Total Current in Miller Capacitance Formula

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Total Current refers to the combined or sum total of all currents flowing through a circuit or a specific point within a circuit. Check FAQs
it=Vp1-(Av)Zt
it - Total Current?Vp - Primary Voltage?Av - Voltage Gain?Zt - Total Impedance?

Total Current in Miller Capacitance Example

With values
With units
Only example

Here is how the Total Current in Miller Capacitance equation looks like with Values.

Here is how the Total Current in Miller Capacitance equation looks like with Units.

Here is how the Total Current in Miller Capacitance equation looks like.

215.8537Edit=23.6Edit1-(-10.25Edit)1.23Edit
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Total Current in Miller Capacitance Solution

Follow our step by step solution on how to calculate Total Current in Miller Capacitance?

FIRST Step Consider the formula
it=Vp1-(Av)Zt
Next Step Substitute values of Variables
it=23.6V1-(-10.25)1.23
Next Step Convert Units
it=23.6V1-(-10.25)1230Ω
Next Step Prepare to Evaluate
it=23.61-(-10.25)1230
Next Step Evaluate
it=0.215853658536585A
Next Step Convert to Output's Unit
it=215.853658536585mA
LAST Step Rounding Answer
it=215.8537mA

Total Current in Miller Capacitance Formula Elements

Variables
Total Current
Total Current refers to the combined or sum total of all currents flowing through a circuit or a specific point within a circuit.
Symbol: it
Measurement: Electric CurrentUnit: mA
Note: Value should be greater than 0.
Primary Voltage
Primary Voltage refers to the voltage applied to the primary winding of a transformer or a similar electrical device.
Symbol: Vp
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Voltage Gain
Voltage Gain refers to the mathematical relationship or equation that describes how an amplifier modifies the input voltage to produce an output voltage.
Symbol: Av
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Total Impedance
Total Impedance refers to the overall opposition or resistance to the flow of alternating current (AC) in an electrical circuit.
Symbol: Zt
Measurement: Electric ResistanceUnit:
Note: Value should be greater than 0.

Other formulas in Miller’s Theorem category

​Go Current at Primary Node of Amplifier
i1=VaZ1
​Go Change in Drain Current
id=-VaZ2
​Go Miller Capacitance
Cm=Cgd(1+1gmRL)
​Go Primary Impedance in Miller Capacitance
Z1=Zt1-(Av)

How to Evaluate Total Current in Miller Capacitance?

Total Current in Miller Capacitance evaluator uses Total Current = Primary Voltage*(1-(Voltage Gain))/Total Impedance to evaluate the Total Current, The Total Current in Miller Capacitance formula is defined as the sum of currents flowing into or out of the Miller capacitance in electronic circuits, particularly in amplifier configurations. Total Current is denoted by it symbol.

How to evaluate Total Current in Miller Capacitance using this online evaluator? To use this online evaluator for Total Current in Miller Capacitance, enter Primary Voltage (Vp), Voltage Gain (Av) & Total Impedance (Zt) and hit the calculate button.

FAQs on Total Current in Miller Capacitance

What is the formula to find Total Current in Miller Capacitance?
The formula of Total Current in Miller Capacitance is expressed as Total Current = Primary Voltage*(1-(Voltage Gain))/Total Impedance. Here is an example- 215853.7 = 23.6*(1-((-10.25)))/1230.
How to calculate Total Current in Miller Capacitance?
With Primary Voltage (Vp), Voltage Gain (Av) & Total Impedance (Zt) we can find Total Current in Miller Capacitance using the formula - Total Current = Primary Voltage*(1-(Voltage Gain))/Total Impedance.
Can the Total Current in Miller Capacitance be negative?
No, the Total Current in Miller Capacitance, measured in Electric Current cannot be negative.
Which unit is used to measure Total Current in Miller Capacitance?
Total Current in Miller Capacitance is usually measured using the Milliampere[mA] for Electric Current. Ampere[mA], Microampere[mA], Centiampere[mA] are the few other units in which Total Current in Miller Capacitance can be measured.
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