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This session will feature the LPC54114 MCU, the latest release of the LPC54000 low-power series, to demonstrate how to take advantage of dual-core architecture in always-on applications. Optimize product design for extended battery life and bring them to market quickly with this hands-on session. Topics will range from system architecture, software design and debugging, to power optimization, sound detection, and voice triggering.
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This hands-on session introduces the MCUXpresso suite of tools (IDE, SDK, Config Tools) and shows users how to rapidly start development with thousands of Kinetis and LPC MCUs based on the Arm® Cortex®-M core. Using either Kinetis, LPC or i.MX RT development hardware, attendees will build a custom SDK, configure pins and clocks settings, generate a project, import and debug an application.
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The rise of NFC is ongoing. Now that traditional markets such as mobile payment and contactless access are well-established, we see NFC creating new markets on its own and providing technological advancements that fuel a new wave of innovation. This session looks into new use cases for NFC. It will also be the first time NXP presents its next technological evolution for NFC.
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NXP has prepared a DroneCode.org compatible Vehicle management unit (VMU) running PX4Pro. The NXPhlite VMU is compatible with the full stack from Dronecode, including internal and external comms, planning and groundstation control. This can be used as the basis to coordinate with a higher level companion system running  LINUX and ROS, or as a standalone vehicle such as a semi-autonomous Drone, Rover, boat or even a lawnmower. NXPhlite features multiple interfaces and includes 100BaseT1 2-wire Ethernet and dual CAN interfaces.
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When choosing the NFC device for a new design, the system architect must consider many parameters. Usually a strong focus is put on hardware specific aspects and software aspects are often grossly underestimated. To avoid unpleasant surprises during software implementation phase, software has to be taken into account as well from the beginning. Different NFC IC categories (NFC Frontends, NFC Controller, Connected Tag) have different strengths, depending on the software environment. The way how highly integrated operating systems like Linux are structured brings both new challenges and advantages. This session examines the considerations necessary when designing in NFC in different operating systems or "bare metal" systems. It also discusses the advantages and disadvantages of the different device categories in dependence of the designated environment.
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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 microprocessors, 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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Understand difference between consumer and automotive Ethernet and evolution of automotive communication architecture with the new CAN technologies and higher-speed Ethernet.
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Discover NXP’s Layerscape multicore 64-bit ARM®-based solutions and learn how this scalable family leverages line-rate networking and production grade software to accelerate your time-to-market in industrial, networking and consumer applications.
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Learn about NXP's secured IoT Gateway platform with sensor fusion, local and cloud analytic. IoT data aggregation, sensor fusion and analytic processes are run in VMs providing VM isolation advantage. IoT processes can also run in Virtualized Network Functions (VnF) that can run as service chains across end-to-end virtualized network equipment.
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Full power helm! A new way to design your power system, focused on the “Plumbing”! A simple EM physics and geometry based approach to designing power distribution networks on PCBs. From input power connection to the IC die, the simple rules discussed can be used to reduce power supply noise and improve EMC. Examples with results will be discussed.
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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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Review of NXP’s current CAN portfolio and CAN functions, our support for CAN FD and an overview of the breakthrough products keeping CAN highly relevant for the new generation of vehicles.
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Learn how to create a secure / non-secure application and debug on a secure Cortex-M33 NXP device.
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This presentation will first highlights some basic training techniques, such as data augmentation, but the primary focus will be on various ways to deploy neural network frameworks and classical machine learning algorithms, and most importantly, utilizing a variety of open source tools and techniques. We will show how these techniques fit in with some real use cases such as object recognition and anomaly detection. The hands-on session portion of the class will allow attendees to take a trained neural network model and deploy it on a i.MX 8M. Attendees will utilize the Linux development environment and implement an end-to-end use case.
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Near-field-communication (NFC) is the better, safer way to protect brands while ensuring ease of use for accessories and consumables. With NFC, the device itself can verify the authenticity and can configure operating modes or change settings based on the type of accessory or consumable. With a standard NFC phone, a user can check the originality or trigger a reorder through a simple tap. Based on the brand new NFC Nutshell Kit we will show which options exist on NFC tag and reader side, and how to implement a solution into even space constraint environments.
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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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Hands-on class diving into advanced debugging and trace features featured in MCUXpresso IDE.
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This session introduces new low cost S32V system-on-module (SOM) board from MicroSys for vision processing. Class also walks through complete hardware and software ecosystem with hands-on approach. These boards include support with QNX, LDW demo and many other demos.
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This class will provide an overview of the i.MX RT series, key peripheral, including a demo using the i.MX RT EVK.
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Secure designs begin with a security model consisting of policies, an understanding of the threat landscape and the methods used to enforce physical and logical security. To protect firmware execution given today’s threat landscape, there must be a policy to only allow execution of authenticated firmware. The methods used to enforce this policy rely on MCU security technology to create a protected boot flow. The boot firmware can contain public key cryptography to authenticate application code. In addition to these components integrated in the end device, there are tools and steps that must be taken in the manufacturing environment using manufacturing hardware for code signing and host programs for provisioning. Join this session to explore the design and implementation of a secure boot by making use of the Arm mbed TLS open source software and protect against firmware attacks.
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