0 B= 0.01 A/va Vtz 0.6V Cgs = negligibly small VA = 20v. V₁D = 3V R₁ = 4b R₂=5K RD = 5K RS= 6K Rext = 20K Ve = 1.67V Using formula IDs = B (VGs - V+) ² be coming IDS = B CVG - IDs Rs-VJ² Solve the quadratic equation for Ins. How do they get the answer 149 μA and 212μA?

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Author:Robert L. Boylestad
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•B= 0.01 A/v²
Vt = 0.6V
Cgs
T
negligibly small
VA
20v.
=
V₁ = 3V
R₁ = 4k
R₂=5K
RD = 51
RS= 6K
Rext = 20K
VG = 1.67V
6
Using formula Ips= B (VGS-Vz) ²
be coming IDS= B_ (VG - Ips Rs - V₂ je
Solve the quadratic equation for Ips. How
do they get the answer 149 μA and 212μA?
Transcribed Image Text:•B= 0.01 A/v² Vt = 0.6V Cgs T negligibly small VA 20v. = V₁ = 3V R₁ = 4k R₂=5K RD = 51 RS= 6K Rext = 20K VG = 1.67V 6 Using formula Ips= B (VGS-Vz) ² be coming IDS= B_ (VG - Ips Rs - V₂ je Solve the quadratic equation for Ips. How do they get the answer 149 μA and 212μA?
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