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 Photointerrupters(Transmissive)
K DNH OESI
LG-209
DIMENSIONS
The LG(c)209 photointerrupter combine high output GaAs IRED with Photo IC.The sensor makes possible easy development of object detecting systems with highperformance,high reliability and small equipment size. LG-209L : High level output at shielding LG-209D : Low level output at shielding
(Unit : mm)
FEATURES
UPWB direct mount type UGAP 4mm 2. UWith the installation positioning boss U ow L (c)boy type (R)installation height 5.4mm (c)
APPLICATIONS
U rinters P U acsimiles F UVending machines UAmusement machines
MAXIMUM RATINGS
Item
Input
(Ta=2...) 5
Symbol Rating
100 60 5 1 17 30 200 -20~+85 -30~+85 260
Unit
mW mA V A V mA mW ... ... ...
Output
Power dissipation PD F I Forward current Reverse voltage VR *1 F Pulse forward current I P Supply voltage VCC C Low level output current I L P Power dissipation *2 Topr. Operating temp. *2 Storage temp. Tstg. *3 Tsol. Soldering temp.
*1. pulse width UZ100 *I T=10msec. sec.period *2. No icebound or dew *3. For MAX.5 seconds at the position of 1mm from the package
ELECTRO-OPTICAL CHARACTERISTICS
Item
Forward voltage Reverse current Input Peak wavelength Operating supply voltage rang Low level output voltage Input High level output voltage Low level supply current High level supply current L EH threshold input current *4 Hysteresis *5 Transmisson L EH propagation time H EL propagation time Rise time Fall time
(Ta=2...) 5
Symbol
VF R I *Ip VCC VOL VOH C I CL C I CH F I LH FI I H L /F L H tPLH tPHL tr tf
Conditions
F I= 2 0 m A VR=5V F I =20mA OL VCC =5V,FI=0mA,I =16mA R * VCC =5V,FI=12mA,L=10k y VCC =5V,FI=0mA VCC =5V,FI=20mA E VCC=5V,R=10k*y E VCC=5V,R=10k*y
MinTyp. .
1.2 4.5 4.5 940 0.3 3 2 5 0.83 1 3 0.6 0.02
Max.
1.4 10 16.5 0.4 10 10 12 0.98
Unit.
V *IA nm V V V mA mA mA *I ec. s *I ec. s *I ec. s *I ec. s
0.60
R *y VCC =5V,FI=18mA,L =3.3k
*4. FLH represents forward current when output changes from low to high. I *5. FHLrepresents forward current when output changes from high to low. I
- 1-
Photointerrupters(Transmissive)
LG-209
Power dissipation Vs. Ambient temperature
Forward current Vs. Forward voltage
Low level output voltage Vs. Low level output current
Relative threshold input current Vs. Supply voltage
Relative threshold input current Vs. Ambient temperature
- 2-


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