KPS2801 COSMO | Alldatasheet
Document overview
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Technical content
Features
- High isolation voltage ( BV = 2500 Vrms) 2. Small and thin package ( 4pin SOP, Pin pitch 1.27mm ) 3. High collector to emitter voltage ( Vceo = 80 V ) 4. High-speed switching ( tr = 3 us TYP., tf = 5 us TYP.)
Applications
- Programmable logic controllers 2. Measuring instruments 3. Power supply 4. Hybrid IC 5. Gaming machines Absolute Maximum Ratings UL 1577 (File No.E169586) TOLERANCE :+ 0.2mm Parameter Symbol Rating Unit Input Forward current (DC) IF mA Reverse voltage VR Power dissipation derating PD 0.6 Power dissipation PD mW Peak forward current *1 IFP Output Collector-emitter voltage VCEO V Emitter-collector voltage VECO Collector current IC mA Power dissipation derating PC 1.2 Total power dissipation Ptot 120 mW Isolation voltage *2 Viso 2500 Vrms Operating temperature Topr -30 to +100 Storage temperature Tstg -55 to +125 Outside Dimension:Unit (mm) KPS2801 High Isolation Voltage DC Input Response Type SSOP Photo Coupler Electro-optical Characteristics Parameter Symbol Conditions MIN. TYP. MAX. Unit Input Forward voltage VF IF =5mA 1.1 1.4 V Reverse current IR VR =5V uA Terminal capacitance Ct V=0V, f=1.0kHz pF Output Collector dark current ICEO VCE =80V, IF =0mA 100 nA Transfer Current transfer ratio CTR IF =5mA, VCE=5V 600 charac- Collector-emitter saturation voltage VCE(sat) IF=10mA, IC=2mA 0.3 V teristics Isolation resistance RI-o DC500V 5X10 ohm Floating capacitance CI-o V=0V, f=1.0MHz 0.4 pF Respone time(Rise) tr VCE=5V, IC=2mA, RL=100ohm us Respone time(Fall) tf Schematic:Top View *1 PW=100us, Duty Cycle-1% *2 AC voltage for 1 minute at TA V V A
Fig.1 Current Transfer Ratio vs. Forward Current Forward Current IF (mA) Current transfer ratio CTR (%) Fig.2 Collector Power Dissipation vs. Ambient Temperature Ambient Temperature Ta (°C) Collector Power Dissipation Pc (mW) Fig.4 Forward Current vs. Ambient Temperature Ambient Temperature Ta (°C) Forward Current IF (mA) Fig.5 Forward Current vs. Forward Voltage Forward Voltage VF (V) Forward Current IF (mA) Fig.7 Relative Current Transfer Ratio vs. Ambient Temperature Ambient Temperature Ta (°C) Relative Current Transfer Ratio (%) Fig.8 Collector-emitter Saturation Voltage vs. Ambient Temperature Ambient Temperature Ta (°C) Collector-emitter Saturation Voltage Vce (V) Fig.10 Response Time vs. Load Resistance Load Resistance RL(K ohm) Response Rise Time (us) Fig.3 Collector Dark Current vs. Ambient Temperature Ambient Temperature Ta (°C) Collector Dark Current Iceo (A) Fig.6 Collector Current vs. Collector- emitter Voltage Collector-emitter Voltage VCE (V) Collector Current Ic (mA) Fig.9 Collector-emitter Saturation Voltage vs. Forward Current Forward Current IF (mA) Collector-emitter Saturation Voltage Vce (V) Fig.11 Response Time vs. Load Resistance Load Resistance RL(K ohm) Response Rise Time (us) KPS2801 c 2004 cosmo ELECTRONICS CORPORATION http://www.cosmo-ic.com *1 Test circuit for switshing time.