.., Using the characteristics shown in figures below Determine Bac at IB = 30 uA and VCE = 10 V Determine Bdc at IB= 40 uA and VCE= 10V Using the Bdc determined in (2) find ICBO find the value of Ic if VBE = 0.75 V and VCE = 10V fle (ma) s (HA) VcE=1 V Vz = 10 V 100- 90 60 uA 50 A VCE 20 V Sataation region) 5 80 40 HA 70 30A 60 (Active region) 50 40 20 A 10 A 30 20 20 Ve (V) 10 15 10 (Cutoff region) 0.2 0.4 0.6 0.8 1.0 Vas (V) (a) (b)

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Author:Robert L. Boylestad
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Using the characteristics shown in figures below
Determine Bac at IB = 30 uA and VČE = 10 V
Determine Bdc at IB= 40 uA and VCE = 10V
Using the Bdc determined in (2) find ICBO
find the value of Ic if VBE = 0.75 V and VCE = 10V
tic (mA)
90 LA
80 uA
70 HA
1's (HA)
VCE=1 V
VCE = 10 V
60 HA
100
50 HA
90
VCE = 20 V
(Saturation region), S
40 LA
80
70
30 LA
60
(Active region)
20 HA
50
40
10 μΑ
30
20E
20 Vcg (V)
10F
10
15
(Cutoff region)
Icao=Blcso
0.2
0.4
0.6
0.8 1.0
VBE (V)
(a)
(b)
Transcribed Image Text:Using the characteristics shown in figures below Determine Bac at IB = 30 uA and VČE = 10 V Determine Bdc at IB= 40 uA and VCE = 10V Using the Bdc determined in (2) find ICBO find the value of Ic if VBE = 0.75 V and VCE = 10V tic (mA) 90 LA 80 uA 70 HA 1's (HA) VCE=1 V VCE = 10 V 60 HA 100 50 HA 90 VCE = 20 V (Saturation region), S 40 LA 80 70 30 LA 60 (Active region) 20 HA 50 40 10 μΑ 30 20E 20 Vcg (V) 10F 10 15 (Cutoff region) Icao=Blcso 0.2 0.4 0.6 0.8 1.0 VBE (V) (a) (b)
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