CN104103926A - Socket connector and plug connector - Google Patents

Socket connector and plug connector Download PDF

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Publication number
CN104103926A
CN104103926A CN201310111097.9A CN201310111097A CN104103926A CN 104103926 A CN104103926 A CN 104103926A CN 201310111097 A CN201310111097 A CN 201310111097A CN 104103926 A CN104103926 A CN 104103926A
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CN
China
Prior art keywords
end subgroup
socket
substrate
hyoplastron
row
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Pending
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CN201310111097.9A
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Chinese (zh)
Inventor
谢斌
吴林
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Kunshan Luxshare Precision Industry Co Ltd
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Kunshan Luxshare Precision Industry Co Ltd
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Filing date
Publication date
Application filed by Kunshan Luxshare Precision Industry Co Ltd filed Critical Kunshan Luxshare Precision Industry Co Ltd
Priority to CN201310111097.9A priority Critical patent/CN104103926A/en
Publication of CN104103926A publication Critical patent/CN104103926A/en
Pending legal-status Critical Current

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Abstract

The invention provides a socket connector which comprises a socket body and a plurality of socket terminals which are accommodated into the socket body. The socket body is provided with an insertion and connection hole and a first tongue plate and a second tongue plate which are protruded forwards and extended into the insertion and connection hole. The socket terminals comprise a first socket terminal group and a second socket terminal group. The first socket terminal group is provided with a row of contact portions which are arranged on one side surface of the first tongue plate and a welding portion which is extended out from the socket body. The second socket terminal group is provided with a row of contact portions which are arranged on one side surface of the second tongue plate and a welding portion which is extended out from the socket body. The contact portions of the first socket terminal group and the second socket terminal group are exposed at the insertion and connection hole. The first tongue plate and the second tongue plate are separated up and down and parallel to each other. The first socket terminal group complies with the USB2.0 standard transmission protocol. The combination of the first socket terminals and the second socket terminals comply with the USB3.0 standard transmission protocol. Through the design, the width of the socket connector can be reduced.

Description

Socket connector and pin connector
Technical field
The present invention relates to a kind of socket connector and pin connector, relate in particular to a kind of socket connector and pin connector with ultra high speed signal transmission.
Background technology
PC realizes the input and output of data all the time in various manners, and USB (USB) is a kind of PC framework of serial bus standard, is mainly used in computer interface.Nowadays design Yi Bei USB association (USB-IF) standardization of USB interface.USB interface can connect external equipment, as mouse, keyboard, palmtop PC, game machine, mobile phone, printer, portable hard drive, networking component etc.In much equipment, for example, in mobile phone and portable hard drive, USB interface has become the connected mode of its standard.
Up to the present, USB association has issued 1.0,1.1,2.0 and 3.0 standards, above-mentioned USB 1.0,1.1,2.0 standards are supported respectively following three kinds of signal transmission rates: (1). low-speed mode transmission rate is 1.5 MBPSs, is used for mouse and keyboard; (2). magic transmission rate is 12 MBPSs at full speed; (3). fast mode transmission rate is 480 MBPSs.And 3.0 standards are that hypervelocity mode transfer speed is 640 MBPSs, so following electronic product will be transitioned into the epoch of USB 3.0 interfaces gradually.
Chinese patent is announced the socket connector that discloses a kind of Micro-USB 3.0 standards for No. CN201397969Y, it comprises insulating body, be contained in some conducting terminals in insulating body and the metal shell of coated insulation body, insulating body be provided with protrude out forward along level, arrange first, the second hyoplastron, first, the second hyoplastron separates between left and right, conducting terminal comprises the first end subgroup that is arranged on the first hyoplastron and the second terminal group on the second hyoplastron, insulating body is provided with left and right isolated first, the second interface, the first hyoplastron is positioned at the first interface, the second hyoplastron is positioned at the second interface, first end subgroup meets Micro-USB 2.0 standards, the first interface meets the pin connector of Micro-USB 2.0 standards in order to peg graft, first, the combination of the second terminal group meets Micro-USB3.0 standard, first, the second interface meets the pin connector of Micro-USB 3.0 standards jointly in order to peg graft, yet, the width of this socket connector is larger, and the reserved installing space of the electronic equipment that this socket connector need to be installed is limited, causing installing difficulty even cannot install.Micro-USB 3.0 pin connectors corresponding with this socket connector also can meet with above-mentioned technical problem.
So, be necessary to design a kind of new socket connector and pin connector to solve the problems of the technologies described above.
Summary of the invention
The object of the present invention is to provide a kind of socket connector and pin connector that reduces width that have.
For realizing aforementioned object, the present invention adopts following technical scheme: a kind of socket connector, it comprises jack body and is contained in the some female terminals in jack body, described jack body is provided with a spliced eye and protrudes into forward first in spliced eye, the second hyoplastron, described female terminal comprises first, the second socket end subgroup, described the first socket end subgroup has the weld part that row is located at row's contact site of the first hyoplastron one side surface and extends jack body, described the second socket end subgroup has the weld part that row is located at row's contact site of the second hyoplastron one side surface and extends jack body, described first, the contact site of the second socket end subgroup is exposed to respectively spliced eye, described first, the second hyoplastron separates between the upper and lower and is parallel to each other, described the first socket end subgroup meets USB 2.0 standard transmission protocol, described first, the combination of the second female terminal meets USB 3.0 standard transmission protocol.
The present invention also can adopt following technical scheme: a kind of pin connector, it comprises header body and is contained in the some plug terminals in header body, described header body comprise that main part and autonomous body protrude out forward first, second substrate, described plug terminal comprises first, the second plug end subgroup, described first, second substrate separates between the upper and lower and is parallel to each other, first substrate is provided with and runs through forward first substrate in order to accommodate the U-shaped recess of socket connector, described first, between second substrate, form in order to accommodate the interface of socket connector, described the first plug end subgroup meets USB 2.0 standard transmission protocol, first, the combination of the second plug end subgroup meets USB 3.0 standard transmission protocol, described the first plug end subgroup has row and is located on first substrate and is exposed to the row of one in recess contact site, described the second plug end subgroup has row and is located on second substrate and is exposed to the row of one in interface contact site.
Described in socket connector of the present invention first, the second hyoplastron separates between the upper and lower and is parallel to each other, described the first socket end subgroup meets USB 2.0 standard transmission protocol, described first, the combination of the second female terminal meets USB 3.0 standard transmission protocol, described in pin connector of the present invention first, second substrate separates between the upper and lower and is parallel to each other, first substrate is provided with and runs through forward first substrate in order to accommodate the U-shaped recess of socket connector, described first, between second substrate, form in order to accommodate the interface of socket connector, described the first plug end subgroup meets USB 2.0 standard transmission protocol, first, the combination of the second plug end subgroup meets USB 3.0 standard transmission protocol, described the first plug end subgroup has row and is located on first substrate and is exposed to the row of one in recess contact site, described the second plug end subgroup has row and is located on second substrate and is exposed to the row of one in interface contact site, so design, when socket connector of the present invention and pin connector can meet the requirement of ultra high speed signal transmission, reduced the width of socket connector and pin connector, thereby socket connector is installed easily in electronic equipment in limited installing space, convenient, pin connector is easy to carry.
Accompanying drawing explanation
Fig. 1 is the three-dimensional combination figure of socket connector of the present invention and pin connector.
Fig. 2 is the three-dimensional combination figure of socket connector of the present invention.
Fig. 3 is the three-dimensional combination figure of another angle of socket connector of the present invention.
Fig. 4 is the three-dimensional exploded view of socket connector of the present invention.
Fig. 5 is the three-dimensional exploded view of another angle of socket connector of the present invention.
Fig. 6 is the schematic perspective view of the insulator of pin connector of the present invention.
Fig. 7 is the schematic perspective view that pin connector header body of the present invention and plug terminal combine.
Fig. 8 is the three-dimensional exploded view of pin connector of the present invention.
Fig. 9 is the three-dimensional exploded view of another angle of pin connector of the present invention.
Embodiment
Refer to shown in Fig. 1 to Fig. 5, the pin connector 200 that the invention provides a kind of socket connector 100 and dock with this socket connector 100, socket connector 100 is upper in order to be installed to circuit board (not shown), and socket connector 100 comprises jack body 10, is contained in the some female terminals 20 in jack body 10 and is coated on jack body 10 outsides in order to prevent the metal shielding casing 30 of electromagnetic interference.
Jack body 10 comprises the first noumenon 11 and is upwards assembled in the second body 12 on the first noumenon 11, and the first noumenon 11 comprises isolated a pair of the first sidepiece 113 of the first base portion 111 and the first hyoplastron 112, the left and right that protrude out forward from the first base portion 111.This is to forming the spliced eye 114 in order to patchplug connector 200 between the first sidepiece 113, spliced eye 114 comprises spliced eye 1141 and the lower spliced eye 1142 connecting with upper spliced eye 114, the width of upper spliced eye 1141 on left and right directions is greater than lower spliced eye 1142, the first hyoplastron 112 is positioned at spliced eye 1141, and separates between left and right with each first sidepiece 113.The first base portion 111 bottoms are concaved with the perforate 116 that upwards runs through the first base portion 111 with fixed space 115 and the self-retaining space 115 of spliced eye 114 front and back perforations, and the inner roof wall of fixed space 115 is also concaved with a pair of fixing hole 117.Each first sidepiece 113 comprises the first vertical plane 1131, the inclined plane 1132 of extending and to the inside from the first vertical plane 1131 downwards, 1132 horizontal planes 1133 that extend to the inside and the second vertical plane 1134, the first hyoplastrons 112 to downward-extension align with the first vertical plane 1131 left and right and higher than inclined plane 1132, horizontal plane 1133 and the second vertical plane 1134 from horizontal plane 1133 from inclined plane.
The second body 12 comprises the second base portion 121 and the second hyoplastron 122 in the second base portion 121 protrudes into forward 11 times spliced eyes 114 of the first noumenon being upwards assembled in the first noumenon 11 fixed spaces 115, the first, the first base portion 111,121 forms the base portion of jack body 10, the width of first, second hyoplastron 112,122 on left and right directions is roughly the same, but allows certain error.The second base portion 121 is provided with and upwards inserts the lock catch arm 126 of the first noumenon 11 perforates 116 and be fixed on the cylinder 127 in the first noumenon 11 fixing holes 117, lock catch arm 126 ends convex with buckle piece 128, in perforate 116, be provided with horizontal barrier (not shown), buckle piece 128 is buckled in downwards on barrier, limits first, second body 11,12 and is separated from up and down.The second hyoplastron 122 separates between left and right and mutually aligns with the second vertical plane 1134, the second body 12 is also embedded with a metallic plate 13, this metallic plate 13 directly hides the top of the second hyoplastron 122, horizontal plane 1133 and the metallic plate 13 of the first noumenon 11 are located in the same horizontal plane, but allow certain error.
Female terminal 20 comprises that edge buries the first socket end subgroup 21 of taking shape in the first noumenon 11 and the second socket end subgroup 22 in the second body 12, one inspection terminal 23, the first socket end subgroup 21 is set to five and meet Micro-USB 2.0 standard transportation protocols, the second socket end subgroup 22 is also set to five, be arranged in order from left to right into: a pair of ultrahigh speed receives difference signal terminal 221, one earth terminal 222 and a pair of ultrahigh speed send difference signal terminal 223, so, first, the second socket end subgroup 21, 22 combination meets Micro-USB 3.0 standard transportation protocols, so this socket connector 100 has the ability of ultra high speed signal transmission.Inspection terminal 23 is arranged in the outside (left side or right side) of the second female terminal 22, in order to detect the insertion of pin connector 200.
Each female terminal 20 comprises the tabular contact site 25 of level and extends jack body 10 to be soldered to the weld part 26 on circuit board, the contact site 25 of the first socket end subgroup 21 is arranged in the first hyoplastron 112 lower surfaces and is exposed to spliced eye 1141, weld part 26 is for extending back the horizontal structure of jack body 10, in order to be soldered to circuit board surface, the second socket end subgroup 22 is arranged in the second hyoplastron 122 lower surfaces and is exposed to lower spliced eye 1142 with the contact site 25 of inspection terminal 23, weld part 26 is for extending the vertical structure of jack body 10 downwards, in order to be soldered in the welding hole of circuit board.Metallic plate 13 on the second body 12, in order to cut off the signal between first, second female terminal 21,22, improves intensity and the resistance to wear of the second hyoplastron 122 simultaneously.
Shielding casing 30 comprises roof 31, the two side 33 of the diapire 32 relative with roof 31 and connection roof 31 and diapire 32, roof 31 offers the bonnet lock hole 311 being fastened togather with pin connector 200, roof 31 hides the top of spliced eye 114, diapire 32 hides the bottom of spliced eye 114, roof 31 and the first hyoplastron 112 separate between the upper and lower, diapire 32 and the second hyoplastron 122 separate between the upper and lower, spacing between roof 31 and the first hyoplastron 112 be less than first, the second hyoplastron 112, spacing between spacing between 122 and diapire 32 and the second hyoplastron 122, sidewall 33 is coated on the first sidepiece 113, sidewall 33 is consistent with the profile of the first sidepiece 113 of the first noumenon 11, on above-below direction, the first sidepiece 113 is by roof 31 and diapire 32 clampings.
First, second hyoplastron 112,122 of socket connector 100 jack bodies 10 of the present invention is arranged along the vertical direction, has reduced the width of socket connector 100, thereby in can electronic equipment, in limited installing space, installs easily, convenient.
Refer to shown in Fig. 1 and Fig. 6 to Fig. 9, pin connector 200 of the present invention comprises insulation shell 70 and the cable 80 of header body 40, some plug terminals 50, metal shell 60, clad metal housing 60, and cable 80 links together with plug terminal 50.
Header body 40 comprises an insulator 43 and is assembled in forward respectively first, second collets 41,42 on insulator 43, and first, second collets 41,42 protrude out insulator 43 backward.Insulator 43 comprises first, second substrate 431,432 that main part 430 and autonomous body 430 protrude out forward, first, second substrate 431,432 separates between the upper and lower and is parallel to each other, first substrate 431 is positioned at the top of second substrate 432, and width is greater than second substrate 432, first substrate 431 end faces are provided with the flange 4312 that runs through forward the U-shaped recess 4311 of first substrate 431 and be located in recess 4311 both sides, recess 4311 is in order to accommodate the first hyoplastron 112 of socket connector 100, and the interior diapire of recess 4311 is concaved with one and ranked first conduit 4313.Flange 4312 tops are provided with location notch 4314, pair of metal snap close piece 44 is contained in location notch 4314, snap close piece 44 can swing up and down in location notch 4314, snap close piece 44 front ends have convex hook part 441 of stretching out pin connector 200, when pin connector 200 docks with socket connector 100, hook part 441 is locked in socket connector 100 shielding casing 30 bonnet lock holes 311, in order to limit pin connector 200, separates with socket connector 100.In addition, insulator 43 main part 430 two sides are also concaved with pre-and post perforative slit 4307 and are positioned at the confinement block 4308 of slit 4307, the second collets 42 are provided with a pair of fixed arm 427 protruding out forward and are convexly set in the clasp piece 428 of fixed arm 427 ends, fixed arm 427 inserts forward in slit 4307, clasp piece 428 is snapped on confinement block 4308 backward, thereby restriction main part 430 and the second collets 42 are separated.
Second substrate 432 end faces are concaved with one and ranked second conduit 4323, main part 430 rear ends are provided with the first receiving space 4301, the second receiving space 4302 and be positioned at first, the second receiving space 4301, a space bar 4303 between 4302, the first receiving space 4301 is positioned at the top of the second receiving space 4302, first, the second collets 41, 42 are assembled in forward first, the second receiving space 4301, in 4302, main part 430 is also provided with some the first grooves 4305 that some the first grooves 4304 that the first receiving space 4301 is communicated with the first conduit 4313 front and back and the second receiving space 4302 are communicated with the second conduit 4323 front and back, first, the second groove 4304, 4305 and first, the second conduit 4313, 4323 is corresponding one by one.
Plug terminal 50 comprises that edge buries the first plug end subgroup 51 of taking shape in the first collets 41 and the second plug end subgroup 52 in the second collets 42, one inspection terminal 53, the first plug end subgroup 51 is set to five and meet Micro-USB 2.0 standard transportation protocols, the second plug end subgroup 52 is also set to five, be followed successively by from left to right: a pair of ultrahigh speed receives difference signal terminal 521, one earth terminal 522 and a pair of ultrahigh speed send difference signal terminal 523, so, first, the second plug end subgroup 51, 52 combination meets Micro-USB 3.0 standard transportation protocols, so this pin connector 200 has the ability of ultra high speed signal transmission, inspection terminal 53 is arranged in the outside (left side or right side) of the second plug terminal 52.
Each plug terminal 50 comprises and extends forward first, the second collets 41, 42 arc-shaped contact part 55 and be exposed to first, the second collets 41, the connecting portion 56 that 42 rear end upper surfaces and cable 80 weld together, the connecting portion 56 of the connecting portion 56 of the first plug end subgroup 51 and the second plug end subgroup 52 and inspection terminal 53 mutually staggers and arranges on upper and lower and fore-and-aft direction, the connecting portion 53 of the first plug end subgroup 51 is arranged as a row and is positioned at a horizontal plane along left and right directions, the second plug end subgroup 52 is arranged as a ranking with the connecting portion 56 of inspection terminal 53 in another horizontal plane along left and right directions.The contact site 55 of the first plug end subgroup 51 is contained in the first conduit 4313 through after the first groove 4304 forward respectively, in order to contact with the first socket end subgroup 21 on socket connector 100, the contact site 55 of the second plug end subgroup 51 is contained in the second conduit 4323 through after the second groove 4305 forward respectively, in order to contact with the second socket end subgroup 22 on socket connector 100.
Metal shell 60 comprises coated jack body 40 first, second substrate 431, 432 procapsid 61 and the back casing 62 of main part 430, procapsid 61 comprises roof 611, the two lateral walls 613 of diapire 612 and connection roof 611 and diapire 612, roof 611 is that level is tabular with diapire 612, roof 611 is downwards by being attached on first substrate 431 and the top of covering recess 4311, diapire 612 is upwards by being attached on second substrate 432, each sidewall 613 comprises the first vertical wall 6131 being connected with roof 611, the inclined wall 6132 extending downwards and to the inside from the first vertical wall 6131, the second vertical wall 6134 of the horizontal wall 6133 of extending to the inside from inclined wall 6132 and connection horizontal wall 6133 and diapire 612, the first vertical wall 6131, inclined wall 6132 and horizontal wall 6133 are respectively by being attached on first substrate 431, one interface 615 is formed on first substrate 431, between second substrate 432 and the second vertical wall 6134, in order to accommodate the second hyoplastron 122 of socket connector 100.
Insulation shell 70 is overmolded onto back casing 62 and cable 80 outsides by external mold, and procapsid 61 protrudes out forward insulation shell 70, and cable 80 extends back insulation crust 70.
When socket connector 100 of the present invention docks with pin connector 200, first of pin connector 200, second substrate 431, 432 are inserted in the spliced eye 114 of socket connector 100 jointly with procapsid 61, first substrate 431 is plugged in spliced eye 1141, the first hyoplastron 112 of socket connector 100 is positioned at first substrate 431 recesses 4311, the contact site 25 of the first socket end subgroup 21 and the contact site 55 of the first plug end subgroup 51 be Elastic Contact one by one, second substrate 432 is plugged in lower spliced eye 1142, the second hyoplastron 122 of socket connector 100 is positioned at pin connector 200 interfaces 615, the contact site 25 of the second socket end subgroup 22 and the contact site 55 of the second plug end subgroup 52 be Elastic Contact one by one, between socket connector 100 and pin connector 200, set up ultra high speed signal transmission, the contact site 25 of socket connector 100 inspection terminals 23 contacts with the contact site 25 of pin connector 200 inspection terminals 53, thereby can allow socket connector 100 detect the insertion of pin connector 200, simultaneously, the hook part 441 of pin connector 200 snap close piece 44 front ends is locked in socket connector 100 shielding casing 30 bonnet lock holes 311, restriction pin connector 200 is separated with socket connector 100, ensure the reliability of signal transmission between socket connector 100 and pin connector 200.
First, second substrate 431,432 of pin connector 200 header body 40 of the present invention is arranged along the vertical direction, has reduced the width of pin connector 100, makes pin connector 100 easy to carry.
Although be example object, the preferred embodiment of the present invention is disclosed, but those of ordinary skill in the art will recognize, in the situation that not departing from by the disclosed scope and spirit of the present invention of appending claims, various improvement, increase and replacement are possible.

Claims (15)

1. a socket connector, it comprises jack body and is contained in the some female terminals in jack body, described jack body is provided with a spliced eye and protrudes into forward first in spliced eye, the second hyoplastron, described female terminal comprises first, the second socket end subgroup, described the first socket end subgroup has the weld part that row is located at row's contact site of the first hyoplastron one side surface and extends jack body, described the second socket end subgroup has the weld part that row is located at row's contact site of the second hyoplastron one side surface and extends jack body, described first, the contact site of the second socket end subgroup is exposed to respectively spliced eye, it is characterized in that: described first, the second hyoplastron separates between the upper and lower and is parallel to each other, described the first socket end subgroup meets USB 2.0 standard transmission protocol, described first, the combination of the second female terminal meets USB 3.0 standard transmission protocol.
2. socket connector according to claim 1, it is characterized in that: described first, second female terminal group is set to respectively five, described the first socket end subgroup meets Micro-USB 2.0 standard transmission protocol, and the combination of first, second socket end subgroup meets Micro-USB 3.0 standard transmission protocol.
3. socket connector according to claim 1, is characterized in that: the contact site row of described the first female terminal is located at the lower surface of the first hyoplastron, and the contact site row of described the second socket end subgroup is located at the lower surface of the second hyoplastron.
4. socket connector according to claim 1, it is characterized in that: described socket end subgroup also comprises and be contained in the inspection terminal inserting with detecting pin connector in jack body, inspection terminal is provided with the contact site that row is located at the second hyoplastron and is positioned at the second socket end subgroup outside.
5. socket connector according to claim 1, is characterized in that: described jack body comprises base portion, isolated a pair of the first sidepiece of described first, second hyoplastron protruding out forward from base portion and left and right, and described spliced eye is between this is to the first sidepiece.
6. socket connector according to claim 5, it is characterized in that: described the first sidepiece comprise the first vertical plane, the inclined plane of extending and to the inside from the first vertical plane, the horizontal plane extending to the inside from inclined plane downwards and from horizontal plane the second vertical plane to downward-extension, the first hyoplastron with aliging about the first vertical plane higher than inclined plane, horizontal plane and the second vertical plane.
7. socket connector according to claim 5, it is characterized in that: described socket connector also comprises the metal shielding casing of coated jack body, described shielding casing comprises roof, the two side of the diapire relative with roof and connection roof and diapire, described roof hides the top of spliced eye, diapire hides the bottom of spliced eye, roof and the first hyoplastron separate between the upper and lower, diapire and the second hyoplastron separate between the upper and lower, spacing between roof and the first hyoplastron be less than first, spacing between spacing between the second hyoplastron and diapire and the second hyoplastron, described sidewall is coated on the first sidepiece, on above-below direction, described the first sidepiece is clamped by roof and diapire.
8. socket connector according to claim 1, is characterized in that: described socket connector also comprises and hiding at the second hyoplastron top and metallic plate between first, second socket end subgroup.
9. a pin connector, it comprises header body and is contained in the some plug terminals in header body, described header body comprise that main part and autonomous body protrude out forward first, second substrate, described plug terminal comprises first, the second plug end subgroup, it is characterized in that: described first, second substrate separates between the upper and lower and is parallel to each other, first substrate is provided with and runs through forward first substrate in order to accommodate the U-shaped recess of socket connector, described first, between second substrate, form in order to accommodate the interface of socket connector, described the first plug end subgroup meets USB 2.0 standard transmission protocol, first, the combination of the second plug end subgroup meets USB 3.0 standard transmission protocol, described the first plug end subgroup has row and is located on first substrate and is exposed to the row of one in recess contact site, described the second plug end subgroup has row and is located on second substrate and is exposed to the row of one in interface contact site.
10. pin connector according to claim 9, it is characterized in that: described first, second plug terminal group is set to respectively five, described the first plug end subgroup meets Micro-USB 2.0 standard transmission protocol, the combination of first, second plug end subgroup meets Micro-USB 3.0 standard transmission protocol, and described first substrate is positioned at the top of second substrate and the width on left and right directions is greater than second substrate.
11. pin connectors according to claim 9, it is characterized in that: described pin connector comprises coated first, the metal shell of second substrate, described metal shell comprises roof, the two lateral walls of diapire 612 and connection roof and diapire, roof and diapire are that level is tabular, roof is downwards by being attached on first substrate and hiding recessed top, diapire is upwards by being attached on second substrate, each sidewall comprises the first vertical wall being connected with roof, the inclined wall extending downwards and to the inside from the first vertical wall, the second vertical wall of the horizontal wall of extending to the inside from inclined wall and connection horizontal wall and diapire, the first vertical wall, inclined wall and horizontal wall are respectively by being attached on first substrate, described interface is formed on first substrate, between second substrate and the second vertical wall.
12. pin connectors according to claim 9, it is characterized in that: described plug end subgroup also comprises and being contained in header body with an inspection terminal of detecting socket connector, inspection terminal is provided with the contact site that row is located at second substrate and is positioned at the second plug end subgroup outside.
13. pin connectors according to claim 9, it is characterized in that: described header body comprises an insulator and is assembled in forward respectively first, second collets on insulator, described first, second substrate is to be located on insulator, described the first plug end subgroup is embedded on the first collets, described the second plug end subgroup is embedded on the second collets, and the contact site of first, second plug end subgroup protrudes out forward first, second collets.
14. pin connectors according to claim 13, it is characterized in that: described pin connector also comprises cable, described first, second plug end subgroup also comprises and is exposed to the connecting portion that first, second collets rear end upper surface and cable weld together, and the connecting portion of the connecting portion of the first plug end subgroup and the second plug end subgroup mutually staggers and arranges on upper and lower and fore-and-aft direction.
15. pin connectors according to claim 13, it is characterized in that: described insulator two sides are also concaved with pre-and post perforative slit and are positioned at the confinement block of slit, the second collets are provided with a pair of fixed arm protruding out forward and the clasp piece that is convexly set in fixed arm end, fixed arm inserts forward in slit, and clasp piece is snapped on confinement block backward.
CN201310111097.9A 2013-04-01 2013-04-01 Socket connector and plug connector Pending CN104103926A (en)

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Application Number Priority Date Filing Date Title
CN201310111097.9A CN104103926A (en) 2013-04-01 2013-04-01 Socket connector and plug connector

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Application Number Priority Date Filing Date Title
CN201310111097.9A CN104103926A (en) 2013-04-01 2013-04-01 Socket connector and plug connector

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CN104103926A true CN104103926A (en) 2014-10-15

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* Cited by examiner, † Cited by third party
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CN2422734Y (en) * 1999-12-17 2001-03-07 富士康(昆山)电脑接插件有限公司 Electric connector
CN2711938Y (en) * 2004-05-14 2005-07-20 万国电脑股份有限公司 USB connector having signal detector and application system thereof
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