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Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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Slope Rise Solution

STEP 0: Pre-Calculation Summary
Formula Used
slope_rise = (Delay rise-(intrinsic rise+(rise resistance*Capacitance)))/delay previous
S.R = (td-(Ti+(Rrise*C)))/D.P
This formula uses 5 Variables
Variables Used
Delay rise- Delay rise the time taken for the output of a gate to change from some value to 1 is called a rise delay
intrinsic rise- intrinsic rise is the rise in intrinsic concentration
rise resistance- rise resistance is the resistance rise
Capacitance - Capacitance is the ratio of the amount of electric charge stored on a conductor to a difference in electric potential. (Measured in Farad)
delay previous- delay previous is the previous delay
STEP 1: Convert Input(s) to Base Unit
Delay rise: 4 --> No Conversion Required
intrinsic rise: 1 --> No Conversion Required
rise resistance: 8 --> No Conversion Required
Capacitance: 3 Farad --> 3 Farad No Conversion Required
delay previous: 8 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
S.R = (td-(Ti+(Rrise*C)))/D.P --> (4-(1+(8*3)))/8
Evaluating ... ...
S.R = -2.625
STEP 3: Convert Result to Output's Unit
-2.625 --> No Conversion Required
FINAL ANSWER
-2.625 <-- slope rise
(Calculation completed in 00.016 seconds)

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gate_to_channel_voltage = (Channel Charge/Gate Capacitance)+Threshold voltage Go
Threshold Voltage
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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

Slope Rise Formula

slope_rise = (Delay rise-(intrinsic rise+(rise resistance*Capacitance)))/delay previous
S.R = (td-(Ti+(Rrise*C)))/D.P

What Is Metastability?

A un-known state in between the two logical known states.This will happen if the O/P cap is not allowed to charge/discharge fully to the required logical levels.

How to Calculate Slope Rise?

Slope Rise calculator uses slope_rise = (Delay rise-(intrinsic rise+(rise resistance*Capacitance)))/delay previous to calculate the slope rise, The Slope Rise formula is defined as the rise in the slope is sometimes referred to as "rise over run", because the fraction onsists of the "rise" (being the change in y, going up or down) divided by the "run" (being the change in x, going from left to the right). slope rise and is denoted by S.R symbol.

How to calculate Slope Rise using this online calculator? To use this online calculator for Slope Rise, enter Delay rise (td), intrinsic rise (Ti), rise resistance (Rrise), Capacitance (C) and delay previous (D.P) and hit the calculate button. Here is how the Slope Rise calculation can be explained with given input values -> -2.625 = (4-(1+(8*3)))/8 .

FAQ

What is Slope Rise?
The Slope Rise formula is defined as the rise in the slope is sometimes referred to as "rise over run", because the fraction onsists of the "rise" (being the change in y, going up or down) divided by the "run" (being the change in x, going from left to the right) and is represented as S.R = (td-(Ti+(Rrise*C)))/D.P or slope_rise = (Delay rise-(intrinsic rise+(rise resistance*Capacitance)))/delay previous . Delay rise the time taken for the output of a gate to change from some value to 1 is called a rise delay, intrinsic rise is the rise in intrinsic concentration, rise resistance is the resistance rise, Capacitance is the ratio of the amount of electric charge stored on a conductor to a difference in electric potential and delay previous is the previous delay.
How to calculate Slope Rise?
The Slope Rise formula is defined as the rise in the slope is sometimes referred to as "rise over run", because the fraction onsists of the "rise" (being the change in y, going up or down) divided by the "run" (being the change in x, going from left to the right) is calculated using slope_rise = (Delay rise-(intrinsic rise+(rise resistance*Capacitance)))/delay previous . To calculate Slope Rise, you need Delay rise (td), intrinsic rise (Ti), rise resistance (Rrise), Capacitance (C) and delay previous (D.P). With our tool, you need to enter the respective value for Delay rise, intrinsic rise, rise resistance, Capacitance and delay previous 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 slope rise?
In this formula, slope rise uses Delay rise, intrinsic rise, rise resistance, Capacitance and delay previous. 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 Slope Rise calculator used?
Among many, Slope Rise calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
{FormulaExamplesList}
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