FTF 2015 トレーニングプレゼンテーション

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FTF 2015 Training Presentations

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In this session, we will first depict the revolutionary 2X faster go-to-market path to launch a device, then illustrate why MicroEJ for Kinetis helps to reduce the B.O.M cost of our customers. MicroEJ enables IoT innovation, reduces time to prototype and product, and also supports a dynamic Apps go-to-market strategy, by leveraging new capabilities such as ultra-fast simulation, prototyping, as well as product customization after deployment in the field driving larger market share for IoT OEMs. This session includes a large and comprehensive technical summary of MicroEJ for Kinetis components. The solution Kinetis+MicroEJ leverages the 10+ million software engineering community providing them a modern smartphone-like software factory for embedded systems to target fast moving markets such as building automation, white goods, healthcare, industrial control, wearables, automotive, consumer, etc.
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Android provides a powerful operating system and development environment that can be used to develop connected IoT products very quickly. It further allows developers build up feature-rich HMI solutions with multi-display capabilities, for example it allows dual full-HD HDMI operation on the DIGI ConnectCore 6 SOM. There is a risk that resulting embedded products are open to external attack or user modification. This presentation will discuss the key components of the Android operating system and show how to implement network-enabled embedded applications based on SE Android (Security Enhancements for Android), a completely open-source project that provides a sandboxed application runtime environment preventing unauthorized modification of devices and/or execution of potentially malicious code.
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Presented by LIANG PING Presented at DwF Kinetis MCUs Based on ARM® Technology Shenzhen - January 27, 2015
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The Kinetis bootloader is a configurable flash programming utility that operates over a serial connection on Kinetis MCUs. In this session, you will learn about the bootloader's major features and most recent updates, followed by a hands-on class where we'll discuss all of the configurations complete with lab examples covering how to talk, configure and use the Kinetis bootloader. We will cover all of the protocols and have lab examples for communication to the Kinetis bootloader using UART, USB HID. Attendees will learn to implement a UART-only bootloader with small code footprint. Attendees will leave the class with all the information to re-create the labs.
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This session shall give an introduction to MAPS development kit for China market. Learn how to use it and run some examples. 
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An overview and details on the latest generation of TPMS solution, FXTH87xxx family portfolio. A general introduction on TPMS market, competition, system will be discussed and concept training of RF, LF and dynamic acceleration will be provided. Trainees will learn how to set up development environment for customers as well.
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This session will focus on the details of the programming model for the Advanced IO Processor (AIOP), including the scheduler, accelerators and memory scheme. We will also explain the architecture of AIOP software and ways to integrate it into applications.
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This session will explain how Freescale can enable customers to develop 76-81 GHz short and long range radar applications using the MPC577xK MCU, it will explain the concepts of the radar algorithms, including practical aspects such as SDADC or MIPI CSI sampling, Chirp Generation, Data Compression, R,V FFT, Detection and Tracking algorithms, and the benefits of the new Freescale IP that can allow them to improve their system resolution and accuracy. In this session customers will take away a detailed understanding of how to develop fast modulation radar systems using the MPC577xK MCU including the BOM cost advantages it also brings.
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This session will explain how to migrate between the QorIQ T2081 and T1040 communications processor families by achieving hardware and software compatibility. The session will also discuss hardware, software and board-level considerations that exist while migrating between these processors and designing a common board for these processors. 
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This session will introduce the latest Freescale 32-bit MCU designed for instrument cluster applications. We will spend time looking at the features and review the typical application configuration, software strategy and Freescale enablement built for this instrument cluster solution.
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Beginning 2016, the European New Car Assessment program (NCAP) will allocate increased scoring measures for pedestrian detection capabilities. This means that any car fitted with technologies that enable detection of a pedestrian in a hazardous situation and as a result perform collision avoidance measures shall be rewarded with an increased NCAP score. These systems must be designed and manufactured based on a solid automotive development flow. This session will address the vision processing requirements for pedestrian detection and provide training on how vision algorithms may be implemented to respond to NCAP requirements in a safe, secure and reliable way.
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The T1023/24 family of products are the newest QorIQ 28nm Power architecture devices running at 1.0-1.4GHz with both single and dual core options.  The T1023/24 devices deliver up to 2-10x performance over current QorIQ P1 family processor. Learn the key architectural difference between P102x and T1023/24 and recommendations for migrating from P series to T series. Discuss Data Path Acceleration Architecture (DPAA) and the benefits of the DPAA and SEC 5.X offload upgrades.
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This session will cover how to differentiate and to attach Freescale Power Management solutions to most Freescale MCU and MPUs for complete system enablement in IoT, automotive and multi-market applications. Thanks to a complete MCU tool alignment strategy for industrial applications in Transportation, Energy Management and Building Control segments, we can provide the fastest time to market for your customers. The presentation will include live demonstrations  with analog software drivers that are MCU agnostic, in order to better position Freescale Analog System solutions during your next customer visit.
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The QorIQ T1040 and T1042 communication processors support four integrated 64-bit e5500 Power Architecture® processor cores with high-performance data path acceleration architecture (DPAA) and network peripheral interfaces required for networking and telecommunications. This session will provide an in-depth look at the new features being introduced in the T1040 family such as the Single Source Clock, L2 Switch, sSDXC, QSGMII and DDR4. The session will also cover power-saving schemes of T1040. Presented by Du Chen​ Presented at DwF Digital Networking - Nanjing - 21 May 2015 Session ID: APF-SNT-T1359
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Sensors are a primary source of data for IoT and are becoming more and more pervasive. In this session we will cover what these main requirements are and the challenges designing a sensor IoT node. How to reduce power consumption and size? How Freescale is ideally positioned to make the difference. Should the sensor simply collect and send raw data or do we need more embedded processing at the IoT node? There is no single approach, we will cover the pros and cons per application.In the tornado of IoT market demand, which applications should we target with Freescale sensors to win? Beside the presentation the audience will be updated on the latest key sensor solutions with live sensor demos that make the difference allowing us to win in the Iot market.
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Many people involved in the electronics industry need a basic knowledge of semiconductor components in order to understand issues like manufacturing cycle time, semiconductor fab consolidation and failure analysis results. This session is geared towards a non-technical audience and gives a high-level overview of semiconductor devices and how they are made. The lecture begins with a brief overview of how semiconductor devices work. The bulk of the presentation describes the generic manufacturing flow for semiconductor devices with an emphasis on the complexity of the equipment/facilities used and the process time required.
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In this hands-on workshop, we will walk you through examples and use cases of how to use the FlexIO feature on Kinetis MCUs to implement custom logic and enable additional serial interfaces.
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Presented by Lan Zhou from Landzo Presented at DwF Kinetis MCUs Based on ARM® Technology Shenzhen - January 27, 2015
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This session will provide an introduction to the Freescale MQX™ RTOS.
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As the IoT gains momentum, the growth in the number of nodes connected to the internet poses a number of security challenges. The sheer number of devices establishing new connections to the cloud places a severe computational load on web servers. At the other end of the network, existing internet authentication algorithms are too heavy for small, battery powered sensor nodes to process. Further, more personal data will be captured and must be protected from cyber-attacks. This session will propose solutions to mitigate these challenges, both in the cloud and in the edge nodes.
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