First stage · Second stage х R2 R1 Xз 1,-(1+) -n) R2 (v – v½) R1 R2 X2 Figure 13.34 Table P13.36 Available Parts for Design Problems Standard 5%-tolerance resistors. (See AppendixB .) Standard 1%-tolerance resistors. (Don't use these if a 5%-tolerance resistor will do, because 1%-tolerance resistors are more expensive.) Ideal op amps. Adjustable resistors (trimmers) having maximum values ranging from 100 Q to 1 MQ in a 1- 2-5 sequence (i.e., 100 Q, 200 2, 500 N, 1 kN, etc.). Don't use trimmers if fixed resistors willI suffice.
First stage · Second stage х R2 R1 Xз 1,-(1+) -n) R2 (v – v½) R1 R2 X2 Figure 13.34 Table P13.36 Available Parts for Design Problems Standard 5%-tolerance resistors. (See AppendixB .) Standard 1%-tolerance resistors. (Don't use these if a 5%-tolerance resistor will do, because 1%-tolerance resistors are more expensive.) Ideal op amps. Adjustable resistors (trimmers) having maximum values ranging from 100 Q to 1 MQ in a 1- 2-5 sequence (i.e., 100 Q, 200 2, 500 N, 1 kN, etc.). Don't use trimmers if fixed resistors willI suffice.
Chapter4: Symbols
Section: Chapter Questions
Problem 3SQ: What do the following abbreviations stand for? a. SPST b. SPDT c. DPST d. DPDT e. NO f. NC
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Question
Using the parts listed in TableP13.36 , design a single-op-amp differential amplifier having a nominal differential gain of 10.
Repeat ProblemP13.70 , using the instrumentation-quality circuit shown in Figure13.34 on page 677.
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Differential amplifier with instrumentation quality
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