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This lecture provides an overview of the software and hardware enablement available to accelerate customer time-to-market and reduce development risks for an In-Vehicle Infotainment (IVI) system. Namely an application processor from i.MX 8 family, Ethernet Switch and PHY, Software Defined Radio and Audio processing, Audio Class-D amplifier, power management, supported by Genivi and AGL compliant BSP and integrated drivers and middleware components for these devices. In a second part, we will present the NXP eCockpit Proof of Concept, which leverages i.MX 8QM HW performances and partitioning capabilities and allows to run two concurrent and independent HLOS and a Safety Critical application (RVC, Display, Audio) on i.MX 8QM.
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Overview of a platform solution that addresses the proliferation of Ethernet networks and enables new applications that will transform vehicles.
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Explores the fast-growing Automotive Gateway market, identifying key use cases and requirements, and how gateways will evolve over the next decade.
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During this session, we will discuss the new memories supported on the new i.MX8 processor family. For DRAM, this will include DDR4 and Low Power DDR4 (LPDDR4). For non-volatile memory this will include Octal SPI NOR (XccelaTM Flash) which offers up to 400MB/s as well as the latest eMMC 5.X devices that also support high speeds. These devices are offered with Commercial, Industrial or Automotive temperature and quality ratings. This year, we will provide additional information on LPDDR4X (X=lower power I/O) as well as eMMC 5.1 high performance features including command queueing, and several new Cache operations. This session will provide designers with the tools necessary to create state-of-the-art i.MX 8 systems.  
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Automotive An NXP DroneCode Platform for Developing Low-Cost Small Autonomous Vehicles and Leveraging High-Reliability Automotive Components  Body & Comfort: Exploring the Automotive General-Purpose MCU Portfolio  Component Selection—The Make-or-Break Milestone Towards Autonomous Vehicles 2018  Connectivity: Building Your Automotive Network with Time-Sensitive Networking (TSN) and Ethernet  Connectivity: CAN in Future Car Networks—Understanding the Different Trends and Solutions  Connectivity: NXP Car Access—Roadmap Towards Smart Access (NFC, BLE, UWB, SE)  Driver Replacement: AD/ADAS Overview  Driver Experience: i.MX 8/8X Multimedia—Graphics, Display Controller, Vision, Machine Learning  Driver Replacement: Introduction to NXP Automated Drive Kit  Driver Experience: IVI/eCockpit Platform on i.MX 8  Functional Safety & Security: Functional Safety Introduction  Functional Safety & Security: Next-Generation Functional Safety Architecture  Functional Safety & Security: NXP® Automotive Cybersecurity Program  i.MX 8/8X Overview  Micron® Technology: Micron’s Memory Solutions for the New i.MX 8 Microprocessor Family  Power Management Solutions for Automotive  Powertrain & Vehicle Dynamics: Electrification—HV EV Power Inverter System and GD3100 Review  Powertrain & Vehicle Dynamics: Electrification—MC3377x Battery Cell Controllers for High-Voltage Battery Management System  Powertrain & Vehicle Dynamics: NXP’s xEV Energy Management Solutions  Secure Networks & Gateways: OTA Updates—Requirements for a Full System Solution  Secure Networks & Gateways: The Rise and Evolution of Automotive Gateways  Secure Networks & Gateways: Vehicle Network Processing with the MPC5748G MCU + LS1043A Processor  Tools & Enablement: The Software Enablement of BlueBox v2.0: ADAS Enablement  Artificial Intelligence, Enabling Technologies, Security & Solutions A Vision for Machine Learning (ML) and Artificial Intelligence (AI) in Low-cost Edge-computing Nodes  Boot in Less Than One Second? Learn How  Computing at the Edge - When, Why and How  EdgeScale: A Solution for Secure Edge Device and Application Management from the Cloud  Hands-On Workshop: Achieving End-to-End Security Starting with Secure Boot  i.MX RT Secure Boot Lab Guide.pdf Hands-On Workshop: Advanced Debugging with MCUXpresso IDE  Hands-On Workshop: Crossover MCU Memory Expansion Advantage: Designing with Execute in Place Serial Flash   i.MX RT Execute in Place Serial Flash Lab Guide.pdf  Hands-On Workshop: Learn to Get Up and Running Fast with MCUXpresso Software and Tools  AMF-ENT-T3024 - Lab 2 - Getting Started with MCUXpresso.pdf NFC Integration in Real-time and Non-Real-time Operating Systems–How to Choose the Right NFC Product  Sensor Toolbox: Complete Ecosystem for Product Development with Sensors  Toradex®: Asymmetric Heterogeneous Architecture for Real-Time and Low-Power Performance  Using OpenWRT, Yocto, Ubuntu or Your Own Custom Linux® Distribution? Learn How NXP is Making it Easy to Leverage a Multi-Distribution Approach to Software Development  Zephyr™ OS Overview  Smart Machinery & Industrial Automation A71CH Plug and Trust Solution for IoT Security  NFC in Industrial and Healthcare - More Use Cases Than You Imagine  Open Industrial Linux® (OpenIL)—Secure, Robust, Real-Time for Industrial and Automation Applications  Time Sensitive Networking (TSN) and Precision Time Protocol (PTP): Challenges, Opportunities and Solutions  Smart Networks & Computing Last Mile Connectivity Using 5G Fixed Wireless—Learn About the Market and Solutions  Understanding the Alphabet Soup of Networking Virtualization from DPDK to SD-WAN to VIRTIO  Smarter World Solutions & Multimode Connectivity Amazon Alexa Voice Service based on i.MX Applications Processors   Hands-On Workshop: Get Started with LPC54018 Based IoT Module to Develop a Cloud-Connected End Node  AMF-SMC-T3148 - AWS Shadow - Labs 1-2  Hands-On Workshop: i.MX 8M Experience—Next Generation of Applications Processors for High Performance, Smart Design and Advanced Multimedia  Hands-On Workshop: i.MX RT Overview and Training  How to Use Android® Things to Build Successful IoT Devices  Identification and Authentication of Consumables and Accessories  i.MX 8M - Next-Generation of Applications Processors for High Performance, Smart Design and Advanced Multimedia  Introduction of NXP Wireless Charging  MiGLO®  NFC in Consumer Electronics and Home Appliances - 2018  NTAG® SmartSensor  NXP BLE Low-Power Solutions for Consumer, Medical, Industrial IoT and Automotive Markets  NXP Connectivity Solutions for Smart Home, Building and Lighting  NXP Wireless Charging Solution Design—Deep Dive  Rapid IoT Prototyping Kit Smart Amp Software  Type-C End-to-End Solution  Using Sensors for Low-Power IoT Applications: Tips and Tricks  Emerging Trends & Innovation NXP MCU Portfolio Based on Arm® Cortex®-M Cores  Secure Tamper-Resistant Authentication 
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Future networks will still use CAN to a huge extend - but the variety of trends is also significantly increasing. This session shows key values, technical background and differentiators of the different CAN trends and the NXP implementation.
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This hands-on session will dive deep into the advanced debugging capabilities of the MCUXpresso IDE, including trace, profiling, coverage, watch points and more.
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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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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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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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Smart Amp software enhancement integrated with smart amplifier to provide optimal end-to-end solution such as voice experience, audio capture and speech assist for mobile and IoT applications.
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Extend your logistics track and trace with condition insights. NTAG SmartSensor enables sensing and logging with NFC readout. NTAG SmartSensor enables your IoT application for smart logistics, smart healthcare, drug delivery and smart packaging.
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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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Understand the i.MX 8M family technical capabilities such as high-definition audio/video, 3D graphics and performance via a hands-on session. Attendees will be performing a series of labs using Linux® and Android® with the i.MX 8M Quad evaluation kit.
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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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Fixed Wireless Access (FWA) emerged as an attractive option for high-speed broadband connectivity in urban/suburban areas as a solution to the ‘last mile problem’. 60 GHz wireless mesh systems are generating commercial interest due to the attractive cost and deployment logistics of unlicensed, high-bandwidth spectrum relative to optical fiber networks. NXP’s Layerscape products are designed into FWA systems conceived to exploit the many opportunities of wireless mesh networks. Learn how NXP's 64-bit Arm® platforms drive the next generation of FWA success.
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Security is critical to the growing market for IoT-enabled devices: There were already more than 5 billion connected devices in the world last year, and use is expected to grow to 12 billion by 2020. To support this rapid expansion, prominent internet players, including Alibaba, AWS, Google, IBM and Microsoft are establishing their own cloud services and industrial suppliers are moving quickly to broaden their private cloud offerings. At NXP, we believe strong security doesn't have to be hard to work with. Our "Plug & Trust" approach simplifies the implementation of strong security mechanisms in today's IoT devices. NXP's latest A71CH provides just this level of Plug & Trust IoT Security and delivers proven, chip-to-cloud security right out of the box, enabling every customer to secure IoT devices and safely connect to IoT clouds and services without writing security codes or exposing keys.
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Secure designs begin with a security model consisting of policies, an understanding of the threat landscape and the methods used to enforce physical and logical security. To protect firmware execution given today’s threat landscape, there must be a policy to only allow execution of authenticated firmware. The methods used to enforce this policy rely on MCU security technology to create a protected boot flow. The boot firmware can contain public key cryptography to authenticate application code. In addition to these components integrated in the end device, there are tools and steps that must be taken in the manufacturing environment. Join this session to explore the design and implementation of a secure boot by making use of the Arm® mbed TLS open source software and protect against firmware attacks. This class will use the recently launched K32W (K3S) for the hands-on portion.  
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