Q-1-a) From the circuit in the Figure-1, determine the DC-bias operation Parameters: (i) IB (ii) Ic (iii) le (iv) VBE (v) VB (vi) Vc (vii) Vce (viii) Ve (Figure-1) Rg= 380KN,Rc= 1kN R. B = 100, VBB = Vcc=12V RB ww In BE BB Q-1-b) Describe briefly the input / output characteristics and application of Common

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Q-1-a) From the circuit in the Figure-1, determine the DC-bias operation
Parameters:
(i) IB
(ii) Ic
(iii) le
(iv) VBE
(v) VB
(vi) Vc
(vii) VCE
(viii) Ve
(Figure-1)
Rg= 380kN,Rc= 1kQ
B = 100, VBB = Vcc=12V
RB
ww.
+
BE
BB
Q-1-b) Describe briefly the input / output characteristics and application of Common
Emitter BJT Configuration
ww
Transcribed Image Text:Q-1-a) From the circuit in the Figure-1, determine the DC-bias operation Parameters: (i) IB (ii) Ic (iii) le (iv) VBE (v) VB (vi) Vc (vii) VCE (viii) Ve (Figure-1) Rg= 380kN,Rc= 1kQ B = 100, VBB = Vcc=12V RB ww. + BE BB Q-1-b) Describe briefly the input / output characteristics and application of Common Emitter BJT Configuration ww
Expert Solution
Step 1

As per our policy, i have attempted 3 parts .

Given 

β=100RB=380 KΩRC=1 KΩVBB=VCC=12 V

Calculating emitter current

IE=VCC-VBERB/β+RCIE=12 V-0.7 V380 KΩ/100+1 KΩIE=2.354 mA

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