Programmable control of micro-operations cache resources of a processor

    公开(公告)号:US12282777B2

    公开(公告)日:2025-04-22

    申请号:US17429467

    申请日:2019-02-13

    Abstract: Various example embodiments of a processor are presented. Various example embodiments of a processor may be configured to support split programmability of resources of a processor frontend of the processor. Various example embodiments of a processor are configured to support split programmability of resources of a processor frontend of the processor in a manner enabling assignment of split programmable resources of the frontend of the processor to control blocks of a program being executed by the processor. Various example embodiments of a processor are configured to support split programmability of micro-operations (UOPs) cache (UC) resources of the frontend of the processor (which may then be referred to as a split programmable (SP) UC (SP-UC), where it may be referred to as “split” since there are multiple UCs and may be referred to as “programmable” since selection of the active UC from the set of multiple UCs is controllable by the program executed by the processor).

    Bio-signal detection
    34.
    发明授权

    公开(公告)号:US12279874B2

    公开(公告)日:2025-04-22

    申请号:US16762867

    申请日:2018-11-23

    Abstract: An apparatus comprising: a first displacement current sensor comprising a first sensing electrode and a first guard electrode, wherein the first displacement current sensor is configured to measure a first sensed signal dependent upon electrical activity of a subjects heart; a second displacement current sensor comprising a second sensing electrode and a second guard electrode, wherein the second displacement current sensor is configured to measure a second sensed signal dependent upon electrical activity of a subjects heart; and circuitry configured to process at least the first sensed signal to compensate for artefacts arising from motion of the subject.

    MANAGING COEXISTENCE OF USER EQUIPMENT-BASED AND RANDOM ACCESS CHANNEL-BASED TIMING ADVANCE VALUES

    公开(公告)号:US20250126635A1

    公开(公告)日:2025-04-17

    申请号:US18911617

    申请日:2024-10-10

    Abstract: A method is provided that includes receiving a configuration of selection criteria for a timing advance (TA) of a target cell, acquired by respective acquisition schemes including a user equipment (UE)-based acquisition scheme and a random access channel (RACH)-based acquisition scheme. The method includes acquiring a UE-based TA value according to the UE-based acquisition scheme, and transmitting a random access preamble to the target cell that is configured to acquire a RACH-based TA value according to the RACH-based acquisition scheme. The method includes receiving a cell-switch command from a serving cell to trigger a cell switch to the target cell, after the UE-based TA value and the RACH-based TA value are acquired. And the method includes accessing the target cell using a TA value selected from the UE-based TA value and the RACH-based TA value, based on the configuration.

    Enhanced report for random access channel

    公开(公告)号:US12279315B2

    公开(公告)日:2025-04-15

    申请号:US17907584

    申请日:2020-04-09

    Abstract: Example embodiments of the present disclosure relate to devices, methods, apparatuses and computer readable storage media of enhancing a report for random access channel (RACH). The method comprises in accordance with a determination that a random access attempt in a random access process for accessing a second device based on configuration information is performed, determining an entry for recording the random access attempt, the entry at least comprising fallback information indicating whether a change associated with the random access attempt has occurred; generating a report for the random access process at least based on the entry; and causing the report to be transmitted to the second device. In this way, with the UE RACH report, the network device may achieve a targeted optimization for the configuration for RA process, which may improve the efficiency of the RA process and decrease the cost due to a multiple of fallback.

    PDCCH monitoring in unlicensed spectrum for a terminal device with a single active panel

    公开(公告)号:US12279272B2

    公开(公告)日:2025-04-15

    申请号:US17755252

    申请日:2019-10-25

    Abstract: According to an aspect, there is provided a terminal device configured to perform the following. Initially, the terminal device monitors physical downlink control channel, PDCCH, transmissions according to a first set of rules. The first set of rules comprises rules for performing monitoring over at least two beam pair links, each beam pair link corresponding to a control resource set, CORESET, with a different active transmission configuration indication, TCI, state. The terminal device receives, using a first CORESET with a first active TCI state from an access node, an indication for limiting monitoring and consequently limits monitoring of PDCCH transmissions associated with CORESETs having a TCI state other than the first active TCI state for a period of time.

    UE indication of estimated MPR on UL beam pair for STXMP

    公开(公告)号:US12279213B2

    公开(公告)日:2025-04-15

    申请号:US18926402

    申请日:2024-10-25

    Abstract: An apparatus may be configured to: receive, from a first network node, a first indication to activate a first set of transmission configuration indicator states associated with the first network node; receive, from the first network node, a second indication of a second network node, wherein the apparatus is configured to perform simultaneous transmission, with the first network node and the second network node; and transmit, to the first network node, a first report, wherein the first report comprises at least one indication of a presence of a power backoff value associated with a pair of transmission configuration indicator states.

    QoE measurement collection in non-connected state

    公开(公告)号:US12278743B2

    公开(公告)日:2025-04-15

    申请号:US18927287

    申请日:2024-10-25

    Abstract: Example embodiments of the present disclosure relate to QoE measurement collection in non-connected State. In an example method, a terminal device receives, from an access network device, a quality of experience (QoE) measurement collection (QMC) procedure configuration indicating whether a QMC procedure is to be continued when the terminal device enters into a non-connected state. Then, the terminal device logs, in a logging buffer, QMC logging data of the QMC procedure performed at the terminal device in the non-connected state based on determining that the QMC procedure configuration indicates that the QMC procedure is to be continued when the terminal device enters into the non-connected state. In this way, QMC data collected in a non-connected state can be stored in the logging buffer so that the needed QMC data collected during non-connected state can be maintained.

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