Examples of 'voltage vc' in a sentence

Meaning of "voltage vc"

voltage vc: This phrase may refer to an electrical term where 'voltage' is represented by the symbol 'V' and 'current' is represented by the symbol 'I' in physics or engineering contexts

How to use "voltage vc" in a sentence

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voltage vc
This voltage vd is less than voltage Vc.
The control voltage Vc is applied to this voltage divider circuit.
The same diagram also shows the variation of the voltage Vc across the capacitor C.
The voltage Vc on the integration capacitor is representative of the current integral.
The winding A is supplied by a control voltage Vc and through it therefore flows a current i.
The voltage Vc at the terminals of the capacitor therefore decreases linearly.
The multi-emitter transistor is connected to a supply voltage Vc.
The voltage Vc is indicative of the length of cable travelled by the present signal.
In addition, the value of Ae has an influence on the threshold voltage Vc.
The breakdown voltage Vc can be associated with a Zener effect or with an avalanche effect.
A diagram of the various significant values of the voltage Vc is shown in FIG . 2.
It is this control voltage Vc that is applied to the circuit VCO.
According to the procedure explained above, the converter voltage Vc can be decided.
The voltage Vc which appears there is proportional to the adjustment voltage V.
Accordingly, charging to the capacitor 3 stops and the charge voltage Vc lowers gradually.

See also

The voltage Vc in particular determines the number of aggregates participating in variation of capacitor C.
Furthermore, the grade of the output membership function is controlled by the control voltage Vc.
This control voltage Vc is generated by the voltage regulator circuit 4.
The gate of transistor MP1 receives a fixed voltage Vc.
The variations of the voltage Vc represent charging and discharging of the capacitor 14.
Here, a reference voltage Vr is compared with the voltage Vc.
Voltage Vc acts on both the value of capacitor Cv and the oscillator 's frequency.
Simultaneously, the voltage V will tend to drop below the reference voltage Vc.
Voltage Vc is a constant voltage since transistor MN 0 is always on.
Capacitor C 1 discharges and prevents the control voltage Vc from decreasing too abruptly.
Its voltage Vc 2 therefore increases up the input voltage Vin.
The coupler emits a plasma layer P in the direction of the target 2 polarized at voltage Vc.
The voltage Vc at the terminals of the capacitor C 0 therefore increases linearly.
The non-regulated auxiliary supply voltage Vc is thus obtained at the terminals of the capacitor C 2.
The input 11 is coupled to a point carrying a direct voltage Vc.
The control voltage is the voltage Vc given by the phase-locked loop circuit PLL 0.
Fig . 4 is a diagram showing a waveform of an input terminal voltage Vc of a rectifier 2.
Supply voltage Vc remains provided by regulator 49.
In particular, the method alternatively perturbs the control voltage Vc and the gain K as follows.
In this case, the charge voltage Vc of the capacitor 3 needs to be increased.
However, capacitor C 1 charges gradually and prevents the control voltage Vc from increasing too abruptly.
As the control voltage Vc increases to a higher value VC1, the non-linear characteristics decrease.
Fig . 4 shows the variation in the voltage Vc as a function of time.
In this dynamic comparator 30, output voltage Vm is compared to a determined comparison voltage Vc.
The number 41 indicates the variation of the voltage Vc at the terminals of the capacitor 38.
Moreover, a charging voltage of the capacitor C1 is represented by a voltage Vc.
Therefore, the control unit 80 compares the voltage Vc with the overload voltage Vo.
These voltages Vc1 through Vc10 are also variable depending on the control voltage Vc.
A second curve 42 represents the voltage Vc at the terminals of the capacitor C 0.
Voltage Vc 1 is applied from instant t 3 to instant t 8.
FIG . 7G illustrates the shape of voltage Vc which corresponds to the output of element 17.
The ( - ) terminal of the Varicap diode Dv receives a control voltage Vc through a resistance R5.
Indeed, a circuit limits the voltage Vc to a minimum value - V 0 which is the reference voltage.
This voltage Vc ( t ) is stored in the amplitude compensation memories 7 and 8.
FIG . 6B illustrates the corresponding shapes of voltage Vc 2 illustrating the discharge of capacitor C 2.

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