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GSW3801C

GSW3801C

  • 厂商:

    STANLEY

  • 封装:

  • 描述:

    GSW3801C - φ3 Flush Mount Type LED - STANLEY ELECTRIC CO.,LTD.

  • 数据手册
  • 价格&库存
GSW3801C 数据手册
G□□3801C φ3 Flush Mount Type LED Features Package Product f eatures φ3 Flush Mount Type. W ater clear resin ・Outer Dimension φ3 Flush Mount Type. ・Low power consumption type ・Operation temperature range Storage Temperature Operating Temperature ・Lead–f ree soldering compatible ・RoHs compliant Chromaticity coordinates Dominant wav elength Spatial distribution x = 0.31TYP., y = 0.32TYP.(GSW ,GLW ) Blue Green GSW GLW G SB GSG InGaN Sorted by luminous intensity rank and chromaticity rank (GSW ,GLW ) Sorted by luminous intensity rank (GSB,GLG) TTW (Through The W ave) soldering and manual soldering Up to 1kV (HBM) Bulk : 200pcs(MIN.) : 470nm(GSB) : 530nm(GSG) : 40deg. : 45deg. : 18deg. : 18deg. Die materials Rank grouping parameter Soldering methods ESD-withstand voltage Packing Recommended Applications Amusement Equipment, OA/FA, Other General Applications 2010.3.10 Page 1 G□□3801C φ 3 Flush Mount T ype LED Color and Luminous Intensity Chr oma ticity Coor dina te s x ,y Dom ina nt W a vele ngth λ d (nm ) (T a=25℃) Pa rt No. Ma te ria l Emitte d Color Le ns Color Luminous Intens ity Iv (mc d) TYP. GSW 3801C GLW 3801C InGa N GSB3801C GSG3801C Blue Green W hit e W hit e W ater Clear 0. 31, 0.32 0. 31, 0.32 − − IF (mA) 5 5 − − TYP. − − 470 530 I F (mA) − − 5 5 MIN. 800 135 600 1, 400 TYP. 1, 600 310 1, 200 2, 800 I F (mA) 5 5 5 5 2010.3.10 Page 2 G□□3801C φ 3 Flush Mount T ype LED Absolute Maximum Ratings Absolute Ma x i mum Ra ti ngs Ite m P ow e r Di ssi pa tion Forw a rd Curre nt Pulse Forw a rd Curre nt ※1 (T a=25℃) Sym bol GSW Pd IF IF R M ⊿ IF ⊿ IF R M VR To p r Tstg 36 10 20 0. 130 0. 267 GLW 120 30 100 0. 400 1. 333 5 -40∼ + 85 -40∼ + 100 GSB 36 10 20 0. 130 0. 267 GSG 38 10 20 0. 130 0. 267 Uni t mW mA mA m A/℃ m A/℃ V ℃ ℃ De ra ting (Ta = 25℃ or hi ghe r) Re ve rse Vol ta ge Ope ra ti ng Te mpe ra ture S tora ge Te mpe ra ture ※1 IFRM Measurement condition : Pulse W idth 1ms., Duty 1/20. (T a=25℃) Electro-Optical Characteristics I te m S ymbol TYP. Forw a rd V olta ge I F= 5mA VF MAX . Re ve rse Curre nt Chrom a tici ty Coordina te s Pe a k W a ve l e ngth Dom ina nt W a ve le ngth Spe ctra l Li ne Ha lf W i dth Ha lf I nte nsity Angl e V R =5V IR x I F= 5mA y I F= 5mA I F= 5mA I F= 5mA I F= 5mA λp λd ⊿λ 2θ1/ 2 TYP. TYP. TYP. TYP. TYP. 0.32 40 0. 32 45 465 470 25 18 524 530 40 18 nm nm nm MAX . TYP. 3. 3 100 0.31 3.2 100 0. 31 3. 5 100 3. 5 100 μA Cha ra cte ri sti cs GS W 2. 9 GLW 2.9 GSB 2. 9 GS G 3.0 V Condition Uni t de g. 2010.3.10 Page 3 G□□3801C φ 3 Flush Mount T ype LED Luminous Intensity Rank IV( m c d) Rank GSW IF= 5mA MIN. 800 1,120 1,600 2,240 3,200 MAX. 1,600 2,240 3,200 4,480 GLW IF=5m A MIN. 135 190 270 380 540 MAX. 270 380 540 760 GSB IF= 5mA MIN. 600 840 1,200 1,680 2,400 MAX. 1,200 1,680 2,400 3,340 GSG IF=5m A MIN. 1,400 2,000 2,800 4,000 5,600 MAX. 2,800 4,000 5,600 8,000 - (T a=25℃) A B C D E ※Please contact our sales staff concerning rank designation. 2010.3.10 Page 4 G□□3801C φ 3 Flush Mount T ype LED Sorting Chart for Chromaticity Coordinates (GSW,GLW ) (T a=25℃) LEFT DOWN point LEFT UP point RIGHT UP point RIGHT UP point Ra nk 1 2c 2d 2e 2f 3 x 0. 280 0. 287 0. 296 0. 307 0. 311 0. 330 y 0. 248 0. 295 0. 276 0. 315 0. 294 0. 318 x 0. 264 0. 283 0. 287 0. 304 0. 307 0. 330 y 0. 267 0. 305 0. 295 0. 330 0. 315 0. 360 x 0. 283 0. 304 0. 307 0. 330 0. 330 0. 361 y 0. 305 0. 330 0. 315 0. 360 0. 339 0. 385 x 0. 296 0. 307 0. 311 0. 330 0. 330 0. 356 y 0. 276 0. 315 0. 294 Condtions I F =5mA 0. 339 0. 318 0. 351 Chromaticity Coordinates Tolerance Each Rank : +/-0.02 ※Please contact our sales staff concerning rank designation. 2010.3.10 Page 5 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GLW) Spectral Distribution R elative Intensity vs. W avelength C ondition : T a = 25℃ , IF = 5mA Spatial Distribution Example C ondition : T a = 25℃ , IF = 5mA R elative Intensity W avelength [nm] Forward Voltage v s. Forward Current C ondition : T a = 25℃ Forward Current v s. Relative Intensity C ondition : T a = 25℃ For ward Curr ent IF(mA) For ward V oltage VF(V) R elative Intensity For war d C urr ent IF(mA) 2010.3.10 Page 6 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GLW) Derating Ambient T emper atur e vs. Maximum For ward C urr ent R epetition Fr equenc y : f ≧ 50H z Ambient Temperature v s. Relative Intensity Ma ximum Forward Current : IFRM MAX. (mA) Ambient T emper atur e : T a(℃ ) R elative Intensity Ambient T emper atur e : T a(℃ ) Ambient Temperature v s. Forward Voltage Power Dissipation vs. Ambient Temperature Ambient T emper atur e : T a(℃ ) P ower Dissipation : P d ( mW ) For ward V oltage VF(V) Ambient T emper atur e : T a(℃ ) 2010.3.10 Page 7 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GLW) Pulse W idth vs. Maximum Tolerable Peak Current C ondition : T a = 25℃ Ma ximum Forward Current : IFRM MAX. (mA) Dynamic Drive Rating Duty c ycle vs. Maximum For war d C urr ent IFRM peak Ma x. / IFRM DC MAX. Puls e W idth : tw (μ s) Duty ( %) Forward Current v s. Chromaticity (typ. value) C ondition : T a = 25℃ Ambient Temperature v s. Chromaticity (typ. value) C ondition : IF = 5mA y x y x 2010.3.10 Page 8 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSW ) Spectral Distribution R elative Intensity vs. W avelength C ondition : T a = 25℃ , IF = 5mA Spatial Distribution Example 100% 80% R elative Intensity C ondition : T a = 25℃ , IF = 5mA 60% 40% 20% 0% 400 450 500 550 600 650 700 750 W avelength [nm] Forward Voltage v s. Forward Current C ondition : T a = 25℃ Forward Current v s. Relative Intensity C ondition : T a = 25℃ 10 8 For ward Curr ent IF(mA) 2.0 1.5 R elative Intensity 6 4 2 0 2.0 2.5 3.0 3.5 4.0 For ward V oltage VF(V) 1.0 0.5 0.0 0 2 4 6 8 10 For war d C urr ent IF(mA) 2010.3.10 Page 9 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSW ) Derating Ambient T emper atur e vs. Maximum For ward C urr ent R epetition Fr equenc y : f ≧ 50H z Ambient Temperature v s. Relative Intensity 25 Ma ximum Forward Current : IFRM MAX. (mA) 10.0 Du t y =5% 20 Du t y =10% 15 10 Du t y =50% DC R elative Intensity Du t y =20% 1.0 5 0 - 40 10 60 110 Ambient T emper atur e : T a(℃ ) 0.1 - 40 10 60 110 Ambient T emper atur e : T a(℃ ) Ambient Temperature v s. Forward Voltage C ondition : IF=5mA Power Dissipation vs. Ambient Temperature 3.5 P ower Dissipation : P d ( mW ) 40 30 For ward V oltage VF(V) 3.0 20 2.5 10 2.0 - 40 10 60 110 Ambient T emper atur e : T a(℃ ) 0 - 40 10 60 110 Ambient T emper atur e : T a(℃ ) 2010.3.10 Page 10 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSW ) Pulse W idth vs. Maximum Tolerable Current Ratio C ondition : T a = 25℃ Ma ximum Forward Current : IFRM MAX. (mA) Dynamic Drive Rating Duty c ycle vs. Maximum For war d C urr ent 10 100 IFRM peak Ma x. / IF DC MAX. 10 2 10KHz 1KHz 100Hz 50Hz 1 1 10 100 1000 10000 100000 Puls e W idth : tw (μ s) 1 1 10 Duty ( %) 100 Forward Current v s. Chromaticity (typ. value) C ondition : T a = 25℃ Ambient Temperature v s. Chromaticity (typ. value) C ondition : IF = 5mA 0.40 0.40 0.35 y y 0.35 標準色度枠 T a= −40℃ T a= −20℃ T a= 0℃ T a= 25℃ T a= 40℃ T a= 60℃ T a= 85℃ 0.30 標準色度枠 If=10mA If=5mA If=2mA 0.30 0.25 0.25 0.30 x 0.25 0.35 0.40 0.25 0.30 x 0.35 0.40 2010.3.10 Page 11 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSB,GSG) Spectral Distribution R elative Intensity vs. W avelength C ondition : T a = 25℃ , IF = 5mA Spatial Distribution Example 100% GSB C ondition : T a = 25℃ , IF = 5mA GSG 80% R elative Intensity 60% 40% 20% 0% 400 450 500 550 600 650 W avelength [nm] Forward Voltage v s. Forward Current C ondition : T a = 25℃ Forward Current v s. Relative Intensity C ondition : T a = 25℃ 10 GSG 2.0 GSB GS B GS G For ward Curr ent IF(mA) 8 6 4 2 0 1.5 2.0 1.5 R elative Intensity 1.0 0.5 0.0 2.5 3.0 3.5 4.0 0 2 4 6 8 10 For ward V oltage VF(V) For war d C urr ent IF(mA) 2010.3.10 Page 12 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSB,GSG) Derating 25 Ma ximum Forward Current : IFRM MAX. (mA) Ambient Temperature v s. Relative Intensity 2.0 − G SB − G SG Ambient T emper atur e vs. Maximum For ward C urr ent R epetition Fr equenc y : f ≧ 50H z D u t y =5 % 20 D u t y =1 0 % D u t y =2 0 % 1.5 R elative Intensity 15 D u t y =5 0 % 1.0 10 DC 0.5 5 0 -40 -20 0 20 40 60 80 100 Ambient T emper atur e : T a(℃ ) 0.0 -40 -20 0 20 40 60 80 100 Ambient T emper atur e : T a(℃ ) Ambient Temperature v s. Forward Voltage 4.0 Power Dissipation vs. Ambient Temperature 40 GSB P ower Dissipation : P d ( mW ) 3.5 For ward V oltage VF(V) IF=1 0 m A − GSB − GS G 30 GSG IF=5 m A 3.0 20 IF=2 m A 2.5 10 2.0 -40 -20 0 20 40 60 80 100 Ambient T emper atur e : T a(℃ ) 0 -40 10 60 110 Ambient T emper atur e : T a(℃ ) 2010.3.10 Page 13 G□□3801C φ 3 Flush Mount T ype LED Technical Data (GSB,GSG) Pulse W idth vs. Maximum Tolerable Peak Current C ondition : T a = 25℃ Ma ximum Forward Current : IFRM MAX. (mA) Dynamic Drive Rating Duty c ycle vs. Maximum For war d C urr ent 10 100 IFRM peak Ma x. / IFRM DC MAX. 10 1 0 k Hz 1 k Hz 1 00 Hz 5 0 Hz 1 1 10 100 1000 10000 100000 Puls e W idth : tw (μ s) 1 1 10 Duty ( %) 100 Forward Current v s. Dominant W avelength C ondition : T a = 25℃ Ambient Temperature v s. Dominant W avelength C ondition : IF=5mA 545 535 D ominant W avelength λ d( nm) D ominant W avelength λ d( nm) 545 535 525 515 GSG 525 515 GSB 505 495 485 475 465 0 2 4 6 8 GSG 505 495 485 475 465 GSB 10 -40 10 60 110 For ward Curr ent : IF(mA) Ambient T emper atur e : T a(℃ ) 2010.3.10 Page 14 G□□3801C φ 3 Flush Mount T ype LED Package Dimensions (Unit: mm) W eight: (0.16)g 2010.3.10 Page 15 G□□3801C φ 3 Flush Mount T ype LED TTW (Through The Wave) soldering Conditions Pre-heating Solder Bath Temp. Dipping Time 100 ℃ 265℃ 5s (MAX.) (MAX.) (MAX.) 1) The dip soldering process shall be 2 times maximum. 2) The product shall be cooled to room temp. before the second dipping process. ※ The detail is described to LED and P hotodetector handling pr ec autions of home pag e: "Mounting thr ough- hole T ype D evic es“ and " S oldering", and us e it af ter the c onfirmation, pleas e. Manual Soldering Conditions Iron tip temp. Soldering time and frequency 400℃ (MAX.) 3s (MAX.) 2 times (MAX.) ※ The detail is described to LED and P hotodetector handling pr ec autions of hom e page: "Mounting thr ough- hole T ype D evic es“ and " S oldering", and us e it after the c onfir mation, pleas e. 2010.3.10 Page 16 G□□3801C φ 3 Flush Mount T ype LED Reliability Testing Result Reliability Tes ting Res ult Room Tem p. Operating Life Res is tance to S o l d e ri n g H e a t Tem perature Cycling Wet High Tem p. Storage Life High Tem p. Storage Life Low Tem p. Storage Life Lead Tens ion Vibration, Variable Frequency Applicable Standard EIAJ ED4 7 0 1 / 1 0 0 (1 0 1 ) EIAJ ED4 7 0 1 / 3 0 0 (3 0 2 ) EIAJ ED4 7 0 1 / 1 0 0 (1 0 5 ) EIAJ ED4 7 0 1 / 1 0 0 (1 0 3 ) EIAJ ED4 7 0 1 / 2 0 0 (2 0 1 ) EIAJ ED4 7 0 1 / 2 0 0 (2 0 2 ) EIAJ ED4 7 0 1 / 4 0 0 (4 0 1 ) EIAJ ED4 7 0 1 / 4 0 0 (4 0 3 ) Tes ting Conditions Ta = 25℃, IF = M axium Rat ed Current 260±5℃, 1.6mm from package base M inimum Rat ed Storage Temperat ure(30min) ∼Normal Temperat ure(15min) ∼M aximum Rat ed St orage Temperat ure(30min) ∼Normal Temperat ure(15min) Ta = 60±2℃, RH = 90±5% Ta = M aximum Rat ed St orage Temperat ure Ta = M inimum Rated St orage Temperat ure 10N,1t ime (□0.4 and Flat Package : 5N) 98.1m/ s (10G), 100 ∼ 2KHz sweep for 20min., XYZ each direct ion 2 Duration 1,000 h 10s Failure 0/ 25 0/ 25 5 cycles 0/ 25 1,000 h 1,000 h 1,000 h 10s 2h 0/ 25 0/ 25 0/ 25 0/ 10 0/ 10 Failure Criteria Item s Lumi no us Int ensi t y Forw ard Vol t age Reverse Current Cosmet i c Ap pearance Sym bols Iv VF IR - Conditions IF Val ue o f each p rod uct Lumi nou s Int ensit y IF Val ue o f each p rod uct Forw ard Vol t age VR = M aximum Rat ed Reverse Vo lt age V - Failure c riteria Test i ng M i n. Val ue < Sp ec. M in. Valu e x 0 .5 Test ing M ax. Val ue ≧ Sp ec. M ax. Val ue x 1.2 Test ing M ax. Val ue ≧ Sp ec. M ax. Val ue x 2.5 O ccurrence o f no t abl e deco l orat io n, d efo rmat io n and cracki ng 2010.3.10 Page 17 G□□3801C φ 3 Flush Mount T ype LED 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. Theref ore it is recommended that the most updated specifications be used in your design. 3) W hen using the products described in the data sheets, please adhere to the maximum ratings f or operating voltage, heat dissipation characteristics, and other precautions f or use. W e 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 manuf actured so that they will be used f or 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 saf ety, 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 f rom the Japanese government. 6) No part of this data sheet may be reprinted or reproduced without prior written permission f rom 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 2010.3.10 Page 18
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