CN210926402U - Public first structure of USB - Google Patents

Public first structure of USB Download PDF

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Publication number
CN210926402U
CN210926402U CN201922175383.7U CN201922175383U CN210926402U CN 210926402 U CN210926402 U CN 210926402U CN 201922175383 U CN201922175383 U CN 201922175383U CN 210926402 U CN210926402 U CN 210926402U
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terminal
narrow
wide
terminals
core
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CN201922175383.7U
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Chinese (zh)
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李峰
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Qingfeng Technology Guangdong Co ltd
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Qingfeng Technology Guangdong Co ltd
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Abstract

The utility model relates to the technical field of electronics, a USB male head structure is provided, which comprises a metal shell and a core group, wherein the core group is arranged in the metal shell, the core group comprises a rubber core and a terminal group, the terminal group and the rubber core are integrally molded by injection, the terminal group comprises a wide terminal and a narrow terminal, and the narrow terminals are arranged at two sides of the wide terminal at intervals; the number of the wide terminals is two, and the wide terminals and the narrow terminals are arranged in parallel at intervals; the free ends of the wide and narrow terminals extend downwardly to form an arcuate transition. The utility model discloses free end downwardly extending with narrow terminal and wide terminal forms curved transition portion and imbeds to the front end in heavy first groove to make narrow terminal and wide terminal imbed to heavy first groove on, thereby make it when using, when female seat inserts, utilize curved transition portion, can reduce female seat and act on the effort on the direction of motion on the terminal group terminal surface, thereby in order to reach the problem of the whole atress of buffering terminal group, thereby in order to improve its life.

Description

Public first structure of USB
Technical Field
The present invention relates to the field of electronic technologies, and in particular, to a USB male connector structure.
Background
USB (universal serial bus) is an external bus standard for standardizing connection and communication between a computer and external devices, and is also an input/output interface specification, and is widely used in information communication products such as personal computers and mobile devices. With the rapid development of electronic technology, the application of USB plugs is more and more extensive, and USB plays an important role in the electronic field.
The USB plug in the prior art generally includes an iron shell, a terminal and an insertion assembly, the terminal is inserted into the insertion assembly, the entire insertion assembly together with the terminal thereon is inserted into the iron shell, and after the assembly is completed, an outer mold is formed outside the iron shell. At present, terminal group in current USB plug, what generally adopted is complicated curved structure or flat structure, and current curved structure, it generally lies in the rear portion fixed part of terminal, still adopt flat structure to its part first with female seat contact, and this kind of flat structure, in order to guarantee the effect that public head and female seat are connected, generally need set up the terminal of public head in the terminal surface that is a little higher than gluey core, this just leads to its grafting in-process, the terminal surface of public head receives the exogenic action, lead to terminal and gluey core pine to take off or even separate, influence its performance.
In addition, currently, two short terminals in the middle and a small adjacent distance are commonly used in the existing terminal set, and the distance between the two narrow terminals is larger than the distance between the middle 2 terminals, as shown in fig. 1 and 3 in a USB plug structure disclosed in chinese patent CN201520552835.8, but in the actual terminal processing process, because the width of the material belt used is constant, and because the distances between the terminals on the two sides and the middle terminal are different, this results in that in the processing process, one material belt can only process one side terminal in one stamping process, which wastes raw materials on one hand, and on the other hand, affects the processing efficiency.
Therefore, in order to solve the above problems, it is urgently needed to provide a USB male plug structure capable of prolonging the plugging life.
Disclosure of Invention
In order to solve the above technical problems, the present invention provides a USB male structure, so as to solve the problem of short service life caused by the insertion stress of the terminal of the existing USB male structure, and further solve the technical problems of low processing efficiency and high cost.
In order to achieve the purpose, the technical scheme of the invention is as follows: the USB male connector structure is characterized by comprising a metal shell and a core group, wherein the core group is arranged in the metal shell and comprises a rubber core and a terminal group, the terminal group and the rubber core are integrally molded by injection, the terminal group comprises a wide terminal and a narrow terminal, and the narrow terminals are arranged on two sides of the wide terminal at intervals; the number of the wide terminals is two, and the two wide terminals are arranged in parallel with the narrow terminals at intervals; the free ends of the wide terminal and the narrow terminal extend downwards to form an arc-shaped transition part, the rubber core comprises a front end and a rear end matched with the terminal group, the middle part of the front end is sunken downwards to form a countersunk groove, and the wide terminal and the narrow terminal are embedded into the countersunk groove.
On the basis of the above scheme, preferably, the upper surfaces of the wide terminal and the narrow terminal are both provided with contact parts protruding upwards, the root parts of the contact parts are flush with the bottom end surface of the countersunk head groove, and the free ends of the transition parts are embedded into the end surface of the countersunk head groove.
In addition to the above, preferably, a pitch between two narrow terminals is equal to a pitch between a narrow terminal and an adjacent wide terminal.
On the basis of the above scheme, preferably, the narrow terminal is provided with a contact portion, and the wide terminal is provided with two contact portions arranged in parallel at intervals.
Preferably on the basis of the scheme, the metal casing comprises an upper casing and a lower casing, the upper casing and the lower casing are in matched connection to form a cavity, the lower surface of the upper casing and the upper surface of the lower casing are provided with a buckle protruding towards the inner surface and used for limiting, the core assembly is arranged in the cavity, and the core assembly is provided with a clamping hole matched with the buckle.
On the basis of the scheme, the metal shell comprises an upper portion, a lower portion, a left portion and a right portion, the upper portion is parallel to the lower portion and is formed by the left portion and the right portion which are connected to form a cavity for installing the core assembly, the lower surface of the upper portion and the upper surface of the lower portion are provided with a buckle protruding towards the inner surface and used for limiting, the core assembly is provided with a clamping hole matched with the buckle, the upper portion is close to one side of the wiring portion and extends outwards to form a baffle, and when the core assembly is installed in the cavity, the baffle is folded downwards to enable the free end of the baffle to be close to the lower portion.
Compared with the prior art, the invention has the beneficial effects that:
1. the free ends of the narrow terminal and the wide terminal extend downwards to form an arc-shaped transition part to be embedded into the front end of the countersunk groove, and the narrow terminal and the wide terminal are embedded into the countersunk groove, so that when the terminal is used, for example, when the female base is inserted, the action force of the female base on the end face of the terminal group in the moving direction can be reduced by using the arc-shaped transition part, the problem of buffering the whole stress of the terminal group is solved, and the service life of the terminal group is prolonged;
2. the invention also has the advantages that the two contact parts which are arranged in parallel at intervals are arranged on the wide terminal, compared with one contact part of the existing wide terminal, the opposite-insertion contact effect between the wide terminal and the female seat terminal can be effectively improved, and due to the design, the distance between the two narrow terminals can be designed to be equal to the distance between the narrow terminal and the adjacent wide terminal, so that the two terminals can be simultaneously processed on the same material belt in the processing process, and the production and processing efficiency can be effectively improved.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is an isometric view of a first embodiment of the invention.
Fig. 3 is an exploded view of the first embodiment of fig. 1.
Fig. 4 is a perspective view illustrating the core pack of fig. 1 according to the first embodiment.
Fig. 5 is an exploded view of the first embodiment of fig. 2.
Fig. 6 is a schematic perspective view of a metal shell according to a second embodiment of the present invention.
Fig. 7 is an isometric view of a metal shell of a second embodiment of the invention.
Fig. 8a is a front view of an external standard type USB2.0 female socket.
Fig. 8b is a front view of the external USB2.0 female housing.
Fig. 9 is a schematic plan view of a material belt that is punched to form the terminal set of the USB2.0 female socket of fig. 8 b.
Detailed Description
While this invention is susceptible of embodiment in different forms, there is shown in the drawings and will herein be described in detail, specific embodiments thereof with the understanding that the present description is to be considered as an exemplification of the principles of the invention and is not intended to limit the invention to that as illustrated.
Thus, a feature indicated in this specification is intended to describe one of the features of an embodiment of the invention and does not imply that every embodiment of the invention must have the described feature. Further, it should be noted that this specification describes many features. Although some features may be combined to show a possible system design, these features may also be used in other combinations not explicitly described. Thus, the combinations illustrated are not intended to be limiting unless otherwise specified.
In the embodiments shown in the drawings, the directions such as up, down, left, right, front, and rear are used to explain the structure and movement of various components of the present invention not absolutely but relatively. These illustrations are appropriate when these components are in the positions shown in the figures. If the description of the positions of these components changes, the indication of these directions changes accordingly.
The preferred embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.
Referring to fig. 1 in combination with fig. 2 and fig. 3, a USB male connector structure is provided, which includes a metal casing 100 and a core set 200, wherein the core set 200 is installed in the metal casing 100, the core set 200 includes a rubber core 210 and a terminal set 220, the terminal set 220 and the rubber core 210 are integrally injection-molded, and wherein:
the terminal group 220 of the present invention includes a long terminal (or "wide terminal") 223 and a short terminal (or "narrow terminal") 221, wherein two narrow terminals 221 are arranged at two sides of the wide terminal 223 in parallel at intervals; the number of the wide terminals 223 is also two, and the two narrow terminals 221 are spaced in parallel; the free ends of the narrow terminal 221 and the wide terminal 223 extend downward to form an arc-shaped transition part 224; the rubber core 210 comprises a front end 211 and a rear end 213 which are matched with the terminal group 220, the middle part of the front end 211 is recessed downwards to form countersunk grooves (not shown) which are linearly communicated with the terminal welding wire grooves 212 and are in accordance with the number of the terminal group 220, and the wide terminals 223 and the narrow terminals 221 are respectively embedded into the corresponding countersunk grooves 212;
the core pack 200 is processed, including:
firstly, processing a terminal group 220, wherein the terminal group 220 is formed by stamping a metal material belt (not shown), namely two narrow terminals 221 presented by the invention are positioned between two wide terminals 223 at two sides, the front end of each terminal is bent to form a transition part 224 of the invention, the tail end (not marked) of each terminal welding line part 226 is connected to a side belt (not shown) formed by excess material at one side, the side belt supports each narrow terminal 221 and each wide terminal 223 to be parallel and accords with the interval of USB2.0 standard, and simultaneously, cracks (not shown) are formed between the tail end of each terminal welding line part 226 and the side belt by stamping;
then, the rubber core 210 is formed by a mold (not shown), and the terminal group 220 is formed in an integral structure buried in the rubber core body, specifically: embedding the terminal set 220 into a mold (here, the mold is a mold of a pre-designed rubber core body in this example) through a side band and forming the rubber core 210 for fixing the terminal set 220 into a whole through injection molding and curing, so that the terminal set 220 is buried in a countersunk groove in the rubber core 210, and the contact part 225 and the welding wire part 226 are respectively exposed on the front and back upper surfaces (not marked) of the rubber core 210, at this time, the side band is broken at the crack to separate from the terminal set 220, in this example, the contact part 225 exposed on the front upper surface of the rubber core 210 can be effectively electrically connected with a corresponding external connector (not shown) during plugging, and the welding wire part 226 exposed on the back upper surface of the rubber core 210 is conveniently welded with a corresponding core wire (not shown);
when the terminal set is used, particularly when the female base is inserted, the arc-shaped transition part 224 can reduce the acting force of the female base on the end face of the terminal set 220 in the moving direction, so that the problem of buffering the whole stress of the terminal set 220 is solved, and the service life of the terminal set is prolonged;
further, the upper surface of each contact part 225 of the present invention is a raised contact part 225 formed by stamping, wherein: contact 225 projects above the countersink and is presented to the front of the core, transition 224 is embedded in the front end of the core, and wire 226 falls into wire groove 212 and exposes a bonding surface (not labeled) through wire groove 212 to the back end of the core.
Referring to fig. 3 in combination with fig. 4, fig. 5, fig. 8a, fig. 8b and fig. 9, the narrow terminal 221 is provided with one contact 225, the wide terminal 223 is provided with two contacts 225 (i.e., an outer contact 225a and an inner contact 225b) arranged in parallel and at intervals, and the pitch between the two narrow terminals 221 is equal to the pitch between the narrow terminal 221 and the adjacent wide terminal 223, when the pitches between the narrow terminals 221 and between the narrow terminal 221 and the adjacent wide terminal 223 in the terminal group 220 are equal, the pitches between the contact 225 between the narrow terminals 221 and between the contact 225 between the narrow terminal 221 and the contact b in the adjacent wide terminal 223 are equal (hereinafter referred to as "the former pitch"); however, the distance between the contact portion 225 of the narrow terminal 221 and the outer contact portion a of the adjacent wide terminal 223 is larger than the distance between the contact portions 225 of the narrow terminal 221 (hereinafter referred to as "between the latter"), the contact portions between the former are parallel and equally spaced (hereinafter referred to as "equally spaced"), and the equally spaced contact portions can match with the external profile (equally spaced) USB socket (see fig. 8 b); the parallel (unequal) spacing of the contact portions between the two terminals is consistent with the spacing between the standard USB2.0 terminal and the terminal (see fig. 8 a). In this embodiment, the design of matching the irregular (equal-spacing) female sockets is added, so as to match both the standard USB female socket (as shown in fig. 8a) and the irregular USB female socket (as shown in fig. 8 b); secondly, by matching the special-shaped USB female socket, a manufacturer of the USB female socket can stamp two rows of crossing terminals (i.e. the left and right terminal sets 310 and 320) simultaneously when stamping the terminal sets with the tape 300 (as shown in fig. 9), so that the tape 300 can be fully utilized to effectively reduce the leftover materials except for the side bands 311 and 321, and the connecting bands 311 and 321 connected with the left and right terminal sets 310 and 320 are respectively stamped with the easy-to- break cracks 312 and 322. Since the USB2.0 female connector is not essential to the present invention, it is only used as a description of the application of the USB2.0 male connector of the present invention.
Referring to fig. 3 in combination with fig. 4 and 5, as one embodiment of the present invention, the metal shell 100 includes an upper shell 110 and a lower shell 120, the upper shell 110 and the lower shell 120 are connected to form a cavity 130, a buckle 140 protruding towards the inner surface is disposed on the lower surface of the upper shell 110 and the upper surface of the lower shell 120 for limiting, a core pack 200 is disposed in the cavity 130, and a clamping hole 214 adapted to the buckle 140 is disposed on the core pack 200.
As shown in fig. 4 and 5, the front portion of the upper housing is in a rectangular housing shape, the upper portion 151 of the upper housing extends outward to form a recess with an open top, and the lower housing 120 and the recess cooperate to form the cavity 130. When the core pack 200 is installed, the core pack 200 is pushed forward from a side close to the lower case 120, and the position of the core pack 200 is defined in the cavity 130 by the engagement of the engaging holes 214 of the core pack 200 with the engaging hooks 140 for the position limitation, which are provided on the lower surface of the upper case 110 and the upper surface of the lower case 120 and protrude toward the inner surface.
As shown in fig. 6 and 7, according to another embodiment of the present invention, the metal shell 100 of the present invention comprises an upper portion 151, a lower portion 152, a left portion 153 and a right portion 154, wherein the upper portion 151 is disposed in parallel with the lower portion 152 and connected by the left portion 153 and the right portion 154 to form the cavity 130 for installing the core pack 200, the lower surface of the upper portion 151 and the upper surface of the lower portion 152 are provided with a buckle 157 protruding toward the inner surface for limiting, and the core pack 200 is provided with a clamping hole 214 adapted to the buckle 157, one side of the upper portion 151 near the wire connecting portion extends outward to form a foldable baffle 158, and when the core pack 200 is not assembled, the baffle 158 and the upper portion 151 are in a parallel and coplanar state; and when the core pack 200 is completely loaded into the cavity 130, the barrier 158 is folded down such that the free end thereof approaches the lower portion 152, thereby forming a supporting and restraining effect on the core pack 200.
Finally, the method of the present application is only a preferred embodiment and is not intended to limit the scope of the present invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. A USB male head structure is characterized by comprising a metal shell and a core group, wherein the core group is arranged in the metal shell and comprises a rubber core and a terminal group, the terminal group and the rubber core are integrally molded by injection, the terminal group comprises two wide terminals and two narrow terminals, and the two narrow terminals are arranged on two sides of the wide terminals at intervals; the two wide terminals are arranged between the narrow terminals in parallel at intervals; the rubber core comprises a front end and a rear end matched with the terminal group, a countersunk groove is formed in the middle of the upper surface of the front end downwards, the countersunk groove is communicated with a welding wire groove in the upper surface of the rear end of the rubber core, and the wide terminal and the narrow terminal are embedded into the countersunk groove and the welding wire groove.
2. A male USB structure as claimed in claim 1, wherein: the upper surfaces of the wide terminal and the narrow terminal are respectively provided with a contact part protruding upwards, the contact parts are exposed on the upper surface of the front end of the rubber core, and the free end of the transition part is embedded into the end face of the countersunk groove.
3. A male USB structure according to claim 2 wherein the narrow terminal has a contact portion and the wide terminal has two contact portions spaced apart in parallel.
4. A USB male structure according to claim 3 wherein the spacing between two of said narrow terminals is equal to the spacing between said narrow terminals and adjacent said wide terminals.
5. The male structure of claim 1, wherein the metal shell comprises an upper shell and a lower shell, the upper shell and the lower shell are cooperatively connected to form a cavity, a buckle protruding towards the inner surface and used for limiting is arranged on the lower surface of the upper shell and the upper surface of the lower shell, the core pack is arranged in the cavity, and the core pack is provided with a clamping hole matched with the buckle.
6. The male USB connector structure of claim 1, wherein the metal housing includes an upper portion, a lower portion, a left portion and a right portion, the upper portion is disposed parallel to the lower portion and is connected to the left portion and the right portion to form a cavity for installing the core assembly, the lower surface of the upper portion and the upper surface of the lower portion are provided with a buckle protruding toward the inner surface for limiting, the core assembly is provided with a hole adapted to the buckle, the upper portion is foldable to extend outward to form a baffle, and when the core assembly is installed in the cavity, the baffle is folded downward to allow the free end of the baffle to approach the lower portion.
CN201922175383.7U 2019-12-08 2019-12-08 Public first structure of USB Active CN210926402U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922175383.7U CN210926402U (en) 2019-12-08 2019-12-08 Public first structure of USB

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922175383.7U CN210926402U (en) 2019-12-08 2019-12-08 Public first structure of USB

Publications (1)

Publication Number Publication Date
CN210926402U true CN210926402U (en) 2020-07-03

Family

ID=71344721

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922175383.7U Active CN210926402U (en) 2019-12-08 2019-12-08 Public first structure of USB

Country Status (1)

Country Link
CN (1) CN210926402U (en)

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