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Connects - Training Material

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Join this session to understand the breakthrough security features integrated in the recently launched LPC5500 MCU Family. Along with Arm® TrustZone technology the LPC5500 SRAM PUF based key management makes security easy to use and easy to deploy. This session will start off by introducing the scope of securing a smart connected device. It will explain the need for addressing device life cycle in a scalable way that is easy to use and easy to deploy. Then it will detail the protected key management achievable when using LPC5500 with MCUXpresso Software & Tools.  
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This presentation will look at the lessons learned from vehicle hacks and introduce a whole vehicle multi-layered approach to automotive security. In 2015, automotive security was rarely far from the headlines of technical and public media, with a number of very public hacks of some major vehicle brands. The result was a renewed focus on vehicle security. There will be an introduction to the NXP portfolio of automotive products from microcontrollers, secure transceivers and secure elements and how they all fit together to offer a complete security solution for connected vehicles today and tomorrow.
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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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See how to use the Trust Architecture Features of the LS1012A to securely connect to a cloud service.
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Using our product demonstration and reference design, this class will teach you how to build your own cloud connected end node with our latest power-efficient LPC54018 flashless MCU. We will use Amazon Web Services (AWS).
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In-vehicle wireless charging solutions portfolio overview, automotive grade hardware and software offerings, technical description of charging deliver and control, foreign object detection, NFC and AUTOSAR integration, and special considerations for in-vehicle operation.
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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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Near Field Magnetic Induction (NFMI) technology, demonstrating a family of ultra-low-power, single-chip solutions enabling wireless audio streaming that are highest quality ear-to-ear communications for hearables and data communication.
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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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In this class, you will learn to use NXP’s FreeMASTER debug tool to aid in system development and debug. Although it is has many uses in various applications, we will demonstrate the features and use of FreeMASTER to simplify the development process with a motor control example based on our MagniV MC9S12ZVMRM microcontroller. Participants will see how useful and easy it is to use and configure so that system variables can be adjusted on the fly or watch system parameters real time.
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Come see how new types of low- or battery-powered and space-constrained applications are made possible by the latest innovations in communications processors. Applications include portable storage, IoT gateways and embedded control.
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This hands-on session introduces the MCUXpresso suite of tools (IDE, SDK, Config Tools) and shows users how to rapidly start development with thousands of Kinetis and LPC MCUs based on the ARM® Cortex®-M core. Using either Kinetis or LPC development hardware, attendees will build a custom SDK, configure pins and clocks settings, generate a project, import and debug an application.
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This session will introduce the concept of firmware Over The Air (OTA) updates in the automotive market place. It will show why this feature will bring huge cost saving to OEMs and will be a must have feature in future car generations. It will discuss the challenges faced in in implementing an end to end solution and show how NXP is the leader in providing solutions to make it a reality.
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Bluetooth speakers and headsets, printers, cameras, projectors, set-top-boxes, TVs, Wi-Fi routers and a variety of home appliances like fridges, washing machines, air purifiers, coffee machines, blenders all have one thing in common: Near Field Communication (NFC) allows new features and easier handling. Just bringing two NFC-enabled devices close together is all it takes to create a connection. Accessories and consumables can be authenticated and configured without any user interaction, and without power supply. And commissioning an IOT node into a wireless network has never been as easy as it is now with NFC. We will share the latest status of NFC support in iOS and present the brand new NFC Tandem module.
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This session will present the advantages of H-bridge based window lifters against relay based ones, new functionalities that can be implemented and how NXP MagniV S12ZVMB64 microcontroller provides a well-integrated solution for a window lifter end node. With integrated functionalities like: internal regulator, GDU, PMF, ADC, current sensing, input capture and LIN physical layer.
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This session introduces the MCUXpresso suite of tools (IDE, SDK, Config Tools) and shows users how to rapidly start development with thousands of Kinetis and LPC MCUs. Using either Kinetis, LPC or i.MX RT development hardware, attendees will watch how to build a custom SDK, configure pins and clocks settings, generate a project, import and debug an application, as well as the advanced debugging capabilities of the MCUXpresso IDE, including trace, profiling, coverage, watch points and more.
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Concept of SD-WAN, how to use SDWAN to allocate and manage network bandwidth on-demand and use cases.
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This session will go into the detail of the software enablement around the BlueBox v2.0, aka “Blue Box Min”. From an engineering perspective, topics will include: The SoCs in the platform and it’s layout; Booting the individual SoCs; Linux options between and inter-communication between them; Discussion of middleware options (including ROS versions, Polysync and others); How ADAS vision perception is accomplished with Neusoft ADAS perception; Combined to achieve level 2/3 ADAS with AutonomouStuff; Extra topics: OpenCV, OpenSSL security between subsystems and more. Please expect a non-marketing lecture explaining the internals of this enablement.
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You innovate to make the vehicle autonomous & the most complex node in the Internet of Things. Increasingly functionality from consumer components is needed in your solutions. NXP, the leader in Automotive and high-end compute in Networking, highlights 66 critical differences that may generically exist between automotive and consumer components. Identified by a ZVEI industry workgroup (German Association of Electronics Industry) they impact reliability, quality and lifetime of vehicles. Examples demonstrate how NXP’s capabilities across all product segments and performance ranges reduce your hidden risks providing an excellent starting point towards your autonomous vehicle.
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The session will introduce an upcoming xEV traction motor power inverter platform system-play solution featuring a new MCU, new IGBT gate driver, and new safe SBC bound together with system enablement software and ASIL-D compliant safety support. A fully functional traction motor reference design being designed by partner Vepco will also be introduced based on a Power IGBT Module from Fuji Electric. The session will describe the platform’s components, software structure, value proposition, enablement support and go-to-market approach to help enhance understanding of the application and NXP solution as well as how to sell the system platform.
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