This application claims the priority benefit of Taiwan patent application serial no. 106217493, filed on Nov. 24, 2017. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of the specification.
The invention relates to an electrical adaptor and a cable connector using the same.
In recent years, along with people's growing demand on transmission rate and storage capacity, a transmission rate of a universal serial bus (USB) has been developed to a USB3.1 super speed+ specification. Particularly, a USB Type-C of a new specification may provide a maximum transmission rate of 10 Gbps, and has a faster transmission rate in case of transmitting a large-capacity file, so as to effectively shorten a transmission time.
Generally, a plug and a socket of an existing USB connector all include a flat terminal and an elastic terminal, though improper operations of a user may cause a damage of the elastic terminal and abrasion of other peripheral structures, in this case, a corresponding maintenance method is only to replace a damaged part after de-soldering or destructively disassembling a structure thereof, and then solder and assemble the structure again. Therefore, such process is time-consuming and labor-costing, and results in a high maintenance cost. Meanwhile, due to a poor design, the existing connector generally has a lower shielding efficiency for a radio frequency interference, which has an impact on high frequency signal transmission of the USB Type-C.
Further, regarding today's USB Type-C specification, the number of terminals is obviously higher than a past specification, meanwhile, a size of a corresponding soldering circuit board is designed towards a trend of light and slim, which results in a limited soldering space, so that the above structure destruction and re-assembling is hard to be implemented, and regardless of manual soldering or other types of soldering, wire trimming or wire soldering on the circuit board becomes very difficult.
Therefore, how to provide a simple connector structure to effectively decrease a time, a labor-cost and a manufacturing cost of a rework process under a premise of maintaining an existing operation mode, and improve the shielding efficiency of the connector structure for the radio frequency interference is an important issue to be resolved by related technicians.
The invention is directed to a cable connector, wherein an electrical adaptor and a cable assembly are detachably assembled to each other, such that a performance thereof is maintained, and also a disassembling and a replacing procedures are easy to be implemented.
The invention provides a cable connector including a first base, a plurality of first terminals, a second base, a plurality of second terminals and a plurality of cables. The first terminals are respectively disposed in the first base, and each of the first terminals has a first tail segment exposed out of the first base. The second terminals are respectively disposed in the second base, and each of the second terminals has a second contact segment exposed out of the second base, and the cables are electrically connected to tail ends of the second terminals. The first base and the second base are detachably assembled with each other, and the first tail segments are respectively and detachably connected to at least a part of the second contact segments in structural contact, such that the second contact segments of the second terminals respectively abut against the first tail segments of the first terminals and then the first terminals are respectively electrically connected to the second terminals, and the cable connector is electrically connected to an external device through a plurality of first contact segments of the first terminals, wherein the first tail segments and the first contact segments are two opposite ends of the first terminals.
The invention provides an electrical adaptor including a first base and a plurality of first terminals, wherein the first terminals are disposed in the first base. The electrical adaptor is detachably butted with a second base and a plurality of second terminals of a cable assembly through the first base and the first terminals, such that a first tail segment of each of the first terminals is detachably leaned against a second contact segment of each of the second terminals. The first tail segments are disposed in a plurality of guide slots on the first substrate and are located in a same plane, and each of the first terminals further has a first contact segment opposite to the first tail segment, and the first contact segments respectively belong to two planes different to and parallel with each other, wherein the cable assembly is electrically connected to an external device through the first contact segments of the electrical adaptor.
According to the above description, the cable connector is composed of a cable assembly and an electrical adaptor that are detachable from each other, so that besides a performance of a connector is maintained, disassembling and replacing procedures are easy to be implemented. Namely, during a rework process of the detachable structure, the electrical adaptor having a higher chance of abrasion (loss) may be easily disassembled for replacement, and a user is unnecessary to destructively disassemble the whole structure, so that a labor-cost, a time cost and a material cost of the rework process are saved, which avails improving applicability of the cable connector.
In order to make the aforementioned and other features and advantages of the invention comprehensible, several exemplary embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
Referring to
In another embodiment that is not shown, the aforementioned structures of the first terminals and the second terminals may be exchanged, i.e. the first tail segments of the first terminals are changed to the elastic structures, and the second contact segments of the second terminals are changed to the pad structures, by which the aforementioned structural butting effect is also achieved.
More importantly, the shielding plate 130 further has third terminals 132, and the third terminals 132 deviate from the tongue structure 131 and extend into the guide slots 111a of the first part 111. Namely, when the first base 110 is assembled to the second base 210, the third terminals 132 may be electrically connected to at least one of the second terminals 230 to achieve a common grounding effect. In other words, in the embodiment, an amount of the second terminals 230 is equal to a sum of an amount of the first terminals 120 and an amount of the third terminals 132.
Referring to
The first part 111 further has stop points 111b located in the guide slots 111a, and the stop points 111b are used for stopping and positioning the first tail segments S1, S4 of the first terminals 120 and the third terminals 132 after injection molding.
In other words, the first terminals 120 has first connection segments S2, S5 connected between the first tail segments S1, S4 and the first contact segments S3, S6, and the first connection segments S2, S5 have bending structures to facilitate extending to a same plane from two planes different to and parallel with each other. Regarding the first terminals 120 of the second group 121B, the first contact segments S6, the first connection segments S5 and the first tail segments S4 are all located in a same plane, and regarding the first terminals 120 of the first group 121A, the first connection segments S2 thereof have bending structures, such that the first tail segments S1 may be located in a same plane with the first tail segments S4. As shown in
On the other hand, the first tail segments S1, S4 and the first contact segments S3, S6 are respectively arranged along the first axis D1, and arrangement lengths T2, T4 of the first tail segments S1, S4 along the first axis D1 is greater than arrangement lengths T1, T3 of the first contact segments S3, S6 along the first axis D1, where T1=T3<T4<T2.
For example, the guide slot 111a of the referential number C1 is used for accommodating the third terminal 132 of the referential number F1, the guide slot 111a of the referential number C2 is used for accommodating the first terminal 120 of the referential number A1 of the first group 121A, . . . , etc., such that a pin corresponding relationship of the guide slots 111a and the first terminals 120 and the third terminals 132 is clearly known, where the positions of the third terminals 132 are substantially located at the first or last position of arranging positions of the first terminals 120. Further, the arranging positions of the first terminals 120 of the embodiment at the first tail segments S1, S4 are substantially located between a pair of the third terminals 132 of the shielding plate 130.
Referring to
Moreover, referring to
On the other hand, the electrical adaptor 100 of the cable connector 10 further includes a second shielding case 140, and the second shielding case 140 sleeves a part of the third part 113, a part of the fourth part 114, and a part of the shielding plate 130 to wrap the second part 112 and the first contact segments S3, S6, and the second shielding case 140 is located within the first shielding case 150 and is electrically connected to the first shielding case 150. In detail, the second shielding case 140 sleeves the third part 113, the tongue structures 113d, 131, 114d of the shielding plate 130 and the fourth part 114, and the second part 112, so as to provide the shielding effect to the first contact segments S3, S6 of the first terminals 120. Meanwhile, the first shielding case 150 further has elastic arms 152 for structurally leaning against and electrically connecting the second shielding case 140, such that the shielding plate 130, the first shielding case 150 and the second shielding case 140 form a common grounding state.
Referring to
In detail, the grounding structure 240 includes a plurality of grounding bars 242, and a part of the cables 220 penetrates through the grounding bars 242 such that the grounding layers 221 of the cables 220 are commonly grounded through the grounding bars. Moreover, the grounding structure 240 includes a grounding sheet 241 disposed on the extending portion 213 of the second base 210. The cables 220 penetrating through the grounding bars 242 lean against the grounding sheet 241 through the grounding bars 242, such that the grounding layers 221 of the cables 220, the grounding bars 242 and the grounding sheet 241 are electrically connected and commonly grounded. Further, referring to
In other embodiments that are not illustrated, the grounding structure may be changed to an integral structure, i.e. while the grounding layers of the cables are electrically connected, jumper structures are adopted to serially connect the grounding bars.
In summary, in the aforementioned embodiments of the invention, the cable connector is composed of a cable assembly and an electrical adaptor that are detachable from each other, so that besides a performance of a connector is maintained, disassembling and replacing procedures are easy to be implemented. Namely, during a rework process of the detachable structure, the electrical adaptor having a higher chance of abrasion (loss) may be easily disassembled for replacement, and the user is unnecessary to destructively disassemble the whole structure, so that a labor-cost, a time cost and a material cost of the rework process are saved, which avails improving applicability of the cable connector.
Moreover, in the electrical adaptor, besides that the shielding plate, the first shielding case and the second shielding case provide the shielding effect to the first terminals in signal transmission, through structure collocation, the shielding plate, the first shielding case and the second shielding case may be electrically connected and commonly grounded. Comparatively, the cable assembly adopts the grounding structure to commonly ground the grounding layers of the cables. When the cable assembly and the electrical adaptor are butted with each other, the grounding structure is butted with the third terminals of the shielding plate through the grounding terminals of the second terminals, such that the grounding layers of the cables, the second terminals (the grounding terminals therein), the shielding plate, the first shielding case and the second shielding case are electrically connected with each other to form a grounding loop to achieve an effect of multi-grounding point.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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106217493 | Nov 2017 | TW | national |