Voltage Change of Controller Formula

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The Voltage Change may not be proportional to the input signal. However, there is still a relationship between the two,but it will vary depending on the specific controller. Check FAQs
ΔV=2VsatR1R2+R1
ΔV - Voltage Change?Vsat - Saturation Voltage?R1 - Resistance 1?R2 - Resistance 2?

Voltage Change of Controller Example

With values
With units
Only example

Here is how the Voltage Change of Controller equation looks like with Values.

Here is how the Voltage Change of Controller equation looks like with Units.

Here is how the Voltage Change of Controller equation looks like.

1.5789Edit=21.2Edit10Edit5.2Edit+10Edit
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Voltage Change of Controller Solution

Follow our step by step solution on how to calculate Voltage Change of Controller?

FIRST Step Consider the formula
ΔV=2VsatR1R2+R1
Next Step Substitute values of Variables
ΔV=21.2V105.2+10
Next Step Convert Units
ΔV=21.2V10000Ω5200Ω+10000Ω
Next Step Prepare to Evaluate
ΔV=21.2100005200+10000
Next Step Evaluate
ΔV=1.57894736842105V
LAST Step Rounding Answer
ΔV=1.5789V

Voltage Change of Controller Formula Elements

Variables
Voltage Change
The Voltage Change may not be proportional to the input signal. However, there is still a relationship between the two,but it will vary depending on the specific controller.
Symbol: ΔV
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Saturation Voltage
Saturation Voltage is a condition where the output of the trigger remains low even when the input voltage is above the lower threshold voltage.
Symbol: Vsat
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Resistance 1
Resistance 1 is a measure of the opposition to the flow of electric current through a material.
Symbol: R1
Measurement: Electric ResistanceUnit:
Note: Value should be greater than 0.
Resistance 2
Resistance 2 is a measure of the opposition to the flow of electric current through a material.
Symbol: R2
Measurement: Electric ResistanceUnit:
Note: Value should be greater than 0.

Other formulas in Schmitt Trigger category

​Go Input Current of Schmitt Trigger
in=VinRin
​Go Lower Threshold Voltage of Inverting Schmitt Trigger
Vf=-Vsat(R2R1+R2)
​Go Open Loop Gain of Schmitt Trigger
Av=VfiV+-V-
​Go Lower Threshold Voltage of Non Inverting Schmitt Trigger
Vlt=-Vsat(R2R1)

How to Evaluate Voltage Change of Controller?

Voltage Change of Controller evaluator uses Voltage Change = (2*Saturation Voltage*Resistance 1)/(Resistance 2+Resistance 1) to evaluate the Voltage Change, The Voltage Change of Controller is the difference between the input voltage and the output voltage. It is typically expressed in volts (V).The voltage change in a controller can be either positive or negative. Voltage Change is denoted by ΔV symbol.

How to evaluate Voltage Change of Controller using this online evaluator? To use this online evaluator for Voltage Change of Controller, enter Saturation Voltage (Vsat), Resistance 1 (R1) & Resistance 2 (R2) and hit the calculate button.

FAQs on Voltage Change of Controller

What is the formula to find Voltage Change of Controller?
The formula of Voltage Change of Controller is expressed as Voltage Change = (2*Saturation Voltage*Resistance 1)/(Resistance 2+Resistance 1). Here is an example- 1.578947 = (2*1.2*10000)/(5200+10000).
How to calculate Voltage Change of Controller?
With Saturation Voltage (Vsat), Resistance 1 (R1) & Resistance 2 (R2) we can find Voltage Change of Controller using the formula - Voltage Change = (2*Saturation Voltage*Resistance 1)/(Resistance 2+Resistance 1).
Can the Voltage Change of Controller be negative?
No, the Voltage Change of Controller, measured in Electric Potential cannot be negative.
Which unit is used to measure Voltage Change of Controller?
Voltage Change of Controller is usually measured using the Volt[V] for Electric Potential. Millivolt[V], Microvolt[V], Nanovolt[V] are the few other units in which Voltage Change of Controller can be measured.
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