified above are under the condition that only one diode is lit. 50% Max. of each rating shall be applied when two diodes are lit simultaneously. YPY FR Power Dissipation P d 36 36 mW Continuous forward current IF 15 15 mA Repetitive peak forward current※1 IFRM 48 48 mA ⊿IFRM 0.69 0.69 mA/ ℃ Reverse Voltage V R 55 V Operating Temperature Topr ℃ Storage Temperature T stg ℃ Item Symbol Unit Derating linearly (Ta=25℃ or higher) -40~+85 -40~+100 Absolute Maximum Ratings 2010.7.15 Low current type
Electro-Optical Characteristics Page 4 Bi-color Type (1.6 X 1.5 mm) 1211C Series Characteristics Conditions BG PG PY YPY FR BR VR=4V 100 100 100 -- 100 Peak Wavelength I F=20mA λp TYP. 555 560 570 575 635 660 nm Dominant Wavelength IF=20mA λd TYP. 558 567 572 572 626 647 nm Spectral Line Half Width IF=20mA ⊿λ TYP. 30 30 30 15 15 30 nm TYP. (θx) 168 168 168 115 115 150 TYP. (θy) 139 139 139 140 140 140 Item Symbol Unit Forward Voltage I F=20mA V F V deg.Half Intensity Angle I F=20mA 2 θ1/2 μAReverse Current I R MAX. (Ta=25℃) Characteristics Conditions YPY FR TYP. 1.95 1.85 MAX. 2.4 2.4 Reverse Current V R=5V I R MAX. 100 100 μA Peak Wavelength I F=5mA λp TYP. 572 635 nm Dominant Wavelength IF=5mA λd TYP. 570 626 nm Spectral Line Half Width IF=5mA ⊿λ TYP. 15 15 nm TYP. (θx) 115 115 TYP. (θy) 140 140 deg.Half Intensity Angle I F=5mA 2 θ1/2 Item Symbol Unit Forward Voltage I F=5mA V F V 2010.7.15 Low current type
Bi-color Type (1.6 X 1.5 mm) 1211C Series (Ta=25℃) ※ Please contact our sales staff concerning rank designation. CA 25 40 100 160 CB 40 64 100 160 CC 64 100 100 160 BRP G1211C PG BR Rank BR BRBG1211C BG BR IF = 20mA IF = 20mA IF = 20mA IV(mcd ) F RYP Y1211C IF = 20mA YPY FR BRP Y1211C PY MIN. MAX. MIN. MAX. AA 6.3 10.0 14.0 22.0 AB 10.0 16.0 14.0 22.0 AC 16.0 25.0 14.0 22.0 BA 6.3 10.0 22.0 36.0 BB 10.0 16.0 22.0 36.0 BC 16.0 25.0 22.0 36.0 CA 6.3 10.0 36.0 57.0 CB 10.0 16.0 36.0 57.0 CC 16.0 25.0 36.0 57.0 Rank IV(mcd) FRYPY1211C-0005 IF = 5mA YPY FR ※ Please contact our sales staff concerning rank designation. 2010.7.15 Low current type
Bi-color Type (1.6 X 1.5 mm) 1211C Series (Ta=25℃)Color Tone Groups (λd) MIN. MAX. A 568 572 B 572 576 IF =20mA F RYP Y1211C Dominant Wavelength λd(nm) Rank YPY MIN. MAX. A 566.5 570.5 B 570.5 574.5 IF=5mA FRYPY1211C-0005 Dominant Wavelength λd(nm) Rank YPY 2010.7.15 Low current type
Bi-color Type (1.6 X 1.5 mm) 1211C Series Technical Data(FR,YPY) Spatial Distribution Example Condition : Ta = 25℃ Spectral Distribution Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 20mA Wavelength [nm] Relative Intensity Forward Voltage vs. Forward Current Condition : Ta = 25℃ Forward Voltage VF (V) Forward Current IF(mA) Forward Current vs. Relative Intensity Condition : Ta = 25℃ Forward Current IF (mA) Relative Intensity 0.2 0.4 0.6 0.8 1.2 500 550 600 650 700 YPY FR 0.1 100 YPY FR 0.0 0.5 1.0 1.5 2.0 0 5 10 15 20 25 30 35 40 YPY FR YPY FR x y 0.5 0.5 30° 60° 90° 30° 60° 90° 0.5 0.5 30° 60° 90° 30° 60° 90° x yFR YPY 2010.7.15
Technical Data(FR,YPY) Page 8 Bi-color Type (1.6 X 1.5 mm) 1211C Series Ambient Temperature vs. Relative Intensity Condition : IF =20mA Ambient Temperature : Ta(℃) Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Maximum Forward Current : IF MAX. (mA) Relative Intensity Power Dissipation vs. Ambient Temperature Ambient Temperature : Ta(℃) Power Dissipation : Pd (mW) Pulse Width vs. Maximum Tolerable Peak Current Condition : Ta = 25℃ Pulse Width : tw (μs) / IF peak Max./IF DC MAX. 100 120 - 4 0 - 2 00 2 04 06 08 0 1 0 0 Duty=5% Duty=20% Duty=50% DC Duty=10% 0.1 1.0 10.0 -40 -20 0 20 40 60 80 100 YPY FR -40 -20 0 20 40 60 80 100 YPY FR 1 10 100 1000 10000 100000 3.3 10kHz 1kHz 100Hz 50Hz 2010.7.15
Technical Data(FR,YPY) Page 9 Bi-color Type (1.6 X 1.5 mm) 1211C Series Ambient Temperature vs. Forward Voltage Ambient Temperature Ta(℃) Duty cycle vs. Maximum Forward Current Duty (%) Maximum Forward Current :IF MAX. (mA) 100 1000 11 0 1 0 0 Maximum Forward Current :IF MAX. (mA) Ambient Temperature vs. Forward Voltage Ambient Temperature Ta(℃) Maximum Forward Current :IF MAX. (mA) 1.4 1.5 1.6 1.7 1.8 1.9 2.1 2.2 -40 -20 0 20 40 60 80 100 IF=10mA IF=20mA FR 1.6 1.8 2.2 2.4 - 4 0 - 2 00 2 04 06 08 0 1 0 0 IF=20mA IF=10mA YPY 2010.7.15
0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 0 5 10 15 200.1 100 0.2 0.4 0.6 0.8 1.2 500 520 540 560 580 600 620 640 660 680 700 Page 10 Bi-color Type (1.6 X 1.5 mm) 1211C Series YPY FR YPY FR YPY FR YPY FR x y x y FR YPY 0.5 0.5 30° 60° 90° 30° 60° 90° 0.5 0.5 30° 60° 90° 30° 60° 90° Spectral Distribution Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 5mA Wavelength [nm] Relative Intensity Spatial Distribution Example Condition : Ta = 25℃ Forward Voltage vs. Forward Current Condition : Ta = 25℃ Forward Voltage VF (V) Forward Current IF(mA) Forward Current vs. Relative Intensity Condition : Ta = 25℃ Forward Current IF (mA) Relative Intensity Technical Data(FR,YPY) Low current type(IF=5mA) 2010.7.15
1 10 100 1000 10000 100000 3.2 10kH 1kHz 100H 50Hz -40 -20 0 20 40 60 80 100 0.1 -40 -20 0 20 40 60 80 100 -40 -20 0 20 40 60 80 100 Duty=5% DC Duty=10% Duty=20% Duty=50% Page 11 Bi-color Type (1.6 X 1.5 mm) 1211C Series 相対光度 FR YPY Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Maximum Forward Current : IF MAX. (mA) Ambient Temperature vs. Relative Intensity Condition : IF =5mA Ambient Temperature : Ta(℃) Power Dissipation vs. Ambient Temperature Ambient Temperature : Ta(℃) Power Dissipation : Pd (mW) Pulse Width vs. Maximum Tolerable Peak Current Condition : Ta = 25℃ Pulse Width : tw (μs) / IF peak Max./IF DC MAX. 2010.7.15 Technical Data(FR,YPY) Low current type(IF=5mA)
1.7 1.8 1.9 2.1 2.2 2.3 -40 -20 0 20 40 60 80 100 1.6 1.7 1.8 1.9 2.1 2.2 -40 -20 0 20 40 60 80 100 Page 12 Bi-color Type (1.6 X 1.5 mm) 1211C Series FR YPY IF=15mA IF=10mA IF=5mA IF=2mA IF=15mA IF=10mA IF=5mA IF=2mA Duty cycle vs. Maximum Forward Current Duty (%) Maximum Forward Current :IF MAX. (mA) Ambient Temperature vs. Forward Voltage Ambient Temperature Ta(℃) Maximum Forward Current :IF MAX. (mA) Ambient Temperature vs. Forward Voltage Ambient Temperature Ta(℃) Maximum Forward Current :IF MAX. (mA) 2010.7.15 Technical Data(FR,YPY) Low current type(IF=5mA)
Technical Data(BR,BG) Page 13 Bi-color Type (1.6 X 1.5 mm) 1211C Series Spatial Distribution Example Condition : Ta = 25℃ Spectral Distribution Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 20mA Wavelength [nm] Relative Intensity Forward Voltage vs. Forward Current Condition : Ta = 25℃ Forward Voltage VF (V) Forward Current IF(mA) Forward Current vs. Relative Intensity Condition : Ta = 25℃ Forward Current IF (mA) Relative Intensity 2010.7.15
Bi-color Type (1.6 X 1.5 mm) 1211C Series Technical Data(BR,BG) Ambient Temperature vs. Relative Intensity Condition : IF =20mA Ambient Temperature : Ta(℃) Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Maximum Forward Current : IF MAX. (mA) Relative Intensity Power Dissipation vs. Ambient Temperature Ambient Temperature : Ta(℃) Power Dissipation : Pd (mW) Pulse Width vs. Maximum Tolerable Peak Current Condition : Ta = 25℃ Pulse Width : tw (μs) IF peak Max./IF DC MAX. 2010.7.15
Technical Data(BR,PG) Page 15 Bi-color Type (1.6 X 1.5 mm) 1211C Series Spatial Distribution Example Condition : Ta = 25℃ Spectral Distribution Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 20mA Wavelength [nm] Relative Intensity Forward Voltage vs. Forward Current Condition : Ta = 25℃ Forward Voltage VF (V) Forward Current IF(mA) Forward Current vs. Relative Intensity Condition : Ta = 25℃ Forward Current IF (mA) Relative Intensity 2010.7.15
Bi-color Type (1.6 X 1.5 mm) 1211C Series Technical Data(BR,PG) Ambient Temperature vs. Relative Intensity Condition : IF =20mA Ambient Temperature : Ta(℃) Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Maximum Forward Current : IF MAX. (mA) Relative Intensity Power Dissipation vs. Ambient Temperature Ambient Temperature : Ta(℃) Power Dissipation : Pd (mW) Pulse Width vs. Maximum Tolerable Peak Current Condition : Ta = 25℃ Pulse Width : tw (μs) IF peak Max./IF DC MAX. 2010.7.15
Technical Data(BR,PY) Page 17 Bi-color Type (1.6 X 1.5 mm) 1211C Series Spatial Distribution Example Condition : Ta = 25℃ Spectral Distribution Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 20mA Wavelength [nm] Relative Intensity Forward Voltage vs. Forward Current Condition : Ta = 25℃ Forward Voltage VF (V) Forward Current IF(mA) Forward Current vs. Relative Intensity Condition : Ta = 25℃ Forward Current IF (mA) Relative Intensity 2010.7.15
Bi-color Type (1.6 X 1.5 mm) 1211C Series Technical Data(BR,PY) Ambient Temperature vs. Relative Intensity Condition : IF =20mA Ambient Temperature : Ta(℃) Derating Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz Ambient Temperature : Ta(℃) Maximum Forward Current : IF MAX. (mA) Relative Intensity Power Dissipation vs. Ambient Temperature Ambient Temperature : Ta(℃) Power Dissipation : Pd (mW) Pulse Width vs. Maximum Tolerable Peak Current Condition : Ta = 25℃ Pulse Width : tw (μs) IF peak Max./IF DC MAX. 2010.7.15
Package Dimensions(FRYPY) Recommended Soldering Pattern (Unit: mm) Taping Specification (Unit: mm) (Unit: mm) Quantity : 4,000pcs/ reel (standard) Bi-color Type (1.6 X 1.5 mm) 1211C Series Page 19 Weight: (3.0)mg 2010.7.15
Package Dimensions(BRBG, BRPG, BRPY) Recommended Soldering Pattern (Unit: mm) Taping Specification (Unit: mm) (Unit: mm) Quantity : 4,000pcs/ reel (standard) Bi-color Type (1.6 X 1.5 mm) 1211C Series Page 20 Weight: (3.0)mg 2010.7.15
Reflow Soldering Conditions Manual Soldering Conditions Iron tip temp. Soldering time and frequency 3 s 1 time 350 ℃ (MAX.) (MAX.) (MAX.) Bi-color Type (1.6 X 1.5 mm) 1211C Series 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. Page 212010.7.31
Bi-color Type (1.6 X 1.5 mm) 1211C Series Page 22 Reliability Testing Result Failure Criteria Reliability Testing Result Applicable Standard Testing Conditions Duration Failure Room Temp. Operating Life EIAJ ED- 4701/100(101) Ta = 25℃, IF = Maxium Rated Current 1,000 h 0/25 Resistance to Soldering Heat EIAJ ED- 4701/300(301) Pre-heating : 150~180℃ 120s Max. Operation Heating : 230℃ 40s Max. Peak Temperature : 260℃ Twice 0/25 Temperature Cycling EIAJ ED- 4701/100(105) Minimum Rated Storage Temperature(30min) ~Normal Temperature(15min) ~Maximum Rated Storage Temperature(30min) ~Normal Temperature(15min) 5 cycles 0/25 Wet High Temp. Storage Life EIAJ ED- 4701/100(103) Ta = 60±2℃, RH = 90±5% 1,000 h 0/25 High Temp. Storage Life EIAJ ED- 4701/200(201) Ta = Maximum Rated Storage Temperature 1,000 h 0/25 Low Temp. Storage Life EIAJ ED- 4701/200(202) Ta = Minimum Rated Storage Temperature 1,000 h 0/25 Vibration, Variable Frequency EIAJ ED- 4701/400(403) 98.1m/s (10G), 100 ~ 2KHz sweep for 20min., XYZ each direction 2 h 0/10 Items Symbols Conditions Failure criteria Luminous Intensity Iv IF Value of each product Luminous Intensity Testing Min. Value < Spec. Min. Value x 0.5 Forward Voltage V F IF Value of each product Forward Voltage Testing Max. Value ≧ Spec. Max. Value x 1.2 Reverse Current IR VR = Maximum Rated Reverse Voltage V Testing Max. Value ≧ Spec. Max. Value x 2.5 Cosmetic Appearance - - Occurrence of notable decoloration, deformation and cracking 2010.7.15
Special Notice to Customers Using the Products and Technical Information Shown in This Data Sheet Bi-color Type (1.6 X 1.5 mm) 1211C Series Page 23 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 2010.7.15