PT460 SHARP | Alldatasheet
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PT460/PT460F/PT461/PT461F/PT465F PT460/PT460F/PT461 PT461F/PT465F n Features n Outline Dimensions n Absolute Maximum Ratings 1. Compact double-end type package n Applications 1. Floppy disk drives 2. VCRs 3. Audio equipment *3 For 3 seconds at the position of 2.5mm from the edge of resin package 5 ˚5 ˚ 5 ˚5 ˚ 0.7 0.4 0.4 0.5 3.0 4.0 R1.0 h 2 Marking 1.5 0.25 1.0R1.0 5 ˚ 5 ˚5˚ 5 ˚ h 2 PT460 - PT460F - -PT461 PT461F Red PT465F Yellow (Ta = 25˚C) *1 PT460/460F/465F *2 PT461/461F PT460 PT460F PT465F PT461 PT461F 2 2 1 1
1 Emitter
2 Collector
R0.3 Duble-end Type Phototransistor ( Unit : mm) Parameter Symbol Rating Unit Collector-emitter voltage V CEO 35 V Emitter-collector voltage V ECO 6V Collector current *1 IC 20 mA50*2 Collector power dissipation *1 P C 50 mW100*2 Operating temperature T opr - 25 to + 85 ˚C Storage temperature T stg - 40 to + 85 ˚C *3Soldering temperature T sol 260 ˚C 3. Visible light cut-off type (PT460F / PT461F / 465F) h 1 Epoxy resin data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.” “ In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs, 2. Taping package (2 000pcs. /reel) (PT xxx T ) Transparent resin Visible light cut-off resin(black) Light blue transparent resin Visible light cut-off resin(black) Visible light cut-off resin(black) 2.6MAX. 15.5MIN. 14.0MIN. 2.5± 0.2
n Electro-optical Characteristics (Ta= 25˚C ) PT460/PT460F/PT461/PT461F/PT465F Parameter Symbol Conditions MIN. TYP. MAX. Unit Collector current PT460 IC V CE =5 V *4 E e = 1mW/cm 2 0.18 - 1.20 mA PT460F 0.11 - 0.90 PT465F 0.11 - 0.50 PT461 V CE =5 V *4 E e = 0.01mW/cm 2 0.20 - 1.20 PT461F 0.14 - 0.98 Collector dark current PT460/460F/465F ICEO E e = 0, VCE = 20V - - 0.1 µ APT461/461F E e = 0, VCE = 10V - - 1.0 Collector-emitter saturation voltage PT460/PT460F V CE (sat) E e = 10mW/cm 2 - 0.2 0.4 VIC = 0.5mAPT465F PT461/PT461F E e = 1mW/cm 2 - - 1.2IC = 2.5mA Collector-emitter breakdown voltage BV CEO IC = 0.1mA, Ee = 0 35 - - V Emitter-collector breakdown voltage BV ECO IC = 0.01mA, Ee =0 6 - - V Peak sensitivity wavelength PT460/PT461 λ p - - 800 - nmPT460F/461F/465F - 860 - PT460/460F/465F tr V CE = 20V, IC = 1mA R L =1 kΩ -1 0 4 0 µ stf -8 3 5 PT461/461F tr V CE = 2V, IC = 10mA R L = 100Ω - 400 µ s- 300tf Half sensitivity angle Δθ -- ± 5 0 - *4 Ee : Irradiance by CIE standard light source A (Tungsten Lamp) -25 0 25 50 75 100 125 100 120 Ambient temperature T a (˚C) Collector power dissipation PC (mW ) - 25 0 25 50 75 100 125 100 120 Collector power dissipation PC (mW ) Ambient temperature Ta (˚C) Ambient Temperature Ambient Temperature (PT461/461F ) Response time Rise time Fall time Response time Rise time Fall time (PT460/460F/465F ) Fig. 1-a Collector Power Dissipation vs. Fig. 1-b Collector Power Dissipation vs. 2 000 1 500
PT460/PT460F/PT461/PT461F/PT465F Relative collector current (% ) -25 50 0 25 75 100 100 125 150 -1 0 10 -1 1 10 -9 -25 2505 0 10 -6 10 -7 10 -8 10 -4 10 -5 100750 25 50 75 100 125 10-6 10-7 10-8 10-9 10 -10 Relative collector current (% ) 0 25 50 75 100 125 150 100 120 140 160 Collector current IC (mA ) Irradiance E e (mW/cm 2) Collector current IC (mA ) 0.1 1 10 1.0 100 PT460 0.01 100 0.1 PT461 PT461F Collector dark current ICEO (A ) PT460F/ 465F Irradiance Ee ( mW/cm 2) Collector dark current ICEO (A ) Ambient temperature Ta (˚C) Ambient temperature Ta (˚C) Ambient temperature Ta (˚C) Ambient temperature Ta (˚C) V CE =5 V T a = 25˚C Fig. 4-a Collector Current vs. Irradiance (PT460/460F/465F) Fig. 4-b Collector Current vs. Irradiance Fig. 2-a Collector Dark Current vs. Ambient Temperature ( PT460/460F/465F ) Fig. 2-b Collector Dark Current vs. ( PT461/461F ) Fig. 3-a Relative Collector Current vs. Ambient Temperature (PT460/460F/465F) Fig. 3-b Relative Collector Current vs. Ambient Temperature (PT461/461F ) 175 V CE = 20V V CE = 10V V CE =5 V E e = 1mW/cm 2 V CE = 10V E V = 2lx V CE =5 V T a = 25˚C Ambient Temperature 150 (PT461/461F )
PT460/PT460F/PT461/PT461F/PT465F Collector-emitter voltage VCE (V ) Collector current IC (mA ) 0 5 10 15 20 25 30 E e 7.5mW/cm 5.0mW/cm 2.5mW/cm 1.0mW/cm 2 Collector-emitter voltage VCE (V ) Collector current IC (mA ) 0 5 10 15 25 20 30 E e 7.5mW/cm 5.0mW/cm 2.5mW/cm 2 1.0mW/cm 2 Collector-emitter voltage VCE (V ) Collector current IC (mA ) 02468 1 0 E e 0.15mW/cm 0.1mW/cm 0.08mW/cm 2 0.06mW/cm 2 0.04mW/cm 2 Collector-emitter voltage VCE (V ) Collector current IC (mA ) 0246 1 0 8 E e 0.1mW/cm 0.08mW/cm 2 0.06mW/cm 2 0.04mW/cm 2 0.15mW/cm Wavelength λ (nm ) Relative sensitivity (% ) 300 500 100 1000 300 Relative sensitivity (% ) 100 Wavelength λ (nm ) 500 1000 PT460 PT461 PT461F T a = 25˚C T a = 25˚C T a = 25˚C T a = 25˚C Fig. 6-a Spectral Sensitivity (PT460/460F/465F) Fig. 6-b Spectral Sensitivity (PT461/461F ) T a = 25˚C Fig. 5-a Collector Current vs. Collector-emitter Voltage (PT460 ) Fig. 5-b Collector Current vs. Collector-emitter Voltage (PT460F/465F ) Fig. 5-c Collector Current vs. Collector-emitter Voltage (PT461 ) Fig. 5-d Collector Current vs. Collector-emitter Voltage (PT461F ) = 10mW/cm 2 = 10mW/cm 2 = 0.2mW/cm 2 = 0.2mW/cm 2 P C (MAX. ) P C (MAX. ) T a= 25˚CP C (MAX. ) PT460F/465F P C (MAX. )
Response time (µ s) L (Ω ) 5005010 20 100 200 5000 1000 V CE =2 V IC = 10mA T a = 25˚C T a = 25˚C IC = 1mA V CE = 20V L (k Ω ) 200 100 500 1000 100 t f td ts tr 21 5 10 50 20 100 tr tf tr td Output 10% tf ts tr VCC RL OutputInput Output VCC Output RL Input 90% tf 10% 90% Relative sensitivity (% ) Angular displacement θ 100 + 10˚ - 90˚ - 80˚ - 70˚ - 60˚ - 50˚ - 40˚ - 30˚ + 90˚ + 80˚ + 70˚ + 60˚ + 50˚ + 40˚ + 30˚ 02 468 1 0 0.2 0.4 0.6 0.8 1.0 I C = 0.05mA IC = 0.1mA IC = 0.5mA IC = 1.0mA Test Circuit for Response Time ( PT460/460F/465F ) Test Circuit for Response Time (PT461/461F ) Fig. 8 Sensitivity Diagram (PT460 ) PT460/PT460F/PT461/PT461F/PT465F Fig. 7-a Response Time vs. ( PT460/PT460F/465F ) Fig. 7-b Response Time vs. (PT461/461F ) Fig. 9-a Collector-emitter Saturation Voltage vs. Irradiance Collector-emitter saturation voltage V CE (sat) (V ) Irradiance Ee (mW/cm 2) Response time trf (µ s), t Load Resistance Load resistance R Load Resistance Load resistance R
0.2 0.4 0.6 0.8 1.0 0.1mA 0.5mA 1.0mA 0.01 0.1 1 1mA 2mA 5mA 10mA 0.01 0.1 1 1mA 2mA 5mA 10mA PT460/PT460F/PT461/PT461F/PT465F Fig. 9-b Collector-emitter Saturation Voltage vs. Irradiance (PT460F/465F ) Fig. 9-c Collector-emitter Saturation Voltage vs. Irradiance (PT461 ) Fig. 9-d Collector-emitter Saturation Voltage vs. Irradiance (PT461F ) IC = 0.05mA IC = 0.5mA Collector-emitter saturation voltage V CE (sat) (V ) Collector-emitter saturation voltage V CE (sat) (V ) IC = 0.5mA Collector-emitter saturation voltage V CE (sat) (V ) (mW/cm 2) Irradiance Ee (mW/cm 2) Irradiance Ee (mW/cm 2) Irradiance Ee
S Δ h SSSSS TW T Blue tape White tape Z PZ t t L1 L2 H A : Center of cathode marking Label 260 (Note 2) The lead's overlapping length on the tape. (Note 2) tW L2- L1 TZ Δ hS H A 26 + 1.5 - 0.0 5+ 0.5 - 0.5 -6 +1 0 (Note 1) p Blue tape (Collector) White tape (Emitter) (1) Packing form Box type are not stuffed. c) For the taping of collector pin, blue tape is used, and for emitter pin, white tape in used. (2) Packing quantity PT460/PT460F/PT461/PT461F/PT465F n Packing Specification (PT xxx T) (Note 1) Tolerance of 20 pitches is ± 2mm. a) The tape is zigzag-folded with 50 pcs. of phototransistor per fold. b) Phototransistor inserting portions for 50 to 60 pcs. on the tape's starting and ending parts 2 000 pcs. per box l Please refer to the chapter “Precautions for Use.” n Taping Specifications (PT xxx T)