XOR Voltage NAND Gate Formula

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XOR Voltage Nand Gate is x-direction voltage in NAND gate. Check FAQs
Vx=CyVbcCx+Cy
Vx - XOR Voltage Nand Gate?Cy - Capacitance 2?Vbc - Base Collector Voltage?Cx - Capacitance 1?

XOR Voltage NAND Gate Example

With values
With units
Only example

Here is how the XOR Voltage NAND Gate equation looks like with Values.

Here is how the XOR Voltage NAND Gate equation looks like with Units.

Here is how the XOR Voltage NAND Gate equation looks like.

0.882Edit=3.1Edit2.02Edit4Edit+3.1Edit
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XOR Voltage NAND Gate Solution

Follow our step by step solution on how to calculate XOR Voltage NAND Gate?

FIRST Step Consider the formula
Vx=CyVbcCx+Cy
Next Step Substitute values of Variables
Vx=3.1mF2.02V4mF+3.1mF
Next Step Convert Units
Vx=0.0031F2.02V0.004F+0.0031F
Next Step Prepare to Evaluate
Vx=0.00312.020.004+0.0031
Next Step Evaluate
Vx=0.881971830985915V
LAST Step Rounding Answer
Vx=0.882V

XOR Voltage NAND Gate Formula Elements

Variables
XOR Voltage Nand Gate
XOR Voltage Nand Gate is x-direction voltage in NAND gate.
Symbol: Vx
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Capacitance 2
Capacitance 2 is expressed as the ratio of the electric charge on each conductor to the potential difference (i.e., voltage) between them.
Symbol: Cy
Measurement: CapacitanceUnit: mF
Note: Value should be greater than 0.
Base Collector Voltage
Base Collector Voltage is a crucial parameter in transistor biasing. It refers to the voltage difference between the base and collector terminals of the transistor when it is in its active state.
Symbol: Vbc
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Capacitance 1
Capacitance 1 is expressed as the ratio of the electric charge on each conductor to the potential difference (i.e., voltage) between them.
Symbol: Cx
Measurement: CapacitanceUnit: mF
Note: Value should be greater than 0.

Other formulas in CMOS Time Characteristics category

​Go Aperture Time for Rising Input
tar=Tsetup1+Thold0
​Go Aperture Time for Falling Input
taf=Tsetup0+Thold1
​Go Setup Time at High Logic
Tsetup1=tar-Thold0
​Go Setup Time at Low Logic
Tsetup0=taf-Thold1

How to Evaluate XOR Voltage NAND Gate?

XOR Voltage NAND Gate evaluator uses XOR Voltage Nand Gate = (Capacitance 2*Base Collector Voltage)/(Capacitance 1+Capacitance 2) to evaluate the XOR Voltage Nand Gate, The XOR Voltage NAND Gate formula is defined as the voltage at the NAND gate in the x-direction of the logic gate. XOR Voltage Nand Gate is denoted by Vx symbol.

How to evaluate XOR Voltage NAND Gate using this online evaluator? To use this online evaluator for XOR Voltage NAND Gate, enter Capacitance 2 (Cy), Base Collector Voltage (Vbc) & Capacitance 1 (Cx) and hit the calculate button.

FAQs on XOR Voltage NAND Gate

What is the formula to find XOR Voltage NAND Gate?
The formula of XOR Voltage NAND Gate is expressed as XOR Voltage Nand Gate = (Capacitance 2*Base Collector Voltage)/(Capacitance 1+Capacitance 2). Here is an example- 0.881972 = (0.0031*2.02)/(0.004+0.0031).
How to calculate XOR Voltage NAND Gate?
With Capacitance 2 (Cy), Base Collector Voltage (Vbc) & Capacitance 1 (Cx) we can find XOR Voltage NAND Gate using the formula - XOR Voltage Nand Gate = (Capacitance 2*Base Collector Voltage)/(Capacitance 1+Capacitance 2).
Can the XOR Voltage NAND Gate be negative?
No, the XOR Voltage NAND Gate, measured in Electric Potential cannot be negative.
Which unit is used to measure XOR Voltage NAND Gate?
XOR Voltage NAND Gate is usually measured using the Volt[V] for Electric Potential. Millivolt[V], Microvolt[V], Nanovolt[V] are the few other units in which XOR Voltage NAND Gate can be measured.
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