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This class will explain several software solutions offered for the i.MX 8. SafeAssure software allows for a system partitioning that takes full advantage of the ability of some of the safety features of the i.MX 8. Fast Path software allows to route/bridge data between 2 network interfaces in order to maximize data routing performance with minimum CPU load requirements to the main processor. Trusted Environment allows for fully leveraging the Arm® Trustzone capability.
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i.MX 8 product family introduces advanced security subsystem providing state-of-the-art safety of sensitive information and secure software execution. Hardware architecture has evolved over the years to adapt to the extra sense of security required these days and how it is utilized to protect chip secrets. This session will involve going through the security subsystem and overview of the underlying concepts. Both hardware and software aspects of security implementation will be discussed.
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Learn about the DSP hardware and software solution for audio processing in the i.MX 8.
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Start your i.MX 8 project off right!  This class will go through what is required for i.MX 8 hardware design and DRAM initialization. We will also discuss methods of achieving first pass success, even with complicated power routing and high-speed signaling.
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A guide to developing with the Yocto Project for i.MX application processors. Learn how to leverage the Yocto Project to get started working on NXP reference boards.
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With the push for EV and HEV vehicles and the push for cordless connections in everyday products, there is a growing need for battery cell controllers and battery management systems. In this class, we will discuss the automotive battery management system trends and requirements and we'll go through typical battery management applications. We will examine NXP’s product portfolio and solutions and highlight key product and system features. Finally, we will explore NXP’s tools that make developing battery management systems with NXP.
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This session will take a concentrated look at NXP's Automotive NFC chipset solutions supporting an evolving market where smart phones and wearables used for interacting with the vehicle. From authentication for smart phone car entry to car start to Bluetooth pairing, NFC can enable intuitive functionality encompassing the vehicle.
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Introduction to RCI for NXP's RF products, Lizard, MantraCS, MantraF. System integration and development made easy using the RCI firmware together with the Configuration Development Kit (CDK).
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Evolution of Automotive car architecture with more hybridization and ADAS power computing require evolution of power management to fit with application and environment changes. During this session you will have an overview of automotive market dynamics and a deep dive of latest safety power management solutions to support applications up to ASIL D (FS66, FS84, FS85).
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Car electrification require scalable power computing and functional safety platforms. To address such platform requirements NXP is building backbone solutions based on MCU, SBC and SW. Deep dive attach strategy with S32 to support diversity of car electrification market will be presented, introducing the latest generation of functional safety Power Management solutions (FSBCs).
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Overview of Safety and Power Management portfolio of products focusing on system solutions for the target markets.
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Product training of GD3100 IGBT GDIC with integrated isolation for high voltage and high current electric vehicle and Industrial invertors.
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Time-sensitive automotive Ethernet network can increase the precision, reliability, robustness and network security of in-vehicle network and enhance the way toward autonomous driving. The NXP SJA1105x family is one of first TSN-capable automotive Ethernet switches. It can support: IEEE® 802.1Qbv time-aware shaping and the IEEE 802.1Qci per-stream policing. During the presentation, the use cases of core TSN specifications will be discussed.
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Automotive Ethernet PHYs enable future driving scenarios by providing the necessary physical throughput power. While software brings added value for security, diagnosis, energy efficiency and safety.
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Provide an overview of the protocol and implementation of CAN FD in system architectures, including the use of partial networking in relation to the deployment of CAN FD.
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This session will give a introduction to the S32 radar processor covering trends and key features.
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Learn about capabilities, contents of the kit and how to engage with third party supply kit, AutonomouStuff. Understand the target applications and the value proposition. Target Audience: Customers who are looking for rapid prototyping environment with a path to embedded automotive silicon for Level 2/3 autonomous driving systems.
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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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This session will provide an introduction to automotive cybersecurity. Amongst others, 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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Show the importance of OTA updates and the requirements for a total system solution for FOTA.
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