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GP1A68L

Sharp Electrionic Components
Part Number GP1A68L
Manufacturer Sharp Electrionic Components
Description Low Voltage Driven Low Current Consumption Type OPIC Photointerrupter
Published Mar 23, 2005
Detailed Description GP1A68L GP1A68L s Features 1. Ultra-compact type (3.8 x 4.0 x 4.0 mm) 2. C-MOS and microcomputer compatible 3. Low volt...
Datasheet PDF File GP1A68L PDF File

GP1A68L
GP1A68L


Overview
GP1A68L GP1A68L s Features 1.
Ultra-compact type (3.
8 x 4.
0 x 4.
0 mm) 2.
C-MOS and microcomputer compatible 3.
Low voltage driven, low current consumption (Operating supply voltage : 1.
4 to 7.
0V, Standby current consumption : MAX.
0.
5mA) Low Voltage Driven Low Current Consumption Type OPIC Photointerrupter s Outline Dimensions Internal connection diagram (Unit : mm) 3 4 5 (15kΩ ) Amp.
2 1 s Applications 1.
Cameras 2.
Floppy disk drives (1.
0) (Sensor center) 3.
8 ± 0.
2 0.
9 ± 0.
2 1.
45 ± 0.
2 Optical center 4.
0 ± 0.
2 5.
0 ± 0.
2 2.
5 ± 0.
2 ( 2- C0.
3 ) 0.
15 g 2.
54 5 4 3 1 4MIN.
0.
4 1.
27 1.
27 2 1 Anode 2 Cathode 3 VCC 4 Vout 5 GND * "OPIC" (Optical IC) is a trademark of the SHARP Corporation.
An OPIC consists of a light-detecting element and signal-processing circuit integrated onto a single chip.
s Absolute Maximum Ratings Parameter Forward current Reverse voltage Power dissipation Supply voltage Low level output current Power dissipation Operating temperature Storage temperature *1 Soldering temperature Symbol IF VR P V CC IOL PO Topr Tstg Tsol Rating 50 6 75 7 2 80 - 25 to + 85 - 40 to + 100 260 (Ta=25˚C) Unit mA V mW V mA mW ˚C ˚C ˚C Input Output MIN.
1mm Soldering area *1 For 5 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.
” 4.
0 ± 0.
2 GP1A68L s Electro-optical Characteristics Parameter Forward voltage Reverse current Operating supply voltage Low level output voltage High level output voltage Low level supply current High level supply current *2 (Ta=25 ˚C) Symbol VF IR V CC V OL V OH I CCL I CCH I FHL I FLH /I FHL t PLH V CC = 3V t PHL tr tf I F = 5mA R L = 3k Ω 3.
0 0.
6 0.
2 15 3 1.
0 µs Conditions I F = 5mA V R = 3V V CC = 3V,I OL = 1mA,IF = 5mA V CC = 3V,I F = 0 V CC =...



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