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Connects - Training Material

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Discussions

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High performance processing in systems with high functional safety requirements has historically been a small segment in the overall processing market. Aerospace, high-end industrial, train & power grid control are traditional applications requiring high computing power with high fault detection coverage, and this ‘niche’ is exploding due to highly autonomous vehicles. This session will review the use of NXP’s multicore processors in traditional safety critical applications, and the retroactive analysis of the Layerscape product family’s fault detection mechanisms and coverage.
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With safety being omnipresent in automotive development today, a scalable portfolio with dedicated power management solutions means that NXP makes fulfilling safety requirements easy! Learn more about the broad portfolio of safety products and solutions on offer that bring ISO 26262 and proven safety architectures to your designs.
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Technical presentation about hardware based secure CAN communication and the benefits for the ECU design, the system approach as well the support for IDPS.
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Introduction of new part, tailored for long daisy chains in HV systems and ESS. BOM cost optimizations with new revC, including capacitive coupling. Introduction of new BMC and CMC reference designs, showing new levels of cost, size and performance optimization.
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ADAS roadmaps, value proposition, current and future plans for tools and reference designs.
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Join this session to get a glimpse of where you will see i.MX 8/8X in the near future and why graphics, ML, AI, video, image processing, vision, connectivity, audio and voice functions make the i.MX 8 series ideal for Automotive and Industrial applications. Learn about the i.MX 8/8X families that are comprised of common subsystems establishing an unmatched range of performance scaling with pin-compatible options and the highest level of software reuse. In addition, learn more about the upcoming i.MX 8DualMax product line to help customers meet additional cost performance scaling across the i.MX 8 family.
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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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Expect your platform to boot in less than one second...do your customer's demand it? Even if that is not fast enough for some cases...we will discuss what can be done to improve the booting performance. Learn from the experts on how to architect and optimize the boot process from boot ROM, boot loader through to OS and applications.
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This class will provide an overview of NXP's broad and scalable MCU 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. This class will demonstrate how to build your own cloud connected end node with our latest power-efficient LPC54018 flashless MCU which will use Amazon Web Services (AWS). This class will also briefly introduce the LPC8N04 based product demonstrations and reference designs to teach you how to build your own NFC based end node.
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Introduction to A100x secure authenticators including new A1007, as part of overall training authentication protocols, what to look for in security IC and potential use cases.
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This is a highly integrated eLock platform for a rocket start in the Chinese (residential) access market. It features NFC, BLE, fingerprint, keypad entries and can be easily configured using WeChat “mini programs” platform for maximum compatibility with existing cell phones. Learn more about the products behind - NFC controller PN7362AU and BLE controller QN9021 – and how this highly integrated eLock solution can dramatically simplify the configuration for end users.
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NXP provides total USB Type-C AC/DC solutions with higher Power density, security and safety with leading technologies that enables time to market, solving application challenges and complying to key global Power regulations. NXP solution supports USB-PD, BC1.2 and Leader in QC4.0+. Resonant AC/DC supplies have superior efficiency at high power output. The TEA1916+ TEA1995 is a digital controller simplifying the complexity of resonant LLC designs and providing easy tuning. It succeeds the very popular TEA1716 used in many resonant Switch Mode Power Supplies for e.g. PC's & TV's, but the TEA1916 is actually very suitable for any power supply > 75W, e.g. medical, industrial and server power supplies. The TEA1916 uses a new digital cycle-by-cycle architecture (Vcap control) to enable a new type of operation at low-power loads.
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Power saving is always so important for power supply. So many well-known regulations have played an important role this year to drive this direction, like EUP Lot6, DOE, COC, Energy Star, etc. However, nowadays,since IoT is so popular what is expected for power saving? What will power look like for TV power, PC power, adapter and fast charger? In this class NXP will help audiences to understand NXP’s AC/DC power controller IC portfolio-- from 1W up to 350W.
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i.MX RT product is the most popular crossover MCU products in market this year. Positioning as MCU product, i.MX RT can certainly reuse the traditional Arm MCU ecosystem. Besides, this session will provide an overview introduction of i.MX RT series and their target market applications, then share the existing hardware/software/tools/documentation enablements for overall picture. Finally typical reference solutions on i.MX RT are introduced for better understanding what NXP offers to support customer for quick project development.
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This session will provide an overview of the NXP wireless charging solutions portfolio with integrated NFC communication in wireless charging transmitters. Attendees will receive a clear understanding about NXP’s state of the art transmit and receive reference designs available for automotive, consumer, appliance and infrastructure markets. This session will also provide the in-depth technical details and guidance of the design of wireless charging transmitter and receiver. Also a review of NFC/RFID cards protection that cover both low-power and medium-power applications will be presented.
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This session will first provide an overview of the products, software and enablement that NXP's wireless connectivity MCU portfolio includes to address the IoT market. Then, it will provide a deeper dive and demo on the Thread™ networking technology and how to develop an application using NXP's Thread Stack and ZigBee® Dotdot application layer. This session will also introduce the NXP BLE product family including the latest QN9080/83 ultra low-power BLE WMCU and KW35/36 automotive and industrial BLE WMCU, detailing targeted use cases, the device features, highlighting BLE and stacks as well as supporting enablement.
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This class will provide an overview introduction of i.MX RT series, including their key features and key peripherals. This session also explores the design and implementation of a secure boot by making use and protect against firmware attacks. Secure designs begin with a security model consisting of policies, an understanding of the threat landscape and the methods used to enforce physical and logical security. To protect firmware execution given today’s threat landscape, there must be a policy to only allow execution of authenticated firmware. The methods used to enforce this policy rely on MCU security technology to create a protected boot flow. The boot firmware can contain public key cryptography to authenticate application code.
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This session will cover in detail some of today's most popular IoT sensing applications such as Asset Tracking, Machine Condition Monitoring, Activity Monitoring, Keyfob, Smart Door, Smart Ball, Inhaler, HVAC, etc. This will involve showcasing NXP's demos/reference designs to explain the execution of some key applications. It will also cover low-power techniques on implementing the above applications.
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NXP’s end-to-end solution for USB Type-C offers ease-of-use integration into customer designs and includes AC/DC converter for power supplies, PD PHY and CC Logic Controller, direct charging, signal re-drivers, signal switches, load switches and authentication.
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