Figure 4 shows an operational amplifier circuit used in an audio mixing desk - AQA - A-Level Physics - Question 2 - 2019 - Paper 8
Question 2
Figure 4 shows an operational amplifier circuit used in an audio mixing desk.
Figure 4
The power supply for the amplifier is -12 V and +12 V but this is not shown ... show full transcript
Worked Solution & Example Answer:Figure 4 shows an operational amplifier circuit used in an audio mixing desk - AQA - A-Level Physics - Question 2 - 2019 - Paper 8
Step 1
What is the operational amplifier configuration shown in Figure 4?
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Answer
The operational amplifier configuration shown in Figure 4 is a difference amplifier. This type of amplifier outputs the difference between the two input signals, effectively amplifying the difference while minimizing any common signals.
Step 2
Calculate the amplitude of the output voltage.
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Answer
To calculate the output voltage, we will use the formula for a difference amplifier:
Vout=(V+−V−)×(RinRf)
Given:
Input A (V+) = 150 mV
Input B (V-) = 0 V
For resistor selection, using Rf = 1 MΩ and Rin = 100 kΩ:
Using the formula:
Vout=(0V−150mV)×(100kΩ1MΩ)
Calculating:
Vout=(−150mV)×10=−1.5V
Thus, the amplitude of the output voltage is 1.5 V, with the correct sign being negative.
Step 3
Explain how the operational amplifier circuit affects the noise and the strength of the output signal.
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Answer
The operational amplifier circuit effectively removes common noise present in both signals. Since signal 1 and signal 2 are combined in a difference amplifier, any noise that affects both signals equally will be subtracted out and thus minimized in the output.
Additionally, the signals are processed in such a way that their strengths can reinforce each other, provided they are in phase. When signal 2 is subtracted from signal 1, the noise reduction and the different phases will contribute to the output signal's clarity and strength, leading to a more accurate representation of the original audio input.