KPI-511 KODENSHI | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 2

Technical content

FEATURES

  • PWB direct mount type

APPLICATIONS

  • Printers
  • Copiers
  • A T M ABSOLUTE MAXIMUM RATINGS (Ta=25¡É) ELECTRO-OPTICAL CHARACTERISTICS (Ta=25¡É) 15 mA Light Current IL VCE=5V, IF = 20mA (Non-shading) 0.5 - -tr *1. Pulse width : tw¡Â100µsec.period : T=10msec *3. For MAX. 5 seconds at the position of 1mm from the package Photointerrupter(Transmissive) Operating Temperature *2 TOPR IC mA IR Symbol VF Conditions IF=20mA 260 -40 ~ +85 mW -25 ~ +85 100 TSOL Soldering Temperature *3 *2. No icebound or dew IF VR IFP PC VCEO PD Storage Temperature *2 TSTG Collector Power Dissipation Output Collector Emitter Voltage VECO Input Unit Collector Current Power Dissipation Forward Current CT f=1KHz 100 mW mA V A RatingSymbol Parameter V V Reverse Voltage Pulse Forward Current *1 Parameter Emitter Collector Voltage Peak Wavelength Output Capacitance Forward Voltage Reverse Current Dark Current µs µs TYP. 1.2- MIN. 940 - 25 V µA10 µA nm- - PF MAX. VR=5V KPI-511 KPI-511 combines a high-output GaAs IRED with DIMENSIONS The photointerrupter high-performance standard type 1.7 Unit Fall Time Collector Emitter Saturation Voltage Input tf VCE(SAT) ICEO IF=20mA, IC=0.1mA VCC=5V, IC=2mA, RL=100§Ù VCE=10V, 0 Lux

DESCRIPTION

a high sensitivity phototransistor.

  • GAP : 5.0mm
  • Ticket Vending Machines V0.4-- Coupled Rise Time Response Time

Photointerrupter(Transmissive) KPI-511 10Response time tr, tf Road Resistance(R ) 102 103 101 L 10 §Ù( )4 tf tr 103 (§Á) CCV =5V Ta=25¢ª I =10mAF C Relative light current(I ) 100 L (%) detection characteristic Method of measuring position Optical Axis(X) Response time measurement circuit £«£­ 0 Output Input Input Optical Axis(Y) tftr td VIC LR 10% 90% OUT CCV (¡É)20 Ambient temperature(Ta) -20 0 40 60 I =20mA CEV =5V F Power dissipation(P ) Forward current(IF) Ambient temperature(Ta) 600 4020 80 (¡É) 0 100 C (§Ñ) 100 (§Ì) (V) Forward voltage(V ) 0.5 1.0 F 1.5 2.0 CTa=25¢ª (%) X Relative light current(I ) 100 L Moving distance(L) 0 +2-2 0-2 (mm) V =5V Ta=25¢ª I =10mA Ta=25¢ª I =10mA C F V =5VCC CC F Y C I =40mA Light Current(I ) Collector-Emitter Voltage(V ) 10 128642 I =20mA I =10mA I =30mA F F F F (V) CE Ta=25¢ª L (§Ì) I =50mAF C 30 4020100 (mA) Forward Current(I )F Light Current(I ) (§Ì) L C CE Ta=25¢ª V =5V 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 Dark current Vs. Ambient temperature Switching time Vs. Load resistance 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 ) detection characteristic Method of measuring position Response time measurement circuit Optical Axis(X) Optical Axis(Y)