Abstract:
The present invention provides an assembly which includes an adapter, an adapter mounting bracket, and sealing elements, where: a mounting position is arranged on the adapter mounting bracket, the adapter is arranged in the mounting position, and two ends of the adapter are each provided with a socket, through which a prefabricated connector of a distribution optical cable and a prefabricated connector of a drop cable are capable of being inserted into the adapter for connection; and the sealing elements are arranged at the sockets at the two ends of the adapter and cooperate with prefabricated connectors inserted into the sockets of the adapter to provide sealing protection for the sockets of the adapter. The fiber distribution assembly has a simple structure and is used conveniently, and can improve the efficiency of fiber distribution operations and convenience of subsequent maintenance and replacement.
Abstract:
A front housing of the optical-electrical composite connector is axially provided with a through groove passing through the front housing on the front housing, and an inner wall of the through groove is provided with a first groove. A rear housing includes a main body portion and a clamping portion connected to one end of the main body portion. An outer surface of the clamping portion is axially provided with a second groove, the clamping portion is located in the through groove, and the first groove is butted with the second groove to form an accommodation space. One end that is of the through groove and that is away from the main body portion is an optical port. The font housing is provided with an opening connecting to the accommodation space and the outside. The conductive terminal is accommodated in the opening, and the conductive terminal forms an electrical port.
Abstract:
A control content drag method is provided. The method includes: a first electronic device displays a first window and a second window of at least one application. A framework layer of the first electronic device detects a touch and hold operation on a first control in the first window. In response to a drag operation that uses the touch and hold operation as a drag start operation, the a framework layer transfers content of the first control from the first window to the second window.
Abstract:
An electronic device may display an interface of a first application, where the interface of the first application includes a first window and a second window, a first page of the first application is displayed in the first window, and a second page of the first application is displayed in the second window. The second page is a sub page of the first page. After the electronic device can receive a window locking operation of a user, if the electronic device receives an operation performed by the user on a new page open control in the first page, the electronic device may display a third page in the first window in response to the operation. The third page is a sub page of the first page.
Abstract:
A first electronic device displays a first interface including first content, where the first interface further includes a status bar and/or a navigation bar of the first electronic device. A second electronic device displays a first projection window including the first content, where the first projection window further includes any one of the status bar, the navigation bar, and a title bar of a projection application. The first electronic device switches from displaying the first interface to displaying a second interface, where the second interface includes second content, and the second interface does not include the status bar and the navigation bar. The second electronic device switches from displaying the first projection window to displaying a second projection window, where the second projection window includes the second content, and the second projection window does not include the status bar, the navigation bar, and the title bar.
Abstract:
An electronic device includes a first application. The electronic device detects a first operation. The electronic device displays, in a landscape orientation state, a first interface of the first application in a first area of a display screen of the electronic device in response to the first operation. The electronic device detects a second operation on the first interface, where the second operation enables the electronic device to open a second interface of the first application. The electronic device displays the second interface in a second area in response to the second operation. The display screen includes at least two areas, the at least two areas include the first area and the second area, and different areas of the display screen do not overlap.
Abstract:
An electronic device includes a first application. The electronic device detects a first operation. The electronic device displays, in a landscape orientation state, a first interface of the first application in a first area of a display screen of the electronic device in response to the first operation. The electronic device detects a second operation on the first interface, where the second operation enables the electronic device to open a second interface of the first application. The electronic device displays the second interface in a second area in response to the second operation. The display screen includes at least two areas, the at least two areas include the first area and the second area, and different areas of the display screen do not overlap.
Abstract:
A communication apparatus acting as a baseband unit (BBU) or being applicable to a BBU, and having instructions for obtaining first coordination information to be sent to a second BBU, determining, based on preset link information, a transmission link corresponding to the second BBU, the transmission link including a first remote radio unit (RRU) and a second RRU, the first RRU belonging to the BBU, the second RRU belonging to the second BBU, and the first RRU and the second RRU being connected through a wired link, sending the first coordination information to the first RRU, sending indication information to the first RRU, the indication information indicating to the first RRU to send the first coordination information to the second RRU through the wired link, the indication information having an identifier of the second RRU.
Abstract:
The present invention provides a method for selecting a working remote radio unit for a user equipment. By comparing isolation of a current working RRU set of a user equipment with a preset isolation threshold, resource utilization and signal interference can be effectively balanced and a working remote radio unit of the user equipment can be accurately determined.
Abstract:
The present invention provides a method for selecting a working remote radio unit for a user equipment. By comparing isolation of a current working RRU set of a user equipment with a preset isolation threshold, resource utilization and signal interference can be effectively balanced and a working remote radio unit of the user equipment can be accurately determined.