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Connects - Training Material

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This session will introduce the Zephyr Project, a Linux Foundation initiative quickly gaining momentum in the open source development community. The Zephyr OS is a small, yet scalable RTOS targeting connected devices across multiple hardware architectures. NXP is actively contributing to the project to support products in the Kinetis, LPC, and i.MX RT families.
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The i.MX 8 architecture features two processor types: a powerful Arm® Cortex®-A for applications and a Cortex-M4 for real time processing. In this session you will learn how these cores can interact and what features are embedded on our SoC to ease development on this architecture.
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NXP’s end-to-end solution for USB Type-C offers ease-of-use integration into customer designs and includes AC/DC converter for power supplies, PD PHY and CC Logic Controller, direct charging, signal re-drivers, signal switches, load switches and authentication.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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This workshop demonstrates FreeRTOS on the S32K and presents basic system operation, scheduling, and resource management as it applies in the embedded environment. User applications can be written inside this environment to maximize the use of hardware resources and prioritize operations based on their importance to the system.
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This session will cover Smart Home Applications and how sensors can be utilized to create such applications. Some key applications include Smart Door, Window Tamper Detect, Door Knock Detect, Smart HVAC filter, Smart Pill Box, Smart pool Pump, Smart Torch, Smart Stove and many more.
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This session will provide an update on the path the AUTOSAR standard is progressing and will discuss the various NXP software products that are readily integrable into the AUTOSAR framework. We will go in-depth into what the MCAL is and what extensions are available in the NXP AUTOSAR MCAL product.
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Secure Connected & Automated Vehicles AMF-AUT-T1811 - 4 Layers of Automotive Security for Connected Cars  AMF-AUT-T2366 - Advanced Standard Products Packaging for the Automotive Market  AMF-AUT-T2411 - Altia: Breaking Down the Automotive eCockpit Design Challenge  AMF-AUT-T1764 - Creating Secure Networks for V2X Communications  AMF-AUT-T1944 - Design the Car of the Future: i.MX 8 Virtualization and Media Capabilities for Next Gen eCockpits  AMF-AUT-T2345 - Faster Motor Control Development  AMF-AUT-T2341 - Firmware Updates for Automotive Edge Nodes AMF-AUT-T2363 - Functional Safety Methodology and Capabilities  AMF-AUT-T2358 - Functional Safety Power SBC: FS6500 / FS4500 AMF-AUT-T2344 - Hands-On Workshop: MCT for S32K - MATLAB/Simulink Modeling and Code Generation  AUT-N1891 Hands-On Workshop Programming of NXP's eXtreme Switch in Less Than 10 Minute.pdf  AMF-AUT-T2346 - Hands-On Workshop: S32K, Design Studio and SDK  AMF-AUT-T1782 - Introduction to Sensor Fusion and Autonomous Drive Vehicle Algorithms  AMF-AUT-T1823 - Introducing New SPI Controlled Brushed DC Motor Drivers Featuring Functional Safety and Higher Torque  AMF-AUT-T2324 - Manufacturing Tool  AMF-AUT-T2353 - MOSFET Based H-bridge Window Lift Implementation  AMF-AUT-T2343 - S32K and MagniV Overview  AMF-AUT-T2354 - S32K Security for the Automotive Edge Nodes  AMF-AUT-T2325 - S32V234 ADAS Vision Processor Overview  AMF-AUT-T2371 - Simplify Your Inverter Through Advancements in IGBT Gate Drivers  AMF-AUT-T2364 - Software Tips and Tricks for the S32V  AMF-AUT-T2348 - The NXP Audio Video Bridging (AVB) Stack  AMF-AUT-T2347 - The NXP IVI Platform  AMF-AUT-T2349 - The NXP Trusted Execution Environment (TEE) Stack  AMF-AUT-T1813 - Trends in Vehicle Architectures  AMF-AUT-T2367 - TPMS Localization VIDEO PRESENTATION: FTF-AUT-N1773 - Secure V2X Intro  VIDEO PRESENTATION: FTF-AUT-N1788 - BlueBox - A Powerful Brain Enabling the Design of Self-driving Cars with Safe, Secure and Reliable Motion Planning Systems  AMF-AUT-T2323 - Vision SDK for S32V Family  AMF-AUT-T2310 - Yocto Project™ Tools for BSP Developers  Design, Software & Services AMF-DES-T2412 - Cog Systems: Introducing D4 Secure SDK - Leverage Virtualization to Build Your Secure Connected Devices  AMF-DES-T2409 - DornerWorks: Xen on the i.MX 8 Applications Processors  AMF-DES-T2304 - Effective Printed Circuit Board Design: Techniques to Improve Performance  AMF-DES-T2305 - Electromagnetic Fields for Normal Folks: Show Me the Pictures and Hold the Equations, Please  AMF-DES-T2360 - EMI Made Simple: It's All About the Space!  AMF-DES-T1740 - i.MX 8 and the Vulkan API - The Future of High Performance Graphics Implementations  AMF-DES-T1894 - Techniques for Crypto Key Management Using i.MX Application Processors  AMF-DES-T1939 - Teaching Things to See: Introduction to i.MX 8 Vision Architecture  AMF-DES-T2001 - Power Distribution Made Easy  AMF-INS-T2024 - Semiconductor 101/102: Functionality and Manufacturing of Integrated Circuits  AMF-DES-T2352 - Using the New ‘Pins Tool’ for i.MX Applications Processors 
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OpenIL is Linux® distro designed specifically for the industrial market. OpenIL is an ideal deployment for PLC, HMI, industrial control and automation systems. As an open source project based on buildroot to provide a compact filesystem for industrial usage, OpenIL supports LTS Linux kernel 4.1 and 4.9, Xenomai cobalt core, industrial IEEE®1588, time sensitive networking and many other features. A real-time baremetal framework supports relay control and robotic applications. Learn about OpenIL, the architecture, design objectives and roadmap. Understand how you can contribute to OpenIL and drive the direction of the community project.
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Introduction to NXP’s state-of-the-art 1-chip next generation software defined radio(SDR) system solution covering global radio reception standards (Mercury family).
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Hands-on: Quick introduction into non-AUTOSAR software solutions based on NXP S32 SDK. How to create an automotive application featuring secure CAN communication. Integration with S32 Design Studio IDE, tips and tricks.
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Introduction of innovative BMS system concepts based on wireless communication. Overview of system configuration and communication strategy. Validation results from lab work with OEM partner.
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How to accelerate radar signal processing on S32R family utilizing SPT and multiple cores.
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Motor control is moving to smart, reliability, high energy efficiency and high integration, digital control is the inevitable choice to meet the requirements. As old brand motor control MCU supplier, NXP provides the complete motor control MCU product portfolio and related reference solutions, covering from low end S08, dedicated 32-bit DSC, 32-bit Cortex M0+/M4/M7 based KE/KV to high performance 32-bit Cortex-M7 crossover i.MX RT. This session will introduce the market trend of motor control applications, basic motor control applications' requirements and NXP's offerings to meet these requirements. Finally, one dual stepper servo motors control demo is shown to better understand what NXP can provide to make motor control development easy.
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Learn about vision processing and technical capabilities of S32V’s dual-APEX acceleration engines, multi-core A53 processors, on-chip image signal processor (ISP) and Vivante GC3000 GPU which differentiates S32V from other ARM® based processors that can’t meet the same performance/power envelope. Attendees will get hands-on experience using the SBC-S32V234 SOM hardware and free Vision SDK to demonstrate software for Lane Departure Warning (LDW), Feature Detection using Lukas-Kanade and Pedestrian Detection applications.
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Introduction to new features introduced by AUTOSAR 4.3.0 and an overview of the NXP AUTOSAR portfolio for the NXP microcontrollers and processors. Introduction to the AUTOSAR ADAPTIVE platform.
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This session will provide an overview of the NXP wireless charging solutions portfolio with integrated NFC communication in wireless charging transmitters. Attendees will receive a clear understanding about NXP’s state of the art transmit and receive reference designs available for automotive, consumer, appliance and infrastructure markets. This session will also provide the in-depth technical details and guidance of the design of wireless charging transmitter and receiver. Also a review of NFC/RFID cards protection that cover both low-power and medium-power applications will be presented.
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Building on the classroom training presentation "Deploying eIQ Machine Learning on NXP MCU and Apps Processors", this hands-on session will allow attendees to take a trained neural network model and deploy it on a i.MX RT1060 crossover processor. Attendees will use MCUXpresso as the development environment and implement an end-to-end use case. See notes here.
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Learn how to get started with the Zephyr Project on i.MX RT. You will gain hands-on experience with the Zephyr build environment and program your first Zephyr application onto a board.
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A guide to developing with the Yocto Project for i.MX application processors. Learn how to leverage the Yocto Project to get started working on NXP reference boards.
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