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73 Results

Why Isolation in Power Electronics System?

This training series will firstly discuss the isolation requirement in power electronics system, and then compare the different driver isolation implementation methodologies. Integrated isolated gate driver shows the best performance in the perspective of size, performance and reliability.

Why Isolation in Power Electronics System?

Date:
April 16, 2017

Duration:
03:19
This training series will discuss how to achieve control and driver isolation in power electronics system.

What is UCC2x52x?

This training video will firstly discuss the configuration of the UCC2x52x gate driver and it featured benefits, then a detailed bench experiment comparison shows that UCC2x52x family gate drivers has better dynamic performance as well as stable and predictable source/sink peak current. 

What is UCC2152x?

Date:
April 14, 2017

Duration:
02:40
This training video is trying to introduce TI's isolated gate driver - UCC2x52x, industry’s fastest 5.7kVrms isolated dual channel gate driver. 

What is an isolated gate driver?

Date:
August 18, 2016

Duration:
02:13
What does a data center and an isolated gate driver have in common? Watch this video to learn more about the value of isolation and TI's UCC21520.

Using Isolated Gate Drivers for IGBT, Mosfets and SiC applications

Date:
October 4, 2016

Duration:
54:28
Join our on-demand training to learn the basics and types of isolation along with a comparative analysis of isolation technique.

UCC21520 – Turn-Off with Negative Voltage

This training video will help to understand the UCC2152x's output configuration and grounding consideration when driving FETs and IGBTs with negative voltage bias. Three different implementation methods are introduced, pros and cons of each methods are illustrated.

Challenges and solutions for gate drivers, highlighting features such as undervoltage lockout, enable/disable, split outputs, miller clamp, desaturation/overcurrent detection, soft turn-off, channel-to-channel isolation rating, and adjustable dead time

TI Precision Labs - Isolation: Isolated Gate Driver Challenges and Solutions

Date:
April 30, 2018

Duration:
06:56
This section of the TI Precision Labs - Isolation series concludes the isolated gate driver section with a look at driver-specific challenges and solutions.
Differences between non-isolated and isolated gate drivers, introduction to reasons for using isolated gate drivers

TI Precision Labs - Isolation: Introduction - What Is an Isolated Gate Driver?

Date:
April 30, 2018

Duration:
10:49
This section of the TI Precision Labs - Isolation series introduces gate drivers, the isolated/non-isolated distinction, and why isolated gate drivers are used.
Critical isolated gate driver specifications, such as propagation delay, pulse width distortion, part-to-part skew and common-mode transient immunity

TI Precision Labs - Isolation: Critical Isolated Gate Driver Specifications

Date:
April 30, 2018

Duration:
18:27
This section of the TI Precision Labs - Isolation series discusses critical timing and robustness parameters, with an application example.
Applications for isolated gate drivers, including three-phase power factor correction, solar string inverters, motor drives, and traction inverters

TI Precision Labs - Isolation: Applications for Isolated Gate Drivers

Date:
April 30, 2018

Duration:
12:26
This section of the TI Precision Labs - Isolation series explores PFC, solar inverter, motor drive, and traction inverter applications for isolated drivers.

Systems Made Simple Part 3: Isolation in Solar Inverters

Date:
December 18, 2015

Duration:
04:55
Isolators are one of the key electronic components used in a solar inverter. Watch this training to learn how to mitigate various isolation design consideratio

Summary and References

This training video summarizes the content of this gate driver series and the key references.

Summary and References

Date:
April 14, 2017

Duration:
00:12
This training video summarizes the content of this gate driver series and key references.

Robust Gate Driver Solution for High-Power-Density xEV Chargers using Silicon Carbide (SiC) MOSFETs

Date:
September 18, 2018

Duration:
27:08
This presentation discussed gate diver requirements for the SiC MOSFETs used in xEV chargers.

Reduce size of on-board magnetics and move to higher voltage solar arrays

Date:
November 28, 2018

Duration:
02:06
Watch this demo on how to achieve high power density in solar converters

Power Switching Device Cannot Drive Themselves - Mastering the Art of High Voltage Gate Driver Design in UPS, Telecom, and Servers

We live in a world where designers are constantly pursuing higher efficiencies and higher power densities. Our customers want more power out with less power loss, while achieving smaller solution sizes! They strive to reduce switching losses while maintaining signal integrity. The need for higher efficiency and power density is a trend seen across isolated and non-isolated power systems in Uninterruptible Power Supplies (UPS), Telecom Rectifiers, and Server PSUs.

Power Switching Device Cannot Drive Themselves - Mastering the Art of High Voltage Gate Driver Design in UPS, Telecom, and Servers

Date:
April 13, 2017

Duration:
00:38
Power Switching Device Cannot Drive Themselves - Mastering the Art of High Voltage Gate Driver Design in UPS, Telecom, and Servers

Power Loss and Thermal Considerations for Gate Drivers

Date:
October 9, 2017

Duration:
15:29
Power loss, loss distribution, thermal model, leadframe, packages, board layout, operating conditions, thermal analysis and thermal comparison of gate drivers

Parasics and its Influences at Hard-Switching

In this training video, parasitics in the gate driver system is identified. Piece-wise linear switching sequence at turn on/off is illustrated. Reverse recovery introduced additional complexity on turn-on transition is explained with comparison of MOSFETs and IGBTs.

73 Results
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