Q2 A differential input (subtracting) amplifier is shown in Figure Q2. (a) (b) (d) R₁ W R3 R₂ Figure Q2 A If all the resistors are equal state the voltage gain and give an expression for Vout, neglecting any sources of error. [2] Redraw Figure Q2 showing of all the sources of DC error. [2] Derive an expression for the total DC error as a voltage referred to the output (RTO). You can assume that impedances are matched and that all the resistors are the same and equal 10k2. [8] Describe what is meant by Figure of Merit (FoM) and write an expression for it using your solution to Part (c). [3]

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Q2
A differential input (subtracting) amplifier is shown in Figure Q2.
(a)
(b)
(d)
R₁
W
R3
R₂
Figure Q2
A
If all the resistors are equal state the voltage gain and give an expression for
Vout, neglecting any sources of error.
[2]
Redraw Figure Q2 showing of all the sources of DC error.
[2]
Derive an expression for the total DC error as a voltage referred to the output
(RTO). You can assume that impedances are matched and that all the resistors
are the same and equal 10k2.
[8]
Describe what is meant by Figure of Merit (FoM) and write an expression for
it using your solution to Part (c).
[3]
Transcribed Image Text:Q2 A differential input (subtracting) amplifier is shown in Figure Q2. (a) (b) (d) R₁ W R3 R₂ Figure Q2 A If all the resistors are equal state the voltage gain and give an expression for Vout, neglecting any sources of error. [2] Redraw Figure Q2 showing of all the sources of DC error. [2] Derive an expression for the total DC error as a voltage referred to the output (RTO). You can assume that impedances are matched and that all the resistors are the same and equal 10k2. [8] Describe what is meant by Figure of Merit (FoM) and write an expression for it using your solution to Part (c). [3]
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