Distributed timestamping in networks

    公开(公告)号:US11171856B2

    公开(公告)日:2021-11-09

    申请号:US15835393

    申请日:2017-12-07

    摘要: An apparatus is provided which comprises: a first network interface (NI) to receive data from a source; a second NI coupled to a target; and a circuitry to generate a sequence of source timestamps and a sequence of target timestamps, wherein the first NI is to receive the sequence of source timestamps, and associate a first source timestamp of the sequence of source timestamps with the data, and wherein the second NI is to receive: the data with the first source timestamp from the first NI and the sequence of target timestamps from the circuitry, the second NI to generate a timestamp for the data, based at least in part on the first source timestamp and a first target timestamp of the sequence of target timestamps.

    MULTI-LINK DEVICE CONFIGURED FOR INITIAL POWER MANAGEMENT MODES AFTER MULTI-BAND LINK ENABLEMENT

    公开(公告)号:US20210337475A1

    公开(公告)日:2021-10-28

    申请号:US17196527

    申请日:2021-03-09

    摘要: An apparatus for implementing power control for a radio device that has multiple radio transceivers operating in different bands, including sub-bands of a single frequency band. The device implements a power control protocol for communications between the device and a similar peer device. The device sets-up the power control protocol by generating a request to use one of the multiple bands to signal power control operations, and to use another one of the multiple bands to transfer data between the device and the peer device. The device sends the request to the peer device and receives a response. Based on the response, the device identifies a control channel band and a data channel band from among the multiple bands.

    Apparatus, system and method of encoding a wireless transmission

    公开(公告)号:US11160081B2

    公开(公告)日:2021-10-26

    申请号:US16624463

    申请日:2018-06-18

    摘要: For example, an Enhanced Directional Multi-Gigabit (DMG) (EDMG) wireless communication station (STA) may be configured to scramble, according to a first scrambling sequence, a plurality of EDMG Header B bits of an EDMG Header B field of an EDMG Multi-User (MU) Physical Layer (PHY) Protocol Data Unit (PPDU) into a plurality of scrambled header bits; generate a Low-Density Parity-Check (LDPC) codeword based on the plurality of scrambled header bits; determine a data block based on the LDPC codeword; generate one or more scrambled data blocks based on the data block by scrambling the data block according to a second scrambling sequence; and transmit a wireless transmission of the EDMG Header B based on the one or more scrambled data blocks.

    WARPAGE COMPENSATING RF SHIELD FRAME

    公开(公告)号:US20210320071A1

    公开(公告)日:2021-10-14

    申请号:US15937246

    申请日:2018-03-27

    发明人: Rizwan Fazil

    摘要: An integrated circuit package shield comprising a frame comprising two or more segments, the segments to interlock with one another along a substrate and the segments comprising electrically conductive material to electrically couple to the substrate; and a lid to cover the frame, the lid comprising a conductive material to electrically couple to the substrate.

    Methods and arrangements for wide bandwidth communications

    公开(公告)号:US11133910B2

    公开(公告)日:2021-09-28

    申请号:US16464927

    申请日:2018-03-23

    摘要: Logic may receive an initial communication from a user device, the initial communication comprising capabilities. Logic may determine when the capabilities indicate a requirement for measurement gaps. Logic may determine, when the capabilities for the user device indicate a requirement to implement measurement gaps, a gap pattern to assign to the user device to re-tune one or more radio frequency chains to a wide bandwidth carrier frequency during communications. Logic may transmit information about the gap pattern to the user device. Logic may transmit an initial communication to a base station, the initial communication comprising capabilities. Logic may receive a communication from the base station comprising information about a gap pattern. Logic may receive a synchronization signal to synchronize a wide bandwidth, radio frequency chain. And logic may retune the radio frequency chain during one or more measurement gaps defined by the gap pattern.

    RECEIVED SIGNAL STRENGTH INDICATOR THRESHOLDS FOR TRANSITIONS

    公开(公告)号:US20210297883A1

    公开(公告)日:2021-09-23

    申请号:US16496898

    申请日:2018-05-02

    摘要: Apparatuses, computer readable media, and methods for received signal strength indicator (RSSI) thresholds for transitions are disclosed. An apparatus comprising processing circuitry is disclosed, where the processing circuitry is configured to associate with a first access point (AP), the first AP being part of an extended service set (ESS), decode a frame from the first AP, the frame including an ESS report element, the ESS report element including a recommended basic service set (BSS) transition threshold within the ESS field, and decode a beacon frame from the first AP. The processing circuitry may be further configured to respond to a measured RSSI of the beacon frame being below a value indicated by the recommended BSS transition threshold within the ESS field, by initiating a transition to a second AP.

    MEASUREMENT CONFIGURATION TECHNIQUES FOR WIDEBAND COVERAGE ENHANCEMENT (WCE)-CAPABLE DEVICES

    公开(公告)号:US20210297867A1

    公开(公告)日:2021-09-23

    申请号:US16604836

    申请日:2018-05-10

    摘要: Measurement configuration techniques for wideband coverage enhancement (WCE)-capable devices are described. According to various such techniques, a WCE-capable UE may be configured to recognize and apply distinct respective discovery signal measurement timing configurations (DMTCs) for WCE discovery reference signal (DRS) measurements and non-WCE DRS measurements. In some embodiments, the DMTC for WCE DRS measurements may specify a longer measurement periodicity for WCE DRS measurements than that applicable to non-WCE DRS measurements. In some embodiments, the DMTC for WCE DRS measurements may specify a larger measurement window for WCE DRS measurements than that applicable to non-WCE DRS measurements. In some embodiments, the WCE-capable UE may be configured to recognize and distinct respective measurement gap configurations for WCE and non-WCE measurements. Other embodiments are described and claimed.