High Reliability Photocoupler
UL 1577 (File No.E169586)
C1010
VDE 0884 / 0860 / 0805 (File No.101347)
Features
1. Current transfer ratio (CTR : MIN.50% at IF=5mA VcE=5V 2. High isolation voltage between input and output(Viso : 5000Vrms). 3. Compact dual-in-line package.
Outside Dimension:Unit (mm)
Applications
1. Registers, copiers, automatic vending machines. 2. System appliances, measuring instruments. 3. Computer terminals, programmable controllers. 4. Communications, telephone, etc. 5. Electric home appliances, such as oil fan heaters, Microwave oven, Washer, Refrigerator, Air conditioner, etc. 6. Medical instruments, physical and chemical equipment. 7. Signal transmission between circuits of different potentials and impedances. 8. Facsimile equipment, Audio, Video. 9. Switching power supply, Laser beam printer.
1. Anode 2. Cathode 3. Emitter 4. Collector
Schematic:Top View
Absolute Maximum Ratings
Parameter Input Forward current Peak forward current Reverse voltage Power dissipation Output Collector-emitter voltage Emitter-collector voltage Collector current Collector power dissipation Total power dissipation Isolation voltage 1 minute Operating temperature Storage temperature Soldering temperature 10 second Symbol IF IFM VR PD VCEO VECO IC PC Ptot Viso Topr Tstg Tsol Rating 50 1 6 70 70 6 50 150 200 5000 -30 to +115 -55 to +125 260 Unit mA A V mW V V mA mW mW Vrms °C °C °C
(Ta=25°C)
Electro-optical Characteristics
Parameter Input Forward voltage Peak forward voltage Reverse current Terminal capacitance Output Transfer characteristics Collector dark current Current transfer ratio Collector-emitter saturation voltage Isolation resistance Floating capacitance Cut-off frequency Respone time (Rise) Respone time (Fall) Symbol VF VFM IR Ct ICEO CTR VCE(sat) Riso Cf fc tr tf Conditions IF=20mA IFM=0.5A VR=4V V=0, f=1kHz VCE=20V IF=5mA, VCE=5V IF=20mA, IC=1mA DC500V V=0, f=1MHZ VCC=5V, IC=2mA, RL=100ohm VCE=2V, IC=2mA, RL=100ohm 5X1010 50 0.1 1011 0.6 80 4 3 18 18 1.0 旄 30 0.1 600 0.2 旄 MIN. TYP. 1.2 MAX. 1.4 3.0 10
(Ta=25°C)
Unit V V uA pF uA % V ohm pF kHz us us
28
c 2004 cosmo ELECTRONICS CORPORATION http://www.cosmo-ic.com
C1010
Classification table of current transfor ratio is shown below. Fig.1 Current Transfer Ratio vs. Forward Current
Collector Power Dissipation Pc (mW)
Fig.2 Collector Power Dissipation vs. Ambient Temperature
Current transfer ratio CTR (%)
Forward Current IF (mA)
Ambient Temperature Ta (°C)
Fig.3 Collector Dark Current vs. Ambient Temperature
Fig.4 Forward Current vs. Ambient Temperature
Fig.5 Forward Current vs. Forward Voltage
Forward Current IF (mA)
Ambient Temperature Ta (°C)
Ambient Temperature Ta (°C)
Forward Current IF (mA)
Forward Voltage VF (V)
Fig.6 Collector Current vs. Collectoremitter Voltage
Fig.7 Relative Current Transfer Ratio vs. Ambient Temperature
Collector-emitter Saturation Voltage Vce (V)
Fig.8 Collector-emitter Saturation Voltage vs. Ambient Temperature
Relative Current Transfer Ratio (%)
Collector Current Ic (mA)
Collector-emitter Voltage VCE (V)
Ambient Temperature Ta (°C)
Ambient Temperature Ta (°C)
Fig.9 Collector-emitter Saturation Voltage vs. Forward Current
Collector-emitter Saturation Voltage Vce (V)
Fig.10 Collector Current vs Ambient Temperature
Fig.11 Input Power Dissipation vs Ambient Temperature
Response Rise Time (us)
Collector Current Ic (mA)
Forward Current IF (mA)
Ambient Temperature Ta (°C)
Ambient Temperature Ta (°C)
c
2004
cosmo ELECTRONICS CORPORATION
http://www.cosmo-ic.com
29
C1010
Fig.12 Response Time vs. Load Resistance Fig.13 Response Time vs. Load Resistance
Response Rise Time (us)
Response Rise Time (us)
Load Resistance RL(K ohm)
Load Resistance RL(K ohm)
30
c 2004 cosmo ELECTRONICS CORPORATION http://www.cosmo-ic.com
c
2004
cosmo ELECTRONICS CORPORATION
http://www.cosmo-ic.com
31
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