Abstract:
This application provides a board-level architecture and a communications device. The board-level architecture includes a support board, a switch board, and a press fit component. The press fit component includes a cable, a first connector component press-fitted on a side edge of the support board, and a second press fit cable connector press-fitted on a side edge of the switch board. The first connector component includes a first press fit cable connector and a pluggable connector that is electrically connected to the first press fit cable connector, and the pluggable connector is farther from the support board than the first press fit cable connector. The first press fit cable connector is connected to the second press fit cable connector through the cable.
Abstract:
A backplane and a communications device are disclosed. In one example, the backplane includes at least one fixing plate, multiple connectors, and multiple flexible cables, where signal connection is implemented between corresponding connectors by the flexible cables. Each of the connectors is provided with a housing, and multiple signal pins are installed on the housing. The housing is installed on the fixing plate and is provided with a jack for insertion of a connector of a subcard in the communications device. One end of each signal pin is inserted into the jack, and the other end is connected to each flexible cable.
Abstract:
An interconnection system includes a first board group, a second board group orthogonal to the first board group, and a center backplane arranged between the first board group and the second board group. The first board group includes a number of first boards parallel to each other and the second board group includes a number of second boards parallel to each other. Right angle male connectors re arranged on each of the first boards and right angle female connectors are arranged on each of the second boards. The right angle male connectors and the right angle female connectors directly cooperate and are connected in one-to-one correspondence.
Abstract:
A backplane apparatus, including a first backplane structure and a second backplane structure, where the first backplane structure is configured to transmit power and low-speed signals, and the second backplane structure is configured to transmit high-speed signals, low-speed signals, or optical signals. The first backplane structure includes a first backplane, multiple first connectors, and a connected space, where the first connectors are arranged on the first backplane and boards are electrically connected to the first backplane. The second backplane structure includes multiple second backplanes and multiple second connectors, where the second connectors are arranged on the second backplanes, the second backplanes are installed on the first backplane, and the second connectors are electrically connected to boards by crossing the connected space or via the first connectors. The present invention also discloses a communication device.
Abstract:
A signal transmission structure includes a circuit board, a chip, and a cable assembly. The chip is assembled on one side of the circuit board, and the cable assembly is assembled on the other side of the circuit board. The cable assembly includes a cable, and the circuit board includes a plurality of conductive holes. The chip is electrically connected to the cable of the cable assembly using the conductive hole to transmit a signal of the chip using the cable.
Abstract:
A cable assembly, a signal transmission structure, and an electronic device are provided. The signal transmission structure includes a circuit board (2), a chip (1), and a cable assembly (3). The chip (1) is assembled on one side of the circuit board (2), and the cable assembly (3) is assembled on the other side of the circuit board (2). The cable assembly (3) includes a cable (31), and the circuit board (2) includes a plurality of conductive holes (22). The chip (1) is electrically connected to the cable (31) of the cable assembly (3) by using the conductive hole (22), to transmit a signal of the chip (1) by using the cable (31). In this technical solution, wires do not need to be disposed in a large area inside the circuit board (2).
Abstract:
An interconnection system includes a first board group, a second board group orthogonal to the first board group, and a center backplane arranged between the first board group and the second board group. The first board group includes a number of first boards parallel to each other and the second board group includes a number of second boards parallel to each other. Curved male connectors re arranged on each of the first boards and curved female connectors are arranged on each of the second boards. The curved male connectors and the curved female connectors directly cooperate and are connected in one-to-one correspondence.
Abstract:
A vehicle-mounted electronic device includes a first housing; one or more camera modules; a lifting drive mechanism configured to drive the one or more camera modules to be lifted up and down inside or outside the first housing; and a rotation drive mechanism configured to drive the one or more camera modules to rotate.
Abstract:
A backplane and a communications device are disclosed. The backplane includes: at least one fixing plate, multiple connectors, and multiple flexible cables, where signal connection is implemented between corresponding connectors by means of the flexible cables, each of the connectors is provided with a housing and multiple signal pins installed on the housing, and the housing is installed on the fixing plate and is provided with a jack for insertion of a connector of a subcard in the communications device; one end of each signal pin is inserted into the jack, and the other end is connected to each flexible cable. When the communications device provided with the backplane transmits a high-rate signal, transmission quality and a transmission rate are relatively high.
Abstract:
An interconnection system includes a first board group, a second board group orthogonal to the first board group, and a center backplane arranged between the first board group and the second board group. The first board group includes a number of first boards parallel to each other and the second board group includes a number of second boards parallel to each other. Curved male connectors re arranged on each of the first boards and curved female connectors are arranged on each of the second boards. The curved male connectors and the curved female connectors directly cooperate and are connected in one-to-one correspondence