VIDEO SERIES

Practical comparisons of three DC/DC control-modes

Certain end-equipments, like communications, servers, industrial, and personal electronics have design challenges solved by the DC/DC converter’s control mode. This session will compare and contrast three different devices using three different control-modes under the same design criteria to understand how each control-mode solves particular size, efficiency, external component, ripple and transient response design challenges.

Presenter(s)

Topics
Practical comparisons of three DC/DC control-modes (21)

Practical Comparisons of DC/DC Control Modes - Introduction

00:01:44

Practical Comparisons of DCDC Control Modes - Market Challenges

00:01:33

Practical Comparisons of DC/DC Control Modes - Control Mode Overview

00:01:59

Practical Comparisons of DC/DC Control Modes - Product Comparison

00:02:18

Practical Comparisons of DC/DC Control Modes - Topology Comparison

00:01:12

Practical Comparisons of DC/DC Control Modes - Design Requirements

00:01:30

Practical Comparisons of DC/DC Control Modes - Switching Frequency Considerations

00:02:35

Practical Comparisons of DC/DC Control Modes - Inductor Selection

00:02:24

Practical Comparisons of DC/DC Control Modes - Output Capacitor Selection

00:03:51

Practical Comparisons of DC/DC Control Modes - TPS54A20 series capacitor selection

00:01:11

Practical Comparisons of DC/DC Control Modes - Capacitor Self Heating

00:02:06

Practical Comparisons of DC/DC Control Modes - Compensation calculations for the TPS54824

00:02:17

Practical Comparisons of DC/DC Control Modes - Solution Comparison

00:03:01

Practical Comparisons of DC/DC Control Modes - Closed loop analysis

00:01:30

Practical Comparisons of DC/DC Control Modes - Transient Response

00:01:08

Practical Comparisons of DC/DC Control Modes - Output Ripple & Jitter

00:02:24

Practical Comparisons of DC/DC Control Modes - Efficiency

00:02:05

Practical Comparisons of DC/DC Control Modes - Thermal Comparison

00:01:32

Practical Comparisons of DC/DC Control Modes - Solution Size Comparison

00:01:13

Practical Comparisons of DC/DC Control Modes - Cost Comparison

00:03:42

Practical Comparisons of DC/DC Control Modes - Summary

00:01:40
View series

Practical comparisons of three DC/DC control-modes

Practical comparisons of three DC/DC control-modes (21)

Practical Comparisons of DC/DC Control Modes - Introduction

00:01:44

Practical Comparisons of DCDC Control Modes - Market Challenges

00:01:33

Practical Comparisons of DC/DC Control Modes - Control Mode Overview

00:01:59

Practical Comparisons of DC/DC Control Modes - Product Comparison

00:02:18

Practical Comparisons of DC/DC Control Modes - Topology Comparison

00:01:12

Practical Comparisons of DC/DC Control Modes - Design Requirements

00:01:30

Practical Comparisons of DC/DC Control Modes - Switching Frequency Considerations

00:02:35

Practical Comparisons of DC/DC Control Modes - Inductor Selection

00:02:24

Practical Comparisons of DC/DC Control Modes - Output Capacitor Selection

00:03:51

Practical Comparisons of DC/DC Control Modes - TPS54A20 series capacitor selection

00:01:11

Practical Comparisons of DC/DC Control Modes - Capacitor Self Heating

00:02:06

Practical Comparisons of DC/DC Control Modes - Compensation calculations for the TPS54824

00:02:17

Practical Comparisons of DC/DC Control Modes - Solution Comparison

00:03:01

Practical Comparisons of DC/DC Control Modes - Closed loop analysis

00:01:30

Practical Comparisons of DC/DC Control Modes - Transient Response

00:01:08

Practical Comparisons of DC/DC Control Modes - Output Ripple & Jitter

00:02:24

Practical Comparisons of DC/DC Control Modes - Efficiency

00:02:05

Practical Comparisons of DC/DC Control Modes - Thermal Comparison

00:01:32

Practical Comparisons of DC/DC Control Modes - Solution Size Comparison

00:01:13

Practical Comparisons of DC/DC Control Modes - Cost Comparison

00:03:42

Practical Comparisons of DC/DC Control Modes - Summary

00:01:40