WO2015024293A1 - 一种电机引线护套结构及其应用的电机 - Google Patents

一种电机引线护套结构及其应用的电机 Download PDF

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Publication number
WO2015024293A1
WO2015024293A1 PCT/CN2013/085786 CN2013085786W WO2015024293A1 WO 2015024293 A1 WO2015024293 A1 WO 2015024293A1 CN 2013085786 W CN2013085786 W CN 2013085786W WO 2015024293 A1 WO2015024293 A1 WO 2015024293A1
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WO
WIPO (PCT)
Prior art keywords
motor
lead sheath
box
cavity
jumper box
Prior art date
Application number
PCT/CN2013/085786
Other languages
English (en)
French (fr)
Inventor
邬拥华
陈云生
向其湘
Original Assignee
中山大洋电机股份有限公司
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Application filed by 中山大洋电机股份有限公司 filed Critical 中山大洋电机股份有限公司
Publication of WO2015024293A1 publication Critical patent/WO2015024293A1/zh

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • H02K5/04Casings or enclosures characterised by the shape, form or construction thereof
    • H02K5/22Auxiliary parts of casings not covered by groups H02K5/06-H02K5/20, e.g. shaped to form connection boxes or terminal boxes
    • H02K5/225Terminal boxes or connection arrangements
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0247Electrical details of casings, e.g. terminals, passages for cables or wiring
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K11/00Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection
    • H02K11/0094Structural association with other electrical or electronic devices
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K11/00Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection
    • H02K11/20Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection for measuring, monitoring, testing, protecting or switching
    • H02K11/28Manual switches
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K2213/00Specific aspects, not otherwise provided for and not covered by codes H02K2201/00 - H02K2211/00
    • H02K2213/09Machines characterised by the presence of elements which are subject to variation, e.g. adjustable bearings, reconfigurable windings, variable pitch ventilators

Definitions

  • the utility model relates to a motor lead sheath structure and an electric motor thereof.
  • the conventional motor lead sheath structure includes a lead sheath and a socket, and the socket is installed in a cavity provided by the lead sheath, one end of the socket is connected to the control circuit board inside the motor, and the other end is connected to the outside through a lead wire, but the
  • the structure has the following problems: 1) When the motor needs function conversion, it must also be connected to the outside through the socket, and the function conversion of the motor can be realized by the external input control command.
  • the structure is complicated, the use is troublesome, and the reliability is low;
  • the socket installed in the lead sheath is not securely installed, it is easy to loose, and there is a safety hazard; 3)
  • the socket is not used without protection, and the port of the socket is easily contaminated or damaged. When it is used again, it is connected. The reliability and safety performance of the socket will be reduced.
  • the purpose of the utility model is to provide a motor lead sheath structure and a motor for the same, the structure is simple, easy to install, low in cost and high in reliability, and the motor structure is simple, easy to install and easy to realize the function of the motor. Conversion, low cost and high reliability.
  • a motor lead sheath structure includes a lead sheath, a plurality of external wires are mounted on the lead sheath, and the jumper box is further included, the lead sheath is provided with a cavity, and the jumper box is installed in the cavity, and jumps A plurality of through holes are formed in the wire box, and the terminal blocks are installed in the through holes, and the front interface and the rear interface are formed at both ends of the jumper box.
  • the lead sheath described above is injection molded on the outer surface of the jumper box.
  • the end of the jumper box has a plurality of baffles extending outwardly, and the baffle presses against the inner side of the lead sheath.
  • the plurality of external wires described above are injection molded in the lead sheath, and the lead terminals are disposed at the tail of each of the external wires.
  • Mounting slots are provided on both sides of the lead sheath described above.
  • One end of the lead sheath is provided with a first boss and a second boss, and a plurality of external wires pass through A boss is led out, and the cavity is disposed on the second boss.
  • It also includes a plurality of connectors, each of which includes an insulating sleeve and a contact strip, and at least a portion of the contact strip of the connector is made of a conductive material.
  • a motor comprising a motor body and a motor controller, wherein the motor body comprises a casing, a stator assembly and a rotor assembly mounted in the casing, and the motor controller comprises a control box and a control circuit board installed in the control box, the control circuit
  • the microprocessor MCU, the inverter and the power supply unit are arranged on the board, and the power supply unit supplies power to each part of the circuit of the control circuit board, and the microprocessor MCU controls the operation of the motor entity through the inverter, and installs a lead sheath on the control box.
  • the lead sheath is provided with a plurality of external wires, and further comprises a jumper box, the lead sheath is provided with a cavity, the jumper box is installed in the cavity, and a plurality of through holes are formed in the jumper box, and the through hole is installed in the through hole
  • the terminal blocks form a front interface and a rear interface at both ends of the jumper box.
  • the rear interface described above electrically connects the terminals to the microprocessor MCU on the control board via leads.
  • the above description further includes a plurality of connectors, each of the connectors comprising an insulating sleeve and a contact piece, at least a part of the contact piece of the connector is made of a conductive material, and the connector connects the upper and lower terminals through the front interface, and The drive signal is sent to the microprocessor MCU for processing.
  • the utility model has the following effects: 1) a plurality of external wires are installed on the lead sheath, and a cavity is formed on the lead sheath, and the jumper box is installed in the cavity, and the jumper box is opened. a plurality of through holes, a terminal block is installed in the through hole, and a front interface and a rear interface are formed at both ends of the jumper box.
  • the structure is simple and easy to install, and the function of the motor can be converted through the jumper box.
  • the lead sheath is injection-molded and mounted on the outer surface of the jumper box, and the injection molding process is simple, and the installation of the jumper box can be made more firm and reliable, and the end of the jumper box protrudes outward.
  • the baffle presses the inner side of the lead sheath to improve the reliability of the jumper box installation, to prevent the jumper box from being pulled out of the lead sheath due to external tension, and to improve the safety factor; 3) multiple external wires are injection molded in the lead sheath Inside, the structure is simple and reliable, and the wire terminals are arranged at the tail of each external wire to facilitate the external connection of the external wires; 4) The connector is connected to the upper and lower terminals through the front interface Together, can be achieved by a single-cylinder motor connector conversion function, the single tube structure, convenient operation, high reliability; 5) comprises a motor housing entity, a stator assembly and a rotor assembly mounted in the casing, the motor controller includes a control box and a control circuit board installed in the control box, and the microprocessor MCU, the inverter and the power unit are disposed on the control circuit board, and the power unit is controlled Each part of the circuit board provides power supply.
  • the microprocessor MCU controls the operation of the motor entity through the inverter, and installs a lead sheath on the control box.
  • the lead sheath is provided with a plurality of external wires, and the jumper box and the lead wire are also included.
  • a cavity is opened on the sheath, a jumper box is installed in the cavity, a plurality of through holes are formed in the jumper box, a terminal is installed in the through hole, and a front interface and a rear interface are formed at both ends of the jumper box, the motor structure
  • the single tube easy to install, easy to realize the conversion of the motor function, low cost and high reliability.
  • Figure 1 is a perspective view of an angle of the present invention.
  • Figure 2 is a perspective view of another angle of the present invention.
  • Figure 3 is an exploded view of the present invention.
  • Figure 4 is a plan view of the present invention.
  • Figure 5 is a cross-sectional view taken along line A-A of Figure 4.
  • Figure 6 is a perspective view of the connector of the present invention.
  • Figure 7 is a cross-sectional view showing the structure of the connector of the present invention.
  • Figure 8 is a perspective view of the motor of the present invention.
  • Figure 9 is an exploded view of the motor of the present invention.
  • Figure 10 is a schematic diagram of the circuit of the present invention.
  • the utility model relates to a motor lead sheath structure, which comprises a lead sheath 1 , and a plurality of external wires 2 are mounted on the lead sheath 1 , and the jumper box is further included 3, the lead sheath 1 is provided with a cavity 1 1 , the jump box 3 is installed inside the cavity 1 1 , a plurality of through holes 31 are formed in the jump box 3 , and the terminal 4 is installed in the through hole 31 and jumped Both ends of the box 3 form a front interface 32 and a rear connection
  • the lead sheath 1 is injection molded on the outer surface of the jumper box 3.
  • the end of the jumper box 3 protrudes outwardly from a plurality of baffles 34, and the baffle 34 presses against the inner side of the lead sheath 1.
  • a plurality of external wires 2 are injection molded in the lead sheath 1, and a wire terminal 21 is provided at the end of each of the external wires 2.
  • the lead sheath 1 is provided with mounting slots 12 on both sides.
  • the lead sheath 1 is provided with a first boss 13 and a second boss 14 at one end, and a plurality of external wires 2 are led out through the first boss 13, and the cavity 11 is disposed on the second boss 14.
  • the connector 5 is connected to the upper and lower terminals 4 through the front interface 32.
  • Each connector 5 includes an insulating sleeve 51 and a contact piece 52.
  • the contact piece 52 of a part of the connector 5 is made of an insulating material and the other part is connected.
  • the contact piece 52 of the insert 5 is made of a conductive material.
  • the principle of the utility model is: installing a jumper box 3 in the cavity 11 of the lead sheath 1, installing a terminal 4 in the through hole 31 of the jumper box 3 and forming a front interface 32 at both ends of the jumper box 3 and
  • the rear interface 33, the rear interface 33 electrically connects the terminal 4 and the microprocessor MCU on the control circuit board 8 through the lead wires, and connects the upper and lower terminals 4 through the connector 5 to realize the conversion of the motor function.
  • the structure is simple, easy to install, low in cost and high in reliability.
  • Embodiment 2 As shown in FIG. 8 to FIG. 10, the present invention is a motor including a motor body 6 and a motor controller 7, wherein the motor body 6 includes a casing 61, a stator assembly mounted in the casing 61, and The rotor assembly, the motor controller 7 includes a control box 71 and a control circuit board 8 mounted on the control box 71.
  • the control circuit board 8 is provided with a microprocessor MCU, an inverter and a power supply unit, and the power supply unit is a control circuit board 8 Part of the circuit provides power, the microprocessor MCU controls the operation of the motor entity through the inverter, and the lead sheath 1 is mounted on the control box 71.
  • the lead sheath 1 is mounted with a plurality of external wires 2, and the jumper box 3 is also included.
  • the lead sheath 1 is provided with a cavity 11
  • the jump box 3 is mounted inside the cavity 11
  • a plurality of through holes 31 are defined in the jump box 3
  • the terminal 4 is mounted in the through hole 31 and in the jump box 3
  • the front ends form a front interface 32 and a rear interface 33.
  • the rear interface 33 electrically connects the terminal 4 to the microprocessor MCU on the control board 8 via leads.
  • a plurality of external wires 2 pass through the lead sheath 1 and the power supply unit and the micro processing on the control circuit board 8.
  • the MCUs are electrically connected together.
  • Each of the connectors 5 includes an insulating sleeve 51 and a contact piece 52, wherein a contact piece 52 of a part of the connector 5 is made of an insulating material, and a contact piece 52 of the other part of the connector 5 is made of a conductive material, and the connector 5 passes through the front interface.
  • 32 connects the upper and lower terminals 4 together, and sends the driving signal to the microprocessor MCU for processing.
  • the connector 52 is made of the insulating material and the connector 5 is mounted on the front interface 32. .
  • the principle of the utility model is: by installing a lead sheath 1 on the control box 71 of the motor, a plurality of external wires 2 are mounted on the lead sheath 1, and a jumper box 3 is installed in the cavity 11 of the lead sheath 1
  • a terminal 4 is mounted in the through hole 31 of the jumper box 3, and a front interface 32 and a rear interface 33 are formed at both ends of the jumper box 3.
  • the rear interface 33 connects the terminal 4 and the microprocessor on the control board 8 through the lead wires.
  • the MCUs are electrically connected together, and the upper and lower terminals 4 are connected through the connector 5 to realize the conversion of the motor function.
  • the structure is simple, easy to install, low in cost and high in reliability.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Motor Or Generator Frames (AREA)

Abstract

一种电机引线护套结构及应用该引线护套结构的电机,包括引线护套(1),引线护套上安装有多条外接导线(2),引线护套上开设有空腔(11),跳线盒(3)安装在空腔里面,跳线盒上开设有若干通孔(31),在通孔里面安装接线端子(4)并在跳线盒两端形成前接口(32)和后接口(33),该引线护套结构简单、安装方便,成本低、可靠性高。一种电机,包括电机实体(6)和电机控制器(7),在电机控制器的控制盒上安装引线护套,在引线护套的空腔里面安装跳线盒。该电机结构简单、安装方便,容易实现对电机功能的转换、成本低、可靠性高。

Description

一种电机引线护套结构及其应用的电机
技术领域:
本实用新型涉及一种电机引线护套结构及其应用的电机。
背景技术:
传统的电机引线护套结构包括引线护套和接插座, 接插座安装在引线护套 设置的空腔里面, 接插座一端与电机内部的控制线路板连接, 另一端通过引线 与外部连接, 但是该结构存在如下几个问题: 1 ) 当电机需要功能转换时, 还必 须通过接插座与外部连接, 通过外部输入的控制命令才能实现电机的功能转换, 该结构复杂、 使用麻烦、 可靠性低; 2 )安装在引线护套的接插座安装不牢靠, 容易松脱, 存在安全隐患; 3 )接插座在不使用使没有防护措施, 接插座的端口 容易被污染或者被损坏, 当再次使用时, 接插座的可靠性和安全性能会降低。 使用该种电机引线护套结构的电机存在同样的问题。
发明内容:
本实用新型的目的是提供一种电机引线护套结构及其应用的电机, 该结构 筒单、 安装方便, 成本低、 可靠性高, 该电机结构筒单、 安装方便、 容易实现 对电机功能的转换、 成本低、 可靠性高。
本实用新型的目的是通过下述技术方案予以实现的。
一种电机引线护套结构, 包括引线护套, 引线护套上安装有多条外接导线, 它还包括跳线盒, 引线护套上开设有空腔, 跳线盒安装在空腔里面, 跳线盒上 开设若干通孔, 在通孔里面安装接线端子并在跳线盒两端形成前接口和后接口。
上述所述的引线护套注塑安装在跳线盒外表面。
上述所述的跳线盒端部往外伸出若干挡板, 挡板压紧引线护套的内侧面。 上述所述的多条外接导线注塑在引线护套里面, 每条外接导线尾部设置导 线端子。
上述所述的引线护套两侧设置安装卡槽。
上述所述的引线护套一端设置第一凸台和第二凸台, 多条外接导线通过第 一凸台引出, 空腔设置在第二凸台上。
上述所述的它还包括若干接插件, 每个接插件包括绝缘套和接触片, 至少 一部分接插件的接触片由导电材料制成。
一种电机, 包括电机实体和电机控制器, 其中电机实体包括机壳、 安装在 机壳里面的定子组件和转子组件, 电机控制器包括控制盒和安装在控制盒里面 的控制线路板, 控制线路板上设置微处理器 MCU、 逆变器和电源单元, 电源单元 为控制线路板各部分电路提供电源, 微处理器 MCU通过逆变器控制电机实体的 运行, 在控制盒上安装引线护套, 引线护套上安装有多条外接导线, 它还包括 跳线盒, 引线护套上开设有空腔, 跳线盒安装在空腔里面, 跳线盒上开设若干 通孔, 在通孔里面安装接线端子并在跳线盒两端形成前接口和后接口。
上述所述的后接口通过引线将接线端子与控制线路板上的微处理器 MCU电 连接在一起。
上述所述的还包括若干接插件, 每个接插件包括绝缘套和接触片, 至少一 部分接插件的接触片由导电材料制成, 接插件通过前接口把上下两个接线端子 连接在一起, 并把驱动信号送到微处理器 MCU处理。
本实用新型与现有技术相比, 具有如下效果: 1 ) 引线护套上安装有多条外 接导线, 引线护套上开设有空腔, 跳线盒安装在空腔里面, 跳线盒上开设若干 通孔, 在通孔里面安装接线端子并在跳线盒两端形成前接口和后接口, 该结构 筒单、 安装方便, 可通过跳线盒实现对电机功能的转换, 操作筒单方便、 成本 低、 可靠性高; 2 ) 引线护套注塑安装在跳线盒外表面, 注塑工艺筒单, 同时可 以使跳线盒的安装更加牢固可靠, 跳线盒端部往外伸出若干挡板, 挡板压紧引 线护套的内侧面, 可以提高跳线盒安装的可靠性, 避免跳线盒由于外界拉力被 拉出引线护套, 提高安全系数; 3 )多条外接导线注塑在引线护套里面, 该结构 筒单、 可靠性高, 每条外接导线尾部设置导线端子, 方便外接导线对外连接; 4 ) 接插件通过前接口与上下两个接线端子连接在一起, 通过接插件可以筒单实现 对电机功能的转换, 该结构筒单、 操作方便、 可靠性高; 5 )电机实体包括机壳、 安装在机壳里面的定子组件和转子组件 , 电机控制器包括控制盒和安装在控制 盒里面的控制线路板, 控制线路板上设置微处理器 MCU、 逆变器和电源单元, 电 源单元为控制线路板各部分电路提供电源, 微处理器 MCU通过逆变器控制电机 实体的运行, 在控制盒上安装引线护套, 引线护套上安装有多条外接导线, 它 还包括跳线盒, 引线护套上开设有空腔, 跳线盒安装在空腔里面, 跳线盒上开 设若干通孔, 在通孔里面安装接线端子并在跳线盒两端形成前接口和后接口, 该电机结构筒单、 安装方便、 容易实现对电机功能的转换、 成本低、 可靠性高。 附图说明:
图 1 是本实用新型一个角度的立体图。
图 2 是本实用新型另一个角度的立体图。
图 3 是本实用新型的分解图。
图 4 是本实用新型的俯视图。
图 5 是图 4中 A-A剖视图。
图 6 是本实用新型接插件的立体图。
图 7 是本实用新型接插件的结构剖视图。
图 8 是本实用新型电机的立体图。
图 9 是本实用新型电机的分解图。
图 1 0 是本实用新型的电路原理图。
具体实施方式:
下面通过具体实施例并结合附图对本实用新型作进一步详细的描述。
实施例一: 如图 1至图 7所示, 本实用新型是一种电机引线护套结构, 包 括引线护套 1 , 引线护套 1上安装有多条外接导线 2 , 它还包括跳线盒 3 , 引线 护套 1上开设有空腔 1 1 , 跳线盒 3安装在空腔 1 1里面, 跳线盒 3上开设若干通 孔 31 , 在通孔 31里面安装接线端子 4并在跳线盒 3两端形成前接口 32和后接 引线护套 1注塑安装在跳线盒 3外表面。
跳线盒 3端部往外伸出若干挡板 34, 挡板 34压紧引线护套 1的内侧面。 多条外接导线 2注塑在引线护套 1里面, 每条外接导线 2尾部设置导线端 子 21。
引线护套 1两侧设置安装卡槽 12。
引线护套 1一端设置第一凸台 13和第二凸台 14,多条外接导线 2通过第一 凸台 13引出, 空腔 11设置在第二凸台 14上。
接插件 5通过前接口 32与上下两个接线端子 4连接在一起, 每个接插件 5 包括绝缘套 51和接触片 52,其中一部分接插件 5的接触片 52由绝缘材料制成, 另一部分接插件 5的接触片 52由导电材料制成。
本实用新型的原理是: 在引线护套 1的空腔 11里面安装跳线盒 3, 在跳线 盒 3的通孔 31里面安装接线端子 4并在跳线盒 3两端形成前接口 32和后接口 33, 后接口 33通过引线将接线端子 4与控制线路板 8上的微处理器 MCU电连接 在一起, 通过接插件 5连接导通上下两个接线端子 4实现对电机功能的转换, 该结构筒单、 安装方便, 成本低、 可靠性高。
实施例二: 如图 8至图 10所示, 本实用新型是一种电机, 包括电机实体 6 和电机控制器 7, 其中电机实体 6包括机壳 61、 安装在机壳 61里面的定子组件 和转子组件, 电机控制器 7包括控制盒 71和安装在控制盒 71里面的控制线路 板 8, 控制线路板 8上设置微处理器 MCU、 逆变器和电源单元, 电源单元为控制 线路板 8各部分电路提供电源, 微处理器 MCU通过逆变器控制电机实体的运行, 在控制盒 71上安装引线护套 1, 引线护套 1上安装有多条外接导线 2, 它还包 括跳线盒 3, 引线护套 1上开设有空腔 11, 跳线盒 3安装在空腔 11里面, 跳线 盒 3上开设若干通孔 31,在通孔 31里面安装接线端子 4并在跳线盒 3两端形成 前接口 32和后接口 33。
后接口 33通过引线将接线端子 4与控制线路板 8上的微处理器 MCU电连接 在一起。
多条外接导线 2穿过引线护套 1与控制线路板 8上的的电源单元和微处理 器 MCU电连接在一起。
每个接插件 5包括绝缘套 51和接触片 52 , 其中一部分接插件 5的接触片 52由绝缘材料制成, 另一部分接插件 5的接触片 52由导电材料制成, 接插件 5 通过前接口 32把上下两个接线端子 4连接在一起, 并把驱动信号送到微处理器 MCU处理, 当不需要使用电机时就把接触片 52由绝缘材料制成的接插件 5安装 在前接口 32上。
本实用新型的原理是: 通过在电机的控制盒 71上安装引线护套 1 , 引线护 套 1上安装有多条外接导线 2 , 在引线护套 1的空腔 11里面安装跳线盒 3 , 在 跳线盒 3的通孔 31里面安装接线端子 4并在跳线盒 3两端形成前接口 32和后 接口 33 ,后接口 33通过引线将接线端子 4与控制线路板 8上的微处理器 MCU电 连接在一起, 通过接插件 5连接上下两个接线端子 4实现对电机功能的转换, 该结构筒单、 安装方便, 成本低、 可靠性高。

Claims

权利要求
1、 一种电机引线护套结构, 包括引线护套(1 ), 引线护套(1 )上安装有 多条外接导线( 2 ), 其特征在于: 它还包括跳线盒( 3 ), 引线护套( 1 )上开设 有空腔(11 ), 跳线盒(3)安装在空腔(11 )里面, 跳线盒(3)上开设若干通 孔( 31 ), 在通孔( 31 )里面安装接线端子( 4 )并在跳线盒( 3 ) 两端形成前接 口 (32)和后接口 (33)。
2、 根据权利要求 1所述的一种电机引线护套结构, 其特征在于: 引线护套 ( 1 )注塑安装在跳线盒( 3 )外表面。
3、 根据权利要求 1或 2所述的一种电机引线护套结构, 其特征在于: 跳线 盒( 3 )端部往外伸出若干挡板( 34 ), 挡板( 34 )压紧引线护套( 1 )的内侧面。
4、 根据权利要求 1所述的一种电机引线护套结构, 其特征在于: 多条外接 导线( 2 )注塑在引线护套( 1 )里面,每条外接导线( 2 )尾部设置导线端子( 21 )。
5、 根据权利要求 3所述的一种电机引线护套结构, 其特征在于: 引线护套 ( 1 ) 两侧设置安装卡槽 ( 12)。
6、 根据权利要求 1或 2所述的一种电机引线护套结构, 其特征在于: 引线 护套(1 )一端设置第一凸台 (13)和第二凸台 (14), 多条外接导线(2)通过 第一凸台 (13) 引出, 空腔(11 )设置在第二凸台 (14)上。
7、 根据权利要求 1所述的一种电机引线护套结构, 其特征在于: 它还包括 若干接插件(5 ), 每个接插件(5 ) 包括绝缘套(51 )和接触片 (52), 至少一 部分接插件 (5 ) 的接触片 (52) 由导电材料制成。
8、 一种应用权利要求 1至 7所述的任何一项电机引线护套结构的电机, 包 括电机实体(6)和电机控制器(7), 其中电机实体(6) 包括机壳 (61)、 安装 在机壳 ( 61 )里面的定子组件和转子组件, 电机控制器( 7 ) 包括控制盒( 71 ) 和安装在控制盒( 71 )里面的控制线路板 ( 8 ), 控制线路板 ( 8 )上设置微处理 器 MCU、 逆变器和电源单元, 电源单元为控制线路板(8 )各部分电路提供电源, 微处理器 MCU通过逆变器控制电机实体的运行, 在控制盒(71 )上安装引线护 套(1 ), 引线护套(1 )上安装有多条外接导线(2), 其特征在于: 它还包括跳 线盒(3), 引线护套(1 )上开设有空腔(11 ), 跳线盒(3)安装在空腔(11 ) 里面, 跳线盒( 3 )上开设若干通孔( 31 ), 在通孔( 31 )里面安装接线端子( 4 ) 并在跳线盒( 3 ) 两端形成前接口 ( 32 )和后接口 ( 33 )。
9、 根据权利要求 8所述的一种电机, 其特征在于: 后接口 (33)通过引线 将接线端子 ( 4 ) 与控制线路板 ( 8 )上的微处理器 MCU电连接在一起。
10、根据权利要求 8所述的一种电机,其特征在于:它还包括若干接插件( 5 ), 每个接插件( 5 ) 包括绝缘套( 51 )和接触片 ( 52 ), 至少一部分接插件( 5 ) 的 接触片 (52) 由导电材料制成, 接插件(5 )通过前接口 (32)把上下两个接线 端子(4)连接在一起, 并把驱动信号送到微处理器 MCU处理。
PCT/CN2013/085786 2013-08-21 2013-10-23 一种电机引线护套结构及其应用的电机 WO2015024293A1 (zh)

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