KPC614 KODENSHI | Alldatasheet

Document overview

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Technical content

The KPC614 has one channel in a 4-pin package. The KPC624 has two channels in a 8-pin package. The KPC644 has four channels in a 16-pin package.

FEATURES

  • Small Package Size
  • Collector-Emitter Voltage : Min.30V
  • Electrical Isolation Voltage : AC5000Vrms
  • UL Recognized File No. E107486

APPLICATIONS

  • AC Signal Input
  • Automatic Vending Machine
  • Copiers, Industrial Robots
  • Current Transfer Ratio : Type 1000% (at I F= 1mA, VCE=2V)
  • Interface between two circuits of different potential KPC614 • KPC624 • KPC644 These Photocouplers cosist of two Gallium Arsenide Infrared Emitting Diodes and a Silicon NPN Photo Darlington transistor perachannel. KPC614 KPC624 KP644 0.25 0 ~15 6.5 0.25 Orientation Mark 0.51Min. 3.5 0.25 2.5Min. 0.5 1.2 2.54 0.25 6.5 7.62 0.25 7.62 0.25 4.6 0.25 1 2 4 3 0 ~15 0.25 2.5Min. 2.54 0.25 1.2 0.5 6.59.7 0.25 Orientation Mark 8 6 57 2 3 41 7.62 0.25 6.5 0.25 19.8 0.25 3.5 0.250.51Min. 2.5Min. 0.5 1.2 2.54 0.25 0 ~15 0.25 6.5 Orientation Mark 15 13 11 91416 12 10 432 65 7 8 DIMENSION (Unit : mm)

MAXIMUM RATINGS (Ta=25¡É ) *1. Input current with 100µs pulse width, 1% duty cycle *2. Measured at RH=40~60% for 1min *3. 1/16 inch form case for 10sec ELECTRO-OPTICAL CHARACTERISTICS (Ta=25¡É , unless otherwise noted) IF= ¡¾10mA V=0, f=1kHz IC=0.5mA IE=0.1mA IF=0, VCE=10V VCE=0, f=1KHz IF=¡¾1mA, IC=2mA V=0, f=1kHz VCE=10V, RL=100§Ù IC=10mA *4. CTR=(IC/IF) X 100 (%) Power Dissipation PD 150 Parameter Symbol Rating Unit ¡¾60 mA Input Forward Current IF Peak Forward Current*1 IFP Junction Temperature TJ mW ¡¾1 A 125 ¡É Output Collector-Emitter Breakdown Voltage BVCEO 30 Emitter-Collector Breakdown Voltage BVECO 5 Collector Current IC 50 V V mA Collector Power Dissipation PC 150 mW Input to Output Isolation Voltage*2 Viso AC5000 Vrms Storage Temperature Tstg -55~+125 ¡É Operating Temperature Topr -30~+85 ¡É Collector Dark Current Input-Output Isolation Resistance Input-Output Capacitance Capacitance Total Power Dissipation Ptot 250 mW Current Transfer Ratio*4 Collector-Emitter Saturation Voltage Input Output Forward Voltage Capacitance Collector-Emitter Breakdown Voltage Emitter-Collector Breakdown Voltage V V nA- pF V pF Symbol V F tr -RIO 0.8 Max. 1.30 100 Unit. pF 1.2 - §Ù 90- - §Á Typ. 1.15 V KPC614 • KPC624 • KPC644 Parameter Lead Soldering Temperature*3 Tsol 260 ¡É - §Á Min. 300 120 CCE 10- C IO Coupled Rise Time Fall Time Condition tf C T CTR IF=¡¾1mA, VCE=2V RH=40~60%, V=500V BVCEO VCE(SAT) BVECO ICEO

KPC614 • KPC624 • KPC644 Ambient Temperature Ta (¡É) Forward Current vs. Ambient Temperature -20 0 20 Forward current IF (mA) 40 60 10080 Dark Current ICEO (uA) Ambient Temperature Ta (¡É) 0.001 0.01 4020 0.1 8060 100 Dark Current vs. Ambient Temperature Output Input Test Circuit VIN R RL VO VCC Waveform 10% 90% Switching Time Test Circuit tr tf Collector Power Dissipation PC (mW) Collector Power Dissipation vs. Ambient Temperature 250 Ambient Temperature Ta (¡É ) 0-20 150 100 200 8060 100 VCE=24V VCE=10V Forward Voltage VF (V) Forward Current IF (mA) 0.4 140 120 100 1.20.8 1.6 Ta=-55¡É Ta=70¡É Ta=25¡É Forward Current vs. Forward Voltage 2.0 Collector Current vs. Forward Current 97531 Forward Current IF (mA) Collector Current IC (mA) 100 60 ~ Ta=25¡É VCE=2V Ta=25¡É Collector Current vs. Collector-Emitter Voltage Collector Current IC (mA) 108642 Collector-Emitter Voltage VCE (V) IF=1mA IF=0.5mA IF=2mA IF=1.5mA IF=2.5mA IF=3mA PC(max.) Response Time tr, ft 0.05 Load Resistance RL (§Ú) 0.20.1 0.5 1 2 VCE=10V IC=10mA Ta=25¡É 100 1000 5000 Response Time vs. Load Resistance tf tr