WO2018120050A1 - 多路电力连接组件 - Google Patents

多路电力连接组件 Download PDF

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Publication number
WO2018120050A1
WO2018120050A1 PCT/CN2016/113577 CN2016113577W WO2018120050A1 WO 2018120050 A1 WO2018120050 A1 WO 2018120050A1 CN 2016113577 W CN2016113577 W CN 2016113577W WO 2018120050 A1 WO2018120050 A1 WO 2018120050A1
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WO
WIPO (PCT)
Prior art keywords
assembly
contact
terminal
single cable
fingers
Prior art date
Application number
PCT/CN2016/113577
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English (en)
French (fr)
Inventor
马兆飞
方超
江伟国
于增亮
张安阳
马文正
陈铃
Original Assignee
德尔福中央电气(上海)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 德尔福中央电气(上海)有限公司 filed Critical 德尔福中央电气(上海)有限公司
Priority to PCT/CN2016/113577 priority Critical patent/WO2018120050A1/zh
Priority to EP16925010.7A priority patent/EP3565065A4/en
Priority to CN201680091940.3A priority patent/CN110178271A/zh
Publication of WO2018120050A1 publication Critical patent/WO2018120050A1/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
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/10Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation effected solely by twisting, wrapping, bending, crimping, or other permanent deformation
    • H01R4/18Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation effected solely by twisting, wrapping, bending, crimping, or other permanent deformation by crimping
    • H01R4/188Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation effected solely by twisting, wrapping, bending, crimping, or other permanent deformation by crimping having an uneven wire-receiving surface to improve the contact
    • 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
    • H01R13/707Structural association with built-in electrical component with built-in switch interlocked with contact members or counterpart
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/28Coupling parts carrying pins, blades or analogous contacts and secured only to wire or cable
    • H01R24/30Coupling parts carrying pins, blades or analogous contacts and secured only to wire or cable with additional earth or shield contacts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/28Clamped connections, spring connections
    • H01R4/48Clamped connections, spring connections utilising a spring, clip, or other resilient member
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R11/00Individual connecting elements providing two or more spaced connecting locations for conductive members which are, or may be, thereby interconnected, e.g. end pieces for wires or cables supported by the wire or cable and having means for facilitating electrical connection to some other wire, terminal, or conductive member, blocks of binding posts
    • H01R11/11End pieces or tapping pieces for wires, supported by the wire and for facilitating electrical connection to some other wire, terminal or conductive member
    • H01R11/28End pieces consisting of a ferrule or sleeve
    • H01R11/281End pieces consisting of a ferrule or sleeve for connections to batteries
    • 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
    • H01R13/15Pins, blades or sockets having separate spring member for producing or increasing contact pressure
    • H01R13/187Pins, blades or sockets having separate spring member for producing or increasing contact pressure with spring member in the socket
    • 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
    • H01R13/641Means for preventing incorrect coupling by indicating incorrect coupling; by indicating correct or full engagement
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2103/00Two poles
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2201/00Connectors or connections adapted for particular applications
    • H01R2201/26Connectors or connections adapted for particular applications for vehicles

Definitions

  • the present disclosure generally relates to a multi-way power connection assembly, and more particularly to a terminal that defines a contact end that includes a plurality of fingers that are in resilient contact with the terminal portion of the socket pin.
  • Connector assemblies are needed for automotive applications such as electric vehicles only and hybrid vehicles. Connector assemblies are required to be rugged and cost effective due to vibrations, temperature changes, and exposure to contaminants such as water, salt, and dust experienced in automotive applications.
  • a multiple power connection assembly for simultaneously connecting a plurality of power cables to a mating connector.
  • Each of the plurality of power cables has a conductive shield overlying and insulated from a single cable for directing electrical power.
  • the assembly includes a socket pin and a terminal.
  • the socket pin defines a socket portion for making contact with a power pin of a mating connector.
  • the socket pin also defines a terminal portion.
  • the terminal defines a crimped end that surrounds and crimps around a single cable.
  • the terminal also defines a contact end that includes a plurality of fingers that are in and in resilient contact with the terminal portion of the receptacle pin.
  • FIG. 1 is an isometric side view of a multiple power connection assembly in accordance with one embodiment
  • FIG. 2 is an exploded view of the assembly of FIG. 1 in accordance with an embodiment
  • Figure 3 is a cross-sectional side view of the assembly of Figure 1 in accordance with one embodiment
  • FIG. 4A is an isometric side view of a terminal in the assembly of FIG. 1 for use in accordance with one embodiment
  • FIG. 4B is a cross-sectional side view of the terminal of FIG. 4A coupled to a receptacle pin of the assembly of FIG. 1 in accordance with an embodiment
  • FIG. 4C is an enlarged cross-sectional side view of the terminal of FIG. 4B, in accordance with an embodiment
  • Figure 5A is an isometric view of a seal retainer in the assembly of Figure 1 in accordance with one embodiment
  • FIG. 5B is an isometric view of a high voltage interlock (HVIL) terminal inserted into the seal holder of FIG. 5A, in accordance with one embodiment;
  • HVIL high voltage interlock
  • Figure 6 is an isometric view of the outer collar of the assembly of Figure 1 in accordance with one embodiment.
  • assembly 10 is used to simultaneously connect multiple power cables 12 to mating connectors 14.
  • Each of the plurality of power cables 12 individually includes a conductive shield 16 (Fig. 2) that overlies a single cable 18 and is insulated from the individual cables 18 by an insulating layer 20 (Fig. 3).
  • a single cable 18 in each of the plurality of power cables 12 is typically used to direct power to or from the mating connector 14.
  • the assembly 10 described herein may be applicable to electric vehicles or hybrid vehicles (not shown) in which component 10 may have a relatively high voltage (eg, greater than 32V) and For relatively large currents (eg, greater than 20A), the assembly is used to interconnect batteries and/or electric motors for propelling vehicles.
  • relatively high voltage eg, greater than 32V
  • relatively large currents eg, greater than 20A
  • Conductive shield 16 is provided to reduce the amount of radiation emitted from a single cable 18.
  • the shielding of the signals carried by the single connector is continued by the assembly 10 to corresponding features on the mating connector 14.
  • the assembly 10 includes a receptacle pin 22 that defines a receptacle portion 24 for making contact with the power pin 26 of the mating connector 14, and defines a terminal portion 28.
  • the assembly 10 also includes a terminal 30 that defines a crimped end 32 that surrounds and crimps around a single cable 18.
  • Terminal 30 also defines a contact end 34 that includes a plurality of fingers 36 that surround and are in resilient contact with terminal portion 28 of receptacle pin 22.
  • the term 'elastic contact' means that the plurality of fingers 36 are configured to initially establish an opening 38 that is smaller than the terminal portion 28 of the receptacle pin 22 (as established in FIG. 4A).
  • Both the socket pin 22 and the terminal 30 are fabricated from a metal that is adapted to conduct electricity and form a reliable electrical contact between the plurality of fingers 36 and the outer surface of the terminal portion 28. It should be considered that the metal formulation for each part may be different (for example, beryllium copper for terminal 30, hard copper for socket pin 22), for example, the material used for terminal 30 is particularly well suited for maintaining the front. The elastic contact mentioned. It is contemplated that terminal 30 and/or receptacle pins 22 may be plated to improve electrical contact therebetween or to make electrical contact therebetween more reliable.
  • the plurality of fingers 36 should include at least three fingers such that the socket pins 22 are centered in the openings established by the plurality of fingers 36. It is contemplated that additional contact points will reduce the overall contact resistance between the socket pins 22 and the terminals 30, and thus preferably the plurality of fingers 36 include at least five fingers.
  • the optimum number of fingers is eight fingers to balance the number of fingers.
  • the crimped end 32 of the terminal 30 defines a contact surface 40 that contacts the single cable 18 as the crimped end 32 surrounds and crimps around a single cable 18.
  • Contact surface 40 may advantageously include or define a plurality of grooves 42 that are part of contact surface 40.
  • a plurality of grooves 42 are used for better contact with a single cable 18 because the edges of the grooves progressively deform the surface of the individual cables 18 and thereby provide better clamping contact with the individual cables 18.
  • the assembly can include a contact spring 44 as a means of achieving high current capability contact between the receptacle pin 22 and the power pin 26.
  • the contact spring 44 can include an alternative form of the first spring arm 46 and the second spring arm 48 that are generally configured to provide additional points of contact and thereby improve contact performance.
  • FIG. 5A illustrates a non-limiting example of a retainer 50 that can be used to hold or attach various components, such as seal 52, to housing 54 of assembly 10.
  • the holder 50 can include or define a terminal chamber 56 into which a high voltage interlock 58 (HVIL 58; see FIG. 5B) is inserted.
  • HVIL 58 high voltage interlock 58
  • Figure 5B illustrates a non-limiting detail of HVIL 58 that includes a mating connector for use with
  • the two interlocking pins 66 of 14 (hidden from the view of Figure 1) are in contact with the two interlocking terminals 60A, 60B.
  • This application requires assembly 10 to be placed almost entirely in mating connector 14 prior to providing power to power pin 26.
  • the two interlocking terminals 60A, 60B are shorted together to provide a means for sensing the assembly 10 in place via the two interlocking pins 66.
  • the shorting of the two interlocking terminals 60A, 60B together was accomplished by soldering a shorting line between the two interlocking terminals 60A, 60B.
  • the carrier tape 62 which is typically removed when manufacturing the two interlocking terminals 60A, 60B, has provided such a short circuit function.
  • the two interlocking terminals 60A, 60B are advantageously shorted by a carrier strip 62 connected to the strip end 64 of the two interlocking terminals 60A, 60B opposite the two terminal ends 68 of the two interlocking terminals 60A, 60B. Together, the two terminal ends 68 are in contact with the two interlocking pins 66.
  • the carrier tape 62 already exists when the two interlocking terminals 60A, 60B are formed.
  • the carrier tape 62 is removed once the terminals are formed.
  • the conventional steps of removing the carrier tape 62 are eliminated from the program and the efficiency is improved.
  • the carrier tape 62 includes a folded portion 70 that brings the two interlocking terminals 60A, 60B closer together than if the carrier tape 62 had no folded portion 70.
  • FIG. 2 and 6 cooperatively illustrate a non-limiting feature of a ferrule device 74 that electrically couples the conductive shield 16 of a single cable 18 to the connector shield 76 of the assembly 10.
  • the outer collar 78 of the ferrule device 74 defines a plurality of recesses 80 that contact the conductive shield 76 when the assembly 10 is assembled.
  • a plurality of recesses 80 are disposed in the first row 82 and the second row 84.
  • the first row 82 is characterized by a first back-off distance 86 (e.g., 3 mm) from the leading edge 88 of the outer collar 78.
  • the second row 84 is characterized by a second back-off distance 90 (eg, 6 mm) that is greater than the first back-off distance 86 from the leading edge 88.
  • a second back-off distance 90 eg, 6 mm
  • Assembly 10 provides an economical means of achieving a high power connection with shields and high voltage interlocking safety features.

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  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

一种用来将多个电力电缆(12)同时连接到配合连接器(14)的多路电力连接组件(10),包括插座插针(22)和端子(30)。多个电力电缆中的每一个具有导电屏蔽件(16),导电屏蔽件覆盖在用来引导电力的单个电缆(18)上面并与单个电缆绝缘开来;插座插针限定了端子部分(28)和用来与配合连接器的电力插针(26)进行接触的插座部分(24);端子限定了围绕并卷曲在单个电缆周围的卷曲端(32),和包括环绕插座插针的端子部分并与其进行弹性接触的多个指状件(36)的接触端(34)。

Description

多路电力连接组件 技术领域
本公开大体涉及一种多路电力连接组件,并且更具体涉及一种端子,该端子限定接触端,该接触端包括环绕插座插针的端子部分并与其进行弹性接触的多个指状件。
背景技术
需要高功率连接器组件用于诸如仅电动车辆和混合动力车辆的汽车应用。由于汽车应用中经历的振动、温度变化和暴露于诸如水、盐和灰尘的污染物,需要连接器组件是坚固耐用且成本有效的。
发明内容
根据一个实施例,提供了一种用来将多个电力电缆同时连接到匹配连接器的多路电力连接组件。所述多个电力电缆中的每一个具有导电屏蔽件,所述导电屏蔽件覆盖在用来引导电力的单个电缆上面并相对所述单个电缆绝缘。所述组件包括插座插针和端子。所述插座插针限定了用来与匹配连接器的电力插针进行接触的插座部分。所述插座插针还限定了端子部分。所述端子限定了围绕并卷曲在单个电缆周围的卷曲端。所述端子还限定了包括环绕所述插座插针的所述端子部分并与其进行弹性接触的多个指状件的接触端。
在阅读优选实施例的以下详细描述后,进一步的特征和优点将会更显而易见,所述优选实施例仅以非限制性示例的方式并且参考附图给出。
附图说明
现在将参考附图以示例的方式描述本发明,其中:
图1是根据一个实施例的多路电力连接组件的等轴侧视图;
图2是根据一个实施例的图1的组件的分解视图;
图3是根据一个实施例的图1的组件的截面侧视图;
图4A是用于根据一个实施例的图1的组件中的端子的等轴侧视图;
图4B是连接到根据一个实施例的图1的组件的插座插针的图4A的端子的截面侧视图;以及
图4C是根据一个实施例的图4B的端子的放大截面侧视图;
图5A是用于根据一个实施例的图1的组件中的密封件保持器的等轴视图;
图5B是根据一个实施例插入图5A的密封件保持器内的高电压互锁(HVIL)端子的等轴侧视图;以及
图6是根据一个实施例的图1的组件中的外套圈的等轴侧视图。
具体实施方式
图1、图2和图3协作示出了多路电力连接组件10的非限制性实施例,该多路电力连接组件10在下文中称为组件10。一般来说,组件10用来将多个电力电缆12同时连接到匹配连接器14。多个电力电缆12中的每一个单独包括导电屏蔽件16(图2),该屏蔽件16覆盖在单个电缆18上面并通过绝缘层20(图3)与单个电缆18绝缘开来。多个电力电缆12中的每一个中的单个电缆18通常用来将电力引导到配合连接器14或从配合连接器14引导电力。通过示例的方式并不进行限制,在本文中描述的组件10可以适用于电动车辆或混合动力车辆(未示出)中,在这些车辆中组件10会存在相对高的电压(例如大于32V)和相对大的电流(例如大于20A),该组件被用来互连电池和/或用于推进车辆的电动马达。
导电屏蔽件16设置用来减少从单个电缆18发射的辐射发射量。由单个连接器承载的信号的屏蔽由组件10连续到配合连接器14上的对应特征。
组件10包括插座插针22,所述插座插针22限定了用来与匹配连接器14的电力插针26进行接触的插座部分24,并且限定了端子部分28。组件10还包括端子30,该端子30限定了包围并卷曲在单个电缆18周围的卷曲端32。端子30还限定了接触端34,所述接触端34包括环绕插座插针22的端子部分28并与其弹性接触的多个指状件36。如在本文中使用的,术语‘弹性接触’意思是多个指状件36配置为最初建立小于插座插针22的端子部分28的开口38(如在图4A中示出的建立的状态)。然而,当插座插针22插入开口38时,如在图4B中示出的,多个指状件36径向向外偏转,但是倚着端子部分28的 外表面维持弹性压力。插座插针22和端子30两者由适于导电并在多个指状件36与端子部分28的外表面之间形成可靠电性接触的金属制作。应考虑到,用于每个零件的金属配方可以是不同的(例如铍铜用于端子30,硬铜用于插座插针22),例如,使用于端子30的材料特别好地适于维持前面提到的弹性接触。应考虑到,端子30和/或插座插针22可以电镀以改善其之间的电性接触或使其之间的电性接触更可靠。
图4A、图4B和图4C协作示出了插座插针22和端子30的非限制性细节。应考虑到,多个指状件36应当包括至少三个指状件,使得插座插针22居中于由多个指状件36建立的开口中。应考虑到,额外的接触点将会减少插座插针22与端子30之间的总体接触阻力,因此优选地,多个指状件36包括至少五个指状件。对于针对该应用考虑的插座插针22的尺寸(例如端子部分28的等于大约6mm的外径),应考虑到,指状件的最佳数量为八个指状件以平衡指状件的数量与通过每个指状件施加以维持与插座插针22接触的弹性力。即,可预期的是,随着指状件的数量增加,每个指状件施加于端子部分28的力将会减小,这将会使电性接触更不可靠。
端子30的卷曲端32限定了当卷曲端32围绕并卷曲在单个电缆18周围时与单个电缆18进行接触的接触表面40。接触表面40可以有利地包括或限定作为接触表面40的一部分的多个凹槽42。多个凹槽42用于与单个电缆18进行更好的接触,因为凹槽的边缘使单个电缆18的表面逐渐变形,并且由此与单个电缆18进行更好的夹紧接触。
现在参考图4C,组件可以包括作为实现插座插针22与电力插针26之间的高电流能力接触的手段的接触弹簧44。接触弹簧44可以包括第一弹簧臂46和第二弹簧臂48的代替形式,它们总地构造成提供额外的接触点并且由此改善接触性能。
图5A图示了保持器50的非限制性示例,该保持器50可以用来将诸如密封件52的各种零件保持或附接到组件10的壳体54。保持器50可以包括或限定端子腔室56,高电压互锁件58(HVIL58;参见图5B)插入所述端子腔室56内。
图5B图示了HVIL58的非限制性细节,该HVIL58包括用来与匹配连接器 14的两个互锁插针66(从图1的视图隐藏)进行接触的两个互锁端子60A、60B。该应用需要组件10在向电力插针26提供电力之前几乎完全安置在匹配连接器14中。两个互锁端子60A、60B短接在一起以提供经由两个互锁插针66感测组件10处于适当位置的手段。先前,两个互锁端子60A、60B的在一起的短接通过在两个互锁端子60A、60B之间焊接短路线来完成。然而,应认识到,当制造两个互锁端子60A、60B时通常移除的承载带62已经提供了这种短路功能。两个互锁端子60A、60B通过连接到与两个互锁端子60A、60B的两个端子端68相对的两个互锁端子60A、60B的带端64的承载带62而有利地短接在一起,而两个端子端68与两个互锁插针66进行接触。端子制造领域中的人员应认识到,当两个互锁端子60A、60B形成时承载带62已经存在。通常,一旦端子形成,就移除承载带62。然而,由于该应用需要两个互锁端子60A、60B短接在一起,移除承载带62的常规步骤从程序中消除,并且效率得以改善。
当两个互锁端子60A、60B形成时,两个互锁端子60A、60B之间的转位距离大于期望的。即,承载带过长。为了克服这种问题,承载带62包括折叠部分70,该折叠部分70使两个互锁端子60A、60B比承载带62没有折叠部分70的情况更靠近在一起。
图2和图6协作图示了套圈装置74的非限制性特征,所述套圈装置74将单个电缆18的导电屏蔽件16电气耦接到组件10的连接器屏蔽件76。套圈装置74的外套圈78(同样参见图6)限定了当组件10进行组装时与导电屏蔽件76进行接触的多个凹处80。多个凹处80布置在第一行82和第二行84中。第一行82通过相距外套圈78的前边缘88的第一退后距离86(例如3mm)来表征。第二行84通过相距前边缘88的大于第一退后距离86的第二退后距离90(例如6mm)来表征。通过将多个凹处80布置成两行,当相比于四个或更多个凹处在单行中时,在连接器屏蔽件76上面迫使外套圈78所需的插入力得以减小。
相应地,提供了一种多路电力连接组件(组件10)。组件10提供了一种实现具有屏蔽件和高电压互锁安全特征的高功率连接的经济手段。
虽然本发明已经在其优选实施例方面进行描述,但是不意图进行限制,而是仅在一定程度上在随后的权利要求中进行阐述。

Claims (7)

  1. 一种用来将多个电力电缆(12)同时连接到匹配连接器(14)的多路电力连接组件(10),所述多个电力电缆(12)中的每一个具有导电屏蔽件(16),所述导电屏蔽件(16)覆盖在用来引导电力的单个电缆(18)上面并相对所述单个电缆(18)绝缘,所述组件(10)包括:
    插座插针(22),所述插座插针(22)限定了用来与配合连接器(14)的电力插针(26)进行接触的插座部分(24),并且限定了端子部分(28);
    端子(30),所述端子(30)限定了围绕绕并卷曲在单个电缆(18)周围的卷曲端(32),并且限定了接触端(34),所述接触端包括环绕所述插座插针(22)的所述端子部分(28)并与其进行弹性接触的多个指状件(36)。
  2. 根据权利要求1所述的组件(10),其特征在于,所述多个指状件(36)包括至少五个指状件(36)。
  3. 根据权利要求2所述的组件(10),其特征在于,所述多个指状件(36)由八个指状件(36)组成。
  4. 根据权利要求1所述的组件(10),其特征在于,所述端子(30)的所述卷曲端(32)限定了当所述卷曲端(32)围绕并卷曲在所述单个电缆(18)周围时与所述单个电缆(18)接触的接触表面(40),并且所述接触表面(40)包括多个凹槽(42)。
  5. 根据权利要求1所述的组件(10),其特征在于,所述组件(10)包括用来与所述配合连接器(14)的两个互锁插针(66)接触的两个互锁端子(60A),其中所述两个互锁端子(60A)通过承载带(62)短接在一起,所述承载带(62)连接到与所述两个互锁插针(66)进行接触的所述两个互锁端子(60A)的两个端子端(68)相对的所述两个互锁端子(60A)的带端(64)。
  6. 根据权利要求5所述的组件(10),其特征在于,所述承载带(62)包括折叠部分(70),所述折叠部分(70)使所述两个互锁端子(60A)比承载带(62)没有所述折叠部分(70)的情况更靠近在一起。
  7. 根据权利要求1所述的组件(10),其特征在于,所述组件(10)包括套圈装置(74),所述套圈装置(74)将所述单个电缆(18)的导电屏蔽件(16) 电气附连到所述组件(10)的连接器屏蔽件(76),并且所述套圈装置(74)的外套圈(78)限定了当所述组件(10)进行组装时与所述导电屏蔽件(16)进行接触的多个凹处(80),其中所述多个凹处(80)布置在第一行(82)和第二行(84)中,所述第一行(82)通过相距所述外套圈(78)的前边缘(88)的第一退后距离(86)来表征,所述第二行(84)通过相距所述前边缘(88)的大于所述第一退后距离(86)的第二退后距离(90)来表征。
PCT/CN2016/113577 2016-12-30 2016-12-30 多路电力连接组件 WO2018120050A1 (zh)

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