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Silicon Valley 2019 - Automotive Presentation Files

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

Automotive

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Automotive

Artificial Intelligence, Enabling Technologies, Security & Solutions

Smart Machinery & Industrial Automation

Multimedia Experience

Smart Networks & Computing

Smarter World Solutions & Multimode Connectivity

Emerging Trends & Innovation

Secure Connected & Automated Vehicles

Smart Buildings & Consumer Goods

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Smart Machinery & Industrial Automation

Enabling Design, Technologies & Solutions

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Secure Connected & Automated Vehicles

Secure Connected & Automated Vehicles

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ソート順:
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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The automotive industry is rapidly evolving and the car is being transformed from a simple mode of transport to a personalized mobile information hub. All these new electronic functions bring great benefits to the driver, increasing comfort, convenience, safety and efficiency. But these features come with new risks, too. Modern vehicles feature wireless interfaces connect the in-vehicle systems of these ‘Connected Cars’ to external networks, which form entry points for hackers. This session will describe a proposal for a layered automotive security architecture providing a defense-in-depth approach to securing a vehicle including secure external interfaces, secure domain isolation, secure internal communication and secure software execution. In addition, the session will describe how all these security layers can be supported through the full vehicle life cycle of design, build, use and scrap.
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Covers the driving of the Buck / Boost LED drivers and Matrix IC using config registers and external components for optimized BOM and performance.
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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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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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This session will focus on the memory choices for several of the more popular i.MX 6 and i.MX 7 series as well as NXP’s newest and most powerful microprocessor, the i.MX 8 series. Most processors can support different types of volatile (DRAM) and non-volatile (Flash) memories. For example, the i.MX 7 can support low power DRAM (LPDDR), LPDDR2 and LPDDR3 as well as the standard DDR3 memory. For flash memories, the i.MX 7 supports parallel NOR, serial NOR or NAND Flash. Each of these memory choices has technical advantages and disadvantages as well as the overall market acceptance and expected longevity. The session will also discuss two new high performance memory technologies that the i.MX 8 plans to support, LPDDR4 and XTRMFlash. This session will allow you, the designer to make an informed decision when it comes to selecting memory for your design.
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Overview of S32K, MagniV and other GPIS products.
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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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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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Wi-Fi 6 is the latest standard in WLAN technology also known as 802.11ax. This enables almost four times faster speed over the previous technology 802.11ac. NXP has been developing front end IC to support this upcoming technology and have won the reference design with a leading SoC vendor. In this course, participants will learn the key features of Wi-Fi 6 and how NXP FEIC will solve those challenges to deliver a cutting edge solution.
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The Pins Tool makes configuring, muxing and routing of pins very easy and fast. It provides real-time feedback of conflicts and provides an intuitive graphical interface with several views. The tool generates device tree and sources files which can be directly integrated into C/C++ applications. This training will provide explanation and demonstration of getting started on a new project with i.MX applications processors.
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You innovate to make the vehicle autonomous & the most complex node in the Internet of Things. Increasingly functionality from consumer components is needed in your solutions. NXP, the leader in Automotive and high-end compute in Networking, highlights 66 critical differences that may generically exist between automotive and consumer components. Identified by a ZVEI industry workgroup (German Association of Electronics Industry) they impact reliability, quality and lifetime of vehicles. Examples demonstrate how NXP’s capabilities across all product segments and performance ranges reduce your hidden risks providing an excellent starting point towards your autonomous vehicle.
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Every Linux distribution provides features useful in product development - each SoC provides features necessary to a product's success. If you can't take advantage of the distribution of your choice or the SoC of your choice - product development is hampered or stopped altogether. NXP provides technology easing the adoption of SoC specific components into the distribution of your choice. Learn more about this technology, and practical tips and tricks on how to build and use selected components from LSDK at the component isolated level. Topics include building and deploying PPA and boot loaders, building and booting the Linux kernel, and building and deploying select user space components. Emphasis is on native building because it's easier. This will be a two hour session to leave time for Q&A.
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Writing automotive software to process signal coming from radar frontends is not an easy job. NXP’s radarSDK helps removing complexity by providing a complete API to access hardware engines inside the SoC together with a library consisting of optimized signal processing kernels that execute on the SPT accelerator. This session introduces the audience into the programming mode of radarSDK.
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This session will cover serial reprogramming capability (download, execute, etc.). Show the boot process from the ARM® Cortex®-M4 core including controlling A53 boot. Procedure for building and running baremetal code on Cortex-M4 and A53 using a debugger. Will discuss and demonstrate runtime communication between A53 and Cortex-M4 cores - with a discussion of options and examples.
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Today, wireless charging is not only used for mobile devices but also expanding to many industrial applications. This session will provide the in-depth technical detail and guidance of the design of wireless charging transmitter and receiver. Also a review of NFC/RFID cards protection that cover both low-power and medium-power applications.
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Sensors are key to differentiate your products in the market and add context awareness, tamper detection, a robust user interface and intelligent wake-up. This class will step through all the leading applications in the IoT and IMM markets and provide a demonstration of the Sensor Toolbox tools for your product.
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Introduction to the MCU Alexa Voice solution describing the features, architecture, and presenting the cost and ease of use benefits. We will be also showing the Out-of-Box Experience of on-boarding Alexa using Wi-Fi as well as interacting with Alexa by using a cost effective far-field Implementation.  
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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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