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Conclusion and More Information
This module concluds this traning session with highlights of the MSDI value propositions, as well as collaterals available to obtain more information about this MSDI device from Texas Instruments.
Ultrasonic Sensing with the PGA460-Q1
TI's PGA460-Q1 is the industry’s most flexible ultrasonic sensor. It supports wide distance detection range at low power, enabling automotive park assist and industrial applications.
Lens calibration for 3D Time of Flight systems
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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.
Rapid prototyping fundamental functions
These videos provide understanding of the fundamental functions used for rapid prototyping on TI solutions with minimal or no programming, including the following:
- Implementing necessary prototyping functions such clocks/GPIO, Read A/D, I2C/SMBus, etc.
- Seamless interface of various analog EVMs for customer “proof of concept”
- Standalone UI – Button, (GP Input - GPIO), LCD Display (“Hello”), Music, Serial Interface (Putty, Echo)
Rapid prototyping: Getting started with TI solutions
How many times have you said, “I would like to prototype an idea with TI silicon but I can not get software resources" or “I don’t know how to prototype/program.”
This training shows you how to get started prototyping on TI solutions with minimal or no programming, including the following tasks:
Rapid prototyping advanced topics
These videos cover advanced rapid prototyping topics .
Resonant Sensing for White Goods
TI's Resonant Sensing Technology is changing the landscape of the white goods market and home appliances by providing sleek new interfaces, enhanced system awareness, and improved system efficiency metrics. This training session covers the Resonant Sensing fundamentals, application deep dives, and finally tricks and tips for designing with the technology.
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.
TI Sensing and Processing Solutions for Cold Chain
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PGA460 ultrasonic sensing: How to set up and install the EVM
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Embedded processor selection and integration for 3D time of flight sensing
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PGA460 ultrasonic sensing: EVM hardware, transducer, and driver selection
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PGA460 ultrasonic sensing: EVM GUI introduction
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PGA460 ultrasonic sensing: EVM GUI device configuration
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PGA460 ultrasonic sensing: EVM GUI data monitor
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PGA460 ultrasonic sensing: EVM GUI system diagnostics
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Sensor signal conditioners for industrial applications: From concept to production
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Anti-tamper Techniques to Thwart Attacks on Smart Meters—Detecting case tamper attacks using inductive switches: Case Tamper Detection Implementations
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Anti-tamper Techniques to Thwart Attacks on Smart Meters—Detecting case tamper attacks using inductive switches: Designing PCB Inductors and Selecting a Target Metal
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