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New courses are online at the beginning of the school year! Learn the latest TI training courses and win gifts [Copy link]

 
 Students, TI training has a new course! 2019.3.1 – 3.31, anyone who watches the latest TI training course and takes a screenshot and replies will have a chance to win exquisite gifts. Latest course list[size=4 ]↓↓[/size ] TI Precision Labs - Isolation
TI Precision Labs is the electronics industry's most comprehensive online classroom for analog engineers. On-demand courses and tutorials combine theory and applied exercises to deepen the technical expertise of experienced engineers and accelerate their development early in their careers. This modular, on-demand curriculum includes hands-on training videos covering isolation design considerations with TI online course assignments and quizzes. The isolation courses are divided into major topic learning categories, each containing short training videos, multiple-choice quizzes and short-answer exercises. Suitable for:Analog engineersCourse information:7 lessons in total, 1 hour, 2 minutes and 54 secondsWatch course>>
TI's new generation of RGB LED drivers "light up" human-computer interaction
This live broadcast will systematically introduce how to use TI RGB LED drivers to enhance the human-computer interaction experience, analyze in detail the design highlights of the new generation of RGB LED drivers LP50 series, and guide users to use the LP50 evaluation board kit to achieve rapid development of human-computer interaction interfaces. Suitable for:Electronic EngineersCourse Information:Total 4 lessons, 41 minutes and 32 secondsWatch Course>>
How High-Voltage Isolation Technology Works
Want to learn how high-voltage isolation technology works? Observe and understand the reliability test of isolation. This series of videos was shot in TI's high-voltage laboratory and focuses on capacitor isolation structure, working voltage reliability, withstand voltage capability, reliability test methods, etc. Suitable for:Analog EngineersCourse Information:Total 3 lessons, 24 minutes and 0 secondsWatch Course>>
How to use GaN to design reliable and high-density power solutions
The new generation of power design enabled by Gallium Nitride (GaN) technology has turned the impossible into reality. These designs enable engineers to achieve unprecedented power density and power efficiency while providing reliable and solid quality assurance. The purpose of this course is to help both novice and experienced power engineers to easily understand GaN technology, as well as the key points of power design based on GaN devices with high power density and efficiency, including reliability, device selection, etc. Suitable for: Power engineers Course information: Total 1 class, 34 minutes and 50 seconds Watch the course>>
24V, 480W High Efficiency AC/DC Industrial Power Supply Reference Design
This course introduces a reference design for industrial power supply, or rail power supply and battery charging applications. The rated output voltage of the reference design introduced is 24V, the rated output power is 480W, and it also has a 1.5 times overpower output function, which can provide 720W power output within 3 seconds. The overall efficiency of this reference design exceeds 93.5%, and the peak efficiency is greater than 94%. Its power factor and THD meet international standards, and it has fast dynamic response and very complete protection functions. It is a reference design that is very close to the final product. This video mainly introduces the TIDA-494 reference design, including the main features and advantages, important design indicators, circuit structure and analog controller used, as well as the final circuit test results and test waveforms. Suitable for people: Power engineer Course information: A total of 1 class, 4 minutes and 32 seconds Watch the course>>
Ultra-high efficiency, ultra-small size 65W adapter design with USB Type-C PD
This video introduces a 94% efficiency, 30W/in3 power density 65W adapter reference design with USB Type-C PD, and partially tests the reference design in the laboratory. Suitable for: Power EngineersCourse Information: 1 class, 4 minutes and 5 secondsWatch Course>>
For more new courses, please visitTI Training - Latest Courses>> Activity Rules: 1. This activity will be in the form of a floor grabbing event. The winning floor = the total number of floors at the end of the activity × percentage 2. The percentage of winning floors: 3%, 13%, 23%, 30%, 33%, 53%, 63%, 73%, 83%, 93%, 100% 3. The progress of watching the video must be greater than 50%, greater than 50%, greater than 50% (important things should be said three times), and dragging the time progress will be considered invalid 4. For the same person, each course can only participate in the floor grabbing event once, and each person can only grab the floor up to 3 times. Multiple grabs or vest grabs will be invalid. 5. Among them, 3%~23% of the floor prizes are Mijia desk lamps; 30%~53% of the floor prizes are Xiaomi constant temperature kettles; 63%~100% of the floor prizes are Xiaomi smart sockets 6. In case of decimals, the calculation rule is rounded off. The same user cannot win the prize repeatedly, and the duplicate prizes will be postponed to the next floor; if the winning floor is a water post, it will be postponed to the next floor. 7. The final right of interpretation of this event belongs to the EEWorld community, and everyone is welcome to supervise the entire event. Event prizes:
                                          
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This post was last edited by stormbreaker on 2019-4-1 09:52 [attach]407856[/attach]  Details Published on 2019-4-1 09:03
 

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Learning makes me progress   
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射频【放大器】

 
 
 

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This post was last edited by Lazy Cat Aifei on 2019-3-1 13:35 1) The explanation is good 2) I will learn more about it when I have time in the future 3) Thank you for sharing!

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The isolated modulator can eliminate the signal path noise from the ground loop and protect the system from the influence of the ground loop potential difference. The second reason for using an isolated modulator is to provide high voltage protection. I learned that I was recently working on a drive circuit for driving an inductive load. Without isolation, the program would run away after each control. Finally, the isolated 5V power supply was used, and the microcontroller drove the optocoupler to achieve the control purpose.
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[attach ]403681[/attach]

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Good video, the technical content is very practical, and TI's products are very good

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It is always good to learn more. You should finish reading it before the weekend Those who are interested should think about it. Those who are not interested should skip it.
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These tutorials are still very good [attach]403726 [/attach]

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Actually, I just remembered to take a screenshot after I finished reading it, and then read it again. I am more interested in lamp control, so I read this first. The LP50 LED driver launched by TI keeps up with the times. It has high integration and convenient control, which greatly simplifies the design complexity. It is great. I hope the price and supply can also be good.
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Very good video material, please share it.

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This post was last edited by zxw1126 on 2019-3-1 18:18 Very good video material, please share it more.

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Very good video material, please share it.

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So tired, I finished watching 5 lessons
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I have used TYPE-C before, but I didn't use the PD function. Very good information, thank you for sharing!

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ZHIC
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Learn about the challenges and solutions of isolated gate drivers
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It is independent from the MCU and can be controlled autonomously. This function is great and can save power consumption.
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