Q2. Determine whether the transistor is biased in cutoff, saturation or linear region. (a) R= 75KS (b) Rp=150KS , Rc=1K2; linear (c) R,= 75KS , R=2KS2; saturation Rc=1K2; saturation Vcc +12 V Rc BDc =...


Q2. Determine whether the transistor is biased in cutoff, saturation or linear region.<br>(a) R= 75KS<br>(b) Rp=150KS , Rc=1K2; linear<br>(c) R,= 75KS , R=2KS2; saturation<br>Rc=1K2; saturation<br>Vcc<br>+12 V<br>Rc<br>BDc = 100<br>Fig2.<br>

Extracted text: Q2. Determine whether the transistor is biased in cutoff, saturation or linear region. (a) R= 75KS (b) Rp=150KS , Rc=1K2; linear (c) R,= 75KS , R=2KS2; saturation Rc=1K2; saturation Vcc +12 V Rc BDc = 100 Fig2.
Q1. Determine the Q-point values of Iç and VCe for the circuit in Figure 1, Assume VCE = 8 V,<br>R3= 350 kQ and Rc = 2.5 kM. Construct the de load line and plot the Q-point.<br>+Vcc<br>Rc<br>RB<br>VCE<br>VBE<br>Fig.1<br>

Extracted text: Q1. Determine the Q-point values of Iç and VCe for the circuit in Figure 1, Assume VCE = 8 V, R3= 350 kQ and Rc = 2.5 kM. Construct the de load line and plot the Q-point. +Vcc Rc RB VCE VBE Fig.1

Jun 11, 2022
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