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 Photointerrupter(Transmissive)
KPI-210C
DESCRIPTION
The photointerrupter high-performance standard type KPI-210C combines a high-output GaAs IRED with a high sensitivity phototransistor.
DIMENSIONS
FEATURES
* High Performance * GAP : 3.18mm * High Speed Response * Widely Applicable
APPLICATIONS
* Tape-end Sensor * Timing Sensor * Edge Sensor * Copiers
ABSOLUTE MAXIMUM RATINGS
Parameter
Forward Current Input Pulse Forward Current Reverse Voltage Power Dissipation Collector Emitter Voltage Output Emitter Collector Voltage Collector Current Collector Power Dissipation Operating Temperature Storage Temperature
*2 *3 *2 *1
(Ta=25E)
Symbol
IF IFP VR PD VCEO VECO IC PC TOPR TSTG TSOL
Rating
60 1 5 100 30 5 40 100 -25 ~ +85 -40 ~ +85 260
Unit
mA A V mW V V mA mW E
E
Soldering Temperature
E
*1. Pulse width : twA100sec.period : T=10msec *2. No icebound or dew *3. For MAX. 5 seconds at the position of 1mm from the package
ELECTRO-OPTICAL CHARACTERISTICS
Parameter
Forward Voltage Input Reverse Current Capacitance Peak Wavelength Output Dark Current Light Current Coupled Collector Emitter Saturation Voltage Response Time Rise Time Fall Time
(Ta=25E)
Symbol
VF IR CT ?P ICEO IL VCE(SAT) tr tf IF=20mA VR=5V f=1KHz
Conditions
MIN.
-
TYP.
1.2 25 940 5 5
MAX.
1.7 10 10 15 0.4 -
Unit
V A
PF
nm A mA V s s
VCE=5V, 0 Lux VCE=5V, IF= 20mA (Non-shading) IF=20mA, IC=0.1mA VCC=5V, IC=2mA, RL=100U
0.5 -
1/2
Power dissipation(P )
Photointerrupter(Transmissive)
KPI-210C
Collector power dissipation Vs. Ambient temparature
( N)
L Relative light current(I Forward current(I ) F )
Forward current Vs. Forward voltage
( I) Ta=25 C Li ghtLight Current( I L ) C ur ren t( I ) L 4 3 2 1 0
Light current Vs. Forward current
VCE =5V Ta=25 C
( I)
Power dissipartion( P C ) C
50 0
0 20 40 60 80 (E) Ambient temperature(Ta) Ambient temperature(Ta)
Forward current( I F )
100
100
50
0
0
0.5
Forward voltage(V ) (%) X 100 50
2.0 Forward voltage( VFF )
1.0
1.5
(V)
L Relative light current(I )
0
10 20 30 40 (mA) Forward Current( IF ) Forward Current(I )F
Light current Vs. Collentor-Emitter voltage
( I) Ta=25 C 5 LiLightC urren t(I IL ) L ght Current( ) 4 3 2 1 IF =50mA IF =40mA IF =30mA IF =20mA IF =10mA 0 2 4 6 8 10 12 (V) Collector-Emitter Voltage(V Collector-EmitterVoltage( VCE ) CE
(%)
Relative light current Vs. Ambient temperature
VCE =5V IF =20mA
Relative light current Vs. Moving distance
Y V =5V CC C Ta=25 IF =10mA V =5V CC C Ta=25 IF =10mA
Relative light current( I L )
100 50
0 20 40 60 (E)
Ambient temperature( Ta )
Response time tr, tf
0
0 -20 0-2 0 +2-2 0 +2 0 (mm) Ambient temperature(Ta) distance( Moving
Moving distance( L )
I C RL
Input Output 90% 10% td tf tr tr tf Method ofcharacteristic 1 10 detection measuring position Optical Axis(X) 2 10 10U 3 4( ) 10 Road Resistance(R ) L 0 Method of measuring position detection characteristic Optical Axis(X) Load Resistance( RL ) Optical Axis(Y)
2/2
Optical Axis(Y)
Response time tr, tf
(A ) 3 10 2 10
Switching time Vs. Load resistance
VC CC =5V Ta=25 IF=10mA
Response time measurement circuit Response time measurement circuit V CC Input V OUT
Relative light current( I L )
Forward current Vs. Forward voltage
Light current Vs. Forward current
Light Current( I L )
Forward voltage( VF)
Forward Current( IF )
Relative light current Vs. Ambient temperature
Relative light current Vs. Moving distance
Ambient temperature( Ta )
Relative light current( I L )
Moving distance( L )
onse time measurement circuit
thod of measuring position ection characteristic Optical Axis(Y)


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