Charging or Discharging Time in Triangle to Square Converter Solution

STEP 0: Pre-Calculation Summary
Formula Used
Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current
t1 = C*(Vup-trg1-Vlt)/I
This formula uses 5 Variables
Variables Used
Charging and Discharging Time 1 - (Measured in Second) - Charging and Discharging Time 1 is the time taken by the wave generator to charge or discharge.
Capacitance - (Measured in Farad) - Capacitance is a fundamental property in electronics that describes the ability of a component called a capacitor to store electrical energy in the form of an electric field.
Upper Trigger Voltage - (Measured in Volt) - Upper Trigger Voltage is specific voltage level on the input that triggers a change in the circuit's output state.
Lower Trigger Voltage - (Measured in Volt) - Lower Trigger Voltage refers to a specific voltage level in a Schmitt trigger circuit.
Current - (Measured in Ampere) - Current refers to the value of the current or flow of electron through op-amp of configuration μA741.
STEP 1: Convert Input(s) to Base Unit
Capacitance: 3 Farad --> 3 Farad No Conversion Required
Upper Trigger Voltage: 10.5 Volt --> 10.5 Volt No Conversion Required
Lower Trigger Voltage: 1.167 Volt --> 1.167 Volt No Conversion Required
Current: 7 Ampere --> 7 Ampere No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
t1 = C*(Vup-trg1-Vlt)/I --> 3*(10.5-1.167)/7
Evaluating ... ...
t1 = 3.99985714285714
STEP 3: Convert Result to Output's Unit
3.99985714285714 Second --> No Conversion Required
FINAL ANSWER
3.99985714285714 3.999857 Second <-- Charging and Discharging Time 1
(Calculation completed in 00.004 seconds)

Credits

Created by Nikita Suryawanshi
Vellore Institute of Technology (VIT), Vellore
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7 Signal Converter Calculators

Output Voltage of Triangle to Sine Converter with D1
Go Output Voltage = Input Voltage*((Resistance 2*Resistance 3)/((Resistance 1*Resistance 2)+(Resistance 1*Resistance 3)+(Resistance 2*Resistance 3)))
Output Voltage of Triangle to Sine Converter with D2
Go Output Voltage = Input Voltage*((Resistance 2*Resistance 4)/((Resistance 1*Resistance 2)+(Resistance 1*Resistance 4)+(Resistance 2*Resistance 4)))
Charging or Discharging Time in Triangle to Square Converter
Go Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current
Output Voltage of Triangle to Sine Converter without D1 and D2
Go Output Voltage = Input Voltage*Resistance 2/(Resistance 1+Resistance 2)
Upper Trigger Point Voltage in Triangle to Square Converter
Go Upper Trigger Voltage = (Supply Voltage 1-1)*(Resistance 3/Resistance 4)
Lower Trigger Point Voltage in Triangle to Square Converter
Go Lower Trigger Voltage = (1-Supply Voltage)*(Resistance 3/Resistance 4)
Time Period of Wave in Triangle to Square Converter
Go Time period = 2*Charging and Discharging Time

Charging or Discharging Time in Triangle to Square Converter Formula

Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current
t1 = C*(Vup-trg1-Vlt)/I

What is the use of square waveform?

Square-wave Waveforms are used extensively in electronic and microelectronic circuits for clock and timing control signals as they are symmetrical waveforms of equal and square duration representing each half of a cycle and nearly all digital logic circuits use square wave waveforms on their input and output gates.

How to Calculate Charging or Discharging Time in Triangle to Square Converter?

Charging or Discharging Time in Triangle to Square Converter calculator uses Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current to calculate the Charging and Discharging Time 1, The Charging or Discharging Time in Triangle to Square Converter formula is the time taken by the op-amp to charge or discharge in a triangle to square converter. Charging and Discharging Time 1 is denoted by t1 symbol.

How to calculate Charging or Discharging Time in Triangle to Square Converter using this online calculator? To use this online calculator for Charging or Discharging Time in Triangle to Square Converter, enter Capacitance (C), Upper Trigger Voltage (Vup-trg1), Lower Trigger Voltage (Vlt) & Current (I) and hit the calculate button. Here is how the Charging or Discharging Time in Triangle to Square Converter calculation can be explained with given input values -> 3.999857 = 3*(10.5-1.167)/7.

FAQ

What is Charging or Discharging Time in Triangle to Square Converter?
The Charging or Discharging Time in Triangle to Square Converter formula is the time taken by the op-amp to charge or discharge in a triangle to square converter and is represented as t1 = C*(Vup-trg1-Vlt)/I or Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current. Capacitance is a fundamental property in electronics that describes the ability of a component called a capacitor to store electrical energy in the form of an electric field, Upper Trigger Voltage is specific voltage level on the input that triggers a change in the circuit's output state, Lower Trigger Voltage refers to a specific voltage level in a Schmitt trigger circuit & Current refers to the value of the current or flow of electron through op-amp of configuration μA741.
How to calculate Charging or Discharging Time in Triangle to Square Converter?
The Charging or Discharging Time in Triangle to Square Converter formula is the time taken by the op-amp to charge or discharge in a triangle to square converter is calculated using Charging and Discharging Time 1 = Capacitance*(Upper Trigger Voltage-Lower Trigger Voltage)/Current. To calculate Charging or Discharging Time in Triangle to Square Converter, you need Capacitance (C), Upper Trigger Voltage (Vup-trg1), Lower Trigger Voltage (Vlt) & Current (I). With our tool, you need to enter the respective value for Capacitance, Upper Trigger Voltage, Lower Trigger Voltage & Current and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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