Sharp GP2L23L Datasheet

Compact, Thin Type
GP2L23L/GP2L23R
Photointerrupter
GP2L23L/GP2L23R
Features
1. Correspond to prism system
2. Compact and thin (Thickness: 3mm
)
Applications
1. Specified for tape-end detection for digital audio tape recorders
Outline Dimensions
Internal connection diagram
GP2L23L
1 Cathode 2 Anode 3 Emitter 4 Collector
4.5
MAX.
Resin burr
0.8
+ 0.3
- 0.1
41
7.75
4.0
2 -(2.54
12 34
3.75
φ
2.0
R2.0
2 -φ1.2
±
0.1
)
23
4- 0.45
(
Unit : mm
GP2L23R
1 Emitter 2 Collector 3 Cathode 4 Anode
12 34
3.0
1.5
∗∗
+ 0.3
- 0.1
(
1.15
L
)
5.0
)
5.0
0.25
(
∗ Tolerance0.15mm ∗ ( ): Reference dimensions ∗∗ L : GP2L23L
R: GP2L23R
1.0
1.0
φ
2 -
)
±0.1
6.0
Absolute Maximum Ratings
(
Ta= 25˚C
)
Parameter Symbol Rating Unit
Forward current
1
Input
Peak forward current Reverse voltage Power dissipation Collector-emitter voltage
Output
Emitter-collector voltage Collector current
Collector power dissipation Operating temperature Storage temperature
2
Soldering temperature
1 Pulse width<=100 µs, Duty ratio= 0.012 For 3 seconds
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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
P75mW
V
CEO
V
ECO
I
C
P
C
T
opr
T
stg
T
sol
50 mA
1A 6V
35 V
6V 40 mA 75 mW
- 20 to + 85 ˚C
- 40 to + 100 ˚C 260 ˚C
GP2L23L/GP2L23R
Electro-optical Characteristics
Parameter Symbol Conditions MIN. TYP. MAX. Unit
I
Input
Forward voltage V Peak forward voltage V
Output Reverse current
Collector dark current
3
Transfer charac­teristics
Collector current Response time
4
Leak current
Rise time Fall time
I
I
I
CEO
I
LEAK
F
FM
R
C
t
r
t
f
3 The condition and arrangement of the reflective object are shown in the following drawing4 Without reflective object
Test Condition and Arrangement for Collector Current
MONOSASHI PRISM
13mm
GP2L23L GP2L23R
= 20mA
F
= 0.5A
I
FM
=3V
V
R
= 10V
V
CE
= 5V, IF= 20mA
V
CE
= 2V, IC= 10mA
V
CE
= 100, d= 13mm
R
L
= 5V, IF= 20mA
V
CE
(
Ta=25˚C
)
- 1.2 1.4 V
-34V
--10µA
--10-6A
0.8 - 15 mA
- 80 400
- 70 350
µ s µ s
--50µA
Fig. 1 Forward Current vs.
Ambient Temperature
60
50 ) mA
40
(
F
30
20
Forward current I
10
0
- 25 0 25 50 75 85 100 Ambient temperature T
a
(˚C
Fig. 2 Collector Power Dissipation vs.
Ambient Temperature
120
)
100
mW
(
C
80 75
60
40
20
Collector power dissipation P
0
)
- 25 0 25 50 75 85 100 Ambient temperature Ta (˚C
)
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