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153 Results
power DC/DC conversion design

Introduce high power DC/DC conversion design: comparison of PSFB and FB-LLC Part 5

Date:
December 17, 2018

Duration:
11:09
Part 5: In this part, the speaker further talks about the difference of FSFB and FB-LLC, including the synchronous rectification, transformer secondary circuits
power DC/DC conversion design

Introduce high power DC/DC conversion design: comparison of PSFB and FB-LLC Part 6

Date:
December 17, 2018

Duration:
12:28
Part 6: The speaker has more comparison for the component stresses and in the end provides a conclusion of PSFB and FB-LLC and guideline of how to choose betwee
South Asia Industrial Webinar

2018 South Asia Industrial Webinar Series

The topics will cover system design issue and solution for Building Automation, Power Delivery and Test & Measurement. TI experts introduce the latest technology and innovation system reference design. Discover ways to enhance the time-to-market and create safer and efficient industrial systems.

Commonly-used Interface for Industrial

Overview of commonly-used interface for industrial application Part 1

Date:
December 19, 2018

Duration:
10:26
Part 1: First the speaker shows the communication hierarchy of all the interface type and how it impact on the communication design. Then the training further i
Commonly-used Interface for Industrial

Overview of commonly-used interface for industrial application Part 3

Date:
December 19, 2018

Duration:
10:16
Part 3: The speaker introduces a RS485 passive equalization reference design – TIDA00790 and other useful interface references.
isolated gate driver video

Drive high power solutions with higher performing isolated gate drivers

Date:
March 4, 2019

Duration:
01:16
Introducing TI's newest isolated gate driver portfilio, UCC217xx, for IGBT and SiC for faster switching, higher reliability and increased efficiency.

6.6kW Bi-directional OBC_CLLLC Resonant DAB Converter

Date:
April 1, 2019

Duration:
19:25
Designing 6.6kW Bidirectional HEV/EV On-Board-Charger with SiC and Embedded Technologies

6.6kW Bi-directional On-Board Charger (OBC): Introduction and Overview

Date:
April 1, 2019

Duration:
13:39
Designing 6.6kW Bidirectional HEV/EV On-Board-Charger (OBC) with SiC and Embedded Technologies

Designing 6.6kW Bidirectional HEV/EV On-Board-Charger with SiC and Embedded Technologies

In this series of presentations, we go through the HEV/EV market status and history, OBC specifications, technology trend, topology selections and design considerations of an OBC system. Complete test results of a 6.6kW OBC reference design (Including AC-DC rectifier and isolated DC-DC converter) will be shown in the end of this paper to demonstrate the performance of our TIDesigns as well as TI SiC and embedded Technologies.

IGBT and SiC Isolated Gate Drivers New Product Announcement

Date:
April 18, 2019

Duration:
25:46
This video highlights TI's new technology for SiC and IGBT isolated gate drivers.

Powering Isolated Gate Drivers in HEV-EV Traction Inverters

Date:
April 30, 2019

Duration:
18:42
Powering Isolated Gate Drivers in HEV-EV Traction Inverters

Dual active bridge DC:DC power stage for a level 3 (fast) EV charging station (pile)

Date:
June 27, 2019

Duration:
01:04:25
Bi-directional, dual active bridge reference design for level 3 electric vehicle charging stations.

Isolated Bias Power Supply Architecture and Topology Trade-offs for HEV/EVs

Date:
July 29, 2019

Duration:
28:36
Isolated Bias Power Supply Architecture and Topology Trade-offs for HEV/EVs

Detecting magnetic tampering using hall-effect sensors

For anti-tampering, it is common to try to detect the presence of a strong magnet. In this section, we will cover the use of hall sensors for low-power detection of strong magnetic fields in three dimensions.  Details on our magnetic tamper detection reference design, TIDA-00839, will be provided as well as some of the design considerations that were kept in mind when creating this reference design.  

Hardening a meter against magnetic tamper attacks

In this section, we will cover how to harden a meter against these magnetic tamper attacks by using shunts for current sensors. For poly-phase implementations, I will go over how to use isolated delta sigma modulators to add the necessary isolation to use shunt current sensors and create magnetically immune poly-phase energy measurement systems. The TIDA-00601 and TIDA-01094 reference designs, which show how to implement a poly-phase isolated shunt measurement system, will be discussed as well as the associated AMC1304 high-side power supplies used in these designs.

153 Results
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