GP1S74P Sharp Electronics, GP1S74P Datasheet

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GP1S74P

Manufacturer Part Number
GP1S74P
Description
Manufacturer
Sharp Electronics
Type
Transmissiver
Datasheet

Specifications of GP1S74P

Number Of Elements
1
Output Device
Phototransistor
Gap Width
5mm
Reverse Breakdown Voltage
6V
Collector-emitter Voltage
35V
Forward Current
50mA
Package Type
Compact
Collector Current (dc) (max)
20mA
Power Dissipation
75mW
Fall Time
20000ns
Rise Time
15000ns
Pin Count
3
Mounting
Snap in
Operating Temp Range
-25C to 85C
Operating Temperature Classification
Commercial
Lead Free Status / RoHS Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
GP1S74P
Manufacturer:
ICS
Quantity:
894
GP1S73P/GP1S74P
1. Compact type
2. Snap-in mounting type
3. 3 kinds of mounting plate thickness
1. Copiers
2. Laser beam printers
3. Facsimiles
*1 Pulse width 100 s, Duty ratio=0.01
*2 The connector should be plugged in/out at normal temperature.
Features
Applications
Absolute Maximum Ratings
*1
Forward current
Peak forward current
Reverse voltage
Power dissipation
Collector-emitter voltage
Emitter-collector voltage
Collector current
Collector power dissipation
Operating temperature
Storage temperature
(Applicable plate thickness : 1.0, 1.2 and 1.6 mm)
Parameter
Symbol
V
V
T
I
T
V
P
I
I
FM
P
CEO
ECO
C
F
opr
stg
C
R
- 25 to + 85
- 40 to + 85
Rating
50
75
35
20
75
1
6
6
(Ta=25˚C)
Unit
mW
mW
mA
mA
˚C
˚C
A
V
V
V
Compact Photointerrupter
with Connector
GP1S73P
GP1S74P
Outline Dimensions
Internal Connection Diagram (Both GP1S73P/GP1S74P)
0.75
0.7
1.2
4.3
4.3
(Case surface)
(Case surface)
13.6
13.6
16.8
17.0
16.8
17.0
5.0
5.0
14.0
14.0
11.4
11.4
9.9
9.9
4.3
6.9
4.3
6.9
5.4
5.4
6.8± 1
6.8 ± 1
( 6.8 )
( 6.8 )
1.6
2.4
1.6
2.4
* Unspecified tolerances shall be
* ( ) : Connector dimensions for reference
* Unspecified tolerances shall be
* ( ) : Connector dimensions for reference
GP1S73P/GP1S74P
3 Anode
2 GND
1 Collector
as follows.
as follows.
Tolerance
Tolerance
± 0.15
± 0.2
± 0.3
JAPAN AMP made
connector 175487-3
± 0.15
± 0.2
± 0.3
JAPAN AMP made
connector 175487-3
2-0.5
2-0.5
4.0
4.0
15.0 <= d
15.0 <= d
Dimension(d)
Dimension(d)
5.0<= d < 15.0
5.0<= d < 15.0
(Unit : mm)
4.7
4.7
2-0.5 ± 0.1
2-0.5 ± 0.1
(Slit)
(Slit)
1 Collector
1 Collector
2 GND
2 GND
2-0.9
2-0.9
3 Anode
3 Anode
d < 5.0
d < 5.0

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GP1S74P Summary of contents

Page 1

... CEO ECO ˚C opr ˚C stg Internal Connection Diagram (Both GP1S73P/GP1S74P) GP1S73P/GP1S74P ( 6.8 ) JAPAN AMP made connector 175487-3 (Case surface) 13.6 1.6 6.8 ± 1 5.0 4.3 4.3 2.4 2-0.5 5.4 6.9 * Unspecified tolerances shall be as follows. 9 Connector dimensions for reference 11.4 Tolerance 14 ...

Page 2

... =0. 20V CEO 5V 40mA sat ) F Rise time 2V Fall time 100 f L Fig. 2 Collector Power Dissipation vs 100 Fig. 4 Forward Current vs. Forward Voltage 1000 GP1S73P/GP1S74P MIN. TYP. - 1 20mA 0 0.5mA - - C = 2mA - Ambient Temperature 100 Ambient temperature Ta (˚C) 500 200 100 50 Ta= 85˚C 20 50˚C 25˚ ...

Page 3

... Road resistance R L Fig. 6 Collector Current vs. Collector-emitter Ta= 25˚ Fig. 8 Collector-emitter Saturation Voltage 0. 20mA 0.20 0.15 0.10 0.05 75 100 Test Circuit for Response Time R D Input GP1S73P/GP1S74P Voltage Ta= 25˚ 50mA F 40mA 6 30mA 4 20mA 3 10mA Collector-emitter voltage V CE vs. Ambient Temperature I = 40mA ...

Page 4

... Fig. 10 Frequency Characteristics 10k Frequency f (Hz) Fig. 12 Detecting Position Characteristics (1) 100 Shield distance L (mm) Fig. 11 Dark Current vs. Ambient Temperature 2mA 25˚ 100 Fig. 13 Detecting Position Characteristics ( 25˚ GP1S73P/GP1S74P - 20V Ambient temperature Ta (˚ 25˚ 100 CC Shield plate Sensor Shield distance L (mm) 100 5 ...

Page 5

... As for other general precautions, please refer to the chapter "Precautions for Use" R0.1± 0 R0.1± 0.1 7.5 Plate thickness : 1 R0.1± 0 R0.1± 0.1 2.4 2.4 2.4 7.5 Plate thickness : 1.2 mm GP1S73P/GP1S74P (Unit : mm R0.1± 0.1 7.5 Plate thickness : 1 R0.1± 0.1 2.4 2.4 7.5 Plate thickness : 1.0 mm ...

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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