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448 Results

Rapid prototyping conclusion based on complex demonstration

Date:
October 16, 2019

Duration:
06:00
This module concludes rapid prototyping with a complex demonstration based on an embedded Linux host controlling NeoPixel over embedded Wi-Fi on a tablet.

Rapid prototyping conclusion based on call to action examples

Date:
October 11, 2019

Duration:
01:51
This module starts the conclusion of rapid prototyping with call to action examples.

Reduce design risk for Low Earth Orbit satellites and other New Space applications

When: October 8, 2019 2:00 pm
What is NewSpace? What does it mean for satellite design? Explore products that meet quality & reliability requirements for short space flights and LEO designs.
Rapid prototyping based on embedded wireless system

Rapid prototyping based on embedded wireless system

Date:
October 4, 2019

Duration:
10:15
This module covers more user interface concepts (specifically, a wireless Linux host connected by WiFi) and how they are used for control in rapid prototyping.
Rapid prototyping based on embedded wired system

Rapid prototyping based on embedded wired system

Date:
October 4, 2019

Duration:
20:46
This module covers more user interface concepts (specifically, a Linux host wired over USB) and how they are used for control in rapid prototyping.

KeyStone Memory and Transport

This section provides information about the memory and transport architectures of the C66x DSP + ARM embedded processors.

KeyStone External Interfaces

This section provides training on the external interfaces of the C66x DSP + ARM embedded processors.

KeyStone Wireless Accelerators and Co-Processors

This section provides an overview of the wireless accelerators and co-processors on C66x DSP + ARM embedded processors.

KeyStone Software and Tools

This section introduces various software and tools on C66x DSP + ARM embedded processors.

KeyStone Demonstrations

This section includes demonstrations for software and hardware processes performed on KeyStone devices.

Processor SDK for AM57x Sitara Processors

TI provides key runtime software components and documentation to further ease development. TI’s online training provides an introduction to the Processor SDK and how to use this software to start building applications on TI processors.

PRU for Sitara Processors

The Programmable Real-Time Unit (PRU) is a small processor that is tightly integrated with an IO subsystem, offering low-latency control of IO pins on TI’s SoC devices including the AM335x, AM437x, and AM57x Sitara Processors. The PRU is customer-programmable and can be used to implement simple and flexible control functions, peripherals, and state machines that directly access IO pins of the device, as well as can communicate with the application cores. TI's online training for PRU provides an introduction to development and debugging.

Introduction to OpenCL

These videos provide an to OpenCL support on Sitara and KeyStone embedded processors.

Processor SDK for KeyStone Processors

TI provides key runtime software components and documentation to further ease development. TI’s online training provides an introduction to the Processor SDK and how to use this software to start building applications on TI processors.

PRU for 66AK2Gx Processors

The Programmable Real-Time Unit (PRU) is a small processor that is tightly integrated with an IO subsystem, offering low-latency control of IO pins on TI’s SoC devices including the 66AK2Gx, AM335x, AM437x, and AM57x Processors. The PRU is customer-programmable and can be used to implement simple and flexible control functions, peripherals, and state machines that directly access IO pins of the device, as well as can communicate with the application cores.

AM4x Sitara Processors

The AM4x Sitara processors provide scalable ARM Cortex‐A9 solutions for automation, HMI, vision, imaging, and other industrial and high‐performance applications. This online training series includes an introduction to the AM4x processor family and the industrial .application support provided for devices in this class.

Introduction

This section covers wireless network trends, key technologies, and problem statements 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. 

Debugging Embedded Linux Systems

Debugging Embedded Linux Systems training series teaches the techniques of debugging kernel issues that may be encountered in embedded Linux systems. It explains the Linux kernel logging system and logging API, illustrates how to locate a particular device driver, and demonstrates how to read kernel oops logs.

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