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ASIC, FPGA, and DDR rail power design through PMBus power supplies

In this training series, you will learn how the PMBus communication interface powers ASIC, FPGA, and DDR Rail power designs. Browse through the following sessions:

  • Part 1: ASIC
  • Part 2: Adaptive Voltage Scaling (AVS)
  • Part 3: PMBus in Manufacturing
  • Part 4: Telemetry

What is DDR Memory Power?

Learn why it is important to have active DDR VTT terminators. TI offers a large portfolio of DDR2/3/4 2-in-1 VDDQ and VTT power solutions, as well as stand-alone, active DDR VTT terminators, both switchers and LDOs.

For more DDR memory power information, visit www.ti.com/ddr

Engineer It Analog How-to Training

Linear Regulator (LDO)

These training videos will be used to better understand LDOs, and include information on designing the best ADC power supply, stabilizing an LDO, measuring LDO noise and power supply rejection ratio, measuring thermal resistance between junction temperature and ambiance, and more.

Engineer It Analog How-to Training

Power Management

These videos provide a variety of power design advice, from suggestions on testing power supplies to reducing electromagnetic interference. Designers working with DC/DC, SEPIC and other topologies can find design tips from TI’s leading power experts.

Understanding MOSFET datasheets

When it comes to MOSFET datasheets, you have to know what you’re looking for. While certain parameters are obvious and explicit (BVDSS, RDS(ON), gate charge), others can be ambiguous at best (ID, SOA curves), while others can be downright useless at times (see: switching times).

Selecting a MOSFET

In complicated power designs, metal-oxide semiconductor field-effect transistor (MOSFET) selection has a tendency to be somewhat of an afterthought. While it’s just a three-pin device, appearances can be deceiving and trying to select the correct MOSFET or “FET” can be a task more complicated than you might think. In this 7-part blog series, we analyze a variety of typical FET applications, from power supply to motor control, and address the various concerns and trade-offs that dictate the FET selection process.

Introduction

Introduction into the design considerations and power supply design considerations

Power Topologies

Power electronics enables the activities of our everyday lives. At the heart of this world of power are converters that step voltages up or down to higher, more efficient levels or to lower, safer voltages. Power converters are broken up into two main categories, non-isolated converters and isolated converters.

High Frequency Challenges

Learn about how to overcome high frequency challenges using TI's series capacitor buck converter.

Tech Days

Overview and Demos

Were you unable to attend Tech Day but want to view the featured content? Did you attend and want to revisit a particular session? This series contains many of the sessions from the embedded processing, power supply design, signal chain, and wireless connectivity tracks. In addition, this series features recordings of select TI demos from the exhibitors hall.

Tech Days

Signal Chain

Were you unable to attend Tech Day but want to view the featured content? Did you attend and want to revisit a particular session? This series contains many of the sessions from the signal chain track. In addition, this series features recordings of select TI demos from the exhibitors hall.

Tech Days

Power

Were you unable to attend Tech Day but want to view the featured content? Did you attend and want to revisit a particular session? This series contains many of the sessions from the power supply design track. In addition, this series features recordings of select TI demos from the exhibitors hall.

TPS23861 PoE MSP430 Reference Code Training: Part 1

In this video, you will learn more about:

  • the TPS23861 PSE (Power Sourcing Equipment) controller
  • the three operating modes for the TPS23861
  • when you need to use the MSP430 reference code
  • how to get started

TPS23861 PoE MSP430 Reference Code Training: Part 2

In this video, you will learn more about:

  • the features implemented and high-level architecture of the reference code
  • the definition and archteciture of port power management
  • how to test and modify the reference code

Detecting magnetic tampering using hall-effect sensors

For anti-tampering, it is common to try to detect the presence of a strong magnet. In this section, we will cover the use of hall sensors for low-power detection of strong magnetic fields in three dimensions.  Details on our magnetic tamper detection reference design, TIDA-00839, will be provided as well as some of the design considerations that were kept in mind when creating this reference design.  

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