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The USB 3.1 specification takes over the existing USB 3.0's SuperSpeed USB transfer rate, now referred to as USB 3.1 Gen 1, and introduces a faster transfer rate called SuperSpeed USB 10 Gbps, corresponding to operation mode USB 3.1 Gen 2, [62] putting it on par with a single first-generation Thunderbolt channel.
USB 3.0 SuperSpeed (aka USB 3.1 Gen 1, USB 3.2 Gen 1x1) 5 Gbit/s: 500 MB/s: 2010 eSATA (SATA 600) 6 Gbit/s: 600 MB/s: 2011 CoaXPress full (up and down bidirectional link) 6.25 Gbit/s + 20.833 Mbit/s: 781 MB/s: 2009 External PCI Express 2.0 ×2: 8 Gbit/s: 1 GB/s: USB 3.1 SuperSpeed+ (aka USB 3.1 Gen 2, USB 3.2 Gen 1x2, USB 3.2 Gen 2x1, USB4 Gen ...
Ethernet over USB is the use of a USB link as a part of an Ethernet network, resulting in an Ethernet connection over USB (instead of e.g. PCI or PCIe).. USB over Ethernet (also called USB over Network or USB over IP) is a system to share USB-based devices over Ethernet, Wi-Fi, or the Internet, allowing access to devices over a network.
The xHCI reduces the need for periodic device polling by allowing a USB 3.0 or later device to notify the host controller when it has data available to read, and moves the management of polling USB 2.0 and 1.1 devices that use interrupt transactions from the CPU-driven USB driver to the USB host controller.
However, the SuperSpeed USB part of the system still implements the one-lane Gen 1×1 operation mode. Therefore, two-lane operations, namely USB 3.2 Gen 1×2 (10 Gbit/s) and Gen 2×2 (20 Gbit/s), are only possible with Full-Featured USB-C. As of 2023, they are somewhat rarely implemented; Intel, however, started to include them in its 11th ...
The DL-41xx series came out in 2013. It is a USB 3.0 to LVDS device, supporting DL3 compression and HDCP 2.0 encryption. [26] It is designed to be embedded into monitors to enable USB as a video input on displays. It is described as a low-power device, which enables it to be powered from the USB bus without the need for an external power supply.