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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.
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 does GaN mean for your design?
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Webinar: How to extend flight time and battery life of quadcopters and industrial drones
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Using Isolated Gate Drivers for IGBT, Mosfets and SiC applications
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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.
Topologies
View a broad curriculum of training for designing with various power supply topologies, as well as step by step instructions to build complete power topology reference designs.
TI’s Reinforced Capacitive Isolation
This training video will firstly introduce the configuration of TI's capacitive isolation technology, and compare over other methods, like opto-coupler, transformative. Another important benefit - "fail open" of TI's capacitor isolation, will also be discussed.
Tips and Tricks for Industrial Power Supplies - High Voltage DC/DC
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Tips and Tricks for Industrial Power Supplies - Battery Charging
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TI and Siemens enabling industry 4.0 with GaN
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The Impact of Power Supply on ADCs and DACs
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The Active Clamp Flyback: Part 2
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Systems Made Simple: Solar Inverters
One of the key systems in a solar energy harvester is a solar inverter. A solar inverter, or any kind of inverter for that matter, will take a Direct Current voltage input and convert it to an Alternating Current output that can be used to power standard appliances and electronics in a home or business. While just about any high power DC source can be used, the largest sector of inverter growth is in renewables, particularly solar applications. Watch this series to help you mitigate multiple solar inverter design challenges.
Switch-mode power converter compensation made easy
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Summary and References
This training video summarizes the content of this gate driver series and the key references.
Solving Design Challenges
Get tips, tricks and techniques to solve common power supply design challenges with power experts.
Resonant Active Clamp Flyback Design for USB-C PD Power Adapter: Part 5
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Resonant Active Clamp Flyback Design for USB-C PD Power Adapter: Part 4
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