EE-SX4070 Omron, EE-SX4070 Datasheet - Page 2

OPTO SENSOR 8MM WIDE SLOT TYPE

EE-SX4070

Manufacturer Part Number
EE-SX4070
Description
OPTO SENSOR 8MM WIDE SLOT TYPE
Manufacturer
Omron
Type
Transmissiver
Datasheets

Specifications of EE-SX4070

Sensing Distance
0.315" (8mm)
Sensing Method
Transmissive
Output Configuration
NPN - Open Collector/Light-ON
Mounting Type
Through Hole
Current - Supply
3.2mA
Voltage - Supply
4.5 V ~ 16 V
Package / Case
PCB Mount
Aperture Width
0.5 mm
Termination Style
Solder Pin
No. Of Channels
1
Optocoupler Output Type
Phototransistor
Input Current
20mA
Output Voltage
28V
Opto Case Style
Through Hole
No. Of Pins
5
Operating Temperature Range
-40°C To +75°C
Body Style
Rectangular
Brand/series
SX4
Current, Switching
16 mA
Function
Vane
Ip Rating
PCB
Output
Voltage/Current
Primary Type
Photoelectric
Sensing Mode
Transmissive
Technology
Photoelectric
Termination
Solder
Voltage, Supply
16 VDC
Voltage, Switching
28 V
External Depth
6mm
External Width
17.7mm
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Response Time
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
EESX4070
OR524

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
EE-SX4070
Manufacturer:
Omron Electronics
Quantity:
135
■ Engineering Data
Note: The values in the parentheses apply to the EE-SX4070.
Note: 1. Hysteresis denotes the difference in forward LED
Forward Current vs. Collector
Dissipation Temperature Rating
LED Current vs. Ambient Temper-
ature Characteristics (Typical)
Current Consumption vs. Supply
Voltage (Typical)
Ambient temperature Ta ( C)
Ambient temperature Ta ( C)
2. The value of the response frequency is measured
I
FT
current value, expressed in percentage, calculated
from the respective forward LED currents when the
photo IC in turned from ON to OFF and when the
photo IC in turned from OFF to ON.
Supply voltage V
by rotating the disk as shown below.
I
FT
OFF (I
0.5 mm
ON (I
FT
FT
ON)
OFF)
Ta = 25 C
I
F
= 0 mA (15 mA)
0.5 mm
V
R
CC
CC
L
= 330
= 5 V
2.1 mm
(V)
Forward Current vs. Forward
Voltage Characteristics (Typical)
Low-level Output Voltage vs.
Output Current (Typical)
Response Delay Time vs. Forward
Current (Typical)
EE-SX3070/-SX4070
Disk
V
R
Ta = 25 C
Forward voltage V
CC
L
Forward current I
Output current I
= 330
= 5 V
Ta = 30 C
Ta = 25 C
Ta = 70 C
V
(EE-SX3@@)
V
(EE-SX4@@)
OUT
OUT
3. The following illustrations show the definition of response
delay time. The value in the parentheses applies to the EE-
SX4070.
Ta = 25 C
V
I
Output
F
CC
Input
= 0 mA (15 mA)
= 5 V
C
F
F
(mA)
(V)
(mA)
EE-SX3070
Photomicrosensor (Transmissive)
LED Current vs. Supply Voltage
(Typical)
Repeat Sensing Position
Characteristics (Typical)
Low-level Output Voltage vs. Am-
bient Temperature Characteristics
(Typical)
Ambient temperature Ta ( C)
Output
I
Input
FT
I
OL
OFF (I
Supply voltage V
= 16 mA
I
Distance d (mm)
FT
I
OL
EE-SX4070
ON (I
FT
= 5 mA
ON)
FT
Ta = 25 C
I
V
R
n = repeat 20 times
V
F
I
OFF)
CC
L
F
CC
= 15 mA
= 330
= 0 mA (15 mA)
= 5 V
= 5 V
Center of optical axis
Ta = 25 C
R
d
L
1
CC
= 1 k
= 0.01 mm
(V)
121

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