CN101969166B - Shielding plug-in structure of flat cable connector - Google Patents

Shielding plug-in structure of flat cable connector Download PDF

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Publication number
CN101969166B
CN101969166B CN2009101610136A CN200910161013A CN101969166B CN 101969166 B CN101969166 B CN 101969166B CN 2009101610136 A CN2009101610136 A CN 2009101610136A CN 200910161013 A CN200910161013 A CN 200910161013A CN 101969166 B CN101969166 B CN 101969166B
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CN
China
Prior art keywords
compressed component
guide groove
pin
contact jaw
grafting pedestal
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CN2009101610136A
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Chinese (zh)
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CN101969166A (en
Inventor
卓志恒
林崑津
苏国富
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YIDING CO Ltd
Advanced Flexible Circuits Co Ltd
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YIDING CO Ltd
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Filing date
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Priority to CN2009101610136A priority Critical patent/CN101969166B/en
Publication of CN101969166A publication Critical patent/CN101969166A/en
Priority to HK11107124.1A priority patent/HK1153852A1/en
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Abstract

The invention discloses a shielding plug-in structure of a flat cable connector, comprising a plug-in base and a compression structural member, wherein, the plug-in base comprises a plug-in groove and side walls which are formed at the two opposite sides of the plug-in groove; a pair of jointed structures are formed at the two opposite sides of the compression structural member, so as to pivot and combine the compression structural member on the side wall of the plug-in base; when in operation, the compression structural member is positioned on an opening position or on a covering position by taking the jointed structure as the rotating center; the compression structural member is made of metal materials; at least one part of the plug-in base is made of metal material to serve as a conductive connecting part which is connected with a grounded terminal; and a circuit flat cable is inserted into the plug-in space of the plug-in groove at the opening position of the compression structural member, and the compression structural member is operated to be pressed downwards to cover on the circuit flat cable, and is conductively connected with the grounded terminal through the conductive connecting part. The embodiment of the invention can improve the defect of the external electromagnetic interference when the traditional circuit flat cable is inserted into the connector, thus achieving better shielding effect.

Description

The shielding connected structure of bus bar connector
Technical field
The invention relates to a kind of design of connector construction, particularly about a kind of shielding connected structure of bus bar connector.
Background technology
Connector is a kind of jockey that connects electric wire, circuit board and other circuit elements with electric means; Its function is to provide a separable interface to connect two sub-systems of electronic system inside; Make its transmission signals or electric power smoothly; Therefore, connector applies to the various electronic products arround our life widely, for example: laptop, personal digital assistant etc.
General connector is to be welded on the circuit board, utilizes that the contact jaw through circuit layout contacts on its splicing ear and the circuit board again, is electrically connected with formation; Yet; In some utilization, connector is as fixing another circuit element, for example the fixing purposes of flexible flat cable.Therefore, connector is between a flexible flat cable and a printed circuit board (PCB), as the switching of electric signal.
Known zero insertion force (Zero Insertion Force; ZIF) design of connector includes a plug socket and a press part, and plug socket has an inserting groove and is formed at the inserting groove side walls, and inserting groove is provided with a plurality of conducting terminals; The corresponding both sides of press part are formed with a pair of pin-jointed structure; So that press part is articulated the sidewall that is incorporated into plug socket, press part can be positioned at an enable possition or with pin-jointed structure as pivot and cover the position when operated.
The press part of tradition connector is to be made up of nonmetallic materials; When the circuit cable of connector and clamping thereof in electronic system when transmission signals or electric power; Be the lead terminal of one external electromagnetic interference by connector to be directed on the near-end circuit board through the press part that is pressed on the circuit cable, thus cause signal conduction between system noise to occur and the disadvantage Chang Wufa that influences its signal quality solves effectively.
Summary of the invention
Therefore, main purpose of the present invention promptly provides a kind of shielding connected structure of bus bar connector, when being inserted into connector in order to improve the traditional circuit winding displacement, receives the shortcoming of external electromagnetic interference easily, to reach good shield effectiveness.
The present invention is to be a kind of shielding connected structure of bus bar connector for the technological means that problem adopted that solves known technology; Include a grafting pedestal and a compressed component; The grafting pedestal has an inserting groove and a pair of corresponding side walls of inserting groove that is formed at, and inserting groove is provided with a plurality of conducting terminals, and the corresponding both sides of compressed component are formed with a pair of pin-jointed structure; Compressed component is articulated the sidewall that is incorporated into the grafting pedestal; The inserting groove of grafting pedestal is formed with a plant space, and compressed component can be positioned at an enable possition or with pin-jointed structure as pivot and cover the position when operated.
Wherein compressed component is to be made up of metal material, and at least a portion of grafting pedestal is that metal material is made and as junction and be connected with at least one lead terminal.
When circuit cable in the compressed component position and after being inserted into the plant space of inserting groove in the enable possition; One of compressed component compresses end and is operated and be downward pressed on the surface of circuit cable; Compressed component is positioned at covers the position, and compressed component is connected to lead terminal through junction.
In another preferred embodiment; The plant space that also can be inserted into inserting groove during in the enable possition in the compressed component position with the inserted terminal of a circuit switch plate; The end that compresses of compressed component is operated the surface that can be downward pressed on the circuit switch plate; Compressed component is positioned at covers the position, to grip the circuit switch plate.
And circuit cable is can combine to be fixed on the circuit switch plate, in order to electrically connecting, and is transmitted by the electric signal of circuit cable transmission first contact jaw through conducting terminal by the circuit switch plate and to be directed on the near-end circuit board, to meet the application of industry.
Through the technological means that the present invention adopted; Because the junction of compressed component and grafting pedestal is constituted by metal material; So when the circuit cable of connector and clamping thereof in electronic system when transmission signals or electric power; Can the lead terminal of one external electromagnetic interference by connector be directed on the near-end circuit board through above-mentioned member; Solve the available circuit winding displacement and can't effectively prevent external electromagnetic interference, the signal conduction between system of causing noise occurs and influences the disadvantage of its signal quality, and then reaches good shield effectiveness.
In addition; Owing to be to grip circuit cable through compressed component; Meet zero insertion force (ZeroInsertion Force; ZIF) design of connector, this kind design can improve the shortcoming that conventional use causes assembling difficulty and possibly on electronic packaging, produce mechanical damage in the too high insertion force that connector caused of integrated circuit, printed circuit board (PCB) or circuit cable.
Description of drawings
Fig. 1 is the stereogram that shows first embodiment of the invention;
Fig. 2 is the three-dimensional exploded view that shows first embodiment of the invention;
Fig. 3 is the local enlarged that shows first embodiment of the invention;
Fig. 4 shows that the compressed component of first embodiment of the invention is positioned at the stereogram of enable possition;
Fig. 5 is one of stereoscopic motion figure that shows first embodiment of the invention;
Fig. 6 is the sectional drawing that shows the 6-6 section among Fig. 5 of first embodiment of the invention;
Fig. 7 be show first embodiment of the invention stereoscopic motion figure two;
Fig. 8 is the sectional drawing that shows the 8-8 section among Fig. 7 of first embodiment of the invention;
Fig. 9 is the sectional drawing that shows the 9-9 section among Fig. 7 of first embodiment of the invention;
Figure 10 is that the circuit switch plate that shows first embodiment of the invention is inserted into the sectional drawing that connector and circuit cable are incorporated into one of the practical application of circuit switch plate;
Figure 11 is that the circuit switch plate that shows first embodiment of the invention is inserted into two the sectional drawing that connector and circuit cable are incorporated into the practical application of circuit switch plate;
Figure 12 is that the circuit switch plate that shows first embodiment of the invention is inserted into three the sectional drawing that connector and circuit cable are incorporated into the practical application of circuit switch plate.
Drawing reference numeral
100 shielding connected structures
1 grafting pedestal
10 inserting grooves
11,11a sidewall
12,12a sliding guide groove
120,120a junction
121, the 121a first guide groove end
122, the 122a second guide groove end
2 compressed components
20,20a pin-jointed structure
21 compress end
3 conducting terminals
30 first contact jaws
31 second contact jaws
32 the 3rd contact jaws
4,4a lead terminal
5 circuit cables
51 conduction contact jaws
52 ground areas
The 5a circuit cable
The 50a jointing
51a conducts electricity contact jaw
The 5b circuit cable
The 50b jointing
51b conducts electricity contact jaw
The 5c circuit cable
The 50c jointing
51c conducts electricity contact jaw
6 circuit boards
61 conduction contact jaws
7 circuit switch plates
71 inserted terminals
72 winding displacement links
73 ground areas
74 conduction contact jaws
75,75a, 75b perforation
8 coverlays
8a, 8b, 8c tin point
The I1 direction of rotation
The I2 direction of rotation
The P1 enable possition
P2 covers the position
S2 plant space
Embodiment
The specific embodiment that the present invention adopted will be further described through following embodiment and accompanying drawing.
Please consult Fig. 1 simultaneously to shown in Figure 4; Fig. 1 is the stereogram that shows first embodiment of the invention; Fig. 2 is the three-dimensional exploded view that shows first embodiment of the invention; Fig. 3 is the local enlarged that shows first embodiment of the invention, and Fig. 4 shows that the compressed component of first embodiment of the invention is positioned at the stereogram of enable possition.As shown in Figure 1, the shielding connected structure 100 of bus bar connector of the present invention includes a grafting pedestal 1 and a compressed component 2.Grafting pedestal 1 has an inserting groove 10 and a pair of and is formed at the corresponding side walls of inserting groove 10 11,11a.
Like Fig. 2 and shown in Figure 3; The corresponding sidewall of grafting pedestal 1 11,11a are formed with a sliding guide groove 12,12a (not illustrating among the figure) respectively; At least a portion of sliding guide groove 12,12a is that metal material is made and as a junction 120,120a (not illustrating among the figure); In addition, sliding guide groove 12,12a have at least one first guide groove end 121,121a and at least one second guide groove end 122,122a respectively.
As shown in Figure 2, compressed component 2 of the present invention is to be made up of metal material, and compressed component 2 corresponding both sides have a pair of pin-jointed structure 20,20a respectively.
Like Fig. 4 and shown in Figure 9; In embodiments of the present invention; The inserting groove 10 of grafting pedestal 1 is formed with a plant space S 2; And the inwall of inserting groove 10 is equipped with the conducting terminal of putting between a plurality of those neighbours 3, and wherein an end of conducting terminal 3 is defined as one first contact jaw 30, in order to a circuit board 6 on conduction contact jaw 61 be connected; And the other end that is different from first contact jaw 30 is formed with one second contact jaw 31 and one the 3rd contact jaw 32, is connected in order to the conduction contact jaw 51 (seeing also Fig. 5) with a circuit cable 5 (seeing also Fig. 5).
Please consult Fig. 5 and Fig. 6 more simultaneously, Fig. 5 is one of stereoscopic motion figure that shows first embodiment of the invention, and Fig. 6 is the sectional drawing that shows the 6-6 section among Fig. 5 of first embodiment of the invention.The junction 120 of the sliding guide groove 12 of grafting pedestal 1 of the present invention, 12a (not illustrating among the figure), 120a (not illustrating among the figure) are connected with at least one lead terminal 4,4a (not illustrating among the figure) respectively, and lead terminal 4,4a can wear and be fixed on the circuit board 6.As shown in Figure 6; When operation; Compressed component 2 is to cover position P2 (seeing also Fig. 8) so that compressed component 2 can be positioned on an enable possition P1 or through the slippage and rotate simultaneously as pivot with pin-jointed structure 20,20a in the sliding guide groove 12 of the sidewall 11 of grafting pedestal 1,11a, 12a of pin-jointed structure 20,20a (not illustrating among the figure).
When circuit cable 5 desires to be inserted into the plant space S 2 of inserting groove 10 of grafting pedestal 1; Compressed component 2 can be through operation; And make the pin-jointed structure 20,20a of compressed component 2 slide onto the first guide groove end 121,121a (not illustrating among the figure) by the second guide groove end 122,122a (not illustrating among the figure); And simultaneously with pin-jointed structure 20,20a as pivot, make compressed component 2 turn to enable possition P1 according to a direction of rotation I1.
Please consult Fig. 7 to Fig. 9 more simultaneously; Fig. 7 be show first embodiment of the invention stereoscopic motion figure two; Fig. 8 is the sectional drawing that shows the 8-8 section among Fig. 7 of first embodiment of the invention, and Fig. 9 is the sectional drawing that shows the 9-9 section among Fig. 7 of first embodiment of the invention.Like Fig. 7 and shown in Figure 8; When circuit cable 5 has been inserted into the plant space S 2 (seeing also Fig. 5) of inserting groove 10 (seeing also Fig. 5) of grafting pedestal 1; One of compressed component 2 compresses end 21 and is operated and be downward pressed on the surface of circuit cable 5; To grip circuit cable 5; Wherein the pin-jointed structure 20 of compressed component 2,20a (not illustrating among the figure) are that the first guide groove end 121,121a (not illustrating among the figure) by sliding guide groove 12,12a (not illustrating among the figure) slides onto the second guide groove end 122,122a (not illustrating among the figure); And simultaneously with pin-jointed structure 20,20a as pivot, make compressed component 2 according to a direction of rotation I2 by enable possition P1 (seeing also Fig. 6) positioning of rotating to covering position P2.
As shown in Figure 8; Compressed component 2 is connected to lead terminal 4,4a through its pin-jointed structure 20,20a and sliding guide groove 12, the junction 120 of 12a, 120a; Because compressed component 2, pin-jointed structure 20,20a and junction 120,120a are made up of metal material; So circuit cable 5 can be directed to the end of an external electromagnetic interference by circuit cable 5 on the near-end circuit board 6 through compressed component 2, pin-jointed structure 20,20a, junction 120,120a and lead terminal 4,4a, to reach good shield effectiveness.
As shown in Figure 9; When circuit cable 5 is inserted into the shielding connected structure 100 of bus bar connector of the present invention; The end 21 that compresses of compressed component 2 is operated and is downward pressed on the ground area 52 of circuit cable 5; A plurality of conduction contact jaws 51 of circuit cable 5 are to locate the 3rd contact jaw 32 that is contacted with conducting terminal 3 exactly, are directed on the near-end circuit board 6 in order to electrically connect and to transmit first contact jaw 30 of electric signal through conducting terminal 3.
See also shown in Figure 10ly, it is that the circuit switch plate that shows first embodiment of the invention is inserted into the sectional drawing that connector and circuit cable are incorporated into one of the practical application of circuit switch plate.The element of the shielding connected structure 100 of the bus bar connector of this embodiment is same as described above, so components identical is to indicate with the components identical numbering, as a means of correspondence.Its difference is in order to meet the application of actual industry; Also can the inserted terminal 71 of a circuit switch plate 7 be inserted into the plant space S 2 of inserting groove 10 during P1 in the enable possition in 2 of compressed components; The end 21 that compresses of compressed component 2 is operated the surface that can be downward pressed on circuit switch plate 7; Compressed component 2 is positioned at covers position P2, to grip circuit switch plate 7.
Shown in figure 10, circuit switch plate 7 includes inserted terminal 71, with respect to inserted terminal 71 and the winding displacement link 72, a ground area 73 and a plurality of conduction contact jaw 74 that are provided with.Winding displacement link 72 is to supply the conduction contact jaw 51a of the jointing 50a of a circuit cable 5a to be located by connecting, and makes circuit cable 5a combine to be fixed on the circuit switch plate 7 with the welding or the mode of plating cloth a coverlay 8 again.And ground area 73 is the surfaces that are formed at circuit switch plate 7, so that the compressing end 21 and can compress really and be contacted with ground area 73 of compressed component 2.A plurality of conduction contact jaws 74 of circuit switch plate 7 are to locate the 3rd contact jaw 32 that is contacted with conducting terminal 3 exactly, are directed on the near-end circuit board 6 in order to electrically connect and to transmit the electric signal that transmitted by circuit cable 5a first contact jaw 30 through conducting terminal 3.
Consult Figure 11 and shown in Figure 12 simultaneously; Figure 11 is that the circuit switch plate that shows first embodiment of the invention is inserted into two the sectional drawing that connector and circuit cable are incorporated into the practical application of circuit switch plate, and Figure 12 is that the circuit switch plate that shows first embodiment of the invention is inserted into three the sectional drawing that connector and circuit cable are incorporated into the practical application of circuit switch plate.This two element of practicing is same as described above, so components identical is to indicate with the components identical numbering, as a means of correspondence.Its difference is that the circuit switch plate 7 of Figure 11 more offers a perforation 75 in the position of contiguous winding displacement link 72; For the jointing 50b of a circuit cable 5b through after can be located by connecting in the winding displacement link 72 of circuit switch plate 7 by conduction contact jaw 51b; And the mode with bump 8a makes circuit cable 5b combine to be fixed on the circuit switch plate 7 again; Circuit cable 5b wherein as shown in the figure is that forward is inserted into circuit switch plate 7; Certainly, also can oppositely be inserted into circuit switch plate 7 and combine again to fix, so the form that accompanying drawing showed should not be explained the usefulness as restriction the present invention.
7 positions, both sides in contiguous winding displacement link 72 of the circuit switch plate of Figure 12 offer a perforation 75a, 75b respectively; Its function is that the jointing 50c that makes circuit cable 5c is located by connecting in the winding displacement link 72 of circuit switch plate 7 through conducting electricity contact jaw 51c behind perforation 75a and the perforation 75b respectively equally; Mode with bump 8b, 8c makes circuit cable 5c combine to be fixed on the circuit switch plate 7 again; And then form respectively like Figure 11 and form shown in Figure 12; Circuit cable 5c wherein shown in figure 12 is that forward is inserted into circuit switch plate 7, also can oppositely be inserted into circuit switch plate 7 and combine fixing again.
Certainly; So long as those skilled in the art can both learn easily; Circuit cable is except combining to be fixed in the circuit switch plate through above-mentioned mode with welding, and conducting resinl also capable of using is positioned the circuit cable adhesion for the circuit switch plate, or utilizes physical property directly to contact; For example: circuit cable is covered be positioned on the circuit switch plate to cover band; Perhaps on the circuit switch plate, beat terminal or,, should do not explained usefulness as restriction the present invention so the form that accompanying drawing showed is merely one of numerous embodiment with modes such as metal clips power supply road wire plug connection or crimping.
And; Shielding connected structure with bus bar connector is a major technique characteristic of the present invention; All variations that utilizes principle of the present invention to do all belong to the category that the present invention asks for protection, and can be known by above embodiment; Value on the true tool industry of the shielding connected structure of bus bar connector provided by the present invention was so the present invention had accorded with the condition of patent application already.But above narration is merely preferred embodiment explanation of the present invention, and those skilled in the art can do other all improvement according to above-mentioned explanation, but these change in the scope that still belongs to invention spirit of the present invention and above claims that defined.

Claims (8)

1. the shielding connected structure of a bus bar connector; It is characterized in that; The shielding connected structure of said bus bar connector includes a grafting pedestal and a compressed component, and said grafting pedestal has an inserting groove and a pair of corresponding side walls of said inserting groove that is formed at, and said inserting groove is provided with a plurality of conducting terminals; The corresponding both sides of said compressed component are formed with a pair of pin-jointed structure; So that said compressed component is articulated the sidewall that is incorporated into said grafting pedestal, the inserting groove of said grafting pedestal is formed with a plant space, and said compressed component can be when being operated; Be positioned at an enable possition or with said pin-jointed structure as pivot and cover the position; Wherein said compressed component is to be made up of metal material, and at least a portion of said grafting pedestal is that metal material is made as junction, and said junction is connected with at least one lead terminal; One circuit cable is in said compressed component position in said enable possition and after being inserted into the plant space of said inserting groove; One of said compressed component compresses end and is operated and be downward pressed on the surface of said circuit cable, make said compressed component be positioned at the said position that covers, and said compressed component is connected to said lead terminal through said junction;
Wherein, The pin-jointed structure that the corresponding both sides of said compressed component form; Be incorporated into the formed sliding guide groove of sidewall of said grafting pedestal respectively slippingly; Said compressed component can be positioned at said enable possition or said cover position in the sliding guide groove slippage of said grafting pedestal and with said pin-jointed structure as pivot with its pin-jointed structure when being operated; At least a portion of said sliding guide groove is made and as said junction by metal material.
2. the shielding connected structure of bus bar connector as claimed in claim 1; It is characterized in that; The corresponding sidewall of said grafting pedestal the sliding guide groove that forms respectively have at least one first guide groove end and at least one second guide groove end; The pin-jointed structure of said compressed component can the slippage of limited ground between the first guide groove end and the second guide groove end of said sliding guide groove, so that said compressed component can be positioned said enable possition or the said position that covers.
3. the shielding connected structure of bus bar connector as claimed in claim 1 is characterized in that, an end of said conducting terminal is defined as one first contact jaw, in order to be connected with the conduction contact jaw of a circuit board.
4. the shielding connected structure of bus bar connector as claimed in claim 3; It is characterized in that; The other end that said conducting terminal is different from said first contact jaw is formed with one second contact jaw and one the 3rd contact jaw, in order to be connected with the conduction contact jaw of said circuit cable.
5. the shielding connected structure of a bus bar connector; It is characterized in that; The shielding connected structure of said bus bar connector includes a grafting pedestal and a compressed component, and said grafting pedestal has an inserting groove and a pair of corresponding side walls of said inserting groove that is formed at, and said inserting groove is provided with a plurality of conducting terminals; The corresponding both sides of said compressed component are formed with a pair of pin-jointed structure; So that said compressed component is articulated the sidewall that is incorporated into said grafting pedestal, the inserting groove of said grafting pedestal is formed with a plant space, and said compressed component can be when being operated; Be positioned at an enable possition or with pin-jointed structure as pivot and cover the position; Wherein said compressed component is to be made up of metal material, and at least a portion of said grafting pedestal is made as junction for metal material, and said junction is connected with at least one lead terminal; The inserted terminal of one circuit switch plate is in said compressed component position in said enable possition and after being inserted into the plant space of said inserting groove; One of said compressed component compresses end and is operated and be downward pressed on the surface of said circuit switch plate, make said compressed component be positioned at the said position that covers, and said compressed component is connected to said lead terminal through said junction;
Wherein, The pin-jointed structure that the corresponding both sides of said compressed component form; Be incorporated into the formed sliding guide groove of sidewall of said grafting pedestal respectively slippingly; Said compressed component can be positioned at said enable possition or said cover position in the sliding guide groove slippage of said grafting pedestal and with said pin-jointed structure as pivot with its pin-jointed structure when being operated; At least a portion of said sliding guide groove is made and as said junction by metal material; The surface of said circuit switch plate is provided with at least one ground area, and in the compressing that end is operated of said compressed component and when being downward pressed on said circuit switch plate surperficial, the end that compresses of said compressed component compresses and is contacted with said ground area; Said circuit switch plate is being to be defined as the winding displacement link with respect to said inserted terminal, in order to the connecting circuit winding displacement.
6. the shielding connected structure of bus bar connector as claimed in claim 5; It is characterized in that; The corresponding sidewall of said grafting pedestal the sliding guide groove that forms respectively have at least one first guide groove end and at least one second guide groove end; The pin-jointed structure of said compressed component can the slippage of limited ground between the first guide groove end and the second guide groove end of said sliding guide groove, so that said compressed component can be positioned said enable possition or the said position that covers.
7. the shielding connected structure of bus bar connector as claimed in claim 5 is characterized in that, an end of said conducting terminal is defined as one first contact jaw, in order to be connected with the conduction contact jaw of a circuit board.
8. the shielding connected structure of bus bar connector as claimed in claim 7; It is characterized in that; The other end that said conducting terminal is different from said first contact jaw is formed with one second contact jaw and one the 3rd contact jaw, in order to be connected with the conduction contact jaw of said circuit switch plate.
CN2009101610136A 2009-07-27 2009-07-27 Shielding plug-in structure of flat cable connector Active CN101969166B (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN2009101610136A CN101969166B (en) 2009-07-27 2009-07-27 Shielding plug-in structure of flat cable connector
HK11107124.1A HK1153852A1 (en) 2009-07-27 2011-07-11 Shielded insertion and connection structure of flat cable connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009101610136A CN101969166B (en) 2009-07-27 2009-07-27 Shielding plug-in structure of flat cable connector

Publications (2)

Publication Number Publication Date
CN101969166A CN101969166A (en) 2011-02-09
CN101969166B true CN101969166B (en) 2012-07-18

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HK (1) HK1153852A1 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102683932A (en) * 2011-03-11 2012-09-19 索尼爱立信移动通讯有限公司 Circuit board connector and connection method of circuit board
US9363899B2 (en) * 2012-01-02 2016-06-07 Mutracx International B.V. Inkjet system for printing a printed circuit board
CN114069290A (en) * 2020-07-30 2022-02-18 泰科电子(上海)有限公司 Connector assembly

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201018021Y (en) * 2007-02-02 2008-02-06 富士康(昆山)电脑接插件有限公司 Electrical connector
CN201063380Y (en) * 2007-01-25 2008-05-21 达昌电子科技(苏州)有限公司 Electronic card connector

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201063380Y (en) * 2007-01-25 2008-05-21 达昌电子科技(苏州)有限公司 Electronic card connector
CN201018021Y (en) * 2007-02-02 2008-02-06 富士康(昆山)电脑接插件有限公司 Electrical connector

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CN101969166A (en) 2011-02-09

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