KPI-23FTH KODENSHI | Alldatasheet

Document overview

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Technical content

FEATURES

  • Widely Applicable
  • GAP : 3.0mm
  • Compact & Light

APPLICATIONS

  • Printers
  • Copiers
  • ATM ABSOLUTE MAXIMUM RATINGS (Ta=25¡É) ELECTRO-OPTICAL CHARACTERISTICS (Ta=25¡É) Pulse Forward Current *1 25 - *2. No icebound or dew mW PC Emitter Collector Voltage mW §Ü f=1KHz, V=0V tf VCE(Sat) tr ICEO ¥ìA VCE=10V, 0 Lux mA60 IF=20mA, IC=0.1mA -30 ~ +85 mA ¥ëP IL CT VR=5V TYP. 1.2 Parameter 260 Input Peak Wavelength IF=20mA MIN. TSOL 100
  • Timers V A Rating 1IFP Reverse Voltage 1.5 KPI-23FTH KPI-23FTH combines a high-output GaAs IRED with DIMENSIONS The photointerrupter high-performance standard type

DESCRIPTION

a high sensitivity phototransistor. 0.1 0.4 mA VCE=5V, IF=20mA (Non-shading) 0.5 µs µs VCC=5V, IC=2mA, RL=100§Ù - -5 Coupled Rise Time Collector Emitter Saturation Voltage Response Time Fall Time Light Current Soldering Temperature *3 Power Dissipation Collector Emitter Voltage IF VR VCEO Collector Current Storage Temperature *2 TSTG Collector Power Dissipation Output Forward Voltage Reverse Current Capacitance Dark Current

  • Connector Type V V Symbol Forward Current Unit Photointerrupter(Transmissive) Operating Temperature *2 TOPR IC 40 100 VECO PD Parameter *1. Pulse width : tw¡Â100¥ìsec.period : T=10msec *3. For MAX. 5 seconds at the position of 1mm from the package IR Symbol VF Conditions -20 ~ +75 Input Output MAX. nm-940- Unit V ¥ìA

Photointerrupter(Transmissive) KPI-23FTH I =20mAF Relative light current(I ) Ambient temperature(Ta) Response time tr, tf 102 Road Resistance(R ) 102 1010 L 3 4 tr tf §Ù( ) 103 (§Á) CTa=25¢ª I =10mA CC F V =5V -20 100 detection characteristic Method of measuring position Optical Axis(X) £«0 Output tr td Optical Axis(Y) 10% tf 90% C Response time measurement circuit Input Input I 20 400 60 (¡É) V V LR OUT CC Forward voltage(V ) (§Ì)(§Ñ) Power dissipation(P ) 100 C (¡É) Ambient temperature(Ta) 4020 60 80 L (%) 0 0.5 Forward current(IF) 100 V =5VCE 1.51.0 F 2.0 (V) Ta=25¢ªC Relative light current(I ) Moving distance(L) 0-2 -2+2 (mm)+2 (%) X 100 L V =5VCC I =10mA Ta=25¢ª F Y C CCV =5V FI =10mA Ta=25¢ªC Light Current(I ) Collector-Emitter Voltage(V ) I =10mA I =20mA I =30mA CE F 6 108 F F (V)12 I =50mA I =40mA (§Ì) L Ta=25¢ª F F C V =5V Forward Current(I ) Light Current(I )1 0 10 20 L (mA) F 4030 Ta=25¢ª CE C (§Ì) 100 (§Ñ) Ambient temperature(Ta) 20 40 80 (¡É) Collector power dissipation Vs. Ambient temparature Forward current Vs. Forward voltage Light current Vs. Forward current Light current Vs. Collentor-Emitter voltage Relative light current Vs. Ambient temperature Switching time Vs. Load resistance Relative light current Vs. Moving distance Power dissipartion( PC ) Forward current( I F ) Light Current( I L ) Ambient temperature(Ta) Forward voltage( VF) Forward Current( IF ) Light Current( I L ) Relative light current( I L ) Response time tr, tf Relative light current( I L ) Collector-Emitter Voltage( VCE ) Ambient temperature( Ta ) Load Resistance( RL ) Moving distance( L ) Response time measurement circuit Optical Axis(X) Optical Axis(Y) detection characteristic Method of measuring position