Abstract:
A method of measurement reporting for a mobile device in a wireless communication system is disclosed. The method comprises the steps of including a first indicator associated with a first cell in a measurement report and sending the measurement report to a network entity of the wireless communication system. The first indicator informs the network entity about accessibility information of the first cell corresponding to the mobile device.
Abstract:
A top-and-bottom latch structure for a lock mainly includes a lock formed by a casing, and a lock tongue, a lock core, a handle spindle, and other components disposed in the casing. The handle spindle is provided with a first and a second protruding rod disposed at different angles, and is respectively provided with a first and a second braking piece above and under the handle spindle, so that the two braking pieces are respectively clamped by the protruding rods. The top-and-bottom latch structure for a lock further includes: two fixing members, respectively connected to the braking pieces; and tact switches, connected to a door panel by the fixing members via connecting rods. Therefore, when the door is closed, the tact switches once touching the door frame are embedded into the door frame and the fixing members move downwards to rotate the handle spindle and lock the lock tongue.
Abstract:
A method of a network paging a user equipment for error recovery in a wireless communication system when a network failure occurs includes the network sending a paging message to the user equipment according to an IMSI or an IMEI of the user equipment registered to the network in the attach procedure before the network failure. When the user equipment does not have the IMSI, the network uses the IMEI of the user equipment for paging the user equipment for error recovery.
Abstract:
A method of random access channel (RACH) optimization for a mobile device in a wireless communication system is disclosed. The method comprises receiving a system information message for RACH configuration optimization, from a network of the wireless communication system, and determining whether to send a first RACH measurement report, used for the network to perform the RACH configuration optimization, to the network, according to existence of a field in the system information message.
Abstract:
A method of handling a radio resource control (RRC) connection for a network in a wireless communication system is provided. The method includes receiving from a mobile device in a RRC_CONNECTED mode a RRC connection reestablishment request message for requesting reestablishment of a RRC connection of the mobile device, and sending to the mobile device a message for rejecting the reestablishment request, whereby the mobile device does not enter a RRC_IDLE mode from the RRC_CONNECTED mode.
Abstract:
A method of handling cell change for a mobile device compatible with a plurality of radio access technologies (RATs) including a first RAT supporting reception and transmission on a plurality of component carriers and a second RAT supporting reception and transmission on a single component carrier, in a wireless communication system, the method includes determining that cells using the first RAT have higher priority for cell selection or cell reselection than cells using the second RAT.
Abstract:
A method of random access channel optimization for a mobile device in a wireless communication system is disclosed. The method includes the following steps. Firstly, the mobile device receives a message including an indicator for the RACH optimization from a network of the wireless communication system. Afterwards, in response to the message, the mobile device sends a RACH measurement report including RACH parameters, used for the network to perform the RACH optimization, to the network.
Abstract:
A mobile communications device with a wireless module and a controller module is provided. The wireless module receives a connection release message for leaving a connected mode from a wireless network. The controller module in response to the connection release message, keeps radio resources of a multimedia broadcast and multicast services (MBMS) service unreleased and releases all radio resources other than the MBMS service. Thereafter, the controller module enters an idle mode.
Abstract:
A top-and-bottom latch structure for a lock mainly includes a lock formed by a casing, and a lock tongue, a lock core, a handle spindle, and other components disposed in the casing. The handle spindle is provided with a first and a second protruding rod disposed at different angles, and is respectively provided with a first and a second braking piece above and under the handle spindle, so that the two braking pieces are respectively clamped by the protruding rods. The top-and-bottom latch structure for a lock further includes: two fixing members, respectively connected to the braking pieces; and tact switches, connected to a door panel by the fixing members via connecting rods. Therefore, when the door is closed, the tact switches once touching the door frame are embedded into the door frame and the fixing members move downwards to rotate the handle spindle and lock the lock tongue. When the handle spindle is pressed down, the lock tongue is drawn back, and at the same time drives the fixing members to move upwards to make the lock tongue be disengaged from the door frame to unlock, and thus the lock has the effect of the top-and-bottom latch, thereby improving the safety of the lock.
Abstract:
A mobile communications device with a wireless module and a controller module is provided. The wireless module performs wireless transmissions and receptions to and from a first service network being an LTE system. The controller module receives, from the first service network, a handover request message for handing over from the first service network to a second service network via the wireless module, and determines whether all configurations in the handover request message are compliable or whether there is a protocol error in the handover request message. Particularly, the second service network utilizes a wireless technology other than the LTE technology, and the handover request message is a MobilityFromEUTRACommand message. Also, the controller module transmits a connection re-establishment request message indicating a reconfiguration failure to the first service network via the wireless module, in response to one of the determinations is positive.