a) A 20 nH inductor has a seri tance of 15 2. Compute the eq parallel resistance, Rp, at 2 G b) Design a 2 GHz Colpitts oscil ing this inductor with a pow get of 2 mW and Yon = 1.
a) A 20 nH inductor has a seri tance of 15 2. Compute the eq parallel resistance, Rp, at 2 G b) Design a 2 GHz Colpitts oscil ing this inductor with a pow get of 2 mW and Yon = 1.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![13.56. (a) A 20 nH inductor has a series resis-
tance of 15 2. Compute the equivalent
parallel resistance, Rp, at 2 GHz.
(b) Design a 2 GHz Colpitts oscillator us-
ing this inductor with a power bud-
get of 2 mW and VDD = 1.5 V. For
simplicity, neglect the capacitances
of the bipolar transistor and assume
C1 =C2. Verify that the startup con-
dition is met.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa68ba6d8-ed2b-43e9-a4f7-a74f89ebbfe4%2F1b7deb62-d02e-4ac1-90dc-661ebd98dc9e%2Fzp95syu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:13.56. (a) A 20 nH inductor has a series resis-
tance of 15 2. Compute the equivalent
parallel resistance, Rp, at 2 GHz.
(b) Design a 2 GHz Colpitts oscillator us-
ing this inductor with a power bud-
get of 2 mW and VDD = 1.5 V. For
simplicity, neglect the capacitances
of the bipolar transistor and assume
C1 =C2. Verify that the startup con-
dition is met.
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