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  2. USB communications - Wikipedia

    en.wikipedia.org/wiki/USB_communications

    All USB hubs can operate at this rate. High speed (HS) rate of 480 Mbit/s was introduced in 2001 by USB 2.0. High-speed devices must also be capable of falling-back to full-speed as well, making high-speed devices backward compatible with USB 1.1 hosts. Connectors are identical for USB 2.0 and USB 1.x.

  3. USB - Wikipedia

    en.wikipedia.org/wiki/USB

    The USB-IF used WiGig Serial Extension v1.2 specification as its initial foundation for the MA-USB specification and is compliant with SuperSpeed USB (3.0 and 3.1) and Hi-Speed USB (USB 2.0). Devices that use MA-USB will be branded as "Powered by MA-USB", provided the product qualifies its certification program. [104]

  4. USB hardware - Wikipedia

    en.wikipedia.org/wiki/USB_hardware

    USB 2.0 provides for a maximum cable length of 5 metres (16 ft 5 in) for devices running at high speed (480 Mbit/s). The primary reason for this limit is the maximum allowed round-trip delay of about 1.5 μs. If USB host commands are unanswered by the USB device within the allowed time, the host considers the command lost.

  5. USB hub - Wikipedia

    en.wikipedia.org/wiki/USB_hub

    It is an important consideration that in common language (and often product marketing), USB 2.0 is used as synonymous with high-speed. However, because the USB 2.0 specification, which introduced high-speed, incorporates the USB 1.1 specification such that a USB 2.0 device is not required to operate at high speed, any compliant full-speed or ...

  6. Category:USB - Wikipedia

    en.wikipedia.org/wiki/Category:USB

    USB 2.0 Hi-Speed; USB 3.0; USB4; 0–9. Universal Serial Bus 0.7; ... List of USB video class devices; Virtual CD-ROM switching utility; VirtualLink; W. WebUSB ...

  7. InterChip USB - Wikipedia

    en.wikipedia.org/wiki/InterChip_USB

    High-Speed Inter-Chip (HSIC) is a chip-to-chip variant of USB 2.0 that eliminates the conventional analog transceivers found in normal USB. It was adopted as a standard by the USB-IF in 2007. The HSIC physical layer uses about 50% less power and 75% less board area compared to traditional USB 2.0. HSIC uses two signals at 1.2 V and has a ...

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