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 Photointerrupters(Transmissive)
K DNH OESI
DG-290
DIMENSIONS
The DG(c)290 carrying a unique hysteresis transistor (BAMBIT)developed by KODENSHI CORP.facililates digital output bymeans of two leads.This digital photointerrupter,because of its ultra(c) compact size,requires little space.
(Unit : mm)
FEATURES
UDIGITAL OUTPUT : directly connect to a microcomputer digital port. UHYSTERESIS : stable against chattering of the object U IGH H (c)SPEED RESPONSE:faster than phototransistor type USetting easy
APPLICATIONS
U D(c)ROM drive C USensor of camera lens position UEncoder of printer or scanner
MAXIMUM RATINGS
Item
Input
(Ta=2...) 5
Symbol Rating
75 50 5 1 0.5 10 0.3 -25~+80 260
Unit
mW mA V A mA V V ... ...
Output
Power dissipation PD F Forward current I Reverse voltage VR *1 F Pulse forward current I P c Collector current I VCEO C-E voltage E-C voltage VECO *2 Topr. Operating temp. *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 Peak wavelength 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 *I p F I LH F I HL/FLH I tPLH tPHL tr tr
Conditions
F= I 20mA VR=5V F I =20mA E VCC =3V,FI=0mA,R=100k *y R VCC =3V,FI=14mA,E =100k *y E=100k*y VCC=3V,R E=100k*y VCC=3V,R
MinTyp. .
1.2 2.0 2.5 940 0.25 2.65 880 6.0 0.85 10 25 2.5 15
Max.
1.4 10 5.5 0.4 12.0 V *IA nm V V V nm mA
Unit.
R VCC =3V,FI=14mA,E =100k *y
*4. IFLH represents forward current when output changes from low to high. *5. IFHL represents forward current when output changes from high to low.
*I ec. s *I ec. s *I ec. s *I ec. s
- 1-
Photointerrupters(Transmissive)
DG-290
Power dissipation Vs. Ambient temperature
Threshold input current Vs. Ambient temperature
Forward current Vs. Forward voltage
Output voltage Vs. Ambient temperature
LED Vs. Supply voltage
LED Vs. Load resistance
Hysteresis width Vs. Load resistance
Hysteresis width Vs. Ambient temperature
Switching time Vs. Load resistance
- 2-


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