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Connects - Training Material

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Join this session to understand the breakthrough security features integrated in the recently launched LPC5500 MCU Family. Along with Arm® TrustZone technology the LPC5500 SRAM PUF based key management makes security easy to use and easy to deploy. This session will start off by introducing the scope of securing a smart connected device. It will explain the need for addressing device life cycle in a scalable way that is easy to use and easy to deploy. Then it will detail the protected key management achievable when using LPC5500 with MCUXpresso Software & Tools.  
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Design, Software & Services LAT-DES-T2443 - An Update on i.MX Applications Processors Product Family: i.MX 6UltraLite, i.MX 6ULL, i.MX 6QuadPlus, i.MX 7 and i.MX 8  LAT-DES-T2441 - Demystifying Designs with MPUs: How the Available Documentation and Tools Can Ease the Process of a Complex i.MX Application Processor based Board  LAT-DES-T2445 - PCB Layout Tips and Tricks – A Journey to Robustness  Smart Home & Buildings LAT-HMB-T2459 - Future Electronics: Designing with Security in Mind  LAT-HMB-T2460 - Turing Computer: Hands-On Workshop: Adding Hotspot Features (3G/4G-Wi-Fi Router) to Your Multimedia Product  Insight & Innovation LAT-INS-T2442 - Analog Solutions for Multi-Market - Automotive and Industrial LAT-INS-T2438 - Learn About the Most Comprehensive Solutions based on ARM® Cortex®-M MCUs: Kinetis and LPC  LAT-INS-T2437 - Solutions Around the Core - Designing with NXP’s Interface and Power Solutions
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S32K based soution for smart LED drivers from Inova Semiconductor. Introduction, protocol overview, hardware and software insights.
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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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The raison d'etre of edge computing is processing IoT sensor data, and machine learning techniques are increasingly being used for this analysis. Although general-purpose CPU cores can handle ML, specialized accelerators deliver 10x the performance in the same power envelope. Learn how Layerscape compute and acceleration is addressing the needs today - and see what the future holds.
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Learn how to go from an IoT idea to a proof-of-concept as easy as 1-2-3 for a connected, secure, small-form factor IoT end node. The Rapid IoT kit integrates 30+ active components (11 NXP parts) with drivers, middleware, example applications and features an innovative web IDE with GUI-based programming, as well as mobile App and IoT cloud services.
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In the past, auto HMI developers approached the instrument cluster, infotainment system and any other auxiliary driver displays as separate projects, each with their own unique challenges and requirements. With eCockpit HMI developers are tasked with approaching the cluster, IVI system, HUD, rear-seat entertainment and other screens in the vehicle as a single system of displays that have been fragmented within the vehicle and even run on a singular MPU. Examine the requirements for these new integrated cockpit systems. Discuss how design teams can deliver consistent language, look and feel across multiple displays with separate and varied purposes. Talk about the concerns related to safety and certification for system as it applies to a variety of auto standards and reveal how teams can successfully design these systems for a single processor family and reuse across low- high-end auto models.
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In this session, Linear Technology will provide detailed design guidelines for robust and scalable power solutions for the latest QorIQ processors. Using proven NXP reference design examples for the T1023, LS1043, LS1046 and LS1088 this session will explore the key considerations of each design and show you how to leverage and scale the reference designs for your applications.
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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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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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