Datasheet

1
Photomicrosensor (Transmissive)
EE-SX1350
Compact Slot / SMD Type
(Slot width: 5 mm)
Unique 5 mm Slot width.
PCB surface mounting type.
High resolution with a 0.5-mm-wide aperture.
Ordering Information
Photomicrosensor
Ratings, Characteristics and Exterior Specifications
Absolute Maximum Ratings (Ta = 25°C)
*1. Continuous Forward Current and Collector Power Dissipation
must be derated complying. The product should be used without
freezing or condensation.
*2. In case of reflow soldering, conditions which are shown at the
temperature profile should be kept.
Exterior Specifications
Electrical and Optical Characteristics
(Ta = 25°C)
* Refer to the following timing diagram for tr and tf.
Be sure to read Safety Precautions on page 3.
Appearance
Sensing
method
Connecting
method
Sensing distance
Aperture size (H W)
(mm)
Output type Model
Transmissive
(slot type)
SMT
Emitter 1.4
1.4
Detector 1.4
0.5
Phototransistor EE-SX1350
9
4
9
5 mm (slot width)
Item Symbol Rated value Unit Remarks
Emitter
Forward
current
I
F 30 mA --- *1
Pulse forward
current
I
FP 100 mA
Duty ratio:
1%
Puls width:
0.1 ms
Reverse
voltage
V
R 4 V ---
Detector
Collector-
Emitter voltage
V
CEO 12 V ---
Emitter-
Collector
voltage
V
ECO 5 V ---
Collector
current
I
C 20 mA ---
Collector
dissipation
P
C 50 mW --- *1
Operating
temperature
T
opr -30 to 85 °C --- *1
Storage
temperature
T
stg -40 to 100 °C --- *1
Reflow soldering
temperature
T
sol 255 °C
10 sec.
max. *2
Connecting method Weight (g)
Material
Case
SMT 0.3 PPS
Item Symbol
Value
Unit Condition
MIN. TYP. MAX.
Emitter
Forward
voltage
V
F --- 1.2 1.5 V IF = 30 mA
Reverse
current
I
R --- 0.01 10 AVR = 4 V
Peak emission
wavelength
P --- 940 --- nm IF = 20 mA
Detector
Light current IL 0.4 --- 4 mA
I
F = 20 mA,
V
CE = 10 V
Dark current ID --- 10 200 nA
V
CE = 10 V,
0 lx
Collector-
Emitter
saturated
voltage
V
CE (sat) --- 0.1 0.4 V
I
F = 20 mA,
I
L = 0.1 mA
Peak spectral
sensitivity
wavelength
P --- 900 --- nm VCE = 5 V
Rising time tr --- 11 --- s
V
CC = 5 V,
R
L = 100
I
L = 1 mA *
Falling time tf --- 14 --- s
V
CC = 5 V,
R
L = 100
I
L = 1 mA *
Input
Output
Output
Input
90%
10%
t
t
ft r
t
0
VCC
RL
0
IL

Summary of content (6 pages)