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Learn about heterogeneous multicore processing on the i.MX 7Dual applications processor (as well as the i.MX 6SoloX). A presentation will be given of running a FreeRTOS application on the ARM® Cortex®-M4 core while running Linux on the ARM® Cortex®-A7 core. We will use RPMsg to communicate between the two applications.
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Learn more about the main Wireless protocols and the NXP value proposition for each of them.
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Solutions from NXP provide the right hardware, modular software, certifications, partners and documentation to accelerate time-to-market for our customers. Join this class to experience a deep dive on what is delivered from the newly launched SLN-POS-RDR Card Reader Solution.
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An update to NXP QorIQ networking ARM 64-bit product and solution.
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Learn about the IoT home automation based on i.MX 6 applications processors.
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We will walk you through the key features of the LPC800 and LPC1100 product series and how these low-power, low-cost MCUs bring numerous advantages over your 8-bit architecture. In this session, we will discuss bridge from 8-bit to 32-bit applications using the LPC800 and LPC1100. Customers can expect 8-bit simplicity, real-time performance, and better code density with easy-to-use tools while maintaining lower power at a much lower cost. NXP delivers all the key ingredients that embedded engineers need for successful USB application development.
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Introduction to Kinetis KW and Thread.
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An overview of NXP ARM® microcontrollers.
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In this session attendees will learn how to use the FreeMASTER tool to debug and develop a real time control loop - balancing an inverted pendulum using the new i.MX RT1176 crossover MCU on Embedded Artists' i.MX RT1176 MCU-based Developer's Kit. Presenters: Anders Rosvall, Technical Director, Embedded Artists Brendon Slade, MCU Ecosystem Director, NXP
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Detailed, session for developing your application using the LPCXpresso ecosystem, including USB and Ethernet stacks, and free emWin libraries that embedded engineers need for successful USB application development.
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Low-power is a system level challenge. Unfortunately, there is not just one feature that resolves the challenge. With LPC, we will focus on delivering low-power capabilities across a broad range of products: Low-power boot, intelligent clocking, ultra-efficient processing, flexible low-power modes and autonomous, low-power peripherals. In this session, we focus on each one of these capabilities, how they address the challenges of designing low-power applications and highlight differentiators LPC MCUs offer the low-power market. What's the most efficient way to communicate with peripherals, how to optimize data transfers, the effects different power modes and clock gating functions have on energy. This session discusses these topics plus explains how one can leverage the unique modes and features available on LPC MCUs to improve energy efficiency of IoT applications and other embedded systems. 
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Advanced Graphics Application on i.MX-RT Crossover MCU: Hardware Implementation and TouchGFX Support i.MX-RT: The Disruptive Crossover MCU  Security Features on i.MX-RT
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Advanced Graphics Application on i.MX-RT Crossover MCU: Hardware Implementation and TouchGFX Support  Discover New i.MX RT - Security Features_Paris  i.MX-RT: The Disruptive Crossover MCU 
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i.MX RT "Crossover" Processor Overview  NXP Rapid IoT Demo  Solutions Around the Core
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