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Connects - Training Material

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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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As LEDs continue to penetrate exterior automotive lighting applications by replacing traditional lighting solutions, there is an increasing demand for more safe, efficient, flexible and scalable electronics & driver ICs that can enable the full benefits of LEDs in these safety critical applications. This session will provide an overview of the requirements of Advanced Automotive Lighting Systems to provide safety in ADAS systems. Also the impact these system requirements have on the IC specifications, ranging from full system diagnostics, limp home modes, thermal and EMC considerations.
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Lecture to show NXP motor control model based solutions for S32K, MagniV and MPC57xx. Also includes training on BLDC/PMSM motor control using FreeMASTER, MCAT, and MATLAB.
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A hands-on session to show how to prepare and program device for CSEc security operations. Session also covers both bare metal and SDK approach to program CSEc module. The NVM part will cover the enablement/configuration of the different types of memory and tools that NXP provides for calculating the endurance.
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This session introduces the S32K148´s ENET module. The enablement/configuration of the different networking layers presented with a demo based on our SDK platform using lwIP stack.
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Customers are demanding more support from tools to develop their applications. This lecture provides an overview of the extensive capabilities of the S32DS IDEs for Arm and Power (e200). Some highlights: GNU toolchain with GCC Compiler; Integrated NXP tools: FreeMASTER, Math and motor control libraries and Processor Expert; Integrated NXP Software SDKs.
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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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Presentation of NXP’s security solution for next-generation automotive SoCs, with a focus NXP solution offering (drivers, tools), functionalities and system design aspects the customers have to consider.
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The self driving car has a major impact on ECUs power and complexity and the network architecture connecting them together. The sheer fact that the driver is now a mere passenger with potentially limited options of taking back control raises significant functional safety questions that cannot be addressed with conventional approaches. In this presentation, we discuss how autonomous driving is impacting the functional safety requirements for automotive Ethernet switches and PHYs. We will review what functional safety for a component really means, going beyond marketing figures and ticking off feature lists. Finally, we will discuss how NXP is attacking this challenge in our current portfolio with a hint to the products to come.
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The GD3100 is a  programmable high-voltage gate driver with advanced functional safety (FuSa), control, and protection features, developed for automotive and eMobility applications. This presentation will give a brief review of HV power devices such as Si IGBTs and WBG MOSFETs. Then the talk will focus on key features of the GD3100 that are important for implementation of high traction inverters, DC/DC converters, or on-board chargers (OBCs) using Si IGBTs or SiC MOSFETs.
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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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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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In electronic systems, it is typical to have a central processing unit that interfaces with other peripheral devices, other sub-systems or the user. Often, the signals from these interconnects may be incompatible on both ends. Therefore, various semiconductor devices such as analog switches, voltage level translators and GPIO expanders are often used to bridge between the interconnects on the board. In this session, we will explore the application of these interface devices from NXP and discuss their applications in various customer systems.
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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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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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NXP’s latest i.MX 8M processors require the latest memories to keep them running efficiently. As a system designer, your memory choices can impact the performance, size, cost, power reliability and longevity of your end product. We will discuss the latest memories supported on the new i.MX 8M processor family. This includes DDR3, DDR4 and LPDDR4. We will show designers how they can prioritize performance, power or price to develop the most optimum system. We will also provide details on eMMC 5.1 storage products. This includes high performance features including command queueing, and several new Cache operations. We will also highlight a new MCP that includes LPDDR4 and eMMC in a single space saving package. This session will provide designers with the tools necessary to create state-of-the-art i.MX 8M systems.
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Introducing our new radio middleware that will help accelerating customers time-to-market.
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Update on trends in the infotainment market as well as latest technology from NXP.
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