WO2016188445A1 - Connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, et borne et élément de fixation élastique de celui-ci - Google Patents

Connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, et borne et élément de fixation élastique de celui-ci Download PDF

Info

Publication number
WO2016188445A1
WO2016188445A1 PCT/CN2016/083424 CN2016083424W WO2016188445A1 WO 2016188445 A1 WO2016188445 A1 WO 2016188445A1 CN 2016083424 W CN2016083424 W CN 2016083424W WO 2016188445 A1 WO2016188445 A1 WO 2016188445A1
Authority
WO
WIPO (PCT)
Prior art keywords
terminals
pair
terminal
electrical connector
row
Prior art date
Application number
PCT/CN2016/083424
Other languages
English (en)
Chinese (zh)
Inventor
蔡周贤
Original Assignee
蔡周贤
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 CN201510565544.7A external-priority patent/CN106207635B/zh
Application filed by 蔡周贤 filed Critical 蔡周贤
Publication of WO2016188445A1 publication Critical patent/WO2016188445A1/fr

Links

Images

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
    • H01R13/02Contact 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
    • H01R13/64Means for preventing incorrect coupling

Definitions

  • the present invention relates to an electrical connector, and more particularly to an electrical connector that can be electrically connected in both directions.
  • the USB TYPE-C electrical connector has gradually become the mainstream specification of the interface of the electronic product.
  • the USB TYPE-C electrical connection of the USB Association standard is the center height of the tongue in the connecting groove, and there are 12 rows on each side of the tongue. The contact points of the terminals, and the circuit numbers of the two rows of contacts are arranged in reverse order.
  • the USB TYPE-C electrical connection standard of the USB Association has a full-function type and a charging type, and the full-function type has 12 terminals in the upper row.
  • the contact and the lower row are the contacts of 10 terminals.
  • the charging type is corresponding to the USB2.0 specification. It is the contact of the upper row of 7 terminals and the lower row of 5 terminals.
  • the USB TYPE-C of two different contacts The electrical connection males are also arranged in reverse order for the circuit numbers of the two rows of contacts, which can be electrically connected to the two rows of contacts of the USB TYPE-C electrical connection.
  • the two rows of terminals of the USB TYPE-C electrical connection male connector include two left-right symmetric grounding contacts and two left-right symmetric power supply contacts, both in the full-function type and the charging type.
  • the grounding terminal should be electrically connected into a circuit, and the upper and lower power terminals should also be electrically connected into a circuit. Therefore, the USB TYPE-C electrical connection male rear end card is fixed with a circuit board, and the circuit board is used to ground the four wires.
  • the terminals are electrically connected into a circuit and the four power terminals are electrically connected into a circuit.
  • the invention further simplifies the design of the charging type for the USB TYPE-C electrical connection male connector, and reduces the design of the circuit board to achieve structural simplification.
  • the main object of the present invention is to provide an electrical connector for forward and reverse bidirectional insertion, wherein the insulating base body is provided with an upper seat body and a lower seat body which are joined up and down, and can be assembled on at least one row of terminals above and below. Lower seat body for assembly convenience.
  • Another main object of the present invention is to provide a positive and negative bidirectionally inserted electrical connector, wherein at least one of the two rows of contacts is vertically aligned and the pair of terminal bodies are directly connected, thereby reducing the design of the circuit board to achieve a structural simplify.
  • Another main object of the present invention is to provide an electrical connector for forward and reverse bidirectional insertion, wherein at least one pair of left and right symmetrically arranged contact portions of a row of contact portions and the fixed portions of the pair of terminals are electrically connected, thereby reducing circuit
  • the design of the board is simplified in construction.
  • Another main object of the present invention is to provide an electrical connector for positive and negative two-way insertion.
  • the two elastic buckles are integrally connected to the grounding terminals on both sides of a row of terminals, so that manufacturing convenience and grounding terminal can be achieved.
  • the metal casing can be guided by an elastic snap.
  • Another main object of the present invention is to provide a positive and negative bidirectionally inserted electrical connector, wherein at least one of the two rows of terminals has a pair of upper and lower terminals adjacent to each other, and the pair of terminals are the same circuit, thereby The design of the circuit board is reduced to a structural simplicity.
  • Another main object of the present invention is to provide an electrical connector for forward and reverse bidirectional insertion, wherein the rows of contact portions are arranged at unequal intervals and the middle portion of the extension portion of at least two or more terminals is later biased outwardly from the contact portion. Therefore, the row of terminals can be better arranged, and the fixing portion and the pin of each terminal have a larger board width as much as possible.
  • Another main object of the present invention is to provide a terminal and an elastic buckle of an electrical connector, which are integrally connected to a fixing portion of a terminal by an elastic buckle, thereby achieving manufacturing convenience.
  • the present invention provides an electrical connector for forward and reverse bidirectional insertion, comprising: an insulating base body, and a base and a pair of connecting portions, the abutting portion is disposed at the front end of the base There are two connecting faces in opposite directions; at least one row of terminals, the terminal is bent with a metal plate surface and an extension portion and a fixing portion, the fixing portion is fixed to the base, and the extension portion is connected to the fixing portion a front end portion of the portion and extending to the abutting portion and a connecting portion of the connecting portion of the connecting portion, the contact portion of the at least one row of terminals is in a row on the at least one connecting surface, and at least a portion of the at least one row of the terminals a rear end of the fixing portion is provided with a pin extending rearward to expose the base; and a connecting groove is disposed at the front end of the insulating seat body, the abutting portion is located at the connecting groove, and the shape of the abut
  • the present invention further provides an electrical connector for forward and reverse bidirectional insertion, comprising: an insulating base body provided with a base and a pair of connecting portions, the abutting portion being disposed at the front end of the base and provided in opposite directions Two connecting faces; the two rows of terminals are bent with an extension portion and a fixing portion, and the fixing portion is fixed to the base, and the extending portion is connected to the front end of the fixing portion and extends to
  • the abutting portion is provided with a contact portion at a connecting surface of the abutting portion, and the contact portions of the two rows of terminals are respectively arranged in a row on the two connecting surfaces, and at least a part of the terminals of the two rows of terminals are provided with a rear end of the fixing portion
  • the foot extends rearward to expose the base; and a connecting slot is disposed at the front end of the insulating seat, the abutting portion is located at the connecting groove, and the shape of the abutting portion and the connecting groove can be
  • the present invention further provides an electrical connector for forward and reverse bidirectional insertion, comprising: an insulating base body provided with a base and a pair of connecting portions, the abutting portion being disposed at the front end of the base and provided in opposite directions Two connecting faces; the two rows of terminals are bent with an extension portion and a fixing portion, and the fixing portion is fixed to the base, and the extending portion is connected to the front end of the fixing portion and extends to
  • the abutting portion is provided with a contact portion at a connecting surface of the abutting portion, and the contact portions of the two rows of terminals are respectively arranged in a row on the two connecting surfaces, and at least a part of the terminals of the two rows of terminals are provided with a rear end of the fixing portion
  • the foot extends rearward to expose the base; and a connecting slot is disposed at the front end of the insulating seat, the abutting portion is located at the connecting groove, and the shape of the abutting portion and the connecting groove can be
  • the present invention further provides an electrical connector for forward and reverse bidirectional insertion, comprising: an insulating base body provided with a base and a pair of connecting portions, the abutting portion being disposed at the front end of the base and provided in opposite directions
  • the two connecting faces are at least one row of terminals, and the terminal is bent with a metal plate and a fixing portion, and the fixing portion is fixed to the base, and the extending portion is connected to the front end of the fixing portion and extends And a contact portion of the at least one row of terminals is in a row on the at least one row of terminals, and at least a portion of the at least one of the terminals has a fixed portion rear end
  • a connecting slot is disposed at the front end of the insulating base, the abutting portion is located at the connecting groove, and the shape of the abutting portion and the connecting groove can be positioned in front and back and double-sided An electrical connector; wherein at least one pair of left and right symmetrical contacts are in the row of contacts And
  • the present invention further provides an electrical connector for forward and reverse bidirectional insertion, comprising: an insulating base body provided with a base and a pair of connecting portions, the abutting portion being disposed at the front end of the base and provided in opposite directions
  • the two connecting faces are at least one row of terminals, and the terminal is bent with a metal plate and a fixing portion, and the fixing portion is fixed to the base, and the extending portion is connected to the front end of the fixing portion and extends And a contact portion of the at least one row of terminals is in a row on the at least one row of terminals, and at least a portion of the at least one of the terminals has a fixed portion rear end
  • a connecting slot is disposed at the front end of the insulating base, the abutting portion is located at the connecting groove, and the shape of the abutting portion and the connecting groove can be positioned in front and back and double-sided And an electrical connector; wherein the rows of contact portions are arranged at unequal intervals and the middle portion of
  • At least one of the pair of contact portions has a pair of symmetrically arranged contact portions and the fixed portions of the pair of terminals are electrically connected.
  • At least one of the pair of contact portions has a pair of symmetrically arranged contact portions and the fixed portions of the pair of terminals are electrically connected.
  • the electrical connector of the front and rear two-way plugging wherein the inner faces of the upper and lower seats are recessed with a row of terminal slots, and the at least one row of terminals is two rows, and the two rows of terminals are respectively assembled from the up and down direction.
  • the two rows of terminal slots are respectively assembled from the up and down direction.
  • the electrical connector of the forward and reverse bidirectional insertion wherein at least one of the two rows of terminals directly engages and abuts the plate faces of the upper and lower terminal bodies and the pair of terminals are the same circuit.
  • the electrical connector of the forward and reverse bidirectional insertion wherein at least one pair of the upper and lower terminals of the two rows of terminals are adjacent to each other in the same height and adjacent to each other, and the pair of terminals are the same circuit.
  • At least one of the pair of contact portions has a pair of symmetrically arranged contact portions and the fixed portions of the pair of terminals are electrically connected.
  • the electrical connector of the front and back two-way plugging wherein the base is provided with an upper base and a lower base stacked on top of each other, and the front end of the base is provided with a set of joints, and the joint part is set a connecting portion of the front end of the base is connected to the sleeve, and a connecting portion of the connecting plates of the connecting portion is recessed with a row of terminal slots, and the two rows of terminals are respectively embedded with the upper and lower bases.
  • the fixing portion is fixedly embedded and fixed to the base, and the extending portion is elastically movable perpendicularly to the surface of the board to be bounced up and down in the terminal slot, and the contact portion protrudes from the connecting surface and can be bounced up and down with the extending portion .
  • the electrical connector of the positive and negative two-way plug is further provided with a metal outer casing, and the metal outer casing is disposed outside the insulating seat and is provided with a four-boil main casing, and the four bread main casing covers the butting portion.
  • the two form a pair of connection structure, the shape of the docking structure can be positioned on the front and back double-sided docking to an electrical connector.
  • the electrical connector of the front and back bidirectional insertion wherein the row of contact portions are arranged at unequal intervals and the middle portion of the extension portion of at least two or more terminals is later biased outward than the contact portion.
  • the electrical connector of the front and back of the two-way plugging wherein the abutting portion is provided with two connecting plates which are vertically spaced apart from each other, and the inner faces of the two connecting plates are the connecting faces, and the connecting faces are formed between the two connecting faces Connection slot.
  • the electrical connector of the forward and reverse bidirectional insertion may be a combination of one or more of the following a to h:
  • the inner front section of the two connecting plates is provided with a lower surface recessed than the connecting surface, so that the front section of the connecting groove is higher than the rear section;
  • the butt joint is provided with two side plates connecting the two sides of the two connecting plates to form a frame;
  • the elastic buckle is provided with a fixing portion and a spring arm.
  • the fixing portion is fixed to the two sides of the base of the insulating base.
  • the elastic arm is connected to the fixing portion at one end and forward. Extending to the connecting slot and having a buckle at the other end, the buckles of the two elastic buckles are located on both sides of the connecting slot and can be bounced left and right;
  • the front section of the butt joint is provided with two side plates connecting the two sides of the two connecting plates to form a frame body and an opening is formed on each side of the rear side;
  • the inner front section of the two connecting plates is provided with a lower surface recessed than the connecting surface, so that the front section of the connecting slot is higher than the rear section, and the outer surface of the two connecting plates is respectively provided with a groove corresponding to the lower surface, the concave
  • the slot is provided with at least one opening, each of the two recesses is provided with a grounding piece, the grounding strip is provided with at least one contact portion and at least one contact elastic piece, and the contact portion protrudes from the opening to the front portion of the connecting groove, the contact The elastic piece elastically contacts the metal outer casing.
  • the electrical connector of the front and rear two-way plugging wherein the contact portion of the plurality of terminals protrudes from the connecting surface and can be bounced up and down, and the extending portion can be elastically perpendicular to the board surface and the terminal on the connecting surface Slot Bounce up and down.
  • the electrical connector of the forward and reverse bidirectional insertion wherein the extension portion of the terminal is provided with a middle portion abutting point against the bottom surface of the terminal groove of the connecting plate and is inclined obliquely forward from the middle portion abutting point
  • the connecting portion is formed to protrude from the connecting surface, that is, when the joint faces of the bases of the upper and lower seats are not yet engaged with each other, the fixing portion of the terminal is inclined to project the joint surface of the base.
  • the electrical connector of the front and rear two-way plugs wherein the fixing portions of the terminals on the two sides of the row of terminals are integrally connected with an elastic buckle, the elastic buckle is provided with a fixing portion and a spring arm, the fixing portion Fixed to the base, the elastic arm is connected to the fixing portion at one end and extends forward to the connecting groove and has a convex inward buckle near the other end, and the buckles of the two elastic buckles are located on both sides of the connecting groove It can be bounced left and right.
  • the front and back bidirectionally inserted electrical connectors wherein the front portion of the abutting portion forms a frame body and each of the two sides of the rear portion forms an opening, and the elastic arms of the two elastic buckles are provided with a middle abutment point by the docking The opening of the portion protrudes to overflow the metal casing.
  • the electrical connector of the front and back two-way plugging wherein the elastic arm of the two elastic buckles is a single metal plate, and the buckle is a plate thickness drawing extension to form a height greater than the thickness of the plate.
  • the front and back bidirectionally-connected electrical connectors wherein the front section of the abutting portion is provided with two side plates connecting the two sides of the two connecting plates to form a frame, and the abutting portions of the upper and lower seats respectively form the One half of the frame body and each of which is embedded with a metal reinforcing plate, the reinforcing plate connecting the connecting plate and the two side plates.
  • the electrical connector of the positive and negative two-way plug is further provided with a metal outer casing, and the metal outer casing is disposed outside the insulating seat and is provided with a four-boil main casing, and the four bread main casing covers the butting portion.
  • the shape of the docking structure can be positioned in a front and back double-sided docking position on an electrical connector, and wherein at least one pair of the same circuit terminals of the two rows of terminals includes at least one pair of ground contacts and at least one For the power contacts, the contact portions of each pair of terminals are vertically aligned, and one of the rows of contacts further includes at least one pair of signal contacts, the pair of signal contacts are arranged adjacent to each other, and the two signal terminals of the pair of signal contacts are A rear end of the fixing portion is respectively provided with a pin extending rearward to a standard connecting pin position, and only one of the two power terminals of the pair of power contacts is provided with a pin extending rearward to the standard connecting pin. Only one of the two grounding terminals of the pair of grounding contacts is provided with a pin extending rearward to the standard connecting pin or the two grounding terminals are electrically connected to the metal casing.
  • the electrical connector of the forward and reverse bidirectional insertion may be one or both of the following a to e The above combination:
  • the two rows of contact portions are respectively provided with a CC contact, and the contact circuit numbers of the two CC contacts are arranged in opposite directions, that is, the contact portions arranged symmetrically in the left and right sides, and the fixing portions of the two CC terminals of the two CC contacts are Each end has a pin extending rearward to a standard connecting pin;
  • the terminals of at least one pair of the same circuit of the two rows of terminals are two pairs of ground contacts and two pairs of power contacts, the two pairs of ground contacts are symmetrically arranged in a left-right direction, and the two pairs of power contacts are arranged symmetrically in a left-right direction and one of the rows
  • the fixing portion of the power terminal of the two power contacts of the contact portion is electrically connected;
  • the terminals of at least one pair of the same circuit of the two rows of terminals are two pairs of ground contacts and two pairs of power contacts, the two pairs of ground contacts are symmetrically arranged in a left-right direction, and the two pairs of power contacts are arranged symmetrically in a left-right direction and one of the rows
  • the fixing portion of the power terminal of the two power contacts of the contact portion is electrically connected to the fixing portion of the ground terminal of the two ground contacts;
  • the pins of the plurality of terminals extend to a standard connection position and are arranged in a row of equal height.
  • the at least one pair of symmetrically arranged contact portions and the electrically connected terminals of the two terminals are mutually guided by a left and right extending guide tabs.
  • the electrical connector of the positive and negative two-way plug is further provided with a metal outer casing, and the metal outer casing is disposed outside the insulating seat and is provided with a four-boil main casing, and the four bread main casing covers the butting portion.
  • the shape of the mating structure can be positioned in a front and back double-sided docking position on an electrical connector, and wherein at least one pair of left and right symmetrically arranged contact portions and the fixed portion of the pair of terminals are in the row of contact portions
  • the electrical connector is a pair of power contacts, and only one of the two terminals of the pair of power contacts has a pin extending rearward to the standard connecting pin, and the row of contacts further includes at least a pair of signal contacts and a pair of ground contacts, the pair of signal contacts are arranged adjacent to each other, and the rear ends of the fixing portions of the two terminals of the pair of signal contacts are respectively provided with a pin extending rearward to the standard connection pin, the one The ground contacts are vertically symmetrically arranged and the two terminals of the pair of ground contacts are electrically connected to the metal casing.
  • the electrical connector of the front and back bidirectional insertion wherein at least one pair of left and right symmetrically arranged contact portions of the row of contact portions and the fixed portion of the pair of terminals are electrically connected to a pair of power contacts and a pair of grounding a contact point, only one of the two terminals of the pair of power contacts is provided with a pin extending rearward to a standard connection pin, and only one of the two terminals of the pair of ground contacts is solid
  • the rear end of the fixed portion is provided with a pin extending rearward to the standard connecting pin
  • the row of contact portions further includes at least one pair of signal contacts, the pair of signal contacts are arranged adjacent to each other, and the two pairs of the signal contacts are Each of the rear ends of the fixing portions of the terminals is provided with a pin extending rearward to the standard connecting pin.
  • the electrical connector of the front and back two-way plugging wherein the row of contacts is provided with a CC contact, and the rear end of the fixing portion of the terminal of the CC contact is provided with a pin extending rearward to the standard connecting pin.
  • the electrical connector of the front and back two-way plugging wherein the row of contacts is provided with a CC contact, and the rear end of the fixing portion of the terminal of the CC contact is provided with a pin extending rearward to the standard connecting pin.
  • the electrical connector of the front and back two-way plugging wherein the at least one row of terminals is a row, and the contact portions of the row of terminals have a row of contact portions only on a connecting surface.
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to d, or a combination of two or more:
  • the pins of the plurality of terminals extend to a standard connection position and are arranged in a row of equal height.
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to c, or a combination of two or more:
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to c, or a combination of two or more:
  • the electrical connector of the positive and negative two-way plugging wherein the base of the insulating base is superposed on the upper and lower seats, and the bases of the upper and lower bases are respectively provided with a joint surface .
  • the electrical connector of the forward and reverse bidirectional insertion wherein the at least one row of terminals is two rows, and the two rows of terminals are respectively fixed to the upper and lower seats.
  • the electrical connector of the forward and reverse two-way plug can be one of the following a to b:
  • At least one pair of upper and lower terminals are adjacent to each other in the same height and adjacent to each other, and the pair of terminals are the same circuit.
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to d, or a combination of two or more:
  • the pins of the plurality of terminals extend to a standard connection position and are arranged in a row of equal height.
  • the electrical connector of the forward and reverse bidirectional insertion wherein the at least one row of contacts are arranged according to the contact circuit number of the USB TYPE-C, but not the continuous contact circuit number.
  • the electrical connector of the forward and reverse bidirectional insertion wherein the row of contacts comprises two ground contacts, two power contacts, and a pair of signal contacts, wherein the two ground contacts are located at the outermost side and are bilaterally symmetric.
  • the power contacts are located inside the two ground contacts and are bilaterally symmetric.
  • the pair of signal contacts are adjacently arranged and located inside the two power contacts.
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to d, or a combination of two or more:
  • the middle portion of the extension portion of the terminal of the two ground contacts is later biased to the outside than the contact portion, and the middle portion of the extension portion of the terminal of the two power contacts is later biased to the outside than the contact portion;
  • extension of the terminal is gradually widened by the contact portion such that the width of the fixing portion and the pin is not less than the maximum width of the extension portion;
  • the fixing portions of the terminals on both sides of the row of terminals are flush with the two sides of the joint faces of the upper and lower seats.
  • the plate surface of the fixing portion of the terminal is horizontally upper and the lower body is fixed
  • the plate surface of the fixing portion is not lower than the joint surface
  • the electrical connector of the forward and reverse bidirectional insertion wherein the rear end of the insulating base does not have a pin for electrically connecting the terminal to the circuit board.
  • the electrical connector of the forward and reverse bidirectional insertion wherein the insulating base is positioned with a resistive element, and the resistive element directly electrically connects at least two terminals.
  • the electrical connector of the forward and reverse bidirectional insertion may be one of the following a to c, or a combination of two or more:
  • the at least one row of terminals includes a grounding terminal, a power terminal and a CC terminal arranged in sequence, the resistor component is electrically connected to the power terminal and the CC terminal, or the resistor component is electrically connected to the grounding terminal and the CC Terminal
  • the contact point on one side of the resistive element is elastically abutting the fixing portion of the at least two terminals
  • the contact of one side of the resistive element may be soldered with the solder paste to solder the at least two terminals.
  • the invention further provides a terminal and an elastic buckle of the electrical connector, comprising: a terminal, the terminal is bent with an extension portion and a fixing portion, and the extension portion is connected to the fixing portion a front end portion of the front end portion of the front end portion of the front end portion of the front end portion A buckle protruding in the left-right direction, the elastic arm can be elastically moved to the left and right, and the fixing portion of the elastic buckle is integrally connected to the fixing portion of the terminal.
  • the terminal of the electrical connector and the elastic buckle are further provided with a plurality of the terminals, and the terminals are continuously arranged at intervals.
  • the row of terminals and the elastic buckle are a sheet metal stamping structure, that is, stamping is completed.
  • the terminal of the electrical connector and the elastic buckle are further provided with another elastic buckle.
  • the elastic buckle is provided with a fixing portion and a spring arm.
  • the elastic arm is connected to the fixing portion at one end and extends forward and close. The other end is provided with a buckle protruding in the left and right direction.
  • the elastic arm can be elastically moved to the left and right.
  • the fixing portion of the elastic buckle is integrally connected to the fixing portion of the other terminal of the row of terminals.
  • the terminal of the electrical connector and the elastic buckle as described may be one of the following a to d, or a combination of two or more:
  • the extension portion of the terminal can be elastically bounced perpendicularly to the surface of the board, and the extension portion is curved to protrude the contact portion in the up and down direction;
  • the rear end of the fixing portion of the terminal is provided with a pin extending rearward;
  • the buckle of the elastic buckle is a plate thickness drawing extension to form a height greater than the thickness of the sheet.
  • the present invention has the following advantages:
  • At least one of the two rows of contact portions is vertically aligned and the plate faces of the pair of terminal bodies are directly engaged and abutted, thereby reducing the design of the circuit board and achieving structural simplification.
  • One of the rows of contact portions has at least one pair of symmetrically arranged contact portions and the fixed portions of the pair of terminals are electrically connected, thereby reducing the design of the circuit board and achieving structural simplification.
  • the insulating seat body is provided with an upper seat body and a lower seat body which are joined up and down, and can be assembled to the upper and lower seat bodies in the upper and lower directions of the two rows of terminals, thereby achieving assembly convenience.
  • the two elastic buckles are two metal sheets stacked, and the upper and lower plates are integrally connected to the grounding terminals on both sides of the row of terminals, so that the manufacturing convenience is achieved, and the grounding terminal can be guided by the elastic buckle Connect the metal casing.
  • the front portion of the abutting portion of the upper and lower seats is joined to form a frame body, and each of the portions is formed with a metal reinforcing plate, and the reinforcing plate is coupled to the connecting plate and the side plates.
  • the pins of the two rows of terminals are arranged in a row of equal height and are in the form of standard connecting pins, and the width of the pins can be wider than the fixing portion, which is beneficial to the manufacture of the terminals.
  • At least one pair of upper and lower terminals are adjacent to each other in the same height and adjacent to each other, and the pair of terminals are the same circuit, thereby reducing the design of the circuit board to achieve structural simplification.
  • the row of contact portions are arranged at unequal intervals, and the middle portion of the extension portion of at least two or more terminals is later biased outwardly than the contact portion, thereby achieving a better arrangement of the rows of terminals, as far as possible
  • the fixing portion and the pin of one terminal have a large plate surface width.
  • the elastic portion is integrally connected to the fixing portion of one terminal to achieve manufacturing convenience.
  • Figure 1 is an overall perspective assembled view of a first embodiment of the present invention.
  • Figure 2 is an exploded perspective view of the first embodiment of the present invention.
  • Figure 3 is a partial perspective assembled view of the first embodiment of the present invention.
  • Figure 4 is a reverse perspective exploded view of the first embodiment of the present invention.
  • Figure 5 is an exploded perspective view of the first embodiment of the present invention.
  • Figure 6 is a perspective view of two rows of terminals of the first embodiment of the present invention.
  • Figure 7 is a front cross-sectional view showing a first embodiment of the present invention.
  • Figure 8 is a side cross-sectional view showing a first embodiment of the present invention.
  • Fig. 9 is a side elevational cross-sectional view showing the upper and lower seats of the first embodiment of the present invention.
  • Figure 10 is a side cross-sectional view showing the first embodiment of the present invention plugged into an electrical connection base.
  • Figure 11 is a front cross-sectional view showing the electrical connection socket of the first embodiment of the present invention.
  • Figure 12 is a reverse perspective exploded view of a second embodiment of the present invention.
  • Figure 13 is an exploded perspective view showing a third embodiment of the present invention.
  • Figure 14 is a top plan view of the lower row of terminals of the fourth embodiment of the present invention.
  • Figure 15 is a top plan view of the upper row of terminals of the fourth embodiment of the present invention.
  • Figure 16 is a perspective view of a two-row terminal of a fifth embodiment of the present invention.
  • Figure 16A is a perspective view of a two-row terminal of a sixth embodiment of the present invention.
  • Figure 17 is a reverse perspective exploded view of a seventh embodiment of the present invention.
  • Figure 18 is a perspective view of a seventh embodiment of the present invention.
  • Figure 19 is a front cross-sectional view showing a seventh embodiment of the present invention.
  • Figure 20 is a side sectional view showing a seventh embodiment of the present invention.
  • Figure 21 is a side elevational cross-sectional view showing the upper and lower seats of the seventh embodiment of the present invention.
  • Figure 22 is a perspective view of an eighth embodiment of the present invention.
  • Figure 23 is a perspective view of a pair of power terminals of a ninth embodiment of the present invention.
  • Figure 24 is a perspective view of a terminal of a tenth embodiment of the present invention.
  • Figure 25 is an exploded perspective view showing an eleventh embodiment of the present invention.
  • Figure 26 is an exploded perspective view showing two rows of terminals of an eleventh embodiment of the present invention.
  • Figure 27 is a perspective view of two rows of terminals in an eleventh embodiment of the present invention.
  • Figure 28 is a side sectional view showing an eleventh embodiment of the present invention.
  • Figure 29 is a side sectional view showing a twelfth embodiment of the present invention.
  • Figure 30 is a side sectional view showing a thirteenth embodiment of the present invention.
  • Figure 31 is an overall perspective assembled view of a fourteenth embodiment of the present invention.
  • Figure 32 is a partial perspective assembled view of a fourteenth embodiment of the present invention.
  • Figure 33 is a partially exploded perspective view showing a fourteenth embodiment of the present invention.
  • Figure 34 is a front elevational view of a fourteenth embodiment of the present invention.
  • Figure 35 is a side sectional view showing a fourteenth embodiment of the present invention.
  • Figure 36 is an exploded perspective view showing the upper and lower seats of the fourteenth embodiment of the present invention.
  • Figure 37 is an exploded perspective view showing the upper and lower body assembly terminals of the fourteenth embodiment of the present invention.
  • Figure 38 is an exploded perspective view showing two rows of terminals of a fourteenth embodiment of the present invention.
  • Figure 39 is a perspective assembled view of two rows of terminals of a fourteenth embodiment of the present invention.
  • Figure 40 is a top plan view of the upper row of terminals of the fourteenth embodiment of the present invention.
  • Figure 41 is a top plan view of the lower row of terminals of the fourteenth embodiment of the present invention.
  • Figure 42 is a top plan view showing the two rows of terminals of the fourteenth embodiment of the present invention.
  • Figure 43 is a partially perspective assembled view of a fourteenth embodiment of the present invention.
  • Figure 44 is a perspective view showing the use state of the fourteenth embodiment of the present invention.
  • Figure 45 is a partial perspective assembled view of a fifteenth embodiment of the present invention.
  • Figure 46 is a perspective view showing the use state of the fifteenth embodiment of the present invention.
  • Figure 47 is an exploded perspective view showing two rows of terminals of a sixteenth embodiment of the present invention.
  • Figure 48 is a perspective assembled view of two rows of terminals of a sixteenth embodiment of the present invention.
  • Figure 49 is a partial perspective assembled view of a seventeenth embodiment of the present invention.
  • Figure 50 is a partially exploded perspective view showing an eighteenth embodiment of the present invention.
  • Figure 51 is a side sectional view showing an eighteenth embodiment of the present invention.
  • Figure 52 is a partial perspective assembled view of an eighteenth embodiment of the present invention.
  • Figure 53 is an exploded perspective view showing two rows of terminals of an eighteenth embodiment of the present invention.
  • Figure 54 is a perspective assembled view of two rows of terminals of an eighteenth embodiment of the present invention.
  • Figure 55 is a perspective view showing the use state of the eighteenth embodiment of the present invention.
  • Figure 56 is a side sectional view showing a nineteenth embodiment of the present invention.
  • Figure 57 is a side sectional view showing a twentieth embodiment of the present invention.
  • Figure 58 is an exploded perspective view of the abutting portion of the twenty-first embodiment of the present invention.
  • Figure 59 is a perspective assembled view of the butting portion of the twenty-first embodiment of the present invention.
  • Figure 60 is an exploded perspective view showing a twenty-second embodiment of the present invention.
  • Figure 60A is a perspective view of a resistive element of a twenty-second embodiment of the present invention.
  • Figure 61 is a partial perspective assembled view of a twenty-second embodiment of the present invention.
  • Figure 62 is a perspective assembled view of a twenty-second embodiment of the present invention.
  • Figure 63 is an exploded perspective view showing a twenty-third embodiment of the present invention.
  • Figure 64 is an exploded perspective view showing a twenty-fourth embodiment of the present invention.
  • Figure 65 is a partial perspective assembled view of a twenty-fourth embodiment of the present invention.
  • Figure 66 is an exploded perspective view showing a twenty-fifth embodiment of the present invention.
  • a first embodiment of the present invention is a bidirectional double-sided USB TYPE-C electrical connection male body, which is provided with an insulating base 10 , two rows of terminals 20 , a metal casing 30 , and two An elastic buckle 40 and a rear shield shell 70, wherein:
  • the insulative housing 10 is provided with a base 11 and a pair of connecting portions 12 .
  • the abutting portion 12 is disposed at the front end of the base 11 .
  • the abutting portion 12 is provided with two connecting plates 121 spaced apart from each other.
  • a connecting surface 122 is formed on the inner surface of the connecting surface 122.
  • a connecting groove 123 is formed between the two connecting surfaces 122.
  • the inner front surface of the two connecting plates 121 is provided with a lower surface 125 recessed from the connecting surface 122, so that the front side of the connecting groove 123 is formed.
  • the front plate 124 is disposed on both sides of the front portion of the two connecting plates 121 so that the front portion of the abutting portion 12 forms a frame and an opening 127 is formed on each side of the rear portion.
  • the insulating base 10 is provided with an upper body 101 and a lower base body 102 which are vertically joined.
  • the upper base body 101 is integrally provided with an upper half of the base 11 and an upper half of the abutting portion 12, and the lower base body 102 is integrally provided.
  • the lower half of the base 11 and the lower half of the abutting portion 12, the bases of the upper and lower base bodies 101, 102 are each provided with a joint surface 19 which is joined to each other and the upper seat body 101 is convexly rearward from the lower base body 102.
  • a platform 17 is provided.
  • the platform 17 is provided with a partition 171 divided into six equal-width grooves 172.
  • the inner surfaces of the upper and lower base bodies 101 and 102 are respectively recessed with a row of terminal slots 14 for self-limiting.
  • the rear end of the base 11 extends to the connecting surface 122 of the connecting plate 121.
  • the terminal groove 14 of the base 11 is recessed in the joint surface, and the terminal groove 14 of the connecting plate 121 is recessed on the connecting surface 122.
  • the joint surface 19 is recessed and provided with a groove 18 in the left-right direction and communicates with the middle five terminal slots 14.
  • the groove 18 is deeper than the communicating terminal groove 14, and the joint faces 19 of the upper and lower base bodies 101 are respectively provided with a side.
  • the card slot 116, the front portion of the abutting portion 12 of the upper and lower base bodies 101, 102 is joined to form a frame body, and each portion is embedded with a metal reinforcing plate 45.
  • the reinforcing plate 45 is coupled to the connecting plate 121 and the side plates 124.
  • the two rows of terminals 20 are the upper row of seven lower rows of five, and each of the terminals 20 is a metal plate.
  • the plate surface stamping and bending plate is provided with an extending portion 21 and a fixing portion 22, and the two rows of terminals 20 are respectively upward and downward.
  • the assembly card is defined by a row of terminal slots 14 of the upper and lower bases 101 and 102.
  • the fixing portion 22 is provided with a locking portion 221 and a terminal slot 14 of the base 11 to form a front and rear limit locking and the fixing portion 22
  • the plate surface is substantially flush with the joint surface 19, and the extending portion 21 is connected to the front end of the fixing portion 22 and extends to the abutting portion 12 and is provided with a contact portion 24 protruding from the connecting surface 121.
  • the extending portion 21 can be perpendicular to the board surface.
  • the upper end of the extending portion 21 is spring-loaded, and the middle portion of the extending portion 21 is pressed against the point 211 to be pressed against the bottom surface of the terminal groove 14 of the connecting plate 121 and is offset from the middle portion.
  • the contact portion 24 is bent obliquely forward by the point 211 to form the connecting portion 121.
  • the rear end of the fixing portion 22 of the partial terminal 20 integrally connects a pin 23 to the recess 172 of the platform 17.
  • the fixing portion 22 of each terminal 20 has a high overflow.
  • the terminal groove 14 is bent obliquely.
  • the fixing portion 22 of each terminal 20 is the upper portion.
  • the joint faces 19 of the lower seats 101 and 102 abut against the flattening and are fixed in the up-and-down direction.
  • the fixing portion 22 of each terminal 20 receives the pressure which is flattened toward the terminal groove 14 to make the middle portion of the extending portion 21
  • the overflow pressure is pressed against the bottom surface of the terminal slot 14 of the connecting plate 121, so that the two rows of terminals 20 can make the contact portion 24 protrude from the connecting surface 12 with the middle portion abutting point 211 as a reference. Have the same protruding height.
  • the contact portions 24 of the two rows of terminals are arranged according to the contact circuit number of the USB TYPE-C. However, they are not arranged in consecutive contact circuit numbers, so they are arranged at unequal intervals. In design, the upper and lower rows of terminals 20 are used as much as possible. The area of the joint surface 19 of the upper and lower base bodies 101, 102 is arranged such that the fixing portion 22 and the pin 23 have a wider plate surface. Please refer to FIGS. 4 to 7 for the contact portion 24 of the two rows of terminals 20.
  • the serial number of the contact circuit is reversely arranged in reverse order, and the upper and lower rows are respectively distinguished by A and B, that is, as shown in FIG.
  • the upper row of terminals are from right to left, A1, A4, A5, A6, A7, A9, A12, the lower row of terminals are B12, B9, B5, B4, B1 from right to left, so the contact portions 24 and the body of the four pairs of terminals 20 of A1-B12, A4-B9, A9-B4 and A12-B1 are vertically aligned.
  • the same contact circuit number of the two rows of terminals is the same circuit, and the serial circuit of the same row of terminals is also the same circuit.
  • the upper rows such as A1 and A12 are ground terminals, and A4 and A9 are power terminals.
  • the lower rows such as B1 and B12 are ground terminals, B4 and B9 are power terminals, and the upper row is provided with A6 and A7 pairs of signal terminals.
  • Upper and lower rows of terminals A5 and B5 are all CC, the contact portion of the ground terminal such as ground contacts, The contact portions of the power terminals are power contacts, and the contact portions of the CC terminals are CC contacts.
  • the two rows of contact portions of the embodiment are upper 7 and lower 5, which are of a charging type.
  • the rear end of the insulating base 10 does not have a pin 23 for electrically connecting the two rows of terminals 20 to the circuit board.
  • the upper and lower base bodies 101, 102 are joined and the metal casing 30 is sleeved. After the positioning, the plate faces of the fixing portions 22 of the four pairs of terminals 20 are superposed and abutted to form an electrical connection, and the groove 18 of the upper body 101 is assembled with a guiding piece 28, and the guiding piece 28 is bent at both ends.
  • the protruding abutting points 281 respectively lead to the fixing portions 22 of A4 and A9, such that the power terminals of A4 and A9, B4 and B9 form an electrical connection, and only the pins 23 of the A9 extend rearward to the rear of the platform 17 as a standard connection. Pins, the remaining pins A4, B4 and B9 are only located in the front of the platform, as shown in Figure 6, where A4, B9 and A9, B4 are stacked and designed to grow short pins 23, and the short legs are A notch 231 is provided to facilitate welding.
  • the metal casing 30 is disposed outside the insulating base 10 and is provided with a four-boil main casing 31.
  • the four-boil main casing 31 is stamped and bent by a metal sheet, and is engaged only by the lower joint.
  • Each of the board faces of 31 has no opening at all, and the four main bread shells 31 enclose the mating portion 12 and form a pair of joints.
  • the shape of the mating structure can be positioned in a positive and negative double-sided docking position on an electrical connection base.
  • Two positioning plates 32 are connected to the rear end of the four main bread shells 31.
  • the two positioning plates 32 are provided with a locking hole 33 and a locking block 16 on the base 11 for locking.
  • the two elastic buckles 40 are assembled and fixed on the two sides of the base 11 of the insulating base 10 .
  • the elastic buckles 40 are formed by stacking two metal plates.
  • the upper plate piece is a piece of metal plate stamping structure, that is, the upper row of terminals and the upper plate of the two elastic buckles are connected by a strip, the board surface of the upper row of terminals 20 and the two elastic cards are completed when the stamping is completed.
  • the board faces of the upper plate of the buckle 40 are unfolded in a plane, and the fixing portions 22 of the terminals A1 and A12 of the upper row of terminals 20 are integrally connected to the upper plate of the two elastic buckles 40.
  • the bottom plate of the terminal 20 and the two elastic buckles 40 is a metal plate stamping structure, that is, the lower row of the terminal and the lower plate of the two elastic buckles are connected by a tape when the punching is completed, the lower row
  • the board surface of the terminal 20 and the board surface of the lower board of the two elastic buckles 40 are unfolded in a plane, and the fixing portions 22 of the terminals B12 and B1 on both sides of the lower row of terminals 20 are integrally connected to the two elastic cards.
  • the elastic buckle 40 is provided with a fixing portion 41 and a spring arm 42, and the fixing portion 41 is locked on the upper side, a latching groove 116 of the engaging surface 19 of the base 101, the elastic arm 42 is connected to the fixing portion 41 at one end and extends forwardly to the connecting groove 123, and the other end is provided with a buckle 43 protruding toward the terminal 20, the two elastic buckles
  • the buckles 43 are located on both sides of the connecting groove 123 and can be bounced left and right.
  • the elastic arm 42 is provided with a middle abutting point 421 protruding from the opening 127 of the abutting portion 12 to absorb the pressure.
  • the metal casing 30 is configured such that the ground terminals A1, A12, B1, and B12 integrally connecting the two elastic buckles 40 are also connected to the metal casing 30 to form a ground. Therefore, the ground terminals A1, A12, B1, and B12 need not be Extend a pin afterwards.
  • the rear shield shell 70 covers the insulating base 10 and the rear portion of the metal shell 30.
  • the rear shield shell 70 is an upper casing 71 and a lower casing 72 that are locked to each other.
  • the power terminals of the two rows of terminals of the present embodiment are electrically connected to each other and the ground terminals of the two rows of terminals are electrically connected to each other and electrically connected to the metal casing 30 by abutting each other.
  • the two rows of terminals do not need to be connected in series by a circuit board, so the design of the circuit board can be reduced, the simplification of the structure is achieved, and the number of pins of the bonding wire is reduced, and only the terminals A5, A6, A7, and A9 are used in this embodiment.
  • the pin 23 of the B5 extends rearward to the rear portion of the platform 17 as a standard connecting pin for the bonding wire.
  • the five pins 23 are arranged in a row with the same height and are in the standard connecting position, and the width of the pin 23 can be It is wider than the fixing portion 22, which is advantageous for terminal manufacturing.
  • FIG. 10 is a side view of the electrical connection between the male connector and the USB TYPE-C electrical connection female socket 90.
  • the USB TYPE-C electrical connection female base 90 is provided with an insulating seat. 91.
  • the center of the front end of the insulating seat 91 is convexly provided with a tongue 911.
  • the rear section of the tongue 911 is thicker than the front section, and the metal casing 92 covers the insulating seat 91.
  • the front portion is formed with a connecting groove 95.
  • the tongue plate 911 is located at a central height of the connecting groove 95.
  • the upper and lower surfaces of the tongue plate 911 form a symmetrical space.
  • the two rows of terminals 93 respectively expose the contact portion 931 at the upper and lower faces of the front portion of the tongue plate 911.
  • the contact circuit numbers of the two rows of terminals 93 are arranged in reverse order with each other.
  • the upper row of terminals are A1, A2, A3 Vietnamese A12 from right to left, and the lower row terminals are B1, B2 from right to left. B3;B12.
  • the male butt jointing structure of the present embodiment can be inserted into the connecting groove 95 of the female seat in the forward and reverse directions, and the contact portions 24 of the male and female terminals 20 are respectively corresponding to the upper and lower contact portions 931 of the front plate 911 electrically connected to the female seat.
  • the tongue plate 911 of the female seat is fitted with the connecting groove 123 of the male head.
  • the present invention has the following advantages:
  • At least one of the two rows of contact portions is vertically aligned and the plate faces of the pair of terminal bodies are directly engaged and abutted, thereby reducing the design of the circuit board and achieving structural simplification.
  • One of the rows of contact portions has at least one pair of symmetrically arranged contact portions and the fixed portions of the pair of terminals are electrically connected, thereby reducing the design of the circuit board to achieve structural simplification.
  • the insulating base 10 is provided with an upper body 101 and a lower base 102 which are vertically joined to each other, so that the two rows of terminals 20 can be assembled to the upper and lower seats 101 and 102 respectively in the up-down direction, thereby achieving assembly convenience. .
  • the two elastic buckles 40 are two metal sheets stacked, and the upper and lower plates are integrally connected to the grounding terminals on both sides of the row of terminals 20, so that the manufacturing convenience is achieved, and the grounding terminals A1, A12, and B1 are obtained.
  • the B12 can be connected to the metal casing by an elastic buckle.
  • the front portion of the abutting portion 12 of the upper and lower base bodies 101 and 102 is joined to form a frame body, and each of the portions of the frame portion is formed with a metal reinforcing plate 45.
  • the reinforcing plate 45 is connected by the connecting plate 121 and the two side plates 124. .
  • the pins 23 of the two rows of terminals are arranged in a row with the same height and are in the standard connecting positions, and the width of the pins 23 can be wider than the fixing portion 22, which is advantageous for the terminal manufacturing.
  • FIG. 12 it is a second embodiment of the present invention, which is substantially the same as the first embodiment.
  • the difference is that the rear end of the fixed portion of the A1 terminal is connected with a pin 23 extending rearward to the rear portion of the platform.
  • the pins 23 of the six standard connection pins are arranged in a row with the same height.
  • a third embodiment of the present invention is substantially the same as the second embodiment.
  • the difference is that the two elastic buckles 40 are single metal plates, and the terminals A1 and A12 of the upper row of terminals 20 are The fixing portion 22 is integrally connected to the two elastic buckles 40.
  • the fixing portions 22 of the terminals B12 and B1 of the lower row of the terminals 20 are integrally connected to the two abutting elastic pieces 46.
  • the two abutting elastic pieces 46 are provided with an outward convexity near the free end.
  • the contact 461 is elastically abutted against the metal casing 30.
  • the two abutting elastic pieces 46 can further ensure that the metal casing 30 is grounded. Since the two elastic buckles 40 are a single metal plate, the buckle 43 It is a plate thickness drawing extension to form a height greater than the thickness of the sheet.
  • a fourth embodiment of the present invention is substantially the same as the third embodiment, except that the extension portion 21 of the two rows of terminals 20 is widened after the contact portion 24, and the fixing portion is Both the 22 and the pin 23 are not smaller than the maximum width of the extension 21.
  • FIG. 16 which is a fifth embodiment of the present invention, which is substantially the same as the fourth embodiment, the difference is that the two rows of terminals 20 are provided with the pins 23 of the same length, which is more advantageous for the stamping manufacture of the continuous terminals.
  • Each terminal has a pin 23 of the same length to connect the tape, and the pins 23 of the terminals B1, B4, B9, and B12 are provided with through holes 233 for welding with A12, A9, A4, and A1, respectively. Pick up.
  • a sixth embodiment of the present invention is substantially the same as the fifth embodiment.
  • the difference is that the board surface of the two elastic buckles 40 is vertically connected to the fixing portions of the terminals A1 and A12.
  • the elastic arm 42 of the elastic buckle 40 is elastically perpendicular to the plane of the board, and the height of the buckle 43 can be greater than the thickness of the sheet.
  • a seventh embodiment of the present invention is a bidirectional single-sided USB TYPE-C electrical connection male, which is substantially the same as the first embodiment, except that only one row of terminals 20 is provided. That is, the terminals A1, A4, A5, A6, A7, A9, and A12 are assembled in the terminal slot 14 of the upper body 101. Therefore, the lower base 102 is not provided with the terminal slot assembly terminal, but the base is also provided with the joint surface 19 and the upper seat.
  • the joint faces 19 of the bases of the body 101 are joined to each other and are pressed against the row of terminals 20, and the terminal A1 is provided with a pin 23, which is a row of five pins 23 of equal height and equal length.
  • the two elastic buckles 40 are a single metal plate, so the buckle 43 is a plate thickness drawing extension to form a height greater than the thickness of the plate.
  • FIG. 22 it is an eighth embodiment of the present invention, which is substantially the same as the seventh embodiment.
  • the difference is that the terminal A1 is not provided with a pin.
  • a row of four pins 23 are of equal height and equal length. It is a standard connection pin.
  • a ninth embodiment of the present invention is substantially the same as the above embodiments, except that the fixing portions 22 of the terminals A4 and A9 are integrally connected to a guiding piece 28 extending in the left-right direction, and the terminals A4 and A9 are connected. Only one of them has a pin 23 of a standard connection pin.
  • FIG. 24 it is a tenth embodiment of the present invention, which is substantially the same as the above-mentioned various embodiments. The difference is that the side of the pin 23 of the terminal 20 is vertically bent and provided with a piercing piece 232.
  • an eleventh embodiment of the present invention is a bidirectional double-sided USB TYPE-C electrical connection male body, which is provided with an insulating base 10, two rows of terminals 20, and a metal casing 30.
  • the second elastic buckle 40 and a rear shielding shell (not shown) are substantially the same as the second embodiment and the third embodiment, and the difference is:
  • the insulating base 10 is provided with a base 11 and a pair of connecting portions 12.
  • the base 11 is provided with an upper base 111 and a lower base 112.
  • the rear portion of the base 11 is higher than the front portion.
  • the upper base 111 protrudes rearward from the lower base 112 by a length.
  • the front end of the base 11 is provided with a socket portion 117.
  • the abutting portion 12 has a sleeve body and the rear end sleeves the base 11 a connecting portion 117 of the front end, the connecting portion 12 is provided with two connecting plates 121 which are vertically spaced apart from each other, and the inner surfaces of the two connecting plates 121 are provided A connecting surface 122 is formed between the two connecting surfaces 122.
  • the two connecting surfaces are respectively provided with a row of recessed terminal slots 14.
  • the inner front sections of the two connecting plates 121 are provided with a lower recess than the connecting surface 122.
  • the front surface of the connecting groove 123 is higher than the rear portion.
  • the front plate 124 is disposed on both sides of the front portion of the connecting plate 121 to form a frame on the front portion of the connecting portion 12 and an opening is formed on each side of the rear portion. 127.
  • the two rows of terminals 20 are the upper row of seven lower rows of five, each of the terminals 20 is a metal plate.
  • the plate surface stamping and bending plate is provided with an extending portion 21, a fixing portion 22 and a pin 23, and the two rows of terminals
  • the upper and lower bases 111 and 112 are respectively embedded and fixed, and the fixing portion 22 is embedded and fixed to the base.
  • the extending portion 21 is connected to the front end of the fixing portion 22 and extends to the butting portion 12 and is provided with a
  • the connecting portion 24 protrudes from the connecting surface 121.
  • the extending portion 21 can be elastically pulled up and down perpendicularly to the board surface, and the middle portion of the extending portion 21 abuts against the connecting plate 211.
  • the bottom surface of the terminal groove 14 of the 121 is obliquely bent forward from the middle abutting point 211 to form the contact portion 24 protruding from the connecting surface 121.
  • the pin 23 is connected to the rear end of the fixing portion 22 and extends rearward to expose the base. Block 11 outside.
  • the two rows of terminals 20 are substantially similar to the second embodiment, and the short and short pins 23 are flatly attached to each other, and are soldered to the notches 231 of the shorter pins 23 in a row.
  • the pins 23 of the six standard connecting pins are flatly exposed below the rear section of the upper base 11 to weld the wires.
  • the two elastic buckles 40 are disposed in the same manner as the third embodiment, and are respectively integrally connected to the two terminals A1 and A12 of the upper row of terminals 20, and the two elastic buckles 40 are also a single metal plate, and the buckle 43 is a plate. Thick drawing extension to form a height greater than the thickness of the sheet.
  • FIG. 29 it is a twelfth embodiment of the present invention, which is substantially the same as the eleventh embodiment, except that a row of pins of a standard connection pin of the two terminals protrudes from the rear end of the base 11.
  • FIG. 30 it is a thirteenth embodiment of the present invention, which is substantially the same as the eleventh embodiment, except that the extension portion 21 of the two-terminal terminal 20 has no middle portion abutting point against the terminal slot 14 of the connecting plate. Bottom surface.
  • FIG. 31 to FIG. 44 it is a fourteenth embodiment of the present invention, which is substantially the same as the first embodiment and the sixth embodiment, and the difference is:
  • the front surface of the two connecting plates 121 of the abutting portion 12 of the insulating base 10 is provided with a recess 128.
  • the recess 128 is provided with two openings 129.
  • the two recesses 128 are respectively provided with a grounding piece 60.
  • the grounding strip 60 is provided.
  • Two contact portions 61 and two contact elastic pieces 62 are provided, and the two contact portions 61 protrude from the opening 129 to the connecting groove In the front section of 123, the two contact elastic pieces 62 elastically contact the metal outer casing 30.
  • the two rows of terminals 20 are four lower rows of four lower rows, and the lower row of terminals are not provided with CC terminals B5, and only one pair of left and right symmetrical ground terminals B1 and B12 and a pair of left and right symmetrical power terminals B4 and B9 are provided.
  • the row terminals 20 are provided with pins 23 of normal connection pins.
  • the contact points 24 of the two rows of terminals 20 are vertically aligned and the plate faces of the fixing portions 22 of the four pairs of terminals of the same circuit abut each other and the pins 23
  • the two pairs of terminals are adjacent to each other in the same height, and the four pairs of terminals are two pairs of ground terminals A1-B12 and A12-B1 as shown in FIG. 39 and FIG.
  • the pins 23 are jaggedly engaged, and may not abut a seam or abut each other. As shown in FIG. 43, the pins 23 of each pair of upper and lower terminals are placed in parallel on a groove 172 of the platform 17. The width of the pins 23 of each pair of upper and lower terminals is substantially the same as the width of the pins of other independent circuits (such as CC terminal A5, signal terminals A6, A7), as shown in FIG. 44, when soldering is applied to the solder 87.
  • the pins 23 of the pair of upper and lower terminals are electrically connected, and the two pairs of ground terminals A1-B12 and A12-B1 can be transmitted in use.
  • the design of the wire requires soldering or not soldering. If the wire is not soldered, the pins 23 of the pair of upper and lower terminals are also soldered with solder 87.
  • the upper row of terminals 20 and the two elastic buckles 40 are a sheet metal sheet stamping structure. When the stamping is completed, the strips are connected by a strip 81.
  • the board surface of the upper row of terminals 20 and the board surface of the two elastic clips 40 are both The unfolded planes do not overlap at all; the lower row of terminals 20 and also a sheet metal sheet stamping structure are connected by a strip 81 when the stamping is completed.
  • the two pairs of power terminals A4-B9 and A9-B4 of the present embodiment are not electrically connected by the guide tabs.
  • the contact portions of the two rows of terminals are arranged according to the contact circuit number of the USB TYPE-C. However, they are not arranged in consecutive contact circuit numbers, so they are arranged at unequal intervals. In design, the upper and lower rows of terminals 20 are used as much as possible.
  • the area of the joint surface 19 of the lower bases 101 and 102 is arranged such that the fixing portion 22 and the pin 23 of each terminal 20 have a large board width as much as possible, and the extending portion 21 of the terminal 20 is rearward from the contact portion 24.
  • the width of the fixing portion 22 and the pin 23 is not wider than the maximum width of the extending portion 21, and the fixing portion 22 to the pin 23 of the upper row of terminals 20 are substantially equidistantly spaced, and the extension of the upper row of terminals
  • the terminal portion 24 is gradually widened by the contact portion 24, and the terminal portion of the upper portion of the extension portion 21 of the upper row of terminals is substantially the same as the terminal structure of the pin 23.
  • the middle row of the extension terminals 21 of the other terminals except the intermediate signal terminal A6 are later biased outward than the contact portion 24, the two ground terminals A1, A12 and the two power terminals A4,
  • the middle portion of the extension portion 21 of A9 has a larger amplitude toward the outer side than the contact portion 24 and has a splayed shape.
  • the two ground terminals B1 and B12 of the lower row terminal and the middle portion of the extending portion 21 of the two power source terminals B4 and B9 are also larger in the outer side than the contact portion 24, and have a splayed shape.
  • FIG. 45 and FIG. 46 it is a fifteenth embodiment of the present invention, which is substantially the same as the sixth embodiment and the fourteenth embodiment.
  • one row of pins of the embodiment has five vertical members.
  • a straight lancet 232 wherein the upper row of terminals, wherein the side of the plate 23 of the terminals A5, A6, A7 is vertically bent, is provided with a piercing piece 232, and the surface of the pin 23 of the terminal A4, A9 A through hole 233 is provided.
  • the bottom row of the terminal of the terminals B4 and B9 is vertically bent and provided with a piercing piece 232.
  • the upper row of terminals is stamped and manufactured by a metal plate.
  • the stamped and bent terminals A4 and A9 are connected to a strip 81, and the other metal sheet stamping and bending terminals A1, A5, A6, A7, A12 and the two elastic buckles 40 are connected to a strip 81, and the lower row of terminals can be
  • the metal plate stamping and bending terminals B1, B4, B9 and B12 are connected to a strip 81. After the two rows of terminals 20 are combined, the fixing portions 22 of the terminals A1-B12, A4-B9, A9-B4 and A12-B14 are connected.
  • the upper and lower sides of the foot are overlapped and abutted, and the piercing pieces 232 of the terminals B4 and B9 respectively pass through the through holes 233 of the A9 and A4, thereby forming a row of five piercing pieces 232 arranged in a row.
  • Displacement Connector wire The upper and lower sides of the foot are overlapped and abutted, and the piercing pieces 232 of the terminals B4 and B9 respectively pass through the through holes 233 of the A9 and A4, thereby forming a row of five piercing pieces 232 arranged in a row.
  • Displacement Connector wire Displacement Connector wire.
  • FIG. 49 it is a seventeenth embodiment of the present invention, which is substantially the same as the fourteenth embodiment.
  • the embodiment is a soldering plate type, and the rear side of the positioning plate 32 of the rear side of the metal casing 30 is respectively A vertical card 34 is provided.
  • the two cards 34 are locked to the card holes of the circuit board.
  • the row of pins 23 are soldered to a row of pads of the circuit board.
  • FIG. 50 to FIG. 55 it is an eighteenth embodiment of the present invention, which is substantially the same as the eleventh embodiment and the fourteenth embodiment, and the difference is that the two rows of terminals 20 of the embodiment are like the eleventh implementation.
  • the upper and lower bases 111 and 112 are respectively embedded in the insulating base.
  • the insulating base is also provided with the abutting portion 12 sleeved on the front end of the base 11.
  • the pins 23 of the two rows of terminals 20 are as described in the fourteenth.
  • the two pairs of grounding terminals A1-B12 and A12-B1 and the two pairs of power terminals A4-B9 and A9-B4 are arranged as shown in Fig.
  • the pins 23 of each pair of upper and lower terminals are adjacent to each other in the same height and adjacent.
  • the plates of the fixing portions 22 of each pair of upper and lower terminals do not abut each other, as shown in FIG. 52, and the pins 23 of each pair of upper and lower terminals are placed side by side.
  • a groove 172 of the platform 17, the width of the pins 23 of each pair of upper and lower terminals is substantially the same as the width of the pins of the terminals of other independent circuits (such as CC terminal A5, signal terminals A6, A7), as shown in FIG.
  • the solder 87 is soldered to the wire 85, the pins 23 of the pair of upper and lower terminals are electrically connected.
  • the two pairs of ground terminals A1-B12 and A12-B1 can be soldered according to the design requirements of the transmission line or
  • the wires are not welded, and if the wires are not welded, the pins 23 of the pair of upper and lower terminals are also soldered with solder 87.
  • FIG. 56 it is a nineteenth embodiment of the present invention, which is substantially the same as the eighteenth embodiment.
  • the difference is that the two rows of terminals 20 are respectively buried on the upper and lower bases 111 and 112 of the insulating base. Thereafter, the fixing portions 22 of the two rows of terminals 20 expose the joint faces 19 of the upper and lower bases 111, 112, and the plate faces of the fixing portions 22 are provided with convex portions 222 protruding from the joint faces 19, such that A1-B12 and A12-
  • the two pairs of ground terminals of B1 and the fixing portions 22 of the two pairs of power terminals of A4-B9 and A9-B4 can ensure mutual contact with each other by the convex portion 222.
  • 57 is a twentieth embodiment of the present invention, which is substantially the same as the nineteenth embodiment, and the difference is that the two pairs of ground terminals A1-B12 and A12-B1 and two pairs A4-B9 and A9-B4
  • the plate surface of the fixing portion 22 of the power terminal is provided with a spring piece 223 that protrudes from the joint surface 19, and the elastic piece 223 ensures elastic contact with each other.
  • FIG. 58 and FIG. 59 it is a twenty-first embodiment of the present invention, which is substantially the same as the eighteenth embodiment. The difference is that the abutting portion 12 of the insulating base is a top seat 1201 and a lower seat 1202. Made up.
  • FIG. 60 to FIG. 62 it is a twenty-second embodiment of the present invention, which is substantially the same as the fourteenth embodiment.
  • the difference is that a resistor element 80 is disposed in the insulating base 10 of the embodiment.
  • the resistor element 80 is directly electrically connected to at least two terminals.
  • the lower base body 102 is provided with a recess 110 recessed in the joint surface.
  • the resistor element 80 is positioned on the recess 110.
  • the two joints 81 on one side of the resistive element 80 are overlapped.
  • the terminals A5 and B9 are electrically connected to the fixing portion 22 of the terminals A5 and B9.
  • the two contacts 81 can also be coated with the fixing portions 22 of the solder paste soldering terminals A5 and B9 to ensure electrical connection.
  • the pins 23 of the terminals A4 and B9 are juxtaposed. a recess 172, the resistor element 80 is electrically connected to the terminal A5 and the terminals B9, A4, the terminal A5 is a CC terminal, the terminals B9, A4 are power terminals, and the resistor element 80 is provided for control The charging direction and the direction in which the male plug is inserted.
  • the resistive component 80 is electrically connected to the power source.
  • Terminals B9 and A4 and the CC terminal A5 can reach the current input, that is, the current is connected by the USB TYPE-A electrical connector to the USB TYPE-C electrical connection male connector.
  • the USB TYPE-A is electrically connected to the male connector
  • the USB is connected.
  • TYPE-C is connected to the male to the mobile phone, which is the operating mode for charging the mobile phone to the mobile phone.
  • FIG. 63 it is a twenty-third embodiment of the present invention, which is substantially the same as the twenty-second embodiment, and the difference is that the fixing portion 22 of the terminals A5 and B9 of the embodiment is provided with a protruding elastic piece 25.
  • the two contacts on one surface of the resistive element 80 are elastically abutted, and the terminals A5 and B9 are electrically connected to the resistive element 80.
  • FIG. 64 and FIG. 65 it is a twenty-fourth embodiment of the present invention, which is substantially the same as the twenty-second embodiment, and the difference is that the two contacts 81 on one side of the resistive element 80 of the present embodiment are overlapped.
  • the fixing portions 22 of the terminals A5 and B12 are electrically connected, and the pins 23 of the terminals A1 and B12 are juxtaposed to a recess 172. Therefore, the resistive element 80 is electrically connected to the terminal A5 and the terminals B12 and A1 due to the terminal A5.
  • the terminal A4 and the terminal B9 are arranged between the terminal B12 and the terminal B12.
  • the rear portion of the fixing portion 22 of the terminal B12 is provided with a convex portion 26 protruding toward the terminal A5, and the rear portion of the fixing portion 22 of the terminal B9 is bent above the convex portion 26. Therefore, the resistor element 80 is not touched, the terminal A5 is a CC terminal, and the terminals B12 and A1 are ground terminals.
  • the resistor element 80 is electrically connected to the ground terminal A1 and the CC terminal A5 to achieve current output, that is, current is by USB TYPE- C electric connection male output to USB TYPE-A electrical connection male.
  • the one end of the extension cable is the USB TYPE-C electrical connection male body of the embodiment and the other end is not limited to a USB TYPE-A electrical connection male connector, it can also be a MICRO USB electrical connector, which is also used in the same manner. Twenty-second to twenty-fourth embodiments.
  • the resistor element 80 is electrically connected to the CC terminal and the power terminal, or the resistor element is electrically connected to the ground terminal and the CC terminal.
  • FIG. 66 it is a twenty-fifth embodiment of the present invention, which is substantially the same as the twenty-second embodiment, and the difference is that the joint surface 19 of the upper body 101 of the insulating base 10 of the present embodiment is recessed.
  • Two left and right grooves 18, the rear groove 18 communicates with the middle five terminal slots 14, and the increased front groove 18 is a terminal groove that communicates all seven terminal slots 14 and the two grooves 18 are relatively connected.
  • 14 is deep, and the front groove 18 is provided with a long guiding piece 28', and the two ends of the guiding piece 28' are bent and protruded.
  • the abutment point 281 leads to the fixing portions 22 of A1 and A12, respectively, such that the ground terminals such as A1 and A12, B1 and B12 form an electrical connection.
  • the upper seat and the lower seat of the insulating seat body of the above embodiments may be locked by the drawer type front and rear sliding, and the upper seat and the lower seat body may be joined together by high frequency and high frequency. .

Landscapes

  • Coupling Device And Connection With Printed Circuit (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Abstract

L'invention concerne un connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, comprenant : un corps de base isolant (10) pourvu d'une base (11) et d'une portion d'accueil (12) ; au moins une rangée de bornes (20), les surfaces des pièces en métal étant coudées pour être pourvues de portions de prolongement (21) et de portions de fixation (22), les portions d'extension étant connectées aux extrémités avant des portions de fixation, s'étendant vers la portion d'accueil et étant pourvues de portions de contact (24) situées sur une surface de raccordement de la portion d'accueil ; un boîtier métallique (30) disposé à l'extérieur du corps de base isolant et pourvu d'une enveloppe de recouvrement principale à quatre surfaces qui recouvre la portion d'accueil, ladite enveloppe et ladite portion formant une structure d'accueil. Le corps de base isolant est pourvu d'un corps de base supérieur (101) et d'un corps de base inférieur (102) qui sont en prise verticalement, le corps du corps de base supérieur étant pourvu d'une moitié supérieure de base et d'une moitié supérieure de portion d'accueil, le corps du corps de base inférieur étant pourvu d'une moitié inférieure de base et d'une moitié inférieure de portion d'accueil, les bases des corps de base supérieur et inférieur étant chacune pourvues d'une surface de mise en prise servant à la prise mutuelle, une surface intérieure d'au moins l'un des corps de base supérieur et inférieur étant pourvue d'une rangée de rainures à bornes (14), l'au moins une rangée de bornes étant assemblée verticalement dans l'au moins une rangée de rainures à bornes, les portions de fixation des bornes et les rainures à bornes des bases étant limitées à l'avant et à l'arrière, les surfaces de combinaison des corps de base supérieur et inférieur se combinant l'une avec l'autre de manière à limiter l'au moins une rangée de bornes dans la direction verticale.
PCT/CN2016/083424 2015-05-26 2016-05-26 Connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, et borne et élément de fixation élastique de celui-ci WO2016188445A1 (fr)

Applications Claiming Priority (8)

Application Number Priority Date Filing Date Title
CN201520345899 2015-05-26
CN201520345899.0 2015-05-26
CN201510322998 2015-06-12
CN201510322998.1 2015-06-12
CN201510495598.0 2015-08-13
CN201510495598 2015-08-13
CN201510565544.7 2015-09-08
CN201510565544.7A CN106207635B (zh) 2015-05-26 2015-09-08 正反双向插接的电连接器及其端子和弹性卡扣

Publications (1)

Publication Number Publication Date
WO2016188445A1 true WO2016188445A1 (fr) 2016-12-01

Family

ID=57392227

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/083424 WO2016188445A1 (fr) 2015-05-26 2016-05-26 Connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, et borne et élément de fixation élastique de celui-ci

Country Status (1)

Country Link
WO (1) WO2016188445A1 (fr)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107834269A (zh) * 2017-11-01 2018-03-23 深圳市创益通技术股份有限公司 连接座
CN109256643A (zh) * 2018-11-07 2019-01-22 温州意华接插件股份有限公司 高速连接器模组
CN109672047A (zh) * 2017-10-16 2019-04-23 广东皓英电子科技有限公司 插头连接器
CN109888537A (zh) * 2017-12-06 2019-06-14 日本航空电子工业株式会社 连接器及电缆线束
CN112768988A (zh) * 2020-12-29 2021-05-07 东莞市思索连接器有限公司 一种铆焊结合式防水连接器母座构造及其组装方法
CN114327112A (zh) * 2020-09-30 2022-04-12 宸美(厦门)光电有限公司 电子装置及电子装置制造方法

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202025879U (zh) * 2010-11-22 2011-11-02 华为终端有限公司 Usb a型公口接头及其电子产品
CN202817394U (zh) * 2012-07-25 2013-03-20 东莞广迎五金塑胶制品有限公司 Usb公头连接器改良结构
CN204118317U (zh) * 2014-10-15 2015-01-21 昆山全方位电子科技有限公司 具有侧弹片的usb 3.1 插座连接器
CN104795658A (zh) * 2015-03-26 2015-07-22 李亚飞 一种可正反方向对插的usb插座及其制作方法
CN204577669U (zh) * 2015-05-18 2015-08-19 上海天诚通信技术有限公司 电连接器

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202025879U (zh) * 2010-11-22 2011-11-02 华为终端有限公司 Usb a型公口接头及其电子产品
CN202817394U (zh) * 2012-07-25 2013-03-20 东莞广迎五金塑胶制品有限公司 Usb公头连接器改良结构
CN204118317U (zh) * 2014-10-15 2015-01-21 昆山全方位电子科技有限公司 具有侧弹片的usb 3.1 插座连接器
CN104795658A (zh) * 2015-03-26 2015-07-22 李亚飞 一种可正反方向对插的usb插座及其制作方法
CN204577669U (zh) * 2015-05-18 2015-08-19 上海天诚通信技术有限公司 电连接器

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109672047A (zh) * 2017-10-16 2019-04-23 广东皓英电子科技有限公司 插头连接器
CN107834269A (zh) * 2017-11-01 2018-03-23 深圳市创益通技术股份有限公司 连接座
CN109888537A (zh) * 2017-12-06 2019-06-14 日本航空电子工业株式会社 连接器及电缆线束
US10804656B2 (en) 2017-12-06 2020-10-13 Japan Aviation Electronics Industry, Limited Connector connectable to different cable types, and cable harness including the connector
CN109256643A (zh) * 2018-11-07 2019-01-22 温州意华接插件股份有限公司 高速连接器模组
CN109256643B (zh) * 2018-11-07 2024-04-19 温州意华接插件股份有限公司 高速连接器模组
CN114327112A (zh) * 2020-09-30 2022-04-12 宸美(厦门)光电有限公司 电子装置及电子装置制造方法
CN112768988A (zh) * 2020-12-29 2021-05-07 东莞市思索连接器有限公司 一种铆焊结合式防水连接器母座构造及其组装方法
CN112768988B (zh) * 2020-12-29 2022-06-28 东莞市思索连接器有限公司 一种铆焊结合式防水连接器母座构造及其组装方法

Similar Documents

Publication Publication Date Title
WO2016188445A1 (fr) Connecteur électrique à insertion bidirectionnelle vers l'avant et vers l'arrière, et borne et élément de fixation élastique de celui-ci
CN106207635B (zh) 正反双向插接的电连接器及其端子和弹性卡扣
CN106575837B (zh) 电连接器
CN107078430B (zh) 正反双向电连接器
WO2016041527A1 (fr) Connecteur électrique apte à être connecté dans les directions avant et arrière et son procédé d'assemblage
CN112652909B (zh) 双向电连接母座
CN107251333A (zh) 电连接器
WO2017125091A1 (fr) Connecteur électrique bidirectionnel à double face
TWM567500U (zh) Two-way double-sided electrical connector
TWM481525U (zh) 電連接器插座及電連接器組合
CN109378608B (zh) 插座连接器
TW201711298A (zh) 正反雙向插接之電連接器及其端子和彈性卡扣
TWM475061U (zh) 電連接器
CN205051084U (zh) 正反双向插接的电连接公头
CN205069919U (zh) 电连接器
CN110148854B (zh) 一种电连接端子及其应用的公母互配电连接器
CN109075485B (zh) 双向双面电连接器
US20220239023A1 (en) Pluggable connector
CN212485695U (zh) 卧式全包裹屏蔽usb母座
CN209880872U (zh) 电连接器
CN209786232U (zh) 电连接器
CN212991410U (zh) 垫高省空间型usb母座
TWM541134U (zh) 線對板電連接器
TWI600225B (zh) Expansion socket
TWM542279U (zh) 線對板之電連接器模組

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16799332

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16799332

Country of ref document: EP

Kind code of ref document: A1