The present invention relates to an interface card adapting device structure, and more particularly to an interface card adapting device structure, allowing the plugging-in position of an external connector to be changed without being bound by a particular location.
Various peripheral devices (e.g. speakers, screen, data card, sound card and display card) are also the important roles for data transfer and command control in current computers besides a central processor and memories being used as information processing centers. A variety of interface cards are added on expansion slots of a personal computer to allow data transfer between peripheral devices and the computer and be used for expansion purposes. Among these interface cards, a video card (graphics cards) will be caused to be stuck with other interface cards around it when an external power line is connected because of space sizes after it is inserted in a computer motherboard; it is simple to say that the space size is not enough for the insertion of the external power line, which will be broken or separated from the connector if it is inserted recklessly.
To overcome the defects mentioned above, and make the plugging-in position of an external connector changeable without being bound by a particular position, the present invention is proposed.
One object of the present invention is to provide an interface card adapting device structure, achieving electric conduction smoothly in a small space by changing the plugging position of an external connector into an interface card connector through the design of a transmission conductor.
Another object of the present invention is to provide an interface card adapting device structure, allowing overall wiring to be more flexible, line directions to be more consistent by changing the plugging-in position of an external connector, and relatively, the entirety is allowed to be more eye-appealing since the wiring is more consistent.
To achieve the objects mentioned above, the present invention proposes an interface card adapting device structure, including: an outer frame body, capable of being in connection with an interface card; at least one transmission conductor, accommodated in the outer frame body, and comprising at least one first contact portion and at least one second contact portion positioned differently from the first contact portion; at least one connector, in electric connection with the first contact portion, and capable of being positioned thereon freely according to demand; and at least one fixing element, adapted to fix the connector to the first contact portion after the position is selected. Thus, the outer frame body may be installed on an interface card, and the connector and interface card connector are inserted with each other if the outer connector cannot be inserted in the interface card connector smoothly. At this time, signals or power can then be transferred to different positions through the transmission conductor; it is simple to say that the external connector can then be conducted with the interface card through the contact thereof with the second contact portion because of the different configuration positions of the first and second contact portions.
Referring to
an outer frame body 1, capable of being in connection with an interface card and constituted by a upper outer frame body 10 and lower outer frame body 11 in combination with the upper frame body 10, the outer frame body 1 including at least one expansion slot 12 for the accommodation of a second contact portion 22 mentioned below, a plurality of bracket isolation units 13, and at least one through hole 14 allowing a fixing element 4 mentioned below to be passed through;
at least one transmission conductor 2, accommodated inside the outer frame body 1, and including at least one first contact portion 21 and at least one second contact portion 22 positioned differently from the first contact portion 21;
at least one connector 3, in electric connection with the first contact portion 21 selectively at a predetermined location thereof, the connector 3 including an insertion portion 31 capable of mutual insertion with an interface card connector, and a plurality of conducting portions 32 in electric connection with the first contact portion 21;
at least one fixing element 4, adapted to position the connector 3; and
a covering body, configured on an inner side of the outer frame body 1, and have at least one guide hole 51 allowing the conducting portion 32 to be passed through.
In addition, in the embodiment, the transmission conductors 2 number 2; the upper, lower transmission conductors 2 are separated by the bracket isolation units 13, thereby avoiding short-circuit.
Referring to
The present invention has the following advantages over the prior art: