GP1A51HRJ00F Sharp Electronics, GP1A51HRJ00F Datasheet

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GP1A51HRJ00F

Manufacturer Part Number
GP1A51HRJ00F
Description
Manufacturer
Sharp Electronics
Type
Transmissiver
Datasheet

Specifications of GP1A51HRJ00F

Number Of Elements
1
Gap Width
3mm
Slit Width
0.5mm
Reverse Breakdown Voltage
6V
Forward Current
50mA
Power Dissipation
250mW
Fall Time
500ns
Rise Time
500ns
Pin Count
5
Mounting
Screw
Operating Temp Range
-25C to 85C
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Compliant

Available stocks

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Part Number
Manufacturer
Quantity
Price
Part Number:
GP1A51HRJ00F
0
GP1A50HR/GP1A51HR
GP1A52HR/GP1A53HR
1. High sensing accuracy ( Slit width : 0.5mm )
2. LSTTL and TTL compatible output
3.
“ 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.”
GP1A50HR
GP1A52HR
Marking :
Features
Outline Dimensions
Both-sides mounting type : GP1A50HR ( Gap: 3mm )
Either-side mounting type : GP1A51HR ( Gap: 3mm )
PWB mounting type : GP1A52HR ( Gap: 3mm )
5 - 0.4
5 - 0.4
1A50HR
( 1.5 )
4
+ 0.3
- 0.1
+ 0.3
- 0.1
2 -
19.0
2
1
A52
12.2
5
3
3.0
12.2
25.0
3.0
( 1.5 )
( 9.2 )
( 9.2 )
+ 0.2
- 0.1
3.2
4 5
± 0.2
+ 0.2
± 0.3
- 0.1
± 0.3
± 0.3
3
S
± 0.2
1
2
GP1A53HR ( Gap: 5mm )
* ( ) : Reference dimensions
2 - C2.0
*Unspecified tolerances shall be as
* ( ) : Reference dimensions
*Unspecified tolerances shall be as
Dimensions ( d ) Tolerance
18.0< d<=25.0 ± 0.025
Dimensions ( d ) Tolerance
6.0< d<=18.0
6.0< d<=18.0
( Both sides
and detector )
of emitter
Slit width
( 1.27 )
d<=6.0
d<=6.0
( 1.27 )
0.5
0.5
5 - 0.45
Slit width
( Both sides of
( 1.27 )
emitter and
detector )
5.0
± 0.1
± 0.2
± 0.1
± 0.2
( 1.27 )
5 - 0.45
C1.0
+ 0.3
- 0.1
follows:
follows:
+ 0.3
- 0.1
GP1A51HR
GP1A53HR
GP1A50HR/GP1A51HR/GP1A52HR/GP1A53HR
5 - 0.4
5 - 0.4
1. OA equipment, such as printers, facsimiles,
2. VCRs
*“ OPIC” ( Optical IC ) is a trademark of the SHARP Corporation.
( 1.5 )
etc.
+ 0.3
- 0.1
5
4
3
Applications
An OPIC consists of a light-detecting element and signal-
processing circuit integrated onto a single chip.
+ 0.3
- 0.1
( 1.5 )
4
2.0
12.2
3.0
( 9.2 )
A53
5
3
13.7
+ 0.2
- 0.1
5.0
± 0.3
( 10.3 )
+ 0.2
- 0.1
± 0.3
S
1
2
1
2
* ( ) : Reference dimensions
* ( ) : Reference dimensions
*Unspecified tolerances shall be as
( Both sides
Dimensions ( d ) Tolerance
Dimensions ( d ) Tolerance
18.0< d<=25.0
6.0 < d<=18.0
of emitter
and detector )
*Unspecified tolerances shall be as follows :
Slit width
6.0< d<=18.0
2 - ( 1.27 )
OPIC
Photointerrupter
12.0
18.0
5.0
d<=6.0
( 1.27 )
d<=6.0
( Both sides of
0.5
Slit width
emitter and
detector )
0.5
5.2
5 - 0.45
( 1.27 )
± 0.25
± 0.1
± 0.2
± 0.1
± 0.2
5 - 0.45
C1.0
2-
( Unit : mm )
+ 0.3
- 0.1
3.2
+ 0.3
- 0.1
± 0.2
follows:

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GP1A51HRJ00F Summary of contents

Page 1

GP1A50HR/GP1A51HR GP1A52HR/GP1A53HR Features 1. High sensing accuracy ( Slit width : 0.5mm ) 2. LSTTL and TTL compatible output Both-sides mounting type : GP1A50HR ( Gap: 3mm ) 3. Either-side mounting type : GP1A51HR ( Gap: 3mm ) PWB mounting ...

Page 2

Internal connection diagram Voltage regulator ( 15k ) 1 2 Amp 1 Anode 2 Cathode Absolute Maximum Ratings Parameter Forward current *1 Peak forward current Input Reverse voltage Power dissipation Supply voltage Output Output current Power dissipation Operating temperature Storage ...

Page 3

Recommended Operating Conditions Parameter Low level output current Forward current Fig. 1 Forward Current vs. Ambient Temperature Ambient temperature T a Fig. 3 Low Level Output Current vs. ...

Page 4

Fig. 5 Relative Threshold Input Current vs. Supply Voltage 1.1 I 1.0 FLH 0.9 0.8 I FHL 0.7 0 FLH CC 0 Supply voltage V CC ...

Page 5

Fig.10-b Propagation Delay Time vs. Forward Current ( GP1A53HR ) 280 25˚ Forward current I F Test Circuit for ...

Page 6

Application Circuits NOTICE The circuit application examples in this publication are provided to explain representative applications of SHARP devices and are not intended to guarantee any circuit design or license any intellectual property rights. SHARP takes no responsibility for any ...

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