Perform the following steps for the given circuit. RD = 2.2kΩ, RS = 1.1kΩ, RG1 = 910kΩ, RG2 = 110kΩ, VDD = +20V, IDSS = 10mA, VP = -3. 5V a) Calculate the ID current, VDS and VGS voltage of the circuit. b) Calculate the required RS value to make the VGS = -2V. c) Calculate the required RD value to make the VDS = 12V.
Perform the following steps for the given circuit. RD = 2.2kΩ, RS = 1.1kΩ, RG1 = 910kΩ, RG2 = 110kΩ, VDD = +20V, IDSS = 10mA, VP = -3. 5V a) Calculate the ID current, VDS and VGS voltage of the circuit. b) Calculate the required RS value to make the VGS = -2V. c) Calculate the required RD value to make the VDS = 12V.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Perform the following steps for the given circuit.
RD = 2.2kΩ, RS = 1.1kΩ, RG1 = 910kΩ, RG2 = 110kΩ,
VDD = +20V, IDSS = 10mA, VP = -3. 5V
a) Calculate the ID current, VDS and VGS voltage of the circuit.
b) Calculate the required RS value to make the VGS = -2V.
c) Calculate the required RD value to make the VDS = 12V.
d) Calculate and analyze the ID current if RS = 750Ω.
e) Calculate the VS voltage of the circuit, if the value of IDSS
=16mA, VP =-3.5V.
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