WO2017041317A1 - 一种自动对位连接器组合 - Google Patents

一种自动对位连接器组合 Download PDF

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Publication number
WO2017041317A1
WO2017041317A1 PCT/CN2015/089827 CN2015089827W WO2017041317A1 WO 2017041317 A1 WO2017041317 A1 WO 2017041317A1 CN 2015089827 W CN2015089827 W CN 2015089827W WO 2017041317 A1 WO2017041317 A1 WO 2017041317A1
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WO
WIPO (PCT)
Prior art keywords
magnet
pole
plug
socket
socket end
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Application number
PCT/CN2015/089827
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English (en)
French (fr)
Inventor
罗威
吴小波
Original Assignee
东莞市荣合电子有限公司
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Application filed by 东莞市荣合电子有限公司 filed Critical 东莞市荣合电子有限公司
Publication of WO2017041317A1 publication Critical patent/WO2017041317A1/zh

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Classifications

    • 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
    • H01R13/02Contact members
    • H01R13/22Contacts for co-operating by abutting
    • H01R13/24Contacts for co-operating by abutting resilient; resiliently-mounted
    • 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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • 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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/629Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
    • H01R13/631Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for engagement only
    • 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

Definitions

  • the present invention relates to the technical field of electrical connector products, and particularly relates to an interface structure such as a charging interface and a data interface for a computer, a household appliance, a mobile phone, a digital electronic product, and the like, such as a USB connector.
  • an interface structure such as a charging interface and a data interface for a computer, a household appliance, a mobile phone, a digital electronic product, and the like, such as a USB connector.
  • Power supplies or data interfaces such as USB connectors are used in many electronic products. Such interfaces are usually inserted only when the orientation and position are correct. If they are inserted, they cannot be inserted, such as in dimly lit or dark environments. It is difficult to quickly and accurately insert the plug in a bumpy environment such as in a car or in a ship, which is inconvenient for the user, and is also prone to wear and even damage of the connector during multiple plugging processes.
  • a magnet is introduced to assist the alignment.
  • Apple adopts a technical solution in which the interface has a magnet and the data line is an iron piece. Although the interface can be conveniently found, the insertion is reversed and the insertion is required, and the direction needs to be manually identified.
  • the technical problem to be solved by the present invention is to provide an interface structure which is simple in structure, convenient to use, and capable of automatic alignment, and can be applied to products such as computers, home appliances, digital electronic products and the like.
  • An automatic alignment connector assembly comprising a socket end and a plug end, the effect of connecting the socket end to the electrical connection through the plug end, wherein: the socket end is a magnet having at least one N pole and one S pole on the mating surface; a magnet disposed in the plug end, the magnet having at least one N pole and one S pole on the mating surface; Replacement page (Article 26)
  • the magnet in the mouth end and the magnet in the plug end have the same number of N and S poles, the N pole of the magnet in the socket end corresponds to the S pole of the magnet in the plug end; the S pole of the magnet in the socket end and the magnet in the plug end The N pole corresponds.
  • the N pole of the magnet in the socket end has the same shape as the S pole of the magnet in the plug end, and the S pole of the magnet in the socket end has the same shape as the N pole of the magnet in the plug end. Differences within the error range do not affect the effect of the docking.
  • the N pole of the magnet in the socket end is the same as the S pole of the magnet in the plug end, and the S pole of the magnet in the socket end is the same as the N pole area of the magnet in the plug end.
  • the small difference in area does not affect the effect.
  • the magnetic field center of the magnet in the socket end is located at the center of the magnet; the center of the magnetic field of the magnet in the plug end is located at the center of the magnet.
  • the magnet in the socket end has an N pole and an S pole, and the N pole and the S pole are defined by a lateral or longitudinal center line of the magnet;
  • the magnet in the plug end also has a place N pole and one S pole, N pole and S pole are defined by the transverse or longitudinal center line of the magnet;
  • the N pole of the magnet in the socket end is aligned with the edge and center point of the S pole of the magnet in the plug end, the socket
  • the S pole of the inner end magnet is aligned with the edge and center point of the N pole of the magnet in the plug end.
  • the tail end of the socket end has a connector.
  • the connector can be used to plug in the original interface of the device (such as mobile phone, computer, etc.) to achieve automatic connection with the plug end.
  • the socket end further includes a conductive contact, an insulator and a magnet protective shell, and the socket end is provided with an insulating seat, a shielding terminal and a conductive terminal;
  • the conductive contact is located in the insulator, and the magnet is disposed in front of the insulator and surrounds the conductive
  • the magnet protective case is fixed on the outside of the magnet;
  • the conductive terminal is connected to the conductive contact and fixed on the insulating seat, the shielding terminal covers the conductive terminal; and the electrical connection is formed by contacting the conductive contact through the plug end.
  • the plug end further includes a plug terminal, an insulator and a casing, wherein the magnet is fixed to the front end of the casing; the front end of the plug terminal is located in the through hole of the magnet, and the rear portion is fixed in the insulator and connected to the power line; Into the through hole of the magnet, the rear end is fixed in the outer casing; the replacement page is connected through the plug terminal (Article 26) The conductive contacts are electrically connected.
  • the plug terminal is a resilient terminal.
  • the invention can be directly assembled into the mobile phone as a data transmission and charging interface when the mobile phone is produced, or can be directly inserted into the mobile phone of the traditional interface as a separate accessory to achieve the function of automatic connection.
  • the magnet at the same end (the spigot end or the plug end) is formed by a combination of an N pole and an S pole, and the other end is made into a corresponding S pole and N pole, and the conventional end is changed to N.
  • the pole is the S pole at the other end, or the magnet is at one end and the iron is the other end.
  • the plug is reversed, the N and S poles at one end are opposite to the N and S poles at the other end. When they are close, they cannot be inserted due to the same polarity.
  • Figure 2 is a structural view of the present invention
  • FIG. 3 is an exploded structural view of the socket end
  • Figure 4 is an exploded view of the plug end.
  • 1 is the socket end
  • 10 is the magnet
  • 101 is the N pole
  • 102 is the S pole
  • 11 is the insulator
  • 12 is the magnet protection shell
  • 13 is the insulation seat
  • 14 is the shield terminal
  • 15 is the conductive contact
  • 16 is Conductive terminal
  • 2 is the plug end
  • 20 is the magnet
  • 201 is the N pole
  • 202 is the S pole
  • 21 is the plug terminal
  • 22 is the outer casing
  • 23 is the insulator
  • 3 is the mobile phone.
  • the automatic alignment connector combination includes a socket end and a plug end, and the plug is passed through the plug.
  • the end 2 contacts the socket end 1 to achieve the effect of electrical connection.
  • the socket end 1 is provided with a magnet 10
  • the plug end 2 is provided with a magnet 20
  • the magnet 10 in the socket end 1 has an N pole on the mating surface.
  • the N pole 101 and an S pole 102, the N pole 101 and the S pole 102 are defined by a transverse center line of the magnet 10; the magnet 20 in the plug end 2 also has a 'pole 201 and a place on the mating surface
  • the S pole 202, the N pole 201 and the S pole 202 are defined by the transverse center line of the magnet 20;
  • the N pole 101 of the magnet in the socket end 1 is aligned with the edge and the center point of the S pole 202 of the magnet 20 in the plug end 2
  • the S pole 102 of the magnet 10 in the socket end 1 is aligned with the edge and the center point of the N pole 201 of the magnet 20 in the plug end 2, and the N pole 101 of the magnet 10 in the socket end 1 and the S pole 202 of the magnet in the plug end 2 Corresponding;
  • the S pole 102 of the magnet in the socket end 1 corresponds to the N pole 201 of the magnet in the plug end 2.
  • the N pole 101 of the magnet 10 in the socket end 1 has the same shape as the S pole 202 of the magnet 20 in the plug end 2, and the S pole 102 of the magnet 10 in the socket end 1 has the same shape as the N pole 201 of the magnet 20 in the plug end 2.
  • the N pole 101 of the magnet 10 in the socket end 1 has the same shape as the S pole 202 of the magnet 20 in the plug end 2, and the S pole 102 of the magnet 10 in the socket end 1 has the same shape as the N pole 201 of the magnet 20 in the plug end 2.
  • the center of the magnetic field of the magnet 10 in the socket end 1 is located at the center of the magnet 10; the center of the magnetic field of the magnet 20 in the plug end 2 is located at the center of the magnet 20.
  • the tail end of the socket end 1 has a connector.
  • the connector can be used to plug in the original interface of the device (such as mobile phone, computer, etc.) to achieve automatic connection with the plug end.
  • the socket end 1 further includes a conductive contact 15, an insulator 11 and a magnet protective case 12.
  • the socket end 1 is provided with an insulating seat 13, a shield terminal 14 and a conductive terminal 16; the conductive contact 15 is located in the insulator 11, and the magnet 10 is provided.
  • the magnet protective casing 12 In front of the insulator 11 and surrounding the conductive contact 15, the magnet protective casing 12 is fixed on the outside of the magnet 10; the conductive terminal 16 is connected to the conductive contact and fixed on the insulating seat 13, and the shielding terminal 14 covers the conductive terminal 16, the conductive terminal 16 connected to the input interface of the mobile phone 3; connected through the plug end 2
  • the plug end 2 further includes a plug terminal 21, an insulator 23 and a casing 22, and the magnet 20 is fixed to the front end of the casing 22; the front portion of the plug terminal 21 is located in the through hole of the magnet, and the rear portion is fixed in the insulator 23 and the power cord The front end of the insulator 23 protrudes into the through hole of the magnet 20, and the rear end is fixed in the outer casing 22; the electrical contact is formed by the plug terminal 21 contacting the conductive contact 15.
  • the N pole 101 and the S pole 102 at one end are opposite to the N pole 201 and the S pole 202 at the other end, respectively, and cannot be inserted due to homosexual repulsation when approaching; likewise, In the approaching process, due to the same-sex repellent and opposite-sex attraction, if the plug direction is reversed, the direction will be automatically rotated under the action of the magnet, and due to the relative N-pole 101 and S-pole 202, or S-pole 102 and N-pole 201 , having the same shape and area, matching magnetic line distribution, so that it can be automatically butt jointed very accurately, and since the conductive plug adopts the elastic terminal 21, the socket end 1 and the plug end 2 can be automatically contacted with the conductive contact after being docked. Point 15 inside.
  • the invention can be directly assembled into the mobile phone as a data transmission and charging interface when the mobile phone is produced, or can be directly inserted into the mobile phone of the traditional interface as a separate accessory to achieve the function of automatic connection.

Abstract

一种自动对位连接器组合,包括插口端(1)和插头端(2),插口端(1)内设有磁体(10),该磁体(10)在对接面上至少具有一处N极(101)和一处S极(102);插头端(2)中设有磁体(20),该磁体(20)在对接面上至少具有一处N极(201)和一处S极(202);插口端(1)内的磁体(10)和插头端(2)中的磁体(20)具有相同数量的N极和S极,插口端(1)内磁体(10)的N极(101)与插头端(2)中磁体(20)的S极(202)对应;插口端(1)内磁体(10)的S极(102)与插头端(2)中磁体(20)的N极(201)对应。由于将在同一端的一个平面磁体做成由N极和S极共同构成的结构,而将另一端则做成对应的S极和N极,两端靠近时如方向有误则由于同性相斥异性相吸会自动调转方向,能够非常精确地自动对接在一起,形成有效电连接。

Description

说 明 书
一种自动对位连接器组合
领域
本发明涉及电连接器产品技术领域, 具体涉及一种用于计算机、 家用电器、 手机、 数码电子产品等产品的充电接口、 数据接口等接口结构, 如 USB连接器。 背景技术
USB连接器等电源或数据接口在许多电子产品中都会用到,这类接口通常只 有在方向和位置都正确的情况下才能插入, 插反了就无法插入, 如在灯光昏暗 或者黑暗环境中、 乘坐车内或乘坐轮船等颠簸环境中是很难快速准确地插好插 头的, 这样给使用者带来不便, 且也容易在多次插接过程中导致连接器的磨损 甚至损坏。 为了解决上述问题, 有人引入磁铁辅助对位, 如苹果公司采用了接 口有磁铁, 数据线是铁片的技术方案, 虽然能够方便地找到接口, 但插反了还 是无法插入, 需要人工辨别方向。 所以其无法精准定位, 需要有一个凹槽配合 定位, 这样在使用时还是不够方便, 没有达到革命性的进步。 还有接口端和数 据线端都设有磁铁的, 也存在类似的缺点。 发明内容
本发明要解决的技术问题是提供一种结构简单、 使用方便、 能够自动对位 的接口结构, 其可应用于计算机、 家用电器、 数码电子产品等产品。
为解决上述技术问题, 本发明采用如下技术方案: 一种自动对位连接器组 合, 包括插口端和插头端, 通过插头端接触插口端达电连接之效果, 其特征在 于: 所述插口端内设有磁体, 该磁体在对接面上至少具有一处 N极和一处 S极; 所述插头端中设有磁体, 该磁体在对接面上至少具有一处 N极和一处 S极; 插 替换页 (细则第 26条) 口端内的磁体和插头端中的磁体具有相同数量的 N极和 S极,插口端内磁体的 N 极与插头端中磁体的 S极对应; 插口端内磁体的 S极与插头端中磁体的 N极对 应。
插口端内磁体的 N极与插头端中磁体的 S极形状相同, 插口端内磁体的 S 极与插头端中磁体的 N极形状相同。 在误差范围内的差异并不影响对接的效果。
插口端内磁体的 N极与插头端中磁体的 S极面积相同, 插口端内磁体的 S 极与插头端中磁体的 N极面积相同, 当然, 面积有小的差异也不影响效果。
进一步地, 插口端内磁体的磁场中心位于磁体的中心; 插头端内磁体的磁 场中心位于磁体的中心。
进一步地, 所述插口端内的磁体具有一处 N极和一处 S极, N极和 S极以该 磁体的横向或纵向中心线为分界线; 所述插头端内的磁体也具有一处 N极和一 处 S极, N极和 S极以该磁体的横向或纵向中心线为分界线; 插口端内磁体的 N 极与插头端中磁体的 S极的边沿及中心点相对齐, 插口端内磁体的 S极与插头 端中磁体的 N极的边沿及中心点相对齐。
所述插口端的尾部具有一连接头。 连接头可用于插入设备 (如手机、 电脑 等) 原有的传统接口, 以达到与插头端自动连接之效果。
进一步地, 所述插口端还包括导电触点、 绝缘体和磁体保护壳, 插口端后 面设有绝缘座、 屏蔽端子和导电端子; 导电触点位于绝缘体中, 磁体设于绝缘 体的前面并围绕于导电触点周围, 磁体保护壳固定于磁体外面; 导电端子连接 导电触点并固定于绝缘座上, 屏蔽端子盖住导电端子; 通过插头端接触导电触 点形成电连接。
进一步地, 所述插头端还包括插头端子、 绝缘体和外壳, 磁体固定于外壳 的前端; 插头端子的前部位于磁体的通孔中, 后部固定于绝缘体中并与电源线 连接; 绝缘体前端伸入于磁体的通孔中, 后端固定于外壳中; 通过插头端子接 替换页 (细则第 26条) 触导电触点形成电连接。
所述插头端子为弹性端子。
本发明既可以在生产手机时直接装配于手机中作为数据传输和充电接口, 也可以作为独立配件直接插入于传统接口的手机中, 达到自动连接的功能。
本发明由于将在同一端 (插口端或者插头端) 的磁体做成由 N极和 S极共 同构成的结构, 而将另一端则做成对应的 S极和 N极, 改变了传统一端是 N极, 另一端是 S极, 或者一端是磁铁, 另一端是铁做法。 使用过程中, 对于有方向 差异的接口, 如果插头拿反了, 就会导致一端的 N极和 S极分别与另一端的 N 极和 S极相对, 在靠近时由于同性相斥而不能插入; 同样地, 在接近过程中, 由于同性相斥、 异性相吸, 如果插头方向反了, 在磁体的作用下会自动调转方 向, 且由于相对的 N极和 S极, 或 S极和 N极, 具有相同的形状和面积、 相匹 配的磁力线分布, 因而能够非常精确地自动对接在一起, 再由于导电插头采用 了弹性端子, 因而在插口端和插头端对接后能够自动接触导电触点。 附图说明
图 1为本发明应用示例图;
图 2为本发明结构图;
图 3为插口端分解结构图;
图 4为插头端分解结构图。
图中, 1为插口端, 10为磁体, 101为 N极, 102为 S极, 11为绝缘体, 12 为磁体保护壳, 13为绝缘座, 14为屏蔽端子, 15为导电触点, 16为导电端子, 2为插头端, 20为磁体, 201为 N极, 202为 S极, 21为插头端子, 22为外壳, 23为绝缘体, 3为手机。
具体实] ^式
替换页 (细则第 26条) 本实施例中以接口应用于手机的数据和充电接口作为具体实施方式, 参照 图 1、 图 2、 图 3和图 4, 所述自动对位连接器组合, 包括插口端和插头端, 通 过插头端 2接触插口端 1达电连接之效果, 所述插口端 1内设有磁体 10, 所述 插头端 2中设有磁体 20,插口端 1内的磁体 10在对接面上具有一处 N极 101和 一处 S极 102, N极 101和 S极 102以该磁体 10的横向中心线为分界线; 所述 插头端 2内的磁体 20在对接面上也具有一处 '极 201和一处 S极 202, N极 201 和 S极 202以该磁体 20的横向中心线为分界线; 插口端 1内磁体的 N极 101与 插头端 2中磁体 20的 S极 202的边沿及中心点相对齐,插口端 1内磁体 10的 S 极 102与插头端 2中磁体 20的 N极 201的边沿及中心点相对齐, 插口端 1内磁 体 10的 N极 101与插头端 2中磁体的 S极 202对应;插口端 1内磁体的 S极 102 与插头端 2中磁体的 N极 201对应。
插口端 1内磁体 10的 N极 101与插头端 2中磁体 20的 S极 202形状相同, 插口端 1内磁体 10的 S极 102与插头端 2中磁体 20的 N极 201形状相同。
插口端 1内磁体 10的 N极 101与插头端 2中磁体 20的 S极 202形状相同, 插口端 1内磁体 10的 S极 102与插头端 2中磁体 20的 N极 201形状相同。
插口端 1内磁体 10的磁场中心位于磁体 10的中心; 插头端 2内磁体 20的 磁场中心位于磁体 20的中心。
所述插口端 1的尾部具有一连接头。 连接头可用于插入设备 (如手机、 电 脑等) 原有的传统接口, 以达到与插头端自动连接之效果。
所述插口端 1还包括导电触点 15、 绝缘体 11和磁体保护壳 12, 插口端 1 后面设有绝缘座 13、 屏蔽端子 14和导电端子 16 ; 导电触点 15位于绝缘体 11 中, 磁体 10设于绝缘体 11的前面并围绕于导电触点 15周围, 磁体保护壳 12 固定于磁体 10外面; 导电端子 16连接导电触点并固定于绝缘座 13上, 屏蔽端 子 14盖住导电端子 16, 导电端子 16连接手机 3的输入接口; 通过插头端 2接
替换页 (细则第 26条) 触导电触点 15形成电连接。
所述插头端 2还包括插头端子 21、 绝缘体 23和外壳 22, 磁体 20固定于外 壳 22的前端; 插头端子 21的前部位于磁体的通孔中, 后部固定于绝缘体 23中 并与电源线连接; 绝缘体 23前端伸入于磁体 20的通孔中, 后端固定于外壳 22 中; 通过插头端子 21接触导电触点 15形成电连接。
使用过程中, 如果插头拿反了, 就会导致一端的 N极 101和 S极 102分别 与另一端的 N极 201和 S极 202相对, 在靠近时由于同性相斥而不能插入; 同 样地, 在接近过程中, 由于同性相斥、 异性相吸, 如果插头方向反了, 在磁体 的作用下会自动调转方向, 且由于相对的 N极 101和 S极 202, 或 S极 102和 N 极 201, 具有相同的形状和面积、 相匹配的磁力线分布, 因而能够非常精确地自 动对接在一起, 再由于导电插头采用了弹性端子 21, 因而在插口端 1和插头端 2对接后能够自动接触导电触点 15内。
本发明既可以在生产手机时直接装配于手机中作为数据传输和充电接口, 也可以作为独立配件直接插入于传统接口的手机中, 达到自动连接的功能。
以上巳将本发明做一详细说明, 以上所述, 仅为本发明之较佳实施例而已, 当不能限定本发明实施范围, 即凡依本申请范围所作均等变化与修饰, 皆应仍 属本发明涵盖范围内。
替换页 (细则第 26条)

Claims

权利要求书
[权利要求 1] 一种自动对位连接器组合, 包括插口端和插头端, 通过插头端接触插 口端达电连接之效果, 其特征在于: 所述插口端内设有磁体, 该磁体 在对接面上至少具有一处 N极和一处 S极; 所述插头端中设有磁体, 该磁体在对接面上至少具有一处 N极和一处 S极; 插口端内的磁体和 插头端中的磁体在对接面上具有相同数量的 N极和 S极, 插口端内磁 体的 N极与插头端中磁体的 S极对应; 插口端内磁体的 s极与插头端中 磁体的 N极对应。
[权利要求 2] 根据权利要求 1所述的自动对位连接器组合, 其特征在于: 插口端内 磁体的 N极与插头端中磁体的 S极形状相同, 插口端内磁体的 S极与插 头端中磁体的 N极形状相同。
[权利要求 3] 根据权利要求 2所述的自动对位连接器组合, 其特征在于: 插口端内 磁体的 N极与插头端中磁体的 S极面积相同, 插口端内磁体的 S极与插 头端中磁体的 N极面积相同。
[权利要求 4] 根据权利要求 1所述的自动对位连接器组合, 其特征在于: 插口端内 磁体的磁场中心位于磁体的中心; 插头端内磁体的磁场中心位于磁体 的中心。
[权利要求 5] 根据权利要求 4所述的自动对位连接器组合, 其特征在于: 所述插口 端内的磁体在对接面上具有一处 N极和一处 S极, N极和 S极以该磁体 的横向或纵向中心线为分界线; 所述插头端内的磁体在对接面上也具 有一处 N极和一处 S极, N极和 S极以该磁体的横向或纵向中心线为分 界线。
[权利要求 6] 根据权利要求 5所述的自动对位连接器组合, 其特征在于: 所述插口 端的尾部具有一连接头。
[权利要求 7] 根据权利要求 5所述的自动对位连接器组合, 其特征在于: 所述插口 端还包括导电触点、 绝缘体和磁体保护壳, 插口端后面设有绝缘座、 屏蔽端子和导电端子; 导电触点位于绝缘体中, 磁体设于绝缘体的前 面并围绕于导电触点周围, 磁体保护壳固定于磁体外面; 导电端子连 接导电触点并固定于绝缘座上, 屏蔽端子盖住导电端子; 通过插头端 接触导电触点形成电连接。
[权利要求 8] 根据权利要求 7所述的自动对位连接器组合, 其特征在于: 所述插头 端还包括插头端子、 绝缘体和外壳, 磁体固定于外壳的前端; 插头端 子的前部位于磁体的通孔中, 后部固定于绝缘体中并与电源线连接; 绝缘体前端伸入于磁体的通孔中, 后端固定于外壳中; 通过插头端子 接触导电触点形成电连接。
[权利要求 9] 根据权利要求 8所述的自动对位连接器组合, 其特征在于: 所述插头 端子为弹性端子。
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