Example: 5.6-1 50 Ω w 1 ΚΩ Vs (t) 0.0005 v 5 k 2 ΚΩ 100% w a Q+ >" b Find the Thevenin's equivalent of the circuit in Fig. 5.6-1 with respect to the terminals a and b and thereby find the ratio of v(t) to v,(t) when a resistor of 2k2 is connected across the output. The circuit is the low-frequency signal model for an RC-coupled common emitter amplifier using a bipolar junction transistor. Solution

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Example: 5.6-1
50 Ω
w
1 ΚΩ
Vs (t)
0.0005 v
5 k
2 ΚΩ
100%
w
a
Q+
>"
b
Find the Thevenin's equivalent of the circuit in Fig.
5.6-1 with respect to the terminals a and b and
thereby find the ratio of v(t) to v,(t) when a resistor
of 2k2 is connected across the output. The circuit is
the low-frequency signal model for an RC-coupled
common emitter amplifier using a bipolar junction
transistor.
Solution
Transcribed Image Text:Example: 5.6-1 50 Ω w 1 ΚΩ Vs (t) 0.0005 v 5 k 2 ΚΩ 100% w a Q+ >" b Find the Thevenin's equivalent of the circuit in Fig. 5.6-1 with respect to the terminals a and b and thereby find the ratio of v(t) to v,(t) when a resistor of 2k2 is connected across the output. The circuit is the low-frequency signal model for an RC-coupled common emitter amplifier using a bipolar junction transistor. Solution
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