NXP FTF 2016 - 培训演示

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NXP FTF 2016 - Training Presentations

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In this section, NXP (SIP) will introduce the key products surround the USB Type-C connectors. The section will covers Power Delivery Controller, Power Delivery PHY, CC logic controller, high speed switch and high speed redriver. We will go over NXP Type-C hardware architecture, differentiation and product advantage.
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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.
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While many look for hypervisor based solutions when separating multiple operating systems running on multiple cores in the new embedded devices from NXP, an easier solution is often overlooked. This session will describe ARM TrustZone as a technology currently found in the ARM Cortex A family of the devices, but being introduced by ARM in other variants. A few use cases will be presented - these include secure gateway on a Layerscape LS1021 device, and an automotive instrument cluster on an i.MX6 dual core device.
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Detailed, hands-on training 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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By accurately modelling the i.MX 6, so that compiled code can be brought up on a Virtual Platform, great time savings can be made in a typical project design workflow, and a greater understanding of the available design space achieved. This paper looks at a multi-core Linux design, with a hosted application used to track the seabed depth, implemented on an X86 host. The design is simulated in near real-time, and detailed debug data is available both on the i.MX 6 and hosted software native-code application.
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Ensuring secure deployment of the billions of end nodes is a key enabler for the Internet of Tomorrow. The Kinetis K8x and Kinetis KL8x families are designed to deliver unsurpassed security for multi-application MCUs with hardware features such as Trust, Cryptographic acceleration, and Anti-Tamper to deliver a scalable, secure platform for embedded developers. This hands-on session will cover the needs of secure embedded applications, performing encrypted firmware updates, utilizing hardware cryptographic accelerators and extending trusted execution to external memories using an on-the-fly AES decryption module. Join this session to learn how your customers can get started creating their next secure node design.
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You can eliminate much of the hardware design complexity by using NXP's Single Chip System Modules (SCM). Learn what you still need to know when designing hardware based on SCM.
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Learn how to effectively use the integrated SPI-NOR flash on the SCM-i.MX 6Dual/6Quad. Topics covered will include the characteristics of a Linux image that will fit entirely into 16 MB SPI-NOR, and examples for how to leverage the SPI-NOR along with external boot sources such as eMMC. Attendees will also get to try multiple scenarios using the Quick Start board.
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This beginning hands-on session will walk you through the steps to configure the device and boot U-Boot. Learn how to configure the device reset control word (RCW), flash the device, and debug U-Boot. This session will use the CodeWarrior Development Studio for ARM®v8 ISA to boot the QorIQ LS1021A Reference Design Board (RDB).
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What is USB Type-C and USB-Power Delivery? Why consumer electronics and mobile computing products is adopting this new Type-C connector? What are the advantages and disadvantages using this connector? What is the future for USB Type-C and PowerDelivery. In this section, NXP (SIP) will give a high level introduction on this new technology and the ecosystem. This section is market and ecosystem driven discussion, not technically intense discussion.
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This session will discuss various initiatives underway at the multicore association such as multicore programming practices, API design, open source multicore technology development, etc. Watch Video Presentation
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QorIQ Configuration and Validation Suite (QCVS) is a collection of tools that are critical for board bring-up of designs using QorIQ System-on-Chip (SoC) processors. From configuration of the RCW, to configuration and validation of DDR and SerDes, the QCVS offers user-friendly, intelligent tools for your bring-up tool belt. Watch Video Presentation
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This beginning hands-on session will walk you through the steps to configure the target and tools to debug applications running on Linux. Learn about agent based debug and tools to view the Linux OS state. This session will use the CodeWarrior Development Studio for ARM®v8 ISA with a QorIQ LS series Reference Design Board (RDB).
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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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In this session, Linear Technology will provide detailed design guidelines for robust and scalable power solutions for the latest QorIQ processors. Using proven NXP reference design examples for the T1023, LS1043, LS1046 and LS1088 this session will explore the key considerations of each design and show you how to leverage and scale the reference designs for your applications.
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The CodeWarrior Development Suite for the QorIQ LS series includes a variety of tools targeted at analyzing the operation and performance of a multicore Linux system. Tools utilitize hardware trace and system logs to monitor operation and performance. CodeWarrior Development Suite includes tools for performance analysis with the Hierarchical Profiler, Flat Profiler and CodeCoverage; path analysis with Timeline and CallTree; real-time monitoring with DebugPrint and TraceCommander in addition to interval profiling.
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The Light Emitting Diode (LED) has revolutionized signaling on control panels and appliances from coffee makers to car dashboards to factory and data center equipment. LEDs give LCD Displays an efficient and more natural backlight, and have upped the ante in dazzling casino and gaming entertainment parlors. Driving and controlling individual LEDs starts with a simple technical question "Constant Voltage or Constant Current?", and is quickly followed by "How many channels do you need?" NXP's LED Controllers are tailored for simple to increasingly complex LED requirements, and take the burden of blinking and fading off your system's microprocessor. Watch Video Presentation
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This presentation will demonstrate the capabilities of the new i.MX 7 System-on-Chip, a hybrid solution containing a Cortex-A7 processor and a Cortex-M4 processor. Particular attention will be given to the hardware modules and software counterparts allowing both cores to communicate with each other. This hybrid architecture will be highlighted through various potential use cases/product scenarios and a Qt powered application running on top of Linux along with FreeRTOS will be showcased, focusing on asymmetric processing.
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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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This session will discuss which analysis tool to use and when. Through customer success stories of using the CodeWarrior Analysis Tools, you will learn how to overcome business critical software issues, improve application performance and meet criteria for quality requirements. Watch Video Presentation
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