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70 Results

3D Time of Flight illumination subsystem design and component selection

Date:
October 6, 2017

Duration:
14:44
Learn about key illumination design considerations in 3D time-of-flight sensors.

3D Time of Flight system offset calibration

Date:
October 6, 2017

Duration:
12:18
Learn how to perform system offset calibrations for 3D time-of-flight sensors.

3D Time of Flight: Understanding the system trade-offs

Date:
October 18, 2017

Duration:
10:11
Learn how design parameters impact system performance.

3D time-of-flight image filtering

Date:
November 8, 2016

Duration:
08:20
This training video reviews commonly used filter algorithms for 3D time-of-flight sensors that are available as part of the Voxel SDK.

3D time-of-flight sensor theory of operation

Date:
October 25, 2016

Duration:
06:14
Explore the theory of operation behind 3D time of flight sensors.
3D Time-of-Flight Sensor for Occupancy Detection: Body Tracking and People Counting

3D time-of-flight sensors

Learn about TI 3D depth sensing technology and implementation for industrial, automotive and consumer applications including gesture control, 3D scanning, robotic navigation, augmented reality and people counting. For additional information about 3D time-of-flight technology and design resources, please visit ti.com/3dtof.

3D TOF occupancy detection: body tracking and people counting

Date:
September 23, 2016

Duration:
04:36
3D Time-of-Flight sensors enable occupancy management and people counting applications, by efficiently locating and tracking people in an environment.
Learn about 3D Time of Flight Sensors for Obstacle Detection, Collision Avoidance and Navigation

3D TOF robotics: obstacle detection, collision avoidance and navigation

Date:
September 13, 2016

Duration:
03:47
Learn how 3D Time-of-Flight sensors are enabling consumer and industrial robots.

Advanced features of the MSDI

This module discusses some of the advanced features offered by the MSDI, and how a system designer can take advantage of these features to improve their system performance.

Anti-tamper Techniques to Thwart Attacks on Smart Meters— Summary

Date:
April 12, 2017

Duration:
01:00
In this short module, a summary of the entire “Anti-tamper Techniques to Thwart Attacks on Smart Meters” training series will be covered.

Anti-tamper Techniques to Thwart Attacks on Smart Meters—Detecting case tamper attacks using inductive switches: Case Tamper Detection Implementations

Date:
April 12, 2017

Duration:
07:10
This module discusses the common mechanical implementation for case tamper detection and a new way to detect case openings using inductive switches

Anti-tamper Techniques to Thwart Attacks on Smart Meters—Detecting case tamper attacks using inductive switches: Designing PCB Inductors and Selecting a Target Metal

Date:
April 12, 2017

Duration:
03:12
This module covers how to design and optimize PCB coils used for the inductive-based case tamper detection implementation. 

Anti-tamper Techniques to Thwart Attacks on Smart Meters—Detecting case tamper attacks using inductive switches: TIDA-01377 Case Tamper Detection using Inductive Sensing Reference Design Demo

Date:
April 12, 2017

Duration:
07:35
Watch the TIDA-01377 in action as it detects when someone opens the terminal block case of an electricity meter!  

Application deep dive: Gesture control

Date:
October 25, 2016

Duration:
06:16
Deep dive on how 3D time-of-flight for gesture control enables hands-free operation of equipment: from home entertainment to operating room instruments.

Application deep dive: Robot navigation

Date:
October 27, 2016

Duration:
04:09
Smarter robotics: 3D time-of-flight sensors enable autonomous robot navigation. 

Challenges in today’s Body Control Module (BCM) design

Date:
April 21, 2017

Duration:
11:44
​Challenges in today’s Body Control Module (BCM) design

Challenges in today’s Body Control Module (BCM) design

This module discusses discrete implementation typically seen inside automotive body control module to monitor external switches. Common implementation methodology is reviewed in this section, and some of the challenges using discrete implementation is discussed in detail.

Choosing the right proximity sensing technologies for your application

More and more end equipment start to use proximity sensors to detecting the presence of nearby objects without physical contact by using electromagnetic fields, light or sound, e.g. major appliances, cell phones, robot and so on. There are many types, each suited to specific applications and environments. The object being sensed is often referred to as the proximity sensor's target. Different proximity sensor targets demand different sensors. By analyzing the basic principle of different types of sensor, comparison result with advantages and disadvantages can be achieved.

70 Results
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