SG-223 Kodenshi, SG-223 Datasheet

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SG-223

Manufacturer Part Number
SG-223
Description
Manufacturer
Kodenshi
Datasheet

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A P P L I C A T I O N S
Photointerrupters(Transmissive)
The SG-223 is a photointerrupter consisting of GaAs
IRED and phototransistor.
F E A T U R E S
•0.4mm aperture
•Easy to mount on P.C.B.
•Very compact
•Floppy disk drives
•C a m e r a
MAXIMUM RATINGS
O u t p u t
* 1 .tw≦100 μ sec.period :T = 1 0 m s e c .
*2. For MAX. 5 seconds at the position of 2mm from the package
ELECTRO-OPTICAL CHARACTERISTICS
I n p u t
O u t p u t
C-E saturation voltage
s p e e d s
I n p u t
Light current
S w i t c h i n g Rise time
Power dissipation
Reverse voltage
Pulse forward current
Collector power dissipation
Collector current
C-E voltage
E-C voltage
Storage temp.
Soldering temp.
Forward current
Operating temp.
Reverse current
C a p a c i t a n c e
Collector dark current
Fall time
Forward voltage
Peak wavelength
I t e m
I t e m
* 2
* 1
S y m b o l
T o p r .
T s t g .
T s o l .
S y m b o l
V
V
P
V
P
I
I
I
C E O
E C O
V
F P
F
C
D
R
C
λp
I
C t
C E ( s a t )
V
C E O
I
I
t r
t f
R
L
F
I
F
V
V
=20mA, I
- 2 5 ~ + 8 5
- 3 0 ~ + 8 5
C C
C E
R a t i n g
V=0, f=1KHz
C o n d i t i o n s
=5V, I
=5V, I
2 6 0
R
I
7 5
5 0
7 5
2 0
3 0
V
F
5
1
5
L
= 2 0 m A
V
C E
= 1 0 0Ω
R
S G - 2 2 3
= 1 0 V
= 5 V
C
F
C
= 0 . 5 m A
= 2 0 m A
= 0 . 1 m A
- 1-
( T a = 2 5℃)
U n i t
m W
m W
m A
m A
V
A
V
V
D I M E N S I O N S
M i n .
0 . 7
0 . 1 5
9 4 0
T y p .
1 . 2
2 5
1 0
1 0
M a x .
0 . 4
1 . 4
0 . 1
1 0
1 4
K O D E N S H I
μ s e c .
μ s e c .
U n i t .
n m
m A
(Unit : mm)
μA
μA
p F
V
V
( T a = 2 5℃)

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SG-223 Summary of contents

Page 1

... Photointerrupters(Transmissive) The SG-223 is a photointerrupter consisting of GaAs IRED and phototransistor •0.4mm aperture •Easy to mount on P.C.B. •Very compact •Floppy disk drives • MAXIMUM RATINGS Power dissipation ...

Page 2

Photo interrupters(Transmissive Collector power dissipation Vs. Ambient temperature Light current Vs. Collector-Emitter voltage Switching time Vs. Load resistance Forward current Vs. Forward voltage Relative light current Vs. Ambient temperature Relative light current Vs. Moving ...

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