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ディスカッション

ソート順:
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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Introduction of innovative BMS system concepts based on wireless communication. Overview of system configuration and communication strategy. Validation results from lab work with OEM partner.
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Hands-on getting started with S32K. Participants will work with bare metal application code, working with an S32K144 development kit and S32 Design Studio. Short presentations followed by hands-on labs. Learn coding secrets for S32K and Arm® Cortex-M!
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As IC geometries continue to shrink and switching speeds increase, designing electromagnetic systems and printed circuit boards to meet the required signal integrity and EMC specifications has become even more challenging. A new design methodology is required. Specifically, the utilization of an electromagnetic physics-based design methodology to control the field energy in your design will be discussed. This training module will walk through the development process and provide you with guidelines for building successful, cost effective printed circuit boards.
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Update on trends in the infotainment market as well as latest technology from NXP.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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Introducing our new radio middleware that will help accelerating customers time-to-market.
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Today’s designers are facing ever more challenges to protect their intellectual property and products from counterfeits or unauthorized access. To help understanding the secured solutions offered by NXP, Future’s system design center have designed a Secure Access Demo board to showcase the capabilities of the LPC43S57 a microcontroller with integrated security and the A700X tamper resistant and secure MCU solution. This class will be an overview of the architecture of a secured system and introduction to the secured elements from NXP.
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Functional safety awareness level one. Introduction to functional safety, what it is, why and how it is implemented. This overview session provides the building blocks for the other deep dive technical sessions within the track and ensures that all participates understand the language and context used within functional safety discussions. It will also introduce how the NXP process with BCAM7 fits with ISO 26262 and the new safety school that will be launched in 2018.
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How to build an automotive application using the S32 SDK, integration with design studio, tips & tricks, FreeRTOS, communication stacks; focus on S32K144 and S32K148.
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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 session is intended for engineers either getting started or are interested in seeing how to use AUTOSAR MCAL to generate and implement code. “Hello world” level examples are presented using the Tresos configuration tool to generate code which is then used in application code. Examples are based on NXP’s MCAL application provided with the released product.
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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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This session provides an introduction to the market and technology trends behind Advanced Driver Assistance Systems (ADAS) and Autonomous Driving and introduces some of the solutions that NXP provides to enable the car of tomorrow to sense, think and act.
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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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Learn about vision processing and technical capabilities of S32V’s dual-APEX acceleration engines, multi-core A53 processors, on-chip image signal processor (ISP) and Vivante GC3000 GPU which differentiates S32V from other ARM® based processors that can’t meet the same performance/power envelope. Attendees will get hands-on experience using the SBC-S32V234 SOM hardware and free Vision SDK to demonstrate software for Lane Departure Warning (LDW), Feature Detection using Lukas-Kanade and Pedestrian Detection applications.
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The low-power i.MX portfolio's objective is to serve as the entry level for application processors while optimizing on performance and power consumption. Join this session to learn about the latest low-power i.MX products, key differentiators and target markets/applications.
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The continued growth of processing capabilities and new features introduced with the ARM®v8 based System-on-Chip has made virtualization a realistic option for embedded system developers. With virtualization, system architects can design solutions that reduce the size, weight, power, and cost of legacy systems by consolidating disparate software functions onto a single chip, even if those different software functions require different operating systems or otherwise incompatible software stacks. Virtualization allows architects to partition and isolate software components with different safety, security, or licensing requirements. The virtual machine manager, or hypervisor, is the key piece of software technology enabling virtualization. Open source hypervisor, Xen, supports the ARMv8 processor family.
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In designing cooking appliances, there is ample consideration given to power required from a home's wired electrical system as well as the performance needed to maintain safety and operating temperatures. NXP's solid state RF cooking team has developed a portable food heating appliance using solid state RF energy which is capable of operating on battery power. This session will cover the key challenges and approaches to delivering energy to heat food in a portable, on-the-go appliance.
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Deep dive training on battery management applications: hardware configurations and software intricacies: 1) Short BMS market introduction (incl. key players, requirements, competitors). 2) Introduction to NXP BMS roadmap and key products (BCC14A/B BCC6A/B & TPL). 3) Key BMS applications (14V, 48V, HV Daisy Chain, HV CAN, Wireless). 4) Market, application and product outlook. 14V Li ION use case example.
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