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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Security is cited as one of the biggest obstacles preventing the IoT from reaching its potential. Learn how Trust Architecture in QorIQ processors can help you secure your IoT device, and provide end-to-end security for your IoT system - from the sensors to the cloud.
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The first step to creating a smart sensor algorithm is collecting sensor data for analyses. This session will present a series of sensor data logging options which allow engineers to create dataloggers quickly using Kinetis SDK framework by including IS-SDK without having to concerning themselves with any mudance sensor integration efforts. Watch Video Presentation
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The problem of smartphones running out of battery power too soon during the day is well known and in response new fast charging standards have been introduced, ranging from multi-level output ones like USB Power Delivery and Quick Charge to 5V/multi-Amp proprietary Direct Charging protocols. This drives the demand for AC/DC converters with high efficiency over an adjustable 3-20V range, small size, good load step response and very low no-load power. NXP introduces a complete AC/DC fast charging system covering all these requirements, comprising the TEA1936 fly-back controller, the TEA1993/98 synchronous rectifier and the TEA190x family of protocol controllers that communicate with the device to be charged. The TEA190x family supports all mainstream fast charging protocols, is highly configurable and enhances charger safety by an extensive set of hardware integrated protection features.
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Saving Space in your Reference Design with eSIM. eSIM (eUICC) and what it means for chipset makers and device OEMs. Today consumers want bigger screens, more battery life, more storage, more rich media content etc. The (R) evolution that eSIM will create is unique, disruptive and can be compared to the time when black and white TV went to Color. The OEMs are adopting slowly, but like the days of B&W TV, the networks weren’t ready, and neither are the Mobile operators in the case of eSIM!
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Simplify your system design and reduce time to market with integrated mixed-signal microcontrollers with single-die solutions. This lecture will provide an overview of the NXP MagniV portfolio and provide solutions to shrink your applications. Watch Video Presentation
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This session offers deep understanding of buck regulator performance and its reliability aspect. Buck regulator is the most widely used topology. Once the system power need is calculated, identifying the right power management chip is critical to a project's success. Session attendees should be able to identify and review critical DC-DC converter specifications and choose the best power solution based on their need. Calculating/selecting the passives and discrete around the buck regulator to create a robust design is discussed. Finally, measurement of key parameters to ensure the thermal, and loop stability is shared.
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The modern car has already gone beyond a simple mode of transportation to a platform for connectivity. The challenges of balancing performance and cost have the new requirement to meet security as the car becomes connected to the rest of the world. This class will review the security implications for CAN communications. The class will walk through a hands-on connecting a CAN network of two MPC5748G devices via secure CAN communications. Leveraging the SHE firmware on the MPC5748G HSM. CAN messages with be signed before transmission and authenticated on the receiving end using CMAC and AES-128.
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LEDs are being used increasingly in automotive lighting applications to enable creative design elements, improve system efficiency and support advanced driver assistance systems (ADAS). NXP is developing a Matrix LED controller (MLC) IC so customers can address these advanced lighting applications. The MLC IC provides all the necessary functionality to ensure a compact, low-cost and robust design for advanced LED headlights. This new technology enables a three dimensional high-resolution control of the output of a headlight. In this session learn about the key trends and requirements for advanced LED headlighting and understand how the functionality of our MLC addresses these requirements. See the demo for your self!
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We will show you how to use and leverage the work done by NXP's board solutions team to increase quality, reduce design iterations, decrease costs, and reduce time to market. NXP has extensive manufacturing expertise and can provide guidelines and advice on symbols and footprints as well as product development challenges. NXP maintains a qualified library of parts to reduce costs and promote common components. Using a proven design process will help to reduce board spins and development time. Schematic standards will improve overall quality and taking advantage of design reuse will reduce cycle time. Watch Video Presentation
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This session will provide customers the opportunity to meet with a variety of LPC engineers and marketers to discuss critical topics for today's embedded applications, such as security, connectivity, power consumption, and time-to-market. Attendees will have the opportunity to discuss the latest LPC roadmap, ask technical questions, and provide direct feedback to the LPC leadership team.
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Near Field Communications (NFC) is appearing on many new smartphones, and offers secure money transactions (Apple Pay and Google Wallet) and convenient access to public transport or even your hotel room. NXP's NFC receiver is a key component that enables mobile NFC hardware. Today we'll talk about how to get more from your NFC experience by boosting the Smartphone battery voltage, or reducing the NFC antenna size - for more stylish slim phones - while not upsetting other circuits in the phone with unwanted RF noise.
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ARM® mbed™ OS is an open source embedded operating system designed specifically for the "things" in the Internet of Things (IoT). It includes all of the features you need to develop a connected product based on an ARM Cortex-M microcontroller, and is ideal for applications in smart cities, smart homes and wearables. Fast track your IoT application development with mbed OS and it's implementation on Kinetis MCUs.
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This presentation introduces the IoT Sensing SDK (ISSDK) and the Sensor Toolbox evaluation platforms. The presentation will show how engineers can use ISSDK and Sensor Toolbox to collect and visualize sensor data out of the box.
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Participants will use the Sensor Dataloggers from the previous class to gather data representing specific Sensor events and/or signatures. The participants will then use the Sensor Mining and Algorithm Development tool to create some simple algorithms for Accelerometers, Magnetometers, and Gyroscopes. By the end of this hands-on class, the attendees will have gathered Sensor experience using tools to quickly create and test algorithms.
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ARM® architecture provides virtualization extensions opening the path for efficient and performance-virtualized solutions. KVM, the de facto hypervisor technology in the Linux kernel, was recently extended to support this new architecture. In this presentation we will deep dive in various scenarios and benchmarks to address the best virtualization performance on ARM-based QorIQ SoCs and analyze the behavior of the system running KVM and Containers under different configurations.
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Recent trends are moving toward a Linux user space as an environment for packet processing. Hardware vendors have provided their own API in the user space for accessing data plane functions like sending and receiving packets, classification, scheduling, and acceleration. As the market matures, a shift toward a common API is allowing a degree of portability across hardware platforms. For DPDK or ODP, efforts are in place to create a platform independent and vendor-neutral standard API for optimized packet processing and traditional networking services. This session will provide a comparative analysis and evolution of both of these standards. We'll discuss how NXP is working to provide support for these common API without sacrificing performance or leveraging specific acceleration advantages of the NXP data plane architectures.
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Topics covered during this session will include a number of topics, including how to leverage LPC’s state controller timer (SCT) to creatively solve challenges faced in your embedded application, such as interfacing to digital LED control, hardware detection of a pulse when listening to sensors, and more. The experts will demonstrate why the LPC state controller timer (SCT) is the simplest timer in the market, providing hand-on training, walking you through a number of demonstrations where the SCT was able to solve fairly complex challenges.
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As IoT technologies and markets explode, selecting the right set of tools to get an idea off the ground as quickly as possible becomes a necessity for modern developers, PixiePro has the right set of performance and connectivity options to empower your next big project.
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In this session, we will review the next generation Kinetis Expert Configuration tools that will replace Processor Expert functionality. You can use these tools to generate pin muxing, clocking configuration and power consumption estimates of your low power solutions. Although the Kinetis SDK provides many good examples of how to use the SDK, the configuration tools come in handy when you begin to design your own hardware solution and need software to support your custom design using Kinetis MCUs. This class will get you excited about trying our tools, which you can experiment with online or in the Technology Lab. Watch Video Presentation
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