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580 Results

Soft-Start Time Selection

Learn to select the soft-start time for your converter design.

Converter Layout

Learn the PCB layout of the series capacitor buck converter.

Design Results

Get started designing with the series capacitor buck converter using a reference design and examine the design results.

Introduction to Battery Powered Motor Drive Applications

In this introductory training learn multiple battery powered motor drive applications, get an overview on the battery & motors commonly used as well as motor control methods. 

Power Stage: High Performance Parameters & Selection of MOSFETs and Gate Driver

Learn about the motor drive subsystem in a cordless power tool, high performance parameters and the selection of MOSFETs and gate driver to achieve high performance parameters in the power stage.

Battery Powered Motor Drives: Power Stage Design

Learn about the power state system design aspects, effect of ON state resistance of MOSFET and design challenges 

Power Stage Protection, Current Sensing, Efficiency Analysis and Related Reference Designs

Continue learning about the protections in power stage, current sensing and efficiency analysis. Relevant reference designs will be also discussed. 

Introduction, value proposition and benefits

Series introduction to Mobile Smart TV and the market

Design considerations

Mobile Smart TV design considerations

Benefits of DLP Pico technology for Mobile Smart TV

Benefits of DLP in the Mobile Smart TV  application space

Introduction

This section covers wireless network trends, key technologies, and problem statements for smart grid IoT. 

6LoWPAN-based Wireless Network Protocols

This section covers system-level deep dive on key wireless network protocols of 6LoWPAN, RPL, and CoAP for smart grid IoT. 

System-Level Examples for Wireless Networks on Smart Grid IoT

This section covers system-level examples for wireless networks on smart grid IoT. We will provide software- and system-level details for two system examples: 6LoWPAN-Contiki and sub-1GHz sensor to cloud industrial IoT gateway reference design. 

Summary

This section summarizes the wireless network challenges and solutions for a smarter grid IoT training series. 

Introduction

This section covers what is meter tampering, why is this a problem for utility providers, and some common ways a meter is tampered.

Detecting case tamper attacks using inductive switches

The first line of defense against tampering by bypassing current, reversing connections, and disconnecting leads is the meter case. Due to this, it is common for utilities to require some form of intrusion detection system to detect when someone opens a case.  In this section, we will cover how to detect someone trying to open the case of a meter.

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.  

Hardening a meter against magnetic tamper attacks

In this section, we will cover how to harden a meter against these magnetic tamper attacks by using shunts for current sensors. For poly-phase implementations, I will go over how to use isolated delta sigma modulators to add the necessary isolation to use shunt current sensors and create magnetically immune poly-phase energy measurement systems. The TIDA-00601 and TIDA-01094 reference designs, which show how to implement a poly-phase isolated shunt measurement system, will be discussed as well as the associated AMC1304 high-side power supplies used in these designs.

Summary

In this section, a summary of the entire “Securing Smart Meters from Attack with TI Analog” training module would be covered.  This summary would cover the “Detecting case tamper attacks using inductive switches “, “Detecting magnetic tampering using hall-effect sensors “,  and “Hardening a meter against magnetic tamper attacks “ sections of the training series. Links will be provided for the reference designs and design tools that were discussed during this training series.

Learn about multiplexers

TI Precision Labs - Multiplexers: On-resistance Flatness and On-capacitance

This TI Precision Labs training video provides an overview of the on-resistance and on-capacitance parameters of multiplexers. It explains how on-resistance can cause gain error and non-linearity, as well as how on-capacitance can affect settling behavior of multiplexers.

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