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Connects - Training Material

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Join us to learn how to develop PCBs of all kinds and the complexity to perform well in harsh environments.
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Electronic system designers typically have a central processing unit that interfaces with other peripheral devices, other sub-systems or the user. Often, the signals from these interconnects may be incompatible on both ends. Therefore, various semiconductor devices such as analog switches, high speed switches, voltage level translators and GPIO expanders are often used to bridge between the interconnects on the board. In this session, we will present the broad portfolio of NXP’s interface and connectivity solutions that go around the processor. These solutions include signal switches, voltage translation, I2C interface devices, real time clocks, and temperature sensors. We will also present some solutions for managing the power to the system.
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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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In the past, auto HMI developers approached the instrument cluster, infotainment system and any other auxiliary driver displays as separate projects, each with their own unique challenges and requirements. With eCockpit HMI developers are tasked with approaching the cluster, IVI system, HUD, rear-seat entertainment and other screens in the vehicle as a single system of displays that have been fragmented within the vehicle and even run on a singular MPU. Examine the requirements for these new integrated cockpit systems. Discuss how design teams can deliver consistent language, look and feel across multiple displays with separate and varied purposes. Talk about the concerns related to safety and certification for system as it applies to a variety of auto standards and reveal how teams can successfully design these systems for a single processor family and reuse across low- high-end auto models.
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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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The material presented will be focused on the physics of electromagnetic energy basic principles, presented in easy to understand language with plenty of diagrams. Attendees will discover how understanding the behavior of EM fields can help to design PCBs that will be more robust and have better EMC performance. This is not rocket science, but an easy to understand application of PCB geometry.
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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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Deep dive into the vision processing architecture of the i.MX 8 family. Learn how to access the advanced processing features, the vision SDK, and the vision-based applications enabled by the i.MX 8 processor. This class provides an introduction to understanding the unique way in which machine vision is handled by i.MX 8. It forms a basic introduction class that is a precursor to the more advanced "Call Your Shot!" pool table demo class.
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With focus on different applications, this session will highlight both the Kinetis and LPC families. We will present the new members of each family and provide you insight of what you could expect from these families going forward.
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At Cog Systems, our sole objective is to both build and enable the world’s most secure connected devices. We provide the right foundations for you to build products that provide inherent security, performance, enable reuse, and flexibility needed to support next gen apps while also reducing build cost. We'll look at our system’s toolkit known as D4 Secure SDK. D4 provides key capabilities such as a type-1 hypervisor, various OS, RTOS support, secure boot frameworks, virtual drivers, and packages components such as VPN and secure storage so that you can quickly enhance or build new secure connected device products. Apply this toolkit to an NXP i.MX 6 applications processor based platform for constructing an auto domain/gateway controller and an infotainment system that combines multiple OS and real-time elements with a strong security posture.
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This session will provide an insight into all the sensor hardware and software tools, enabling customers to reduce their time to market. Find out about all the latest sensor tools and reference designs for IoT (Industrial/Medical) applications.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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Concept of SD-CPE, virtualization of functions/applications on CPE, centralized management of CPE by orchestrator, advantages, and applications scenario in home, enterprise and industry.
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Systems are complex, and increasing complexity does not translate to product differentiation. Extracting the maximum networking performance, battery life or graphics capability requires knowledge of the underlying silicon and software. Developer resources are tight, and shifting the focus to product development above platform development maximizes return on investment. Freescale has deep enablement technology, comprehensive support and a vibrant ecosystem available to assist getting your product to market quickly. For automotive, consumer, industrial and networking applications, learn how NXP extends the broad technology and support available today with custom access to experts. A brief overview of the products and services available across NXP will be augmented with case studies and expert Q&A.
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To use the processor in an integrated design is one way. To use an embedded module is another way and will speed up the design, reduce the design risk and lower the design cost. What limitations and restrictions are there, if any, if you use an embedded module? A market overview and guideline to select your embedded module.
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You innovate to make the vehicle autonomous & the most complex node in the Internet of Things. Increasingly functionality from consumer components is needed in your solutions. NXP, the leader in Automotive and high-end compute in Networking, highlights 66 critical differences that may generically exist between automotive and consumer components. Identified by a ZVEI industry workgroup (German Association of Electronics Industry) they impact reliability, quality and lifetime of vehicles. Examples demonstrate how NXP’s capabilities across all product segments and performance ranges reduce your hidden risks providing an excellent starting point towards your autonomous vehicle.
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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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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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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.
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