Best electronic parts marketplace info sheets? On April 30th, the day after entering GW, the Nippon Keizai Shimbun published an article saying that Toyota and Daihatsu would not only suspend car production during and after the Golden week due to a chronic shortage of semiconductors. Toyota will close all 14 factories in Japan from April 30 to May 8, the article said. Among them, the Takaoka plant in Toyota City, Aichi Prefecture will stop production of some production lines until May 9, and the Fujisong plant with Toyota car body in Kariya City, Aichi Prefecture will stop production until May 16. In addition to the second Shiga plant, which had previously announced an extension of the shutdown, Dafa will also increase the number of plants at the Dafen first factory and the head office from April 30 to May 8, extending the number of days of shutdown. In addition, the Kyoto plant is scheduled to stop production from May 18 to 19. See extra info on scw05b-09.
In the onboard system shown in the figure above, the green rectangle represents the printed circuit board (PCB), and the small rectangles of various colors above represent various functional modules in the system, such as memory. The functions of these modules are implemented by independent silicon chips, and they are connected by metal traces on the PCB to finally form a complete system. The System-on-Chip refers to the realization of the functions of the entire system on a single silicon chip. The schematic diagram is as follows: As shown in the figure above, a system-on-a-chip (SoC) implements various functional modules such as storage, processing, logic, and interfaces in one chip, rather than requiring several different physical chips to be implemented like a system-on-board. Compared with system-on-board, SoC solutions are lower cost, enable faster and more secure data transfer between different system units, have higher overall system speed, lower power consumption, smaller physical size, and better reliability.
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When the user equipment communicates with the AP1, because the equipment receives the interference signal of the AP2 with the same frequency, the user equipment will mistakenly think that the cell of the AP1 is being occupied by other devices in the cell at this time, so wait for the next time period to send. As a result, network performance is degraded. Not only multi-cell networking, this kind of interference problem will also occur when the Wi-Fi AP is very close. For example, although you have only one wireless AP in your home, if your next-door neighbor has an AP deployed on the same channel as you, CCI will also reduce the success rate of your device access. Sadly, most manufacturers put Wi-Fi AP’s default channel on the first channel when the device leaves the factory. In this way, the problem of interference is even more serious. If you find this problem, you might as well change the Wi-Fi AP channel at home, which will significantly reduce interference and increase Internet speed. The solution of Wi-Fi 6 is to distinguish the local cell from the interference cell by introducing BSS Coloring (Cell Color coding) technology into the MAC layer. In other words, when working on the same channel, the AP that interferes with each other will be distinguished by different color codes. Find even more information on electronic supplies.