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Connects - Training Material

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In this presentation, we are going to highlight the use of Model-Based Design processes for Vehicle Dynamics and Body Controller that involves electric drives which are typically used by OEM and Tiers 1 for product development. The primary benefit of Model-Based Design is the ability to cover traceability between design artifacts produced as a part of the design process. A traceability path from requirement management tool to software model, code, and finally tests in the hardware-in-the-loop environment is demonstrated. A typical PMSM Field Oriented Control application will be used to demonstrate all the steps shown above using NXP S32K Motor Kit.
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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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This presentation will present 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. New research presented on the impact of discrete components on radiated and conducted emissions, with an emphasis on cost analysis. Results of recent research on various power supply PCB topology will be discussed.
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Market and application trends in automotive radar, supporting NCAP and autonomous architectures.
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This session will examine the semiconductor devices that are needed for creating a cost-competitive, modern, fast-chirp, automotive radar sensor. Each essential IC building block will be reviewed for features and function with key attributes/specifications identified. The typical interconnections between ICs will be examined and explained. Radar operating theory will be briefly reviewed to highlight how each hardware block supports the radar sensor operation.
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This session will cover NXP's complete voice and audio solutions for IoT market. This includes solutions for voice calling, AI voice recognition and music playback. NXP brings complete and optimized audio framework on NXP's MCU and MPU products, which provides ready and easy to use voice and audio functions to IoT developers.  In the applications such as AI speakers, home electrical equipment and voice control nodes.
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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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The session includes the overview of S32K Automotive MCU product family for general purpose automotive applications, as well as industrial applications which require automotive quality and reliability. It will cover the introduction of S32K solutions – touch sense, motor control, secured car access, CAN-FD communication, etc.
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This class will cover basic operation and the internal mechanisms of DDR devices. The class will also cover available tools to enable and simplify bring-up and validation of a DDR subsystem.
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In this workshop you will learn about UJA1196 capabilities for HS-CAN communications focused on low-power applications, using its great features for supply voltage, wake-up capabilities, etc. All of this in a very small package.
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Introduction to the MCU Alexa Voice solution describing the features, architecture, and presenting the cost and ease of use benefits. We will be also showing the Out-of-Box Experience of on-boarding Alexa using Wi-Fi as well as interacting with Alexa by using a cost effective far-field Implementation.  
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Overview of S32K, MagniV and other GPIS products.
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Time-Sensitive Networking is the next buzz world in the industrial and automotive Ethernet domain. In this session we will dig into the TSN standards to highlight the key features that are most relevant for the automotive domain. We will also discuss the potential use cases that can be implemented with the SJA1105TEL Automotive Ethernet Switch and discuss the Ecosystem enabling the adoption of such switch in an car.
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A deep dive into the pixel processing pipeline of the i.MX 8. Attendees will get a detailed insight into the available accelerators for 2D, 3D, Video, Vision, AI, Capture and Display and how they enable the multimedia and safety features of the eCockpit.
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A guide to using the Vision SDK for S32V. Learn how to leverage S32V design tools to work with APEX and ISP on the S32V family.  
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I2C master and slave devices are used in many system for various reasons. NXP offers the widest portfolio of I2C devices. This class will introduce the I2C-Bus interface, address some common pitfalls when designing with I2C-Bus, and present solutions to these challenges.
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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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S32 Design Studio 3.0 S32V234 focus on configuration tools pin wizard, clocks config, with SDK configuration, FreeRTOS configuration and use building and running a project showing debug with S32 debugger on the m4 with code on target. Configuration tools suite formed from pins, clocks, peripherals, DCD, IVT are offering a complete view of the platform with complete access to all the details directly from the tool and possibility to generate, build and debug the applications.
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In Automotive, the need for communication between various ECUs has grown as the number of ECU’s have grown as well. Implementing a software solution which is scalable, portable, open and easy to program is key to offering a complete software enablement to our customers. This session will present our software solution for communication between multiple SOCs with different operating systems across  multiple physical areas.
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Overview of the S32x next-generation safety architecture spanning ASIL B to ASIL D. What’s new and how we better enable the customer with a full set of safety collateral including MCU HW, SW and SBC HW.
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