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Join this session to learn how to leverage and get started with NXP’s power optimized LPC546xx MCU family, which now scales up in performance to 220 MHz. With rich peripheral integration, which includes 21 communication interfaces, including HS USB, dual CAN FD, graphics controller, to package option scalability, these microcontrollers address the various needs of today’s embedded IoT applications. Leave the session with the knowledge and skills to get up and running with the LPC546xx MCU family, which includes our comprehensive ecosystem of software and tools.
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Learn how to go from an IoT idea to a proof-of-concept as easy as 1-2-3 for a connected, secure, small-form factor IoT end node. The Rapid IoT kit integrates 30+ active components (11 NXP parts) with drivers, middleware, example applications and features an innovative web IDE with GUI-based programming, as well as mobile App and IoT cloud services.
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NXP continues to expand the i.MX 8M Family with the  addition of the i.MX 8M Mini and i.MX 8M Nano products. Learn the features, performance and benefits of these products and which target applications they are most suited to. Attendees will leave the class with a deep understanding of the i.MX 8M family line-up and how to pick the right product for their application.
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The i.MX 8M was designed with consumer and industrial customers in mind. The i.MX 8M series of processors are the first in a completely new paradigm of processors designed targeting market leading performance for audio, video and voice. The i.MX 8M starts with a system solution in mind and drives optimized solutions (best in class performance, optimized system cost, built with Google/Amazon/Msft ecosystems in mind) for many different customers from HMI, audio, video, voice, IOT, digital signage, printers, machine vision, etc. Best in class 4K video with HDR, best in class audio interfaces, low-power and optimized for lower cost. Come see what this new family of processors is all about and learn where we are headed.
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Built with a high-level integration to support graphics, video, image processing, vision, audio and voice functions, the i.MX 8 series is ideal for Automotive applications. Join this session to learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of cost-performance scaling with pin-compatible options and the highest level of software reuse.
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This lecture will teach you the specifics of NXP's i.MX 8 AUTOSAR MCAL and Safety MCAL products. They render immense benefit to your product development cost and time as there is a shift in the ECU design approach from coding to configuration. They become essential components of the layered architecture of AUTOSAR for many automotive ECU products utilizing i.MX MPUs.
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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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Overview of an open battery management system reference design planned for PX4 enabled drones and Hovergames.com. Alternative use cases, unique features, and collaborative development challenges. Plans for battery health and open SW platform.
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As memory interface data rates increase, so does the need for ensuring proper margins have been designed into the system’s usage of that interface. One way Micron has studied the system’s usage of the memory interface is through Timing & Signal Analysis (TSA). A TSA attaches physical hardware to the memory device to observe a subset of the memory interface as operated by the system. Another approach to memory interface is Virtual TSA (vTSA). This method uses the memory controller’s training algorithms to provide margin information without the use of physical test hardware. This method allows characterization of the entire memory interface. This session will compare and contrast the two different methods, and will ultimately demonstrate the value of integrating vTSA tools on the system platform. We intend to reference actual results from the latest i.MX 8 QXP board.
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Solutions from NXP provide the right hardware, modular software, certifications, partners and documentation to accelerate time-to-market for our customers. Join this class to experience a deep dive on what is delivered from the newly launched SLN-POS-RDR Card Reader Solution.
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Technical deep dive on product architecture and software offering. Learn how to build an automotive application using the S32 SDK drivers, stacks and FreeRTOS. Integration with S32 Design Studio IDE, tips and tricks.
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Review of NXP’s current CAN portfolio and CAN functions, our support for CAN FD and an overview of the breakthrough products keeping CAN highly relevant for the new generation of vehicles.
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Hands-on starting with the i.MX 8M Mini EVK, we will cover the out-of-the-box enablement including software, tools, hardware design guides, and demonstration software. Attendees should leave this class with the confidence to start their own design using the i.MX 8M Mini.
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Extending the scalable range of the i.MX product line, the i.MX 8 series establishes an unmatched range of cost-performance scaling with pin-compatible options and the highest level of software reuse. Built with a high-level integration to support graphics, video, image processing, vision, audio and voice functions, the i.MX 8 series transforms your everyday interactions. Preview the next generation i.MX 8 series applications processors for Automotive, Consumer and Industrial applications.
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With the secure CAN transceiver, NXP offers a very efficient hardware based security solution for CAN Networks, complementing the overall NXP 4+1 layered security approach. This sessions clarifies, the different use cases and how STINGER helps on system level for a highly efficient solution.
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The presenter explains the key principles for localizing objects and gives a description of the silicon IP that is included in the KW devices and supports localization. Algorithms such as RSSI, Time-of-Flight and AoA/AoD are clearly described and examples of implementation are provided through the delivery of test results obtained on devices such as the KW35 and KW36. Partnership with external companies is also mentioned so that support can be obtained companies having a long experience in his technical domain.
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Introducing Murata Wi-Fi IBT Connectivity Modules for NXP i.MX & RT Platform.
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