60 h) Suppose we replace the source U with a DC voltage V₁ in series with a small time-varying voltage v₁ = vo cos(wt). Determine the time varying component of i4. Suppose we now replace v₁ = V₁ + V₁, where V₁ = 10 V and v; = 1 V. i) ii) iii) Find the bias point DC current I corresponding to V₁ = 10 V. Find the value of a corresponding to v; = 1 V using small signal analysis. Find the value of iд using small signal analysis. (Use iA = IA + ia.) iv) Find the value of i4 using the analytical method for v = V₁ + v; = 11 V. v) Now, find the exact value of the ia using ia = iA - IA. vi) What is the error in the value of ia computed using the small signal method?

Introductory Circuit Analysis (13th Edition)
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h)
Suppose we replace the source up with a DC voltage V₁ in series with a small
time-varying voltage v₁ = vo cos(wt). Determine the time varying component of iA.
Suppose we now replace v₁ = V₁ + V₁, where V₁ = 10 V and v; = 1 V.
i)
ii)
Find the bias point DC current IA corresponding to V₁ = 10 V.
Find the value of ia corresponding to v; = 1 V using small signal analysis.
Find the value of in using small signal analysis. (Use iA = IA +ia.)
Find the value of iд using the analytical method for v₁ = V₁ + v₁ = 11 V.
Now, find the exact value of the ia using ia=iA - IA.
III
iv)
v)
vi) What is the error in the value of a computed using the small signal method?
Transcribed Image Text:h) Suppose we replace the source up with a DC voltage V₁ in series with a small time-varying voltage v₁ = vo cos(wt). Determine the time varying component of iA. Suppose we now replace v₁ = V₁ + V₁, where V₁ = 10 V and v; = 1 V. i) ii) Find the bias point DC current IA corresponding to V₁ = 10 V. Find the value of ia corresponding to v; = 1 V using small signal analysis. Find the value of in using small signal analysis. (Use iA = IA +ia.) Find the value of iд using the analytical method for v₁ = V₁ + v₁ = 11 V. Now, find the exact value of the ia using ia=iA - IA. III iv) v) vi) What is the error in the value of a computed using the small signal method?
Consider the circuit containing a nonlinear element N as shown
in Figure 4.54. The v-i relation for N is given by:
iA = C₂v+GUA + co for VA ≥ 0, and iA = 0 otherwise.
VI
www
R
N
+
VA
Transcribed Image Text:Consider the circuit containing a nonlinear element N as shown in Figure 4.54. The v-i relation for N is given by: iA = C₂v+GUA + co for VA ≥ 0, and iA = 0 otherwise. VI www R N + VA
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