WO2014201848A1 - Usb电连接器构造 - Google Patents

Usb电连接器构造 Download PDF

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Publication number
WO2014201848A1
WO2014201848A1 PCT/CN2014/000567 CN2014000567W WO2014201848A1 WO 2014201848 A1 WO2014201848 A1 WO 2014201848A1 CN 2014000567 W CN2014000567 W CN 2014000567W WO 2014201848 A1 WO2014201848 A1 WO 2014201848A1
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WO
WIPO (PCT)
Prior art keywords
base
terminal
terminals
slot
insulating
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2014/000567
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English (en)
French (fr)
Inventor
陈碇祈
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Individual
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Individual
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Publication of WO2014201848A1 publication Critical patent/WO2014201848A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • H01R13/648Protective 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
    • H01R13/6582Shield structure with resilient means for engaging mating connector
    • 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
    • H01R13/6595Specific features or arrangements of connection of shield to conductive members the shield being mounted on a PCB and connected to conductive members with separate members fixing the shield to the PCB
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2107/00Four or more poles
    • 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
    • H01R24/62Sliding engagements with one side only, e.g. modular jack coupling devices

Definitions

  • the present invention provides a USB electrical connector structure, in particular, an electrical connector having a different predetermined specification type.
  • the terminals and the bases of the terminal group are respectively pierced by the base and the base of the different sizes of the insulating base. , and can be plugged with different types of electrical connectors. Background technique
  • the main purpose of the present invention is to provide a USB electrical connector structure.
  • the insulating base of the electrical connector has a base and a base connected adjacent to each other, so that a plurality of terminals of the terminal set are pierced through the terminals of the base.
  • a plurality of transmission terminals are disposed in the terminal accommodating groove of the base, and a plurality of terminal sides are provided with abutting portion positioned in each terminal slot, and the other side is provided with a soldering portion extending outside the pedestal, and a plurality of One side of the transmission terminal is provided with the butt side positioned in the terminal receiving groove, and the other side is provided with the soldering side extending from the base to the outside through the base, and the outer casing of the insulating seat is covered with the shielding shell, and the shielding shell is inside.
  • the accommodating space can accommodate the pedestal, and the accommodating space of the adjacent accommodating space can accommodate the base, so as to achieve the purpose that the electrical connector meets the predetermined different specifications and the power supply can be plugged into the different type electrical connector.
  • a secondary object of the present invention is to provide a USB electrical connector structure.
  • the insulating base of the electrical connector is provided in the terminal slots of the base for the five terminals of the terminal set to be set, and the five terminals are The first grounding terminal located at the center, the first differential signal terminal located on the two sides of the first grounding terminal, the second differential signal terminal, the third differential signal terminal, and the fourth differential signal terminal, and the base side of the insulating base
  • the adjacent bases are provided for the four transmission terminals of the terminal group, and the four transmission terminals comprise a fifth differential signal terminal, a sixth differential signal terminal, and two opposite outer power terminals and a second ground terminal.
  • the outer casing of the insulating base is used to cover the shielding shell to form an electrical connector conforming to the universal serial bus (USB3.0) specification with the base and the five terminals, and the base and the four terminals are respectively located at the four terminals.
  • the auxiliary pedestal on the outer side forms an electrical connector conforming to the micro universal serial bus (M icro USB ) specification.
  • a further object of the present invention is to provide a USB electrical connector structure.
  • the plurality of transmission terminals of the terminal group include two fifth differential signal terminals, a sixth differential signal terminal, and two opposite power supply terminals at the center. And a second grounding terminal, wherein the butting side of the power terminal is bent in a loop shape, elastically embossed, and one side is disconnected to form two contact faces, and the second grounding terminal on the other side of the power supply terminal is connected
  • Auxiliary transmission terminal for forming a universal serial bus interface (USB / 0 TG) type It can be connected with a computer, a notebook computer, a multimedia player or a smart phone to expand the plug-in, multimedia storage device or mouse, keyboard, etc. of the surrounding electronic products.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals piercing through the terminal slots of the base, and a plurality of transmission terminals extending through the terminal receiving slots of the base, and more One end of each of the terminals is provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a soldering portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal capacity positioned at the base.
  • the butt side and the other side in the groove are respectively provided with a welded side extending from the base through the base to the outside; and
  • the shielding case covers the outside of the insulating seat, and the inside is provided with an accommodating space for accommodating the pedestal, and an adjacent accommodating space for accommodating the accommodating base.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion which is connected to the base side and has a reduced width and a terminal receiving groove;
  • the terminal group is respectively assembled on the base of the insulating base body and has a width smaller than the base of the base, and includes a plurality of terminals penetrating in the terminal slots of the base and a plurality of transmissions passing through the terminal receiving slots of the base a terminal, and a plurality of terminal sides are respectively provided with abutting portions positioned in the respective terminal slots of the base, and the other side is provided with a soldering portion extending outside the base, and the plurality of transmitting terminal sides are respectively positioned and positioned
  • the butt side in the terminal receiving groove of the reduced width base portion and the other side are respectively provided with a soldering side extending from the base through the base to the outside; and the shielding shell covers the outside of the insulating seat body, and the inside of the shielding case is shielded
  • the accommodating space for accommodating the pedestal and the accommodating space for accommodating the base of the reduced width are provided.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, a base portion connected to the base side and having a reduced thickness and having a terminal receiving groove;
  • the terminal set is respectively assembled on the base of the insulating base body and has a thickness smaller than the base of the base, and includes a plurality of terminals penetrating in the terminal slots of the base and a plurality of transmissions passing through the terminal receiving grooves of the base Terminal, And a plurality of terminal sides are respectively provided with abutting portions positioned in the respective terminal slots of the base, and the other side is provided with a soldering portion extending outside the base, and the plurality of transmitting terminal sides are respectively positioned to reduce the thickness
  • the butting side and the other side of the terminal receiving groove of the base are respectively provided with a soldering side extending from the base through the base to the outside; and the shielding shell covers the outside of the insulating seat, and the shielding shell is internally provided
  • the accommodating space of the accommodating base and the adjacent accommodating space are for accommodating the storage space of the base of the reduced thickness.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, a base portion connected to a central portion of the base and having a width, a reduced thickness, and a terminal receiving groove;
  • the terminal group is respectively assembled on the base of the insulating base body, and has a width and a thickness smaller than a base portion of the base, and includes a plurality of terminals piercing through the terminal slots of the base and a plurality of terminal receiving slots that are disposed in the base.
  • a transmission terminal, and a plurality of terminal sides are respectively provided with abutting portions positioned in the respective terminal slots of the base, and the other side is provided with a soldering portion extending outside the base
  • the plurality of transmitting terminals are respectively provided with one side a butt side positioned in the terminal receiving groove of the reduced width and the thickness base, and the other side is respectively provided with a welded side extending from the base through the base to the outside;
  • the shielding case cover is disposed outside the insulating seat, and the shielding case has a receiving space for accommodating the pedestal and a receiving space for accommodating the base of the reduced width and the thickness at the central position of the side of the adjacent accommodating space.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of One side of the terminal is respectively provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a connecting portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal capacity positioned at the base
  • the butting side and the other side in the slot are respectively provided with a soldering side extending from the base through the base to the outside, and the opposite side of the plurality of transmission terminals is provided with an abutting side of increasing width;
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding case has a receiving space for accommodating the pedestal and an accommodating space for accommodating the base.
  • the present invention provides a USB electrical connector structure including an insulating base, Terminal set and shield housing, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of One end of the terminal is respectively provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a soldering portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal for positioning at the base.
  • the butting side and the other side of the slot are respectively provided with a soldering side extending from the base through the base to the outside, and an outer transmitting terminal is provided with a looping shape and being disconnected to form a mating side of the two contact faces;
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding case has a receiving space for accommodating the pedestal and an accommodating space for accommodating the base.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of One end of the terminal is respectively provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a soldering portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal for positioning at the base.
  • the butt side and the other side in the slot are respectively provided with welded sides extending from the base through the base to the outside; and
  • the shield case cover covers the outside of the insulating base, and is provided with a housing having a housing space for accommodating the base, and a housing having a housing space for accommodating the base.
  • the body of the shielding shell and the housing are integrally formed or separately manufactured.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal set is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals penetrating in the terminal slots of the base, and five transmission terminals penetrating in the terminal receiving slots of the base, five terminals
  • the sixth differential signal terminal 2 has a power supply terminal and a second ground terminal disposed opposite to the outer side, and each of the five terminal sides is provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with an extending base An external soldering portion, wherein one side of the four transmission terminals is respectively provided with a mating side positioned in the terminal receiving groove of the base, and
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding shell is internally provided with a receiving base and is matched with five terminals to conform to the storage space of the USB 3.1 specification, and the adjacent accommodating space is used for accommodating the base and matching Four transmission terminals are available in a storage space that conforms to the micro USB specification.
  • the four transmission terminals of the terminal group are respectively provided with a first bending portion which is vertically bent upward to the other side from the butting side, and is connected to the other side of each of the first bending portions, and is respectively disposed horizontally and horizontally.
  • a bent second bent portion, and a welded side extending from the second bent portion to the other side, that is, a first bent portion and a second bent portion of the power supply terminal and the second ground terminal of the two outer sides
  • the first terminal rib and the second auxiliary rib of the auxiliary pedestal are respectively extended outwardly, and the auxiliary pedestal is respectively bent on the opposite inner side of the first auxiliary rib and the second auxiliary rib.
  • the elastic embossed elastic buckles are respectively provided on the two sides of the base of the shielding shell, and the two elastic flanges are respectively arranged to pass through.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of
  • the terminal side is respectively provided with an abutting portion which is positioned in each terminal slot of the base and which is bent in a reverse direction, and the other side is provided with a welding portion extending outside the base, and the plurality of transmission terminals are respectively provided on one side.
  • the terminal receiving groove fixed at the base also has a reversely bent butt side, and the other side is respectively provided with a welded side extending from the base through the base to the outside;
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding case has a receiving space for accommodating the pedestal and an accommodating space for accommodating the base.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to the base side;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of One end of the terminal is respectively provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a soldering portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal for positioning at the base.
  • the butt side and the other side of the slot are respectively provided with soldering sides extending from the base through the base to the outside, and the plurality of transmission terminals are in conformity with the universal serial bus specification, and the grounding pins are connected to form a universal sequence on one side.
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding case has a receiving space for accommodating the pedestal and an accommodating space for accommodating the base.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating seat system includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal group is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of One end of the terminal is respectively provided with an abutting portion positioned in each terminal slot of the base, and the other side is provided with a soldering portion extending outside the base, and one side of the plurality of transmitting terminals is respectively provided with a terminal for positioning at the base.
  • the butt side and the other side of the slot are respectively provided with a soldering side extending from the base through the base to the outside, and an auxiliary base frame for increasing the structural strength is disposed opposite to the plurality of transmission terminals;
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding housing is provided with an accommodating space for accommodating the pedestal, and an accommodating space for accommodating the base portion, and is disposed in the shielding shell of the accommodating space.
  • the present invention provides a USB electrical connector structure including an insulating base, a terminal set, and a shield case, wherein:
  • the insulating base body includes a base having a plurality of terminal slots, and a base portion having a terminal receiving groove connected to one side of the base;
  • the terminal set is respectively assembled on the base and the base of the insulating base, and includes a plurality of terminals that are inserted through the terminal slots of the base, and a plurality of transmission terminals that are disposed in the terminal receiving slots of the base, and a plurality of Terminal side
  • the abutting portions are respectively disposed in the terminal slots of the base, and the other side is provided with a soldering portion extending outside the base, and the plurality of transmitting terminal sides are respectively bent toward the vertical direction and are concentratedly positioned at the base.
  • the butting side and the other side of the terminal receiving groove are respectively provided with a soldering side through which the base passes through the base and is inserted between the plurality of terminals and extends in the same direction to the outside of the base;
  • the shielding shell cover is disposed outside the insulating seat body, and the shielding case has a receiving space for accommodating the pedestal and an accommodating space for accommodating the base.
  • the invention has the convenient effect of a single electrical connector having two different types of electrical connector applications, and the application does not hinder each other, facilitates plugging to transmit electronic signals, and can avoid various types and types of electrical connectors to be separately designed.
  • the assembly creates troubles in occupying space and position, and completes the function of the electrical connector having wide applicability and reducing the constraint of the condition limit when using.
  • Figure 1 is a perspective view of the present invention.
  • Figure 2 is a perspective exploded view of the present invention.
  • Figure 3 is an exploded perspective view of another direction of the present invention.
  • Figure 4 is a plan view of the terminal set of the present invention.
  • Figure 5 is a top plan view of the electrical connector of the present invention.
  • Figure 6 is a side elevational view of the electrical connector of the present invention.
  • Figure 7 is an exploded perspective view of a preferred embodiment of the present invention.
  • Figure 8 is a side cross-sectional view of a preferred embodiment of the present invention.
  • FIG. 1 to FIG. 4 are a perspective view of the present invention, an exploded perspective view, an exploded perspective view of the other direction, and a top view of the terminal set.
  • the utility model comprises an insulating base body 1, a terminal group 2 and a shielding shell 3, wherein:
  • the insulating base 1 is provided with a plurality of terminal slots 110 in the interior of the base 1 1 , and a base 12 is connected to the base 1 1 , and a terminal receiving groove 120 is defined in the base 12 .
  • the terminal group 2 includes a plurality of terminals 21 and a plurality of transmission terminals 22, and the plurality of terminals 21 are respectively provided with abutting portion 211, and the other side is respectively provided with a soldering portion 212, and is respectively disposed on the side of the plurality of transmitting terminals 22 A butt side 221 is provided, and the other side is provided with a welded side 222, respectively.
  • the shield case 3 is provided with an adjacent body 31 and a housing 32.
  • the body 31 has an accommodation space 31 0 therein, and the housing 32 has a storage space 320 therein.
  • the base 1 1 and the base portion 12 of the insulating base 1 are used, and the plurality of terminals 21 of the terminal group 2 and the plurality of transmission terminals 22 are respectively set to be set, and the base 11 can be used.
  • Each of the terminal slots 110 is provided with a plurality of terminals 21, and the abutting portions 211 of the plurality of terminals 21 are respectively positioned in the respective terminal slots 1 1 0 , and the other side soldering portions 212 of the plurality of terminals 21 extend out of the base 1 respectively.
  • the terminal receiving groove 120 of the base 12 is provided for the plurality of transmission terminals 22, and the abutting side 221 of the plurality of transmission terminals 22 is positioned in the terminal receiving groove 120, and the plurality of transmission terminals 22 are on the other side.
  • the soldering side 222 passes through the inside of the susceptor 11 and is interposed between the plurality of terminals 21 and extends outside the pedestal 1 1 respectively.
  • the soldering portion 212 of the plurality of terminals 21 and the soldering side 222 of the plurality of transmitting terminals 22 are respectively provided.
  • the storage space 320 of 32 accommodates the base 12, and the base 11 of the insulating base 1 and the terminal group are used.
  • the terminal 21 and the body 31 of the shielding case 3 constitute an electrical connector conforming to a predetermined specification type (which may be a general serial bus USB3.0 specification or a related type, etc.), and the base 12 and the terminal group of the insulating base 1 2 of the plurality of transmission terminals 22 and the housing 32 of the shield case 3 to form an electrical connector conforming to another predetermined specification type (which may be a micro universal serial bus M icr 0 USB specification or related type, etc.)
  • the insulating base 1, the terminal group 2, and the shield case 3 constitute the USB electrical connector structure of the present invention.
  • the insulating base 1 is connected to the base 11 on the side of the base 11, and the width of the base 12 is smaller than the width of the base 11.
  • the thickness of the base 12 is also reduced, which is smaller than the base 11.
  • the thickness of the base 12 for reducing the width and reducing the thickness is connected to a central position below the side of the base 11; the base 11 and the base 12 of the insulating base 1 are shielded from the body 31 of the housing 3 -
  • a central portion of the side is provided with a reduced width and a reduced thickness of the housing 32 for covering the exterior of the opposite type of base 11 with the body 31 and mating with the plurality of terminals 21 of the terminal set 2, and the composition conforms to a predetermined universal sequence.
  • the bus connector (USB3.0) is an electrical connector that is covered by a housing 32 over the opposite base 12 to form an electrical connector that conforms to the Micro Universal Serial Bus specification (M icro USB) to form an adjacent connector design. And different types of electrical connectors of different sizes.
  • the body 31 and the housing 32 of the shielding case 3 can be integrally formed into a predetermined specification, and the body 31 and the housing 32 can be separately manufactured, and then a predetermined processing operation (which can be welded, high-frequency welding or Adhesive bonding, etc.) are combined into a predetermined specification.
  • a predetermined processing operation which can be welded, high-frequency welding or Adhesive bonding, etc.
  • FIG. 2 to FIG. 6 are perspective exploded views of the present invention, an exploded perspective view of the other direction, a top view of the terminal set, a top view of the electrical connector, and a side view of the electrical connector, as shown in the figure.
  • the terminal group 2 of the present invention includes a plurality of terminals 21 and a plurality of transmission terminals 22, and the plurality of terminals 21 includes five adjacent side-by-side terminals 21 having a first ground terminal 2101 located in the middle.
  • a first differential signal terminals 2101 and second outer ground terminal are established by 2102, a second differential signal terminal 2103, a third differential signal terminals 2104 and the fourth differential signal terminals 2105; and a plurality of transmission terminals 22, comprising four
  • the adjacent side-by-side transmission terminals 22 have a fifth differential signal terminal 22 01 and a sixth differential signal terminal 2202 located at the center, and are respectively disposed on opposite sides of the second differential signal terminal 2201 and the sixth differential signal terminal O 2 .
  • the power terminal 2203 and the second ground terminal 2204, and the power terminal 2203 can be designed to increase the width, and the load can be used for a large amount of current, and the butt side 221 is bent in a hollow ring shape.
  • the elastic ridges and the one side are disconnected to form the two contact faces 2211, so that the contact area of the mating side 221 of the power terminal 2203 can be increased; and the inner side of the second ground terminal 2204 adjacent to the side of the sixth differential signal terminal 2202 is connected.
  • auxiliary transmission terminal 2205 There is an auxiliary transmission terminal 2205, and a plurality of transmission terminals 22 are formed to conform to the specifications of the universal serial bus interface (USB/0 TG) type, and the auxiliary base frame 23 can be disposed on the opposite side of the plurality of transmission terminals 22, and the auxiliary base frame
  • the first auxiliary rib 231 and the second auxiliary rib 232 are respectively extended outward from the power terminal 2203 and the second ground terminal 2204, and are respectively extended on the inner side of the first auxiliary rib 231 and the second auxiliary rib 232.
  • the two elastic knuckles 233 and 234 are bent and elastically embossed, and the first auxiliary rib 231, the second auxiliary rib 232 and the two elastic knuckles 233 and 234 are parallel to each other.
  • the opposite side of the transmission terminal 22 is provided with two opposite slits 321 on the housing 32 of the shield case 3, so that when the base 12 is engaged with the plurality of transmission terminals 22, the outer cover covers the housing 32, that is, the terminal
  • the two side elastic buckles 2 33 and 234 of the auxiliary base frame 23 of the group 2 are respectively driven out of the two slots 321 of the housing 32 to form a micro universal serial bus (M icro USB ) and pass the specifications.
  • the auxiliary base frame 2 3 increases the structural strength of the base 12 of the electrical connector, and also improves the anti-surge interference (EMI) function of the electrical connector, and avoids interference of high current, high voltage, etc. due to unstable current supply or lightning strike. influences.
  • EMI anti-surge interference
  • the plurality of transmission terminals 22 of the terminal group 2 respectively extend from the butting side 221 to the other side, and are provided with a first bending portion 223 bent in the vertical direction, and are further moved by the first bending portions 22 3
  • the other side is extended, and the second bending portion 224 is bent horizontally and laterally, and is extended from the second bending portion 224 to the other side, and is provided with a welding side 222, and is further provided by a plurality of transmission terminals 22
  • the power supply terminal 2203 and the second ground terminal 2204 extend outwardly from the terminal wall 225 between the first bent portion 223 and the second bent portion 224 to provide a first auxiliary rib 231 of the auxiliary base frame 23 and a second
  • the auxiliary ribs 2 32 and the abutting sides 221 of the plurality of transmission terminals 22 may be extended by the pedestal 1 1 of the insulating base 1 to the base 12 of reduced width and thickness, and the other side of the plurality of transmission terminals 22
  • the electrical connector of the present invention can be constructed by using the base 12 of the insulating base 1 and the plurality of transmission terminals 22 of the terminal set 2 and the housing 32 of the shield case.
  • Predetermined type of electrical connector can be a micro universal serial bus M icr 0 USB specification, or other types of electrical connector specifications, etc.
  • M icr 0 USB specification or other types of electrical connector specifications, etc.
  • the base 1 1 of the insulating base 1 , the plurality of terminals 21 of the terminal set 2 and the body 31 of the shield case 3 can also be used to form a predetermined type of electrical connector (which can be a universal serial bus USB 3.1 specification, or other The electrical connector specification, etc., when the predetermined type electrical connector is electrically connected to the preset relative type electrical connector 4, the base 11 and the external body 31 are inserted into the preset relative type electrical connection.
  • a predetermined type of electrical connector which can be a universal serial bus USB 3.1 specification, or other The electrical connector specification, etc.
  • the base 12 and the outer casing 32 which are connected to the base 1 1 of the insulating base 1 can be inserted into the internal storage space 410 by the insertion space 40, and then the base 12
  • the housing 32 does not affect the relative insertion mode between the base 1 1 and the opposite type electrical connector 4, and the electronic signal transmission operation of the predetermined type electrical connector (which can be USB 3.0, etc.) can be achieved.
  • the electrical connector of the invention has two or more types of electrical connector specifications, and can manufacture two (or more) types of electrical connectors by one processing operation, can reduce manufacturing costs, and can be applied.
  • the two types of electrical connectors of the joint design can be electrically connected by selecting the opposite type of electrical connectors, thereby reducing the number of electrical connector settings and avoiding occupying too much space, and selecting an appropriate one.
  • the electrical connector type supply when it is electrically connected to different electronic products, it has two (or more) specifications for the supply of a single electrical connector, wide applicability, and more practical effects. It can also reduce the conditional restrictions caused by the type, type or specification of the electrical connector, make it more convenient to use, increase the practicability of the electrical connector, and the two types of pre-determined type electrical connectors do not interact with each other. Obstructions can be applied to different types of electrical connectors.
  • the USB electrical connector structure of the present invention can be applied to the base 1 1 and the base 12 of the insulating base 1 .
  • the plurality of terminals 21 and the plurality of transmission terminals 22 of the terminal group 2 are respectively disposed, and the body 31 and the housing 32 of the shield case 3 are combined to form a connection structure design of a predetermined type of electrical connector of different specifications, which can be utilized.
  • connection type electrical connector selects the opposite type electrical connector and electrically inserts with the opposite type electrical connector respectively, and the single electrical connector has the convenient effect of the application of the two different types of electrical connectors, and the application is also It does not cause obstruction, is easy to plug in to transmit electronic signals, and can avoid the trouble of multiple types and types of electrical connectors to separate design and assembly to occupy space and position, and complete the applicability of the electrical connector and reduce the condition limit of use.
  • the function of the constraint therefore, the structure and device that can achieve the aforementioned effects should be covered by the present invention, such simple modification and equivalent Structural changes shall be included in the scope of the patent of the present invention and shall be combined with Chen Ming.
  • the present invention is mainly designed for the USB electrical connector structure, which is formed by using an insulating base body and a base and a base adjacently connected, and a plurality of terminals and a plurality of transmission terminals of the terminal group are respectively pierced, and
  • the body of the shielding case covers the outside of the base, and the outer part of the base covers the base, and the electrical connectors constituting the two types of predetermined specifications can be respectively realized, and the electrical connection can be separately performed, and the electronic signal is transmitted as the main protection focus.
  • the power supply connector combines a predetermined type of electrical connector of different specifications, has wider applicability, better effect, and less use restriction, and only has the advantages of the electrical connector having multiple application modes, and can be avoided during use.
  • USB electrical connector of the present invention is constructed and implemented in practice, and can achieve its efficacy and purpose. Therefore, the present invention is an excellent research and development, and is an application for conforming to the invention patent. ⁇ Apply in accordance with the law.

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Abstract

一种USB电连接器构造,该电连接器的绝缘座体(1)于基座(11)具多个端子槽(110)、基部(12)具端子容置槽(120),以供端子组的多个端子(21)穿设于基座(11)的各端子槽(110)内、多个传输端子(22)穿设于基部(21)的端子容置槽(120)内,且多个端子(21)一侧设有对接部(211)定位于各端子槽(110)内、另侧设有焊接部(212)延伸出基座(11)外部,多个传输端子(22)一侧设有对接侧(221)定位于端子容置槽(120)内、另侧为设有焊接侧(222)由基座(11)穿过基座延伸至外部,而绝缘座体(1)外部罩覆屏蔽壳体(3),屏蔽壳体内部的容置空间(310)可容置基座(11)、相邻容置空间的收纳空间(320)可收纳基部(21),达到电连接器符合预定相异规格、可供电性插接相异型式电连接器的目的。

Description

USB电连接器构造 技术领域
本发明提供一种 USB 电连接器构造, 尤指具有相异预定规格型式的电连接 器, 利用绝缘座体相异尺寸规格的基座、 基部, 分别穿设端子组的各端子、 各 传输端子, 而可与不同型式相对的电连接器进行插接。 背景技术
随着电子科技的进步, 许多电子、 电气产品带给人们在工作上、 生活上的 舒适与便捷, 也导致人们愈来愈依赖电子、 电气产品的使用, 通过各种电子信 号的应用、 操作, 控制电子、 电气产品的运作、 执行, 也因为各式电子、 电气 产品不断的进行改良、 创作, 各种电子、 电气产品的使用功能、 亦必须不断的 进行更新、 替换, 通过电子信号的应用, 操控电子、 电气产品的运作、 执行能 力, 且电子信号传输的速度亦不断地提升, 必须通过各式传输接口、 电连接器 等, 供电子产品间进行电子信号传输速度, 则电子信号传输的接口, 亦不断的 改良、 创新, 以提升传输信号的接口、 电连接器的型态与品质、 传输电子信号 的速度, 但各式电子信号传输接口的型式、 种类相当多, 各种信号传输接口、 电连接器的尺寸规格亦有不同, 传输电子信号的模式也不同, 则在电子产品上 必须安装许多类型的传输接口、 电连接器, 以符合电子产品进行各式电子信号 传输的需求, 所以在各种电子产品上必须有足够的空间, 才可供安装各式不同 类型的传输接口、 电连接器。
然而, 随着各式电子产品的体积都朝向轻、 薄、 短、 小的模式设计, 如一 般常用的智能型手机、 平板电脑、 桌上型电脑或笔记型电脑等, 则在电子产品 可以利用的有限体积尺寸的空间中, 若为配合各种型式的传输接口安装, 以方 便进行电子信号传输, 则将占用电子产品内部电路布局空间, 亦占用机体的周 边空间位置, 造成电子产品的电路布局及机体的空间不敷使用。
因此, 如何解决目前电子产品在电路布局时必须设置不同型式传输接口及 电连接器的问题与困扰, 且占用电子产品的电路布局及机体周边空间等的缺失, 即为从事此行业的相关厂商所亟欲研究改善的方向所在者。 故, 发明人有鉴于上述的问题与缺失, 乃搜集相关资料, 经由多方评估及 考量, 并以从事于此行业累积的多年经验, 经由不断试作及修改, 始设计出此 种可结合不同型式电连接器类型、 方便与不同型式电连接器进行电性插接, 而 可减少占用电子产品的电路布局及机体空间的 USB 电连接器构造的发明专利诞 生者。 发明内容
本发明的主要目的乃在于提供一种 USB 电连接器构造, 该电连接器的绝缘 座体具相邻连接的基座、 基部, 以供端子组的多个端子穿设于基座的各端子槽 内、 多个传输端子穿设于基部的端子容置槽内, 且多个端子一侧设有对接部定 位于各端子槽内、 另侧设有焊接部延伸出基座外部, 而多个传输端子一侧设有 对接侧定位于端子容置槽内、 另侧为设有焊接侧由基座穿过基座延伸至外部, 而于绝缘座体外部罩覆屏蔽壳体, 屏蔽壳体内部的容置空间可容置基座、 相邻 容置空间的收纳空间可收纳基部, 达到电连接器符合预定相异规格、 可供电性 插接相异型式电连接器的目的。
本发明的次要目的乃在于提供一种 USB 电连接器构造, 该电连接器的绝缘 座体, 是于基座的各端子槽内供端子组的五支端子穿设定位, 五支端子包括位 于中央的第一接地端子、 位于第一接地端子二侧的第一差分信号端子、 第二差 分信号端子及第三差分信号端子、 第四差分信号端子, 而绝缘座体的基座一侧 相邻的基部, 则供端子组的四支传输端子穿设, 四支传输端子则包括位于中央 的第五差分信号端子、 第六差分信号端子及二相对外侧的电源端子、 第二接地 端子, 并利用绝缘座体外部罩覆屏蔽壳体, 以配合基座及五支端子形成符合通 用序列总线 (USB3 . 0 ) 规格的电连接器, 另配合基部及四支端子、 分别位于四 支端子二相对外侧的辅助基架, 即形成符合微形通用序列总线 ( M i c r o USB ) 规格的电连接器。
本发明的再一目的乃在于提供一种 USB 电连接器构造, 该端子组的多个传 输端子, 包括位于中央的二支第五差分信号端子、 第六差分信号端子、 二相对 外侧的电源端子及第二接地端子, 而该电源端子的对接侧系呈环圈状弯折、 弹 性隆起状、 一侧并断开形成二接触面, 而相对电源端子另侧的第二接地端子, 再连设有辅助传输端子, 可供形成通用序列总线接口 (USB / 0 T G ) 型式的规 格, 可配合电脑、 笔记型电脑、 多媒体播放器或智能型手机等, 扩充电性连接 周边电子产品的随身碟、 多媒体储存装置或鼠标、 键盘等。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别組装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 内部设有容置基座的容置空间、 相邻容 置空间供收纳基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧宽度缩小并具端子 容置槽的基部;
该端子组分别组装于绝缘座体的基座、 宽度小于基座的基部, 包括穿设于 基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于缩小宽度基部的端 子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及 该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳缩小宽度的基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧减缩厚度并具端子 容置槽的基部;
该端子组分别组装于绝缘座体的基座、 厚度小于基座的基部, 包括穿设于 基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于减缩厚度基部的端 子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及 该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳减缩厚度的基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧中央位置且宽度、 厚度缩小并具端子容置槽的基部;
该端子组分别组装于绝缘座体的基座、 宽度及厚度小于基座的基部, 包括 穿设于基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输 端子, 且多个端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设 有延伸出基座外部的焊接部, 而多个传输端子一侧分别设有定位于缩小宽度、 厚度基部的端子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部 的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间侧边中央位置处供收纳缩小宽度及厚度的基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的悍 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 并于多个传输端子的外侧传 输端子设有增加宽度的对接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子組分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 并于一外侧传输端子设有呈 环圈状并断开形成二接触面的对接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 设有具容置空间以容置基座的本体、 相 邻本体而具有收纳空间供收纳基部的壳座。
其中, 该屏蔽壳体的本体与壳座是一体成型或分开制造。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的五支传输端子, 五支端子则包括 位于中间的第一接地端子、 位于第一接地端子二外侧分别所设的第一差分信号 端子、 第二差分信号端子、 第三差分信号端子及第四差分信号端子, 而四支传 输端子系包括位于中央的第五差分信号端子、 第六差分信号端子、 分别位于第 五差分信号端子、 第六差分信号端子二相对外侧所设的电源端子及第二接地端 子, 且五支端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有 延伸出基座外部的焊接部, 而四支传输端子一侧分别设有定位于基部的端子容 置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座并配合五 支端子而符合 USB 3 . 0 规格的容置空间、 相邻容置空间供收纳基部且配合四支 传输端子以符合微型 USB规格的收纳空间。
其中, 该端子组的四支传输端子, 是由对接侧分别往另侧设有向上垂直弯 折的第一弯折部、 且连接于各第一弯折部另侧再分别设有朝水平横向弯折的第 二弯折部, 而由各第二弯折部往另侧延伸设有焊接侧, 即由二外侧的电源端子 及第二接地端子的第一弯折部、 第二弯折部间的端子壁, 分别向外延伸设有辅 助基架的第一辅助肋、 第二辅助肋, 则辅助基架并于第一辅助肋、 第二辅助肋 的相对内侧分别设有呈弯折、 弹性隆起的弹性凸扣, 并于屏蔽壳体的基部二侧 分别设有供二弹性凸扣活动穿出的剖槽。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内并呈反向弯折状的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽 内亦呈反向弯折状的对接侧、 另侧为分别设有由基座穿过基座延伸至外部的焊 接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中: 该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 而多个传输端子为符合通用 序列总线规格,并于一侧接地接脚连设有形成通用序列总线接口(USB / 0 T G ) 型式的辅助传输端子; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体系包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的 基部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 再于多个传输端子二相对外 设置增加结构强度的辅助基架; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间, 并于收纳空间的屏蔽壳体设有供多 个传输端子二外侧辅助基架露出的二相对式剖槽。
为了达到上述目的, 本发明提供一种 USB电连接器构造, 其包括绝缘座体、 端子组及屏蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有朝垂直向弯折后集中定位于基部的端子容 置槽内的对接侧、 另侧分别设有由基座穿过基座并穿插在多个端子间、 以同向 延伸至基座外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
本发明以单一电连接器具有二种不同规格型式电连接器应用的便捷效果, 应用时彼此亦不致产生阻碍、 便于插接以传输电子信号, 并可避免多种类、 型 式电连接器以分开设计、 组装产生占用空间、 位置的麻烦, 而完成电连接器适 用性广泛、 降低使用时条件限制的约束的功能。 附图说明
图 1为本发明的立体外观图。
图 2为本发明的立体分解图。
图 3为本发明另一方向的立体分解图。
图 4为本发明端子组的俯视图。
图 5为本发明电连接器的俯视图。
图 6为本发明电连接器的侧视图。
图 7为本发明较佳实施例的立体分解图。
图 8为本发明较佳实施例的侧视剖面图。
附图标记说明: 1、 绝缘座体; 11、 基座; 110、 端子槽; 12、 基部; 120、 端子容置槽; 2、 端子组; 21、 端子; 2101、 第一接地端子; 2102、 第一差分信 号端子; 2103、 第二差分信号端子; 21 (M、 第三差分信号端子; 2105、 第四差 分信号端子; 211、 对接部; 212、 焊接部; 22、 传输端子; 2201、 第五差分信 号端子; 2202、 第六差分信号端子; 2203、 电源端子; 2204、 第二接地端子; 2205、 辅助传输端子; 221、 对接侧; 2211、 接触面; 222、 焊接侧; 223、 第一 弯折部; 224、 第二弯折部; 225、 端子壁; 23、 辅助基架; 231、 第一辅助肋; 232、 第二辅助肋 233、 弹性凸扣; 234、 弹性凸扣; 3、 屏蔽壳体; 31、 本体; 310、 容置空间; 32、 壳座; 320、 收纳空间; 321、 剖槽; 4、 电连接器; 40、 插接空间; 401、 收纳空间。 具体实施方式
为达成上述目的与功效, 本发明所采用的技术手段及其构造、 实施的方法 等, 兹绘图就本发明的较佳实施例详加说明其特征与功能如下, 俾利完全了解。
请参阅图 1 至图 4所示, 为本发明的立体外观图、 立体分解图、 另一方向 的立体分解图、 端子组的俯视图, 由图中所示可以清楚看出, 本发明的电连接 器, 包括绝缘座体 1、 端子组 2及屏蔽壳体 3 , 其中:
该绝缘座体 1是于基座 1 1 内部设有多个端子槽 1 1 0,且基座 1 1一侧连设有 基部 12 , 并于基部 12内设有端子容置槽 120。
该端子组 2包括多个端子 21及多个传输端子 22, 而多个端子 21—侧分别 设有对接部 211、 另侧则分别设有焊接部 212, 并于多个传输端子 22 —侧分别 设有对接侧 221、 另侧分别设有焊接侧 222。
该屏蔽壳体 3设有相邻连设的本体 31、 壳座 32, 而本体 31 内部具有容置 空间 31 0、 壳座 32内部具有收纳空间 320。
上述各构件于组装时, 是利用绝缘座体 1的基座 1 1、 基部 12 , 分别供端子 组 2的多个端子 21、 多个传输端子 22穿设定位, 可利用基座 11的多个端子槽 11 0分别供多个端子 21穿设,且多个端子 21的对接部 211分别定位于各端子槽 1 1 0 内, 多个端子 21 另侧焊接部 212即分别延伸出基座 1 1外部, 再于基部 12 的端子容置槽 120供多个传输端子 22穿设,并供多个传输端子 22的对接侧 221 定位于端子容置槽 120 内, 多个传输端子 22 另侧的焊接侧 222 则穿过基座 11 内部并穿插在多个端子 21之间、 而分别延伸出基座 1 1的外部, 供多个端子 21 的焊接部 212、 多个传输端子 22的焊侧 222 , 同向延伸出基座 1 1外部, 并呈共 平面的平行交错设置, 再于绝缘座体 1外部罩覆屏蔽壳体 3 , 利用本体 31的容 置空间 310容纳基座 11、 且壳座 32的收纳空间 320则收纳基部 12 , 而利用绝 缘座体 1的基座 11、 端子组 的多个端子 21与屏蔽壳体 3的本体 31 , 组成符 合预定规格型式 (可为通用序列总线 USB3 . 0 的规格或相关型式等) 的电连接 器, 且以绝缘座体 1的基部 12、 端子组 2的多个传输端子 22及屏蔽壳体 3的壳 座 32 , 以组成符合另一预定规格型式(可为微型通用序列总线 M i c r 0 USB 的规格或相关型式等) 的电连接器, 即通过绝缘座体 1、 端子组 2及屏蔽壳体 3 组构成本发明的 USB电连接器构造。 且上述的绝缘座体 1, 是于基座 11一侧相邻连设有基部 12, 而基部 12的 宽度缩小、 并小于基座 11的宽度, 基部 12的厚度亦减缩、 则小于基座 11的厚 度, 以供缩小宽度、 减缩厚度的基部 12连设于基座 11一侧下方的中央位置处; 相对绝缘座体 1的基座 11、 基部 12, 为于屏蔽壳体 3的本体 31—侧边中央位 置、 连设有缩小宽度、 减缩厚度的壳座 32, 以供本体 31罩覆于相对型式的基座 11 外部, 并配合端子组 2 的多个端子 21, 而组成符合预定通用序列总线规格 ( USB3 . 0 ) 的电连接器, 并由壳座 32 罩覆于相对型式的基部 12外, 以组成符 合微型通用序列总线规格( M i c r o USB)的电连接器, 构成相邻连结设计、 且呈相异规格尺寸的不同型式电连接器。
而屏蔽壳体 3的本体 31、 壳座 32, 是可一体成型制成预定规格型式, 亦可 将本体 31、 壳座 32分开制造后, 再利用预定的加工作业(可为焊接、 高周波熔 接或粘胶胶合等方式) 予以结合成预定规格型式。
请参阅图 2至图 6所示, 为本发明的立体分解图、 另一方向的立体分解图、 端子组的俯视图、 电连接器的俯视图、 电连接器的侧视图, 由图中所示可以清 楚看出, 本发明的端子组 2包括多个端子 21、 多个传输端子 22, 而多个端子 21 包括五支相邻并排的端子 21, 具有位于中间的第一接地端子 2101、 位于第一接 地端子 2101 二外侧分别所设的第一差分信号端子 2102、 第二差分信号端子 2103、 第三差分信号端子 2104及第四差分信号端子 2105; 且多个传输端子 22, 包括四支相邻并排的传输端子 22, 具有位于中央的第五差分信号端子 2201、 第 六差分信号端子 2202、分别位于第五差分信号端子 2201、第六差分信号端子 O2 的二相对外侧所设的电源端子 2203及第二接地端子 2204, 又, 电源端子 2203 可为增加宽度的设计, 可供负载较大的电流量, 则对接侧 221 是呈中空环圏状 弯折、 弹性隆起、 一侧并断开形成二接触面 2211、 则可增加电源端子 2203的对 接侧 221 的接触面积; 相邻第六差分信号端子 2202侧边的第二接地端子 2204 内侧, 则连设有辅助传输端子 2205, 而供多个传输端子 22形成符合通用序列总 线接口 (USB/ 0 T G ) 型式的规格, 并可于多个传输端子 22 二相对外侧设置 辅助基架 23, 且辅助基架 23分别于电源端子 2203、 第二接地端子 2204向外侧 分别延伸设有第一辅助肋 231、 第二辅助肋 232, 再于第一辅助肋 231、 第二辅 助肋 232相对内侧, 分别延伸设有呈弯折、 弹性隆起状的二弹性凸扣 233、 234, 而供第一辅助肋 231、 第二辅助肋 232及二弹性凸扣 233、 234分别呈平行于多 个传输端子 22的同向外侧,则于屏蔽壳体 3的壳座 32上设有二相对式剖槽 321, 以供基部 12配合多个传输端子 22外部罩覆壳座 32时, 即供端子组 2的辅助基 架 23二侧弹性凸扣 2 33、 234 , 分别罗动穿出壳座 32的二剖槽 321外部, 而可 组成符合微型通用序列总线 ( M i c r o USB ) 的规格, 且通过辅助基架 2 3 增加电连接器的基部 12的结构强度, 亦可提升电连接器的防突波干扰( E M I ) 作用, 避免因供电流不稳定或雷击的瞬间高电流、 高电压等的干扰影响。
另, 端子组 2的多个传输端子 22, 分别由对接侧 221分别往另侧延伸、 设 有朝垂直方向弯折的第一弯折部 223 , 且由各第一弯折部 22 3再往另侧延伸、 设 有朝水平横向弯折的第二弯折部 224 , 并由各第二弯折部 224分别往另侧延伸、 而设有焊接侧 222, 再由多个传输端子 22二外侧的电源端子 2203、 第二接地端 子 2204 , 分别于第一弯折部 223、 第二弯折部 224之间的端子壁 225向外延伸 设有辅助基架 23的第一辅助肋 231、 第二辅助肋 2 32 , 且多个传输端子 22—侧 的对接侧 221 , 可由绝缘座体 1的基座 1 1延伸穿设至缩小宽度及厚度的基部 12 内, 至于多个传输端子 22另侧的各焊接侧 222 , 则分别延伸出基部 12外侧, 并 与相邻基座 1 1外侧延伸出的多个端子 21的焊接部 212 ,形成共平面的相邻设置, 且各焊接部 212、 各焊接侧 222分别呈扇形状扩展方式延伸, 且均为增加接触面 积的扩大表面设计, 则可供各焊接部 212、 各焊接侧 222方便对位于相对焊接位 置的各金属接点上, 可增加焊接时的接触面积, 并可提升传输电子信号的稳定 度。
再请参阅图 2、 3、 7、 8所示, 为本发明的立体分解图、 另一方向的立体分 解图、 较佳实施例的立体分解图、 较佳实施例的侧视剖面图, 由图中所示可以 清楚看出, 本发明的电连接器于实际应用实施时, 可利用绝缘座体 1 的基部 12 与端子组 2的多个传输端子 22、屏蔽壳体的壳座 32所构成的预定型式电连接器 (可为微型通用序列总线 M i c r 0 USB规格、或其它型式的电连接器规格等), 可配合具有不同电连接器的电子产品, 而方便与相对型式电连接器进行电性插 接, 以供传输电子信号。
亦可利用绝缘座体 1的基座 1 1、端子组 2的多个端子 21及屏蔽壳体 3的本 体 31 , 构成预定型式的电连接器 (可为通用序列总线 USB3 . 0规格、 或其它电 连接器规格等) , 则将预定型式电连接器与预设相对型式的电连接器 4 进行电 性插接时, 为将基座 1 1及外部本体 31—同插入预设相对型式电连接器 4的插 接空间 4 0内,而位于绝缘座体 1的基座 1 1一侧连设的基部 12与外部的壳座 32, 即可由插接空间 4 0进入内部的收纳空间 4 01中, 则基部 12与壳座 32并不致影 响基座 1 1与相对型式电连接器 4间的相对插接模式, 可以达到预定型式电连接 器 (可为 USB 3 . 0 等) 的电子信号传输作业, 以供本发明的电连接器具有结合 二种 (或者二种以上) 型式的电连接器规格, 通过一次加工作业完成二种 (或 者二种以上) 型式的电连接器的制造、 能降低制造成本, 且应用时可将连结设 计的二种型式电连接器, 选择相对的型式电连接器进行电性插接, 而能减少电 连接器设置的数量, 并避免占用太多的空间位置, 并可选择适当的电连接器型 式供应用, 与不同电子产品进行电性连接时, 通过单一电连接器具有二种 (或 二种以上) 规格供应用的功效、 适用性广泛、 实用效果更佳, 亦可减少因电连 接器型式、 种类或规格等所产生的条件限制, 使用更为方便, 增加电连接器的 实用性, 且二种类型的预定型式电连接器使用时, 并不会互相产生阻碍, 可以 顺利应用不同类型的电连接器。
因此, 以上所述仅为本发明的较佳实施例而已, 非因此局限本发明的专利 范围, 本发明的 USB电连接器构造, 可在绝缘座体 1的基座 1 1与基部 12 , 可供 端子组 2的多个端子 21、 多个传输端子 22分别穿设, 再配合屏蔽壳体 3的本体 31与壳座 32 , 组成不同规格的预定型式电连接器的连结构造设计, 可达到利用 连结式电连接器选择相对型式电连接器、 分别与相对型式电连接器相互电性插 接的目的, 以单一电连接器具有二种不同规格型式电连接器应用的便捷效果, 应用时彼此亦不致产生阻碍、 便于插接以传输电子信号, 并可避免多种类、 型 式电连接器以分开设计、 组装产生占用空间、 位置的麻烦, 而完成电连接器适 用性广泛、 降低使用时条件限制的约束的功能, 故举凡可达成前述效果的结构、 装置皆应受本发明所涵盖, 此种简易修饰及等效结构变化, 均应同理包含于本 发明的专利范围内, 合予陈明。
因此, 本发明为主要针对 USB 电连接器构造进行设计, 是利用绝缘座体以 基座、 基部相邻连结成型, 而可供端子组的多个端子、 多个传输端子分别穿设, 并以屏蔽壳体的本体包覆基座外部、 壳座包覆基部的外部, 而可达到组成二种 规格预定型式的电连接器、 可分别进行电性插接、 传输电子信号为主要保护重 点, 以供电连接器结合相异规格的预定型式电连接器、 可适用性更广泛、 实效 果佳、 使用限制少, 乃仅使电连接器具有多种应用模式的优势, 使用时并可避 免占用太大的空间、 方便应用在具有不同型式电连接器的电子产品, 但是, 以 上所述仅为本发明的较佳实施例而已, 非因此即局限本发明的专利范围, 故举 凡运用本发明说明书及图式内容所为的筒易修饰及等效结构变化, 均应同理包 含于本发明的专利范围内, 合予陈明。
综上所述, 本发明上述的 USB 电连接器构造于实际执行、 实施时, 为确实 能达到其功效及目的, 故本发明诚为一实用性优异的研发, 为符合发明专利的 申请要件, 爰依法提出申请。

Claims

权 利 要 求
1、 一种 USB电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏蔽 壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 内部设有容置基座的容置空间、 相邻容 置空间供收纳基部的收纳空间。
2、 一种 USB电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏蔽 壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧宽度缩小并具端子 容置槽的基部;
该端子组分别组装于绝缘座体的基座、 宽度小于基座的基部, 包括穿设于 基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于缩小宽度基部的端 子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及 该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳缩小宽度的基部的收纳空间。
3、 一种 USB电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏蔽 壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧减缩厚度并具端子 容置槽的基部;
该端子组分别组装于绝缘座体的基座、 厚度小于基座的基部, 包括穿设于 基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于减缩厚度基部的端 子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及 该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳减缩厚度的基部的收纳空间。
4、 一种 USB电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏蔽 壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧中央位置且宽度、 厚度缩小并具端子容置槽的基部;
该端子组分别组装于绝缘座体的基座、 宽度及厚度小于基座的基部, 包括 穿设于基座的各端子槽内的多个端子、 穿设于基部的端子容置槽内的多个传输 端子, 且多个端子一侧分別设有定位于基座的各端子槽内的对接部、 另侧即设 有延伸出基座外部的焊接部, 而多个传输端子一侧分别设有定位于缩小宽度、 厚度基部的端子容置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部 的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间侧边中央位置处供收纳缩小宽度及厚度的基部的收纳空间。
5、 一种 USB电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏蔽 壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 并于多个传输端子的外侧传 输端子设有增加宽度的对接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
6、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中: '
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 并于一外侧传输端子设有呈 环圈状并断开形成二接触面的对接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
7、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 设有具容置空间以容置基座的本体、 相 邻本体而具有收纳空间供收纳基部的壳座。
8、 根据权利要求 7所述的 USB 电连接器构造, 其特征在于, 该屏蔽壳体 的本体与壳座是一体成型或分开制造。
9、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的五支传输端子, 五支端子则包括 位于中间的第一接地端子、 位于第一接地端子二外侧分别所设的第一差分信号 端子、 第二差分信号端子、 第三差分信号端子及第四差分信号端子, 而四支传 输端子系包括位于中央的第五差分信号端子、 第六差分信号端子、 分别位于第 五差分信号端子、 第六差分信号端子二相对外侧所设的电源端子及第二接地端 子, 且五支端子一侧分别设有定位于基座的各端子槽内的对接部、 另侧即设有 延伸出基座外部的焊接部, 而四支传输端子一侧分别设有定位于基部的端子容 置槽内的对接侧、 另侧分别设有由基座穿过基座延伸至外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座并配合五 支端子而符合 USB3 . 0 规格的容置空间、 相邻容置空间供收纳基部且配合四支 传输端子以符合微型 USB规格的收纳空间。
1 0、 根据权利要求 9所述的 USB 电连接器构造, 其特征在于, 该端子组的 四支传输端子, 是由对接侧分别往另侧设有向上垂直弯折的第一弯折部、 且连 接于各第一弯折部另侧再分别设有朝水平横向弯折的第二弯折部, 而由各第二 弯折部往另侧延伸设有焊接侧, 即由二外侧的电源端子及第二接地端子的第一 弯折部、 第二弯折部间的端子壁, 分别向外延伸设有辅助基架的第一辅助肋、 第二辅助肋, 则辅助基架并于第一辅助肋、 第二辅助肋的相对内侧分别设有呈 弯折、 弹性隆起的弹性凸扣, 并于屏蔽壳体的基部二侧分别设有供二弹性凸扣 活动穿出的剖槽。
1 1、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内并呈反向弯折状的对接部、 另侧即设有延伸 出基座外部的焊接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽 内亦呈反向弯折状的对接侧、 另侧为分别设有由基座穿过基座延伸至外部的焊 接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
12、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分別设有由基座穿过基座延伸至外部的焊接侧, 而多个传输端子为符合通用 序列总线规格,并于一侧接地接脚连设有形成通用序列总线接口( USB / 0 T G ) 型式的辅助传输端子; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
1 3、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体系包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的 基部;
该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有定位于基部的端子容置槽内的对接侧、 另 侧分别设有由基座穿过基座延伸至外部的焊接侧, 再于多个传输端子二相对外 设置增加结构强度的辅助基架; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间, 并于收纳空间的屏蔽壳体设有供多 个传输端子二外侧辅助基架露出的二相对式剖槽。
14、 一种 USB 电连接器构造, 其特征在于, 其包括绝缘座体、 端子组及屏 蔽壳体, 其中:
该绝缘座体包括具多个端子槽的基座、 连设于基座一侧具端子容置槽的基 部; 该端子组分别组装于绝缘座体的基座与基部, 包括穿设于基座的各端子槽 内的多个端子、 穿设于基部的端子容置槽内的多个传输端子, 且多个端子一侧 分别设有定位于基座的各端子槽内的对接部、 另侧即设有延伸出基座外部的焊 接部, 而多个传输端子一侧分别设有朝垂直向弯折后集中定位于基部的端子容 置槽内的对接侧、 另侧分别设有由基座穿过基座并穿插在多个端子间、 以同向 延伸至基座外部的焊接侧; 及
该屏蔽壳体罩覆于绝缘座体外部, 且屏蔽壳体内部设有容置基座的容置空 间、 相邻容置空间供收纳基部的收纳空间。
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7517253B1 (en) * 2008-02-01 2009-04-14 Taiwin Electronics Co., Ltd. Connector socket for eSATA and USB plugs
CN201323356Y (zh) * 2008-11-03 2009-10-07 富士康(昆山)电脑接插件有限公司 插头电连接器
CN202121180U (zh) * 2011-04-29 2012-01-18 泰科电子(上海)有限公司 插头连接器和连接器组件
CN202285295U (zh) * 2011-09-22 2012-06-27 富士康(昆山)电脑接插件有限公司 线缆连接器组件
CN203339334U (zh) * 2013-04-01 2013-12-11 立讯精密工业(昆山)有限公司 插座连接器及插头连接器
CN203398475U (zh) * 2013-07-26 2014-01-15 陈碇祈 Usb电连接器的改良结构
CN203674520U (zh) * 2013-12-23 2014-06-25 陈碇祈 Usb电连接器的改进结构

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202737156U (zh) * 2012-08-02 2013-02-13 上海莫仕连接器有限公司 插座电连接器

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7517253B1 (en) * 2008-02-01 2009-04-14 Taiwin Electronics Co., Ltd. Connector socket for eSATA and USB plugs
CN201323356Y (zh) * 2008-11-03 2009-10-07 富士康(昆山)电脑接插件有限公司 插头电连接器
CN202121180U (zh) * 2011-04-29 2012-01-18 泰科电子(上海)有限公司 插头连接器和连接器组件
CN202285295U (zh) * 2011-09-22 2012-06-27 富士康(昆山)电脑接插件有限公司 线缆连接器组件
CN203339334U (zh) * 2013-04-01 2013-12-11 立讯精密工业(昆山)有限公司 插座连接器及插头连接器
CN203398475U (zh) * 2013-07-26 2014-01-15 陈碇祈 Usb电连接器的改良结构
CN203674520U (zh) * 2013-12-23 2014-06-25 陈碇祈 Usb电连接器的改进结构

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