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In a feedback network, input voltage is 14V, feedback voltage is 6V and source voltage is 20V. β is in ohms. What is its configuration?
  • a)
    Shunt-Shunt feedback
  • b)
    Shunt-Series feedback
  • c)
    Series-Series feedback
  • d)
    Series-Shunt feedback
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
In a feedback network, input voltage is 14V, feedback voltage is 6V an...
In a feedback network, the feedback voltage is the voltage that is fed back from the output of the network to the input. It is used to regulate the output voltage and maintain stability in the system.

In this case, the input voltage is 14V, which is the voltage applied to the input of the network. The feedback voltage is 6V, which is the voltage that is fed back from the output to the input. And the source voltage is 20V, which is the voltage provided by the power source.

The feedback voltage is typically used to regulate the output voltage. By comparing the feedback voltage with a reference voltage, the network can adjust its output voltage to maintain stability and achieve the desired performance.

It's important to note that there are different types of feedback networks, such as voltage feedback and current feedback. The specific characteristics and behavior of the network will depend on its design and the specific components used.
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Community Answer
In a feedback network, input voltage is 14V, feedback voltage is 6V an...
Given that input is 14V, feedback is 6V and source is 20 V, we can see
VI = VS – VF, which is voltage mixing. Also, β is in ohms that is voltage/current.
Since output of feedback is voltage and input is current, the output has current sampling.
Thus, configuration is a series-series feedback/current – series feedback.
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In a feedback network, input voltage is 14V, feedback voltage is 6V and source voltage is 20V. β is in ohms. What is its configuration?a)Shunt-Shunt feedbackb)Shunt-Series feedbackc)Series-Series feedbackd)Series-Shunt feedbackCorrect answer is option 'C'. Can you explain this answer?
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