
Venues
Technical training and reception
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Technical training and reception
The Technical Training will be held at the Vistatech Center – Schoolcraft College (18600 Haggerty Rd., Livonia MI 48152).
We recommend you park in the Northwest Parking Lot.
Directions:
The customer appreciation reception will be held at German Park in Ann Arbor, MI.
Address: 5549 Pontiac Trl., Ann Arbor, MI 48105.
Directions
German Park is about 3 miles northeast of Ann Arbor. The easiest route is to take Huron Parkway north or Plymouth Road east to Nixon Road. Take Nixon Road north until it ends at Pontiac Trail. Take a right on Pontiac Trail towards South Lyon, and continue for about one mile. German Park is about 3 miles northeast of Ann Arbor. The easiest route is to take Huron Parkway north or Plymouth Road east to Nixon Road. Take Nixon Road north until it ends at Pontiac Trail. Take a right on Pontiac Trail towards South Lyon, and continue for about one mile.
We recommend wearing sensible shoes as the venue is outside.
Parking
German Park provides free parking for our guests.
In order to ensure the safety of German Park volunteers and all our guests. Please observe the following rules in the parking lots:
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Learn about emerging technologies and market trends in automotive lighting. Our presenters will explore topics including complex signature lighting, Vehicle-to-X communication, advanced safety features, and software driven architectures as they apply to LED lighting.
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This training will depict the migration of E/E architectures to map the functions of a Software Defined Vehicle (SDV). It will also show the potential influence of Chassis applications like Steer-by-Wire. Finally, it will show how Infineon is preparing to offer competitive solutions to different product families and that Infineon's technical support force is well prepared to offer premium support to customers.
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Regardless of the power switch type, Infineon has the solution with our line-up of Silicon IGBTs, Silicon Carbide MOSFETs, and Gallium Nitride HEMTs.
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Learn yet another reason why Infineon differentiates as a quality leader. We will describe how Infineon works with you to prevent known chronic customer issues during launch, to significantly reduce your expense and effort.
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Learn how Infineon's newest AURIX™ TC4x microcontrollers achieve new performance, safety, and security levels.
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Learn why Infineon has a unique advantage for combining Si IGBTs and SiC MOSFETs to optimize performance and cost in traction inverter applications.
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This session will review the justification, challenges, prerequisites, and architecture options for implementing a 48V power distribution architecture in passenger vehicles. It will also compare representative 12V and 48V subsystem solutions and discuss the implementation options for one of the core systems required, the 48 to 12V DC/DC converter.
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The modern automotive cockpit has evolved into a sophisticated hub of connectivity, entertainment, and safety features, placing unprecedented demands on the underlying computing architecture. By assigning specific tasks to dedicated companion microcontrollers, the application processor can be freed from time-critical low-level tasks. We will examine how using a companion microcontroller eases the development and reduces the time to market next-generation automotive cockpit systems.
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Interest in AI is at an all-time high. We’ve all seen some of the dazzling capabilities of high end AI systems running in the cloud on GPUs. But how can we make use of AI in embedded systems using microcontrollers? In this session you will see how Infineon’s Imagimob team makes getting started with Edge AI fast and easy.
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We will explore the advantages and disadvantages of wired and wireless solutions for Battery Management Systems and how Infineon can support both architectures.
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Join us for lunch in room VT400AB.
After lunch, see the latest innovative technology with our live demonstrations.
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Zone architectures group ECUs and their related components based on their physical location within the vehicle, rather than by functional domains. You will learn about the evolution of zone architectures and the benefits that they offer, including efficient power distribution and the support of advanced features through a software-defined vehicle. Ethernet T1S is a key enabler of the shift to zone architecture and software-defined vehicles (SDVs). We will describe how 10BASE-T1S facilitates the Ethernet-to-the-edge connectivity required by zonal-based architectures.
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Join us for an insightful training session as Infineon launches OptiMOS™ 7, our latest power MOSFET technology featuring innovative and robust package solutions. Gain a comprehensive understanding of the key features, benefits, and unique selling points of this cutting-edge technology. We will also introduce you to our newest package developments, including the all-new topside-cooled SSO10T package and a new and enhanced Dual 5x6 package.
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Learn how Infineon Power Supply and Monitoring ICs can help achieve ASIL D ratings in safety critical applications. This session will cover Infineon's general purpose PMIC and include a special focus on the Traction Inverter specific PMIC.
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Mechanical fuses have protected wires and circuit protection against extreme thermal events since the early days of the automobile. Although relatively simple in their concept and operation, these fuses are being replaced by smart semiconductor devices to provide advanced wire and circuit protection, increase diagnostic monitoring, reduce the cost of the wire harness and enable advanced safety design towards autonomous driving. Join us as we discuss the motivation for electronic fuses in next-generation vehicle architectures.
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Learn how new 4D imaging radar solutions offer increased object separability, improved resolution and elevation measurement capability compared to standard radar in the market today. Imaging radar addresses more complex use cases for ADAS L2+ and will enable AD L3 and L4 at increased ODD, like highway crossings, close drive by and complex bridge and tunnel scenarios.
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A traditional Zero Crossing Detection circuit comprises of a small transformer, two comparators, and an RS flip-flop…in addition to a pair of resistors to provide a reference voltage. In an effort to add system value, performance and convenience a coreless current sensor has been developed that integrates these components to provide Zero Crossing Detection in a single Surface Mounted Device (SMD). Soft switching, synchronous rectification, reduced switching losses and improved efficiency are achieved with fewer components and design resources.
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Microcontrollers nowadays offer extensive graphical capabilities that enable compact designs, cost-efficiency, and lower power consumption. With features such as instant boot-up, small footprint and efficient real-time processing, they are widely used in various sectors, including automotive instrument clusters, two-wheelers, and construction machinery. By integrating the Qt graphics solution directly into these MCUs, Infineon further optimizes these devices and enables intelligent rendering technology with benefits such as: MPU-level performance with significant cost savings, Boosted productivity with up to 50 percent shorter time to market, and Unrivalled performance with highest frame rate, lowest footprint. Come learn more on this new paradigm of efficiency and performance!
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We're working hard to bring you a description.
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New features in the 3rd Generation AUIRX™ make it the ideal solution for DC to DC conversion. Come learn why an AURIX™ should be in your next DC to DC converter.