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Transconductance is defined as the ratio of the change in the output current to the change in the input voltage, with the gate-source voltage held constant. Check FAQs
gm=k'nWLVov
gm - Transconductance?k'n - Process Transconductance Parameter?WL - Aspect Ratio?Vov - Overdrive Voltage?

Transconductance using Process Transconductance Parameter and Overdrive Voltage Example

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With units
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Here is how the Transconductance using Process Transconductance Parameter and Overdrive Voltage equation looks like with Values.

Here is how the Transconductance using Process Transconductance Parameter and Overdrive Voltage equation looks like with Units.

Here is how the Transconductance using Process Transconductance Parameter and Overdrive Voltage equation looks like.

0.48Edit=0.015Edit0.1Edit0.32Edit
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Transconductance using Process Transconductance Parameter and Overdrive Voltage Solution

Follow our step by step solution on how to calculate Transconductance using Process Transconductance Parameter and Overdrive Voltage?

FIRST Step Consider the formula
gm=k'nWLVov
Next Step Substitute values of Variables
gm=0.015A/V²0.10.32V
Next Step Prepare to Evaluate
gm=0.0150.10.32
Next Step Evaluate
gm=0.00048S
LAST Step Convert to Output's Unit
gm=0.48mS

Transconductance using Process Transconductance Parameter and Overdrive Voltage Formula Elements

Variables
Transconductance
Transconductance is defined as the ratio of the change in the output current to the change in the input voltage, with the gate-source voltage held constant.
Symbol: gm
Measurement: Electric ConductanceUnit: mS
Note: Value can be positive or negative.
Process Transconductance Parameter
The Process Transconductance Parameter (PTM) is a parameter used in semiconductor device modeling to characterize the performance of a transistor.
Symbol: k'n
Measurement: Transconductance ParameterUnit: A/V²
Note: Value can be positive or negative.
Aspect Ratio
Aspect ratio is defined as the ratio of the width of the transistor's channel to its length. It is the ratio of the width of the gate to the distance btw the source & drain regions of the transistor.
Symbol: WL
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Overdrive Voltage
Overdrive voltage is a term used in electronics and refers to the voltage level applied to a device or component that exceeds its normal operating voltage.
Symbol: Vov
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.

Other Formulas to find Transconductance

​Go Transconductance given Drain Current
gm=2k'nWLid
​Go Transconductance given Process Transconductance Parameter
gm=k'nWL(Vgs-Vth)
​Go MOSFET Transconductance given Transconductance Parameter
gm=kn(Vgs-Vth)
​Go MOSFET Transconductance given Overdrive Voltage
gm=knVov

Other formulas in Transconductance category

​Go Drain Current using Transconductance
id=(Vov)gm2
​Go Process Transconductance given Transconductance and Drain Current
k'n=gm22WLid
​Go MOSFET Transconductance using Process Transconductance Parameter
k'n=gmWL(Vgs-Vth)
​Go MOSFET Transconductance using Process Transconductance Parameter and Overdrive Voltage
k'n=gmWLVov

How to Evaluate Transconductance using Process Transconductance Parameter and Overdrive Voltage?

Transconductance using Process Transconductance Parameter and Overdrive Voltage evaluator uses Transconductance = Process Transconductance Parameter*Aspect Ratio*Overdrive Voltage to evaluate the Transconductance, Transconductance using Process Transconductance Parameter and Overdrive Voltage , is the change in the drain current divided by the small change in the gate/source voltage with a constant drain/source voltage. Transconductance is denoted by gm symbol.

How to evaluate Transconductance using Process Transconductance Parameter and Overdrive Voltage using this online evaluator? To use this online evaluator for Transconductance using Process Transconductance Parameter and Overdrive Voltage, enter Process Transconductance Parameter (k'n), Aspect Ratio (WL) & Overdrive Voltage (Vov) and hit the calculate button.

FAQs on Transconductance using Process Transconductance Parameter and Overdrive Voltage

What is the formula to find Transconductance using Process Transconductance Parameter and Overdrive Voltage?
The formula of Transconductance using Process Transconductance Parameter and Overdrive Voltage is expressed as Transconductance = Process Transconductance Parameter*Aspect Ratio*Overdrive Voltage. Here is an example- 480 = 0.015*0.1*0.32.
How to calculate Transconductance using Process Transconductance Parameter and Overdrive Voltage?
With Process Transconductance Parameter (k'n), Aspect Ratio (WL) & Overdrive Voltage (Vov) we can find Transconductance using Process Transconductance Parameter and Overdrive Voltage using the formula - Transconductance = Process Transconductance Parameter*Aspect Ratio*Overdrive Voltage.
What are the other ways to Calculate Transconductance?
Here are the different ways to Calculate Transconductance-
  • Transconductance=sqrt(2*Process Transconductance Parameter*Aspect Ratio*Drain Current)OpenImg
  • Transconductance=Process Transconductance Parameter*Aspect Ratio*(Gate-Source Voltage-Threshold Voltage)OpenImg
  • Transconductance=Transconductance Parameter*(Gate-Source Voltage-Threshold Voltage)OpenImg
Can the Transconductance using Process Transconductance Parameter and Overdrive Voltage be negative?
Yes, the Transconductance using Process Transconductance Parameter and Overdrive Voltage, measured in Electric Conductance can be negative.
Which unit is used to measure Transconductance using Process Transconductance Parameter and Overdrive Voltage?
Transconductance using Process Transconductance Parameter and Overdrive Voltage is usually measured using the Millisiemens[mS] for Electric Conductance. Siemens[mS], Megasiemens[mS], Mho[mS] are the few other units in which Transconductance using Process Transconductance Parameter and Overdrive Voltage can be measured.
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