CN208674418U - Connector - Google Patents
Connector Download PDFInfo
- Publication number
- CN208674418U CN208674418U CN201820775764.1U CN201820775764U CN208674418U CN 208674418 U CN208674418 U CN 208674418U CN 201820775764 U CN201820775764 U CN 201820775764U CN 208674418 U CN208674418 U CN 208674418U
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- arm
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- welding
- signal terminals
- signal
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- 230000003014 reinforcing effect Effects 0.000 claims abstract description 37
- 238000003032 molecular docking Methods 0.000 claims abstract description 11
- 238000003466 welding Methods 0.000 claims description 77
- 125000006850 spacer group Chemical group 0.000 claims description 26
- 210000001503 joint Anatomy 0.000 claims description 24
- 239000000758 substrate Substances 0.000 claims description 21
- 230000013011 mating Effects 0.000 claims description 8
- 238000005728 strengthening Methods 0.000 claims description 4
- 229910000679 solder Inorganic materials 0.000 claims description 3
- 230000004308 accommodation Effects 0.000 claims 1
- 238000005476 soldering Methods 0.000 description 21
- 238000002955 isolation Methods 0.000 description 8
- 238000004519 manufacturing process Methods 0.000 description 6
- 238000000034 method Methods 0.000 description 3
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000003780 insertion Methods 0.000 description 2
- 230000037431 insertion Effects 0.000 description 2
- 238000009413 insulation Methods 0.000 description 2
- 230000010354 integration Effects 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 229910052751 metal Inorganic materials 0.000 description 2
- 239000002184 metal Substances 0.000 description 2
- 239000007769 metal material Substances 0.000 description 2
- 230000008054 signal transmission Effects 0.000 description 2
- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 description 1
- 230000006978 adaptation Effects 0.000 description 1
- 229910045601 alloy Inorganic materials 0.000 description 1
- 239000000956 alloy Substances 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 210000002421 cell wall Anatomy 0.000 description 1
- 229910052802 copper Inorganic materials 0.000 description 1
- 239000010949 copper Substances 0.000 description 1
- 238000012938 design process Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 229910052742 iron Inorganic materials 0.000 description 1
- 230000001788 irregular Effects 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 229910052755 nonmetal Inorganic materials 0.000 description 1
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- Coupling Device And Connection With Printed Circuit (AREA)
Abstract
The utility model discloses a kind of connector, including insulating base, first group of signal terminal, second group of signal terminal and reinforcing frame, insulating base is provided with first terminal accommodating notch, Second terminal accommodating notch and the slot for connecting with docking target;First group of signal terminal and second group of signal terminal are each attached on insulating base, and are extended respectively in first terminal accommodating notch and Second terminal accommodating notch;It is formed between first group of signal terminal and second group of signal terminal and docks space;Reinforcing frame is set on insulating base, receiving notch is provided at least one frame angle of reinforcing frame, receiving notch is corresponding with the groove angle position of slot and is connected with slot, the opposite two sides in reinforcing frame position are respectively arranged with first and arm are welded and fixed and second is welded and fixed arm, and first group of signal terminal and second group of signal terminal are respectively positioned in the space that reinforcing frame and insulating base are formed.The utility model has the advantages that small in size, high mechanical strength, easy to use and long service life.
Description
Technical Field
The utility model relates to a signal connection technical field, in particular to connector.
Background
With the rapid development of electronic technology, electronic products have become an indispensable part of people's lives, and connectors as indispensable parts of electronic devices play an important role in our lives. The connector mainly plays a role in ensuring smooth and continuous current circulation, and enables the design and production process to be more convenient and flexible, and reduces the production and maintenance cost. The conventional connector generally includes an insulating base, and a first group of signal terminals and a second group of signal terminals, the first group of signal terminals and the second group of signal terminals being fixed to the insulating base with a space therebetween.
(1) Due to the reduction of mechanical strength caused by the reduction of the volume, a general large-size connector can bear larger mechanical force used in the matching process without being damaged, while a small-size connector cannot bear the mutual friction among the connectors in the assembling process, the connectors can be damaged or broken, the mechanical service life is greatly shortened, and even the connector cannot be normally used;
(2) along with the higher integration level of electronic products, the higher integration level requirement of devices in the existing connector is required, and because the first group of signal terminals and the second group of signal terminals of the existing connector both extend from the bottom of the connector to the outside of the insulating base and are connected with the circuit board by the part of which the bottom extends to the outside of the insulating base, the size is larger, and the miniaturization requirement of the electronic products cannot be met.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem be, provide a connector that mechanical strength is high.
In order to solve the technical problem, the utility model discloses a connector, which comprises an insulating base, a first group of signal terminals, a second group of signal terminals and a reinforcing frame, wherein the insulating base is provided with a first terminal holding gap, a second terminal holding gap and a slot for connecting with a butt joint target, and the first terminal holding gap and the second terminal holding gap are communicated with the slot; the first group of signal terminals and the second group of signal terminals are fixed on the insulating base and respectively extend into the first terminal accommodating notch and the second terminal accommodating notch; a docking space for connecting with a docking target is formed between the first group of signal terminals and the second group of signal terminals, the first group of signal terminals comprise a plurality of first signal terminals which are arranged in a row, the second group of signal terminals comprise a plurality of second signal terminals which are arranged in a row, and the first signal terminals and the second signal terminals both extend into the slot; the reinforcing frame is sleeved on the insulating base, an accommodating notch is formed in at least one frame corner of the reinforcing frame, the accommodating notch corresponds to the groove corner of the slot and is communicated with the slot, a first welding fixing arm and a second welding fixing arm are arranged on two opposite sides of the reinforcing frame respectively, and the first group of signal terminals and the second group of signal terminals are located in a space formed by the reinforcing frame and the insulating base.
Preferably, a first gap is formed between adjacent first signal terminals at the first terminal receiving notch.
Preferably, a second gap is formed between adjacent second signal terminals at the second terminal receiving notch.
Preferably, the insulating base includes the base plate and encircles the fin that the base plate edge set up, the relative both sides in base plate position are provided with respectively first terminal holding breach reaches second terminal holding breach, first group signal terminal reaches the second group signal terminal all is located completely in the space that insulating base formed, the base plate with the fin forms the slot, the strengthening frame cover is established on the fin.
Preferably, the reinforcing frame includes a first frame body, a second frame body, a first connecting arm, a second connecting arm, a first welding fixing arm and a second welding fixing arm, the first frame body and the second frame body are respectively sleeved at two opposite ends of the protruding rib, the first frame body and the second frame body are both provided with a convex portion for connecting with the butt joint target, the convex portion is located in the slot, a first end of the first connecting arm is connected with the first frame body, a second end of the first connecting arm is connected with the second frame body, a first end of the second connecting arm is connected with the first frame body, a second end of the second connecting arm is connected with the second frame body, the first connecting arm and the second connecting arm are respectively located at two opposite sides of the insulating base, the first connecting arm is connected with the first welding fixing arm, the second connecting arm is connected with the second welding fixing arm.
Preferably, the first frame body comprises a first sleeving part, a second sleeving part, a third sleeving part, a first welding part and a second welding part, the first sleeving part, the second sleeving part and the third sleeving part are all sleeved on the first end of the convex rib, the second sleeving part and the third sleeving part are respectively connected with two opposite ends of the first sleeving part, the angle formed by the second sleeving part and the third sleeving part is α, wherein α is more than or equal to 85 degrees and less than or equal to 95 degrees, the accommodating notches are respectively arranged at the positions where the second sleeving part and the third sleeving part are connected with the first sleeving part, the first welding part is connected with the second sleeving part, the second welding part is connected with the third sleeving part, and the first welding part and the second welding part are respectively located on two opposite sides of the insulating base.
Preferably, the first frame body further includes a third welding portion and a fourth welding portion which are both connected to the first sleeving portion, the third welding portion and the fourth welding portion are arranged at intervals and are formed with a first interval space, and the reinforcing frame is of an integrally formed structure.
Preferably, the first signal terminal includes a first signal connecting arm and a first welding arm, the first signal connecting arm is fixed on the substrate and extends into the slot, and the first welding arm is located in the first terminal accommodating notch and connected to the first signal connecting arm.
Preferably, the insulating base further includes a first group of spacers, where the first group of spacers includes a plurality of first spacers arranged at intervals, the first spacers are located in the slots and connected to the substrate, and every two adjacent first spacers are clamped on one of the first signal connecting arms.
Preferably, the first signal connecting arm comprises a first contact arm and a second contact arm, a first end of the first contact arm is connected with the first welding arm, an angle formed by the first contact arm and the first welding arm is β, wherein the angle is equal to or larger than 85 degrees and equal to or smaller than β degrees and equal to or smaller than 95 degrees, a second end of the first contact arm extends towards the first welding arm to form the second contact arm, a first deformation space is formed between the first contact arm and the second contact arm, and a first groove used for being connected with the butting target is arranged on the surface, facing away from the first deformation space, of the second contact arm.
The utility model discloses following beneficial effect has: first, the first group of signal terminals and the second group of signal terminals are fixed on the insulating base and extend into the first terminal accommodating notch and the second terminal accommodating notch respectively, and the first group of signal terminals and the second group of signal terminals are located in a space formed by the reinforcing frame and the insulating base, so that the size is small, and the miniaturization requirement of electronic products is well met. Secondly, through being provided with the strengthening frame, just at least one frame angle department of strengthening frame is provided with and holds the breach, hold the breach with the groove angle position of slot corresponds and is linked together with the slot, therefore not only the mechanical strength of connector is high, can bear and use great mechanical force and unlikely damage when cooperating with the butt joint target, dodge the butt joint target through holding the breach during the use moreover, be difficult to block to be convenient for use and long service life, and fix through first welding fixed arm and second fixed arm welding, therefore connect more firmly, through setting up hold the breach, therefore more convenient to manufacture. Finally, first group signal terminal with be formed with between the second group signal terminal and be used for with the butt joint target connection the butt joint space, work as the utility model discloses a connector with when the butt joint target is connected, the signal isolation piece of butt joint target inserts in the butt joint space, through the signal isolation piece is kept apart, first group signal terminal with the signal between the second group signal terminal can not mutual interference, therefore signal transmission is more stable, connects also more reliably, can transmit high-speed radio frequency signal betterly.
Drawings
Fig. 1 is a schematic structural diagram of a preferred embodiment of the connector of the present invention;
fig. 2 is a schematic view of a reinforcing frame of the connector of the present invention shown in fig. 1;
fig. 3 is a schematic structural view of the connector of fig. 1 with the reinforcing frame removed;
fig. 4 is a schematic structural view of the connector of fig. 1 with the insulating base removed;
fig. 5 is a schematic structural view of the connector shown in fig. 1 after the insulating base and the reinforcing frame are removed;
fig. 6 is a schematic structural view of a first signal terminal of the connector of the present invention shown in fig. 1;
fig. 7 is a schematic structural diagram of a second signal terminal of the connector of the present invention shown in fig. 1.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and examples. It should be noted that, if there is no conflict, the embodiments and various features in the embodiments of the present invention may be combined with each other, and all are within the scope of the present invention.
Referring to fig. 1 to 7, the present invention discloses a connector, which includes an insulating base 1, a first group of signal terminals 2, a second group of signal terminals 3 and a reinforcing frame 4 for increasing the mechanical strength of the connector, wherein the insulating base 1 is provided with a slot 15 for connecting with a mating object. Specifically, the insulation base 1 includes a substrate 11, a first group of spacers 12, a second group of spacers 13, and a protruding rib 14 disposed around an edge of the substrate 11, the substrate 11 and the protruding rib 14 form the slot 15, and the slot 15 is polygonal and has a plurality of slot corners 151. It is understood that the shape of the insertion groove 15 and the number of the groove corners 151 are not particularly limited herein. Two opposite ends of the convex rib 14 are provided with positioning columns 16 on one side facing away from the substrate 11, each end of the convex rib 14 is provided with two positioning columns 16, and the two positioning columns 16 at each end are arranged at intervals and are respectively positioned on two opposite sides of the convex rib 14.
The first group of spacers 12 includes a plurality of first spacers 121 arranged at intervals, a plurality of the first spacers 121 are arranged in a row, and the first spacers 121 are connected to the substrate 11 and located in the slot 15. The second group of spacers 13 includes a plurality of second spacers 131 arranged at intervals, the plurality of second spacers 131 are arranged in a row, and the second spacers 131 are connected to the substrate 11 and are located in the slot 15. The insulating base 1 is further provided with a first terminal accommodating notch 17 and a second terminal accommodating notch 18, specifically, two opposite sides of the substrate 11 are respectively provided with the first terminal accommodating notch 17 and the second terminal accommodating notch 18, the first terminal accommodating notch 17 and the second terminal accommodating notch 18 are both communicated with the slot 15, and the first spacer 121 and the second spacer 131 are located between the first terminal accommodating notch 17 and the second terminal accommodating notch 18.
In this embodiment, the insulating base 1 is an integrally formed structure, the substrate 11 is rectangular, the protruding rib 14 is a rectangular frame, the slot 15 is rectangular, the slot corners 151 are located at four corners of the protruding rib 14, and the thickness of the protruding rib 14 is greater than that of the substrate 11, so that the size of the insulating base 1 can be reduced, and the reliability of the insulating base 1 is better ensured. It is understood that the insulating base 1 may be a square or other irregular shape, and the shape thereof is not particularly limited. In one embodiment, the first set of spacers 12 or/and the second set of spacers 13 may not be provided. Therefore, the structure of the insulating base 1 is not particularly limited herein, as long as the first group signal terminals 2 and the second group signal terminals 3 can be fixed.
The first group of signal terminals 2 and the second group of signal terminals 3 are fixed on the insulating base 1 and extend into the first terminal accommodating notch 17 and the second terminal accommodating notch 18, respectively. A docking space 5 for connecting with a docking object is formed between the first group of signal terminals 2 and the second group of signal terminals 3, a signal isolation piece of the docking object extends into the docking space 5, and the first group of signal terminals 2 and the second group of signal terminals 3 can be clamped on the docking object through the docking space 5, so that connection is reliable. The butt joint target can be with the utility model discloses a public connector of connector shape looks adaptation, public connector is provided with signal isolation piece, of course, the butt joint target also can be the wire etc. that is provided with signal isolation piece, wherein, signal isolation piece can be the metal sheet. The first group of signal terminals 2 includes a plurality of first signal terminals 21 arranged in a row, and the first signal terminals 21 are fixed on the substrate 11 and extend into the slot 15. Specifically, the first signal terminal 21 includes a first signal connecting arm 22 and a first soldering arm 23, and the first signal connecting arm 22 is fixed on the substrate 11 and extends into the slot 15 for connecting with the mating object. In this embodiment, the first group of signal terminals 2 and the second group of signal terminals 3 are all completely located in the space formed by the insulating base 1, so the overall size of the present invention is smaller. The slot 15, the first terminal receiving notch 17 and the second terminal receiving notch 18 all belong to a space formed by the insulating base 1. It is understood that, in one embodiment, the first group of signal terminals 2 and the second group of signal terminals 3 may slightly protrude from the insulating base 1, and the protruding portions are located in the space formed by the reinforcing frame 4. That is, the first group of signal terminals 2 and the second group of signal terminals 3 are both located in the space formed by the reinforcing frame 4 and the insulating base 1. It can be understood that the space enclosed by the reinforcing frame 4, the slot 15, the first terminal receiving notch 17, the second terminal receiving notch 18, and the inside of the insulating base 1 all belong to the space formed by the reinforcing frame 4 and the insulating base 1.
The first soldering arm 23 is connected to the first signal connecting arm 22 and located in the first terminal receiving notch 17, and the extending direction of the first soldering arm 23 is parallel to the substrate 11, so that the first soldering arm 23 can be soldered to a circuit board conveniently. Every two adjacent first spacers 121 are clamped on one first signal connecting arm 22, so that the first signal connecting arm 22 is better prevented from moving arbitrarily, and the signal connection is more stable. A first gap L1 is formed between the adjacent first signal terminals 21 at the first terminal receiving notch 17, that is, the first gap L1 is formed between the adjacent first welding arms 23, so that when the first welding arms 23 are welded to a circuit board, the first gap L1 can receive a solder for connecting the first welding arms 23 to the circuit board, and the connection is more stable.
The first signal connecting arm 22 includes a first contact arm 221 and a second contact arm 222, a first end of the first contact arm 221 is connected to the first soldering arm 23, the first contact arm 221 and the first soldering arm 23 form an angle β, wherein 85 ° ≦ β ≦ 95 °, in the present embodiment, the first end of the first contact arm 221 is vertically connected to the first soldering arm 33, it is understood that the first end of the first contact arm 221 and the first soldering arm 23 form an angle of 88 °, 92 °, etc., which is not particularly limited, the second end of the first contact arm 221 extends toward the first soldering arm 23 to form the second contact arm 222, a first deformation space 223 is formed between the first contact arm 221 and the second contact arm 222, and a surface of the second contact arm 222 facing away from the first deformation space 223 is provided with a first groove 224 for connection with the mating target, when the connector of the present invention is connected to the mating target, the first groove 224 is provided in the first deformation space 223, so that the signal connecting groove 224 can be reliably deformed and not only inserted into the first groove 224, but also the second groove 224 can be deformed into the mating target space 224.
The second group of signal terminals 3 includes a plurality of second signal terminals 31 arranged in a row, the second signal terminals 31 are fixed on the substrate 11 and extend into the slot 15, specifically, the second signal terminals 31 include a second signal connecting arm 32 and a second welding arm 33, and the second signal connecting arm 32 is fixed on the substrate 11 and extends into the slot 15 for connecting with the butt joint target. The second soldering arm 33 is connected to the second signal connecting arm 32 and located in the second terminal receiving recess 18, and the extending direction of the second soldering arm 33 is parallel to the substrate 11, so that the second soldering arm 33 can be soldered to a circuit board conveniently. Every two adjacent second spacers 131 are clamped on one second signal connecting arm 32, so that the second signal connecting arm 32 is better prevented from moving arbitrarily, and the signal connection is more stable. A first gap L2 is formed between the adjacent second signal terminals 31 at the second terminal receiving notch 18, that is, the second gap L2 is formed between the adjacent second soldering arms 33, so that when the second soldering arm 33 is soldered to a circuit board, the second gap L2 can receive solder for connecting the second soldering arm 33 to the circuit board, and the connection is more stable.
The second signal connecting arm 32 comprises a third contact arm 321 and a fourth contact arm 322, a first end of the third contact arm 321 is connected with the second welding arm 33, an angle formed by the third contact arm 321 and the second welding arm 33 is theta, wherein theta is larger than or equal to 85 degrees and smaller than or equal to 95 degrees; in the present embodiment, the first end of the third contact arm 321 is perpendicularly connected to the second welding arm 33, and it is understood that an angle formed by the first end of the third contact arm 321 and the second welding arm 33 may be 88 °, 92 °, and the like, and is not limited in particular. The second end of the third contact arm 321 extends towards the second welding arm 33 to form the fourth contact arm 322, a second deformation space 323 is formed between the third contact arm 321 and the fourth contact arm 322, and a second groove 324 for connecting with the butting object is arranged on the surface of the fourth contact arm 322, which faces away from the second deformation space 323. When will the utility model discloses a connector with when the butt joint target is connected, the butt joint target can insert establish to in the second recess 324, and press on the cell wall of second recess 324, fourth contact arm 322 can move towards warp in the second deformation space 323, therefore not only signal connection is reliable, convenient to use moreover. In this embodiment, the first signal terminal 21 and the second signal terminal 31 are both metal parts capable of being elastically deformed under the action of an external force, and of course, they may also be made of an electrically conductive non-metal material, and in an embodiment, the first welding arm 23 and the second welding arm 33 may not be provided, and they may directly contact with a circuit board through the first signal connecting arm 22 and the second signal connecting arm 32. Therefore, the material and structure thereof are not particularly limited as long as they can transmit signals.
Reinforcing frame 4 cover is established on insulating base 1, reinforcing frame 4 opposite both sides in position are provided with first welding fixed arm 401 and second welding fixed arm 402 respectively. Specifically, the reinforcing frame 4 is sleeved on the convex rib 14, so that the insulating base 1 is better prevented from being easily broken due to external force. At least one frame corner of the reinforcing frame 4 is provided with an accommodating notch 40, the accommodating notch 40 corresponds to the groove corner 151 of the slot 15 and is communicated with the slot 15, the accommodating notch 40 is positioned at the groove corner of the slot 15, and the slot 15 is rectangular. Specifically, the reinforcing frame 4 includes a first frame body 41, a second frame body 42, a first connecting arm 43, a second connecting arm 44, the first welding fixing arm 401 and the second welding fixing arm 402, the first frame body 41 and the second frame body 42 are respectively sleeved at two opposite ends of the protruding rib 14, a first end of the first connecting arm 43 is connected to the first frame body 41, a second end of the first connecting arm 43 is connected to the second frame body 42, a first end of the second connecting arm 44 is connected to the first frame body 41, a second end of the second connecting arm 44 is connected to the second frame body 42, and the first connecting arm 43 and the second connecting arm 44 are respectively located at two opposite sides of the insulating base 1.
In addition, the first connecting arm 43 is further connected to the first welding fixing arm 401, and the second connecting arm 402 is further connected to the second welding fixing arm 402, specifically, the first welding fixing arm 401 is located in the middle of the first connecting arm 43, the second welding fixing arm 402 is located in the middle of the second connecting arm 44, and the first welding fixing arm 401 and the second welding fixing arm 402 are used for being welded to a circuit board, so that the connection is relatively stable. The cross-sectional areas of the first frame body 41 and the second frame body 42 are both larger than the cross-sectional areas of the first connecting arm 43 and the second connecting arm 44, a first notch 45 is formed between the first connecting arm 43 and the first frame body 41 and the second frame body 42, a second notch 46 is formed between the second connecting arm 44 and the first frame body 41 and the second frame body 42, and the first notch 45 and the second notch 46 are oppositely arranged, so that the reinforcing frame 4 is simpler in overall structure, convenient to manufacture and low in cost.
The first frame 41 includes a first socket portion 411, a second socket portion 412, a third socket portion 413, a first welding portion 414, a second welding portion 415, a third welding portion 416, and a fourth welding portion 417, the first socket portion 411, the second socket portion 412, and the third socket portion 413 are all mounted on the first end of the rib 14, the second socket portion 412 and the third socket portion 413 are connected to two ends of the first socket portion 411 respectively, the second socket portion 412 and the third socket portion 413 respectively form an angle α with the first socket portion 411, wherein the angle is 85 ° or more and α ° or less and 95 ° or less, in this embodiment, the second socket portion 412 and the third socket portion 413 are both perpendicular to the first socket portion 411, it is understood that the angle formed by the second socket portion 412 and the third socket portion 413 with the first socket portion 411 may be 88 ° or 92 ° or more, and is not specifically limited, the first socket portion 414 is connected to the second socket portion 412, the second socket portion 415 and the third socket portion 413 are connected to the first socket portion 411, and the third socket portion 417 is more stably connected to the third socket portion 417, and the second socket portion 417 are integrally formed in a gap-welded structure, and the second socket portion 417 is more stably connected to the second socket portion 416, and the third socket portion 417, and the socket portion 417 are more stably formed in this embodiment, and the second socket portion 417 are more stably connected to the second socket portion 417, and the socket portion 417 are more stably connected to the socket portion 417, and the socket portion 416 are more stably formed in this embodiment, and the socket portion 417, and the.
The second frame 42 includes a fourth socket portion 421, a fifth socket portion 422, a sixth socket portion 423, a fifth welding portion 424, a sixth welding portion 425, a seventh welding portion 426, and an eighth welding portion 427, the fourth socket portion 421, the fifth socket portion 422, and the sixth socket portion 423 are all sleeved on the second end of the protruding rib 14, the fifth socket portion 422 and the sixth socket portion 423 are respectively connected to two ends of the fourth socket portion 421, and the fifth socket portion 422 and the sixth socket portion 423 are respectively connected to two ends of the fourth socket portion 421The angles formed by the fourth nesting portion 421 are allWherein,in this embodiment, the fifth socket joint part 422 and the sixth socket joint part 423 are perpendicular to the fourth socket joint part 421, and it is understood that the angle formed by the fifth socket joint part 422 and the sixth socket joint part 423 with the fourth socket joint part 421 may be 88 °, 92 °, and the like, which is not limited herein. The fifth welding part 424 is connected to the fifth socket part 422, the sixth welding part 425 is connected to the sixth socket part 423, and the fifth welding part 424 and the sixth welding part 425 are respectively located at two opposite sides of the insulation base 1, so that the connection is stable.
The seventh soldering portion 426 and the eighth soldering portion 427 are connected to the fourth socket portion 421, and the seventh soldering portion 426 and the eighth soldering portion 427 are spaced apart from each other to form a second spacing space 528, so that the seventh soldering portion 426 and the eighth soldering portion 427 can be easily soldered to a circuit board, and the connector can be more reliably fixed. The two ends opposite to the first nesting portion 411 and the two ends opposite to the fourth nesting portion 421 are both provided with positioning notches 529 corresponding to the positioning columns 16, and the positioning columns 16 are matched with the positioning notches 529, so that not only can the production efficiency be improved, but also the reinforcing frame 4 is more stably connected with the convex ribs 14. In this embodiment, the accommodating notch 40 is disposed at a position where the fifth socket joint part 422 and the sixth socket joint part 423 are connected to the fourth socket joint part 421.
The first frame body 41 and the second frame body 42 are each provided with a projection 47 for connection with the mating object, and the projection 47 is located in the insertion groove 15, so that the reliability of connection between the reinforcing frame 4 and the mating object can be further enhanced. In this embodiment, the first, second, third, fourth, fifth and sixth sleeving parts 411, 412, 413, 421, 422 and 423 are provided with the convex portion 47, so that the force applied to the butt joint object is uniform and the connection is reliable. It is understood that the reinforcing frame 4 may be made of a metal material such as copper, iron, aluminum, or an alloy thereof, and the material thereof is not particularly limited.
In summary, firstly, the first group of signal terminals 2 and the second group of signal terminals 3 are fixed on the insulating base 1 and respectively extend into the first terminal accommodating notch 17 and the second terminal accommodating notch 18, and the first group of signal terminals 2 and the second group of signal terminals 3 are both located in the space formed by the reinforcing frame 4 and the insulating base 1, so that the size is small, and the requirement for miniaturization of electronic products is better satisfied; secondly, by arranging the reinforcing frame 4, and arranging an accommodating notch 40 at least one corner of the reinforcing frame 4, wherein the accommodating notch 40 corresponds to the corner of the slot 15 and is communicated with the slot 15, the mechanical strength of the connector is high, the connector can bear large mechanical force when being matched with a butt joint target without damage, and the butt joint target is avoided through the accommodating notch 40 during use, so the connector is not easy to clamp, the service life is long, the connector is fixed through the first fixing arm welding 401 and the second fixing arm welding 402, the connection is more stable, and the manufacture is more convenient due to the arrangement of the accommodating notch; finally, first group signal terminal 2 with be formed with between the second group signal terminal 3 and be used for with the butt joint space 5 that the butt joint target is connected, work as the utility model discloses a connector with when the butt joint target is connected, the signal isolation piece of butt joint target inserts in the butt joint space 5, through the signal isolation piece is kept apart, first group signal terminal 2 with the signal between the second group signal terminal 3 can not mutual interference, therefore signal transmission is more stable, connects also more reliably, can transmit high-speed radio frequency signal betterly.
The connector provided by the present invention is described in detail above, and the principle and the implementation of the present invention are explained herein by applying specific examples, and the above descriptions of the examples are only used to help understand the method and the core idea of the present invention; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the concrete implementation and the application scope. To sum up, this description content only does the embodiment of the utility model, not therefore the restriction the patent scope of the utility model, all utilize the equivalent structure or the equivalent flow transform that the content of the description and the attached drawing was done, or directly or indirectly use in other relevant technical field, all the same reason is included in the patent protection scope of the utility model, should not be understood as right the utility model discloses a restriction.
Claims (10)
1. A connector is characterized by comprising an insulating base, a first group of signal terminals, a second group of signal terminals and a reinforcing frame, wherein the insulating base is provided with a first terminal accommodating notch, a second terminal accommodating notch and a slot for connecting with a butt joint target, and the first terminal accommodating notch and the second terminal accommodating notch are communicated with the slot; the first group of signal terminals and the second group of signal terminals are fixed on the insulating base and respectively extend into the first terminal accommodating notch and the second terminal accommodating notch; a docking space for connecting with a docking target is formed between the first group of signal terminals and the second group of signal terminals, the first group of signal terminals comprise a plurality of first signal terminals which are arranged in a row, the second group of signal terminals comprise a plurality of second signal terminals which are arranged in a row, and the first signal terminals and the second signal terminals both extend into the slot; strengthen the frame cover and establish on the insulating base, at least one frame angle department of strengthening the frame is provided with and holds the breach, hold the breach with the groove angle position of slot is corresponding and with the slot is linked together, strengthen the relative both sides in frame position and be provided with first welding fixed arm and second welding fixed arm respectively, first group's signal terminal with the second is organized signal terminal and all is located strengthen the frame with in the space that insulating base formed, insulating base includes the base plate and encircles the fin that the base plate edge set up, the thickness of fin is greater than the thickness of base plate.
2. The connector according to claim 1, wherein a first gap is formed between adjacent ones of the first signal terminals at the first-terminal-receiving notches.
3. The connector according to claim 1 or 2, wherein a second gap is formed between adjacent second signal terminals at the second-terminal accommodation notch.
4. The connector according to claim 1 or 2, wherein the first terminal receiving notch and the second terminal receiving notch are respectively disposed on two opposite sides of the substrate, the first group of signal terminals and the second group of signal terminals are completely located in the space formed by the insulating base, the substrate and the rib form the slot, and the reinforcing frame is sleeved on the rib.
5. The connector of claim 4, wherein the reinforcing frame comprises a first frame body, a second frame body, a first connecting arm, a second connecting arm, a first welding fixing arm and a second welding fixing arm, the first frame body and the second frame body are respectively sleeved on two opposite ends of the protruding rib, the first frame body and the second frame body are respectively provided with a convex part for connecting with the butt joint target, the convex part is positioned in the slot, a first end of the first connecting arm is connected with the first frame body, a second end of the first connecting arm is connected with the second frame body, a first end of the second connecting arm is connected with the first frame body, a second end of the second connecting arm is connected with the second frame body, the first connecting arm and the second connecting arm are respectively positioned on two opposite sides of the insulating base, the first connecting arm is connected with the first welding fixing arm, and the second connecting arm is connected with the second welding fixing arm.
6. The connector of claim 5, wherein the first frame body comprises a first sleeving part, a second sleeving part, a third sleeving part, a first welding part and a second welding part, the first sleeving part, the second sleeving part and the third sleeving part are sleeved on the first end of the rib, the second sleeving part and the third sleeving part are respectively connected with two ends opposite to the first sleeving part, an angle formed by the second sleeving part and the third sleeving part and the first sleeving part is α, wherein the angle is 85 degrees or more and is α degrees or less and is 95 degrees, the accommodating notches are respectively arranged at positions where the second sleeving part and the third sleeving part are connected with the first sleeving part, the first welding part is connected with the second sleeving part, the second welding part is connected with the third sleeving part, and the first welding part and the second welding part are respectively located on two sides opposite to the insulating base.
7. The connector of claim 6, wherein the first frame further includes a third welding portion and a fourth welding portion both connected to the first socket portion, the third welding portion and the fourth welding portion are spaced apart from each other and form a first spacing space, and the reinforcing frame is an integrally formed structure.
8. The connector of claim 4, wherein the first signal terminals include first signal connection arms fixed to the substrate and extending into the slots and first solder arms located in the first terminal receiving openings and connected to the first signal connection arms.
9. The connector of claim 8, wherein said dielectric base further comprises a first set of spacers, said first set of spacers comprising a plurality of first spaced-apart spacers, said first set of spacers being positioned in said slots and connected to said substrate, each adjacent two of said first spacers being clamped to one of said first signal connecting arms.
10. The connector of claim 8, wherein the first signal connecting arm comprises a first contact arm and a second contact arm, a first end of the first contact arm is connected with the first welding arm, the first contact arm and the first welding arm form an angle β, wherein the angle is equal to or larger than 85 degrees and equal to or smaller than β degrees and equal to or smaller than 95 degrees, a second end of the first contact arm extends towards the first welding arm to form the second contact arm, a first deformation space is formed between the first contact arm and the second contact arm, and a surface of the second contact arm, facing away from the first deformation space, is provided with a first groove for connecting with the mating object.
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CN201820775764.1U CN208674418U (en) | 2018-05-23 | 2018-05-23 | Connector |
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CN201820775764.1U CN208674418U (en) | 2018-05-23 | 2018-05-23 | Connector |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110380289A (en) * | 2019-06-27 | 2019-10-25 | 深圳市长盈精密技术股份有限公司 | Plate is to plate socket, plug and component |
-
2018
- 2018-05-23 CN CN201820775764.1U patent/CN208674418U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110380289A (en) * | 2019-06-27 | 2019-10-25 | 深圳市长盈精密技术股份有限公司 | Plate is to plate socket, plug and component |
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