NXP FTF 2016 - 培训演示

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NXP FTF 2016 - Training Presentations

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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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Detailed training session on developing with the LPCXpresso Ecosystem, showing the main features of the tools, from project import/creation, multi-core debug and power optimization. The LPCXpresso boards and IDE toolchain will be used with the latest version of LPCOpen peripheral driver examples. We will cover some cool new features including trace and power analysis.
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This session will provide an overview of the QorIQ security accelerator block, its device driver, and its use in IPsec and SSL acceleration. Watch Video Presentation
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IoT applications often share some basic requirements; the applications themselves need to be small, fast and low-energy, while the time to market should be as short as possible. To help you meet these demands, a wide range of possibilities and techniques for performing smart debugging of code is actually already at your fingertips. At this session you will learn how to use debug features like various types of complex breakpoints, macros, stack checking, event logging, live data, profiling and runtime code analysis in a smart way for comprehensive debugging of your code.
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One particular wave of innovation in the world of ARM is an increase in heterogeneous CPU designs, where different classes of ARM processor are implemented on the same device. NXP are at the forefront of this wave. For example the i.MX 7 family of devices implement both a Cortex-A7 application processor and a Cortex-M4 embedded processor. In this session we will discuss the challenges that such a design brings to a developer, as well as how with DS-5, ARM gives you a powerful tool to address them.
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Electronics are part of everything we do nowadays, whether we are talking about mobile gadgets or a space rocket. Regardless of the complexity of the products designed, at some point, they have to be brought to actuality, so they have to be manufactured. This session addresses the impact of some of the most important printed circuit board attributes that affect quality, cost, and lead time.
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This session will feature the LPC54114 MCU, the latest release of the LPC54000 low-power series, to demonstrate how to take advantage of dual-core architecture in always-on applications. Optimize product design for extended battery life and bring them to market quickly with this hands-on session. Topics will range from system architecture, software design and debugging, to power optimization, sound detection, and voice triggering.
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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. Watch Video Presentation
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