1 – In the circuit of fig.1 determine the biasing resistors Rc and RE so that the Q-point , ICq = 2 mA and VCEq = 6 V, is met. . What is the power dissipation ( PDiss ) in the transistor ? Assume VA = ∞ , VBE ≈ 0.7 V and βF = 100. RE = ……………. , RC = …………………. , PDiss = …………. Now the collector resistance , Rc , is changed to Rc = 28 kΩ. What will be the new Q-point ? Q-Point ( VCEq = ……. , ICq = ………. ) . IBq = ………..
1 – In the circuit of fig.1 determine the biasing resistors Rc and RE so that the Q-point , ICq = 2 mA and VCEq = 6 V, is met. . What is the power dissipation ( PDiss ) in the transistor ? Assume VA = ∞ , VBE ≈ 0.7 V and βF = 100. RE = ……………. , RC = …………………. , PDiss = …………. Now the collector resistance , Rc , is changed to Rc = 28 kΩ. What will be the new Q-point ? Q-Point ( VCEq = ……. , ICq = ………. ) . IBq = ………..
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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1 – In the circuit of fig.1 determine the biasing resistors Rc and RE so that the Q-point ,
ICq = 2 mA and VCEq = 6 V, is met. . What is the power dissipation ( PDiss ) in the transistor ? Assume VA = ∞ , VBE ≈ 0.7 V and βF = 100.
RE = ……………. , RC = …………………. , PDiss = ………….
Now the collector resistance , Rc , is changed to Rc = 28 kΩ. What will be the new Q-point ?
Q-Point ( VCEq = ……. , ICq = ………. ) . IBq = ………..
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