Sharp GP2L20R, GP2L20L Datasheet

Compact, Thin Type
GP2L20L/GP2L20R
Photointerrupter
GP2L20L/GP2L20R
Features
1. Correspond to DAT prism system
2. Compact and thin
Applications
1. Digital audio tape recorder
Absolute Maximum Ratings
Parameter
1
Input
Output
1 Pulse width<=100 µs, duty ratio= 0.012 For 5 seconds
Peak forward current Reverse voltage Power dissipation Collector-emitter voltage Emitter-collector voltage Collector current Collector power dissipation Operating temperature Storage temperature
2
Soldering temperature
Outline Dimensions
Internal connection diagram
GP2L20L
4.0
+0
8.8
- 0.15 + 0
1.0
- 0.1
2- φ 1.0
± 0.1
6.0
❈(11.0
1 Anode
3
2 Emitter 3 Collector 4 Cathode
2
+ 0.1
φ 2.0
- 0
R2.0 2 - φ 1.0
34
+ 0
- 0.1
)
(
Ta= 25˚C
)
2.54
(
Resin burr
MAX.
0.8
)
5.0
(
2 - 1.2
+
0.3
4-0.4
-
0.1
Tolerance0.15mm ∗ ( ): Reference dimensions
to those measured from the lead base.
∗∗ L : GP2L20L
)
4
1
0.1
±
5.0
12
±
0.1
3.75
L∗∗
Symbol Rating Unit
I
F
I
FM
V
R
50 mA
1A 6V
P75mW
V
CEO
V
ECO
I
C
P
C
T
opr
T
stg
T
sol
35 V
6V 20 mA 75 mW
- 25 to + 85 ˚C
- 40 to + 100 ˚C 260 ˚C
(
Unit : mm
GP2L20R
1 Anode
2
3
MAX.
Resin burr
3.4
)
0.7
(
The dimensions indicated by refer
R: GP2L20R
1
2 Emitter 3 Collector 4 Cathode
4
(
)
GP2L20R
2
3
+ 0
5.0
- 0.1 + 0
4.0
- 0.1
+
0.3
4-0.45
-
0.4
)
1
4
0.1
+0-
2.5
0.1
+0-
2.5
MIN.
10.0
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.
GP2L20L/GP2L20R
Electro-optical Characteristics
Parameter Symbol Conditions MIN. TYP. MAX. Unit
IF= 20mA - 1.2 1.4 V IFM= 0.5A - 3 4 V VR=3V - - 10 µA VCE= 10V - - A VCE= 5V, IF= 20mA 1 - 20 mA VCE= 2V, IC= 2mA
= 100
R
L
VCE= 5V, IF= 20mA -
Test Condition and Arrangement for Collector Current
MONOSASHI
Input
Output
Transfer charac­teristics
Forward voltage V Peak forward voltage V Reverse current I Collector dark current I
3
Collector current I Respons time
4
Leak current
Rise time Fall time
I
FM
R
CEO
C
t t
LEAK
F
r
f
3 The condition and arrangement of the reflective object are shown in the right drawing.4 Without reflective object
PRISM
-
-
1x10
80 400 70 350
(
Ta = 25˚C
-6
)
µ s µ s
-5µA
13mm
Fig. 1 Forward Current vs.
Ambient Temperature
60
50
)
40
mA
(
F
30
20
Forward current I
10
0
- 25 0 25 50 75 85 100 Ambient temperature Ta (˚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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