USB Connector Improved Structure
Abstract
The utility model relates to an improved structure of a USB connector, comprising: an insulating body, a circuit board, a plurality of connecting terminals and a plurality of conductive terminals; a through slot is formed in the insulating body; a plurality of terminal slots are opened at a lower edge of the through slot, and the plurality of terminal slots are extended forwardly There is a baffle plate, the baffle plate is provided with a plurality of first openings and a plurality of second openings; one end of the circuit board is provided with a plurality of gold fingers, the circuit board is inserted through the slot, and the positions of the gold fingers respectively correspond to the first openings; One end is disposed on the circuit board away from the other end of the gold finger, and is electrically connected to each gold finger respectively; each of the front ends of the conductive terminals respectively have a guiding portion, and each of the conductive terminals respectively penetrates the terminal slot, and each of the guiding portions The positions correspond to the second openings, respectively. This reduces the size of the connector and prevents the offset of the conductive terminals.

Term
No projected expiry on record.
- Priority and filed
- Granted
- Today
10 claims: 1 independent, 9 dependent
- 1M414007 100年07月21日按正替换頁1 · 六、申請專利範圍: 1 . 一種USB連接器結構改良,包括: 一絕緣本體,内部開設有一通槽,該通槽下緣開設有複數 端子槽,並且自該複數端子槽朝前方延伸設置有一檔板, 該檔板前緣部分開設有複數第一開口,該複數第一開口後 方開設有複數第二開口; 一電路板,穿接該通槽並具有相對的一第一表面及一第二 表面,該第一表面的前端佈設有複數個金手指,各該金手 指分別自該檔板上的該複數第一開口裸露於外; 複數連接端子,其一端具有一端部,該端部穿設於該電路 板上遠離該複數金手指的後端,並且分別電性連接至該等 金手指;以及 複數導電端子,分別穿接該等端子槽,各導電端子的前端 分別具有一導接部,該等導接部位於該等金手指後方,並 且該等導接部分別自該檔板上的複數第二開口凸伸出該絕 緣本體之外。 2.如請求項1所述的USB連接器結構改良,其中更包括一金 屬殼體,該金屬殼體包覆該絕緣本體的外部周緣。 3 .如請求項2所述的USB連接器結構改良,其中該等導接部 與該第一表面上的該等金手指處於不同的水平高度。 4.如請求項2所述的USB連接器結構改良,其中該等連接端 子遠離該端部的另一端各自成型有一焊接部,該等焊接部 朝向遠離該電路板的方向延伸設置,該等導電端子遠離該 導接部的另一端各具有一焊接部,該等焊接部分別凸伸出 該端子槽後端並向下彎折延伸,並與該等連接端子上的各 100205464 該焊接部平行設置。 表單編號A0101 第14頁/共19頁 1003265605-0 M414007 100年07月21日俊正替換頁 5. 如請求項4所述的USB連接器結構改良,其中更包括組接 於該絕緣本體底部的一固定座,該固定座上開設有一前排 插孔及一後排插孔,該前排插孔的數量及位置對應至該等 導電端子,分別供該等導電端子的該等焊接部插接,該後 排插孔的數量及位置對應至該等連接端子,分別供該等連 接端子的該等焊接部插接。 6. 如請求項4所述的USB連接器結構改良,其中該等連接端 子的該等焊接部及該等導電端子的該等焊接部分別電性焊 接至一外部電路基板。 7 .如請求項2所述的USB連接器結構改良,其中該第一表面 上的該等金手指的數量為五片,該等連接端子的數量為五 個。 8.如請求項7所述的USB連接器結構改良,其中該等端子槽 的數量為四個。 9 .如請求項8所述的USB連接器結構改良,其中該等導電端 子的數量為四個。 10.如請求項9所述的USB連接器結構改良,其中該檔板上的 該複數第一開口的數量為五個,該複數第二開口的數量為 四個。 100205464 表單編號A0101 第15頁/共19頁 1003265605-0 The utility model relates to an improved structure of a USB connector, comprising:an insulating body, a through slot is defined therein, a plurality of terminal slots are defined in a lower edge of the through slot, and a baffle is extended from the plurality of terminal slots to the front, and a front edge portion of the baffle is opened a plurality of first openings, the plurality of first openings are open behind the plurality of second openings;a circuit board is connected to the through slots and has a first surface and a second surface, the front surface of the first surface is provided with a front end a plurality of gold fingers, each of the gold fingers being exposed from the plurality of first openings of the baffle;the plurality of connecting terminals having one end at one end, the end portion being disposed on the circuit board away from the plurality of gold fingers The rear end is electrically connected to the gold fingers respectively;and the plurality of conductive terminals are respectively connected to the terminal slots, and the front ends of the conductive terminals respectively have a guiding portion, and the guiding portions are located at the gold fingers The rear portion and the guiding portions respectively protrude from the plurality of second openings of the baffle outside the insulating body. 一種USB連接器結構改良,包括:一絕緣本體,內部開設有一通槽,該通槽下緣開設有複數端子槽,並且自該複數端子槽朝前方延伸設置有一檔板,該檔板前緣部分開設有複數第一開口,該複數第一開口後方開設有複數第二開口;一電路板,穿接該通槽並具有相對的一第一表面及一第二表面,該第一表面的前端佈設有複數個金手指,各該金手指分別自該檔板上的該複數第一開口裸露於外;複數連接端子,其一端具有一端部,該端部穿設於該電路板上遠離該複數金手指的後端,並且分別電性連接至該等金手指;以及複數導電端子,分別穿接該等端子槽,各導電端子的前端分別具有一導接部,該等導接部位於該等金手指後方,並且該等導接部分別自該檔板上的複數第二開口凸伸出該絕緣本體之外。
38 paragraphs, as filed
USB connector structure improvement (2)
This creation is about the structural improvement of a connector, especially the structural improvement of the USB connector.
Universal Serial Bus (USB) is one of the most widely used transmission interfaces in PC peripheral products. It was originally initiated by Intel and Microsoft. It has experienced USB1.0, USB1.1 and USB2 so far. .0 and other three versions of the development process. The USB 1.0, 1.1, and 2.0 versions support the following three transmission rates: (1) the low-speed mode transmission rate is 1.5 Mbps; (2) the full-speed mode transmission rate is 12 Mbps; and (3) the high-speed mode transmission rate is 480 Mbps.
However, with the development of the electronics industry, even the transmission rate of USB2.0 can no longer meet the development requirements of some electronic industries, so the USB 3.0 transmission interface is introduced. The USB 3.0 transmission interface adds two sets of differential terminals and one grounding terminal to the USB 2.0 with four terminals, so there are nine terminals, so that the transmission rate reaches 5 Gbps.
According to the prior art, the female connector conforming to the USB 3.0 specification mainly includes an insulative housing, and a front end of the insulative housing extends a tongue plate to contact the contact portion of the added five terminals with the four terminals of the original USB 2.0. The portions are respectively disposed on opposite surfaces of the tongue plate; since the positions of the terminals have been uniformly standardized, the five terminals added are divided into two rows in the vertical direction from the original four terminals, and all the terminals are separated from each other to avoid Short circuit.
However, with the development trend of computer peripheral products and their corresponding connectors becoming lighter, thinner, shorter and smaller, arranging nine terminals on such a small-sized tongue plate does increase the difficulty of process and assembly, and cannot The volume of the entire connector is further reduced in thickness.
Therefore, how to solve the above problems becomes the goal of improvement by the creator.
One of the purposes of this creation is to provide an improved USB connector structure that simplifies the structure and reduces the size of the connector to meet the requirements of thinning, and does not simplify the structure, causing the conductive terminals to be biased after prolonged use. Shift phenomenon.
In order to achieve the above purpose, the present invention provides an improved USB connector structure, including: an insulating body, a circuit board, a plurality of connecting terminals and a plurality of conductive terminals; a through slot is formed in the insulating body, and a plurality of terminal slots are opened at a lower edge of the through slot; And a plurality of first terminal openings and a plurality of second openings are defined by the plurality of terminal slots extending forwardly; the circuit board is provided with a plurality of gold fingers at one end, the circuit board is inserted into the slot, and the positions of the gold fingers are Corresponding to the first opening respectively; one end of the connecting terminal is disposed on the circuit board away from the other end of the gold finger, and is electrically connected to each gold finger respectively; each of the front ends of the conductive terminals respectively have a guiding portion, and the conductive terminals are respectively connected The terminal slots, and the positions of the respective guiding portions respectively correspond to the second openings.
Compared with the prior art, the present invention has the following effects: in this creation, a plurality of gold fingers are directly arranged on the front end of the circuit board, and a plurality of connection terminals electrically connected to the gold fingers are disposed at the rear end thereof instead of the conventional ones. Five conductive terminals, and the insulating body does not need to extend out of the tongue to connect the nine conductive terminals, thereby greatly simplifying the structure of the female connector and meeting the requirements of thinning; on the other hand, the structure of the present invention is simplified and The number of parts required is reduced, thus reducing manufacturing costs and assembly time.
Moreover, a baffle is extended forwardly from the plurality of terminal slots on the insulative housing, so that when the conductive terminals are connected to the terminal slots, the guiding portions can be respectively protruded from the second opening of the baffle, thereby Solid each conductive terminal. In this way, it is possible to prevent the offset of each of the conductive terminals after a long period of use, thereby effectively extending the life of the connector.
For a more detailed understanding of the features and technical aspects of the present invention, reference should be made to the description and the accompanying drawings.
First, the "front" and "rear" mentioned in the following description are used to accommodate a corresponding male connector 80 according to the USB connector structure modification (such as the male connector shown in the fifth figure). 80) The direction of the inserted opening is defined as the front, and the direction opposite to the opening is defined as the rear.
Please refer to the first figure, which is an exploded perspective view of the present invention. The present invention provides a USB connector structure improvement (hereinafter referred to as a female connector 1). The female connector 1 mainly includes an insulative housing 10 and a circuit board 20 . The plurality of connection terminals 30, the plurality of conductive terminals 40, a fixing base 50, and a metal casing 60.
The insulative housing 10 is made of an insulating material such as plastic or resin. The insulative housing 10 defines a through slot 11 in the front-rear direction, and a plurality of terminal slots 12 are defined in the lower edge of the through slot 11. The through slot 11 and the terminal slot 12 both extend through the front and rear ends of the insulative housing 10, and the insulative housing 10 extends from the plurality of terminal slots 12 toward the front with a baffle 13 on which the plurality of first openings 131 and the second plurality are opened. Opening 132. The number of the plurality of first openings 131 corresponds to the number of the plurality of connection terminals 30. In this embodiment, five are taken as an example; the number of the plurality of terminal slots 12 and the plurality of second openings 132 corresponds to the number of the plurality of conductive terminals 40. In the example, four are taken as examples, but are not limited.
It is to be noted that the plurality of first openings 131 are parallel to the front edge portion of the baffle 13 , and the plurality of second openings 132 are parallel to the rear of the plurality of first openings 131 , and between the plurality of first openings 131 . At a certain interval, the plurality of first openings 131 and the plurality of second openings 132 do not affect each other.
The circuit board 20 is a thin printed circuit board having a width substantially equal to the width of the through slot 11 of the insulative housing 10, so that the circuit board 20 can pass through the slot 11. The circuit board 20 has an opposite first surface 21 and a second surface 22. In the present embodiment, the first surface 21 refers to the lower surface of the circuit board 20, and the second surface 22 refers to the upper surface of the circuit board 20. .
A plurality of gold fingers 211 are disposed on the front end of the first surface 21, and the gold fingers 211 are formed on the first surface 21 by a copper foil conductive material. The number of the plurality of gold fingers 211 corresponds to the number of the plurality of connection terminals 30 and the plurality of first openings 131. In the embodiment, five pieces are taken as an example, but are not limited. When the circuit board 20 is connected to the through slot 11 in the insulative housing 10, the plurality of gold fingers 211 can be exposed to the outside of the plurality of first openings 131 on the baffle 13 so as to be electrically connected to the external terminal body. .
In this embodiment, the five gold fingers 211 and the four conductive terminals 40 can form a connection structure of a universal serial bus (USB) 3.0.
The plurality of connection terminals 30 are made of a metal conductive material, and one end of each of the connection terminals has one end portion 31, and the other end of the end portion 31 has a solder portion 32. The end portions 31 of the plurality of connection terminals 30 are respectively disposed at the rear end of the distal gold finger 211 on the circuit board 20, and are electrically connected to the plurality of gold fingers 211 disposed on the first surface 21, and the soldering portions 32 are oriented. It extends away from the direction of the circuit board 20. The number of the connection terminals 30 corresponds to the number of the gold fingers 211, and five are exemplified in this embodiment.
The plurality of conductive terminals 40 are made of a metal conductive material. The conductive terminals 40 are respectively connected to the terminal slots 12 of the insulative housing 10. In this embodiment, the number of the plurality of conductive terminals 40 is exemplified by four. The front ends of the conductive terminals 40 respectively have a guiding portion 41, and a solder portion 42 is formed on each of the rear ends of the guiding portions 41. When the conductive terminal 40 is connected to the terminal slot 12 of the insulative housing 10, the guiding portion 41 of each of the conductive terminals 40 protrudes from the front end of the insulative housing 10, and each of the guiding portions 41 is respectively formed by a plurality of second openings on the baffle 13 132 protrudes beyond the insulative housing 10. Thereby, each of the guiding portions 41 can be electrically connected to the external terminal or the gold finger body, and the locking effect can be generated by the baffle 13 for the plurality of conductive terminals 40.
The welded portions 42 of the plurality of conductive terminals 40 respectively protrude from the rear end of the terminal groove 12 and are bent downward, and are disposed in parallel with the welded portion 32 of the plurality of connection terminals 30.
Referring to the second and third figures, the first combined perspective view and the second combined perspective view of the present invention, the guiding portion 41 of the plurality of conductive terminals 40 is located behind the gold finger 211 on the first surface 21. Referring again to the fourth figure, a combined sectional view of the present creation. As shown, the plurality of gold fingers 211 on the first surface 21 of the circuit board 20 are exposed by the plurality of first openings 131 on the baffle 13, and the guiding portions 41 of the plurality of conductive terminals 40 are not flat. The first surface 21 protrudes beyond the insulative housing 10 from the plurality of second openings 132 on the baffle plate 13 such that the guiding portions 41 of the respective conductive terminals 40 are not identical to the gold fingers 211 on the first surface 21 The level of the level.
Referring to the first figure again, the fixing base 50 has a bottom plate 51 and a rear cover 52 extending vertically upward from the bottom plate 51. The bottom plate 51 is respectively provided with a protrusion 511 on both sides. The bottom plate 51 is provided with a front row of jacks 512 and a rear row of jacks 513. The number of the front row of jacks 512 is four for inserting the soldering portions 42 of the plurality of conductive terminals 40; the number of the rear row of jacks 513 is Five for inserting the soldering portion 32 of the plurality of connection terminals 30. Therefore, the front row of jacks 512 and the rear row of jacks 513 correspond to the number and position of the soldering portions 42 of the plurality of conductive terminals 40 and the soldering portions 32 of the plurality of connecting terminals 30, respectively.
Moreover, the soldering portion 42 of the plurality of conductive terminals 40 and the soldering portion 32 of the plurality of connecting terminals 30 respectively extend downward to pass through the front row of jacks 512 and the rear row of jacks 513. Finally, the soldering portions 42 and 32 are electrically connected together. Soldering to an external circuit substrate 70 (such as the external circuit substrate 70 shown in FIG. 5), whereby the female connector 1 of the present invention is electrically connected to the external circuit substrate 70.
A card slot 14 is defined in the inner wall of the bottom surface of the insulative housing 10 for the purpose of embedding the protrusions 511 on the two sides of the bottom plate 51. Therefore, when the fixing base 50 is assembled from the bottom to the bottom of the insulative housing 10, The protrusions 511 of the bottom plate 51 are inserted into the card slots 14 at the bottom of the insulative housing 10, and the soldering portions 42 of the conductive terminals 40 are respectively passed through the front row of jacks 512 on the bottom plate 51, and the connection terminals 30 are soldered. The portion 32 passes through the rear row of jacks 513 on the bottom plate 51, and the rear cover 52 covers the rear end surface of the insulative housing 10, thereby protecting the circuit board 20, the plurality of connection terminals 30, and the plurality of conductive terminals in the insulative housing 10. 40.
The metal housing 60 is substantially a rectangular hollow housing that covers the outer periphery of the insulative housing 10 to provide metal shielding to prevent electromagnetic interference, and to protect the internal circuit board 20, the plurality of connection terminals 30, and the plurality of conductive terminals. 40.
Referring to the fifth and sixth figures, a side cross-sectional view of the female connector 1 and a corresponding male connector of the present invention before being inserted into each other, and a side cross-sectional view after being inserted into each other. The male connector 80 is an existing male connector conforming to the USB 3.0 specification, and has four first terminals 81 and five second terminals 82. As can be seen from the side cross-sectional view of the fifth figure, the first terminal 81 It is located below the second terminal 82, and the first terminal 81 and the second terminal 82 are offset from each other.
As shown in the sixth figure, when the female connector 1 of the present invention and the corresponding male connector 80 are plugged into each other, the gold finger 211 on the first surface 21 of the circuit board 20 will contact the male connector 80. The second terminal 82 contacts the first terminal 81 in the male connector 80, thereby electrically connecting the female connector 1 and the male connector 80. It is worth mentioning that when the guiding portion 41 of the conductive terminal 40 abuts the first terminal 81 in the male connector 80, each of the conductive terminals 40 will move due to being pressed. Each of the conductive terminals 40 is inserted into the terminal slot 12 of the insulative housing 10, and each of the guiding portions 41 protrudes from the plurality of second openings 132 on the baffle plate 13 beyond the insulative housing 10. The plate 13 has a clamping effect on each of the conductive terminals 40, so that the respective conductive terminals 40 are not offset by the plug connection with the male connector 80, so that the failure rate of the connector can be reduced.
Compared with the prior art, in the present invention, a plurality of gold fingers 211 are disposed directly on the front end of the circuit board 20, and a plurality of connection terminals 30 electrically connected to the gold fingers 211 are disposed at the rear end thereof instead of the conventional five. The conductive terminal, and the insulating body 10 does not need to extend out of the tongue to connect the nine conductive terminals, thereby greatly simplifying the structure of the female connector 1 and meeting the requirements for thinning; on the other hand, the structure of the present invention is simplified and The number of parts required is reduced, so that the manufacturing cost can be reduced and the assembly time can be shortened. Further, each of the conductive terminals 40 is inserted into the terminal end 12 of the insulative housing 10, and each of the guiding portions 41 is respectively attached to the baffle plate 13. The plurality of second openings 132 protrude beyond the insulative housing 10. This also prevents the offset of each of the conductive terminals 40 after a long time of use.
The above is only a specific description of a preferred embodiment of the present invention, and is not intended to limit the scope of the patents of the present invention, and any other equivalent transformations are within the scope of the patent application described below.
<p>1 female connector</p><p>10Insulated body</p><p>11through slot</p><p>12Terminal slot</p><p>13Baffle</p><p>131First opening</p><p>132second opening</p><p>14 card slot</p><p>20 boards</p><p>21 first surface</p><p>211 Gold Finger</p><p>22 second surface</p><p>30Connecting terminal</p><p>31 End</p><p>32Weld Department</p><p>40Electrical terminals</p><p>41Guidance</p><p>42Weld Department</p><p>50 fixed seat</p><p>51floor</p><p>511Bump</p><p>512 front row jack</p><p>513 Rear jack</p><p>52Back cover</p><p>60Metal housing</p><p>70External circuit board</p><p>80 Male connector</p><p>81First terminal</p><p>82second terminal</p>
The first picture is an exploded perspective view of the creation.
The second picture is the first combined perspective of the creation.
The third picture is a second combined perspective of the creation.
The fourth picture is a combined sectional view of the creation.
The fifth figure is a side cross-sectional view of the female connector and the corresponding male connector of the present invention before being inserted into each other.
The sixth figure is a side cross-sectional view of the female connector of the present invention and the corresponding male connector being inserted into each other.
1 sheet
Sheet 1
3 members in 2 offices
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 100205464 | Taiwan Province of China | U | |
| TW20110205464U | – | – | – |
Members3
| Document | Office | Kind | |
|---|---|---|---|
| TWM414007UThis record | Taiwan Province of China | U | |
| US2012252278A1 | United States of America | A1 | |
| US8480436B2 | United States of America | B2 |
2 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Annulment or lapse of a utility model due to non-payment of feesLapsedMM4K | MM4K | |
| Annulment or lapse of a utility model due to non-payment of feesLapsedMM4K | MM4K |
Numbers
- Publication
- M414007
- Publication, DOCDB
- M414007
- Publication, EPODOC
- TWM414007U
- Application
- 100205464
- Application, DOCDB
- 100205464
- Application, EPODOC
- TW20110205464U
Titles2
- English
- USB Connector Improved Structure
- Chinese
- USB???????(?)
Classification
- CPC, 3
- H01R13/6658
- H01R12/724
- H01R24/62