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Maximum Voltage gain is a measure of the amplification of an electrical signal by an amplifier . It is the ratio of the output voltage to the input voltage of the circuit, expressed in decibels (dB). Check FAQs
Avm=2Vdd-VeffVeff
Avm - Maximum Voltage Gain?Vdd - Supply Voltage?Veff - Effective Voltage?

Maximum Voltage Gain at Bias Point Example

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With units
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Here is how the Maximum Voltage Gain at Bias Point equation looks like with Values.

Here is how the Maximum Voltage Gain at Bias Point equation looks like with Units.

Here is how the Maximum Voltage Gain at Bias Point equation looks like.

7.9412Edit=28.45Edit-1.7Edit1.7Edit
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Maximum Voltage Gain at Bias Point Solution

Follow our step by step solution on how to calculate Maximum Voltage Gain at Bias Point?

FIRST Step Consider the formula
Avm=2Vdd-VeffVeff
Next Step Substitute values of Variables
Avm=28.45V-1.7V1.7V
Next Step Prepare to Evaluate
Avm=28.45-1.71.7
Next Step Evaluate
Avm=7.94117647058823
LAST Step Rounding Answer
Avm=7.9412

Maximum Voltage Gain at Bias Point Formula Elements

Variables
Maximum Voltage Gain
Maximum Voltage gain is a measure of the amplification of an electrical signal by an amplifier . It is the ratio of the output voltage to the input voltage of the circuit, expressed in decibels (dB).
Symbol: Avm
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Supply Voltage
Supply voltage is the voltage level supplied to an electronic device, and it is a critical parameter that affects the performance and reliability of the device.
Symbol: Vdd
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
Effective Voltage
The effective voltage in a MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) is the voltage that determines the behavior of the device. It is also known as the gate-source voltage.
Symbol: Veff
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.

Other Formulas to find Maximum Voltage Gain

​Go Maximum Voltage Gain given all Voltages
Avm=Vdd-0.3Vt

Other formulas in Amplification Factor or Gain category

​Go Voltage Gain given Drain Voltage
Av=idRL2Veff
​Go Voltage Gain given Load Resistance of MOSFET
Av=gm11RL+1Rout1+gmRs
​Go Bias Voltage of MOSFET
Vbe=Vbias+Vde
​Go Gate to Source Channel Width of MOSFET
Wc=CocCoxLov

How to Evaluate Maximum Voltage Gain at Bias Point?

Maximum Voltage Gain at Bias Point evaluator uses Maximum Voltage Gain = 2*(Supply Voltage-Effective Voltage)/(Effective Voltage) to evaluate the Maximum Voltage Gain, Maximum voltage gain at bias point is the amount of voltage that an electronic device needs in order to power on and function. It is is the amount of voltage that an electronic device needs in DC Biasing condition, where an extra load is added and voltage is given at junctions as per the type of biasing. Maximum Voltage Gain is denoted by Avm symbol.

How to evaluate Maximum Voltage Gain at Bias Point using this online evaluator? To use this online evaluator for Maximum Voltage Gain at Bias Point, enter Supply Voltage (Vdd) & Effective Voltage (Veff) and hit the calculate button.

FAQs on Maximum Voltage Gain at Bias Point

What is the formula to find Maximum Voltage Gain at Bias Point?
The formula of Maximum Voltage Gain at Bias Point is expressed as Maximum Voltage Gain = 2*(Supply Voltage-Effective Voltage)/(Effective Voltage). Here is an example- 7.941176 = 2*(8.45-1.7)/(1.7).
How to calculate Maximum Voltage Gain at Bias Point?
With Supply Voltage (Vdd) & Effective Voltage (Veff) we can find Maximum Voltage Gain at Bias Point using the formula - Maximum Voltage Gain = 2*(Supply Voltage-Effective Voltage)/(Effective Voltage).
What are the other ways to Calculate Maximum Voltage Gain?
Here are the different ways to Calculate Maximum Voltage Gain-
  • Maximum Voltage Gain=(Supply Voltage-0.3)/Thermal VoltageOpenImg
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