1. Sketch the transfer curve defined by Ipss = 12 mA and Vp =-6 V. 2. For a JFET with Ipss = 8 mA and Vp=-4 V, determine: a. the maximum value of gm (that is, gm. ), and b. the value of gm at the following de bias points: VGs =- 0.5 V, VGs =- 1.5 V, and VGs =-2.5 V. 3. Given y 3.8 mS and yos= 20 µS, sketch the JFET ac equivalent model.
1. Sketch the transfer curve defined by Ipss = 12 mA and Vp =-6 V. 2. For a JFET with Ipss = 8 mA and Vp=-4 V, determine: a. the maximum value of gm (that is, gm. ), and b. the value of gm at the following de bias points: VGs =- 0.5 V, VGs =- 1.5 V, and VGs =-2.5 V. 3. Given y 3.8 mS and yos= 20 µS, sketch the JFET ac equivalent model.
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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Transcribed Image Text:1. Sketch the transfer curve defined by Ipss = 12 mA and Vp=-6 V.
2. For a JFET with Ipss = 8 mA and Vp = -4 V, determine:
a. the maximum value of gm (that is, gm.), and
b. the value of gm at the following dc bias points:
VGs = - 0.5 V, VGs =-1.5 V, and Vcs=-2.5 V.
3. Given y = 3.8 mS and yos = 20 µS, sketch the JFET ac equivalent model.
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