Electric current being alternated with continuous part

AI Thread Summary
Electric currents can exhibit both alternating and continuous characteristics in scenarios such as poorly smoothed power supplies, where DC is combined with AC ripple. Another example is the DC supply to a satellite dish's LNB, which travels alongside an AC signal through the same coaxial cable. Additionally, in a Buck DC-DC converter, the current through the inductor shows a triangular waveform with an average DC component and superimposed ripple. An analogue TV signal also demonstrates this behavior, as it contains a unidirectional DC component. Understanding these scenarios helps clarify the behavior of mixed current types in various applications.
DaTario
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In which scenario a current may exhibit alternated and continous character together?
Summary: In which scenario a current may exhibit alternated and continuous character together?

Hi All,

I would like to know in which scenario an electric current may exhibit alternated and continuous character?
Something like $$ I(t) = I_0 \sin (\omega t) + I_1 $$.
 
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A simple example is ripple on the DC output from a poorly smoothed power supply. The output is DC with AC superimposed on it. Another is the DC supply to the LNB on a satellite TV dish, which is passed on the same coaxial cable bringing the signal (which is AC) to the receiver.
 
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darth boozer said:
A simple example is ripple on the DC output from a poorly smoothed power supply. The output is DC with AC superimposed on it. Another is the DC supply to the LNB on a satellite TV dish, which is passed on the same coaxial cable bringing the signal (which is AC) to the receiver.
what he said (very small).jpg
 
DaTario said:
I would like to know in which scenario an electric current may exhibit alternated and continuous character?
Another example of a DC current with an AC component (although not sinusoidal) is the i(t) current through the inductor of a "Buck" topology DC-DC converter. The average of the triangular current waveform is the average output current of the DC-DC converter (at the output voltage which is being regulated by the converter), and the ripple current depends on the switching frequency and the value of the inductance...

https://www.maximintegrated.com/en/app-notes/index.mvp/id/2031
https://www.electronics-notes.com/a...-step-down-buck-regulator-dc-dc-converter.php
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Another example is an analogue TV signal, which is unidirectional and so has a DC component.
 
Thank you all, very much!
 
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