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Connects - Training Material

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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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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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Join us to learn how to develop PCBs of all kinds and the complexity to perform well in harsh environments.
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In this session you will learn how to design and what to expect from our free software tools.
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Systems are complex, and increasing complexity does not translate to product differentiation. Extracting the maximum networking performance, battery life or graphics capability requires knowledge of the underlying silicon and software. Developer resources are tight, and shifting the focus to product development above platform development maximizes return on investment. Freescale has deep enablement technology, comprehensive support and a vibrant ecosystem available to assist getting your product to market quickly. For automotive, consumer, industrial and networking applications, learn how NXP extends the broad technology and support available today with custom access to experts. A brief overview of the products and services available across NXP will be augmented with case studies and expert Q&A.
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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 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 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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This session covers NXP virtualization offering on Arm based platforms. The following will be covered: KVM; DPAA2 direct assignment; PCI direct assignment; VIRTIO I/O virtualization; DPDK/ODP enablement in Virtual Machine; VIRTIO IOMMU support for enhanced isolation in Virtual Machine; Linux Containers, Dockers; Libvirt; Performance analysis and optimization; Debugging support; Future plans; Universal CPE devices and SD-WAN forwarders and branch routers.
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Complexity is increasing abruptly in the IVI market, while TTM has decreased from 5 to 2-3 years over a few product generations. The entire ecosystem is moving from a close to an open system model, and from proprietary/close source to standard interfaces/open source components. NXP is committed to support you in this new reality, as well as providing help in leveraging the extensive BOM NXP typically has in IVI solutions. Through the IVI Platform, NXP offers a solid and complete base for fast product development, integrating productized and optimized BSP and middleware components, with out of the box security. Find out more during a one hour presentation, covering platform features, delivery mechanisms, roadmap and availability.
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This session will introduce the NXP mature and widely accepted solutions of RF products serve the DAS and small cell applications from 0.5W, 10W to 20W and 40W.
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Introducing our new radio middleware that will help accelerating customers time-to-market.
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This course provides a system analysis of High Voltage Electric Inverter systems. It is a good session for everyone who wants to know more about NXP's electrification solutions. It reviews the architecture and functional safety of electric vehicle powertrain. Focus is on MC33GD3100 overview, key features and design support.
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This class will provide an overview of NXP's broad and scalable MCU portfolio and give details on which product families are available for different markets and use cases. It will also give an overview of the unified tools, software and solutions that enable the portfolio.
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Signal integrity, EMI, RFI...They are all the result of how well you manage the Electromagnetic fields in your designs. EM fields live in spaces, not conductors. The material presented focuses on the basic physics of electromagnetic energy, presented in an entertaining and easy-to-understand format with plenty of diagrams. Attendees will discover how understanding the behavior of EM fields can help them to design PCBs that will be more robust and have better EMC performance. This is not rocket science, but an easy-to-understand application of PCB geometry.
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Bluetooth speakers and headsets, printers, cameras, projectors, set-top-boxes, TVs, Wi-Fi routers, fridges and washing machines, they all have one thing in common: Near-field-communication (NFC) which 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 identified and authenticated without any user interaction. And commissioning an IoT node into a wireless network has never been as easy as it is now with NFC.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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In recent years, automotive cybersecurity has become a top priority for OEMs as several well publicized attacks on production vehicles stirred up public and government concern over both security and safety of connected vehicle systems. In this talk we will: Review major milestones and headlines related to automotive cybersecurity for 2016; Compare and contrast security techniques used in traditional IT infrastructure versus automotive computing systems; Examine where these traditional techniques fall short for automotive applications.
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The material presented will be focused on the physics of electromagnetic energy basic principles, presented in easy to understand language with plenty of diagrams. Attendees will discover how understanding the behavior of EM fields can help to design PCBs that will be more robust and have better EMC performance. This is not rocket science, but an easy to understand application of PCB geometry.
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