Abstract:
A socket and a plug for a high-speed connector configured to implement communication and transmission of multiple channels of high-speed signals are disclosed. The socket according to an embodiment of the present invention includes: a shell and pins; the shell has an opening configured to accommodate a plug for the high-speed connector; the pins include upper-layer pins and lower-layer pins; the upper-layer pins are set at one side of an inner wall of the opening, the lower-layer pins are set at the other side of the inner wall of the opening corresponding to positions of the upper-layer pins, the upper-layer pins are arranged in at least two rows of pin groups, and the at least two rows of pin groups are distributed in a staggered manner along a length direction of the pins.
Abstract:
The embodiments of the present invention provide a plug and a power connector. The plug is applied in a power connector connected between a power supply device and a radio frequency module. The plug includes a jack and a crimping component set at a tail end of the jack, and the crimping component is configured to connect a power cable introduced from the power supply device to the jack in a manner of fixing. A power connector that includes the plug is further provided. By using the technical solutions according to the embodiments, easy on-site installation of the power connector that includes the plug during use may be ensured.
Abstract:
A waterproof optical fiber connector includes a flange and a terminal connector. The terminal connector includes an outer casing, an inner casing, an optical fiber and a connecting component coupled with the fiber. The inner casing is tubular for housing the fiber and the connecting component. The outer casing is tubular for housing the inner casing. The inner casing includes a body and a waterproof clip connected to a back end of the body. The fiber passes through the clip. The tail of the inner wall of the outer casing tapers from the front to the back, pressing the clip inwards such that the clip and the fiber are fixed together. At least one first protrusion is provided on the inner surface of the front end of the sleeve of the flange, and the front end of the body of the inner casing bears against the first protrusion.
Abstract:
The embodiments of the present invention provide a plug and a power connector. The plug is applied in a power connector connected between a power supply device and a radio frequency module. The plug includes a jack and a crimping component set at a tail end of the jack, and the crimping component is configured to connect a power cable introduced from the power supply device to the jack in a manner of fixing. A power connector that includes the plug is further provided. By using the technical solutions according to the embodiments, easy on-site installation of the power connector that includes the plug during use may be ensured.
Abstract:
An array type connection structure is disclosed. The structure includes a support and connecting assemblies. There is no signal cable routing in the support. Each connecting assembly penetrates through the support; a first side of each connecting assembly has a connector interface including a plurality of first signal terminals, and the connector interface is configured to be connected to a first electronic component located on a first side of the support. A second side of each connecting assembly is directly connected to a plurality of cables, the plurality of cables are in a one-to-one correspondence with the plurality of second signal terminals of the connecting assembly, and the cable is configured to be connected to a second electronic component located on a second side of the support. The support is provided with a heat dissipation through hole, which is at least partially located between two adjacent connecting assemblies.
Abstract:
The embodiments of the present invention provide a plug and a power connector. The plug is applied in a power connector connected between a power supply device and a radio frequency module. The plug includes a jack and a crimping component set at a tail end of the jack, and the crimping component is configured to connect a power cable introduced from the power supply device to the jack in a manner of fixing. A power connector that includes the plug is further provided. By using the technical solutions according to the embodiments, easy on-site installation of the power connector that includes the plug during use may be ensured.
Abstract:
A socket and a plug for a high-speed connector configured to implement communication and transmission of multiple channels of high-speed signals are disclosed. The socket according to an embodiment of the present invention includes: a shell and pins; the shell has an opening configured to accommodate a plug for the high-speed connector; the pins include upper-layer pins and lower-layer pins; the upper-layer pins are set at one side of an inner wall of the opening, the lower-layer pins are set at the other side of the inner wall of the opening corresponding to positions of the upper-layer pins, the upper-layer pins are arranged in at least two rows of pin groups, and the at least two rows of pin groups are distributed in a staggered manner along a length direction of the pins.
Abstract:
The embodiments of the present invention provide a plug and a power connector. The plug is applied in a power connector connected between a power supply device and a radio frequency module. The plug includes a jack and a crimping component set at a tail end of the jack, and the crimping component is configured to connect a power cable introduced from the power supply device to the jack in a manner of fixing. A power connector that includes the plug is further provided. By using the technical solutions according to the embodiments, easy on-site installation of the power connector that includes the plug during use may be ensured.