Datasheet GP1S560 Datasheet (Sharp)

Page 1
GP1S560
GP1S560
Compact, High Sensing Accuracty Type Photointerrupter
Features
1. High sensing accuracy (Slit width:
0.15mm
2. Compact (Case height: 6mm
)
)
3. With positionig pin
4. PWB direct mounting type
Applications
2. VCRs, cassette decks
3. Optoelectronic switches
Outline Dimensions (Unit : mm
Internal connection diagram
23
3 Collector 4 Emitter
0.15 C0.5
4 - 0.45
(
2.54
±0.07
)
1
)
+ 0.3
- 0.1
4 - 0.25
+ 0.3
- 0.1
1.50.7
±0.3
8.0
+ 0.2
2.0
- 0.1
1S560
(
)
5.1
±0.15
7.2 14
32
4
4.0
1 Anode 2 Cathode
(
Both sides of detector and emitter Slit width
0.6-0
+
6.0
MIN.
12.0
2 - φ 0.7
*Tolerance 0.2mm *( ): Reference dimensions
)
Absolute Maximum Ratings
(
Ta = 25˚C
)
Parameter Symbol Rating Unit
Forward current 50 mA
*1
Input
Peak forward current Reverse voltage 6 V Power dissipation 75 mW Collector-emitter voltage 35 V
Output
Emitter-collecter voltage 6 V Collector current
Collector power dissipation 75 mW
Storage temperature - 40 to + 100 ˚C
*2
Soldering temperature
*1 Pulse width<=100µ 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.
I
F
I
FM
V
R
1A
P
V
CEO
V
ECO
I
C
P
C
T
opr
T
stg
T
sol
20 mA
- 25 to + 85 ˚COperating temperature
260 ˚C
Page 2
GP1S560
Electro-optical Characteristics
Parameter Symbol Conditions
Forward voltage V
Input
Output Collector dark current I
Transfer­charac­teristics
Fig. 1 Forward Current vs.
Ambient Temperature
) mA
(
F
Peak forward voltage V Reverse current I
Collector Current Ic Collector-emitter
saturation voltage
Response time
60
50
40
30
Rise time t
Fall time t
V
FM
R
CEO
CE(sat
r
f
IF= 20mA
F
IFM= 0.5A VR=3V VCE= 20V V
CE
I
F
)
IC= 0.2mA VCE= 2V, IC= 0.5mA
R
L
MIN. TYP. MAX. Unit
- 1.2 1.4 V
-34V
--10µA
--
= 5V, IF= 20mA
= 40mA,
0.2 - - mA
- - 0.4 V
-3890µs
=1k
- 48 100 µ s
Fig. 2 Collector Power Dissipation vs.
Ambient Temperature
120
)
100 mW
(
C
80
75
60
(
Ta = 25˚C
100 nA
)
20
Forward current I
10
0
- 25 0 25 50 75 85 100 Ambient temperature Ta (˚C
Fig. 3 Peak Forward Current vs.
Pulse width<=100 µs
= 25˚C
T
2000
) mA
1000
(
FM
500
200
100
Peak forward current I
50
20
-2
52525
10
Duty ratio
a
-1
10
40
20
Collector power dissipation P
15
0
)
- 25 0 25 50 75 Ambient temperature Ta (˚C
85
100
)
Fig. 4 Forward Current vs.
Forward Voltage Duty Ratio
500
200
)
100
mA
(
50
F
20
10
Forward current I
5
2
1
1
Ta= 75˚C
50˚C
0
Forward voltage VF (V
25˚C
0˚C
- 25˚C
)
32.521.510.5
Page 3
GP1S560
Fig. 5 Collector Current vs.
Forward Current
3.0
2.5
) mA
(
2.0
C
1.5
1.0
Collector current I
0.5
0
10
20
Forward current I
Fig. 7 Collector Current vs.
Ambient Temperature
1.0
0.8
) mA
(
C
0.6
0.4
Collector current I
0.2
0
025-25
Ambient temperature Ta (˚C
Fig. 9 Response Time vs.
Load Resistance
1000
500
100
50
) µ s
(
10
5
1
Response time
0.5
t
f
t
t
d
t
30 40 500
(mA
F
50 10075
r
s
V
=5V
CE
Ta= 25˚C
)
IF= 20mA V
=5V
CE
)
V
=2V
CE
I
= 0.5mA
C
= 25˚C
T
a
Fig. 6 Collector Current vs.
Collector-emitter Voltage
3.0 = 25˚C
T
a
2.5
)
mA
(
2.0
C
1.5
= 50mA
I
F
40mA
30mA
1.0
Collector current I
0.5
0
054321
Collector-emitter voltage VCE (V
20mA
10mA
78 9106
)
Fig. 8 Collector-emitter Saturation Voltage vs.
Ambient Temperature
0.2
) V
(
)
sat
(
CE
V
0.1
Collector-emitter saturation voltage
0
025-25
Ambient temperature Ta (˚C
I
= 40mA
F
I
= 0.2mA
C
50 10075
)
Test Circuit for Response Time
V
Input R
CC
R
D
L
Output
Output
Input
t
d
t
s
t
t
r
f
10% 90%
0.1
0.1 1 Load resistance R
L
(k
)
100010010
Page 4
GP1S560
Fig.10 Frequency Response Fig.11 Collector Dark Current vs.
Ambient Temperature
-6
10
V
=
CE
5
20V
2
-7
10
5
2
-8
10
5 2
-9
10
5 2
-10
0-25
Ambient temperature T
7550 10025
)
(˚C
a
0
)
dB
(
-5
-10
Voltage gain Av
-15
-20
= 10k
R
L
3
2525 25 25
10
Frequency f (Hz
1001k
4
10
)
10
V
CE
I
= 0.5mA
C
T
= 25˚C
a
5
=2V
) A
(
CEO
Collector dark current I
6
10
10
Fig.12 Relative Collector Current vs. Fig.13 Relative Collector Current vs.
Shield Distance (1
100
)
%
(
50
Relative collector current
)
IF= 20mA V
CE
T
= 25˚C
a
Shield
-+
(
Detector center
=5V
Shield Distance (2
100
)
L
Detector
0
)
%
(
50
Relative collector current
)
= 20mA
I
F
V
=5V
CE
= 25˚C
T
a
Shield
L
Detector
)
­0
+
Detector center (
0
-
-
0.5
0.4-0.3-0.2-0.1
0 0.1 0.2 0.3 0.4 0.5
Shield distance L (mm
)
Precautions for Use
(1)
In case of cleaning, use only the following type of cleaning solvent.
Ethyl alcohol, methyl alcohol, isopropyl alcohol
(2)
As for other general cautions, refer to the chapter “ Precautions for Use”.
0
- 1.0 1.0 Shield distance L (mm
2.00- 2.0
)
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