SG-207 [KODENSHI]

Photointerrupters(Transmissive); 光断续器(透射)
SG-207
型号: SG-207
厂家: KODENSHI KOREA CORP.    KODENSHI KOREA CORP.
描述:

Photointerrupters(Transmissive)
光断续器(透射)

文件: 总2页 (文件大小:267K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Photointerrupters(Transmissive)  
K O D E N S H I  
S G - 2 0 7  
DIMENSIONS  
(Unit : mm)  
The SG- 207 p ho to in te rrup te r hig h- p e rfo rm a n c e  
standard type, combines high- output GaAs IRED with  
high sensitive phototransistor.  
FEATURES  
• High performance  
• High- speed response  
• 5mm gap.  
• Widely applicable  
APPLICATIONS  
• Tape- end sensors  
• Timing sensors  
• Edge sensors  
• C o p i e r s  
MAXIMUM RATINGS  
( T a = 2 )5  
I t e m  
S y m b o Rl a t i n g U n i t  
D
Power dissipation  
P
1 0 0  
m W  
R
Reverse voltage  
V
5
V
I n p u t  
F
Forward current  
Pulse forward current *  
I
6 0  
m A  
A
1
F
I
P
1
C
Collector power dissipation  
Collector current  
P
1 0 0  
m W  
m A  
V
C
I
C
V
4 0  
O u t p u t  
E
C
O
O
C- E voltage  
3 0  
E
V
E- C voltage  
5
V
Operating temp.  
Storage temp.  
Soldering temp.*  
T o p r .  
T s t g .  
T s o l .  
-
-
2 0 ~ + 8 5  
3 0 ~ + 8 5  
2 4 0  
2
* 1 .  
100 μsec.period T = 1 0 m s e c .  
*2. For MAX. 5 seconds at the position of 2mm from the package  
ELECTRO-OPTICAL CHARACTERISTICS  
( T a = 2 )5  
I t e m  
S y m b o l  
F
V
R
I
C t  
λ p  
C o n d i t i o n s  
M i n . T y p .  
1 . 2  
M a x .  
U n i t .  
F
Forward voltage  
Reverse current  
C a p a c i t a n c e  
Peak wavelength  
I = 3 0 m A  
1 . 5  
1 0  
V
R
V = 5 V  
μ A  
p F  
n m  
μ A  
m A  
V
I n p u t  
V= 0, f= 1KHz  
2 5  
9 4 0  
C
E
O
C E  
O u t p u t Collector dark current  
Light current  
C- E saturation voltage  
I
V
=
1 0 V  
0 . 1  
0 . 3  
L
C
E
F
I
C
V
= 5V, I= 2 0 m A  
0 . 2 5  
E
(
s
a
t
)
F
C
V
I = 30mA, I = 0 . 1 m A  
C
V
C
C
Rise time  
t r  
t f  
= 5V, I = 2 m A  
μ s e c .  
μ s e c .  
5
5
S w i t c h i n g  
s p e e d s  
Fall time  
L
R = 1 0Ω0  
- 1-  
Photo interrupters(Transmissive)  
S G - 2 0 7  
Collector power dissipation Vs.  
Ambient temperature  
Forward current Vs.  
Forward voltage  
Light current Vs.  
Forward current  
Light current Vs.  
Collector-Emitter voltage  
Relative light current Vs.  
Ambient temperature  
Dark current Vs.  
Ambient temperature  
Switching time Vs.  
Load resistance  
Relative light current Vs.  
Moving distance  
- 2-  

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