Labs are follow-along training videos that walk you through installation, building, and running example mmWave sensor projects.
TI's Jacinto TDA2/TDA3 System-on-Chip (SoC) family offers scalable and open solutions based on a heterogeneous hardware and common software architecture for Advanced Driver Assistance System (ADAS) applications including camera-based front (mono/stereo), rear, surround view and night vision systems in addition to multi-range radar and sensor fusion systems.
This training series provides an overview of the evaluation and development platforms as well as getting started with the software and development tools offered by TI on the Jacinto TDA2/TDA3 processors.
This video series describes the concept, design and evaluation of PoC (power over coax) commonly used in ADAS sub-systems.
EMI (electromagnetic interference) mitigation is a critical step in the design process in most electronic systems, and especially so in the automotive world. In many cases, automotive OEM emissions requirements are even more stringent than both national and international standards bodies like the FCC. Unfortunately, by their nature, switching regulators are sources of EMI; but, in order to keep power supply designs small and efficient, switchers are a critical component. So how can you reap the benefits of a switching regulator while still meeting challenging EMI requirements?
The mmWave training series is designed for you to learn the fundamentals of FMCW technology and mmWave sensors, and start development quickly. TI's portfolio of mmWave sensors features the AWR automotive radar sensor family and the IWR industrial mmWave sensor family, which are intended to be used for detecting range, velocity and angle of objects. Learn more about the silicon, tools, software and some of the applications for both mmWave families in the mmWave training series.
New to mm-wave sensing? This series of five short videos provides a concise yet in-depth introduction to sensing using FMCW radars.
These introduction videos describe the evolution of FPD-Link product families, and introduction to FPD-Link III SerDes for use in Infotainment and ADAS applications.
This video series describes the interfaces to sensor or video IO's of a graphics processor.
This video series describes the key parameters used in the FPD-Link high-speed serial link consisting of the serializer, transmission medium and the de-serializer.
FPD-Link Learning Center is a comprehensive online classroom for system designers integrating FPD-Link serializer/deserializer technology into their ADAS or Infotainment applications. The on-demand curriculum offers subject matter, from basics to advanced, to widen the technical knowledge of experienced engineers as well as assist those who are just starting to design with FPD-Link serializers and deserializers.
This section frames the design and operation video series by showing why it is important to contextualize customer problems in terms of the links between the devices.
Specifically, this section will discuss: issues with initializing the camera and issues with reading the incorrect serializer ID from the deserializer.