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ヨーロッパにおけるeID文書の進化 このセッションでは、ヨーロッパにおけるeID文書と規制の進化について説明します。 このセッションでは、ヨーロッパにおけるeID文書と規制の進化について説明します。 識別とセキュリティ
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産業用およびネットワーキングアプリケーション向けのLayerscapeマイクロプロセッサポートフォリオ <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> エッジコンピューティングアプリケーションについて学習し、ゲートウェイとセキュリティを「管理」するための技術的な課題、クラウドサービスのコンテキストでEdgeScaleフレームワークを含むLayerscapeマイクロプロセッサソリューションを示します。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> エッジコンピューティングアプリケーションについて学習し、ゲートウェイとセキュリティを「管理」するための技術的な課題、クラウドサービスのコンテキストでEdgeScaleフレームワークを含むLayerscapeマイクロプロセッサソリューションを示します。 Layerscape処理プラットフォーム
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Enabling SD Interface on P1024 Reference Design Board To enable SD interface in SPI boot on p1024RDB: 1. Perform the following updates in u-boot a) Modify pmuxcr to enable SD bus in case of SPI boot b) Update the corresponding static mux implementation in u-boot 2. Perform the following updates in Linux a) Disable IFC from device tree and kernel defconfig The patch details to enable SD interface are given below. A zip file, AN4336SW.zip, containing the patches for u-boot and Linux accompanies this application note. The file can be downloaded from [1]. U-Boot   Extract the u-boot code from the QorIQ SDK 1.0.1 iso   Apply the patch, u-boot-p1024rdb-enabling-sd-in-spi-boot.patch   Compile the u-boot using "make" command for SPI Flash    make ARCH=powerpc   CROSS_COMPILE=/opt/freescale/usr/local/gcc-4.5.55-eglibc-2.11.55/powerpc-linux-gnu/bin/powerpc-linux-gnu- p1024RDB_SPIFLASH   Use the boot_format utility to generate the spiimage. For more information, see SDK manual.   Update the SPI Flash with the above built spiimage Linux Extract the Linux source code from QorIQ SDK 1.0.1 iso Apply the patch, linux-p1024rdb-enabling-sd-in-spi-boot.patch Compile Linux using make command #make ARCH=powerpc  CROSS_COMPILE=/opt/freescale/usr/local/gcc-4.5.55-eglibc-2.11.55/powerpc-linux-gnu/bin/powerpc-linux-gnuarch/  powerpc/configs/qoriq_sdk_nonsmp_defconfig  #make ARCH=powerpc  CROSS_COMPILE=/opt/freescale/usr/local/gcc-4.5.55-eglibc-2.11.55/powerpc-linux-gnu/bin/powerpc-linux-gnu- Compile the dts ./sripts/dtc/dtc -f -I dts -O dtb -R 8 -S 0x3000  arc/powerpc/boot/dts/p1024rdb.dts.dts > p1024rdb.dtb.dtb With the updated SPI bootloader, Linux uImage and p1024rdb.dtb, the user must be able to enable SD interface on P1024RDB. NOTE The above-mentioned changes must be done only when the user specifically requires the SD interface using SPI boot. For all other boot methods, these patches must not be used. QorIQ P1 Devices
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使用 Sigfox 发送 GPS 坐标 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 该视频展示了如何使用 Sigfox OL2385 开发板获取 GPS 坐标并将其发送到互联网 (在 “我的视频” 中查看) 智慧城市
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Simplify Graphical User Interface and Video Integration for i.MX 6 Series Processors Learn practical methods to integrate video and graphical elements together in your user interface that runs on the i.MX 6 series. The session starts with an introduction of the i.MX 6 series video and graphics hardware components, along with their Linux® OS software libraries. It will then show simple methods to create portable user interface applications, supported by several useful software code examples. Presented by: DanieleDall'Acqua Presented at: FTF 2014 Session ID: FTF-CON-F0223 Learn practical methods to integrate video and graphical elements together in your user interface that runs on the i.MX 6 series. The session starts with an introduction of the i.MX 6 series video and graphics hardware components, along with their Linux® OS software libraries. It will then show simple methods to create portable user interface applications, supported by several useful software code examples. Presented by: Daniele Dall'acqua Presented at: FTF 2014 Session ID: FTF-CON-F0223 i.MX Applications Processors
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ブートプロセス <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> インデックス | 前へ | 次に (マイビデオで視聴)
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功率和效率增强的 5G mMIMO 模块 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 完整系列的多功能放大器模块可快速部署基站,满足 5G 无线基础设施设备的超低延迟/高数据速率需求。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 完整系列的多功能放大器模块可快速部署基站,满足 5G 无线基础设施设备的超低延迟/高数据速率需求。 接口和连接
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RDDSP56F8SRDS: 3-Phase SR Motor Sensorless Control Reference Design using 56F80X or 56F8300 DSCs Overview Features Block Diagram Board Design Resources Overview The reference design demonstrates sensorless control of the 3-Phase Switched Reluctance (SR) motor using 56F80x or 56F83XX Digital Signal Controllers. It can also be adapted to 56F81XX Digital Signal Controllers. The concept of this application is that of a sensorless speed closed loop SR drive using flux linkage position estimation. An inner current loop with PI controller is included. The change in phase resistance during motor operation due to its temperature dependency creates errors in the position estimation and significantly affects the performance of the drive. Therefore, a novel algorithm for on-the-fly estimation of the phase resistance is included. The Digital Signal Controller runs the main control algorithm. Rotor position is evaluated using the sensorless flux linkage estimation algorithm. The actual flux linkage is calculated at the rate of the PWM frequency and is compared with the reference flux linkage for a given commutation angle. When the actual flux linkage exceeds the reference, the commutation of the phases is done; the actual phase is turned off and the following phase is turned on. Flux linkage error is used for estimation of the phase resistance at low speeds (US Patent No.: 6,366,865). The actual speed of the motor is determined using the commutation instances. Based on the speed error, the speed controller generates the desired phase current. When the phase is commutated, it is turned on with a duty cycle of 100%. Then, during each PWM cycle, the actual phase current is compared with the desired current. As soon as the actual current exceeds the desired current, the current controller is turned on. The current controller controls the output duty cycle until the phase is turned off (following commutation). Finally, the 3-Phase PWM control signals are generated. The procedure is repeated for each commutation cycle of the motor. Features Sensorless control of an SR motor using a flux linkage estimation technique Targeted for 56F80X, 56F83XX, and 56F81XX Digital Signal Controllers Running on a 3-Phase SR HV Motor Control Development Platform The control technique: current control with a speed closed loop Position estimation based on flux linkage estimation Phase resistance measurement during start-up Phase resistance estimation at low speeds Motor starts from any position with rotor alignment Encoder position reference for evaluation of sensorless position estimation Manual interface FreeMASTER software control interface and monitor Fault protection Block Diagram Board Design Resources Legacy Designs
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CAN in Future Networks Understanding The Different Trends and Solutions Future networks will still use CAN to a huge extend - but the variety of trends is also significantly increasing. This session shows key values, technical background and differentiators of the different CAN trends and the NXP implementation. Future networks will still use CAN to a huge extend - but the variety of trends is also significantly increasing. This session shows key values, technical background and differentiators of the different CAN trends and the NXP implementation.
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将来のネットワークにおけるCANのさまざまなトレンドとソリューションの理解 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 将来のネットワークでは、CANが引き続き大幅に使用されるようになりますが、トレンドの多様性も大幅に増加しています。このセッションでは、さまざまなCANトレンドとNXPの実装の主要な価値、技術的背景、および差別化要因について説明します。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 将来のネットワークでは、CANが引き続き大幅に使用されるようになりますが、トレンドの多様性も大幅に増加しています。このセッションでは、さまざまなCANトレンドとNXPの実装の主要な価値、技術的背景、および差別化要因について説明します。
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これで、構成セクションにコンポーネントセクションを要求できるようになりました <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> 以前は、設定セクションは設定セクションのみを必要とすることができましたが、現在は設定に設定とコンポーネントを要求できるようになりました。 この新機能により、一部のコンポーネントセクションが一部のボード/キットのすべてのアプリケーションで一般的に必要とされる場合、ユーザーはこのボード/キットの共通の設定セクションを使用して、すべてのymlファイルの「__hierachy__」でそれらを維持するのではなく、それらを要求できるため、保守の労力を大幅に節約できます。 Re:現在、構成セクションにはコンポーネントセクションが必要です <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> ケイト、何か例を挙げていただけますか?
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Recovering k64f & kw41z applications binaries App Videos
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ミニモンキーレブB 基板付:NG <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> Mini-Monkeyの設計を更新し、PCB:NGを使用して製作しました。 (マイビデオで視聴)
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驾驶体验:i.MX 8/8X 多媒体——图形、显示控制器、视觉、机器学习 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> i.MX 为多媒体和显示应用提供了一些最通用的平台。加入此会议,深入了解 i.MX 8/8X 的多媒体系统(包括 GPU、显示器、视觉、虚拟化和机器学习)如何协同工作,为客户提供一套可扩展的强大汽车信息娱乐媒体功能。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> i.MX 为多媒体和显示应用提供了一些最通用的平台。加入此会议,深入了解 i.MX 8/8X 的多媒体系统(包括 GPU、显示器、视觉、虚拟化和机器学习)如何协同工作,为客户提供一套可扩展的强大汽车信息娱乐媒体功能。
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Build Your Next Industrial IoT Product Using NXP’s Powerful, Power-Efficient, Cost-Effective and Design-Compatible NXP Microcontrollers This session will provide an overview of NXP's broad and scalable microcontrollers portfolio and give details on which product families are available for different markets and use cases. It will also give an overview of the unified tools, software and solutions that enable the portfolio of microcontrollers.  This session will provide an overview of NXP's broad and scalable microcontrollers portfolio and give details on which product families are available for different markets and use cases. It will also give an overview of the unified tools, software and solutions that enable the portfolio of microcontrollers.  i.MX Applications Processors
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インフォテインメント、コネクティビティ、セキュリティ: i.MX 8 アプリケーション プロセッサでの異種処理の概要 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> i.MX 8アーキテクチャは、アプリケーション用の強力なArm® Cortex-A®とリアルタイム処理用のCortex-M4の2種類のプロセッサを備えています。このセッションでは、これらのコアがどのように相互作用するか、また、このアーキテクチャでの開発を容易にするために SoC にどのような機能が組み込まれているかについて説明します。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> i.MX 8アーキテクチャは、アプリケーション用の強力なArm® Cortex-A®とリアルタイム処理用のCortex-M4の2種類のプロセッサを備えています。このセッションでは、これらのコアがどのように相互作用するか、また、このアーキテクチャでの開発を容易にするために SoC にどのような機能が組み込まれているかについて説明します。 識別とセキュリティ インターフェース&コネクティビティ
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The Functional Safety and Automotive Ethernet Vision from NXP 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. 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. Identification & Security Interface & Connectivity
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Type-C端到端解决方案 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> NXP 的 USB Type-C 端到端解决方案可轻松集成到客户设计中,包括用于电源的 AC/DC 转换器、PD PHY 和 CC 逻辑控制器、直接充电、信号转驱动器、信号开关、负载开关和身份验证。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> NXP 的 USB Type-C 端到端解决方案可轻松集成到客户设计中,包括用于电源的 AC/DC 转换器、PD PHY 和 CC 逻辑控制器、直接充电、信号转驱动器、信号开关、负载开关和身份验证。
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Body & Comfort: S32K、S12ZVM、MPC5744Pを使用したモーター制御ワークショップ <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> NXPのS32K、MagniV、MPC57xxのモデルベースのソリューションを紹介する講義です。また、FreeMASTER、MCAT、MATLABを使用したBLDC/PMSMモータ制御のトレーニングも含まれています。 <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> NXPのS32K、MagniV、MPC57xxのモデルベースのソリューションを紹介する講義です。また、FreeMASTER、MCAT、MATLABを使用したBLDC/PMSMモータ制御のトレーニングも含まれています。 MagniVミックスドシグナルプロセッサ
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High-Performance Networking Processors for Automotive Applications Emerging Connected and Automated Vehicles (CAVs) require far more compute horsepower, more memory bandwidth, and more high speed IO connectivity than the vehicles in show rooms today. Digital Networking processors are the highest performance processors in NXP, and they aren't just for networking! These devices are also used in safety critical applications like avionics, industrial automation and smart grid. Come learn more about where DN Layerscape processors fit in CAVs! Emerging Connected and Automated Vehicles (CAVs) require far more compute horsepower, more memory bandwidth, and more high speed IO connectivity than the vehicles in show rooms today. Digital Networking processors are the highest performance processors in NXP, and they aren't just for networking! These devices are also used in safety critical applications like avionics, industrial automation and smart grid. Come learn more about where DN Layerscape processors fit in CAVs!
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