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Silicon Valley 2019 - Automotive Presentation Files

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Silicon Valley 2019 - Industrial & IoT, Mobile, & Communication Infrastructure Presentation Files

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Secure Connected & Automated Vehicles

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ソート順:
NXP leads in the ability to integrate the sensing transducers with the algorithmic computations and the wireless communication channels for TPMS solutions. Leading car OEMs, Tier1s and even tire manufacturers have started to consider and use BLE instead of the standard UHF-band RF interface in TPMS applications. Join this training session to learn about the changing dynamics in TPMS wireless connectivity and the relative merits driving these changes. Further learn about NXPs steps to support these changes with the introduction of a BLE enabled TPMS demo.
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Hands-on: Quick introduction into non-AUTOSAR software solutions based on NXP S32 SDK. How to create an automotive application featuring secure CAN communication. Integration with S32 Design Studio IDE, tips and tricks.
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In this presentation, we are going to highlight the use of Model-Based Design processes for Vehicle Dynamics and Body Controller that involves electric drives which are typically used by OEM and Tiers 1 for product development. The primary benefit of Model-Based Design is the ability to cover traceability between design artifacts produced as a part of the design process. A traceability path from requirement management tool to software model, code, and finally tests in the hardware-in-the-loop environment is demonstrated. A typical PMSM Field Oriented Control application will be used to demonstrate all the steps shown above using NXP S32K Motor Kit.
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A key challenge to the deployment of Edge compute IoT is management and security of 1000s to millions of Edge compute nodes. EdgeScale simplifies this by providing a cloud-based management framework leveraging the hardware security features of Layerscape processors. Learn how you can use EdgeScale to manage a heterogenious set of Edge compute nodes, and use it with your choice of Edge compute framework - AWS Greengrass, Azure IoT Edge and others.
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The GD3100 is a  programmable high-voltage gate driver with advanced functional safety (FuSa), control, and protection features, developed for automotive and eMobility applications. This presentation will give a brief review of HV power devices such as Si IGBTs and WBG MOSFETs. Then the talk will focus on key features of the GD3100 that are important for implementation of high traction inverters, DC/DC converters, or on-board chargers (OBCs) using Si IGBTs or SiC MOSFETs.
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What is new, value proposition against competition, current and future plans for collateral, tools & reference designs; SPIDrive Hbridge, Q100 eSwitch.
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People today face way too many options, especially when it comes to so called smart devices which can easily contain 50+ functional settings. With most people only using a few preferred settings, this session shows product managers, UI designers, and engineers how to leverage NXP’s out of the box Face Rec based Friction Free Interface production grade platform to rapidly add a truly seamless interface to devices such as appliances, home comfort systems, and alarm/safety/security panels, as well as many types of industrial equipment. By recognizing who you are and what you prefer based on past usage, today’s smart machines can tailor their interface to meet end consumer needs person by person (including controlling access) significantly improving customer satisfaction. Wi-Fi and/or connection to the cloud is NOT required to move your interface design to the next level!
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Introduction to A100x secure authenticators including new A1007, as part of overall training authentication protocols, what to look for in security IC and potential use cases.
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The session includes the overview of S32K Automotive MCU product family for general purpose automotive applications, as well as industrial applications which require automotive quality and reliability. It will cover the introduction of S32K solutions – touch sense, motor control, secured car access, CAN-FD communication, etc.
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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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I2C master and slave devices are used in many system for various reasons. NXP offers the widest portfolio of I2C devices. This class will introduce the I2C-Bus interface, address some common pitfalls when designing with I2C-Bus, and present solutions to these challenges.
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Introduction on RCI (Remote Control Interface) for our 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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DDR tools overview. Part 1, DDR test tool features and capabilities. Part 2, DDR configuration tool features and capabilities, benefits of each for the end users.
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The session will provide an overview of the AUTOSAR software for NXP Ethernet products. It will describe the software products, starting from the AUTOSAR standard requirements, but also the extensions implemented to leverage the hardware capabilities of our products. It will also point out the advantages of using the AUTOSAR Switch and Transceiver drivers, from integration with NXP or 3rd party microcontrollers to application use-case diversity and leveraging the software ecosystem and quality requirements set by the automotive industry standards.
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i.MX software IP inventory continues to grow. This session will provide an overview of the software available to you that will accelerate time-to-market and reduce project risk, namely: Audio Video Bridging (AVB), Trusted Execution Environment (TEE), Tessellation Run Length Encoding (TRLE), Android Auto / Apple Carplay, Miracast for Linux and HDCP2.x, AUTOSAR Microcontroller Abstraction Layer (MCAL) for i.MX, Fastboot/HAB, 360 SurroundView Monitoring and Rear View Camera (RVC).
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Introduction to the standard - with emphasis on how to apply it, cross BL.
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No other company has the breadth and diversity of embedded solutions for addressing the challenge of IoT Security. From secure element ICs to advanced multimedia and networking processors, NXP delivers the technology needed for securing the entire Lifecycle of the end or edge node. In addition, with Edgescale Cloud services software, devices can be maintained from deployment until decomissioning. Join this class for an overview of NXP's security solution.
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This hands-on workshop provides a detailed architecture description of Thread technology and wireless mesh networking. The main Thread concepts will be reviewed and analyzed thoroughly. The attendee will have a deep understanding of the main concepts and how these are mapped to the NXP software API. The session will close with hands-on training to enable the attendee to understand software usage and configuration, low-power features and security concepts.
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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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Learn about the key technical features of our general purpose microcontroller family integrating Arm® Cortex®-M4F or M0+ cores. This session will provide a general overview around scalability, low-power, security, safety, software and solution buildup to help accelerate our customer’s time to market on automotive and ultra-reliable applications.
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