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The channel contention access principle of Wi-Fi. The core of Wi-Fi equipment access lies in carrier sense multiple access / collision avoidance (CSMA/CA). This mechanism of listening before speaking has been in use since the first generation of Wi-Fi (802.11) in 1997. However, there were few wireless network devices more than 20 years ago, and no one would consider the network congestion caused by competition when the number of devices increased. The real popularity of Wi-Fi began with Wi-Fi 4 (802.11n) in 2008. It can be said that since then, Wi-Fi has really become the most common form of Internet access for homes and businesses. The number of device models that support Wi-Fi has also increased exponentially.
From the perspective of automakers, semiconductors will not be enough until 2024,” read next to the big news in the April 30 edition of the Nikkei News. In this article, Intel CEO Pat Gelsinger said at its financial results conference on April 28 that “due to capacity and production equipment constraints, semiconductor shortages will last until at least 2024. How long will this shortage of semiconductors last? I began to think that, as Intel’s chief executive said, “at least until 2024”, the semiconductor shortage will not disappear, and the semiconductor shortage will last for a long time. In this article, I would like to discuss the basic principles. If we come to a conclusion first, we speculate that there will be a long-term shortage of traditional analog and power semiconductors in the future due to the following reasons.
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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