Professional electronic components information database? 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. Read additional information at https://www.easybom.com/p/vx0161a3-omron-electronics-inc-emc-div-1695101.
The system-on-chip (SoC) is the heart of the embedded architecture and is where the actual imaging processing takes place. On many occasions, the technical term “SoC” is colloquially equated with “processor”. In reality, however, SoCs contain more than that. In addition to single-core or multi-core parallel CPUs (central processing units), there are GPUs (graphics processing units), interface controllers (such as USB, Ethernet, I²C, etc.), internal bus systems, multimedia hardware (such as video encoding and video decoding), internal power management, and more, all contained within this single chip. In short – an SoC neatly integrates many of the core components in a PC into one.
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Orthogonal frequency division multiple access OFDMA: Friends who are familiar with Wi-Fi should know that the empty port of Wi-Fi adopts orthogonal frequency division multiplexing (OFDM) modulation, that is, the whole bandwidth is composed of orthogonal subcarriers. In Wi-Fi 6, the 802.11 working group introduced OFDMA access from LTE. The addition of such an “A” word can be said to have brought a qualitative change to the network capacity. As shown in the figure on the left below, Wi-Fi 5-based OFDM can only allocate all the bandwidth in the channel to one user at any one time, even if that user’s data needs do not need to take up all the bandwidth. When other users connect to the network, they need to wait for the next sending opportunity window (TXOP). This is very inefficient in the use of channel resources, especially when there is a significant increase in equipment. Discover extra information at https://www.easybom.com/.