WO2016029707A1 - 一种可正反方向对插的usb插头 - Google Patents

一种可正反方向对插的usb插头 Download PDF

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Publication number
WO2016029707A1
WO2016029707A1 PCT/CN2015/077287 CN2015077287W WO2016029707A1 WO 2016029707 A1 WO2016029707 A1 WO 2016029707A1 CN 2015077287 W CN2015077287 W CN 2015077287W WO 2016029707 A1 WO2016029707 A1 WO 2016029707A1
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WIPO (PCT)
Prior art keywords
conductive
conductive terminals
ferrule
usb plug
contact portion
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PCT/CN2015/077287
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English (en)
French (fr)
Inventor
李亚飞
潘成禄
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李亚飞
潘成禄
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Application filed by 李亚飞, 潘成禄 filed Critical 李亚飞
Publication of WO2016029707A1 publication Critical patent/WO2016029707A1/zh

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/64Means for preventing incorrect coupling
    • H01R13/642Means for preventing incorrect coupling by position or shape of contact members

Definitions

  • the present invention relates to the field of electrical connectors, and in particular, to a USB plug that can be inserted in the forward and reverse directions.
  • USB Universal Serial BUS
  • USB Universal Serial Bus Interface
  • Most of the computer peripherals are connected to the computer via USB for data transmission and exchange, such as mouse, keyboard, USB flash drive, printer, mobile phone, camera and so on. Then you need to install the U SB socket on the computer, install the plug on the peripheral device of the computer, and connect the plug to the socket to make the two electrical connections.
  • micro-Universal Serial Bus (MICRO USB) interface connectors have been widely used in connector interfaces such as transmission communication and charging power for portable mobile devices such as mobile phones and tablet computers.
  • the USB interface has deliberately designed a foolproof design, that is, the plug and the socket need to be aligned because of their single-face insertion characteristics, which requires a lot of waste. Check and proofread the day. In this way, when the user is using the cymbal, it is often necessary to check which direction the socket is in, and then adjust the plug to the same direction and then insert it, or insert it in a different direction and insert it again, and then change it for the hard plug. The plug or the socket was broken and the trouble was caused.
  • the purpose of the present invention is to provide a USB plug that can be inserted into a USB socket on both sides of the prior art and can be inserted in the forward and reverse directions.
  • a USB plug that can be inserted in the opposite direction, comprising a metal casing, an insulating body disposed in the metal casing, and a conductive terminal, wherein the front end of the insulating body protrudes with a ferrule, and the upper and lower sides of the ferrule
  • a row of conductive terminals is disposed on each end surface, and the conductive terminals on the upper end surface of the ferrule are sequentially connected in a left-to-right order with the conductive terminals of the lower end surface of the ferrule in a right-to-left order; wherein each conductive terminal Conductive contacts protrude from the inner side, and the conductive contacts of each of the conductive terminals respectively extend to the positions of the conductive contacts of the respective conductive terminals and are pressed into contact with each other to form a contact point.
  • Each of the upper and lower end faces of the ferrule has four conductive terminals, and the upper end faces of the ferrules are sequentially inserted from left to right, the first, the second, the third, and the fourth conductive terminals.
  • the lower end surface of the core is connected in one-to-one correspondence from the right to the left, the second, the third, and the fourth conductive terminals.
  • the insulating body is combined with the conductive terminal into an integrated structure by an integral injection molding method.
  • the pressing body is respectively provided with a pressing hole at a position corresponding to each contact point on the insulating body.
  • the conductive contact portions of each of the conductive terminals are respectively disposed in the up and down direction with the conductive contact portions of the respective conductive terminals, and are closely pressed and fixed to each other in the up and down direction.
  • the conductive contact portion of one of the conductive terminals is convexly provided with a convex hull at a joint surface of the contact point, and the convex hull is pressed against the conductive contact portion of the other conductive terminal.
  • the USB plug that can be inserted in the forward and reverse direction comprises a metal shell, an insulating body disposed in the metal shell, and a conductive terminal, and the front end of the insulating body protrudes
  • the ferrule has a row of conductive terminals disposed on the upper and lower ends of the ferrule, and the conductive terminals on the upper end surface of the ferrule are sequentially arranged from left to right and the conductive terminals at the lower end of the ferrule are arranged from right to left.
  • the ferrule of the utility model can be electrically connected on both sides, so that the plug can be effectively electrically connected into the socket from either the front and the back, and the utility model has the advantages of convenient connection, no directional insertion error, and effective protection of the plug and the socket.
  • connection is simple and convenient, durable, and improves the operation efficiency; wherein each of the conductive terminals protrudes from the inner side with a conductive contact portion, and the conductive contact portions of each of the conductive terminals respectively extend to the corresponding conductive terminals
  • the positions of the conductive contacts are pressed into contact with each other to form a contact point, and the respective conductive terminals are sequentially placed in the molding cavity of the insulating body, positioned by the mold, and corresponding positions at the respective contact points
  • the conductive contact portion is pressed and re-filled into the high-temperature plastic in the mold cavity to form and fix, not only the two rows of conductive terminals are tightly combined and fixed, the combination is stable and reliable, and the plastic structure such as the insulating body and the ferrule is also formed.
  • the structure and the manufacturing process are simple, the production efficiency is improved, the mass production can be realized, and the cost is saved.
  • FIG. 1 is a schematic structural view of the present invention.
  • FIG. 2 is a front view of the present invention.
  • FIG. 3 is a schematic view of the internal structure of the present invention.
  • FIG. 4 is a schematic structural view of a conductive terminal of the present invention.
  • the USB plug of the present invention can be inserted in the forward and reverse directions, including a metal casing 1.
  • the conductive terminal 3 in the metal housing 1 the front end of the insulative housing 2 protrudes from the ferrule 21, and a row of conductive terminals 3 are disposed on the upper and lower end faces of the ferrule 21, and the upper end surface of the ferrule 21 is electrically conductive.
  • the terminals 3 are sequentially connected in a left-to-right order with the conductive terminals 3 of the lower end surface of the ferrule 21 in a right-to-left order, and the ferrule 21 of the present invention can be electrically connected on both sides, so that the plug It can be effectively connected by inserting the socket from either the positive or negative direction. It is easy to use and does not have the wrong direction. It effectively protects the plug and the socket.
  • the connection is simple and convenient, durable and improves the operation efficiency.
  • Each of the conductive terminals 3 protrudes inwardly from the conductive contact portion 31, and the conductive contact portions 31 of each of the conductive terminals 3 respectively extend to the positions of the conductive contact portions 31 of the corresponding conductive terminals 3 and are pressed and guided to each other. Passing forms a contact point.
  • Each of the upper and lower end faces of the ferrule 21 has four rows of conductive terminals 3, and the upper end faces of the ferrules 21 are respectively left, right, first, second, third, and fourth conductive terminals 3, respectively.
  • the lower end surface of the ferrule 21 is connected to the first, second, third, and fourth conductive terminals 3-1 from the right to the left, so as to be inserted into the first conductive terminal 3 and the reverse side of the front surface.
  • the first conductive terminal 3 is correctly connected to the same terminal position.
  • the insulative housing 2 is a high temperature resistant and wear resistant material, and the insulative housing 2 is integrated with the conductive terminal 3 by an integral injection molding method to ensure that the conductive terminal 3 is not loose, and the long-term plugging and use does not damage the structure of the conductive terminal 3, so that The electric transmission performance is stable and reliable, and the two rows of conductive terminals 3 are also tightly pressed and fixed together, and the combination is stable and reliable. Pressing holes 22 are respectively disposed at positions corresponding to each of the contact points on the insulative housing 2.
  • the rear end of the conductive terminal 3 is exposed at the rear end of the insulating body 2 to form a solder tail end portion, and the solder tail end can be made into a wire-bonded type, an SMT-attached PCB board type or a DIP plug-in PCB board type, etc., to suit different occasions.
  • the conductive contact portions 31 of each of the conductive terminals 3 are respectively disposed in the up-and-down direction with the conductive contact portions 31 of the corresponding conductive terminals 3, and are tightly pressed and fixed to each other in the up-and-down direction, and the pressing distance in the up-and-down direction is shorter, and the pressing is performed. more convenient.
  • the conductive contact portion 31 of one of the conductive terminals 3 is convexly provided with a convex hull 32 at a joint surface of the contact point, and the convex hull 32 may be laterally disposed or longitudinally disposed.
  • the convex hull 32 is pressed against the conductive contact portion 31 of the other conductive terminal 3, so that the contact conduction reliability between the conductive terminals 3 is better, and the conductive performance and stability are improved.
  • the two correspondingly connected conductive terminals 3 can also be connected without using the convex hull 32.
  • the high-current spot welding and the bump welding are performed between the conductive contact portions 31 of the two corresponding conductive terminals 3. The welding method is fixedly connected.
  • each of the conductive terminals 3 is sequentially placed in the molding cavity of the insulating body 2, positioned by the mold, and the corresponding conductive contact portions 31 are pressed at the positions of the contact points, and then poured into the high temperature.
  • the plastic is formed and fixed in the cavity of the mold, and the two rows of conductive terminals 3 realize the function of positive and negative insertion of the plug through the positioning and pressing type connection, not only the two rows of conductive terminals 3 are tightly combined and fixed, the combination is stable and reliable, and the same shape is also formed.
  • the plastic structure such as the insulating body 2 and the ferrule 21 can be completed by a single mold, and the structure and the manufacturing process are simple, the production efficiency is improved, mass production can be realized, and cost can be saved.

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  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)

Abstract

提供了一种可正反方向对插的USB插头,包括金属壳体(1)、绝缘本体(2)、导电端子(3),绝缘本体(2)的前端凸伸出有插芯(21),插芯(21)的上下两端面各设置一排导电端子(3),插芯(21)上端面的导电端子(3)按由左到右的顺序分别依次与插芯(21)下端面的导电端子(3)按由右到左的顺序一一对应连接。该插芯(21)双面都能进行电连接,使得插头从正反任一方向插入插座均能有效电连接,使用方便,不会出现方向插错的现象;其中,每个导电端子(3)分别向内侧凸伸出有导电接触部(31),每个导电端子(3)的导电接触部(31)分别与相应导电端子(3)的导电接触部(31)相互压合接触导通形成接触点,结构和制作工艺简单,提高生产效率,可实现大批量生产,节省成本。

Description

说明书 发明名称:一种可正反方向对插的 USB插头 技术领域
[0001] 本实用新型涉及电连接器技术领域, 尤其涉及一种可正反方向对插的 USB插头 背景技术
[0002] USB (Universal Serial BUS , 通用串行总线) , 是一个外部总线标准, 用于规 范电脑与外部设备的连接和通讯, 是应用在 PC领域的接口技术。 USB接口支持 设备的即插即用和热插拔功能。 当今用于数据传输与数据交换的外设接口中, 通用串行总线接口 (USB) 无疑是在计算机及周边电子消费品领域应用最为广泛 的接口之一。 计算机周边外设绝大多通过 USB连接计算机进行数据传输与交换, 如鼠标、 键盘, U盘、 打印机, 手机、 相机等等。 那么就需要在计算机上安装 U SB插座, 在计算机周边外部设备上安装插头, 连接吋插头插入插座, 使两者产 生电连接。 目前, 用于手机、 平板电脑等便携式移动设备的传输通讯、 充电通 电等连接器接口中, 微型通用串行总线 (MICRO USB) 接口连接器已经被广泛 应用。
[0003] 由于插头插座本身设计电连接点是一一对应的, 插错了会造成无效甚至将设备 烧坏等重大危险。 为了防止人们在使用 USB接口对接吋插错, USB接口特意进行 了防呆设计, 即插头、 插座会因为其单面对插的特性而需要对准方向才能插进 去, 这就需要浪费很多的检査和校对的吋间。 这样, 用户在使用吋, 往往需要 査看插座是哪一方向的, 再将插头调整到同一方向再插入, 或者一插不对换个 方向再插, 有吋换来换去还会因为硬插用力过猛把插头或插座给插坏了, 造成 很大麻烦。
技术问题
[0004] 本实用新型的目的就是针对现有技术存在的不足而提供一种能够正反两面任意 插到 USB插座上、 制作工艺简单的可正反方向对插的 USB插头。
问题的解决方案 技术解决方案
[0005] 为了实现上述目的, 本实用新型采用的技术方案是:
[0006] 一种可正反方向对插的 USB插头, 它包括有金属壳体、 设置在金属壳体内的绝 缘本体、 导电端子, 绝缘本体的前端凸伸出有插芯, 插芯的上下两端面各设置 一排导电端子, 插芯上端面的导电端子按由左到右的顺序分别依次与插芯下端 面的导电端子按由右到左的顺序一一对应连接; 其中, 每个导电端子分别向内 侧凸伸出有导电接触部, 每个导电端子的导电接触部分别延伸至相应导电端子 的导电接触部的位置并相互压合接触导通形成接触点。
[0007] 所述插芯的上下两端面上每排导电端子各为 4根, 插芯上端面由左到右第 1根、 第 2根、 第 3根、 第 4根导电端子分别依次与插芯下端面由右到左第 1根、 第 2根、 第 3根、 第 4根导电端子一一对应连接。
[0008] 所述绝缘本体通过一体注射成型方式与导电端子结合成一体结构。
[0009] 所述绝缘本体上与每个接触点对应的位置处分别幵设有压合孔。
[0010] 所述每个导电端子的导电接触部分别与相应导电端子的导电接触部沿上下方向 设置并沿上下方向相互紧密压合固定。
[0011] 所述在两个对应连接的导电端子中, 其中一个导电端子的导电接触部在接触点 的结合面位置凸设有凸包, 凸包顶压在另一个导电端子的导电接触部上。
[0012] 所述两个相应导电端子的导电接触部之间通过焊接方式固定连接。
发明的有益效果
有益效果
[0013] 本实用新型有益效果在于: 本实用新型的一种可正反方向对插的 USB插头包括 有金属壳体、 设置在金属壳体内的绝缘本体、 导电端子, 绝缘本体的前端凸伸 出有插芯, 插芯的上下两端面各设置一排导电端子, 插芯上端面的导电端子按 由左到右的顺序分别依次与插芯下端面的导电端子按由右到左的顺序一一对应 连接, 本实用新型的插芯双面都能进行电连接, 使得插头从正反任一方向插入 插座均能有效电连接, 使用方便, 不会出现方向插错的现象, 有效保护插头和 插座, 连接简单方便, 耐用, 提高操作效率; 其中, 每个导电端子分别向内侧 凸伸出有导电接触部, 每个导电端子的导电接触部分别延伸至相应导电端子的 导电接触部的位置并相互压合接触导通形成接触点, 生产制造吋, 将各个导电 端子依次放入绝缘本体的成型模具型腔内, 通过模具定位, 并且在各接触点位 置上将相应的导电接触部压合,再灌入高温塑胶在模具型腔内成型固定,不仅使 两排导电端子之间紧密结合固定, 结合稳固可靠, 同吋也成型出了绝缘本体和 插芯等塑胶结构, 结构和制作工艺简单, 提高生产效率, 可实现大批量生产, 节省成本。
对附图的简要说明
附图说明
[0014] 图 1是本实用新型的结构示意图。
[0015] 图 2是本实用新型的前视图。
[0016] 图 3是本实用新型的内部结构示意图。
[0017] 图 4是本实用新型导电端子的结构示意图。
本发明的实施方式
[0018] [0008]下面结合附图对本实用新型作进一步的说明, 见图 1~4所示, 本实用新 型的一种可正反方向对插的 USB插头, 包括有金属壳体 1、 设置在金属壳体 1内的 绝缘本体 2、 导电端子 3, 绝缘本体 2的前端凸伸出有插芯 21, 插芯 21的上下两端 面各设置一排导电端子 3, 插芯 21上端面的导电端子 3按由左到右的顺序分别依 次与插芯 21下端面的导电端子 3按由右到左的顺序一一对应连接, 本实用新型的 插芯 21双面都能进行电连接, 使得插头从正反任一方向插入插座均能有效电连 接, 使用方便, 不会出现方向插错的现象, 有效保护插头和插座, 连接简单方 便, 耐用, 提高操作效率。 其中, 每个导电端子 3分别向内侧凸伸出有导电接触 部 31, 每个导电端子 3的导电接触部 31分别延伸至相应导电端子 3的导电接触部 3 1的位置并相互压合接触导通形成接触点。
[0019] 插芯 21的上下两端面上每排导电端子 3各为 4根, 插芯 21上端面由左到右第 1根 、 第 2根、 第 3根、 第 4根导电端子 3分别依次与插芯 21下端面由右到左第 1根、 第 2根、 第 3根、 第 4根导电端子 3—一对应连接, 以实现当正面插入吋第 1根导电端 子 3与反面插入吋的第 1根导电端子 3正确连接在同一端子位上。 [0020] 绝缘本体 2为耐高温耐磨材料, 绝缘本体 2通过一体注射成型方式与导电端子 3 结合成一体结构, 保证导电端子 3不松动, 长期插拨使用不会破坏导电端子 3结 构, 使得电传输性能稳定可靠, 同吋也将两排导电端子 3之间紧密压合固定, 结 合稳固可靠。 绝缘本体 2上与每个接触点对应的位置处分别幵设有压合孔 22。 导 电端子 3的后端在绝缘本体 2后端外露形成焊脚端部分, 焊脚端可以做成焊线式 、 SMT贴 PCB板式或 DIP插 PCB板式等结构, 以适用不同的场合。
[0021] 每个导电端子 3的导电接触部 31分别与相应导电端子 3的导电接触部 31沿上下方 向设置并沿上下方向相互紧密压合固定, 沿上下方向压合的距离更短, 压合更 方便。
[0022] 在两个对应连接的导电端子 3中, 其中一个导电端子 3的导电接触部 31在接触点 的结合面位置凸设有凸包 32, 凸包 32可以是横向设置的或纵向设置的, 凸包 32 顶压在另一个导电端子 3的导电接触部 31上, 使得导电端子 3之间接触导通可靠 性更好, 提高导电性能和稳定性。 当然, 两个对应连接的导电端子 3也可以不使 用凸包 32连接, 作为本实用新型的另一实施方式, 两个相应导电端子 3的导电接 触部 31之间通过高电流点焊、 碰焊等焊接方式固定连接。
[0023] 生产制造吋, 将各个导电端子 3依次放入绝缘本体 2的成型模具型腔内, 通过模 具定位, 并且在各接触点位置上将相应的导电接触部 31压合,再灌入高温塑胶在 模具型腔内成型固定, 两排导电端子 3通过定位压合成型连接实现插头能够正反 插的功能, 不仅使两排导电端子 3之间紧密结合固定, 结合稳固可靠, 同吋也成 型出了绝缘本体 2和插芯 21等塑胶结构, 只需一套模具就可以完成, 结构和制作 工艺简单, 提高生产效率, 可实现大批量生产, 节省成本。
[0024] 当然, 以上所述仅是本实用新型的较佳实施例, 故凡依本实用新型专利申请范 围所述的构造、 特征及原理所做的等效变化或修饰, 均包括于本实用新型专利 申请范围内。

Claims

权利要求书
一种可正反方向对插的 USB插头, 包括有金属壳体 (1) 、 设置在金 属壳体 (1) 内的绝缘本体 (2) 、 导电端子 (3) , 其特征在于: 所 述绝缘本体 (2) 的前端凸伸出有插芯 (21) , 插芯 (21) 的上下两 端面各设置一排导电端子 (3) , 插芯 (21) 上端面的导电端子 (3) 按由左到右的顺序分别依次与插芯 (21) 下端面的导电端子 (3) 按 由右到左的顺序一一对应连接; 其中, 每个导电端子 (3) 分别向内 侧凸伸出有导电接触部 (31) , 每个导电端子 (3) 的导电接触部 (3 1) 分别延伸至相应导电端子 (3) 的导电接触部 (31) 的位置并相互 压合接触导通形成接触点。
根据权利要求 1所述的一种可正反方向对插的 USB插头, 其特征在于 : 所述插芯 (21) 的上下两端面上每排导电端子 (3) 各为 4根, 插芯
(21) 上端面由左到右第 1根、 第 2根、 第 3根、 第 4根导电端子 (3) 分别依次与插芯 (21) 下端面由右到左第 1根、 第 2根、 第 3根、 第 4根 导电端子 (3) —一对应连接。
根据权利要求 1所述的一种可正反方向对插的 USB插头, 其特征在于 : 所述绝缘本体 (2) 通过一体注射成型方式与导电端子 (3) 结合成 一体结构。
根据权利要求 1所述的一种可正反方向对插的 USB插头, 其特征在于 : 所述绝缘本体 (2) 上与每个接触点对应的位置处分别幵设有压合 孔 (22) 。
根据权利要求 1所述的一种可正反方向对插的 USB插头, 其特征在于 : 所述每个导电端子 (3) 的导电接触部 (31) 分别与相应导电端子 (3) 的导电接触部 (31) 沿上下方向设置并沿上下方向相互紧密压 合固定。
根据权利要求 1~5任意一项所述的一种可正反方向对插的 USB插头, 其特征在于: 所述在两个对应连接的导电端子 (3) 中, 其中一个导 电端子 (3) 的导电接触部 (31) 在接触点的结合面位置凸设有凸包 (32) , 凸包 (32) 顶压在另一个导电端子 (3) 的导电接触部 (31
) 上。
[权利要求 7] 根据权利要求 1~5任意一项所述的一种可正反方向对插的 USB插头, 其特征在于: 所述两个相应导电端子 3) 的导电接触部 (31) 之间 通过焊接方式固定连接。
PCT/CN2015/077287 2014-08-27 2015-04-23 一种可正反方向对插的usb插头 WO2016029707A1 (zh)

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