Abstract:
A connector having a relatively high terminal density is provide for reducing the requirement of the electric currents in one signal terminal and increase the conducting efficiency. The connector includes plural first conducting components each having a first terminal and extended laterally, plural second conducting components each having at least two second terminals and extended laterally, and an insulating housing having plural slots for mounting the plural first conducting components and the plural second conducting components, wherein each first conducting component and each corresponding second conducting component are mounted in the respective slot, so as to contain a contact pad having plural pins.
Abstract:
A combination structure of a socket and a container is provided. The combination structure includes a container having an opening, and a socket includes a connecting section for being engaged with the opening, a first end extended from the connecting section for being electrically connected to an electronic equipment which is positioned outside the container, and a second end extended from the connecting section for electrically connecting to a circuit unit which is positioned inside the container, wherein a cross-section of the second end is greater than that of the opening and the cross-section of the opening is greater than that of the first end so that the first end is passed through the opening from an inside of the container and exposed to an outside of the container, and the opening blocks the second end for avoiding the second end passing therethrough and fixing the socket inside the container besides mutually fixing the connecting section.
Abstract:
The present invention discloses power supply cable for providing DC power from a power supply to a microprocessor of a personal computer. The output cable includes a plate-cable includes a first and a second metal plates insulated with an insulation layer between the first and second metal plates. The output cable further includes a plurality of capacitors disposed on the plate cable. Each of the capacitors has a first and second electrical terminals and each of the first and second electrical terminals connected to one of the first and second metal layers provided for storing electrical charges therein for transmitting through the metal layers for supplying power to the microprocessor. In a preferred embodiment, the plurality of capacitors disposed on the first metal plate with the first electrical terminal for each of the capacitors connected to the first metal plate. The plate-cable further includes a plurality of via-connectors penetrating the insulation layer for connecting the second electrical terminal for each of the capacitors to the second metal plate. In another preferred embodiment, the plate-cable further includes multiple insulated plate-segments each of the plate-segment is provided for supplying power of a different voltage to the microprocessor. In another preferred embodiment, the output cable further includes a microprocessor connector socket soldering to an output end the plate-cable.