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GP1S560 GP1S560 s Features 1. High sensing accuracy ( Slit width: 0.15mm ) 2. Compact ( Case height: 6mm ) 3. With positionig pin 4. PWB direct mounting type Compact, High Sensing Accuracty Type Photointerrupter s Outline Dimensions 3 4 4.0 1 Anode 2 Cathode ( Unit : mm ) 2 1 3 Collector 4 Emitter Internal connection diagram s Applications 1. Floppy disk drives 2. VCRs, cassette decks 3. Optoelectronic switches 1.5 8.0 0.3 2.0+ 0.2 0.1 ( Both sides of detector and emitter ) Slit width 0.15 0.07 C0.5 + 0.6 0 12.0MIN. 6.0 - 1S560 0.7 4 - 0.25 + 0.3 - 0.1 4 - 0.45+ (2.54) 0.3 0.1 (5.1) 7.2 0.15 4 1 2 - 0.7 *Tolerance : 0.2mm *( ) : Reference dimensions 3 2 s Absolute Maximum Ratings Parameter Forward current *1 Peak forward current Reverse voltage Power dissipation Collector-emitter voltage Emitter-collecter voltage Collector current Collector power dissipation Operating temperature Storage temperature *2 Soldering temperature Symbol IF I FM VR P VCEO VECO IC PC Topr Tstg Tsol ( Ta = 25C ) Rating 50 1 6 75 35 6 20 75 - 25 to + 85 - 40 to + 100 260 Unit mA A V mW V V mA mW C C C Input Output *1 Pulse width<= 100 s, Duty ratio= 0.01 *2 For 3 seconds " 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, data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device." GP1S560 s Electro-optical Characteristics Parameter Forward voltage Peak forward voltage Reverse current Collector dark current Collector Current Collector-emitter saturation voltage Response time Rise time Fall time Symbol VF VFM IR ICEO Ic VCE( sat ) tr tf Conditions IF = 20mA IFM = 0.5A VR = 3V VCE = 20V VCE = 5V, I F = 20mA IF = 40mA, IC = 0.2mA VCE = 2V, I C = 0.5mA RL = 1k MIN. 0.2 TYP. 1.2 3 38 48 ( Ta = 25C ) MAX. 1.4 4 10 100 0.4 90 100 Unit V V A nA mA V s s Input Output Transfercharacteristics Fig. 1 Forward Current vs. Ambient Temperature 60 Fig. 2 Collector Power Dissipation vs. Ambient Temperature 120 Collector power dissipation P C ( mW ) 100 80 75 50 Forward current I F ( mA ) 40 30 60 20 10 0 - 25 40 20 15 0 75 85 Ambient temperature T a ( C ) 25 50 100 0 - 25 0 25 50 75 85 Ambient temperature T a ( C ) 100 Fig. 3 Peak Forward Current vs. Duty Ratio 2000 Peak forward current I FM ( mA ) 1000 500 Pulse width<= 100 s T a = 25C Fig. 4 Forward Current vs. Forward Voltage 500 200 Forward current I F ( mA ) 100 50 20 10 5 2 T a = 75C 50C 25C 0C - 25C 200 100 50 20 5 10 - 2 2 5 10 - 1 2 1 5 1 0 0.5 1 1.5 2 2.5 3 Duty ratio Forward voltage V F ( V ) GP1S560 Fig. 5 Collector Current vs. Forward Current 3.0 V CE = 5V T a = 25C 2.5 Collector current I C ( mA ) Collector current I C ( mA ) 2.5 2.0 I F = 50mA 40mA 1.5 30mA 1.0 0.5 20mA 10mA Fig. 6 Collector Current vs. Collector-emitter Voltage 3.0 T a = 25C 2.0 1.5 1.0 0.5 0 0 10 30 40 20 Forward current I F ( mA ) 50 0 0 1 2 3 4 5 6 7 8 9 10 Collector-emitter voltage V CE ( V ) Fig. 7 Collector Current vs. Ambient Temperature 1.0 I F = 20mA Collector current I C ( mA ) 0.8 V CE = 5V Fig. 8 Collector-emitter Saturation Voltage vs. Ambient Temperature 0.2 Collector-emitter saturation voltage V CE(sat) ( V ) 0.6 0.1 0.4 0.2 I F = 40mA 0 - 25 0 - 25 I C= 0.2mA 0 25 50 75 100 0 25 50 75 Ambient temperature T a ( C ) 100 Ambient temperature T a ( C ) Fig. 9 Response Time vs. Load Resistance 1000 500 tf 100 50 Response time ( s ) td ts td tr 1 0.5 ts tf tr V CE = 2V I C= 0.5mA T a = 25C Test Circuit for Response Time VCC RL Input R D Input Output Output 10% 90% 10 5 0.1 0.1 1 10 100 Load resistance RL ( k ) 1000 |
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