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## Credits

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## Gate Length when gate Oxide capacitance is given Solution

STEP 0: Pre-Calculation Summary
Formula Used
gate_length = (Capacitance Of Gate Oxide/Gate Capacitance*transition width)
L = (Cox/Cg*W)
This formula uses 3 Variables
Variables Used
Capacitance Of Gate Oxide - Capacitance Of Gate Oxide is the capacitance (Measured in Farad)
Gate Capacitance - Gate Capacitance is the capacitance of the gate terminal of a field-effect transistor. (Measured in Farad)
transition width - transition width As the drain-to-source voltage increases, the triode region transitions to the saturation (Measured in Nanometer)
STEP 1: Convert Input(s) to Base Unit
Capacitance Of Gate Oxide: 6 Farad --> 6 Farad No Conversion Required
Gate Capacitance: 4 Farad --> 4 Farad No Conversion Required
transition width: 3 Nanometer --> 3E-09 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
L = (Cox/Cg*W) --> (6/4*3E-09)
Evaluating ... ...
L = 4.5E-09
STEP 3: Convert Result to Output's Unit
4.5E-09 Meter --> No Conversion Required
FINAL ANSWER
4.5E-09 Meter <-- Gate length
(Calculation completed in 00.016 seconds)

## < 10+ CMOS-VLSI Design Calculators

Drain Voltage
drain_voltage = sqrt(dynamic power/frequency*Capacitance) Go
Gate to Channel Voltage
gate_to_channel_voltage = (Channel Charge/Gate Capacitance)+Threshold voltage Go
Threshold Voltage
threshold_voltage = Gate to Channel Voltage-(Channel Charge/Gate Capacitance) Go
Gate Capacitance
channel_charge = Gate Capacitance*(Gate to Channel Voltage-Threshold voltage) Go
Channel Charge
channel_charge = Gate Capacitance*(Gate to Channel Voltage-Threshold voltage) Go
Capacitor dynamic power
dynamic_power = Drain Voltage^2*frequency*Capacitance Go
Potential gate to Collector
potential_gate_to_collector = (Potential Gate to Source+Potential Gate to Drain)/2 Go
Potential Gate to Drain
potential_gate_to_drain = 2*potential gate to collector-Potential Gate to Source Go
Static Current
static_current = Static power/Drain Voltage Go
Static Power Dissipation
static_power = static current*Drain Voltage Go

### Gate Length when gate Oxide capacitance is given Formula

gate_length = (Capacitance Of Gate Oxide/Gate Capacitance*transition width)
L = (Cox/Cg*W)

## Explain what is a sequential circuit?

A sequential circuit is a circuit which is created by logic gates such that the required logic at the output depends not only on the current input logic conditions, but also on the sequences past inputs and outputs.

## How to Calculate Gate Length when gate Oxide capacitance is given?

Gate Length when gate Oxide capacitance is given calculator uses gate_length = (Capacitance Of Gate Oxide/Gate Capacitance*transition width) to calculate the Gate length, The Gate Length when gate Oxide capacitance is Given defined the path that links the charge carriers between the drain and the source. If you exclude the physical overlapping in the structure, gate length and channel length would be very close. Gate length and is denoted by L symbol.

How to calculate Gate Length when gate Oxide capacitance is given using this online calculator? To use this online calculator for Gate Length when gate Oxide capacitance is given, enter Capacitance Of Gate Oxide (Cox), Gate Capacitance (Cg) and transition width (W) and hit the calculate button. Here is how the Gate Length when gate Oxide capacitance is given calculation can be explained with given input values -> 4.500E-9 = (6/4*3E-09).

### FAQ

What is Gate Length when gate Oxide capacitance is given?
The Gate Length when gate Oxide capacitance is Given defined the path that links the charge carriers between the drain and the source. If you exclude the physical overlapping in the structure, gate length and channel length would be very close and is represented as L = (Cox/Cg*W) or gate_length = (Capacitance Of Gate Oxide/Gate Capacitance*transition width). Capacitance Of Gate Oxide is the capacitance, Gate Capacitance is the capacitance of the gate terminal of a field-effect transistor and transition width As the drain-to-source voltage increases, the triode region transitions to the saturation.
How to calculate Gate Length when gate Oxide capacitance is given?
The Gate Length when gate Oxide capacitance is Given defined the path that links the charge carriers between the drain and the source. If you exclude the physical overlapping in the structure, gate length and channel length would be very close is calculated using gate_length = (Capacitance Of Gate Oxide/Gate Capacitance*transition width). To calculate Gate Length when gate Oxide capacitance is given, you need Capacitance Of Gate Oxide (Cox), Gate Capacitance (Cg) and transition width (W). With our tool, you need to enter the respective value for Capacitance Of Gate Oxide, Gate Capacitance and transition width 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 Gate length?
In this formula, Gate length uses Capacitance Of Gate Oxide, Gate Capacitance and transition width. We can use 10 other way(s) to calculate the same, which is/are as follows -
• dynamic_power = Drain Voltage^2*frequency*Capacitance
• drain_voltage = sqrt(dynamic power/frequency*Capacitance)
• static_power = static current*Drain Voltage
• static_current = Static power/Drain Voltage
• channel_charge = Gate Capacitance*(Gate to Channel Voltage-Threshold voltage)
• channel_charge = Gate Capacitance*(Gate to Channel Voltage-Threshold voltage)
• gate_to_channel_voltage = (Channel Charge/Gate Capacitance)+Threshold voltage
• threshold_voltage = Gate to Channel Voltage-(Channel Charge/Gate Capacitance)
• potential_gate_to_collector = (Potential Gate to Source+Potential Gate to Drain)/2
• potential_gate_to_drain = 2*potential gate to collector-Potential Gate to Source
Where is the Gate Length when gate Oxide capacitance is given calculator used?
Among many, Gate Length when gate Oxide capacitance is given calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
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