Duty Cycle for Buck-Boost Regulator (CCM) Formula

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A Duty Cycle of Buck Boost CCM is the fraction of one period in which a signal or system is active in a voltage regulator circuit. Check FAQs
Dbb_ccm=Vo(bb_ccm)Vo(bb_ccm)-Vi(bb_ccm)
Dbb_ccm - Duty Cycle of Buck Boost CCM?Vo(bb_ccm) - Output Voltage of Buck Boost CCM?Vi(bb_ccm) - Input Voltage of Buck Boost CCM?

Duty Cycle for Buck-Boost Regulator (CCM) Example

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Here is how the Duty Cycle for Buck-Boost Regulator (CCM) equation looks like with Values.

Here is how the Duty Cycle for Buck-Boost Regulator (CCM) equation looks like with Units.

Here is how the Duty Cycle for Buck-Boost Regulator (CCM) equation looks like.

0.6001Edit=-16.57Edit-16.57Edit-11.04Edit
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Duty Cycle for Buck-Boost Regulator (CCM) Solution

Follow our step by step solution on how to calculate Duty Cycle for Buck-Boost Regulator (CCM)?

FIRST Step Consider the formula
Dbb_ccm=Vo(bb_ccm)Vo(bb_ccm)-Vi(bb_ccm)
Next Step Substitute values of Variables
Dbb_ccm=-16.57V-16.57V-11.04V
Next Step Prepare to Evaluate
Dbb_ccm=-16.57-16.57-11.04
Next Step Evaluate
Dbb_ccm=0.600144875045273
LAST Step Rounding Answer
Dbb_ccm=0.6001

Duty Cycle for Buck-Boost Regulator (CCM) Formula Elements

Variables
Duty Cycle of Buck Boost CCM
A Duty Cycle of Buck Boost CCM is the fraction of one period in which a signal or system is active in a voltage regulator circuit.
Symbol: Dbb_ccm
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Output Voltage of Buck Boost CCM
Output Voltage of Buck Boost CCM signifies the voltage of the signal after it has been regulated by a voltage regulator circuit.
Symbol: Vo(bb_ccm)
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Input Voltage of Buck Boost CCM
Input Voltage of Buck Boost CCM is the voltage supplied to the voltage regulator circuit.
Symbol: Vi(bb_ccm)
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.

Credits

Creator Image
Created by Shobhit Dimri LinkedIn Logo
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
Shobhit Dimri has created this Formula and 900+ more formulas!
Verifier Image
Verified by Urvi Rathod LinkedIn Logo
Vishwakarma Government Engineering College (VGEC), Ahmedabad
Urvi Rathod has verified this Formula and 1900+ more formulas!

Other formulas in Continuous Conduction Mode category

​Go Output Voltage for Buck-Boost Regulator (CCM)
Vo(bb_ccm)=-Vi(bb_ccm)Dbb_ccm1-Dbb_ccm
​Go Input Voltage for Buck-Boost Regulator (CCM)
Vi(bb_ccm)=Vo(bb_ccm)(Dbb_ccm-1)Dbb_ccm

How to Evaluate Duty Cycle for Buck-Boost Regulator (CCM)?

Duty Cycle for Buck-Boost Regulator (CCM) evaluator uses Duty Cycle of Buck Boost CCM = Output Voltage of Buck Boost CCM/(Output Voltage of Buck Boost CCM-Input Voltage of Buck Boost CCM) to evaluate the Duty Cycle of Buck Boost CCM, The Duty Cycle for Buck-Boost Regulator (CCM) formula is defined as the ratio of time a load or circuit is ON compared to the time the load or circuit is OFF. Duty Cycle of Buck Boost CCM is denoted by Dbb_ccm symbol.

How to evaluate Duty Cycle for Buck-Boost Regulator (CCM) using this online evaluator? To use this online evaluator for Duty Cycle for Buck-Boost Regulator (CCM), enter Output Voltage of Buck Boost CCM (Vo(bb_ccm)) & Input Voltage of Buck Boost CCM (Vi(bb_ccm)) and hit the calculate button.

FAQs on Duty Cycle for Buck-Boost Regulator (CCM)

What is the formula to find Duty Cycle for Buck-Boost Regulator (CCM)?
The formula of Duty Cycle for Buck-Boost Regulator (CCM) is expressed as Duty Cycle of Buck Boost CCM = Output Voltage of Buck Boost CCM/(Output Voltage of Buck Boost CCM-Input Voltage of Buck Boost CCM). Here is an example- 0.600145 = (-16.57)/((-16.57)-11.04).
How to calculate Duty Cycle for Buck-Boost Regulator (CCM)?
With Output Voltage of Buck Boost CCM (Vo(bb_ccm)) & Input Voltage of Buck Boost CCM (Vi(bb_ccm)) we can find Duty Cycle for Buck-Boost Regulator (CCM) using the formula - Duty Cycle of Buck Boost CCM = Output Voltage of Buck Boost CCM/(Output Voltage of Buck Boost CCM-Input Voltage of Buck Boost CCM).
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