Abstract:
For example, an MA USB host of an MA USB PAL may be configured to process a request message from a USBDI of a USB host for a real time data transfer to be delivered between the USB host and a USB device EP; based on the request message, transmit at least one real time transfer request to an MA USB device of the MA USB PAL, a header of the real time transfer request including a request ID field to identify the real time data transfer, and a delivery time field to indicate a delivery time to complete delivery of the real time data transfer; and, based on a determination that the real time data transfer is not to be completed by the delivery time, send a response to the USBDI, the response including an error indication to indicate failure of the real time data transfer.
Abstract:
This disclosure describes systems, methods, and devices related to a time division duplex (TDD) antenna sector switch. A device may determine one or more antenna sector configurations based on TDD beamforming, wherein the one or more antenna sector configurations are associated with first antenna sectors used to communicate with a first station device (STA). The device may initiate a TDD sector switch with the first STA to switch from the one or more first antenna sectors to one or more second antenna sectors. The device may cause to send, to the first STA, an action frame comprising TDD sector setting parameters associated with the TDD sector switch. The device may identify a response frame received from the first STA, wherein the response frame comprises the TDD sector setting parameters. The device may perform the TDD sector switch by switching from the one or more first antenna sectors to the one or more second antenna sectors.
Abstract:
This disclosure describes systems, methods, and devices related to sensor data pipelining. A device may identify a first request of one or more requests received from a wireless universal serial bus (USB) host, wherein the first request is to collect data from a USB sensor. The device cause to send the first request to the USB sensor. The device identify a first response from the USB sensor, wherein the first response comprises data collected by the USB sensor based on the first request. The device determine that no additional requests are received from the wireless USB host. The device cause to send a second autonomous request to the USB sensor to collect data. The device identify a second response received from the USB sensor, wherein the second response is associated with the autonomous second request. The device cause to buffer or send the second response to the wireless USB host based on a second request being received from the wireless USB host.
Abstract:
Some demonstrative embodiments include apparatuses, devices, systems and methods of power management in a wireless network. For example, a first wireless station may be configured to transmit a frame to a second wireless station during a first beacon interval, the frame including an indication that the first wireless station is to switch to a low power mode; switch to the low power mode; operate at an active mode during an awake window in a second beacon interval subsequent to the first beacon interval; and upon receipt of an announcement traffic indication message (ATIM) from the second wireless station during the awake window, transmit an acknowledgement to the second wireless station, and stay at the active mode to communicate data with the second wireless station.
Abstract:
Logic may allocate time slots in a schedule with consideration of thermal dissipation capacities of non-PCP devices. Logic may determine the failure to use a full time slot allocation by a non-PCP device when the non-PCP device has more data to transmit. Logic may determine an adjustment for a schedule based upon duty cycle information provided by a non-PCP device. Logic may receive an indication of a duty cycle. Logic may determine an adjustment to a schedule based upon entrance of the non-PCP device into a power save mode during an incomplete communication with time remaining in the allocated time slot. Logic may determine a duty cycle based upon a thermal measurement. Logic may request a reduced duty cycle based upon a risk of reaching an overheat limit for a non-PCP device. And logic may request an increase in the duty cycle in response to favorable thermal characteristics.
Abstract:
Notification methods and devices are described. In notification method, a notification template corresponding to a notification is generated. The notification template can be provided to a docking system connected to a communication device. A notification control signal that corresponds to the notification template can be generated. The docking system is controlled to present the notification in response to the notification control signal. The docking system presenting the notification can use one or resources of the docking system based on the notification template.
Abstract:
Notification methods and devices are described. In notification method, a notification template corresponding to a notification is generated. The notification template can be provided to a docking system connected to a communication device. A notification control signal that corresponds to the notification template can be generated. The docking system is controlled to present the notification in response to the notification control signal. The docking system presenting the notification can use one or resources of the docking system based on the notification template.
Abstract:
Some demonstrative embodiments include apparatuses, devices, systems and methods of a Fast Basic Service Set (BSS) Transition (FT). For example, a wireless station (STA) may be configured to process at least one frame from at least one advertiser Access Point (AP) over a first frequency band while the STA is associated with a current AP over the first frequency band, the frame including a Multiband Mobility Domain Element (MMDE) corresponding to a target AP; and to transmit to the advertiser AP an FT authentication request frame over the first frequency band to request an FT from the current AP on the first frequency band to the target AP on the second frequency band, the FT request frame including the MMDE corresponding to the target AP.
Abstract:
A communication device and a communication method are provided. Interface devices of the communication device can be respectively configured to communicate with one or more other communication devices using a plurality of communication protocols. The communication device can include a memory that can store a plurality of radio interface drivers (RIDs) respectively associated with the plurality of interface devices. The memory can also store an aggregated wireless driver (AWD) forming an interface between an operating system (OS) of the communication device and the plurality of RIDs.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of selectively responding to wireless communication transmissions. For example, an apparatus may include a wireless communication unit to allocate at least one association beamforming training (A-BFT) period, to receive a responder beamforming transmission from a responder device during the A-BFT period, to transmit to the responder device a feedback transmission in response to the responder beamforming transmission, and to set a responder filtering period extending over one or more successive A-BFT periods, wherein the wireless communication unit is to ignore one or more responder beamforming transmissions from the responder device during the filtering period.