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Technology Days - Training Material

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Design, Software & Services APF-DES-T2297 - Add Wired Connectivity and Graphics Capability to Next-generation Embedded Application with LPC MCUs  APF-DES-T1968 - Considering an 8-bit MCU? Think Again. Learn the Clear Advantages of Why and How LPC MCUs Based on Cortex®-M0/M0+ Cores Bring Significant Value to Embedded Applications  APF-DES-T2226 - Improve the RF Performance for the Connectivity  APF-DES-T2267 - i.MX 7Dual Heterogeneous Multicore Processing  APF-DES-T1967 - Leveraging NXP LPC Microcontrollers to Maximize Energy Efficiency in Always-On Applications  Secure Connected & Automated Vehicles APF-AUT-T2295 - Hands-On Workshop: How to Tune a New PMSM Step-by-Step  APF-AUT-T2298 - Motor Control: Spin the BLDC and PMSM Smart  Smart Home & Buildings APF-HMB-T1945 - New Kinetis KE1x Series: More Memory, More Features & Higher Performance in 5 V Kinetis E Family  Smart Machinery & Industrial Automation APF-SMI-T2225 - Motion Sensors for Industry and Medical
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See how to use and demonstrate the differentiating features of the newest Layerscape processor, the LS1028A. This live class will show how to enable the graphical capabilities of the LS1028A with the LSDK, and also how to take advantage of the integrated Ethernet switch and TSN features.
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Along with industry leading performance and integration, the i.MX RT crossover processor family integrates strong security protections. With the latest NXP software and tools, every design can integrate boot authentication and encrypted execution. Join this session to use the MCUXpresso Tools to protect your design. Learn about the threats and attacks that can be mitigated for every embedded design.
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This session will take the customer through first an analysis of the various threats to their product from hacking to IP theft to information security. The focus will be first on educating the customers on the issues, then identifying tiers of security planning and finishing with how solutions across multiple products can help the customer protect themselves.
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Automotive Ethernet PHYs enable future driving scenarios by providing the necessary physical throughput power. While software brings added value for security, diagnosis, energy efficiency and safety.
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Design, Software & Services APF-DES-T2274 - Kinetis KW and Thread  APF-DES-T2229 - Kinetis New Products, KE+, Security with K8x & KL8x  APF-DES-T2226 - Improve the RF Performance for the Connectivity  Secure Mobile, Healthcare & Wearables APF-MHW-T2232 - LPC541xx for Wearable  Smart Machinery & Industrial Automation APF-SMI-T2225 - Motion Sensors for Industry and Medical
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Hands-on workshop, NTAG I2C Plus Brings NFC Connectivity into Consumer Electronics for Tiny Devices
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This lecture provides an overview of the software and hardware enablement available to accelerate customer time-to-market and reduce development risks for an In-Vehicle Infotainment (IVI) system. Namely an application processor from i.MX 8 family, Ethernet Switch and PHY, Software Defined Radio and Audio processing, Audio Class-D amplifier, power management, supported by Genivi and AGL compliant BSP and integrated drivers and middleware components for these devices. In a second part, we will present the NXP eCockpit Proof of Concept, which leverages i.MX 8QM HW performances and partitioning capabilities and allows to run two concurrent and independent HLOS and a Safety Critical application (RVC, Display, Audio) on i.MX 8QM.
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Learn how to solve your I2C system challenges by deploying I3C. Our experts will provide a comprehensive introduction into the new MIPI I3C interface and its advantages compared to the well-known, I2C interface. This session gives an overview of how to develop I3C-based systems as well as provide a view of NXP’s MIPI I3C slave RTL, which is the first verified, freely available RTL source code available for download.
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Introduction to A100x secure authenticator, authentication protocols, what to look for in security IC, and potential use cases.
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Tired of failing EMC certification over and over again? Join the crowd. Shrinking IC geometries and resulting increase in switching speeds make designing compliant printed circuit boards more challenging than ever. We need a new design methodology to change this unacceptable status quo, one based on electromagnetic field physics. This training module presents a basic introduction to EM fields and provides guidelines for building successful, cost-effective printed circuit boards. This presentation includes example designs and test results.
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Introduction to i.MX RT products and automotive qualified variants for multimedia applications requiring real time processing and low bill of materials.
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SE050: The New Generation of NXP’s Plug & Trust Solutions to Secure Your IoT Services
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Hands-on class diving into advanced debugging and trace features featured in MCUXpresso IDE.
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In-vehicle wireless charging solutions portfolio overview, automotive grade hardware and software offerings, market success stories, technical description of charging deliver and control, foreign object detection, NFC and AUTOSAR integration, and special considerations for in-vehicle operation.
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Learn about NXP's S32V family for vision processing, with a special focus product architectures and software (enablement and application level). You will also see real application use case examples using APEXCV Libraries and EVB.
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AWS Greengrass - Labs 3-4
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Emerging Connected and Automated Vehicles (CAVs) require far more compute horsepower, more memory bandwidth, and more high speed IO connectivity than the vehicles in show rooms today. Digital Networking processors are the highest performance processors in NXP, and they aren't just for networking! These devices are also used in safety critical applications like avionics, industrial automation and smart grid. Come learn more about where DN Layerscape processors fit in CAVs!
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Automakers and their Tier 1s are bring revolutionary capabilities to the car with new convenience and safety features such as automated driving, Car-to-Car communication, Over-the-Air Updates (OTA) and heads-up displays (HUD). The modern car now demands authentication, identification and separation of critical software components to run in routinely insecure environments for the operational lifespan of the vehicle. By starting with a trusted run-time software foundation as the essential building block, they are designing future scalable platforms on NXP’s i.MX 8 and next-gen S32 processor families for ADAS, automated driving, consolidated integrated cockpit, C2C/V2X, Linux /Android infotainment and safety-critical instrument clusters with GPU accelerated OpenGL graphics.
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