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100 Results

TI-RSLK MAX Module 6 - Lab video 2 – Demonstration of the lab solution

Date:
July 22, 2019

Duration:
02:20
The purpose of this lab is to interface the reflectance sensor to the robot.

TI-RSLK MAX Module 6 - Lab video 1- Demonstration of the reflectance sensor works

Date:
July 22, 2019

Duration:
03:05
The purpose of this lab is to interface the reflectance sensor to the robot.

TI-RSLK MAX Module 5 - Lab video 4 - Testing the TI-RSLK MAX

Date:
July 22, 2019

Duration:
03:01
The purpose of this lab is to test the system and the batteries.

TI-RSLK MAX Module 5 - Lab video 3 - Construction video

Date:
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 5 - Lab video 1 - Voltage and current from battery

Date:
July 22, 2019

Duration:
02:19
The purpose of this lab is to study the batteries and how they are used to power the robot.

TI-RSLK MAX Module 5 - Lab video 2 - Measuring power on the TI-RSLK MAX

Date:
July 22, 2019

Duration:
02:26
The purpose of this lab is to power the system from the batteries and measure the the voltage and current.

TI-RSLK MAX Module 4 - Lab video 1 - Debugging the solution, visualization, variables, step over

Date:
July 22, 2019

Duration:
03:56
The purpose of this lab is to interface a line sensor that the robot will use to explore its world.

TI-RSLK MAX Module 2 - Lab video 1 - Measuring the reactance of a capacitor

Date:
July 22, 2019

Duration:
03:21
The purpose of this lab is to review basic electronics needed to interface sensors and actuators to the microcontroller.

TI-RSLK MAX Module 2 - Lab video 2 - Measure LED (I,V) response curve, exponential relationship

Date:
July 22, 2019

Duration:
02:38
In this particular portion of the lab, you will measure voltage and current across the LED.

TI-RSLK MAX Module 1 - Lab video 4 - Running the TExaS Oscilloscope

Date:
July 22, 2019

Duration:
03:04
The overall purpose of this lab is to introduce some of the development tools needed to design your robot.

TI-RSLK MAX Module 1 - Lab video 3 - Running the TExaS Logic Analyzer

Date:
July 22, 2019

Duration:
03:20
Additional lab video for Module 1 lab for TI-RSLK curriculum.

TI-RSLK MAX Module 1 - Lab video 2 - CSS installation

Date:
July 22, 2019

Duration:
02:12
Lab video accompanying Module 1 - Code Composer Studio Installation and Module 1 lecture and lab from the TI-RSLK curriculum.

TI-RSLK MAX Module 1 - Lab video 1 - Code Composer Studio installation

Date:
July 22, 2019

Duration:
05:46
You will learn how to set up Code Composer Studio and import the TI Robotics System Learning Kit, Max Edition.

TI-RSLK MAX Module 1 - Lecture video - Running code on the LaunchPad using CCS

Date:
July 20, 2019

Duration:
11:03
Introduction to embedded systems with CCS and the TI-RSLK software installation.

TI-RSLK MAX Module 18 - Lecture video part II - Serial communication - FIFO

Date:
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 13 - Lecture video part I - Timers - Periodic interrupt

Date:
July 19, 2019

Duration:
14:28
In this module you will learn how to interface the DC motors using hardware PWM.

TI-RSLK MAX Module 11 - Lecture video - Liquid Crystal Display

Date:
July 19, 2019

Duration:
20:00
In this module you will learn how to interface a LCD to TI's LaunchPad development kit.

TI-RSLK MAX Module 19 – Lecture video part III – Bluetooth Low Energy – Simple Network

Date:
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 19 – Lecture video part II – Bluetooth Low Energy – Theory

Date:
July 20, 2019

Duration:
11:06
The purpose of this module is to understand basic concepts of Bluetooth® low energy (BLE).

TI-RSLK MAX Module 18 – Lecture video part I – Serial communication - UART

Date:
July 19, 2019

Duration:
12:29
You will develop an interrupting device driver using the universal asynchronous receiver/transmitter (UART).
100 Results
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