Abstract:
A wireless communication method and a wireless communications apparatus are provided. Implementation of the method includes: when a first wireless communications apparatus uses a first wireless communication capability to communicate with a second wireless communications apparatus, if the first wireless communications apparatus determines to adjust a wireless communication capability of the first wireless communications apparatus, sending, by the first wireless communications apparatus, first adjustment information to the second wireless communications apparatus, and starting a first timer, where the first adjustment information is used to indicate to adjust the wireless communication capability of the first wireless communications apparatus to a second wireless communication capability. In embodiments of this application, the second wireless communication capability is any one of a plurality of wireless communication capabilities of the first wireless communications apparatus except a maximum wireless communication capability and a minimum wireless communication capability.
Abstract:
A hinge mechanism includes a first lap joint structure disposed on one end of each linkage component rotatably connected to a base, and extends in a direction from one end of the base to a mounting bracket located on a same side as the first lap joint structure, and a second lap joint structure disposed on one side of each support plate and that faces the base and extends in a direction from the side of the support plate to the base, wherein a second surface of the second lap joint structure slides along a surface of the first lap joint structure when two mounting brackets are relatively folded or unfolded.
Abstract:
Embodiments of this application disclose a data transmission method and apparatus, and relate to the field of communications technologies, to resolve a conventional-technology problem that when an SCG fails, a delay is increased because related data is processed only when a network side resumes transmission of data on an SCG-related bearer by using a reconfiguration message. A specific solution is: transmitting, by an apparatus, a first data packet over a second link; and if determining that the second link fails, sending, by the apparatus, to-be-transmitted data packets to a first base station over a first link before the apparatus receives a reconfiguration message from the first base station, where the to-be-transmitted data packets include a data packet whose reception is not acknowledged as a success and that is in the first data packet, and the reconfiguration message is used to indicate a reconfigured link.
Abstract:
A wireless communication method and a wireless communications apparatus are provided. Implementation of the method includes: when a first wireless communications apparatus uses a first wireless communication capability to communicate with a second wireless communications apparatus, if the first wireless communications apparatus determines to adjust a wireless communication capability of the first wireless communications apparatus, sending, by the first wireless communications apparatus, first adjustment information to the second wireless communications apparatus, and starting a first timer, where the first adjustment information is used to indicate to adjust the wireless communication capability of the first wireless communications apparatus to a second wireless communication capability. In embodiments of this application, the second wireless communication capability is any one of a plurality of wireless communication capabilities of the first wireless communications apparatus except a maximum wireless communication capability and a minimum wireless communication capability.
Abstract:
This application provides a camera module and an electronic device, to reduce manufacturing costs of the camera module and improve reliability of the camera module on the premise of ensuring optical image stabilization and auto-focus functions. The camera module includes a housing, and a light transfer part, a lens group, an image sensor, and a motor disposed in the housing. The image sensor is located on the side of the light output side. The motor includes a bracket, a carrier, and eight wires. Two ends of the wires are respectively connected to the carrier and the bracket, and the wires are retractable in length. The carrier is suspended from the bracket using the eight wires and is configured to carry the lens group, and, when the wires extend or retracts in length, drive the lens group to translate or rotate.
Abstract:
A camera, camera lens, image sensor, and a shape memory alloy (SMA) motor are stacked within a frame. The SMA motor is located on an out-light side of the camera lens. The image sensor is located between the lens and the SMA motor and is fastened to the SMA motor. The SMA motor is configured to actuate the image sensor to shift on a plane perpendicular to an optical axis of the camera lens. The camera may be associated with an electronic device.
Abstract:
A method, device, and system for acquiring encrypted information based on wireless access are disclosed in embodiments of the present invention, which are applied to the field of communications technologies. In the embodiments of the present invention, encrypted information is preset in an AP. When receiving a first access request sent by a terminal device and used for requesting access to a network, the AP verifies the terminal device. If the verification is successful, the AP schedules the preset encrypted information and sends the preset encrypted information to the terminal device. In this way, the AP sends the encrypted information to the terminal device only after the terminal device initiating the access request is successfully verified.
Abstract:
This application provides a rotation shaft structure and an electronic device. The rotation shaft structure includes a main shaft assembly, and two folding assemblies. The folding assembly includes a rotation assembly, a support plate, and a housing mounting bracket. The rotation assembly is rotationally connected to the main shaft assembly. The support plate is rotationally connected to the housing mounting bracket and slidably connected to the rotation assembly. When two housing mounting brackets rotate toward each other, two support plates rotate in a same direction relative to the housing mounting brackets on corresponding sides, so that the two support plates and the main shaft assembly can form a triangle-like display accommodation space. When the electronic device is in a closed state, the display accommodation space can be used for accommodating a bent portion of the flexible display, so that the flexible display is not damaged by extrusion.
Abstract:
A camera system includes a module frame, a camera lens, an image sensor, and an SMA motor that are stacked within the module frame. The camera lens is fixedly connected to the module frame, and the SMA motor is located on an out-light side of the camera lens. The image sensor is located between the camera lens and the SMA motor and is fastened to the SMA motor. The SMA motor is configured to actuate the image sensor to shift in a direction parallel to an optical axis of the camera lens. The SMA motor is further configured to actuate the image sensor to shift on a plane perpendicular to the optical axis of the camera lens.
Abstract:
The present invention discloses a method and an apparatus for limiting a bearer service in radio communication. The method includes: determining that a capability of a terminal system is in a critical condition; in a first bearer set of the terminal system including at least two bearers used for transmitting data, determining a set formed by some bearers in the first bearer set as a second bearer set, where priority of a bearer in the second bearer set is lower than priority of a bearer in the first bearer set excluding those in the second bearer set; and performing service limitation processing on the bearer in the second bearer set.