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Average power dissipation in class B stage in terms of supply power Solution

STEP 0: Pre-Calculation Summary
Formula Used
power_dissipated = Supply Power-Average load power
Pd = Ps-PL
This formula uses 2 Variables
Variables Used
Supply Power - Supply power is a device that converts the output from an ac power line to a steady dc output or multiple outputs. (Measured in Watt)
Average load power - Average load power the average power consumed by the load in a given period, usually, a day or a month. (Measured in Watt)
STEP 1: Convert Input(s) to Base Unit
Supply Power: 500 Watt --> 500 Watt No Conversion Required
Average load power: 250 Watt --> 250 Watt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pd = Ps-PL --> 500-250
Evaluating ... ...
Pd = 250
STEP 3: Convert Result to Output's Unit
250 Watt --> No Conversion Required
FINAL ANSWER
250 Watt <-- Power Dissipation in Series Transistor
(Calculation completed in 00.016 seconds)

10+ Class B Output Stage Calculators

Efficiency of class B stage
overall_efficiency = ((1/2)*((Peak Voltage)^2/Load Resistance)/(2/pi)*((Peak Voltage*Supply Voltage)/Load resistance)) Go
Total power supply of class B stage
total_power = (2*Peak Voltage*Supply Voltage)/(pi*Load resistance) Go
Load resistance of class B stage
load_resistance = (2*Peak Voltage*Supply Voltage)/(pi*Total power) Go
Power drain from positive sine wave
power = (Peak Voltage*Supply Voltage)/(pi*Load resistance) Go
Power drawn from negative sine wave
power = (Peak Voltage*Supply Voltage)/(pi*Load resistance) Go
Efficiency of the class B output stage
overall_efficiency = (pi/4)*(Peak Voltage/Supply Voltage) Go
Output sinusoid peak voltage of class B stage
peak_voltage = sqrt(2*Average load power*Load resistance) Go
Maximum average power from a class B output stage
max_power_developed = 1/2*((Supply Voltage)^2/Load resistance) Go
Average load-power of class B stage
average_load_power = 1/2*((Peak Voltage)^2/Load resistance) Go
Average power dissipation in class B stage in terms of supply power
power_dissipated = Supply Power-Average load power Go

Average power dissipation in class B stage in terms of supply power Formula

power_dissipated = Supply Power-Average load power
Pd = Ps-PL

What is a Class B amplifier?

Class B amplifier is a type of power amplifier where the active device (transistor) conducts only for the one-half cycle of the input signal. Since the active device is switched off for half the input cycle, the active device dissipates less power and hence the efficiency is improved.

How to Calculate Average power dissipation in class B stage in terms of supply power?

Average power dissipation in class B stage in terms of supply power calculator uses power_dissipated = Supply Power-Average load power to calculate the Power Dissipation in Series Transistor, The Average power dissipation in class B stage in terms of supply power formula is defined as the process in which an electric or electronic device produces heat (other waste energy) as an unwanted byproduct of its primary action. Power Dissipation in Series Transistor and is denoted by Pd symbol.

How to calculate Average power dissipation in class B stage in terms of supply power using this online calculator? To use this online calculator for Average power dissipation in class B stage in terms of supply power, enter Supply Power (Ps) and Average load power (PL) and hit the calculate button. Here is how the Average power dissipation in class B stage in terms of supply power calculation can be explained with given input values -> 250 = 500-250.

FAQ

What is Average power dissipation in class B stage in terms of supply power?
The Average power dissipation in class B stage in terms of supply power formula is defined as the process in which an electric or electronic device produces heat (other waste energy) as an unwanted byproduct of its primary action and is represented as Pd = Ps-PL or power_dissipated = Supply Power-Average load power. Supply power is a device that converts the output from an ac power line to a steady dc output or multiple outputs and Average load power the average power consumed by the load in a given period, usually, a day or a month.
How to calculate Average power dissipation in class B stage in terms of supply power?
The Average power dissipation in class B stage in terms of supply power formula is defined as the process in which an electric or electronic device produces heat (other waste energy) as an unwanted byproduct of its primary action is calculated using power_dissipated = Supply Power-Average load power. To calculate Average power dissipation in class B stage in terms of supply power, you need Supply Power (Ps) and Average load power (PL). With our tool, you need to enter the respective value for Supply Power and Average load power 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 Power Dissipation in Series Transistor?
In this formula, Power Dissipation in Series Transistor uses Supply Power and Average load power. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • average_load_power = 1/2*((Peak Voltage)^2/Load resistance)
  • peak_voltage = sqrt(2*Average load power*Load resistance)
  • power = (Peak Voltage*Supply Voltage)/(pi*Load resistance)
  • power = (Peak Voltage*Supply Voltage)/(pi*Load resistance)
  • total_power = (2*Peak Voltage*Supply Voltage)/(pi*Load resistance)
  • load_resistance = (2*Peak Voltage*Supply Voltage)/(pi*Total power)
  • overall_efficiency = ((1/2)*((Peak Voltage)^2/Load Resistance)/(2/pi)*((Peak Voltage*Supply Voltage)/Load resistance))
  • overall_efficiency = (pi/4)*(Peak Voltage/Supply Voltage)
  • max_power_developed = 1/2*((Supply Voltage)^2/Load resistance)
  • power_dissipated = Supply Power-Average load power
Where is the Average power dissipation in class B stage in terms of supply power calculator used?
Among many, Average power dissipation in class B stage in terms of supply power calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
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