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Technology Days - Training Material

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Smart Retail is based on the idea that technological solutions convert a conventional physical store into an interactive point of sale, including logistics as much as increased customer interaction. Join this session to learn about the use of RFID-NFC for smarter products, smarter logistics and it's ability to enable new retail concepts such as unmanned stores.  
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Automotive and Industrial Battery Management Systems solutions from low to high voltage applications covering key components such as safety battery cell controller, power management, and MCUs.
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Evolution of Automotive car architecture with more hybridization and ADAS power computing require evolution of power management to fit with application and environment changes. During this session you will have an overview of automotive market dynamics and a deep dive of latest safety power management solutions to support applications up to ASIL D (FS66, FS84, FS85).
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This session will review the portfolio and trends for mobility and retail products as well as dive into NXP's new products around electronic ticketing.
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Provide an overview of the protocol and implementation of CAN FD in system architectures, including the use of partial networking in relation to the deployment of CAN FD.
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Join this session to get a glimpse of where you will see i.MX 8/8X in the near future and why graphics, ML, AI, video, image processing, vision, connectivity, audio and voice functions make the i.MX 8 series ideal for Automotive and Industrial applications. Learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of performance scaling with pin-compatible options and the highest level of software reuse. In addition, learn more about the upcoming i.MX 8DualMax product line to help customers meet additional cost performance scaling across the i.MX 8 family.
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This class will teach you how to spin a BLDC, PMSM or ACIM motor with i.MX RT. You do not need prior motor control experience.
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2018 KMS Custom Hardware LAB Guide 1
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Automotive An Introduction to S32 Design Studio for Vision IDE and S32 Debugger  An NXP DroneCode Platform for Developing Low-Cost Small Autonomous Vehicles and Leveraging High-Reliability Automotive Components Attach PMIC Offerings for NXP's Next-Generation Multi-Media Processors   Automotive—Safety Power Management Solutions for Car Electrification and ADAS  Automotive Ethernet PHY + Software  Automotive NFC Solutions  AUTOSAR MCAL for i.MX 8  Battery Management Systems Solution for Car Electrification  Beginner Session on BLE  Bluetooth® LE Advanced Session on Localization CAN FD and Partial Networking  CAN in Future Networks Understanding The Different Trends and Solutions  Car Audio Goes Class-D—BAP3 and NXP Audio Amplifiers  Deep Dive: Yocto Project™ Tools + MEK  Effective PCB Design: Techniques to Improve Performance  Electrification—Functional Safety Backbone Solutions to Attach with S32  Electrification—HV EV Power Inverter System Utilizing the GD3100  Extended Resource Domain Controller xRDC  Getting Started with AUTOSAR MCAL Hands-On Workshop: Developing with NXP's Automotive Smart RF Remote Control Interface (RCI)  Hands-On Workshop: FreeMASTER Quickstart – Application Development and Debug Made Easy Hands-On Workshop: Getting Started with MagniV® Hands-On Workshop: Getting Started with S32K Hands-On Workshop: Using the New Low-Cost S32V SOM Development Platform for Vision/ADAS Processing  Hands-On Workshop: Using the New Low-Cost S32V SOM Development Platform for Vision/ADAS Processing_Lab.zip  Hands-On Workshop: Working with Automotive NFC High-Performance Networking Processors for Automotive Applications How to Use GreenBox Platform for Powertrain and VDS Applications i.MX 8 Audio and Tensilica® HiFi 4 Overview  i.MX 8 DRAM Introduction and Tools Overview Plus Hardware Design  i.MX 8 Fast-Packet Routing Software  i.MX 8 MCUs with SafeAssure®-Certified Features—Camera, Video, Audio, Trusted Environment  i.MX 8 Product Overview  i.MX RT Family  i.MX 8 Security Overview (SECO, HAB, BOOT Flow, ATF, xRDC, CST)  i.MX 8 System Controller Unit and System Controller Firmware Overview  i.MX 8 Universal Update Utility (UUU) Tools and Pins Tool  In-Vehicle Wireless Charging Design  Interfacing Solutions – Designing with NXP Analog Switches, High-Speed Switches, Voltage Translators and GPIO Expanders  Introduction: Yocto Project™ Tools + MEK  Introduction to Ethernet-capable Processors for Automotive  Introduction to NXP Automated Drive Kit  IVI/eCockpit Platform on i.MX 8  Low-Power Modes MPC5xxx and Beyond  MCU Technology Topic: Hands-On Workshop: Writing CSEc Security Software on S32K MCU  Micron® Technology: Micron’s Memory Solutions for the New i.MX 8 Microprocessor Family  Model-Based Design Tools for Vision and Radar Next-Generation Functional Safety Architecture  NXP® Automotive Cybersecurity Program  OTA Updates—Requirements for a Full System Solution  Power Distribution Made Easy: Case Studies  S32 Automotive Platform: Performance for Advanced Control Systems  S32 Radar Processor, Product Revolution Scalable and Safe Power Management Solutions for Automotive Market  Secure CAN Communication—The System Impact by Software-Based Approaches and a Simple Hardware-Based Solution  The Introduction of NXP Wireless Charging  The Rise and Evolution of Automotive Gateways  Time Sensitive Networking (TSN)—Enable a Predictable, Reliable and Robust Ethernet Network  Vehicle Network Processing with the MPC5748G MCU + LS1043A Processor - Detroit xEV HV Traction Motor Power Inverter Platform
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Overview of the extended resource domain controller of the S32x devices.
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OpenIL is an open source software distribution for industrial and automation market.  OpenIL provides industrial-grade real time, security and network determinism. OpenIL is an ideal Linux distribution for PLC, HMI, industrial control and robotics. In this session, an overview of OpenIL is conducted including Xenomai, baremetal solution, TEE, TSN, Industrial network with OPCUA and EtherCAT and how they run on Layerscape.
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This session will give an overview of a system safety concept for a high voltage traction inverter of Battery Electric Vehicle. Performance and functional safety requirements mean that we have to be able to monitor the safety aspects of each of the components within the powertrain. Using a concept to deliver a complete package with risk assessment, safety goal definitions and a functional safety concept as well as the technical safety architecture of a traction motor inverter, you will learn how to derive functional safety requirements to implement in your next designs.
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Edge computing puts cloud-computing software infrastructure on embedded-class processing platforms to reduce latency and uplink bandwidth consumption. Ranging from 1-core to 16-core devices, integrating important I/O features and integrating a hardware root of trust, the Layerscape family is ideal for edge-computing platforms. Complementary software like EdgeScale increases these platforms ease of use and accelerates customers' time to market. This session provides an overview of running Edge compute applications on Layerscape family of processors. It covers the concept of Edge computing and why it is needed, and goes on to elaborate the various use-cases where it can be used. It explains how customers can use the Layerscape SDK to run container based Edge compute applications, and leverage popular Edge Compute frameworks from AWS, Azure, Alibaba amongst others.
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A key challenge to the deployment of Edge compute IoT is management and security of 1000s to millions of Edge compute nodes and the software that is running on them. NXP’s EdgeScale technology simplifies this by providing a cloud-based management framework leveraging the hardware security features of NXP Layerscape and i.MX processors. This instructor-led session will demonstrate how to install AWS Greengrass and Azure IoT Edge software on NXP processors using the NXP EdgeScale cloud deployment service, integrate hardware based security and deploy a simple application that collects data, processes it locally and sends updates to the cloud. This session will provide greater understanding of edge computing and cloud computing concepts and technologies.
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Join this session to learn how to take advantage of the innovative features of LPC84x MCU family, the first of three LPC800 releases planned for 2017. Through product feature training and demonstrations, we will show how these low-power, ARM® Cortex®-M0+ based MCUs offer 8-bit simplicity for today’s entry-level 32-bit microcontroller market. We expect that you will leave this session with the right training and evaluation boards to get started immediately in your own embedded development.
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Extending the scalable range of the i.MX product line, the i.MX 8 and 8X families are comprised of common subsystems establishing an unmatched range of cost-performance scaling with pin-compatible options and the highest level of software reuse. Built with a high-level integration to support graphics, video, image processing, vision, audio and voice functions, the i.MX 8 series transforms your everyday interactions and is ideal for Automotive and Industrial applications. Learn about the next generation i.MX 8 and i.MX 8X applications processors for automotive and industrial automation / control.
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Time-Sensitive Networking (TSN) makes deterministic Ethernet possible. TSN provides evolution for industrial real-time networks and is a set of IEEE® 802 Ethernet sub-standards defined by the IEEE TSN task group. In this session, learn about the key TSN standards and how they work together. Understand more about NXP solutions for both TSN endpoint and TSN switch with abundant software support based on Arm®v8 platforms.
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Artificial intelligence and machine learning (AI/ML) are revolutionizing the industrial world. For maximal impact, AI/ML must be done close to where data is generated and the output of analysis used. It's an ideal workload for edge computing and complements NXP’s EdgeScale cloud-based device-management platform. Layerscape processors are well suited to hosting AI/ML workloads. Software from NXP and third parties helps enable developers to create industrial applications using AI/ML technology. These applications can be distributed, Layerscape-based edge nodes with endpoints performing multiple tasks including: addressing condition monitoring or first-level classification; running popular edge frameworks to deliver cloud-like services on premises, aggregating data from multiple endpoints or performing additional analysis; running cloud-based software analyzing data for long-term trends.
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This presentation will provide an introduction to the impressive lineup of i.MX 8M family of products. The session will cover the product features, media, graphics and machine learning use cases, enablement and ecosystem. We will follow the presentation with a live demonstration based on the i.MX 8M Plus applications processor. Presenters: Marcel Baessler, Arrow Franck Roux, Products and Solutions Marketing Manager, NXP
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