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TI Precision Labs - FPD-Link: What is FPD-Link?
Date:
Duration:
October 17, 2019
Duration:
11:31
Learn the fundamentals of FPD-Link technology including data interfaces, cables, concepts of serialization, and bidirectional communication
Connect: Build a robot in under 15 minutes!
Date:
Duration:
October 9, 2019
Duration:
06:18
Join Adrian and Mark to learn how to build a robot in under 15 minutes with the TI Robotic Systems Learning Kit (TI-RSLK).
TI Precision Labs - Magnetic sensors: Applications
The series of videos in this section will walk through some of the top Hall applications such as rotary encoding and proximity sensing.
Comparators overview: common functions and hero devices
Date:
Duration:
September 26, 2019
Duration:
28:05
Learn more about our portfolio of comparators
TI Precision Labs - Motor Drivers: Brushless-DC Basics
Date:
Duration:
September 23, 2019
Duration:
09:29
This video explains what a brushless-DC motor is, how it is constructed and what kind of circuit is required to spin it.
TI Precision Labs - Signal Conditioning: What is a Signal Conditioner?
Date:
Duration:
September 13, 2019
Duration:
11:36
This video explains the need for signal conditioners in high-speed communications.
TI Precision Labs - Signal Conditioning: How does signal integrity affect eye diagrams?
Date:
Duration:
September 13, 2019
Duration:
18:25
This video discusses signal integrity degradation and techniques used to overcome it.
TI Precision Labs - CAN/LIN/SBC: CAN and CAN FD Protocol
Date:
Duration:
August 9, 2019
Duration:
18:36
This training details the method that transceivers use to send information across a CAN bus and introduces CAN FD, discussing its tradeoffs and benefits.
DLP system block diagrams
Date:
Duration:
July 23, 2019
Duration:
04:50
This DLP Labs video looks at the various parts of a DLP display subsystem, including a typical block diagram and a discussion of the components in each section.
TI-RSLK MAX Assembly Guide
Date:
Duration:
July 22, 2019
Duration:
07:27
This video provides step-by-step directions on how to assemble the TI-RSLK MAX.
TI-RSLK MAX Module 16 - Lab video 1 - Testing the Tachometer
Date:
Duration:
July 22, 2019
Duration:
02:51
You will learn encoder, motor speed. motor direction, motor Performance, speed and time constant.
TI-RSLK MAX Module 5 - Lab video 3 - Construction video
Date:
Duration:
July 22, 2019
Duration:
07:30
The purpose of this video is to demonstrate the assembly of the TI-RSLK MAX.
TI-RSLK MAX Module 18 – Lecture video part I – Serial communication - UART
Date:
Duration:
July 19, 2019
Duration:
12:29
You will develop an interrupting device driver using the universal asynchronous receiver/transmitter (UART).
TI-RSLK MAX Module 19 – Lecture video part III – Bluetooth Low Energy – Simple Network
Date:
Duration:
July 20, 2019
Duration:
10:23
Interface the TI SimpleLink™ BLE CC2650 Module BoosterPack™ Plug-in module to the SimpleLink MSP432P401R LaunchPad™ development kit UART.
TI-RSLK MAX Module 18 - Lecture video part II - Serial communication - FIFO
Date:
Duration:
July 19, 2019
Duration:
08:39
Learn FIFO queues, buffered I/O and Little's Theorem. Perform measures of bandwidth and response time.
TI-RSLK MAX Module 19 – Lecture video part I – Bluetooth Low Energy – Wireless
Date:
Duration:
July 19, 2019
Duration:
12:43
The purpose of this lab is to create an interrupt-driven UART.
TI-RSLK MAX Module 16 - Lecture video part II - Tachometer - Interface
Date:
Duration:
July 19, 2019
Duration:
11:19
In this module you will learn how to design a system that can measure wheel rotational speed.
TI-RSLK MAX Module 15 - Lecture video part III- Sound generation
Date:
Duration:
July 19, 2019
Duration:
17:12
In this module you will learn how to interface sound generation
TI-RSLK MAX Module 15 - Lecture video part IV - sound recording
Date:
Duration:
July 19, 2019
Duration:
26:39
In this module you will learn how to interface sound recordings.
TI-RSLK MAX Module 11 - Lecture video - UART (for debugging)
Date:
Duration:
July 19, 2019
Duration:
20:31
In this module you will learn about UART for debugging.