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This session will provide an introduction to automotive cybersecurity. We will outline: NXP's automotive security product portfolio; industry standards and best practices; and NXP's global security organization, cybersecurity design and business practices.
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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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Market and application trends in automotive radar, supporting NCAP and autonomous architectures.
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This course will provide an in-depth system analysis of High Voltage (HV) Electric We review how the MCU, GDIC and IGBTs function individually and as a system. We will discuss EV and HEV power systems and components for achieving a highly efficient and safe HV motor drive. Using system block diagrams and oscilloscope screen shots of NXP’s new HV IGBT GDIC, the GD3100, and Fuji GEN 7 IGBT modules as we will consider how to achieve smaller, more efficient and lower cost HV inverter designs. We will review SPI interface programmability that enables any IGBT to be tuned for maximum efficiency, thermal design considerations, layout considerations, power budget assessment, power up sequencing, managing short circuit faults, temperature monitoring and advanced features achieve system ASIL level D and ISO26262 certification.
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This session introduces the S32K148´s ENET module. The enablement/configuration of the different networking layers presented with a demo based on our SDK platform using lwIP stack.
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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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This session will focus on tire localization: Dual axis sensors enable rotation rate detection and determination of drivers / passenger side in seconds. NogaroE: Enhanced features added to a proven volume production TPMS sensor. Gen 4x4: Next-generation of ultra-low power TPMS sensors in smallest package features increased accuracy and processing power.
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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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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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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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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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In the last 10 years, Green Hills has observed carmaker and Tier 1 customers expand from the traditional segments of powertrain, airbags and braking ECUs into graphics-rich dashboards, open source operating sytems and the secure Connected Car. A leading requirement is ECU consolidation while keeping ASIL safety intact. This requires the run-time architecture to safety and securely run guest operating systems Linux or Android on the same single core (or across multiple cores as SMP) alongside safety or security-critical applications like instrument clusters, gateways, V2X and ADAS. Here, we'll take a closer look at the customer’s pain points and goals, and we’ll summarize various industry solutions, including the INTEGRITY Multivisor secure hypervisor.
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ARM® mbed™ OS is an open source embedded operating system designed specifically for simplifying the development of scalable Internet of Things (IoT) devices. It includes all of the features you need to develop a connected-product based on ARM Cortex®-M microcontrollers such as Kinetis and LPC MCUs.  In this hands on workshop you will get familiar with the features of mbed OS and learn how to develop and debug mbed OS applications with a traditional IDE.
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The number of ECUs in a car is increasing dramatically on a year by year basis. Modern cars are starting to introduce the concept of centralizing multiple domains (Infotainment, ADAS, etc.) in a single ECU and separate them using technologies like virtualization, multicore or multiple SOCs. Although separated, these entities need to communicate and implementing a software communication solution which is scalable, portable, open and easy to program is key to offering a complete software enablement to our customers. This session will present NXP software solution for communication within a domain and between domains controllers in an ECU.
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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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A hands-on session to show how to prepare and program device for CSEc security operations. Session also covers both bare metal and SDK approach to program CSEc module.
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In this session you will understand the role of the System Controller Unit in the i.MX 8 and how it interacts with the rest of your system. Some of its capabilities will be showcased in a live demonstration.
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Security has never been more critical than it is today. Learn how the QorIQ Trust Architecture can be leveraged to increase the security of your design. Different phases in a product's life cycle can expose different vulnerabilities for attackers to exploit. This session covers secure device life cycle management as a concept, while also providing specific examples of secure implementations using QorIQ Trust Architecture.
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Overview of the S32x next-generation safety architecture spanning ASIL B to ASIL D. What’s new and how we better enable the customer with a full set of safety collateral including MCU HW, SW and SBC HW.
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Show the importance of OTA updates and the requirements for a total system solution for FOTA.
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