WO2011057509A1 - 一种磁体导电连接器 - Google Patents

一种磁体导电连接器 Download PDF

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Publication number
WO2011057509A1
WO2011057509A1 PCT/CN2010/075635 CN2010075635W WO2011057509A1 WO 2011057509 A1 WO2011057509 A1 WO 2011057509A1 CN 2010075635 W CN2010075635 W CN 2010075635W WO 2011057509 A1 WO2011057509 A1 WO 2011057509A1
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WIPO (PCT)
Prior art keywords
conductive
magnet
magnetic
ground
metal contact
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PCT/CN2010/075635
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English (en)
French (fr)
Inventor
黄庭泉
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Wong Ting Chuen
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Publication of WO2011057509A1 publication Critical patent/WO2011057509A1/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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/6205Two-part coupling devices held in engagement by a magnet
    • 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
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch
    • H01R13/703Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part
    • H01R13/7036Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part the switch being in series with coupling part, e.g. dead coupling, explosion proof coupling
    • H01R13/7037Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part the switch being in series with coupling part, e.g. dead coupling, explosion proof coupling making use of a magnetically operated switch
    • 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

Definitions

  • the present invention relates to a power supply device, and more particularly to a concealed and safe power supply device. Background technique
  • the power sockets are mounted on the ground so that the socket itself protrudes from the ground.
  • the copper piece of the plug is directly connected to the wires on the socket, so the power socket is often charged and has no waterproof function.
  • the technical problem to be solved by the present invention is that, in view of the above-mentioned drawbacks of the prior art, a magnet conductive connector is provided, in which the ground conductive bonding position is level with the ground without protruding, and safe and hidden ground power can be realized.
  • a magnet conductive connector comprising: a ground conductive bonding position disposed under the ground; and a magnetron charging box disposed on the ground;
  • the ground conductive bonding bit includes at least two metal contact bits, and a magnetic sensitive switch, wherein the magnetic sensitive switch controls two of the metal contact positions to communicate with a power source when turned on;
  • the magnetron power take-off box includes at least two magnetic conductive bits, and a first magnet for controlling conduction of the magnetic sensitive switch;
  • the magnetic conductive position is electrically connected to the metal contact by a magnetic force to obtain a current.
  • the magnet conductive connector of the present invention wherein the two magnetic conductive places are respectively electrically connected to a rectifier, and the rectifier is connected with a relay, the relay activates the rectifier under the action of a magnetic force, and the magnetic force is electrically conductive
  • the bit is output after the polarity is sorted by the acquired current.
  • the magnet conductive connector of the present invention wherein the two magnetic conductive positions respectively comprise a second magnet and a third magnet, and a conductive sleeve respectively covering the second magnet and the third magnet;
  • a wiring board is disposed on the conductive sleeve, and the conductive sleeve is connected to the input end of the rectifier through a wire disposed on the wiring board.
  • the rectifier is provided with an insulating plate, and a spring is disposed between the insulating plate and the terminal plate.
  • the magnet conductive connector of the present invention wherein the power source is an AC or DC power source of 5V-36V.
  • the ground conductive bonding position is disposed parallel to the ground surface.
  • the magnet conductive connector of the present invention wherein the magnetic sensitive switch is a magnetron.
  • the first magnet is disposed at a center of the magnetostrictive power take-off box, and the two magnetic conductive positions are respectively located at two ends of the magnetron power take-off box.
  • magnet conductive connector of the present invention wherein the magnetron power take-off box further comprises a housing, and the housing is provided with at least two magnetic conductive holes for receiving the magnetic conductive points.
  • the magnet conductive connector of the present invention wherein the metal contact position is composed of a metal material, and the metal material comprises one or more of iron metal hard chrome, electric copper chrome or stainless steel.
  • the magnet conductive connector of the present invention wherein the two magnetic conductive positions are respectively electrically connected to a rectifier, and the rectifier outputs the magnetic conductive position and the acquired current to form a polarity;
  • the two magnetic conductive positions respectively include a second magnet and a third magnet, and a conductive sleeve distributed around the second magnet and the third magnet;
  • the conductive sleeve is provided with a wiring board, and the conductive sleeve is connected to the input end of the rectifier through a wire disposed on the wiring board;
  • An insulating plate is disposed on the rectifier, and a spring is disposed between the insulating plate and the terminal plate.
  • the magnet conductive connector of the present invention wherein the power source is an AC or DC power source of 5V-36V;
  • the metal contact position of the ground conductive bonding position is disposed parallel to the ground surface;
  • the magnetic sensitive switch is a magnetron
  • the first magnet is disposed at a center of the magnetron power take-off box, and the two magnetic conductive positions are respectively located at two ends of the magnetron power take-off box;
  • the magnetron power take-off box further includes a housing, and the housing is provided with at least two magnetic conductive holes for accommodating the magnetic conductive position;
  • the metal contact position is composed of a metal material including one or more of iron metal hard hard chromium, electric copper chromium or stainless steel.
  • the invention controls the conduction by using the magnetic attraction switch of the magnet to drive the underground, and supplies the current of the alternating current or direct current, and takes out the magnetic control power box when not in use, and the conductive binding position of the ground is not charged, forming Hidden power supply, safe for electricity, no leakage, dustproof and waterproof, long contact life, suitable for indoor safe power supply, especially suitable for use in school classrooms. At the same time, its non-polar magnetic conduction position makes the user more convenient to use, and the elderly and children can use it with confidence.
  • Figure 1 is a horizontal cross-sectional view showing the ground conductive bonding position of the magnet conductive connector of the present invention.
  • Figure 2 is a longitudinal cross-sectional view showing the connection structure of the magneto-electric power take-off box and the ground conductive joint of the magnet conductive connector of the present invention. detailed description
  • the magnet conductive connector of the preferred embodiment of the present invention includes a ground conductive joint disposed under the ground and a magnetron power take-off box disposed on the ground.
  • the horizontal cross-sectional view of the ground conductive bonding position is as shown in FIG. 1 , including at least two metal contact positions 3 , and a magnetic sensitive switch 1 connecting two metal contact positions 3 through a wire 16 , and the magnetic sensitive switch 1 controls two when conducting The metal contact 3 is in communication with a power source (not shown).
  • the magnetostrictive power take-up box includes at least two magnetic conductive places, and a first magnet 4 for controlling the conduction of the magnetic sensitive switch 1.
  • the magnetically controlled power taking box is in contact with the ground conductive bonding position, and the two magnetic conductive positions on the magnetically controlled power taking box are respectively electrically connected to the metal contact position 3 by magnetic force, and the magnetic force of the first magnet 4 controls the magnetic sensitive switch 1 to be turned on.
  • the magnetic sensitive switch 1 is turned on so that the magnetic conductive position is connected to the power supply through the metal contact bit 3, thereby obtaining current.
  • the polarity of the two magnetic conductive bits on the magnetron power take-off box is identified by an external identifier, and the polarity of the two metal contact bits 3 is identified to ensure that the magnetostrictive power take-up box is in conductive contact with the ground. The correct electrical connection between.
  • two magnetic conductive positions are preferably electrically connected to the two input terminals of the rectifier 12, respectively, and a relay is connected to the rectifier 12, and the relay controls the rectifier 12 to work under the action of a magnetic field.
  • the rectifier 12 sorts the current obtained by the magnetic conduction position and outputs the polarity.
  • the two magnetically conductive locations comprise a second magnet and a third magnet 2, respectively, and a conductive sleeve 5 that overlies the second and third magnets 2, respectively.
  • the second and third magnets 2 can be connected to the metal contact 3, and the second and third magnets 2 can be electrically connected to the metal contact 3.
  • the conductive sleeve 5 may be a conductive copper sleeve made of copper or a conductive sleeve made of other conductive materials.
  • a wiring board 7 is further disposed on the conductive sleeve 5 of the magnetic conductive position, and the wiring board 7 can be soldered to the conductive sleeve 5 by solder 8, and the conductive sleeve 5 passes through the wire disposed on the wiring board 7.
  • 16 is electrically coupled to the input of rectifier 12.
  • An insulating plate 11 is disposed on the rectifier 12, and a spring 10 for buffering is disposed between the insulating plate 11 and the wiring board 7.
  • the metal contact position on the ground contact position 3 respectively During the process of contact, since the metal contact position 3 is fixedly disposed under the ground, the magnetic force causes a contact impact force between the magnetostrictive power take-up box and the ground conductive contact position during the process of gradually approaching the magnetic conductive position. If you frequently pick up the magnetic power box, it will inevitably cause damage to the internal connection of the magnetostrictive power box after using it for many times.
  • the spring 10 can slow the contact impact on the magnetostrictive power take-off box and protect the circuit and structure in the magnetron take-off box.
  • the metal contact bit 3 of the ground conductive bonding position is disposed parallel to the ground surface, and the entire ground conductive bonding position does not protrude from the ground surface, but is hidden underground to form a hidden power source, thereby ensuring safer use. At the same time, it can also play the role of waterproof and dustproof.
  • the magnetic sensitive switch 1 preferably uses a magnetron, which is a line switching device controlled by a magnetic field signal.
  • a magnetron which is a line switching device controlled by a magnetic field signal.
  • the magnetic field lines are in the magnetic field.
  • the two reeds in the glass tube are magnetized and attract each other to make the circuit connected by the two pins communicate. After the external magnetic force disappears, the two reeds are separated due to their own elasticity, and the circuit is also disconnected.
  • the magnetron taking-out box is close to the ground conductive bonding position, the magnetic field lines of the first magnet 4 cause the magnetron to conduct, the metal contact bit 3 is connected to the power source, and the power is conducted through the magnetic conductive position.
  • the magnetic sensitive switch 1 can also be other inductive switches sensitive to magnetic force.
  • the first magnet 4 is disposed at the center of the magnetostrictive power take-off box, and the two magnetic conductive bits are respectively disposed at both ends of the magnetron power take-off box.
  • the first magnet 4 is connectable to the insulating plate 11 via a screw 14 and a nut 13.
  • the metal contact position 3 can be connected to the ground 17 by means of a screw 9, and the wiring hole 6 for connecting the power supply is provided at the end of the screw 9, so that the fixing is more secure.
  • the magnetostrictive power take-off box further includes a housing 15, a first magnet 4 and a magnetic conductive position, a relay, a rectifier 12, etc. disposed in the housing 15, and the two outputs of the rectifier 12 are
  • the outer casing 15 is threaded out to supply power to the target appliance.
  • At least two magnetic conductive bit holes 18 are disposed on the outer casing 15, so that the magnetic conductive position is conductively combined with the ground under the action of the magnetic force.
  • it When it is connected, it can pass through the magnetic conductive bit hole 18 under the elastic restoring force of the spring 10, and is preferentially connected to the ground conductive bonding position, and the remaining portion of the magnetron taking power box can slowly approach the ground under the elastic force. Further protect the magnetron take-out box.
  • the power supply preferably uses a 5V-36V AC or DC power supply, and can be powered by an adjustable transformer to reduce the 220V mains supply to a 5V-36V AC or DC power supply.
  • the metal contact position 3 is composed of a metal material, and the metal material includes one or more of iron metal hard hard chromium, electric copper chromium or stainless steel, or may be composed of other metal materials that can be attracted by the magnet. .
  • the magnet conductive connector of the present invention controls conduction by supplying the magnetic sensitive switch hidden in the ground by the suction of the magnet, and supplies the current of the desired alternating current or direct current.
  • the magnetostrictive power take-off box can be taken out, and the ground conductive bonding position will not be charged, forming a hidden power source.
  • the conductive binding position is no longer charged, and the child is not afraid of electric shock.
  • the magnet conductive connector device of the invention is safe in electricity, has no leakage, can be dustproof and waterproof, has good contact life, and is suitable for indoor safe power supply devices, and is particularly suitable for use in school classrooms. At the same time, its non-polar magnetic conductive position makes the user more convenient to use, and the elderly and children can use it with confidence.

Landscapes

  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Switches That Are Operated By Magnetic Or Electric Fields (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Description

一种磁体导电连接器
技术领域
本发明涉及电源装置, 尤其涉及一种隐藏式安全的电源装置。 背景技术
一般电源插座都是装在地面上, 使插座本身凸出地面, 通过插头的铜片直 接与插座上的电线连接, 因此电源插座常常带电, 而且没有防水功能。 当有小 孩或长者不小心触模到插座或插头时, 便会发生触电危险, 造成人身伤亡, 严 重的会导致火灾, 存在不安隐忧。 发明内容
本发明要解决的技术问题在于, 针对现有技术的上述缺陷, 提供一种磁体 导电连接器, 其地面导电结合位和地面相平而不会凸出, 可实现安全和隐藏地 面用电。
本发明解决其技术问题所采用的技术方案是:
构造一种磁体导电连接器, 其中, 包括设于地面下的地面导电结合位和设 于地面上的磁控取电盒;
所述地面导电结合位包括至少两个金属接触位, 以及磁敏开关, 所述磁敏 开关导通时控制两个所述金属接触位与电源连通;
所述磁控取电盒包括至少两个磁力导电位, 以及用于控制所述磁敏开关导 通的第一磁体;
所述磁力导电位通过磁力与所述金属接触位电连接, 以获取电流。
本发明所述的磁体导电连接器, 其中, 两个所述磁力导电位分别电连接至 整流器, 所述整流器上连接有继电器, 所述继电器在磁力作用下启动所述整流 器, 将所述磁力导电位与获取的电流整理极性后输出。 本发明所述的磁体导电连接器, 其中, 两个所述磁力导电位分别包括第二 磁体和第三磁体、 以及分别包覆在所述第二磁体和第三磁体外面的导电套; 所述导电套上设置有接线板, 所述导电套通过设置在所述接线板上的导线 连接所述整流器的输入端。
本发明所述的磁体导电连接器, 其中, 所述整流器上设置有绝缘板, 所述 绝缘板与所述接线板之间设置有弹簧。
本发明所述的磁体导电连接器, 其中, 所述电源为 5V-36V的交流或直流电 源。
本发明所述的磁体导电连接器, 其中, 所述地面导电结合位平行于地表面 设置。
本发明所述的磁体导电连接器, 其中, 所述磁敏开关为磁控管。
本发明所述的磁体导电连接器, 其中, 所述第一磁体设置于所述磁控取电 盒的中心处, 两个所述磁力导电位分别位于所述磁控取电盒的两端。
本发明所述的磁体导电连接器, 其中, 所述磁控取电盒还包括外壳, 所述 外壳上设置有至少两个用于容纳所述磁力导电位的磁力导电位孔。
本发明所述的磁体导电连接器, 其中, 所述金属接触位由金属物料构成, 所述金属物料包括铁金属电硬铬、 电铜铬或不锈钢中的一种或几种。
本发明所述的磁体导电连接器, 其中, 两个所述磁力导电位分别电连接至 整流器, 所述整流器将所述磁力导电位与获取的电流整理极性后输出;
两个所述磁力导电位分别包括第二磁体和第三磁体、 以及分布包覆在所述 第二磁体和第三磁体外面的导电套;
所述导电套上设置有接线板, 所述导电套通过设置在所述接线板上的导线 连接所述整流器的输入端;
所述整流器上设置有绝缘板, 所述绝缘板与所述接线板之间设置有弹簧。 本发明所述的磁体导电连接器, 其中, 所述电源为 5V-36V的交流或直流电 源; 所述地面导电结合位的金属接触位平行于地表面设置;
所述磁敏开关为磁控管;
所述第一磁体设置于所述磁控取电盒的中心处, 两个所述磁力导电位分别 位于所述磁控取电盒的两端;
所述磁控取电盒还包括外壳, 所述外壳上设置有至少两个用于容纳所述磁 力导电位的磁力导电位孔;
所述金属接触位由金属物料构成, 所述金属物料包括铁金属电硬铬、 电铜 铬或不锈钢中的一种或几种。
本发明通过利用磁体吸力带动藏于地下的磁敏开关来控制导电, 供应所需 的交流或直流电的电流, 在不使用时把磁控取电盒取出, 地面的导电结合位不 会带电, 形成隐藏电源, 用电安全, 且无漏电, 能防尘防水, 接触好使用寿命 长, 适用于室内安全电源装置, 特别适合在学校课室内使用。 同时其无极性的 磁力导电位使得用户使用更加方便, 老人小孩也能放心使用。 附图说明
下面将结合附图及实施例对本发明作进一步说明, 附图中:
图 1是本发明的磁体导电连接器的地面导电结合位水平剖视图。
图 2是本发明的磁体导电连接器的磁控取电盒与地面导电结合位连接结构 纵向剖视图。 具体实施方式
下面结合图示, 对本发明的优选实施例作详细介绍。
本发明较佳实施例的磁体导电连接器包括设于地面下的地面导电结合位和 设于地面上的磁控取电盒。 其中, 地面导电结合位水平剖视图如图 1 所示, 包 括至少两个金属接触位 3, 以及通过导线 16连接两个金属接触位 3的磁敏开关 1 , 磁敏开关 1导通时控制两个金属接触位 3与电源 (未图示)连通。 如图 2所示, 磁控取电盒包括至少两个磁力导电位, 以及用于控制磁敏开 关 1导通的第一磁体 4。 将磁控取电盒与地面导电结合位相接触,磁控取电盒上 的两个磁力导电位分别通过磁力与金属接触位 3电连接, 第一磁体 4的磁力控 制磁敏开关 1导通, 磁敏开关 1导通使得磁力导电位通过金属接触位 3与电源 相接通, 从而获取电流。
本实施例中, 通过外部标识来识别磁控取电盒上的两个磁力导电位的极性, 以及识别两个金属接触位 3 的极性, 以确保磁控取电盒与地面导电接触位之间 的正确电连接。
为使用户使用更加方便, 在进一步的实施例中, 优选地将两个磁力导电位 分别电连接至整流器 12的两输入端, 并在整流器 12上连接继电器, 继电器在 磁场作用下控制整流器 12工作, 整流器 12将磁力导电位获取的电流整理极性 后输出。
这样, 用户只需要将磁控取电盒上的磁力导电位与地面导电接触位上的金 属接触位 3 分别相接触即可, 而不需要区分它们分别的极性, 也不会因极性接 反而导致不必要的损失。
在进一步的实施例中, 如图 2所示, 两个磁力导电位分别包括第二磁体和 第三磁体 2、 以及分别包覆在第二磁体和第三磁体 2外面的导电套 5。 第二磁体 和第三磁体 2可实现与金属接触位 3的磁力连接, 第二磁体和第三磁体 2外面 包覆的导电套 5可实现与金属接触位 3的电连接。
其中, 导电套 5 可以是由铜制成的导电铜套, 或者是采用其他导电性能好 的材料制成的导电套。
如图 2所示, 优选地在磁力导电位的导电套 5上进一步设置有接线板 7,接 线板 7可通过焊锡 8焊接在导电套 5上, 导电套 5通过设置在接线板 7上的导 线 16电连接至整流器 12的输入端。 并在整流器 12上设置有绝缘板 11 , 在绝缘 板 11与接线板 7之间设置有用于緩沖的弹簧 10。
在将磁控取电盒上的磁力导电位与地面导电接触位上的金属接触位 3 分别 相接触的过程中, 由于金属接触位 3是固定设置在地面下, 在磁力导电位逐渐 与其接近的过程中, 磁力会使磁控取电盒与地面导电接触位之间产生一个接触 沖击力, 如果经常拔取磁力取电盒, 使用多次之后难免会造成磁控取电盒内部 连接损坏。 弹簧 10可以减緩拔取对磁控取电盒的接触沖击力, 保护磁控取电盒 内的电路及结构。
在进一步的实施例中, 地面导电结合位的金属接触位 3平行于地表面设置, 整个地面导电结合位不凸出于地表面, 而是藏于地下形成隐藏电源, 即能保证 使用更加安全, 同时还能起到防水及防尘的作用。
在进一步的实施例中, 磁敏开关 1 优选采用磁控管, 磁控管是利用磁场信 号来控制的一种线路开关器件, 当有磁性物质靠近磁控管的玻璃管时, 在磁场 磁力线的作用下, 玻璃管内的两个簧片被磁化而互相吸引接触, 使两个引脚所 接的电路连通, 外磁力消失后, 两个簧片由于本身的弹性而分开, 线路也就断 开。 当磁控取电盒靠近地面导电结合位时, 第一磁体 4 的磁场磁力线使得磁控 管导通, 使金属接触位 3 与电源接通, 并通过磁力导电位将电力导出。 可以理 解, 磁敏开关 1也可以是对磁力敏感的其他感应开关。
在进一步的实施例中, 优选地, 将第一磁体 4设置于磁控取电盒的中心处, 将两个磁力导电位分别设置于磁控取电盒的两端。 第一磁体 4可通过螺丝 14及 螺帽 13与绝缘板 11连接。 金属接触位 3可通过螺釘 9连接于地面 17, 并将连 接电源的接线孔 6设于螺釘 9的端部, 使固定更加牢固。
在进一步的实施例中, 如图 2所示, 磁控取电盒还包括外壳 15 , 第一磁体 4及磁力导电位、 继电器、 整流器 12等设置在外壳 15内, 整流器 12的两输出 端从外壳 15穿出, 给目标电器供电。
为进一步减小磁控取电盒与地面导电结合位之间的沖击力, 在外壳 15上设 置有至少两个磁力导电位孔 18, 使得磁力导电位在磁力作用下与地面导电结合 位相接时, 可以在弹簧 10的弹性回复力下从该磁力导电位孔 18中穿出, 优先 与地面导电结合位相连, 磁控取电盒的其余部分可在弹性力下慢慢与地面接近, 进一步保护磁控取电盒。
以上各实施例中, 电源优选采用 5V-36V的交流或直流电源, 可通过可调变 压器将 220V的市电降至 5V-36V的交流或直流电源来供电。
以上各实施例中, 金属接触位 3 由金属物料构成, 金属物料包括铁金属电 硬铬、 电铜铬或不锈钢中的一种或几种, 也可以是由其他可被磁体吸引的金属 材料构成。
本发明的磁体导电连接器通过利用磁体吸力带动藏于地下的磁敏开关导通 来控制导电, 供应所需的交流或直流电的电流。 在不使用时, 可以把磁控取电 盒取出, 地面导电结合位不会带电, 形成隐藏电源。 如家有小孩出门时取出磁 控取电盒, 导电结合位不再带电, 小孩触模不怕会触电。
本发明的磁体导电连接器装置用电安全, 且无漏电, 能防尘防水, 接触好 使用寿命长, 适用于室内安全电源装置, 特别适合在学校课室内使用。 同时其 无极性的磁力导电位使得用户使用更加方便, 老人小孩也能放心使用。
应当理解的是, 对本领域普通技术人员来说, 可以根据上述说明加以改进 或变换, 而所有这些改进和变换都应属于本发明所附权利要求的保护范围。

Claims

权 利 要 求 书
1. 一种磁体导电连接器, 其特征在于, 包括设于地面下的地面导电结合位 和设于地面上的磁控取电盒;
所述地面导电结合位包括至少两个金属接触位(3), 以及磁敏开关 (1 ), 所述磁敏开关(1)导通时控制两个所述金属接触位(3) 与电源连通;
所述磁控取电盒包括至少两个磁力导电位,以及用于控制所述磁敏开关( 1 ) 导通的第一磁体(4);
所述磁力导电位通过磁力与所述金属接触位(3) 电连接, 以获取电流。
2. 根据权利要求 1所述的磁体导电连接器, 其特征在于, 两个所述磁力导 电位分别电连接至整流器(12), 所述整流器(12)将所述磁力导电位与获取的 电流整理极性后输出。
3. 根据权利要求 2所述的磁体导电连接器, 其特征在于, 两个所述磁力导 电位分别包括第二磁体和第三磁体(2)、 以及分布包覆在所述第二磁体和第三 磁体 (2)外面的导电套(5);
所述导电套(5)上设置有接线板(7), 所述导电套(5)通过设置在所述 接线板(7)上的导线连接所述整流器(12) 的输入端。
4. 根据权利要求 3所述的磁体导电连接器, 其特征在于, 所述整流器(12) 上设置有绝缘板( 11 ), 所述绝缘板( 11 ) 与所述接线板( 7 )之间设置有弹簧
( 10)。
5. 根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述电源为 5V-36V的交流或直流电源。
6. 根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述地面导电结合位的金属接触位(3)平行于地表面设置。
7. 根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述磁敏开关( 1 ) 为磁控管。
8. 根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述第一磁体(4 )设置于所述磁控取电盒的中心处, 两个所述磁力导电位分别位 于所述磁控取电盒的两端。
9. 根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述磁控取电盒还包括外壳(15 ), 所述外壳(15 )上设置有至少两个用于容纳所 述磁力导电位的磁力导电位孔( 18 )。
10.根据权利要求 1至 4中任一项所述的磁体导电连接器, 其特征在于, 所 述金属接触位(3 ) 由金属物料构成, 所述金属物料包括铁金属电硬铬、 电铜铬 或不锈钢中的一种或几种。
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