SPC815M Semiconductor Mini Flat Photo Coupler Features • Office machine • AC/DC input module • Telecommunication • Programmable controller • Power supply l UL recognized file No. E192807 Outline Dimensions unit : mm 4.4±0.2 Anode Mark 0.4±0.2 2.54±0.2 3.6±0.2 45° 85.0° 95° 2.6±0.2 0.1±0.05 0.2±0.05 0.5 MIN 7.0 TYP 1 4 2 3 PIN Connections 1.Anode 2.Cathode 3.Emitter 4.Collector KPC-0006-000 1 SPC815M Absolute maximum ratings (Ta=25) Characteristic IRED Detector Coupler Symbol Ratings Unit Continuous Forward Current IF 50 mA Reverse Voltage VR 5 V Power Dissipation PD 70 mW Collector-Emitter Voltage VCEO 35 V Emitter-Collector Voltage VECO 6 V Collector Current IC 50 mA Power Dissipation PD 150 mW Operating Temperature Topr -30~100 ℃ Storage Temperature Tstg -55~125 ℃ Soldering Temperature Tsol *1 Viso Isolation Voltage 260℃ within 10 seconds 2,500 Vrms *1.Measured at RH = 40 ~60% for 1 min Electrical Characteristics Parameter IRED Detector Coupler Symbol Test Condition Min. Typ. Max. Unit Forward Current VF IF=10mA - 1.15 1.3 V Reverse Current IR VR=5V - - 10 uA Capacitance CT V=0V,f=1MHz - 30 - pF Collector-Emitter Breakdown Voltage BVCEO IC=0.5mA 35 - - V Emitter-Collector Breakdown Voltage BVECO IE =10uA 6 - - V Collector Dark Current ICEO IF=0mA,VC E=10V - - 100 nA Capacitance C CE VCE=0,f=1MHz - 10 - pF Current Transfer Ratio CTR IF=1mA,VC E=2V 600 1600 - % VCE(sat) IF=20mA,IC =5mA - 0.6 0.9 V C I-O V=0V,f=1MHz - 0.8 - pF Rise Time tr - 60 300 Fall Time tf VCC=5V,RL =100Ω IC=2mA - 60 250 Collector-Emitter Saturation Voltage Input-Output Capacitance Switching Time KPC-0006-000 usec 2 SPC815M Characteristic Diagrams Fig. 2 CTR - IF Forward Current IF [mA] Current Transfer Ratio [%] Fig. 1 IF - VF Forward Voltage VF [V] Fig.4 PD - Ta Power Dissipation P D [mW] Forward Current IF [mA] Fig. 3 IF – Ta Forward Current IF [mA] Ambient Temperature Ta [℃] Ambient Temperature Ta [℃] Fig. 5 ICEO – Ta Collector Dark Current ICEO [nA] Collector Dark Current ICEO [nA] Fig. 5 IC - Ta Ambient Temperature Ta [℃] Forward Current IF [mA] KPC-0006-000 3