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Technology Days - Training Material

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Learn how to use the LS1028A to quickly create industrial networks with TSN for deterministic, redundant communications.
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Get immersed in enriched user interfaces with audio, video, voice and vision. Sense how the i.MX 8 portfolio delivers performance, versatility and connectivity to applications as media streaming, voice assistance, edge computing, machine learning/vision and Industrial IoT.
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Discover how Kinetis V series MCUs and Kinetis Motor Suite reduce your design time with a simple to use interface and design methodology, increase your system performance and reduce your support costs with Active Disturbance Rejections Control (ADRC).
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i.MX RT "Crossover" Processor Overview  NXP Rapid IoT Demo  Solutions Around the Core
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This talk will review the driver, receiver, and common PCB characteristics and show how simulation with IBIS models are used to weigh the trade-offs for the DDR bus design. We will also review the high-speed signal channel and its characteristics and illustrate how the TX and RX circuits in general are used to offset signal losses, and discuss key characteristics of the channels that are needed to allow these TX and RX circuits to work effectively, such as minimizing return loss.
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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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Learn more about the innovative new industry standard USB Type-C connector offering seamless connectivity of data, video, power and security over a single connector. Usage spans multiple applications from computing and mobile to peripherals and accessories. You will learn about the compelling applications and NXP’s leadership in AC-DC, TC-PC PHY, high-speed switching signal integrity, authentication and power switches product portfolio offering differentiated end-to end Type-C solutions.
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The presenter gives a detailed introduction of the NXP BLE solutions for Automotive. This session includes the description of the latest standard defined by the BT-SIG, and a clear presentation of the NXP silicon roadmap. The speaker also walks the audience through the development tools required to successfully implement a BLE communication system, with a  specific attention given to applications such as car access and tire pressure monitoring. The attendees leave this session with a call for action that helps them select the right device and quickly move into their own development environment.
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Overview of an open battery management system reference design planned for PX4 enabled drones and Hovergames.com. Alternative use cases, unique features, and collaborative development challenges. Plans for battery health and open SW platform.
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Introducing the new KE1xZ 5V robust MCUs with Touch and CAN. This class will provide an overview of the new KE1xZ MCUs and give details on the highlighted features of TSI and CAN. A touch demo presentation will also help the attendees understand the TSI measurement and innovate new touch applications.
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Whether you are looking for an easy and cost-efficient parametrization solution or want to use a smartphone for ad-hoc diagnosis of a device - Near-field-communication (NFC) makes this possible now. Or you might want to communicate with a fully sealed, batteryless device? Learn in this session about many new use cases, in which NFC simplifies handling, saves cost or enables features which were not possible before in industrial or healthcare applications. With iPhones now also enabled for NFC reading there are more possibilities than you would have imagined!
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As memory interface data rates increase, so does the need for ensuring proper margins have been designed into the system’s usage of that interface. One way Micron has studied the system’s usage of the memory interface is through Timing & Signal Analysis (TSA). A TSA attaches physical hardware to the memory device to observe a subset of the memory interface as operated by the system. Another approach to memory interface is Virtual TSA (vTSA). This method uses the memory controller’s training algorithms to provide margin information without the use of physical test hardware. This method allows characterization of the entire memory interface. This session will compare and contrast the two different methods, and will ultimately demonstrate the value of integrating vTSA tools on the system platform. We intend to reference actual results from the latest i.MX 8 QXP board.
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Join this session to understand all the security features integrated in the recently launched LPC5500 MCU Family and learn how to implement these features to design a low-power system with robust security.
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Motion sensor overview and introduction of sensor related application and NXP reference design plus success story for industry IoT and medical market.
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Learn more about In-Vehicle networking, safety and power management as well as drivers and energy solutions from NXP.
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Overview of Kinetis new products, KE+, security with K8x & KL8x. 
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Learn more about NFC's co-inventor product proposal and use cases.
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EUF-DES-T1741 - Scalable Multicore QorIQ Layerscape Processors Based on 64-bit Software Environment for Enterprise, Home and Industrial Applications
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Discover NXP’s Layerscape multicore 64-bit ARM®-based solutions and learn how this scalable family leverages line-rate networking and production grade software to accelerate your time-to-market in industrial, networking and consumer applications.
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This training will take a user from “out of box” to a functioning IoT system including edge devices, gateway/border router, smart phone app and cloud connectivity, then run the system through its paces to highlight a subset of common IoT capabilities. The training will leverage the NXP Modular IoT Framework using a currently shipping, fully documented, Integrated Development Experience for the exercises. Southbound connectivity between gateway and the edge devices will be Thread and ZigBee®. Device commissioning will be via NFC and BLE. Northbound connectivity from gateway to cloud will be Wi-Fi. Cloud support will be via a major cloud provider. Note: Users will be able to use their own Android or iPhone with a recent OS version.
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