The present disclosure relates to a card edge connector, especially relates to a card edge connector with a covering member.
Japanese patent application publication No. JPH1186953A, as a prior art, discloses a dust preventing cover mounted on an insulator of a connector, however, the dust preventing cover generally needs to be removed before a printed circuit board is inserted. Although the printed circuit board inserts into an insertion groove and covers a part of the insertion groove at use state, there still exists a very large gap between the printed circuit board and the insertion groove at this state, particles such as dust and the like would still enter into the insertion groove and adhere on the terminal.
U.S. Pat. No. 6,854,991 (corresponding to U.S. Pat. No. 6,932,630, Chinese patent issuance publication No. CN1275356C and Chinese Patent issuance publication No. CN100524963C), as another prior art, discloses a dust preventing connector, a first dust preventing cover and a second dust preventing cover made of suitable elastic material are respectively provided to a first connector and a second connector. When the first connector and the second connector are connected with each other, the first dust preventing cover and the second dust preventing cover can cooperate with each other to bend outwardly and deform elastically. However, when the first connector and the second connector are mated with each other, a slant section of the first dust preventing cover and a slant section of the second dust preventing cover move outwardly from a space between a connecting face of the first connector and a connecting face of the second connector, at this state, the first dust preventing cover and the second dust preventing cover do not provide the dust preventing function.
Therefore, an object of the present disclosure is to provide a card edge connector which can improve at least one of the shortcomings of the prior art.
Accordingly, in some embodiments, a card edge connector of the present disclosure comprises an elongated insulating housing and a plurality of conductive terminals. The insulating housing extends in a length direction, has two side walls which extend in the length direction and are spaced apart from each other in a width direction and two end walls which connect the two side walls at two ends in the length direction, the two side walls and the two end walls together define a card edge insertion groove which has an opening, at least one of the two side walls is a terminal mounting wall, the terminal mounting wall has a top surface which faces the same direction as the opening of the card edge insertion groove. The plurality of conductive terminals are arranged as a row in the length direction and provided to the terminal mounting wall, each conductive terminal has a contact portion which extends into the card edge insertion groove. The card edge connector further comprises a covering member which is correspondingly mounted to the terminal mounting wall, the covering member has a body and a tongue portion which is connected to the body and has flexibility, the body is mounted to the top surface of the terminal mounting wall, the tongue portion extends in the length direction and at least partially covers the opening of the card edge insertion groove in the width direction.
In some embodiments, the terminal mounting wall is formed with a plurality of terminal grooves which respectively receive the conductive terminals, each terminal groove has an aperture positioned on the top surface of the terminal mounting wall, the body of the covering member covers the apertures of the plurality of terminal grooves.
In some embodiments, the terminal mounting wall is formed with two mounting grooves at the top surface, each mounting groove has a mounting groove portion, the body of the covering member has an elongated portion which extends in the length direction and provided to the top surface of the terminal mounting wall and two mounting columns which respectively extend from the elongated portion and insert into the mounting groove portions of the mounting grooves.
In some embodiments, an inner wall surface of the mounting groove portion of each mounting groove is formed with an interference protruding block which interferences with the corresponding mounting column.
In some embodiments, the terminal mounting wall is formed with two mounting grooves at the top surface, each mounting groove has an insertion groove portion, the card edge connector further comprises a bracket provided to the covering member, the bracket comprises a bracket body which extends in the length direction and allows the body of the covering member to be provided and two mounting structures which extend respectively from two ends of the bracket body and insert into the insertion groove portions of the mounting grooves.
In some embodiments, each mounting groove further has a mounting groove portion communicated with the insertion groove portion, the body of the covering member has an elongated portion which extends in the length direction and is provided to the top surface of the terminal mounting wall and two mounting columns which extend respectively from the elongated portion and insert into the mounting groove portions of the mounting grooves.
In some embodiments, the bracket body of the bracket is formed with a first fixing structure which is provided to the elongated portion and two second fixing structures which are respectively provided to the mounting columns.
In some embodiments, each mounting structure has an inserting piece and an interference portion which is formed to the inserting piece and interferences with the insertion groove portion.
In some embodiments, the terminal mounting wall further has two first end portions which are positioned at two ends in the length direction and respectively connect the two end walls and a terminal providing portion which is positioned between the two first end portions and is provided with the plurality of conductive terminals, the two mounting grooves are respectively formed at the two first end portions of the terminal mounting wall.
In some embodiments, one of the two side walls is the terminal mounting wall, the other of the two side walls is a limiting wall which is not provided with the conductive terminal, the limiting wall has a recess opening which is formed at the top surface and corresponds to the plurality of conductive terminals in position and a low wall portion which is positioned below the recess opening and lower than the terminal mounting wall in height.
Accordingly, in some embodiments, a card edge connector of the present disclosure is adapted to allow an electronic module to insert, the card edge connector comprises an elongated insulating housing and a plurality of conductive terminals. The insulating housing extends in a length direction, has two side walls which extend in the length direction and are spaced apart from each other in a width direction and two end walls which connect the two side walls at two ends in the length direction, the two side walls and the two end walls together define a card edge insertion groove which has an opening, at least one of the two side walls is a terminal mounting wall, the terminal mounting wall has a top surface which faces the same direction as the opening of the card edge insertion groove. The plurality of conductive terminals are arranged as a row in the length direction and provided to the terminal mounting wall, each conductive terminal has a contact portion which extends into the card edge insertion groove. The card edge connector further comprises a covering member which is correspondingly mounted to the terminal mounting wall, the covering member has a body and a tongue portion which is connected to the body and has flexibility, the body is mounted to the top surface of the terminal mounting wall, the tongue portion extends in the length direction and at least partially covers the opening of the card edge insertion groove in the width direction, when the electronic module is inserted into the card edge insertion groove, the tongue portion contacts the electronic module and flexes toward the card edge insertion groove, and covers a gap between the electronic module and the terminal mounting wall.
In some embodiments, the terminal mounting wall is formed with a plurality of terminal grooves which respectively receive the conductive terminals, each terminal groove has an aperture positioned on the top surface of the terminal mounting wall, the body of the covering member covers the apertures of the plurality of terminal grooves.
In some embodiments, the terminal mounting wall is formed with two mounting grooves at the top surface, each mounting groove has a mounting groove portion, the body of the covering member has an elongated portion which extends in the length direction and provided to the top surface of the terminal mounting wall and two mounting columns which respectively extend from the elongated portion and insert into the mounting groove portions of the mounting grooves.
In some embodiments, an inner wall surface of the mounting groove portion of each mounting groove is formed with an interference protruding block which interferences with the corresponding mounting column.
In some embodiments, the terminal mounting wall is formed with two mounting grooves at the top surface, each mounting groove has an insertion groove portion, the card edge connector further comprises a bracket provided to the covering member, the bracket comprises a bracket body which extends in the length direction and allows the body of the covering member to be provided and two mounting structures which extend respectively from two ends of the bracket body and insert into the insertion groove portions of the mounting grooves.
In some embodiments, each mounting groove further has a mounting groove portion communicated with the insertion groove portion, the body of the covering member has an elongated portion which extends in the length direction and is provided to the top surface of the terminal mounting wall and two mounting columns which extend respectively from the elongated portion and insert into the mounting groove portions of the mounting grooves.
In some embodiments, the bracket body of the bracket is formed with a first fixing structure which is provided to the elongated portion and two second fixing structures which are respectively provided to the mounting columns.
In some embodiments, each mounting structure has an inserting piece and an interference portion which is formed to the inserting piece and interferences with the insertion groove portion.
In some embodiments, the terminal mounting wall further has two first end portions which are positioned at two ends in the length direction and respectively connect the two end walls and a terminal providing portion which is positioned between the two first end portions and is provided with the plurality of conductive terminals, the two mounting grooves are respectively formed at the two first end portions of the terminal mounting wall.
In some embodiments, one of the two side walls is the terminal mounting wall, the other of the two side walls is a limiting wall which is not provided with the conductive terminal, the limiting wall has a recess opening which is formed at the top surface and corresponds to the plurality of conductive terminals in position and a low wall portion which is positioned below the recess opening and lower than the terminal mounting wall in height.
The present disclosure has at least following technical effects: by that the tongue portion of the covering member covers the opening of the card edge insertion groove and the contact portions of the plurality of conductive terminals positioned below, and by that the body of the covering member covers the aperture of each terminal groove positioned at the top surface, it prevents particles such as metal or dust and the like falling into the card edge insertion groove or the terminal grooves to contaminate the conductive terminals, in turn avoids phenomena such as poor contact or short circuit occurring, and promotes the electric contact performance of the plurality of conductive terminals. And even if after the electronic module is inserted into the card edge insertion groove, the tongue portion of the covering member having flexibility still can cooperate with the electronic module to flex to cover a gap between the electronic module and the terminal mounting wall of the insulating housing.
Other features and effects of the present disclosure will be apparent from the embodiments with reference to figures, in which:
Reference numerals in figures are represented as follows:
Before the present disclosure is described in detail, it should be noted that similar element is represented by the same reference numeral in the following description.
Referring to
The insulating housing 1 extends in a length direction D1, and has two side walls which extend in the length direction D1 and are spaced apart from each other in a width direction D2, one of the two side walls is a terminal mounting wall 11, the other of the two side walls is a limiting wall 12. The insulating housing 1 further has two end walls 13 which respectively connect the two side walls at two ends in the length direction D1. The terminal mounting wall 11, the limiting wall 12 and the two end walls 13 together form a bottom mounting surface 15 which is used to mount on the circuit board 30, and together define a card edge insertion groove 16 which extends in a height direction D3 and has an opening 161 facing upwardly. The terminal mounting wall 11 has a top surface 110 which faces the same direction as the opening 161 of the card edge insertion groove 16, two first end portions 11 which are positioned at two ends in the length direction D1 and respectively connect the two end walls 13, and a terminal providing portion 112 which is positioned between the two first end portions 111 and is provided with the plurality of conductive terminals 2. The limiting wall 12 has a recess opening 121 which is formed at a top surface of the limiting wall 12 and corresponds to the terminal providing portion 112 provided with the plurality of conductive terminals 2 in position, two second end portions 122 which respectively connect the two end walls 13 and are adjacent to two opposite ends of the recess opening 121, and a low wall portion 123 which is positioned between the two second end portions 122 and positioned below the recess opening 121 so as to make a height in the height direction D3 lower than the two second end portions 122. In the first embodiment, the height of the low wall portion 123 is about two thirds or so of the height of the terminal mounting wall 11, which may be changed according to the actual need.
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The supporting block 25 has a main body portion 251, a recessed portion 252 and a protruding portion 253, the recessed portion 252 and the protruding portion 253 are positioned at two opposite sides so that the recessed portion 252 and the protruding portion 253 of two adjacent conductive terminals 2 form complementary structures and makes adjacent supporting blocks 25 abut together when the conductive terminals 2 are arranged side by side. The terminal providing portion 112 of the insulating housing 1 is formed with a plurality of terminal grooves 113 which are formed from the bottom mounting surface 15 and respectively receive the conductive terminals 2, and the terminal providing portion 112 of the insulating housing 1 is formed with receiving grooves 114 which each correspond to each terminal groove 113 and receive a supporting block 25, each terminal groove 113 has an aperture 113a positioned on the top surface 110 of the terminal mounting wall 11, adjacent receiving grooves 114 are communicated with each other. When the conductive terminal 2 is assembled to the insulating housing 1, the conductive terminal 2 is placed into the terminal groove 113 from the bottom mounting surface 15, the retention portion 24 of the conductive terminal 2 has an interference protruding block 241 to form interference with a wall surface of the receiving groove 114 so as to fix the conductive terminal 2.
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The mounting structure 52 correspondingly inserts into the insertion groove portion 115a of the mounting groove 115 which is formed with the partition wall 117, the mounting structure 52 has an inserting piece 521 which corresponds to the lower half part of the corresponding insertion groove portion 115a and two interference portions 522 which are formed at edges of the inserting piece 521 by tearing the inserting piece 521 and bend toward the partition wall 117 and protrude to interference with the wall body 117a of the partition wall 117 (see
In conclusion, in the card edge connector 100 of the present disclosure, by that the tongue portion 32 of the covering member 3 covers the opening 161 of the card edge insertion groove 16 and the contact portions 22 of the plurality of conductive terminals 2 positioned below, and by that the body 31 of the covering member 3 covers the aperture 113a of each terminal groove 113 positioned at the top surface 110, it prevents particles such as metal or dust and the like falling into the card edge insertion groove 16 or the terminal grooves 113 to contaminate the conductive terminals 2, in turn avoids phenomena such as poor contact or short circuit occurring, and promotes the electric contact performance of the plurality of conductive terminals 2. And even if after the electronic module 20 is inserted into the card edge insertion groove 16, the tongue portion 32 of the covering member 3 having flexibility still can cooperate with the electronic module 20 to flex to cover a gap between the electronic module 20 and the terminal mounting wall 11 of the insulating housing 1.
However, the above description is only for the embodiments of the present disclosure, and the implementing scope of the present disclosure is not limited thereto, and all the simple equivalent changes and modifications according to the scope of the claims and the specification of the present disclosure are still fallen within the scope of the present disclosure.
Number | Date | Country | Kind |
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201811203224.7 | Oct 2018 | CN | national |