CN103779693B - LVDS connector and manufacture method thereof - Google Patents

LVDS connector and manufacture method thereof Download PDF

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Publication number
CN103779693B
CN103779693B CN201410016488.7A CN201410016488A CN103779693B CN 103779693 B CN103779693 B CN 103779693B CN 201410016488 A CN201410016488 A CN 201410016488A CN 103779693 B CN103779693 B CN 103779693B
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housing
matrix
colloid
insulating body
conducting terminal
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CN103779693A (en
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霍柱东
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Shenzhen Deren Electronic Co Ltd
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Shenzhen Deren Electronic Co Ltd
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Abstract

A kind of LVDS connector comprises multiple conducting terminal, insulating body, shielding casing and the first colloid.Multiple conducting terminal to be disposed on insulating body and one-body molded with the matrix of insulating body, shielding casing comprises the first housing and the second housing and kink, after bending, shielding casing forms a spatial accommodation, insulating body is assembled in spatial accommodation, first housing of the first colloid and shielding casing is one-body molded, on the upside of solving thin long connector spatial accommodation, plastic cement easily subsides, the problem that bulk strength is inadequate, first colloid and insulating body male-female engagement fixing to assemble, so just, eliminate the loaded down with trivial details technical process of assembling, improve production efficiency.Conducting terminal and insulating body are inlayed and one-body molded, strengthen the intensity of insulating body, it also avoid conducting terminal and occur when being collided to loosen or warping phenomenon.

Description

LVDS connector and manufacture method thereof
Technical field
The present invention relates to connector technique field, particularly relate to a kind of LVDS connector and manufacture method thereof.
Background technology
Low-voltage differential signal (Low-VoltageDifferentialSignaling, LVDS) connector is mainly used in liquid crystal display signal transmission, LVDS connector utilizes low-down voltage swing (about 350mV) on two PCB cablings or a pair balanced cable, to be carried out the transmission of data by difference, i.e. low-voltage differential signal transmission.Adopt LVDS connector, signal can be made with the speed rates of hundreds of Mbit/s on difference PCB line or balanced cable, owing to adopting low pressure and low current type of drive, therefore, achieve low noise and low-power consumption.LVDS connector is widely used in 17 inches and above liquid crystal display.
General LVDS connector comprises a shielding casing, an insulating body and multiple conducting terminal, multiple conducting terminal assembling is inserted in insulating body, shielding casing fixes coated insulating body by buckle structure, forms a grafting space, inserts docking for external plug.Due to product specification restriction, insulating body is thin and longer, and insulating body is inserted in conducting terminal assembling, and insulating body bulk strength causes conducting terminal easily to occur to loosen or distortion not.
Summary of the invention
Based on this, be necessary easily to loosen or the problem of buckling deformation for conducting terminal, provide a kind of and conducting terminal can be avoided to loosen or the LVDS connector of buckling deformation and manufacture method thereof.
A kind of LVDS connector, comprising:
Multiple conducting terminal, the elastic contact part that conducting terminal described in each comprises base portion and extends to form from base portion one end, described elastic contact part is used for being electrically connected with external plug;
Insulating body, comprises matrix and is positioned at the matrix end at described matrix two ends, and multiple described conducting terminal to be embedded on described matrix and one-body molded with described matrix respectively, and described elastic contact part overhangs for the leading flank of described matrix;
Shielding casing, comprise the first housing, kink and the second housing, described first housing and the second housing are bent by kink and are connected and form a spatial accommodation, described insulating body is assembled in described spatial accommodation, described kink and described matrix end abut against, and described first housing offer multiple spaced first through hole; And
First colloid, is arranged at the inner side of described first housing and one-body molded with described first housing, and described first colloid can separate multiple described conducting terminal to avoid short circuit.
In one of them embodiment, described first colloid is formed with multiple jube back on the surface of described first housing is outstanding, the surface of adjacent two described jubes and described first housing forms U-lag, and the elastic contact part of described conducting terminal is contained in described U-lag.
In one of them embodiment, also comprise the second colloid, described second colloid is shaped in the outside of described second housing, for separating described shielding casing and outside pcb board, described second colloid is formed with locating convex block towards the one side of described second housing is outstanding, and described second housing offers the positioning through hole corresponding with described locating convex block.
In one of them embodiment, the guiding groove described matrix end offering location hole and be connected with described location hole, one-body molded on described first housing have retaining sheet, and described retaining sheet inserts in described location hole along described guiding groove to be positioned on described shielding casing by described insulating body assembling; Described matrix end is formed with spacing block set back on all outstanding on the lateral surface of another matrix end, and the two ends of described first housing are formed with the fixation spring tab matched with described spacing block set respectively.
In one of them embodiment, the bottom surface of described matrix end is also formed with tin pin holddown groove, described second housing is formed with the tin pin for welding, described tin pin is fixedly limited in described tin pin holddown groove, described tin pin holddown groove is gradual shrinkage holddown groove, and the direction that the width of described tin pin holddown groove inserts described tin pin holddown groove along described tin pin is less gradually.
In one of them embodiment, the leading flank of described matrix offers location notch or gives prominence to and is formed with locating piece, and the trailing flank of described first colloid forms the locating piece matched with described location notch or the location notch matched with described locating piece.
In one of them embodiment, described location notch comprises the first location notch and the second location notch, and described first location notch is upper opening groove, and described second location notch is lower opening groove; Described locating piece comprises the first locating piece and the second locating piece, the end face of described first locating piece and described matrix or the either flush of the first colloid to match with described first location notch, described second locating piece lower than the end face of described matrix or the end face of the first colloid to match with described second location notch.
In one of them embodiment, the bottom surface of described matrix offers holding tank or gives prominence to and is formed with holding piece, the holding tank described second housing being formed with the holding piece matched with described holding tank or matching with described holding piece.
In one of them embodiment, described holding tank comprises the first holding tank and the second holding tank, and described first holding tank is upper opening groove, and described second holding tank is lower opening groove, and the width of described second holding tank is greater than the width of described first holding tank; Described holding piece comprises the first holding piece and the second holding piece, and described first holding piece and the second holding piece are all concordant with described second housing, and the width of described second holding piece is greater than the width of described first holding piece.
A manufacture method for LVDS connector, comprises the following steps:
Shaped conductive terminal, the elastic contact part that conducting terminal comprises base portion and extends to form from base portion one end, described elastic contact part is used for being electrically connected with external plug;
Profiled insulation body, makes multiple described conducting terminal be embedded in described insulating body and one-body molded with it, and described insulating body comprises matrix and is positioned at the matrix end at described matrix two ends, and described elastic contact part overhangs for the leading flank of described matrix;
Shaping shielding casing, described shielding casing comprises the first housing, kink and the second housing,, described kink connects described first housing and described second housing, the second folding line that described kink is formed with the first folding line and parallels with described first folding line;
First colloid is shaped in the inner side of described first housing;
Along described first housing of the first folding line bending of described kink, along described second housing of the second folding line bending of described kink, described first housing and described second housing parallel is made to arrange and form a spatial accommodation;
Assemble described insulating body in the spatial accommodation that described shielding casing is formed, described kink and described matrix end abut against, and form described LVDS connector.
Above-mentioned LVDS connector and manufacture method thereof at least comprise following advantage:
Multiple conducting terminal and insulating body are inlayed and one-body molded, shielding casing comprises the first housing and the second housing and kink, after bending, shielding casing forms a spatial accommodation, insulating body is assembled in spatial accommodation, first housing of the first colloid and shielding casing is one-body molded, on the upside of solving thin long connector spatial accommodation, plastic cement easily subsides, the problem that bulk strength is inadequate, first colloid and insulating body male-female engagement fixing to assemble, so just, eliminate the loaded down with trivial details technical process of assembling, improve production efficiency.Conducting terminal and insulating body are inlayed and one-body molded, strengthen the intensity of insulating body, it also avoid conducting terminal and occur when being collided to loosen or warping phenomenon.
Accompanying drawing explanation
Fig. 1 is the decomposing schematic representation of the LVDS connector in an execution mode;
Fig. 2 is the structural representation of conducting terminal and insulating body in Fig. 1;
The structural representation at another visual angle that Fig. 3 is conducting terminal shown in Fig. 2 and insulating body;
Fig. 4 is structural representation when shielding casing does not bend in Fig. 1;
Fig. 5 is the structural representation after the bending of shielding casing shown in Fig. 4;
Fig. 6 for the connector of LVDS shown in Fig. 1 assemble after structural representation;
Fig. 7 is the flow chart of the manufacture method of LVDS connector in an execution mode.
Embodiment
For enabling above-mentioned purpose of the present invention, feature and advantage become apparent more, are described in detail the specific embodiment of the present invention below in conjunction with accompanying drawing.Set forth a lot of detail in the following description so that fully understand the present invention.But the present invention can be much different from alternate manner described here to implement, those skilled in the art can when without prejudice to doing similar improvement when intension of the present invention, therefore the present invention is by the restriction of following public concrete enforcement.
It should be noted that, when element is called as " being fixed on " another element, directly can there is element placed in the middle in it on another element or also.When an element is considered to " connection " another element, it can be directly connected to another element or may there is centering elements simultaneously.Term as used herein " vertical ", " level ", "left", "right" and similar statement just for illustrative purposes, do not represent it is unique execution mode.
Unless otherwise defined, all technology used herein and scientific terminology are identical with belonging to the implication that those skilled in the art of the present invention understand usually.The object of term used in the description of the invention herein just in order to describe specific embodiment, is not intended to be restriction the present invention.Term as used herein " and/or " comprise arbitrary and all combinations of one or more relevant Listed Items.
Referring to Fig. 1, is the structural representation of the LVDS connector 10 in an execution mode, is mainly used in liquid crystal display signal transmission.This LVDS connector 10 comprises multiple conducting terminal 100, insulating body 200, shielding casing 300, first colloid 400 and the second colloid 500.
The elastic contact part 120 that each conducting terminal 100 comprises base portion 110 and extends to form from base portion 110 one end, elastic contact part 120 is for being electrically connected with external plug.Specific in present embodiment, conducting terminal 100 is by metal material punch forming.
Insulating body 200 is by the injection mo(u)lding of ambroin material.Insulating body 200 comprises matrix 210 and is positioned at the matrix end 220 at matrix 210 two ends.Matrix 210 is roughly in rectangular structure, and multiple conducting terminal 100 is inlayed respectively and is shaped on matrix 210.The direction of the elastic contact part 120 of definition conducting terminal 100 is front, and elastic contact part 120 overhangs for the leading flank of described matrix 210.
See also Fig. 2 and Fig. 3, the guiding groove 222 matrix end 220 offering location hole 221 and be connected with location hole 221.The bottom surface of matrix end 220 is also formed with tin pin holddown groove 223.Particularly, tin pin holddown groove 223 can be gradual shrinkage holddown groove, and the direction that the width of described tin pin holddown groove 223 inserts tin pin holddown groove 223 along tin pin 331 reduces gradually, is conducive to fixing tin pin 331, location tin pin 331, ensures welding flatness.
The leading flank of matrix 210 also offers location notch 230.Specific in present embodiment, location notch 230 comprises multiple first location notch 231 and multiple second location notch 232, first location notch 231 and the second location notch 232 interval and arranges.First location notch 231 is upper opening groove, and the second location notch 232 is lower opening groove, forms fixed form staggered up and down.Certainly, in other embodiments, also locating piece can be formed with at the leading flank of matrix.Locating piece comprises multiple first locating piece and multiple second locating piece, and the first locating piece and the second locating piece interval are arranged, and the either flush of the first locating piece and matrix, the second locating piece is lower than the end face of matrix.
The bottom surface of matrix 210 also offers holding tank 240.Specific in present embodiment, holding tank 240 comprises multiple first holding tank 241 and multiple second holding tank 242, first holding tank 241 and the second holding tank 242 interval and arranges.First holding tank 241 is upper opening groove, and the second holding tank 242 is lower opening groove, and the width of the second holding tank 242 is greater than the width of the first holding tank 241, forms fixed form staggered up and down.Certainly, in other embodiments, also holding piece can be formed with in the bottom surface of matrix.Holding piece comprises multiple first holding piece and multiple second holding piece, and the first holding piece and the second holding piece interval are arranged, and the first holding piece is concordant with the bottom surface of matrix, and the second holding piece is concordant with the bottom surface of matrix.
Matrix end 220 is formed with spacing block set 224 back on all outstanding on the lateral surface of another matrix end 220.On the matrix end 220 on the i.e. left side matrix end 220 on the right dorsad lateral surface on be outstandingly formed with spacing block set 224, on the matrix end 220 on the right the matrix end 220 on the left side dorsad lateral surface on be outstandingly formed with spacing block set 224.
Refer to Fig. 4 and Fig. 5, shielding casing 300 comprises the first housing 310, kink 320 and the second housing 330.First housing 310 and the second housing 330 are bent by kink 320 and are connected and form a spatial accommodation (not shown), and insulating body 200 is assembled in spatial accommodation, and kink 320 and matrix end 220 abut against.The leading edge of the first housing 310 has been bent to form protection portion 313 inside spatial accommodation, and the leading section of protection portion 313 and the first colloid 310 is fitted.
One-body molded on first housing 310 have retaining sheet 311, inserted in location hole 221 insulating body 200 assembling to be positioned on shielding casing 300 along guiding groove 222 by retaining sheet 311.Second housing 330 is formed with the tin pin 331 for welding, tin pin 331 is fixedly limited in described tin pin holddown groove 223.The two ends of the first housing 310 are formed with the fixation spring tab 312 matched with spacing block set 224 respectively.First housing 310 also offers multiple spaced first through hole 314.
First colloid 400 is shaped in the inner side of the first housing 310, and can separate multiple conducting terminal 100 1 and avoid short circuit.Specific in present embodiment, first colloid 400 is formed with multiple jube 410 back on the surface of the first housing 310 is outstanding, the surface of adjacent two jubes 410 and the first housing 310 forms U-lag 420, and the elastic contact part 120 of conducting terminal 100 is contained in U-lag 420.First colloid 400 is also formed with first projection 440 (as shown in Figure 1) corresponding with the first through hole 314.Namely the position of the first projection 440 and quantity all corresponding with the first through hole 314.When the first colloid 400 is shaping, colloid flows into the first through hole 314 and forms the first projection 440, makes the first housing 310 coordinate tightr with the first colloid 400.
The trailing flank of the first colloid 400 forms the locating piece 430 matched with location notch 230.Specific in present embodiment, locating piece 430 comprises multiple first locating piece 431 and multiple second locating piece 432, first locating piece 431 and the second locating piece 432 interval and arranges.The either flush of the first locating piece 431 and the first colloid 400 to match with the first location notch 231, the second locating piece 432 lower than the end face of the first colloid 400 to match with the second location notch 232.Certainly, in other embodiments, location notch can also be formed at the trailing flank of the first colloid 400.
Second housing 330 is formed with the holding piece 332 matched with holding tank 240.Specific in present embodiment, holding piece 332 comprises multiple first holding piece 3321 and multiple second holding piece 3322, first holding piece 3321 and the second holding piece 3322 interval and arranges.First holding piece 3321 and the second holding piece 3322 are all concordant with the second housing 330, and the width of the second holding piece 3322 is greater than the width of the first holding piece 3321, form fixed form staggered up and down.Certainly, in other embodiments, also holding tank can be formed with in the bottom surface of the second housing.Holding tank comprises multiple first holding tank and multiple second holding tank, and the first holding tank and the second holding tank interval are arranged, and the first holding tank is upper opening groove, and the second holding tank is lower opening groove.
Second colloid 500 is shaped in the outside of the second housing 330, for separating shielding casing 300 and outside pcb board, avoids short circuit between shielding casing 300 and outside pcb board.Second colloid 500 is formed with locating convex block (not shown) towards the one side of the second housing 330 is outstanding, and the second housing 330 offers the positioning through hole 333 corresponding with locating convex block.When the second colloid 500 is shaped in the outside of the second housing 330, locating convex block embeds in positioning through hole 333, and what the second colloid 500 was coordinated with the second housing 330 is tightr.
Refer to Fig. 6, during assembling, to inlay and one-body moldedly have the leading flank of the insulating body 200 of conducting terminal 100 to have the shielding casing 300 of the first colloid 400 to contact with one-body molded, the first housing 310 and the second housing 330 is made all to be connected to the leading flank of insulating body 200, thus the U-lag 420 li that the bottom surface making the elastic contact part 120 of conducting terminal 100 be housed in jube 410 and the first housing 310 is formed, the first locating piece 431 is made to insert in the first location notch 231, second locating piece 432 inserts in the second location notch 232, first holding piece 3321 inserts in the first holding tank 241, second holding piece 3322 inserts in the second holding tank 242, form fixed form staggered up and down, make insulating body 200 uniform force, fixed.
Above-mentioned LVDS connector 10 at least comprises following advantage:
Multiple conducting terminal 100 and insulating body 200 are inlayed and one-body molded, shielding casing 300 comprises the first housing 310 and the second housing 330 and kink 320, after bending, shielding casing 300 forms a spatial accommodation, insulating body 200 is assembled in spatial accommodation, first colloid 400 is one-body molded with the first housing 310 of shielding casing 300, on the upside of solving thin long connector spatial accommodation, plastic cement easily subsides, the problem that bulk strength is inadequate, first colloid 400 is fixing to assemble with insulating body 200 male-female engagement, so just, eliminate the loaded down with trivial details technical process of assembling, improve production efficiency.Conducting terminal 100 and insulating body 200 are inlayed one-body molded, strengthen the intensity of insulating body 200, it also avoid conducting terminal 100 and occur when being collided to loosen or warping phenomenon.First through hole 314 and the first projection 440 is set, is conducive to the first colloid 440 and coordinates tightr with the first housing 310.
Refer to Fig. 7, be the flow chart of the manufacture method of the LVDS connector in an execution mode, the manufacture method of this LVDS connector mainly comprises the following steps:
Step S110, shaped conductive terminal, the elastic contact part that conducting terminal comprises base portion and extends to form from base portion one end, elastic contact part is used for being electrically connected with external plug.Conducting terminal is by metal material punch forming.
Step S120, profiled insulation body, makes multiple conducting terminal inlay and one-body molded with insulating body, and insulating body comprises matrix and is positioned at the matrix end at matrix two ends, and elastic contact part overhangs for the leading flank of matrix.Insulating body is formed by plastic material injection moulding.Multiple conducting terminal and the one-body molded rear formation terminal module of insulating body.Specific in present embodiment, conducting terminal is inlayed and after being shaped in insulating body, is also comprised the step of folding material, unnecessary material strip can be removed by folding material.
Step S130, shaping shielding casing, shielding casing comprises the first housing, kink and the second housing, and kink connects the first housing and the second housing, the second folding line that kink is formed with the first folding line and parallels with the first folding line.Particularly, the shaping shielding casing of impact style can be passed through.
Step S140, the first colloid is shaped in the inner side of the first housing.By the method for injection mo(u)lding, first the shielding casing of forming can be put into injection mold, then shaping first colloid, the first colloid and the first housing one-body molded.Specific in present embodiment, the first colloid and the first housing one-body molded after, also comprise folding material step, by folding material unnecessary material strip can be removed.
Step S150, the first folding line along kink bends the first housing, and the second folding line along kink bends the second housing, makes the first housing and the second housing parallel arrange and form a spatial accommodation.Specific in present embodiment, the first housing at right angles can be arranged with kink, and the second housing also at right angles can be arranged with kink.Certainly, in other embodiments, angle also can be set between 80 degree ~ 100 degree.
Step S160, assembling insulating body is in the spatial accommodation that shielding casing is formed, and kink and matrix end abut against, and forms LVDS connector.
The manufacture method of above-mentioned LVDS connector at least comprises following advantage:
First mold conducting terminal by impact forming method, then by injection mo(u)lding insulating body, make conducting terminal be embedded in insulating body and one-body molded with insulating body, strengthen the intensity of insulating body, it also avoid conducting terminal and occur when being collided to loosen or warping phenomenon.Shielding casing comprises the first housing and the second housing and kink, after bending, shielding casing forms a spatial accommodation, insulating body is assembled in spatial accommodation, first housing of the first colloid and shielding casing is one-body molded, on the upside of solving thin long connector spatial accommodation, plastic cement easily subsides, the problem that bulk strength is inadequate, the first colloid and insulating body male-female engagement fixing to assemble, so just, eliminate the loaded down with trivial details technical process of assembling, improve production efficiency.
The above embodiment only have expressed several execution mode of the present invention, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the scope of the claims of the present invention.It should be pointed out that for the person of ordinary skill of the art, without departing from the inventive concept of the premise, can also make some distortion and improvement, these all belong to protection scope of the present invention.Therefore, the protection range of patent of the present invention should be as the criterion with claims.

Claims (9)

1. a LVDS connector, is characterized in that, comprising:
Multiple conducting terminal, the elastic contact part that conducting terminal described in each comprises base portion and extends to form from base portion one end, described elastic contact part is used for being electrically connected with external plug;
Insulating body, comprises matrix and is positioned at the matrix end at described matrix two ends, and multiple described conducting terminal to be embedded on described matrix and one-body molded with described matrix respectively, and described elastic contact part overhangs for the leading flank of described matrix;
Shielding casing, comprise the first housing, kink and the second housing, described first housing and the second housing are bent by kink and are connected and form a spatial accommodation, and described insulating body is assembled in described spatial accommodation, and described kink and described matrix end abut against;
First colloid, is arranged at the inner side of described first housing and one-body molded with described first housing, and described first colloid can separate multiple described conducting terminal to avoid short circuit; And
Second colloid, described second colloid is shaped in the outside of described second housing, for separating described shielding casing and outside pcb board, described second colloid is formed with locating convex block towards the one side of described second housing is outstanding, and described second housing offers the positioning through hole corresponding with described locating convex block.
2. LVDS connector according to claim 1, it is characterized in that, described first colloid is formed with multiple jube back on the surface of described first housing is outstanding, the surface of adjacent two described jubes and described first housing forms U-lag, and the elastic contact part of described conducting terminal is contained in described U-lag.
3. LVDS connector according to claim 1, it is characterized in that, the guiding groove described matrix end offering location hole and be connected with described location hole, one-body molded on described first housing have retaining sheet, and described retaining sheet inserts in described location hole along described guiding groove to be positioned on described shielding casing by described insulating body assembling; Described matrix end is formed with spacing block set back on all outstanding on the lateral surface of another matrix end, and the two ends of described first housing are formed with the fixation spring tab matched with described spacing block set respectively.
4. LVDS connector according to claim 1, it is characterized in that, the bottom surface of described matrix end is also formed with tin pin holddown groove, described second housing is formed with the tin pin for welding, described tin pin is fixedly limited in described tin pin holddown groove, described tin pin holddown groove is gradual shrinkage holddown groove, and the direction that the width of described tin pin holddown groove inserts described tin pin holddown groove along described tin pin is less gradually.
5. LVDS connector according to claim 1, it is characterized in that, the leading flank of described matrix offers location notch or gives prominence to and is formed with locating piece, and the trailing flank of described first colloid forms the locating piece matched with described location notch or the location notch matched with described locating piece.
6. LVDS connector according to claim 5, is characterized in that, described location notch comprises the first location notch and the second location notch, and described first location notch is upper opening groove, and described second location notch is lower opening groove; Described locating piece comprises the first locating piece and the second locating piece, the end face of described first locating piece and described matrix or the either flush of the first colloid to match with described first location notch, described second locating piece lower than the end face of described matrix or the end face of the first colloid to match with described second location notch.
7. LVDS connector according to claim 1, it is characterized in that, the bottom surface of described matrix offers holding tank or gives prominence to and is formed with holding piece, the holding tank described second housing being formed with the holding piece matched with described holding tank or matching with described holding piece.
8. LVDS connector according to claim 7, it is characterized in that, described holding tank comprises the first holding tank and the second holding tank, and described first holding tank is upper opening groove, described second holding tank is lower opening groove, and the width of described second holding tank is greater than the width of described first holding tank; Described holding piece comprises the first holding piece and the second holding piece, and described first holding piece and the second holding piece are all concordant with described second housing, and the width of described second holding piece is greater than the width of described first holding piece.
9. a manufacture method for LVDS connector, is characterized in that, comprises the following steps:
Shaped conductive terminal, the elastic contact part that conducting terminal comprises base portion and extends to form from base portion one end, described elastic contact part is used for being electrically connected with external plug;
Profiled insulation body, makes multiple described conducting terminal be embedded in described insulating body and one-body molded with it, and described insulating body comprises matrix and is positioned at the matrix end at described matrix two ends, and described elastic contact part overhangs for the leading flank of described matrix;
Shaping shielding casing, described shielding casing comprises the first housing, kink and the second housing, described kink connects described first housing and described second housing, the second folding line that described kink is formed with the first folding line and parallels with described first folding line;
First colloid is shaped in the inner side of described first housing;
Along described first housing of the first folding line bending of described kink, along described second housing of the second folding line bending of described kink, described first housing and described second housing parallel is made to arrange and form a spatial accommodation;
Assemble described insulating body in the spatial accommodation that described shielding casing is formed, described kink and described matrix end abut against, and form described LVDS connector.
CN201410016488.7A 2014-01-14 2014-01-14 LVDS connector and manufacture method thereof Active CN103779693B (en)

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Publication number Priority date Publication date Assignee Title
WO2015106580A1 (en) * 2014-01-14 2015-07-23 深圳市得润电子股份有限公司 Lvds connector

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201859976U (en) * 2010-08-10 2011-06-08 奕东电子(常熟)有限公司 Connector for low-voltage differential signals
CN202434784U (en) * 2012-02-17 2012-09-12 泰强电子(深圳)有限公司 LVDS (low voltage differential signaling) format socket with improved structure
CN202906018U (en) * 2012-11-23 2013-04-24 昆山友来电子有限公司 Low-voltage differential signal transmitter
CN203787640U (en) * 2014-01-14 2014-08-20 深圳市得润电子股份有限公司 LVDS (Low-Voltage Differential Signaling) connector

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201859976U (en) * 2010-08-10 2011-06-08 奕东电子(常熟)有限公司 Connector for low-voltage differential signals
CN202434784U (en) * 2012-02-17 2012-09-12 泰强电子(深圳)有限公司 LVDS (low voltage differential signaling) format socket with improved structure
CN202906018U (en) * 2012-11-23 2013-04-24 昆山友来电子有限公司 Low-voltage differential signal transmitter
CN203787640U (en) * 2014-01-14 2014-08-20 深圳市得润电子股份有限公司 LVDS (Low-Voltage Differential Signaling) connector

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