
RPI-1133
Photointerrupter, Small type
Applications
Optical control equipment
Features
1) Small slit width (0.3mm) for high
precision.
2) Fast response.
3) Built-in visible light filter.
Absolute maximum ratings (Ta
=25°C)
Electrical and optical characteristics (Ta
=25°C)
Electrical and optical characteristics curves
External dimensions (Unit : mm)
FORWARD
CURRENT
:
I
F
(mA)
FORWARD VOLTAGE : VF
(V)
0
0.4
0.8
1.2
1.6
2.0
0
10
20
30
40
50
25°C
0
°C
25
°C
50
°C
75
°C
Fig.1 Forward current vs.
forward voltage
Notes:
1. Unspecified tolerance
shall be
±0.2 .
2. Dimension in parenthesis are
show for reference.
Cut-off frequency
Non-coherent Infrared light emitting diode used.
Peak light emitting wavelength
λP
fC
IF
=50mA
1
MHz
950
nm
Infrared
light
emitter
diode
Response time
515
0.05
0.15
Photo
IC
This product is not designed to be protected against electromagnetic wave.
Cross-section A-A
Optical axis center
Gap
Vcc
Vo
GND
Anode
Cathode
Thorugh hole
A
C0.2
2-R0.2
C0.8
+0.1
φ1.2 -0
5-
φ0.8
1.25
3.2
2.5
4.2
4
0.3
1.1
±0.1
5
2.8
Min5.4
2.1
(1.7)
(2.5)
5-0.5
5-0.2
(3.2)
1.2
A
THRESHOLD
INPUT
CURRENT
:
I
FHL
,I
FLH
(mA)
AMBIENT TEMPERATURE : Ta
(
°C)
20
0
204060
0.5
0.7
0.9
1.1
1.3
1.5
IFHL
IFLH
Fig.4 Threshold input current
vs. ambient temperature
LOW
LEVEL
OUTPUT
VOLTAGE
:
V
OL
(V)
LOW LEVEL OUTPUT CURRENT : IOL
(mA)
010
5.0
0
100
200
300
400
500
Fig.2 Low level output voltage vs.
low level output current
Fig.8 Response time measurement circuit
RL
GND
Input
50%
tPHL
tPLH
tf
tr
VOL
VOH
1.5V
90%
10%
output
Amplifier
Output
ZO
=50
47
IF
=5mA
+3V
Constant voltage
circuit
tr
=tf=0.01s
VCC
RELATIVE
OUTPUT
VOLTAGE
:
V
O
(%)
DISTANCE : d
(mm)
0
2.0
2.5
100
Fig.6 Relative output voltage vs.
distance characteristics
d
20
0
20
40
60
80
100
10
50
40
30
20
0
AMBIENT TEMPERATURE : Ta (
°C)
FORWARD
CURRENT
:
I
F
(mA)
Fig.7 Forward current falloff
LOW
LEVEL
OUTPUT
VOLTAGE
:
V
OL
(V)
AMBIENT TEMPERATURE : Ta
(
°C)
-20
0
204060
0
0.1
0.2
0.3
0.4
0.5
IOL=2mA
IOL=5mA
IOL=8mA
Fig.3 Low level output voltage vs.
ambient temperature
RISE
FALL
TIME
:
t
r,t
f(
sec)
LOAD RESISTANCE : RL
(k
)
0.1
0.5
1.0
5.0
10
0.2
0.4
0.6
0.8
1.0
tr
tf
Fig.5 Response time
Fig.6vs. load resistance
Parameter
Symbol
VF
IR
VCC
VOL
IFHL
IFLH / IFHL
Min.
2.0
0.25
0.4
Typ.
1.1
0.08
0.7
Max.
1.3
10
7.0
0.35
2.5
0.9
Unit
VIF
=10mA
VR
=5V
VCC
=3V, IOL=2mA
VCC
=3V, IF=0mA
VCC
=3V, IF=5mA
VCC
=3V, IF=0mA
VCC
=3V
VCC
=3V
A
V
VOH
2.8
3.0
V
ICCL
0.35
1.5
mA
ICCH
0.35
1.5
mA
tPLH
22
66
VCC
=3V, IF=5mA, RL=100
VCC
=3V, IF=5mA, RL=100
s
tPHL
5.5
16
tr
515
tf
tr
tf
0.05
0.15
Conditions
Forward voltage
Reverse current
Power supply voltage
Output low level voltage
Output high level voltage
Low level power supply current
High level power supply current
High
→ Low
Threshold input current
Hysteresis
Input
charac-
teristics
Output
characteristics
Transfer
characteristics
Response
time
Low
→ High
Propagation delay time
High
→ Low
Propagation delay time
Rise time
Fall time
Parameter
Symbol
PD
IF
VCC
VR
IO
PD
Limits
10
80
50
5
80
7
Unit
mA
V
mW
V
mA
mW
Topr
20 to +60
°C
Tstg
40 to +100
°C
Forward current
Reverse voltage
Power dissipation
Power supply voltage
Output current
Power dissipation
Operating temperature
Storage temperature
Output
(photo
IC)
Input
(LED)