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How to Use AM57x/DRA7x DFU Boot Mode with Linux Host
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Power Solution for Automotive Off-board Loads
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Charging efficiently with digital on-board chargers
Harvesting energy for electrical on-board charging
High Voltage Solutions in HEV/EV Part I - On Board Chargers and Charging Stations
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TI-RSLK Module 5 - Lab video 5.2 - Connecting motor driver and power distribution board
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How to design multi-kW DC/DC converters for electric vehicles (EVs) - A high power on-board charger design
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A Robust Gate Driver Solution for High Power Density EV On-Board Chargers using Silicon Carbide (SiC) MOSFETs
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Compact, isolated gate driver board with protection and diagnostic needed for half-bridge SiC FETs and Si IGBT power modules
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Wireless Network Challenges and Solutions for a Smarter Grid IoT
The Internet of Things (IoT) is now part of the smarter grid through the adoption of IPv6 communications networks. These 6LoWPAN-based networks address key concerns such as standards-based interoperability, reliability, low power, and long-distance connectivity.
Introduction
This section covers wireless network trends, key technologies, and problem statements for smart grid IoT.
6LoWPAN-based Wireless Network Protocols
This section covers system-level deep dive on key wireless network protocols of 6LoWPAN, RPL, and CoAP for smart grid IoT.
System-Level Examples for Wireless Networks on Smart Grid IoT
This section covers system-level examples for wireless networks on smart grid IoT. We will provide software- and system-level details for two system examples: 6LoWPAN-Contiki and sub-1GHz sensor to cloud industrial IoT gateway reference design.
Summary
This section summarizes the wireless network challenges and solutions for a smarter grid IoT training series.
How to solve design challenges on interfacing Ethernet PHY with application processor or microcontrollers
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Improve grid power quality and reduce harmonics with this Vienna rectifier-based, three-phase power factor correction (PFC)
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LMK03328 WEBENCH Clock Architect Design Tutorial
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Layout, power loss, and packaging to address thermal concerns with integrated FET DC/DC converters
CLLLC resonant dual active bridge for HEV/EV onboard charger
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How to design multi-kW DC/DC converters for electric vehicles (EVs) - Power factor and harmonic currents
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