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What is different when hooking up a buck transformer compared to a booster transformer?

Answer :

Final answer:

A buck transformer steps down the voltage from the primary winding to the secondary, while a booster transformer steps up the voltage in the same context. Both transformers operate on Faraday's law of induction, requiring an alternating current to function.

Explanation:

When comparing a buck transformer and a booster transformer, the key difference lies in their function. A buck transformer is essentially a step-down transformer. It is used to decrease the voltage from the primary winding to the secondary winding. This is important for certain applications which require lower voltage such as certain electronic devices.

On the other hand, a booster transformer is a kind of step-up transformer, used to amplify the voltage from the primary winding to the secondary winding. They are usually name in power transmission or in scenarios where higher voltage is required.

Both transformers, however, operate on the basis of Faraday's law of induction, which allows a change in magnetic field to induce a voltage in a nearby coil. This is why transformers require an alternating current (AC) signal to function, since a constant direct current (DC) signal would not induce a magnetic field change.

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