1. Perform the following steps for the given circuits and define the working region of the BJT's for the all circuits. a) Calculate the Vout voltage of the circuits given with (a, b, c and d). b) Calculate the VCE voltage of the circuit given with (b), if the value of B = 120. c) Calculate the output voltage Vout of the circuit given with (c), if the value of voltage source is +9V. d) Calculate the output voltage Vout of the circuit given (d), if the negative voltage value is replaced with 0V. +16V -16V 15ko 4.3ko B - 120 B - 85 Vout Vout 9.1ko 820ko 15ka 4.3k0 +16V -12V (b) (a) -18V -12 7.5ka 4.7ka 510ko. B - 65 B - 130 Vout Vout 680ka 510ka 1.8ka 9.1ka +12V +18V (c) (d)

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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1. Perform the following steps for the given circuits and define the working region of the
BJT's for the all circuits.
a) Calculate the Vout voltage of the circuits given with (a, b, c and d).
b) Calculate the VCE voltage of the circuit given with (b), if the value of ß= 120.
c) Calculate the output voltage Vout of the circuit given with (c), if the value of voltage
source is +9V.
d) Calculate the output voltage Vout of the circuit given (d), if the negative voltage
value is replaced with OV.
+16V
-16V
15ko
4.3kO
B = 120
B - 85
Vout
Vout
9.1ka
820ko
15ka
4.3kQ
+16V
-12V
(b)
(a)
-18V
-12V
7.5ko
4.7kO
510k .
B = 65
B - 130
Vout
Vout
680ko
510ka
1.8k0
9.1ka
+12V
+18V
(c)
(d)
Transcribed Image Text:1. Perform the following steps for the given circuits and define the working region of the BJT's for the all circuits. a) Calculate the Vout voltage of the circuits given with (a, b, c and d). b) Calculate the VCE voltage of the circuit given with (b), if the value of ß= 120. c) Calculate the output voltage Vout of the circuit given with (c), if the value of voltage source is +9V. d) Calculate the output voltage Vout of the circuit given (d), if the negative voltage value is replaced with OV. +16V -16V 15ko 4.3kO B = 120 B - 85 Vout Vout 9.1ka 820ko 15ka 4.3kQ +16V -12V (b) (a) -18V -12V 7.5ko 4.7kO 510k . B = 65 B - 130 Vout Vout 680ko 510ka 1.8k0 9.1ka +12V +18V (c) (d)
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