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Zephyr project on STM32

   Zephyr Workbench, a VSCode extension to manage Zephyr on STM32.
It enables users to easily create, develop, and debug Zephyr applications.
Main features:
  • Install host dependencies.
  • Import toolchain and SDK.
  • Create, configure, build and manage apps.
  • Debug STM32.
You can directly download it from the VSCode marketplace
For more details, visit the Zephyr Workbench

System Workbench for STM32


Charger firmware

Hello, everyone.
I need the HEX file for the charger HTRC B6 V2, I’m looking at Google Uncle but it doesn’t help, the charger can’t read the file. Hex because it’s protected, at least I can’t read it I got a message “device is protected”
The charger is Procku STM8S207R8T6Question. I wrote to HT-RC but to no avail.

Hello!
I am using the UK243B USB test application KEVIEW to perform compliance testing on my board CYSUB3014-BZXC.
In the device TX test, the oscilloscope cannot get any waveform from the CysB3014.
Since I have tried the compliance test on a USB flash drive (mass storage disk) and the results are OK.
I guess the problem is with the CYUB3014 setup.
What should I do to make the CYUSB3014 ready for compliance testing?
Should I change the firmware or do something through the((https://www.fpgakey.com/tutorial/|# FPGA| FPGA))?
This is the information on my board for the CYYSB3014: 1.
1. the firmware is SlaveFIFoSync
2. connected from FIFO interface (GPIF II) to FPGA (altera)
The following are the steps of the device TX compliance test.
1. Install the board and download the firmware to CYUSB3014
2, connect the USB((https://www.jotrin.com/technology/mcu|MCU ))connector on the board to the test fixture (KEYVIEW), picture upload
3, run the TX test software (KEYVIEW’s U7243B)
4. Disconnect the test fixture and reset the CYUSB3014 (as required by the software)
5. Download the firmware to CYUB3014, connect the test fixture and wait for a valid waveform.
Then, the oscilloscope can’t get any waveform.
By the way, I also tried to control the FPGA to send data to the device and the result is the same.
Looking forward to your reply.


I guess the problem is with the CYUB3014 setup.
What should I do to make the CYUSB3014 ready for compliance testing?
Should I change the firmware or do something through the FPGA?
This is the information on my board for the CYYSB3014: 1.
1. the firmware is SlaveFIFoSync
2. connected from FIFO interface (GPIF II) to FPGA) (altera) 32bit MCU
The following are the steps of the device TX compliance test.
1. Install the board and download the firmware to CYUSB3014
2, connect the USB connector on the board to the test fixture (KEYVIEW), picture upload

In the past, the most commonly used charging products were universal chargers, and now there are more and more types of chargers, there are chargers with charging heads, and there are wireless chargers, chargers with charging heads are fast, but now wireless charging Many devices already support fast charging, and the sense of technology is also full. Wireless charging is very convenient. Whether at home or at work, you can charge your mobile phone when you put it on the charger.
In theory, wireless charging technology is safe and harmless to the human body. The resonance principle used in wireless charging is magnetic field resonance, which only transmits between coils that resonate at the same frequency, while other ((https://www.jotrin.com/topic/dsp| dsp ))devices cannot accept the band. In addition, wireless charging technology uses The magnetic field itself is harmless to the human body. However, wireless charging technology is a new type of charging technology after all. With Maiyuan Technology’s wireless chargers, many people are worried that wireless charging technology will be the same as Wi-Fi and mobile phone antenna poles. In fact, the technology itself is harmless. .

 

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