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Overview

Introduction of Anthony Boon and overview of the series

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Simulation

Simulation of the control system in order to analyze the response of the buck converter in voltage mode control. The microcontroller peripherals which are needed are simulated using the peripheral simulation blocks of the Digital Power Designer.

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Compensator Coefficient Tuning

The buck converter is simulated with the coeffiecients of the compensator being the inputs. This gives us the opportunity to better tune the coefficients based on the response of the converter.

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Open Loop

We take the first step to control the actual converter. We run a hardware in the loop diagram in open loop.

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Closed Loop Model Design and Compilation

We look into the design of the model for closed loop control of the buck converter and look into the compilation of the model with just 3 clicks.

Closed Loop Debugging (HIL) and Flashing

Last part is running the closed loop control algorithm in hardware in the loop for validation. After validation we can revert to the design diagram and in just one step create a binary file that can be flashed to the controller.

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00:38
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Buck Converter Series - Overview

Introduction of Anthony Boon and overview of the series

08:53
Watch now

Buck Converter Series - Simulation

Simulation of the control system in order to analyze the response of the buck converter in voltage mode control. The microcontroller peripherals which are needed are simulated using the peripheral simulation blocks of the Digital Power Designer.

04:41
Watch now

Buck Converter Series - Compensator Coefficient Tuning

The buck converter is simulated with the coeffiecients of the compensator being the inputs. This gives us the opportunity to better tune the coefficients based on the response of the converter.

07:32
Watch now

Buck Converter Series - Open Loop

We take the first step to control the actual converter. We run a hardware in the loop diagram in open loop.

05:35
Watch now

Buck Converter Series - Closed Loop Model Design and Compilation

We look into the design of the model for closed loop control of the buck converter and look into the compilation of the model with just 3 clicks.

07:36
Watch now

Buck Converter Series - Closed Loop Debugging (HIL) and Flashing

Last part is running the closed loop control algorithm in hardware in the loop for validation. After validation we can revert to the design diagram and in just one step create a binary file that can be flashed to the controller.

solidThinking EMBED

Buck Converter Series - Overview

Introduction of Anthony Boon and overview of the series

View all episodes

solidThinking EMBED

Buck Converter Series - Simulation

Simulation of the control system in order to analyze the response of the buck converter in voltage mode control. The microcontroller peripherals which are needed are simulated using the peripheral simulation blocks of the Digital Power Designer.

View all episodes

solidThinking EMBED

Buck Converter Series - Compensator Coefficient Tuning

The buck converter is simulated with the coeffiecients of the compensator being the inputs. This gives us the opportunity to better tune the coefficients based on the response of the converter.

View all episodes

solidThinking EMBED

Buck Converter Series - Open Loop

We take the first step to control the actual converter. We run a hardware in the loop diagram in open loop.

View all episodes

solidThinking EMBED

Buck Converter Series - Closed Loop Model Design and Compilation

We look into the design of the model for closed loop control of the buck converter and look into the compilation of the model with just 3 clicks.

View all episodes

solidThinking EMBED

Buck Converter Series - Closed Loop Debugging (HIL) and Flashing

Last part is running the closed loop control algorithm in hardware in the loop for validation. After validation we can revert to the design diagram and in just one step create a binary file that can be flashed to the controller.

View all episodes

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