Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage Solution

STEP 0: Pre-Calculation Summary
Formula Used
Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2
Id2 = Ib/2-Ib/Vov*Vid/2
This formula uses 4 Variables
Variables Used
Drain Current 2 - (Measured in Ampere) - Drain current 2 is the current that flows between the drain and the source terminals of a field-effect transistor (FET), which is a type of transistor commonly used in electronic circuits.
DC Bias Current - (Measured in Ampere) - DC bias current is the constant current that flows through a circuit or device to establish a certain operating point or bias point.
Overdrive Voltage - (Measured in Volt) - 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.
Differential Input Signal - (Measured in Volt) - A differential input signal refers to a type of electrical signal that consists of two separate voltage signals, each measured with respect to a common reference point, typically called the ground.
STEP 1: Convert Input(s) to Base Unit
DC Bias Current: 985 Milliampere --> 0.985 Ampere (Check conversion here)
Overdrive Voltage: 3.12 Volt --> 3.12 Volt No Conversion Required
Differential Input Signal: 0.03 Volt --> 0.03 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Id2 = Ib/2-Ib/Vov*Vid/2 --> 0.985/2-0.985/3.12*0.03/2
Evaluating ... ...
Id2 = 0.487764423076923
STEP 3: Convert Result to Output's Unit
0.487764423076923 Ampere -->487.764423076923 Milliampere (Check conversion here)
FINAL ANSWER
487.764423076923 487.7644 Milliampere <-- Drain Current 2
(Calculation completed in 00.004 seconds)

Credits

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Birsa Institute of Technology (BIT), Sindri
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12 Current Calculators

Second Drain Current of MOSFET on Large-Signal Operation
Go Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2*sqrt(1-(Differential Input Signal)^2/(4*Overdrive Voltage^2))
First Drain Current of MOSFET on Large-Signal Operation
Go Drain Current 1 = DC Bias Current/2+DC Bias Current/Overdrive Voltage*Differential Input Signal/2*sqrt(1-Differential Input Signal^2/(4*Overdrive Voltage^2))
Instantaneous Drain Current
Go Drain Current = Transconductance Parameter*(DC Component of Gate to Source Voltage-Total Voltage+Critical Voltage)^2
Drain Saturation Current of MOSFET
Go Saturation Drain Current = 1/2*Process Transconductance in PMOS*Channel Width/Channel Length*(Effective Voltage)^2
Drain Current without Channel-Length Modulation of MOSFET
Go Drain Current = 1/2*Process Transconductance in PMOS*Aspect Ratio*(Gate-Source Voltage-Threshold Voltage)^2
Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage
Go Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2
First Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage
Go Drain Current 1 = DC Bias Current/2+DC Bias Current/Overdrive Voltage*Differential Input Signal/2
Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage
Go Drain Current = (DC Bias Current/Overdrive Voltage)*(Differential Input Signal/2)
Instantaneous Drain Current with respect to DC Component of Vgs
Go Drain Current = Transconductance Parameter*((Critical Voltage-Total Voltage)^2)
Current in Common-Mode Rejection of MOSFET
Go Total Current = Incremental Signal/((1/Transconductance)+(2*Output Resistance))
Drain Current in Load Line
Go Drain Current = (Supply Voltage-Drain Source Voltage)/Load Resistance
Short Circuit Current of MOSFET
Go Output Current = Transconductance*Gate-Source Voltage

Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage Formula

Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2
Id2 = Ib/2-Ib/Vov*Vid/2

What is differential input voltage?

The differential input voltage is the maximum voltage that can be supplied to the +Input (Non-inverting input) and -Input (Inverting input) pins without causing damage or degrading IC characteristics.

How to Calculate Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage?

Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage calculator uses Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2 to calculate the Drain Current 2, The Second drain current of MOSFET on large-signal operation given overdrive voltage formula indicates the current conduction capability of the silicon chip; it can be used as a guide when comparing different devices. However, the rated maximum drain current should not be allowed to flow to the chip. Drain Current 2 is denoted by Id2 symbol.

How to calculate Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage using this online calculator? To use this online calculator for Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage, enter DC Bias Current (Ib), Overdrive Voltage (Vov) & Differential Input Signal (Vid) and hit the calculate button. Here is how the Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage calculation can be explained with given input values -> 487764.4 = 0.985/2-0.985/3.12*0.03/2.

FAQ

What is Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage?
The Second drain current of MOSFET on large-signal operation given overdrive voltage formula indicates the current conduction capability of the silicon chip; it can be used as a guide when comparing different devices. However, the rated maximum drain current should not be allowed to flow to the chip and is represented as Id2 = Ib/2-Ib/Vov*Vid/2 or Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2. DC bias current is the constant current that flows through a circuit or device to establish a certain operating point or bias point, 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 & A differential input signal refers to a type of electrical signal that consists of two separate voltage signals, each measured with respect to a common reference point, typically called the ground.
How to calculate Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage?
The Second drain current of MOSFET on large-signal operation given overdrive voltage formula indicates the current conduction capability of the silicon chip; it can be used as a guide when comparing different devices. However, the rated maximum drain current should not be allowed to flow to the chip is calculated using Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2. To calculate Second Drain Current of MOSFET on Large-Signal Operation given Overdrive Voltage, you need DC Bias Current (Ib), Overdrive Voltage (Vov) & Differential Input Signal (Vid). With our tool, you need to enter the respective value for DC Bias Current, Overdrive Voltage & Differential Input Signal and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Drain Current 2?
In this formula, Drain Current 2 uses DC Bias Current, Overdrive Voltage & Differential Input Signal. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Drain Current 2 = DC Bias Current/2-DC Bias Current/Overdrive Voltage*Differential Input Signal/2*sqrt(1-(Differential Input Signal)^2/(4*Overdrive Voltage^2))
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