FTF 2015 Training Presentations

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FTF 2015 Training Presentations

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As automotive applications become more complex, an increasing number of solutions require the use of external memories for cost-efficient program and data storage. This presentation reviews the characteristics of memory used in Freescale automotive processors and controllers and summarizes the application benefits of each. Memories interfaces and technologies included are: SDRAM, QuadSPI, I2C, SD and SDIO, NAND Flash and USB.
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S12ZVM family provides ideal combination of high integration and high-performance for space constrained motor control applications. S12ZVM family is expanding to cover many more applications with capability to directly interface with LIN or CAN networks. It is an ideal controller to have a platform strategy for multitude of motor control applications. This session will provide a basic understanding on 3 phase motor control, value of using S12ZVM in various applications and overview of the mature S12ZVM enablement solutions that can help spin the motor in no time and can help to extract the highest performance from the device.
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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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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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Learn about Freescale’s pressure sensors and how they specifically support patient monitoring data collection. These sensors can maximize content collected from patient analytics to transfer to the cloud (Big Data) to enable doctors and health providers to determine patient health, analytics, compliance to medical protocols and adherence of the patient to doctor’s instructions.
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This session introduces Freescale's FXTH8715 TPMS that monitors tire pressure up to 1500 kPa, which provides the highest range in the industry. The solution can also be programmed to deliver tire usage data to facilitate fleet management.
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Macronix Inc. launched its newest MX25R family of Flash memories, targeted specifically for the IoT and other energy conscious applications, such as wearable and mobile devices. The new MX25R product family focuses on lower power consumption to enabling extended battery life. This new product family will offer densities from 512Kbit up to 512Mbit. It support an industry standard memory interface, ultra-small product packages plus Known Good Die (KGD) option for System in Package solution.
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Introducing a temperature dependent current limit for motor drivers. This thermal management scheme ensures high efficient operation by reducing switching losses when the motor is experiencing heavy loads or binding.  In the presentation we will discuss factors determining power dissipation in a motor driver integrated circuit examining dynamic and steady state operation and the effect on junction temperature. We will review how to calculate an estimate of power dissipation using the information provided in a typical motor driver data sheet. With an understanding of how power is dissipated in a motor driver, we will introduce a new system using temperature dependent current limit that will protect both the driver and the motor.
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Lauterbach company profile and Lauterbach product overview. 
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Learn about Freescale's first low-power, quad-core 64-bit ARM® processor.  This device is targeted for several growth segments including:  Industrial networking and control, small to medium services routers and gigabit rate residential gateway's.
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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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Network functions virtualization is promising to be a disruptive influence in the networking marketplace, leveraging software defined networking capabilities to virtualize network services that are currently carried out by dedicated special-purpose hardware. If successful, NFV will reduce operator dependencies on proprietary hardware and software, providing operators greater control over time-to-market, reduced cost structures and significantly lower operational costs. The market forces behind NFV will be examined and the NFV architecture will be introduced with particular attention paid to mapping of QorIQ LS series technology to anticipated NFV needs for greater levels of acceleration and offloads.
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This session will cover Human Machine Interface (HMI) design principles, best practices for developing a user experience, and optimizing art assets for embedded devices. This session is for people in the trenches - designers, programmers, marketers, even your boss. Put the "H" in the HMI and learn how to make interfaces for real humans. Learn how to optimize your assets. Take that million polygon count with 4k textures and run it in your device. Save the day, make it work.
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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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The large scale deployment of the IoT will not be possible without resolving current major security issues and challenges. This can be resolved using few key security software components. From its experience securing smartcard systems, P&R is the first in the industry to get certification agencies to work on certifying its formally proven software to the highest security level. The speaker will describe the key software components already developed by P&R and the ones soon to be available as COTS to Freescale’s customers and partners. He will illustrate them using representative examples showing how such key security components can be used to answer all the critical security challenges of the IoT. The speaker will also present how ProvenCore, a fully secure microkernel and a major component of P&R range of security bricks, has been designed to reach the highest level of security.
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This intermediate hands-on session will walk you through the steps to boot, debug, and inspect U-boot, the Linux kernel and drivers, and Linux applications.  Learn about the debug and trace tools that are available to solve complex problems in Linux.  This session will use the CodeWarrior Development Studio for ARMv8 ISA and open-source tools to boot the QorIQ LS2085A RDB and demonstrate how to debug Linux modules and use tracing and performance tools in Linux.
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Many existing safety applications, e.g., in railway signaling, are based on aging, proprietary computing systems. These range from hard lock-step, hardware voting architectures, to software-based voting. Each approach brings costs in performance, scalability, life cycle and software development/portability. Some have not achieved Safety Integrity Level (SIL) 4 certification (per the EN 5012x rail standards), which is now a worldwide requirement. This presentation gives an overview of an architecture for a COTS fail-safe computer (ControlSafe™) that combines “loose” lock-step with hardware voting, to provide software transparency, scalability and SIL4 certification. The platform employs distributed Freescale QorIQ processors. Leveraging such a platform, safety application providers can plan technology refresh while maintaining the investment in/focus on their application software.
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In this hands-on workshop, learn how to build your next motor control application using Kinetis V series MCUs and Freescale’s comprehensive set of complimentary motor control software and tools, such as Freescale's Embedded Software Motor Control and Power Conversion Libraries (FSLESL), Kinetis SDK, Kinetis Design Studio IDE along with Tower System Module rapid prototyping - all designed specifically to reduce you development time.
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Kinetis Microcontrollers (MCUs) consist of multiple hardware- and software-compatible ARM Cortex-M0+, Cortex-M4 and Cortex-M7-based MCU series. Kinetis MCUs offer exceptional low-power performance, scalability and feature integration.
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The Freescale RF Power Tool system is a customer enablement testing methodology that allows the lesser equipped RF design companies to easily and cost-effectively evaluate the latest Freescale RF power devices. The tool is an integral set of both an RF generator and a test fixture monitored by a wide variety of DC and RF sensors. In this class, we will cover the capabilities and limitations of the RF Power Tool system, dive into some of the options of available measurements, and list why those specific operating parameters which are most important to customers.
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