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WO2015196913A1 - 一种线缆连接器组件、板端连接器组件及其电连接器组合 - Google Patents

一种线缆连接器组件、板端连接器组件及其电连接器组合 Download PDF

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Publication number
WO2015196913A1
WO2015196913A1 PCT/CN2015/080742 CN2015080742W WO2015196913A1 WO 2015196913 A1 WO2015196913 A1 WO 2015196913A1 CN 2015080742 W CN2015080742 W CN 2015080742W WO 2015196913 A1 WO2015196913 A1 WO 2015196913A1
Authority
WO
WIPO (PCT)
Prior art keywords
connector assembly
terminal
cable
card point
assembly according
Prior art date
Application number
PCT/CN2015/080742
Other languages
English (en)
French (fr)
Other versions
WO2015196913A9 (zh
Inventor
霍柱东
彭君兰
陈正一
任卫峰
Original Assignee
深圳市得润电子股份有限公司
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
Priority claimed from CN201420353577.6U external-priority patent/CN204011986U/zh
Priority claimed from CN201520215070.9U external-priority patent/CN204497465U/zh
Application filed by 深圳市得润电子股份有限公司 filed Critical 深圳市得润电子股份有限公司
Priority to US14/772,085 priority Critical patent/US9577364B2/en
Publication of WO2015196913A1 publication Critical patent/WO2015196913A1/zh
Publication of WO2015196913A9 publication Critical patent/WO2015196913A9/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
    • H01R13/46Bases; Cases
    • H01R13/516Means for holding or embracing insulating body, e.g. casing, hoods
    • 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
    • H01R13/648Protective earth or shield arrangements on coupling devices, e.g. anti-static shielding  
    • H01R13/658High frequency shielding arrangements, e.g. against EMI [Electro-Magnetic Interference] or EMP [Electro-Magnetic Pulse]
    • H01R13/6581Shield structure
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/7005Guiding, mounting, polarizing or locking means; Extractors
    • H01R12/7011Locking or fixing a connector to a PCB
    • H01R12/707Soldering or welding
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/71Coupling devices for rigid printing circuits or like structures
    • H01R12/712Coupling devices for rigid printing circuits or like structures co-operating with the surface of the printed circuit or with a coupling device exclusively provided on the surface of the printed circuit
    • H01R12/716Coupling device provided on the PCB
    • 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
    • H01R13/648Protective earth or shield arrangements on coupling devices, e.g. anti-static shielding  
    • H01R13/658High frequency shielding arrangements, e.g. against EMI [Electro-Magnetic Interference] or EMP [Electro-Magnetic Pulse]
    • H01R13/6591Specific features or arrangements of connection of shield to conductive members
    • 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
    • H01R13/648Protective earth or shield arrangements on coupling devices, e.g. anti-static shielding  
    • H01R13/658High frequency shielding arrangements, e.g. against EMI [Electro-Magnetic Interference] or EMP [Electro-Magnetic Pulse]
    • H01R13/6591Specific features or arrangements of connection of shield to conductive members
    • H01R13/6594Specific features or arrangements of connection of shield to conductive members the shield being mounted on a PCB and connected to conductive members
    • 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
    • H01R13/665Structural association with built-in electrical component with built-in electronic circuit
    • H01R13/6658Structural association with built-in electrical component with built-in electronic circuit on printed circuit board
    • 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
    • H01R24/60Contacts spaced along planar side wall transverse to longitudinal axis of engagement

Definitions

  • the present invention relates to the field of connectors, and more particularly to a cable connector assembly, a board end connector assembly, and an electrical connector assembly thereof.
  • the high-speed transmission connector includes a plurality of pairs of terminal pairs, which are limited by the size specifications thereof, and the requirements for the terminals in the assembly are extremely high. How to make the transmission signal of the terminal high-speed and stable becomes a key problem, in addition, the connector has In the cable connector assembly, since the cable includes a plurality of core wires, how to make the core wire communicate with the terminal and the appearance size of the entire component meets certain requirements also becomes a key problem.
  • the shield plate of the board-end connector that is connected to the high-speed transmission cable connector is grounded by the SMT (Surface Mount Technology) to form a ground, which is not reliable in actual use. It affects the connection reliability of the electrical connector composed of the cable connector and the board end connector, and the stability of high-speed signal transmission.
  • the invention provides a cable connector assembly, a board end connector assembly and an electrical connector combination, which can improve the connection reliability by reducing the size of the cable connector assembly and reinforcing the shielding effect of the board end connector assembly. Sexuality and guarantee the stability of high-speed signal transmission.
  • the present invention provides a cable connector assembly including a connector, a fixed iron shell, and a cable having a plurality of core wires, the connector including at least one pair of terminal pairs, a first insulative housing, and a first metal a housing, a grounding strip, and a printed circuit board, wherein the terminal pair, the grounding strip, and the first metal housing are assembled to the first insulative housing, and the fixed iron housing is assembled to the first metal housing surface, wherein the a fixed iron shell is provided with a convex hull structure for allowing the cable to penetrate the solid a core of the cable, the core of one end of the cable passes through the fixed iron shell and is connected to one end of the printed circuit board, and the soldering portion of the pair of terminals is soldered to the other end of the printed circuit board,
  • the printed circuit board is provided with wiring that connects the core wire and the pair of terminals.
  • the fixed iron shell includes a sleeve portion and a cylindrical portion extending from the sleeve portion, and the convex hull structure is disposed on an upper surface and/or a lower surface of the sleeve portion near the circle In the portion of the tubular portion, the convex hull structure protrudes upwardly at an appropriate height such that the cable penetrates into the sleeve portion, and the convex hull structure communicates with the cylindrical portion.
  • the fixed iron shell is provided with a solder joint portion, and the solder joint portion is welded and fixed to the metal shell.
  • the solder joint portion is disposed on the front surface of the sleeve portion and/or the front end of the lower surface, and the solder joint portion is recessed from the sleeve portion toward the metal shell, and the metal shell includes The front end portion and the rear end portion, the sleeve portion covers the rear end portion and is welded and fixed to the rear end portion.
  • the terminal pair includes a first terminal and a second terminal
  • the first terminal includes a first contact portion, a first connecting portion and a first soldering portion
  • the second terminal includes a second contact portion a first connecting portion and a second connecting portion, wherein the first connecting portion and the second connecting portion are oppositely disposed with the first card point and the second card point which are mutually offset, and the first and second avoidance portions which are mutually offset groove.
  • the first card point and the second card point are both disposed, and the first slot is disposed between the two of the first card points, and between the two of the second card points
  • the second sluice is formed, the first sluice is formed to be recessed from the first terminal toward the second terminal, and the second sluice is away from the second terminal toward the first The terminal direction is recessed.
  • the first card point near the first contact portion and the second card point near the second contact portion are completely staggered, and the second card point projection near the second contact portion is located at the Within the range of the first sluice projection.
  • the first avoidance slot is gradually reduced from a first card point of the first card point adjacent to the first contact portion to another first card point, and the second slot is from the second card point.
  • the second card point near the second contact portion is gradually reduced toward the other second card point.
  • the cable includes a shielding layer coated on the outside of the core wire, and the shielding layer is in contact with the fixed iron shell.
  • the electrical connector further includes a fixing block that covers the soldering area on the circuit board.
  • An embodiment of the present invention further provides a board end connector assembly including a second metal housing having a mating cavity, and a terminal set and a second insulative housing fixed in the second metal housing, the second insulative housing Including the base and the location a tongue plate at a front end of the base, the tongue plate having opposite first and second surfaces, wherein a shielding plate is disposed between the first surface and the second surface, the shielding plate is disposed to be exposed a protrusion at the side end of the base and abutting the second metal casing.
  • the first metal casing is stamped into the mating cavity to form a contact portion abutting the protruding portion corresponding to the position of the protruding portion.
  • the rear end of the shielding plate is provided with a downwardly extending welded portion.
  • the terminal group includes a third terminal and a fourth terminal
  • the second insulating body includes a first module that holds the third terminal and a second module that holds the fourth terminal.
  • the shielding plate is fixed to the second module by insert molding.
  • the rear end of the shielding plate is bent downward to form a reinforcing portion corresponding to the high frequency signal terminal.
  • the first module is further provided with a first grounding piece
  • the second module is further provided with a second grounding piece
  • the first grounding piece and the second grounding piece are in the Both sides of a module and a second module are fixed by laser welding.
  • the second metal casing is further covered with an upper cover for limiting and fixing the second metal casing.
  • Embodiments of the present invention also provide an electrical connector assembly including the cable connector assembly and the board end connector assembly described above.
  • the invention has the beneficial effects that the fixed iron shell is provided with a convex hull structure, which increases the inner space of the fixed iron shell, so that a larger size cable can also penetrate into the interior, and finally the convex
  • the package structure is depressed, which reduces the size of the connector cable assembly, and also makes the structure of the connector cable assembly more compact and firm, which is beneficial to improve the stability of the connector cable assembly, and at the same time, the board end connector A protruding portion is arranged on both sides of the shielding plate of the component, and the protruding portion is in contact with the second metal casing, thereby forming a new grounding path, multi-pass grounding, reducing electromagnetic interference, further strengthening the shielding effect of the connector, and facilitating improvement Connection reliability and stability of high-speed signal transmission.
  • Figure 1 is a perspective view showing the unconnected structure of the cable connector assembly of the present invention
  • FIG. 2 is a perspective view of the cable connector assembly of the present invention
  • Figure 3 is a perspective view of a portion of the cable connector assembly of the present invention (1);
  • Figure 4 is a perspective view of a portion of the cable connector assembly of the present invention (2);
  • Figure 5 is a perspective view of a portion of the cable connector assembly of the present invention (3)
  • FIG. 6 is a schematic exploded view of the connector of the cable connector assembly of the present invention.
  • Figure 7 is a cross-sectional view of the connector of the cable connector assembly of the present invention.
  • Figure 8 is a partial enlarged view of Figure 7;
  • Figure 9 is a schematic structural view of the board end connector assembly of the present invention.
  • FIG. 10 is a schematic view showing the cooperation structure of the first module and the second module in the board end connector assembly of the present invention
  • FIG. 11 is a schematic structural view of a second metal casing in the board end connector assembly of the present invention.
  • FIG. 12 is a schematic structural view of a shielding plate in the board end connector assembly of the present invention.
  • Figure 13 is a structural exploded view of the board end connector assembly of the present invention.
  • FIG. 14 is a schematic structural view of a plurality of second modules in a single-time embedded molding process during the processing of the board-end connector assembly of the present invention.
  • a connector cable assembly 100 includes a connector, a fixed iron casing 40, a cable 30 having a plurality of core wires, a wire clamp 41, and a fixing block 42.
  • the connector includes at least a pair of the aforementioned terminal pair 10, the first insulative housing 20, the first metal housing 21, the grounding strip 22, the shielding sheet 23, and the printed circuit board 24.
  • the present embodiment includes a plurality of sets of terminal pairs 10, the terminal pairs 10 are fixed on the first insulative housing 20, and the shielding sheets 23 are respectively fixed on the first insulative housing 20.
  • the upper and lower surfaces, the shielding piece 23 is fixed on the first insulative body 20 and between the two terminals of the terminal pair 10 for better shielding effect.
  • the first metal casing 21 covers the first insulative housing 20, and includes a front end portion 210 and a rear end portion 211 corresponding to the first insulative housing 20, and the front end portion 210 and the rear end portion 211 are not located on the same plane, and are connected.
  • the assembly method is a common conventional technique and will not be described in detail herein.
  • the soldering portion of the terminal pair 10 is exposed outside the first insulative housing 20 and soldered to one end of the printed circuit board 24.
  • the cable 30 includes a plurality of core wires 31 soldered to the other end of the printed circuit board 24, and the printed circuit board 24 A wiring (not shown) is provided, and the soldering portion of the terminal pair is electrically connected to the core wire by wiring.
  • the cable outer sleeve is provided with a fixed iron shell 40, which includes a sleeve portion 401 and a cylindrical portion extending from the sleeve portion 401. 402.
  • the upper and lower surfaces and/or the lower surface of the sleeve portion 401 are provided with a convex hull structure 403 near the cylindrical portion, and the convex hull structure 403 protrudes upwardly at an appropriate height, so that the cable 30 penetrates into the sleeve portion 401, and the convex hull structure 403 and The cylindrical portions 401 are in communication.
  • the front end of the cable 30 peels off the outer insulation layer, and the single core wire and the shielding layer are exposed, and the shielding layer is coated on the outside of the core wire.
  • the iron shell is fixed.
  • the size of 40 is fixed. If the size of the cable 30 is too large, the cable 30 cannot penetrate the inside of the fixed iron shell 40, so that the core wire 31 cannot pass through the fixed iron shell 40, and the convex hull structure 403 causes the inside of the fixed iron shell 40 to become Large, so that the cable 30 partially penetrates into the interior of the fixed iron shell 40. After the core wire 31 is soldered to the printed circuit board 24, the convex hull structure 403 is then depressed.
  • the height and size of the convex hull structure 403 It needs to be set according to the actual size and process flow of the cable 30, and the convex hull structure 403 can also be disposed on other parts of the fixed iron shell 40 according to actual conditions.
  • the portion of the fixed iron shell 40 at the rear end (not shown) covering the cable 30 may be pressed (it may be pressed from other directions such as up, down, left, and right).
  • the cable 30 includes a shield braid 32. After the convex hull structure 403 is depressed, the shield braid 32 is in contact with the convex hull structure 403, so that the connector cable assembly has a better shielding effect.
  • an insulating outer layer can be formed outside the connector cable assembly (not shown).
  • the fixed iron shell 40 is provided with a solder joint portion 404 which is soldered and fixed to the first metal shell 21 .
  • the solder joint portion 404 is disposed on the upper surface and/or the lower surface of the sleeve portion 401 for soldering.
  • the point portion 404 is formed by recessing the sleeve portion 401 toward the first metal casing 21.
  • the solder joint portion 404 is disposed at the front end of the sleeve portion 401.
  • solder joint portion 404 may be disposed on the other surface of the sleeve portion 401, for example, the side surface, or the like, or other snap hook structure may be used, as long as the fixed iron shell 40 can be The first metal casing 21 is fixed together and in contact.
  • the present invention also discloses a method for assembling the cable connector assembly 100.
  • the terminal pair 10, the first insulative housing 20, the first metal housing 21, the grounding strip 22, the shielding sheet 23, and the printed circuit board 24 are assembled to form a connector.
  • the soldering portion of the terminal pair 10 is soldered to the other end of the printed circuit board 24, and then the cable 30 is stripped, so that part of the core wire 31 and the shielding layer are displayed, the cable is threaded into the fixed iron shell 40, and the core wire is made 31 passes through the fixed iron shell 40, and the core wire 31 is fixed by the wire clamp 41, preventing the core wire 31 from being scattered and causing an error in welding.
  • the wire clamp 41 is a commonly used structure in the existing cable connector assembly, and is not
  • the core wire 31 is soldered to the other end of the printed circuit board 24, and the terminal pair 10 and the core wire 31 are electrically connected through the wiring on the printed circuit board 24, and the plastic is formed by insert molding.
  • the fixing block 42 and the fixing block 41 cover the printed circuit board 24; each soldering point is covered by the fixing block, and finally the fixing iron shell 40 is advanced toward the front end of the first metal iron shell 21, so that the sleeve portion 401 is covered first.
  • the rear end portion of the metal iron shell 21 passes through the sleeve portion 401
  • the solder joint portion 404 is soldered and fixed to the rear end portion of the first metal iron shell 21, and the surface convex hull mechanism 401 on the fixed iron shell 40 is pressed down, and the portion of the sleeve portion 401 covering the cable 30 is pressed and pressed.
  • the rear end of the rear fixed iron shell 40 is in contact with the shield layer inside the cable 30.
  • the fixing block 42 may not be disposed, or it may be replaced by other means such as glue.
  • the clip 41 may not be provided.
  • the fixed iron shell is provided with a convex hull structure, which increases the internal space of the fixed iron shell, so that a larger size cable can also penetrate into the interior, and finally the convex hull structure is depressed.
  • the size of the connector cable assembly is reduced, and the structure of the connector cable assembly is also more compact and firm, which is beneficial to improve the connection reliability of the connector cable assembly and the stability of high-speed signal transmission.
  • the terminal pair 10 includes a first terminal and a second terminal.
  • the terminal pair 10 is a pair of high-speed differential signal terminal pairs, first.
  • the terminal and the second terminal are aligned up and down.
  • the first terminal includes a first contact portion 110, a first connecting portion 111, and a first soldering portion 112.
  • the second terminal includes a second contact portion 120, a second connecting portion 121, and a second soldering portion 122.
  • the first connecting portion 110 and the second connecting portion 120 are oppositely disposed with a first locking point 1110 and a second locking point 1210 which are mutually offset.
  • first locking point 1110 is provided with a first avoiding groove 1111, and one side of the second locking point 1210 A second avoidance slot 1211 is provided.
  • the first card point 1110 and the second card point 1210 refer to card engagement with other structures.
  • the first card point 1110 and the second card point 1210 are both provided with two, two A first avoidance slot 1111 is disposed between the first card points 1110, and a second avoidance slot 1211 is disposed between the two second card points 1210.
  • the first slot 1111 is recessed from the first terminal toward the second terminal.
  • the first sluice 1211 is formed in a direction away from the first terminal, and the first sluice 1111 and the second sluice 1211 are offset from each other.
  • the first sluice 1111 is formed from the first card 1110.
  • the first card point near the first contact portion 110 is gradually reduced toward the other first card point
  • the second chute 1211 is from the second card point of the second card point 1210 near the second contact portion to the other second card point.
  • the card point of the second card point 1210 adjacent to the second contact portion corresponds to the position of the first avoidance groove 1111.
  • the arrangement of the card point and the avoidance slot improves the stability of the terminal pair during the transmission of the high-speed signal and the stability of the terminal when fixed with other components, so that the terminal pair stably transmits signals at a high speed.
  • the staggering mentioned in the specification includes that the structure is completely staggered and the structural parts are staggered.
  • the second card point of the contact portion 120 is completely staggered, and the first card point adjacent to the first soldering portion 112 and the second card point of the second solder portion 122 are partially offset, and the first sluice 1111 and the second sluice 1211 is also partially wrong. Whether it is completely staggered or partially staggered depends mainly on the actual application of the connector.
  • the second card point projection of the second card point near the second contact portion is located at the first position. Avoid the range of projection.
  • the board end connector of the embodiment of the present invention comprises a second metal casing 1 having a mating cavity 11 , and an upper cover 9 covering the second metal casing 1 on the second metal casing 1 and being fixedly fixed, and a terminal set fixed to the second metal casing 1 and a second insulative housing, the second insulative housing comprising a base 4 and a tongue 5 at a front end of the base 4, the tongue plate 5 having opposite first surfaces and a first
  • the two surfaces are provided with a shielding plate 6 between the first surface and the second surface, and the shielding plate 6 is provided with a protruding portion 61 exposed at a side end of the base portion 4 and abutting against the second metal casing 1.
  • the second metal casing 1 is stamped into the mating cavity 11 to form a contact portion 12 abutting the protruding portion 61 corresponding to the position of the protruding portion 61, and the contact portion 12 is in contact with the protruding portion 61 to form a new ground.
  • the path helps to further enhance the shielding effect.
  • the rear end of the shielding plate 6 is provided with a downwardly extending welded portion 62.
  • the terminal group includes a third terminal 21 and a fourth terminal.
  • the third terminal 21 is disposed on the upper end surface of the tongue plate 5.
  • the fourth terminal is disposed on the lower end surface of the tongue plate 5 to facilitate the corresponding line. Power supply or data exchange is performed when the cable connector 100 is connected.
  • the second insulative housing includes a first module 2 that holds the third terminal 21 and a second module 3 that holds the fourth terminal. The first module 2 and the second module 3 are stacked and fixed.
  • the shielding plate 6 is fixed to the second module 3 by insert molding, that is, the fourth terminal, the shielding plate 6 and the plastic are formed by insert molding to form the second module 3, and in practice In the processing and production, the strip of the fourth terminal and the strip of the shielding plate 6 are formed by one-time insert molding to form a plurality of second modules 3, as shown in FIG.
  • the rear end of the shielding plate 6 is bent downward to form a reinforcing portion 63 corresponding to the high-frequency signal terminal, and the reinforcing portion 63 is advantageous for further strengthening the shielding effect.
  • the first module 2 is further provided with a first grounding strip 7, and the second module 3 is further provided with a second grounding strip 8, the first grounding strip 7 and the second grounding strip 8. Both sides of the first module 2 and the second module 3 are fixed by laser welding.
  • the board end connector of the embodiment of the invention is provided with a protruding portion on both sides of the shielding plate, and the protruding portion is in contact with the second metal casing, thereby forming a new grounding path, multi-pass grounding, reducing electromagnetic interference, and further strengthening shielding.
  • the effect also makes the structure of the board end connector more compact and firm, which is beneficial to improve the connection reliability with the connector cable assembly and the stability of high-speed signal transmission.
  • the embodiment of the present invention further provides a connector assembly for docking the cable connector assembly with the board end connector, and the cable connector assembly known to those skilled in the art can be connected to the board end connector. It is applied to the embodiment of the present invention, and therefore, it is not limited in the embodiment of the present invention.

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  • Microelectronics & Electronic Packaging (AREA)
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Abstract

一种线缆连接器组件、板端连接器组件及连接器组合,其中,线缆连接器组件包括连接器、固定铁壳(40)和具有多根芯线的线缆(30),连接器包括至少一对端子对(10)、第一绝缘本体(20)、第一金属外壳(21)、接地片(22)以及印刷电路板(24),其中端子对(10)、接地片(22)、第一金属外壳(21)组装于第一绝缘本体(20),固定铁壳(40)组装于第一金属外壳(21)表面,固定铁壳(40)上设置有凸包机构(403),以便让线缆穿入铁壳。一种板端电连接器,包括具有一个对接腔(11)的第二金属外壳(1),以及固定于第二金属外壳(1)中的端子组和第二绝缘本体,第二绝缘本体包括基部(4)及位于基部(4)前端的舌板(5),舌板(5)具有相对设置的第一表面和第二表面,第一表面与第二表面之间设置有屏蔽板(6),该屏蔽板(6)设置有露出于基部侧端并与第二金属外壳(1)相抵接的突出部(61),该突出部(61)与第二金属外壳(1)相接触,从而形成一个新的接地路径,多通路接地,降低电磁干扰,加强屏蔽效果。

Description

一种线缆连接器组件、板端连接器组件及其电连接器组合 【技术领域】
本发明涉连接器领域,尤其涉及一种线缆连接器组件、板端连接器组件及其电连接器组合。
【背景技术】
现有常用电连接器在使用时易出现误插,对连接器造成较大的损失,此外,随着技术的发展,现有电子产品朝向多功能和超薄化方向发展,现有常用电连接器尺寸较大或功能单一,难以满足需求,目前市场上最新推出了一款高速传输连接器,能够实现高速传输,尺寸也进一步减小,满足了电子产品对连接器要求。
但是,该高速传输连接器包括多对端子对,限制于其尺寸规格要求,组装中对端子的要求极高,如何使得端子高速稳定的传输信号成为一个关键性的问题,此外,该连接器的线缆连接器组件中,由于线缆包含有多根芯线,如何使得芯线与端子连通且整个组件的外观尺寸达到一定的要求,也成为了关键性的问题。
同时,现有技术中与高速传输的线缆连接器对接的板端连接器的屏蔽板用SMT(Surface Mount Technology,表面贴装技术)方式与PCB连接形成接地,在实际使用过程中不够可靠,影响了线缆连接器与板端连接器组成的电连接器的连接可靠性,以及高速信号传输的稳定性。
【发明内容】
本发明提供了一种线缆连接器组件、板端连接器组件及电连接器组合,通过减小线缆连接器组件的尺寸,以及加强板端连接器组件的屏蔽效果,有利于提高连接可靠性,并保证高速信号传输的稳定性。
本发明提供一种一种线缆连接器组件,其包括连接器、固定铁壳和具有多根芯线的线缆,所述连接器包括至少一对端子对、第一绝缘本体、第一金属外壳、接地片以及印刷电路板,其中所述端子对、接地片、第一金属外壳组装于所述第一绝缘本体,所述固定铁壳组装于所述第一金属外壳表面,其中,所述固定铁壳上设置有凸包结构,以便让所述线缆穿入所述固 定铁壳,所述线缆一端的芯线穿过所述固定铁壳并接于所述印刷电路板的一端,所述端子对的焊接部焊接于所述印刷电路板的另一端,所述印刷电路板设置有连通所述芯线与所述端子对的布线。
可选地,所述固定铁壳包括套筒部以及自所述套筒部延伸的圆筒部,所述凸包结构设置于所述套筒部的上表面和/或下表面靠近所述圆筒部的部分,所述凸包结构向上突起适当高度,使得所述线缆穿入所述套筒部内,所述凸包结构与所述圆筒部相连通。
可选地,所述固定铁壳上设置有焊点部,所述焊点部与所述金属外壳焊接固定在一起。
可选地,所述焊点部设置于所述套筒部上表面和/或下表面前端,所述焊点部自所述套筒部向所述金属外壳凹陷而成,所述金属外壳包括前端部和后端部,所述套筒部包覆所述后端部,并与所述后端部焊接固定在一起。
可选地,所述端子对包括第一端子和第二端子,所述第一端子包括有第一接触部、第一连接部以及第一焊接部,所述第二端子包括有第二接触部、第二连接部以及第二焊接部,所述第一连接部和第二连接部相向设置有相互错开的第一卡点和第二卡点,以及相互错开的第一避槽和第二避槽。
可选地,所述第一卡点和第二卡点均设置有两个,两个所述第一卡点之间设置有所述第一避槽,两个所述第二卡点之间设置有所述第二避槽,所述第一避槽自所述第一端子朝向远离所述第二端子方向凹陷形成,所述第二避槽自所述第二端子朝向远离所述第一端子方向凹陷形成。
可选地,靠近所述第一接触部的第一卡点和靠近所述第二接触部的第二卡点是完全错开的,且靠近第二接触部的所述第二卡点投影位于所述第一避槽投影的范围内。
可选地,所述第一避槽自第一卡点中靠近所述第一接触部的第一卡点向另一个第一卡点逐渐缩小,所述第二避槽自第二卡点中靠近所述第二接触部的第二卡点向另一个第二卡点逐渐缩小。
可选地,所述线缆包括有包覆在芯线外部的屏蔽层,所述屏蔽层与所述固定铁壳接触。
可选地,所述电连接器还包括有固定块,所述固定块包覆电路板上的焊接区。
本发明实施例还提供一种板端连接器组件,包括具有一个对接腔的第二金属外壳,以及固定于所述第二金属外壳中的端子组和第二绝缘本体,所述第二绝缘本体包括基部及位于所 述基部前端的舌板,所述舌板具有相对设置的第一表面和第二表面,其中,所述第一表面与第二表面之间设置有屏蔽板所述屏蔽板设置有露出于所述基部侧端并与所述第二金属外壳相抵接的突出部。
可选地,所述第一金属外壳对应所述突出部的位置向所述对接腔内冲压形成一个与所述突出部抵接的接触部。
可选地,所述的屏蔽板后端设置有向下延伸的焊接部。
可选地,所述端子组包括第三端子和第四端子,所述第二绝缘本体包括固持第三端子的第一模组和固持第四端子的第二模组。。
可选地,所述屏蔽板通过镶埋成型的方式固定于第二模组。
可选地,所述屏蔽板后端向下弯折形成一个对应高频信号端子的加强部。
可选地,所述的第一模组上还装有第一接地片,所述的第二模组上还装有第二接地片,所述的第一接地片和第二接地片在第一模组和第二模组的两侧通过激光焊接固定。
可选地,所述的第二金属外壳上还罩有对第二金属外壳进行限位固定的上盖。
本发明实施例还提供一种电连接器组合,包括上述的线缆连接器组件以及板端连接器组件。
本实用新型的发明的有益效果是:将固定铁壳的设置有凸包结构,增大了固定铁壳的内部空间,使得较大尺寸的线缆也能穿入到起内部,并最后将凸包结构压低,减小了连接器线缆组件的尺寸,同时也是的而且也使得连接器线缆组件的结构更紧凑牢固,有利于提高连接器线缆组件的稳定性,同时,板端连接器组件的屏蔽板两侧设置有突出部,该突出部与第二金属外壳相接触,从而形成一个新的接地路径,多通路接地,降低电磁干扰,进一步加强了连接器的屏蔽效果,有利于提高连接可靠性,并保证高速信号传输的稳定性。
【附图说明】
图1是本实用新型线缆连接器组件未压低结构立体图;
图2是本实用新型线缆连接器组件压低结构立体图;
图3是本实用新型线缆连接器组件部分结构立体图(1);
图4是本实用新型线缆连接器组件部分结构立体图(2);
图5是本实用新型线缆连接器组件部分结构立体图(3);
图6是本实用新型线缆连接器组件连接器的分解结构示意图;
图7是本实用新型线缆连接器组件连接器剖面图;
图8是图7中所示的局部放大图;
图9是本实用新型板端连接器组件结构示意图;
图10是本实用新型中板端连接器组件中第一模组和第二模组的配合结构示意图;
图11是本实用新型中板端连接器组件中第二金属外壳的结构示意图;
图12是本实用新型板端连接器组件中屏蔽板的结构示意图;
图13是本实用新型板端连接器组件的结构拆分图;
图14是本实用新型板端连接器组件的加工过程中多个第二模组一次性镶埋成型的结构示意图。
【具体实施方式】
为了便于理解本实用新型,下面结合附图和具体实施例,对本实用新型进行更详细的说明。需要说明的是,当元件被表述“固定于”另一个元件,它可以直接在另一个元件上、或者其间可以存在一个或多个居中的元件。当一个元件被表述“连接”另一个元件,它可以是直接连接到另一个元件、或者其间可以存在一个或多个居中的元件。本说明书所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的。
除非另有定义,本说明书所使用的所有的技术和科学术语与属于本实用新型的技术领域的技术人员通常理解的含义相同。本说明书中在本实用新型的说明书中所使用的术语只是为了描述具体的实施例的目的,不是用于限制本实用新型。本说明书所使用的术语“和/或”包括一个或多个相关的所列项目的任意的和所有的组合。
如图1至图7所示,一种连接器线缆组件100,其包括连接器、固定铁壳40、具有多根芯线的线缆30、线夹41和固定块42。连接器至少包括一对前述端子对10、第一绝缘本体20、第一金属外壳21、接地片22、屏蔽片23、以及印刷电路板24。本实施里中包括有多组端子对10,端子对10固定于第一绝缘本体上20上,屏蔽片23分别固定于第一绝缘本体上20的 上下两个表面,屏蔽片23固定于第一绝缘本体上20上,且位于端子对10的两个端子之间,以便达到更好的屏蔽效果。第一金属外壳21包覆住第一绝缘本体20,其包括有与第一绝缘本体20相对应的前端部210和后端部211,前端部210和后端部211不位于同一平面上,连接器组装方法为现有常见技术,在此不做详细叙述。
端子对10的焊接部显露于第一绝缘本体20外,焊接于印刷电路板24的一端,线缆30包含有多根芯线31,其焊接于印刷电路板24的另一端,印刷电路板24设置有布线(图中未标示),通过布线将端子对的焊接部与芯线电连接起开。为了更好的固定线缆,同时也为了达到更好屏蔽效果,线缆外部套设有固定铁壳40,所述固定铁壳40包括套筒部401以及自套筒部401延伸的圆筒部402,套筒部401上下表面和/或下表面靠近圆筒部分设置有凸包结构403,凸包结构403向上突起适当高度,使得线缆30穿入套筒部401内,凸包结构403与圆筒部401相连通。
组装线缆连接组件时,线缆30前端会剥掉外部的绝缘层,将单根的芯线和屏蔽层显露出来,屏蔽层包覆在芯线的外部,在一定的情况下,固定铁壳40的尺寸固定,如果线缆30尺寸偏大,线缆30就无法穿入固定铁壳40内部,从而导致芯线31无法穿过固定铁壳40,凸包结构403使得固定铁壳40内部变大,以便于线缆30部分穿入固定铁壳40内部,待芯线31焊接于印刷电路板24上后,然后将凸包结构403压低,需要说明的是,凸包结构403的高度和大小需要根据线缆30的实际大小和工艺流程来设置,凸包结构403也可以根据实际情况需要设置在固定铁壳40的其他部分。将凸包结构403压低后,也可以将固定铁壳40后端(未标示)包覆线缆30的部分进行压紧(可以从上下左右等其他方向进行压紧)。线缆30包括有屏蔽编织32,凸包结构403压低后,屏蔽编织32与凸包结构403接触连接,使得连接器线缆组件具有更好的屏蔽效果。最后在连接器线缆组件外成型一层绝缘外层即可(未图示)。
此外,固定铁壳40上设置有焊点部404,其与第一金属外壳21焊接固定在一起,本实施例中,焊点部404设置于套筒部401上表面和/或下表面,焊点部404为自套筒部401向第一金属外壳21凹陷而成,具体的,焊点部404设置于套筒部401的前端,组装过程中,利用焊接将固定铁壳40与第一金属外壳21焊接固定,当然,焊点部404也可以设置于套筒部401的其他面,例如侧面等,或者是采用其他的卡点卡钩结构等也可以,只要能将固定铁壳40与 第一金属外壳21固定在一起并有接触即可。
本发明还公开了线缆连接器组件100的组装方法,先将端子对10、第一绝缘本体20、第一金属外壳21、接地片22、屏蔽片23、印刷电路板24组装形成连接器,其中端子对10的焊接部焊接于印刷电路板24的另一端,接着将线缆30剥线,使得部分芯线31和屏蔽层显示出来,将线缆穿入固定铁壳40,并使得芯线31穿过固定铁壳40,用线夹41固定好芯线31,防止芯线31散开而使得焊接时出现错误,线夹41为现有线缆连接器组件中常用的结构,在此不做详细叙述;然后将芯线31与印刷电路板24的另一端焊接好,端子对10与芯线31通过印刷电路板24上的布线进行电性连通,将塑胶通过镶埋埋成型的方式形成固定块42,固定块41包覆印刷电路板24;各焊接点被固定块包覆住,最后将固定铁壳40向第一金属铁壳21的前端推进,使得套筒部401包覆第一金属铁壳21的后端部,通过套筒部401上的焊点部404与第一金属铁壳21后端部焊接固定,将固定铁壳40上的表面凸包机构401压低,并将套筒部401包覆线缆30的部分进行压紧,压紧后固定铁壳40后端与线缆30内部的屏蔽层接触连接。
需要说明的是,线缆连接器组件中,固定块42也可以不设置,或者以胶水等其他方式来替代塑胶也是可以的。当线芯31不需要固定时,线夹41也可以不设置。
在本实用新型实施例中,将固定铁壳设置有凸包结构,增大了固定铁壳的内部空间,使得较大尺寸的线缆也能穿入到起内部,并最后将凸包结构压低,减小了连接器线缆组件的尺寸,同时也使得连接器线缆组件的结构更紧凑牢固,有利于提高连接器线缆组件的连接可靠性及高速信号传输的稳定性。
在本发明实施例中,如图8及图9所示,端子对10,包括有第一端子和第二端子,本实施例,端子对10为一对高速传输的差分信号端子对,第一端子和第二端子上下排列对齐。第一端子包括有第一接触部110、第一连接部111以及第一焊接部112,第二端子包括有第二接触部120、第二连接部121以及第二焊接部122.第一连接部110和第二连接部120相向设置有相互错开的第一卡点1110和第二卡点1210,第一卡点1110的一侧设置有第一避位槽1111,第二卡点1210的一侧设置有第二避位槽1211,第一卡点1110和第二卡点1210是指其与其他结构有卡合作用。本实施例中,第一卡点1110和第二卡点1210均设置有两个,两个 第一卡点1110之间设置有第一避位槽1111,两个第二卡点1210之间设置有第二避位槽1211,第一避槽1111自第一端子朝向远离第二端子方向凹陷形成,第二避槽1211自第二端子朝向远离第一端子方向凹陷形成,第一避槽1111和第二避槽1211相互错开,具体表现为,第一避槽1111自第一卡点1110中靠近第一接触部110的第一卡点向另一个第一卡点逐渐缩小,第二避槽1211自第二卡点1210中靠近第二接触部的第二卡点向另一个第二卡点逐渐缩小,第二卡点1210中靠近第二接触部的卡点与第一避位槽1111位置相对应。卡点和避位槽的设置改善端子对在高速信号的传输过程中阻抗问题和端子与其他部件固定时的稳定性,使得端子对稳定高速传输信号。需要说的是,说明书中提及的错开包括结构完全错开和结构部分错开,在图9中可以看出,两个第一卡点中靠近第一接触部110的第一卡点和靠近第二接触部120的第二卡点是完全错开的,靠近第一焊接部112的第一卡点和第二焊接部122的第二卡点是部分错开的,第一避槽1111和第二避槽1211亦是部分错来的,是否完全错开或是部分错开主要根据连接器的实际应用情况而定,本实施例中,第二卡点中靠近第二接触部的第二卡点投影位于第一避槽投影的范围内。
下面结合图10到图15,阐述与线缆连接器组件100对接的板端连接器。本发明实施例的板端连接器,包括具有一个对接腔11的第二金属外壳1,罩在所述的第二金属外壳1上对第二金属外壳1进行限位固定的上盖9,以及固定于第二金属外壳1中的端子组和第二绝缘本体,所述第二绝缘本体包括基部4及位于基部4前端的舌板5,所述舌板5具有相对设置的第一表面和第二表面,所述第一表面与第二表面之间设置有屏蔽板6,该屏蔽板6设置有露出于基部4侧端并与第二金属外壳1相抵接的突出部61。进一步,所述的第二金属外壳1对应突出部61的位置向对接腔11内冲压形成一个与突出部61抵接的接触部12,接触部12与突出部61接触,从而形成一个新的接地路径,有利于进一步加强屏蔽效果。所述的屏蔽板6后端设置有向下延伸的焊接部62。
所述端子组包括第三端子21和第四端子,所述的第三端子21布设于舌板5的上端面,所述的第四端子布设于舌板5的下端面,方便与对应的线缆连接器100连接时进行供电或数据交换。所述第二绝缘本体包括固持第三端子21的第一模组2和固持第四端子的第二模组3,所述的第一模组2和第二模组3叠合固定。
在本具体实施方式中,所述屏蔽板6通过镶埋成型的方式固定于第二模组3,即第四端子、屏蔽板6和塑胶通过镶埋成型形成第二模组3,并且在实际加工生产中,第四端子的料带和屏蔽板6的料带是一次性镶埋成型形成多个第二模组3,如附图16所示。
所述屏蔽板6后端向下弯折形成一个对应高频信号端子的加强部63,该加强部63有利于进一步加强屏蔽效果。
所述的第一模组2上还装有第一接地片7,所述的第二模组3上还装有第二接地片8,所述的第一接地片7和第二接地片8在第一模组2和第二模组3的两侧通过激光焊接固定。
本发明实施例的板端连接器通过屏蔽板两侧设置有突出部,且该突出部与第二金属外壳相接触,从而形成一个新的接地路径,多通路接地,降低电磁干扰,进一步加强屏蔽效果,同时也使得板端连接器的结构更紧凑牢固,有利于提高与连接器线缆组件的连接可靠性及高速信号传输的稳定性。
本发明实施例还提供连接器器组合,将线缆连接器组件与板端连接器对接在一起,本领域普通技术人员所知晓的线缆连接器组件与板端连接器对接的连接方式均可应用于本发明实施例,因此,在本发明实施例中不作限定。
需要说明的是,本实用新型的说明书及其附图中给出了本实用新型的较佳的实施例,但是,本实用新型可以通过许多不同的形式来实现,并不限于本说明书所描述的实施例,这些实施例不作为对本实用新型内容的额外限制,提供这些实施例的目的是使对本实用新型的公开内容的理解更加透彻全面。并且,上述各技术特征继续相互组合,形成未在上面列举的各种实施例,均视为本实用新型说明书记载的范围;进一步地,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实用新型所附权利要求的保护范围。

Claims (19)

  1. 一种线缆连接器组件,其包括连接器、固定铁壳和具有多根芯线的线缆,所述连接器包括至少一对端子对、第一绝缘本体、第一金属外壳、接地片以及印刷电路板,其中所述端子对、接地片、第一金属外壳组装于所述第一绝缘本体,所述固定铁壳组装于所述第一金属外壳,其特征在于:所述固定铁壳上设置有凸包结构,以便让所述线缆穿入所述固定铁壳,所述线缆一端的芯线穿过所述固定铁壳并接于所述印刷电路板的一端,所述端子对的焊接部焊接于所述印刷电路板的另一端,所述印刷电路板设置有连通所述芯线与所述端子对的布线。
  2. 如权利要求1所述的线缆连接器组件,其特征在于:所述固定铁壳包括套筒部以及自所述套筒部延伸的圆筒部,所述凸包结构设置于所述套筒部的上表面和/或下表面靠近所述圆筒部的部分,所述凸包结构与所述圆筒部相连通,所述凸包结构向上突起适当高度,使得所述线缆穿入所述套筒部内,并且待所述芯线焊接于印刷电路板上后,所述凸包结构向下压低。
  3. 如权利要求2所述的线缆连接器组件,其特征在于:所述固定铁壳上设置有焊点部,所述焊点部与所述金属外壳焊接固定在一起。
  4. 如权利要求3所述的线缆连接器组件,其特征在于:所述焊点部设置于所述套筒部上表面和/或下表面前端,所述焊点部自所述套筒部向所述金属外壳凹陷而成,所述金属外壳包括前端部和后端部,所述套筒部包覆所述后端部,并与所述后端部焊接固定在一起。
  5. 如权利要求2所述的线缆连接器组件,其特征在于:所述端子对包括第一端子和第二端子,所述第一端子包括有第一接触部、第一连接部以及第一焊接部,所述第二端子包括有第二接触部、第二连接部以及第二焊接部,所述第一连接部和第二连接部相向设置有相互错开的第一卡点和第二卡点,以及相互错开的第一避槽和第二避槽。
  6. 如权利要求5所述的线缆连接器组件,其特征在于:所述第一卡点和第二卡点均设置有两个,两个所述第一卡点之间设置有所述第一避槽,两个所述第二卡点之间设置有所述第二避槽,所述第一避槽自所述第一端子朝向远离所述第二端子方向凹陷形成,所述第二避槽自所述第二端子朝向远离所述第一端子方向凹陷形成。
  7. 如权利要求6所述的线缆连接器组件,其特征在于:靠近所述第一接触部的第一卡点和靠近所述第二接触部的第二卡点是完全错开的,且靠近第二接触部的所述第二卡点投影位 于所述第一避槽投影的范围内。
  8. 如权利要求7所述的线缆连接器组件,其特征在于:所述第一避槽自第一卡点中靠近所述第一接触部的第一卡点向另一个第一卡点逐渐缩小,所述第二避槽自第二卡点中靠近所述第二接触部的第二卡点向另一个第二卡点逐渐缩小。
  9. 如权利要求8所述的线缆连接器组件,其特征在于:所述线缆包括有包覆在芯线外部的屏蔽层,所述屏蔽层与所述固定铁壳接触。
  10. 如权利要求1至9任一所述的线缆连接器组件,其特征在于:所述电连接器还包括有固定块,所述固定块包覆电路板上的焊接区。
  11. 一种板端连接器组件,包括具有一个对接腔的第二金属外壳,以及固定于所述第二金属外壳中的端子组和第二绝缘本体,所述第二绝缘本体包括基部及位于所述基部前端的舌板,所述舌板具有相对设置的第一表面和第二表面,其特征在于:所述第一表面与第二表面之间设置有屏蔽板所述屏蔽板设置有露出于所述基部侧端并与所述第二金属外壳相抵接的突出部。
  12. 根据权利要求11所述的连接器组件,其特征在于:所述第一金属外壳对应所述突出部的位置向所述对接腔内冲压形成一个与所述突出部抵接的接触部。
  13. 根据权利要求11所述的连接器组件,其特征在于:所述的屏蔽板后端设置有向下延伸的焊接部。
  14. 根据权利要求1所述的一种电连接器组件,其特征在于:所述端子组包括第三端子和第四端子,所述第二绝缘本体包括固持第三端子的第一模组和固持第四端子的第二模组。
  15. 根据权利要求14所述的一种电连接器组件,其特征在于:所述屏蔽板通过镶埋成型的方式固定于第二模组。
  16. 根据权利要求11所述的一种电连接器组件,其特征在于:所述屏蔽板后端向下弯折形成一个对应高频信号端子的加强部。
  17. 根据权利要求14或15所述的一种电连接器组件,其特征在于:所述的第一模组上还装有第一接地片,所述的第二模组上还装有第二接地片,所述的第一接地片和第二接地片在第一模组和第二模组的两侧通过激光焊接固定。
  18. 根据权利要求11-16中任一项所述的一种电连接器组件,其特征在于:所述的第二金属外壳上还罩有对第二金属外壳进行限位固定的上盖。
  19. 一种电连接器组合,包括:如权利要求1-10任一项所述的线缆连接器组件以及11-18任一项所述的板端连接器组件。
PCT/CN2015/080742 2014-06-27 2015-06-04 一种线缆连接器组件、板端连接器组件及其电连接器组合 WO2015196913A1 (zh)

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