CN203339381U - Signal transmission connector - Google Patents

Signal transmission connector Download PDF

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Publication number
CN203339381U
CN203339381U CN2013203737006U CN201320373700U CN203339381U CN 203339381 U CN203339381 U CN 203339381U CN 2013203737006 U CN2013203737006 U CN 2013203737006U CN 201320373700 U CN201320373700 U CN 201320373700U CN 203339381 U CN203339381 U CN 203339381U
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CN
China
Prior art keywords
signal transfer
transfer connector
side plate
distance
connector according
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Expired - Lifetime
Application number
CN2013203737006U
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Chinese (zh)
Inventor
林子翔
李仕卿
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ZHENGWEN SCI-TECH Co Ltd
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ZHENGWEN SCI-TECH Co Ltd
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Priority to CN2013203737006U priority Critical patent/CN203339381U/en
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Abstract

The utility model discloses a signal transmission connector. The signal transmission connector comprises a metal seat and a circuit board. The metal seat includes a base plate, a first side plate and a second side plate. The base plate includes a first surface, a second surface and an end surface. The second surface is opposite to the first surface. The end surface is interposed between and connected with the first surface and the second surface. The first side plate and the second side plate are arranged on two opposite sides of the first surface respectively, and connected with the first surface. An extending face of the end surface intersects with the first side plate and the second side plate. A groove is formed by the base plate, the first side plate and the second side plate. The circuit board is arranged in the groove. The circuit board has a third surface and a fourth surface opposite to each other. The fourth surface faces the base plate. The third surface is provided with a first electric connection part, and the distance between a first side of the end surface away from of the second surface is smaller than the distance between the third surface and the second surface.

Description

The signal transfer connector
Technical field
The utility model relates to a kind of signal transfer connector, particularly a kind of signal transfer connector with metal shell.
Background technology
Along with scientific and technological progress, the access of electronic information develops to the Portable disk that adopts universal serial bus (Universal Serial Bus, USB) plug with carrying by early stage disk or CD-RW discsCD-RW.Portable disk is large because having advantages of that volume is little, hot-swappable, transmission speed reaches storage volume soon, therefore widely the consumer likes.
Because the correlation technique of Portable disk in recent years is ripe gradually, the properties of product otherness of each manufacturer of family is little, therefore the consumer, when choosing Portable disk, except the performance of considering Portable disk itself, more can additionally consider profile, texture and the simple operation degree of Portable disk.
In the cognition the class person that disappears, the texture of metal material generally is better than the texture of plastic cement, therefore the consumer generally has a preference for the Portable disk of metal shell.But, when the USB plug of the Portable disk with metal shell is inserted the USB slot, the metal clips in the USB slot but may touch metal shell and cause the electronic installation short circuit that is provided with the USB slot, and then causes consumer's puzzlement.Therefore, how do not affecting under the prerequisite that Portable disk is electrically connected, the texture of taking into account Portable disk will be manufacturer by one of problem of focusing on.
The utility model content
The purpose of this utility model is to provide a kind of signal transfer connector, uses that the metal elastic sector-meeting that improves the USB slot touches the metal shell of signal transfer connector and the problem that causes the electronic installation short circuit that is provided with the USB slot.
For reaching above-mentioned purpose, the utility model provides a kind of signal transfer connector, and it comprises:
One metal pedestal, there is a base plate, one first side plate and one second side plate, this base plate has a first surface, a second surface and an end face, this second surface is with respect to this first surface, this end face is connected between this first surface and this second surface, this first side plate and this second side plate are connected to the relative both sides of this first surface, and the extended surface of this end face intersects with this first side plate and this second side plate, and this base plate, this first side plate and the definition of this second side plate have a groove; And
One circuit board, be located in this groove, this circuit board have one the 3rd surface with respect to one the 4th surface on the 3rd surface, the 4th surface is towards this base plate, be provided with one first electrical connection section on the 3rd surface, and the first side away from this second surface of this end face has part line segment and this second surface interval one first distance at least, the 3rd surface and this second surface interval one second distance, this first distance is less than this second distance.
Above-mentioned signal transfer connector, the 4th surface and this second surface interval 1 the 3rd distance wherein, this first distance is less than or equal to the 3rd distance.
Above-mentioned signal transfer connector, wherein more comprise an electrical insulator, this electrical insulator has more a ,Gai stop section, stop section and is arranged between this first side plate and this second side plate, this stop section is connected between the 3rd surface and the 4th surface towards a ,Gai side, side of this circuit board.
Above-mentioned signal transfer connector, wherein the extended surface of this side and this first side plate and this second side plate intersect.
Above-mentioned signal transfer connector, wherein this electrical insulator has more a holding section, and this at least part of holding section is arranged between this first surface and the 4th surface.
Above-mentioned signal transfer connector, wherein this base plate has at least one the first location structure, and this holding section has at least one the second location structure, and this first location structure can be connected in this second location structure with dismantling.
Above-mentioned signal transfer connector, wherein this stop section contacts the 3rd a surperficial second side of intersecting with this side.
Above-mentioned signal transfer connector, wherein this stop section has an end face, and with respect to this second surface, this end face and the 3rd surface form copline.
Above-mentioned signal transfer connector, wherein this base plate has a convex body, and this convex body is arranged in the perforation of one first in this circuit board, and this circuit board is fixedly arranged on this base plate.
Above-mentioned signal transfer connector, wherein more comprise a metal cap body, is located at this metal pedestal, and this metal cap body is covered in this circuit board of part, and manifests this first electrical connection section.
Above-mentioned signal transfer connector, wherein this convex body is aimed at one second in this metal cap body perforation, and a locking part of this signal transfer connector second is bored a hole and is installed in this convex body through this, and this metal pedestal this metal cap body that locks.
Above-mentioned signal transfer connector, wherein this metal pedestal has more a backboard, this backboard is connected between this first side plate, this second side plate, this base plate, this first side plate, this second side plate and this backboard define this groove, this pedestal has a peristome in this place, second side, this peristome and this backboard are the opposite faces be defined as in this groove, and this peristome manifests this side at least partly.
Above-mentioned signal transfer connector, wherein more comprise an electrical insulator, and this electrical insulator is located at this peristome, and this at least part of electrical insulator is arranged between this first surface and the 3rd surface.
Above-mentioned signal transfer connector, some of these electrical insulators are arranged between this first surface and the 3rd surface, and this electrical insulator of part extends to this peristome of this groove and concordant this peristome.
Above-mentioned signal transfer connector, wherein this electrical insulator has an end face, and with respect to this second surface, this end face and the 3rd surface form copline.
Above-mentioned signal transfer connector, wherein this first electrical connection section has a plurality of electrodes that form universal serial bus.
Above-mentioned signal transfer connector, wherein, in this first side, this first length correspondence apart from the line segment that is less than this second distance is the width of this electrode wherein.
Above-mentioned signal transfer connector, wherein whole line segments of this first side away from this second surface of this end face all with this first distance of this second surface interval, this first distance is less than this second distance.
According to the disclosed signal transfer connector of above-mentioned the utility model, because the spacing of metal clips and second surface is greater than the distance between the 4th surface and second surface, and the distance between first side and second surface is less than or equal to the distance between the 4th surface and second surface, therefore can guarantee that the signal transfer connector inserts in the process of electrical slot, electrically the metal clips of slot only can touch the stop section that is positioned at side, and can not touch the metal pedestal, and then the phenomenon of avoiding these metal clips electrical contacts to cause electrical slot to be short-circuited to the metal pedestal.
Below in conjunction with the drawings and specific embodiments, the utility model is described in detail, but not as to restriction of the present utility model.
The accompanying drawing explanation
Fig. 1 is the schematic perspective view according to the signal transfer connector of the utility model the first embodiment;
The decomposing schematic representation that Fig. 2 is Fig. 1;
The signal transfer connector that Fig. 3 is Fig. 1 is not inserted in the cross-sectional schematic of electrical slot fully;
The signal transfer connector that Fig. 4 is Fig. 1 is inserted in the cross-sectional schematic of electrical slot fully;
Fig. 5 is the decomposing schematic representation according to the signal transfer connector of the utility model the second embodiment;
Cross-sectional schematic when the signal transfer connector that Fig. 6 is Fig. 5 combines;
Fig. 7 is the cross-sectional schematic according to the signal transfer connector of the utility model the 3rd embodiment;
Fig. 8 is the cross-sectional schematic according to the signal transfer connector of the utility model the 4th embodiment;
The signal transfer connector that Fig. 9 and Figure 10 are Fig. 1 is hubbed at the schematic perspective view of an electronic installation;
Figure 11 is the decomposing schematic representation according to the signal transfer connector of the utility model the 5th embodiment;
Figure 12 is the decomposing schematic representation according to the signal transfer connector of the utility model the 6th embodiment.
Wherein, Reference numeral
10,10 ' signal transfer connector
20 electrical slots
22 shell fragments
30 electronic installations
32 recesses
100 metal pedestals
100 ' insulating base frame
110 base plates
111 first surfaces
112 second surfaces
113 end faces
The 113a first side
114 convex bodys
115 first location structures
120 first side plates
121 first wall sections
122 second wall sections
130 second side plates
131 first wall sections
132 second wall sections
140 backboards
141 perforates
150 grooves
160 peristomes
161 bottom surfaces
170 the 5th surfaces
200 circuit boards
210 the 3rd surfaces
220 the 4th surfaces
230 first electrical connection sections
231 electrodes
240 second electrical connection sections
250 sides
251 second sides
260 first perforation
300 electrical insulators
310 stop sections
311 end faces
312 fronts
320 holding sections
321 second location structures
400 metal cap body
410 second perforation
500 locking parts
600 metal plates
Embodiment
Below in conjunction with accompanying drawing, structural principle of the present utility model and operation principle are described in detail:
Please refer to Fig. 1 to Fig. 3, Fig. 1 is the schematic perspective view according to the signal transfer connector of the utility model the first embodiment, the decomposing schematic representation that Fig. 2 is Fig. 1.The signal transfer connector that Fig. 3 is Fig. 1 is not inserted in the cross-sectional schematic of electrical slot fully.
The signal transfer connector 10 of the present embodiment comprises a metal pedestal 100, a circuit board 200, an electrical insulator 300, a metal cap body 400 and a locking part 500.Electrical insulator 300, metal cap body 400 and locking part 500 be necessary structure not necessarily, and it is the relative position between each element for convenience of description that Fig. 1 illustrates out by these elements.
Metal pedestal 100 has a base plate 110, one first side plate 120, one second side plate 130 and a backboard 140.Base plate 110 has a first surface 111, a second surface 112 and an end face 113.Second surface 112 is with respect to first surface 111.End face 113 is connected between first surface 111 and second surface 112, and end face 113 has the first side 113a away from second surface 112, whole line segments of the first side 113a of base plate 110 and second surface 112 interval one first distance B 1 (as shown in Figure 3).In the present embodiment, base plate 110 has a convex body 114 and one first location structure 115.Convex body 114 is connected in first surface 111.The first location structure 115 is connected in first surface 111.
The first side plate 120 and the second side plate 130 are connected to the relative both sides of first surface 111, and the extended surface of the extended surface of the extended surface of end face 113 and the first side plate 120 and the second side plate 130 intersects.The first side plate 120 has respectively with the second side plate 130 one first wall section 121,131 and the one second wall section 122,132 be connected.The height that the first wall section 121,131 is protruded first surface 111 is less than the height that the second wall section 122,132 is protruded first surface 111.Wherein, above-mentioned convex body 114 is between 2 second wall sections 122,132.
Backboard 140 is connected in base plate 110, and is connected between the second wall section 132 of the second wall section 122 of the first side plate 120 and the second side plate 130.Base plate 110, the first side plate 120, the second side plate 130 and backboard 140 definition have a groove 150.First surface 111 is for forming the wherein one side of groove 150.In the present embodiment, backboard 140 can have a perforate 141.Yet the utility model is not as limit, the first side plate 120 not necessarily has the first wall section 121,131, the second side plates 130 and not necessarily has the second wall section 122,132, and backboard 140 also can select whether to have perforate 141.In practical application, base plate 110, the first side plate 120, the second side plate 130, backboard 140 can be also structures integrated, metal material.
Circuit board 200 is located in groove 150.Circuit board 200 have one the 3rd surface 210, with respect to the 3rd surface 210 one the 4th the surface 220 and one side 250.The 4th surface 220 is towards base plate 110.In the present embodiment, the 3rd surface 210 and second surface 112 interval one second distance D2 (as shown in Figure 3).The 4th surface 220 and second surface 112 intervals 1 the 3rd distance B 3 (as shown in Figure 3), and the first distance B 1 is less than or equal to the 3rd distance B 3.In the present embodiment, side 250 is connected between the 210 and the 4th surface 220, the 3rd surface, and back on backboard 140.Side 250 has a second side 251 of intersecting with the 3rd surface 210.
Be provided with one first electrical connection section 230 and one second electrical connection section 240 on the 3rd surface 210 of circuit board 200.The first electrical connection section 230 is than the second close side 250 of electrical connection section 240.Specifically, the first electrical connection section 230 is between 2 first wall sections 121,131, and the spacing of 111 of the first electrical connection section 230 and first surfaces approximates the height that 2 first wall sections 121,131 are protruded first surfaces 111.The second electrical connection section 240, between 2 second wall sections 122,132, and, corresponding to the perforate 141 of backboard 140, that is to say, perforate 141 manifests the second electrical connection section 240.In the present embodiment, the first electrical connection section 230 has a plurality of electrodes 231 that form universal serial bus.The second electrical connection section 240 is a universal serial bus slot, but not as limit, in other embodiments, also can not there is the second electrical connection section 240, or the second electrical connection section 240 can be also transmission line or other forms of electrical slot (as the memory card slot).Moreover, in the present embodiment and other embodiment, the surface beyond the first electrical connection section 230 of circuit board 200 and the second electrical connection section 240 also can cover insulating barrier, as the insulation lagging.
In addition, circuit board 200 has one first perforation 260, runs through the 210 and the 4th surface 220, the 3rd surface.The convex body 114 of base plate 110 wears the first perforation 260 of circuit board 200, the freedom of motion with limiting circuit plate 200 on horizontal direction.So, the above-mentioned convex body 114 and first that is used for the freedom of motion of limiting circuit plate 200 on horizontal direction bores a hole 260 only for illustrating, not as limit, in other embodiments, also can not there is convex body 114 or the first perforation 260, or replace with other forms of position limiting structure (as guide vane end stop and stopper slot).
Electrical insulator 300 has a 310Ji Yi holding section, stop section 320.Stop section 310 is connected in holding section 320.Stop section 310 is arranged between the first side plate 120 and the second side plate 130, and towards the side 250 of circuit board 200.Stop section 310 has an end face 311, with respect to second surface 112.
In the present embodiment, stop section 310 is the sides 250 that cover circuit board 200 fully, that is to say, at least partly 310 contact second sides 251, stop section.Further, end face 311 and the 3rd surface 210 form copline.But not as limit, in other embodiments, also can end face 311 and the 3rd surface 210 also not copline and the part side 250 of exposing circuit board 200.At least part of holding section 320 is arranged between first surface 111 and the 4th surface 220.Holding section 320 has at least one the second location structure 321.The second location structure 321 removably is connected in the first location structure 115, with the relative position of 110 of fixedly electrical insulator 300 and base plates.
In the present embodiment, electrical insulator 300 has 310Yu holding section, stop section 320, but not as limit, in other embodiments, electrical insulator 300 also can only have 310,Er stop section 310, stop section and be located between the first side plate 120 and the second side plate 130 in the mode of close-fitting or buckle.
Metal cap body 400 has one second perforation 410.Locking part 500 passes the second perforation 410 and is locked in the convex body 114 of base plate 110, is covered in the second electrical connection section 240 and part groove 150 to make metal cap body 400, and manifests the first electrical connection section 230.
It should be noted that, above-mentioned electrical insulator 300, convex body 114, each wall section, backboard 140 are all elements optionally, not, in order to limit the utility model, in other embodiments, also can there be electrical insulator 300, convex body 114, each wall section, backboard 140.
Refer to Fig. 3 and Fig. 4.The signal transfer connector that Fig. 4 is Fig. 1 is inserted in the cross-sectional schematic of electrical slot fully.
As shown in Figure 3, the signal transfer connector 10 of the present embodiment does not insert an electrical slot 20 fully.Electrically slot 20 has a plurality of metal clipss 22 that are electrically connected with the first electrical connection section 230.According to these metal clipss 22 of specification of industry to the space D 4 (as shown in Figure 3) of 112 of second surfaces between second distance D2 and the 3rd distance B 3.Therefore, in the present embodiment, the first distance B 1 that first side 113a and second surface are 112 is less than or equal to the 3rd distance B 3 of the 4th surface 220 and 112 of second surfaces, therefore can guarantee that signal transfer connector 10 inserts in the process of electrical slot 20, electrically the metal clips 22 of slot 20 only can touch the stop section 310 that is positioned at first side 113a, and can not touch metal pedestal 100, and then avoid these metal clips 22 electrical contacts to cause the phenomenon of short circuit to metal pedestal 100.
So in the present embodiment, in order to ensure the electrical slot that meets current each specification of industry, the first distance B 1 of 112 of first side 113a and second surfaces is designed in the 3rd distance B 3 that is less than 112 of the 4th surface 220 and second surfaces, but not as limit, if industry when design known metal shell fragment 22 to the space D 4 of 112 of second surfaces, still the first distance B 1 of 112 of first side 113a and second surfaces can be designed between second distance D2 and the 3rd distance B 3, only need to guarantee that the 4th distance B 4 is to be greater than the first distance B 1 can reach and avoid metal clips 22 to contact with metal pedestal 110, and then reach the purpose of avoiding electrical slot 20 short circuits.
Specifically, refer to Fig. 5 and Fig. 6, Fig. 5 is the decomposing schematic representation according to the signal transfer connector of the utility model the second embodiment, the cross-sectional schematic when signal transfer connector that Fig. 6 is Fig. 5 combines.The signal transfer connector 10 of the present embodiment is similar to the signal transfer connector 10 of above-mentioned Fig. 1, therefore only describe for deviation.
The metal pedestal 100 of the present embodiment has a base plate 110, one first side plate 120, one second side plate 130, a backboard 140 and a peristome 160.
Base plate 110 has a first surface 111, a second surface 112 and an end face 113.Second surface 112 is with respect to first surface 111.End face 113 is connected between first surface 111 and second surface 112, and end face 113 has the first side 113a away from second surface 112, the first side 113a of base plate 110 and second surface 112 interval one first distance B 1 (as shown in Figure 6).
The first side plate 120 and the second side plate 130 are connected to the relative both sides of first surface 111
Backboard 140 is connected in base plate 110, and is connected between the second wall section 132 of the second wall section 122 of the first side plate 120 and the second side plate 130.Base plate 110, the first side plate 120, the second side plate 130 and backboard 140 definition have a groove 150.First surface 111 is for forming the wherein one side of groove 150.
Peristome 160 is the opposite faces that are defined as in groove 150 with backboard 140, that is to say, end face 113 is positioned at peristome 160.Peristome 160 manifests at least part of side 250.Specifically, peristome 160 has a bottom surface 161, with respect to second surface 112.Bottom surface 161 and second surface 112 intervals 1 the 5th distance B 5.
Circuit board 200 is located in groove 150.Circuit board 200 have one the 3rd surface 210, with respect to the 3rd surface 210 one the 4th the surface 220 and one side 250.The 4th surface 220 is towards base plate 110.In the present embodiment, the 3rd surface 210 and second surface 112 interval one second distance D2 (as shown in Figure 6).The 4th surface 220 and second surface 112 intervals 1 the 3rd distance B 3 (as shown in Figure 6), and the 5th distance B 5 also can be less than second distance D2 and be greater than the 3rd distance B 3.
In the present embodiment and other embodiment, signal transfer connector 10 more comprises an electrical insulator 300.Electrical insulator 300 is located at peristome 160, and at least part of electrical insulator 300 is arranged between first surface 111 and the 3rd surface 210.Specifically, in the present embodiment, electrical insulator 300 has an end face 311 and a front 312.The end face 311 of electrical insulator 300 and the 3rd surface 210 form copline, and the end face 113 of positive 312 concordant peristomes 160.Wherein, above-mentioned electrical insulator 300 can be the mode of peristome 160 of being located in the mode of fixture block and draw-in groove, can be also the mode with adhesion or close-fitting, not as limit.
Refer to Fig. 7, Fig. 7 is the cross-sectional schematic according to the signal transfer connector of the utility model the 3rd embodiment.The signal transfer connector 10 of the present embodiment is similar to the embodiment of Fig. 5, therefore only describe for deviation.Bottom surface 161 and first surface 111 coplines of the peristome 160 of the present embodiment.
Refer to Fig. 8, Fig. 8 is the cross-sectional schematic according to the signal transfer connector of the utility model the 4th embodiment.The signal transfer connector 10 ' of the present embodiment and the structural similarity of the signal transfer connector 10 of above-mentioned Fig. 1, its difference is that the metal pedestal 100 of Fig. 1 and the structure of electrical insulator 300 are one of the forming, and material is the insulating base frame 100 ' that electric insulation material (as plastic cement) is made.Insulating base frame 100 ' has one the 5th surface 170.The signal transfer connector 10 of the present embodiment more comprises a metal plate 600, is attached at the 5th surface 170.The utility model does not limit metal plate 600 and only is attached on the 5th surface 170 of metal pedestal 100, and for instance, metal plate for example more can be coated to, on the side plate (aforesaid the first side plate or the second side plate) of part.
Refer to Fig. 9 and Figure 10, the signal transfer connector that Fig. 9 and Figure 10 are Fig. 1 is hubbed at the schematic perspective view of an electronic installation.Above-mentioned electronic installation 30 can be carry-on hard disc or portable power source, not as limit.The signal transfer connector 10 that electronic installation 30 has recess 32 the present embodiment is hubbed at the recess 32 of electronic installation 30.As shown in Figure 8, signal transfer connector 10 is electronic installation 30 pivotables and manifest the first electrical connection section 230 relatively, or as shown in Figure 9, and signal transfer connector 10 is electronic installation 30 pivotables and being accommodated in recess 32 relatively, and manifest the second electrical connection section 240.
In above-described embodiment, whole line segments of first side 113a with all be less than second distance D2 or be less than or equal to the 3rd distance B 3, but, not as limit, in other embodiments, first side 113a can be also that the part line segment is less than second distance D2 or is less than or equal to the 3rd distance B 3.Refer to Figure 11 and Figure 12.Figure 11 is the decomposing schematic representation according to the signal transfer connector of the utility model the 5th embodiment.Figure 12 is the decomposing schematic representation according to the signal transfer connector of the utility model the 6th embodiment.The embodiment of Figure 11 is similar to the embodiment of above-mentioned Fig. 1 to the embodiment of Figure 12, therefore only describe for deviation.
As shown in figure 11, the first side 113a of the present embodiment one first distance (D1 as shown in Figure 3) that only part line segment and 112 of second surfaces are separated out is less than or equal to the 3rd distance (D3 as shown in Figure 3), that is to say, first side 113a is a broken line, the level height of part first side 113a is lower than the 3rd surface 210, and the level height of part first side 113a equals the 3rd surface 210.In the present embodiment, the level height of first side 113a is the width W of an electrode 231 wherein lower than the lower limit of the length L of the line section on the 3rd surface 210.Wherein, this electrode 231 is positive electrode (Vcc).Thus, can avoid contacting and causing short circuit with shell fragment 22 (as shown in Figure 3) and the metal pedestal 100 of positive electrode electrical contact in electrical slot 20 (as shown in Figure 3).
As shown in figure 12, the signal transfer connector 10 of the present embodiment more comprises an electrical insulator 300, is located at metal pedestal 100, and the level height that is positioned at first side 113a equals the position on the 3rd surface 210, to cover in the circuit board 200 exposed.And electrical insulator 300 to be located at the mode of metal pedestal 100 can be by fixture block and draw-in groove, adhesion or close-fitting etc.
According to the disclosed signal transfer connector of above-mentioned the utility model, because the spacing of metal clips and second surface is greater than the distance between the 4th surface and second surface, and the distance between first side and second surface is less than or equal to the distance between the 4th surface and second surface, therefore can guarantee that the signal transfer connector inserts in the process of electrical slot, electrically the metal clips of slot only can touch the stop section that is positioned at side, and can not touch the metal pedestal, and then the phenomenon of avoiding these metal clips electrical contacts to cause electrical slot to be short-circuited to the metal pedestal.
In addition, at the known metal shell fragment during to the spacing between second surface, still the distance of first between first side and second surface can be designed between second distance and the 3rd distance, only need to guarantee that the 4th distance is to be greater than first to avoid metal clips to contact with the metal pedestal apart from reaching, and then reach the purpose of avoiding electrical slot short circuit.
Moreover the shell major part of the signal transfer connector of the present embodiment is all to make with metal material, increase the wish that the consumer buys therefore can allow the signal transfer connector there is texture preferably.
According to the disclosed signal transfer connector of above-mentioned the utility model, the side that electrical insulator covers circuit board more additionally is set, avoid outside the side of circuit board is exposed to, and then increase the aesthetic feeling of signal transfer connector.
Certainly; the utility model also can have other various embodiments; in the situation that do not deviate from the utility model spirit and essence thereof; those of ordinary skill in the art are when making various corresponding changes and distortion according to the utility model, but these corresponding changes and distortion all should belong to the protection range of the appended claim of the utility model.

Claims (18)

1. a signal transfer connector, is characterized in that, comprises:
One metal pedestal, there is a base plate, one first side plate and one second side plate, this base plate has a first surface, a second surface and an end face, this second surface is with respect to this first surface, this end face is connected between this first surface and this second surface, this first side plate and this second side plate are connected to the relative both sides of this first surface, and the extended surface of this end face intersects with this first side plate and this second side plate, and this base plate, this first side plate and the definition of this second side plate have a groove; And
One circuit board, be located in this groove, this circuit board have one the 3rd surface with respect to one the 4th surface on the 3rd surface, the 4th surface is towards this base plate, be provided with one first electrical connection section on the 3rd surface, and the first side away from this second surface of this end face has part line segment and this second surface interval one first distance at least, the 3rd surface and this second surface interval one second distance, this first distance is less than this second distance.
2. signal transfer connector according to claim 1, is characterized in that, the 4th surface and this second surface interval 1 the 3rd distance, and this first distance is less than or equal to the 3rd distance.
3. signal transfer connector according to claim 1, it is characterized in that, more comprise an electrical insulator, this electrical insulator has more a stop section, this stop section is arranged between this first side plate and this second side plate, this stop section is connected between the 3rd surface and the 4th surface towards a ,Gai side, side of this circuit board.
4. signal transfer connector according to claim 3, is characterized in that, the extended surface of this side and this first side plate and this second side plate intersect.
5. signal transfer connector according to claim 3, is characterized in that, this electrical insulator has more a holding section, and this at least part of holding section is arranged between this first surface and the 4th surface.
6. signal transfer connector according to claim 5, is characterized in that, this base plate has at least one the first location structure, and this holding section has at least one the second location structure, and this first location structure can be connected in this second location structure with dismantling.
7. signal transfer connector according to claim 3, is characterized in that, this stop section contacts the 3rd a surperficial second side of intersecting with this side.
8. signal transfer connector according to claim 7, is characterized in that, this stop section has an end face, and with respect to this second surface, this end face and the 3rd surface form copline.
9. signal transfer connector according to claim 1, is characterized in that, this base plate has a convex body, and this convex body is arranged in the perforation of one first in this circuit board, and this circuit board is fixedly arranged on this base plate.
10. signal transfer connector according to claim 1, is characterized in that, more comprises a metal cap body, is located at this metal pedestal, and this metal cap body is covered in this circuit board of part, and manifests this first electrical connection section.
11. signal transfer connector according to claim 10, it is characterized in that, this convex body is aimed at one second in this metal cap body perforation, and a locking part of this signal transfer connector second is bored a hole and is installed in this convex body through this, and this metal pedestal this metal cap body that locks.
12. signal transfer connector according to claim 1, it is characterized in that, this metal pedestal has more a backboard, this backboard is connected between this first side plate, this second side plate, this base plate, this first side plate, this second side plate and this backboard define this groove, this pedestal has a peristome in this place, second side, and this peristome and this backboard are the opposite faces be defined as in this groove, and this peristome manifests this side at least partly.
13. signal transfer connector according to claim 12, is characterized in that, more comprises an electrical insulator, this electrical insulator is located at this peristome, and this at least part of electrical insulator is arranged between this first surface and the 3rd surface.
14. signal transfer connector according to claim 12, is characterized in that, this electrical insulator of part is arranged between this first surface and the 3rd surface, and this electrical insulator of part extends to this peristome of this groove and concordant this peristome.
15. signal transfer connector according to claim 14 is characterized in that this electrical insulator has an end face, with respect to this second surface, this end face and the 3rd surface form copline.
16. signal transfer connector according to claim 1, is characterized in that, this first electrical connection section has a plurality of electrodes that form universal serial bus.
17. signal transfer connector according to claim 16, is characterized in that, in this first side, this first length correspondence apart from the line segment that is less than this second distance is the width of this electrode wherein.
18. signal transfer connector according to claim 1, is characterized in that, whole line segments of this first side away from this second surface of this end face all with this first distance of this second surface interval, this first distance is less than this second distance.
CN2013203737006U 2013-06-26 2013-06-26 Signal transmission connector Expired - Lifetime CN203339381U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104253341A (en) * 2013-06-26 2014-12-31 正文科技股份有限公司 Signal transmission joint

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104253341A (en) * 2013-06-26 2014-12-31 正文科技股份有限公司 Signal transmission joint
CN104253341B (en) * 2013-06-26 2016-12-28 正文科技股份有限公司 Signal transfer connector

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