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x x 6 6 6 6 @ * = x * ' .#/*0=/)0=/(044#* ' 8 *7 . C* /C*9 *7C)9 )C( 7C9 C9 *7C)9 *7C( )C( )C9 C9 .#/*0 > + . > + > > > .#/)0 .#/(0 + + >>+ - ) ' .#/*0=/)0=/(044#* ' * *7 Fig.1 Forword Current vs. Ambient Temperatute 60 50 40 30 20 10 0 -30 Fig.2 Collector Power Dissiption vs. Ambient Temperature Collector Power dissipation Pc (mW) 200 Forward current IF(mA) 150 100 50 0 25 50 75 100 125 o 0 -30 0 25 50 75 100 125 o Ambient temperature Ta ( C) Ambient temperature Ta ( C) Fig.3 Collector-emitter Saturation Voltage vs. Forward Current 1mA 3mA 5mA Collecotr-emitter saturation voltage VCE (sat) (V) Ic= 0.5mA 7mA 6 5 4 3 2 1 Ta= 25 C O Fig.4 Forward Current vs. Forward Voltage 500 Ta= 75 C 50 C o o Forward current IF(mA) 200 100 50 20 10 5 2 25 C 0C -25 C o o o 0 0 5 10 15 Forward current IF (mA) 1 0 0.5 1.0 1.5 2.0 2.5 3.0 Forward voltage VF (V) Fig.5 Current Transfer Ratio vs. Forward Current 200 180 160 140 120 100 80 60 40 20 0 1 2 5 10 20 50 Forward current IF(mA) VCE= 5V Ta= 25 C o Fig.6 Collector Current vs. Collector-emitter Voltage 30 IF = 30mA Ta= 25 C Pc(MAX.) 20 15 10 5mA 5 0 0 1 2 3 4 5 6 7 8 9 Collector-emitter voltage VCE (V) 10mA o Current transfer ratio CTR (%) ' .#/*0=/)0=/(044#* Collector current Ic (mA) 25 20mA ' ** *7 Fig.7 Relative Current Transfer Ratio vs. Ambient Temperature 150 Fig.8 Collector-emitter Saturation Voltage vs. Ambient Temperature 0.16 Collector-emitter saturation voltage VCE (sat) (V) Relative current transfer ratio (%) I F = 5mA VCE= 5V 0.14 0.12 0.10 0.08 0.06 0.04 0.02 0 -25 0 25 50 I F= 20mA Ic= 1mA 100 50 0 -30 0 25 50 75 o 100 75 o 100 Ambient temperature Ta ( C) Ambient temperature Ta ( C) Fig.9 Collector Dark Current vs. Ambient Temperature 10 -5 Fig.10 Response Time vs. Load Resistance 500 200 100 50 20 10 5 2 1 0.5 0.2 0.05 ts VCE = 2V Ic= 2mA Ta= 25 C o VCE= 20V Collector dark current I CEO (A) -6 10 Response time ( s) -7 10 -8 tr tf td 10 -9 10 -10 10 -11 10 -25 0 25 50 75 o 100 0.1 0.2 0.5 1 2 5 10 Ambient temperature Ta ( C) Load resistance RL (k ) Fig.11 Frequency Response Test Circuit for Response Time Vcc Input Output Output Voltage gain Av (dB) 0 V = 2V CE Ic= 2mA Ta= 25 C o Input RD RL 10% 90% td 10 tr RL 10k 1k 100 = ts tf Test Circuit for Frequency Response Vcc 20 0.5 1 2 5 10 20 50 100 500 RD RL Output Frequency f (kHz) ' .#/*0=/)0=/(044#* ' *) *7 ! ' .#/*0=/)0=/(044#* ' *7 *7 |
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