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Technology Days - Training Material

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This class will teach you how to spin a BLDC, PMSM or ACIM motor with i.MX RT. You do not need prior motor control experience.
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Learn about the safety related elements of i.MX 8/8X hardware and how NXP is going the extra step with their functional safety concepts. The i.MX 8/8X is designed as a Safety Element out of Context (SEooC) microprocessor (MPU) and is intended for multiple use cases within the vehicle. Join us to see how the i.MX 8/8X can be used in dedicated manners for these specific safety-critical applications, like automotive digital instrument clusters, where critical information and alerts need to be assessed and analyzed at all times.
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This class will teach you how to spin a BLDC, PMSM or ACIM motor with i.MX RT. You do not need prior motor control experience.
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This class will teach you how to spin a BLDC, PMSM or ACIM motor with i.MX RT. You do not need prior motor control experience.
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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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Hands-on workshop, NTAG I2C Plus Brings NFC Connectivity into Consumer Electronics for Tiny Devices
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You need to get a lot of things right to build a truly secure system. Join this session to learn how the EdgeLock™ secure enclave that’s built into our i.MX 8ULP applications processors protects the entire system against attacks. Best of all, it simplifies complex implementations so you’re less likely to make errors when you configure security. With the secure enclave, you can achieve security goals with less security expertise, freeing you to focus on new ways to differentiate your application. Presenter: Lawrence Case, Systems Engineer and Security Architect, NXP
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With over half a billion parts shipped to date, i.MX applications processors transform interactions in ways you never imagined. Learn about the i.MX portfolio and enablement that offer multicore solutions for multimedia and display applications with high-performance and low-power capabilities that are scalable, safe, and secure. 
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Built with a high-level integration to support graphics, video, image processing, vision, audio and voice functions, the i.MX 8 series is ideal for Automotive applications. Join this session to learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of cost-performance scaling with pin-compatible options and the highest level of software reuse.
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Join this session to get a glimpse of where you will see i.MX 8/8X in the near future and why graphics, ML, AI, video, image processing, vision, connectivity, audio and voice functions make the i.MX 8 series ideal for Automotive and Industrial applications. Learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of performance scaling with pin-compatible options and the highest level of software reuse. In addition, learn more about the upcoming i.MX 8DualMax product line to help customers meet additional cost performance scaling across the i.MX 8 family.
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NXP continues to expand the i.MX 8M Family with the  addition of the i.MX 8M Mini and i.MX 8M Nano products. Learn the features, performance and benefits of these products and which target applications they are most suited to. Attendees will leave the class with a deep understanding of the i.MX 8M family line-up and how to pick the right product for their application.
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As memory interface data rates increase, so does the need for ensuring proper margins have been designed into the system’s usage of that interface. One way Micron has studied the system’s usage of the memory interface is through Timing & Signal Analysis (TSA). A TSA attaches physical hardware to the memory device to observe a subset of the memory interface as operated by the system. Another approach to memory interface is Virtual TSA (vTSA). This method uses the memory controller’s training algorithms to provide margin information without the use of physical test hardware. This method allows characterization of the entire memory interface. This session will compare and contrast the two different methods, and will ultimately demonstrate the value of integrating vTSA tools on the system platform. We intend to reference actual results from the latest i.MX 8 QXP board.
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Machine learning can performed on a wide range of device categories - from MCUs with Arm® Cortex®-M4 and M7 cores to complex SoCs with high-end A-class cores, GPUs, DSPs, and dedicated machine learning accelerators. The first step is learning how to utilize proper training techniques for model development, but beyond that how to generate optimized inference engines that can be used to perform classifications, anomaly detection, predictions, and other types of decisions. This presentation 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.
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A guide to developing with the Yocto Project for i.MX application processors. Learn how to leverage the Yocto Project in development by adding layers and recipes, customizing images, working with the kernel, and other essential Yocto development tasks.
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Overview of the i.MX RT family, where to find the related tools, getting started, and where to go for support.
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Hands-on starting with the i.MX 8M Mini EVK, we will cover the out-of-the-box enablement including software, tools, hardware design guides, and demonstration software. Attendees should leave this class with the confidence to start their own design using the i.MX 8M Mini.
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Creating Graphics on the i.MX RT1060 lab material. The i.MX RT series supports product designs that include advanced multimedia for GUI and enhanced human machine interface (HMI) experience. Its features include advanced 2D graphics acceleration engine, LCD display controllers, camera sensor interfaces, and audio interfaces for high-performance, multi-channel audio streaming. Join this session to learn how to develop graphics on i.MX RT. The attendees in this class will leave with an i.MX RT1060 board on behalf of Digi-Key.  
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Join this session to get a glimpse of where you will see i.MX 8/8X in the near future and why graphics, ML, AI, video, image processing, vision, connectivity, audio and voice functions make the i.MX 8 series ideal for Automotive and Industrial applications. Learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of performance scaling with pin-compatible options and the highest level of software reuse. In addition, learn more about the upcoming i.MX 8DualMax product line to help customers meet additional cost performance scaling across the i.MX 8 family.
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Addressing IoT applications requires copious amounts of Non-Volatile memory space. Supporting numerous connectivity stack options, edge compute algorithms, sensor data storage and/or all of the above requires millions of bytes. Fortunately, NXP’s MCUs in the crossover space, like the i.MX RT integrate the latest capabilities for supporting execute in place (XIP) from cost effective serial NOR flash devices. Join this class to get hands-on with XIP and the i.MX RT.
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Introducing Murata Wi-Fi IBT Connectivity Modules for NXP i.MX & RT Platform.
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