FIGURE 4–54 RC 1.0 kΩ RB Vce 100 kN VBB 15. Calculate apc for the transistor in Problem 14. 16. Assume that the transistor in the circuit of Figure 4–54 is replaced with one having a ßa 200. Determine Ig, Ic, Ie, and VcE given that Vcc = 10 V and VBB = 3 V. 17. If Vcc is increased to 15 V in Figure 4–54, how much do the currents and VCE change?

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FIGURE 4-54
RC
- 1.0 kΩ
RB
Vcc
100 kΩ
VBB
15. Calculate anc for the transistor in Problem 14.
16. Assume that the transistor in the circuit of Figure 4–54 is replaced with one having a Bde of
200. Determine Ig, Ic, Ie, and VcE given that Vcc
= 10 V and VBB = 3 V.
17. If Vcc is increased to 15 V in Figure 4–54, how much do the currents and VCE Change?
Transcribed Image Text:FIGURE 4-54 RC - 1.0 kΩ RB Vcc 100 kΩ VBB 15. Calculate anc for the transistor in Problem 14. 16. Assume that the transistor in the circuit of Figure 4–54 is replaced with one having a Bde of 200. Determine Ig, Ic, Ie, and VcE given that Vcc = 10 V and VBB = 3 V. 17. If Vcc is increased to 15 V in Figure 4–54, how much do the currents and VCE Change?
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