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The input current being drawn by the device is monitored for changes during this process.
The voltage at this electrode is directly controlled by the input current.
As a second voltage source is included, the input current depends on both the voltages.
The mirrored current is a precise copy of the input current.
Very often, the input currents are not matched.
Where is the input voltage and is the input current.
The input current is the same as the inductor current as can be seen in figure 2.
That is, there is no unexpected behavior in the adding of input currents to determine whether or not a cell will fire.
Hence the alternating magnetic field, and the induced output current, will be out of step with the input current.
A transresistance amplifier outputs a voltage proportional to its input current.
As they are based on a linear regulator design, the input current required is always the same as the output current.
In all these "op-amp inverting circuits with parallel negative feedback", the input current is increased to its maximum.
As a result, the input current of such basic switched mode power supplies has high harmonic content and relatively low power factor.
The drawback of this is that most of the input current is wasted as heat in the divider.
The first measure is the static error, the difference between the input and output currents expressed as a fraction of the input current.
That means that the input current has energy at harmonics of the frequency of the voltage.
Maximum input current: This is the maximum amount of direct current that the inverter will use.
In a step-up transformer, output voltage is greater, but at a lower current than the input current (conservation of energy).
These input currents generate voltages that act like unmodeled input offsets.
The output and input currents are low enough to prevent thermal overload under each load condition - even if the secondary is shorted.
By properly adjusting the synchronous gap, it was possible to have the gap fire only at the voltage peaks of the input current.
An opto-isolator connects input and output sides with a beam of light modulated by input current.
The effective input current (Ie) is equal to the maximum load divided by the minimum input voltage.
When the input current is flowing, the base electrode has a relative positive charge, so it draws electrons toward it from the emitter.
To obtain a reasonably stable output voltage the output current should be a small fraction of the input current.