Electronic parts information details information database 2022? OFDMA changed that. By composing subcarriers into resource units (RU), OFDMA channels can dynamically divide the instantaneous bandwidth to different users. OFDMA has suddenly increased the number of users that are instantly supported. The 20MHz bandwidth in the following figure is an example. Through subcarrier allocation, 20MHz can support up to 9 devices to access at the same time, 40MHz can support 18 devices, and so on. Fig. 2 uses the number of resource units available under OFDMA’s 20MHz% 0AWi-Fi 6 in which each subcarrier is 78.125khz. 20MHz is 256 subcarriers. 6 Edge indicates that there are 6 subcarriers as protection bands from the edge. ) It can be said that OFDMA has brought about a qualitative change in the capacity of Wi-Fi channels. Find more information on https://www.easybom.com/p/hlmp3507d00b2-broadcom-limited-7626794.
With the increasing degree of automation of cars and electric vehicles, the number of semiconductors required will increase sharply. Most semiconductors are traditional analog and power semiconductors. These traditional analog and power semiconductors are produced by 8-inch factories. Because it is difficult to ensure 8-inch manufacturing equipment, it is difficult to add new 8-inch semiconductor factories. In short, self-driving cars certainly need state-of-the-art semiconductors to run advanced artificial intelligence (AI), but the need for a large number of traditional analog and power semiconductors has become the Achilles’ heel of automobile production, and it is not easy to solve this problem. Although the automobile industry has ushered in an once-in-a-century period of great change in CASE (Connected, Autonomous/Automated, Shared, Electric), it is also an era suffering from the shortage of semiconductors.
Key Technologies of SoC Design: SoC key technologies mainly include bus architecture technology, IP core reuse technology, software and hardware co-design technology, SoC verification technology, testability design technology, low-power design technology, ultra-deep sub-micron circuit implementation technology, and embedded software porting. A circuit system capable of realizing certain functions is composed of multiple modules, such as processors, interfaces, memories, analog-to-digital converters, and so on. These functional modules can be implemented by discrete devices, and then combined on a printed circuit board (PCB) to finally form a system-on-a-Board. A schematic diagram of the on-board system is shown below.
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