Connectors
By setting specific conductive sheet structures and slot designs on the male and female seats of the connector, the problem of larger thickness of the traditional connector is solved, a smaller plug-in height and thickness is achieved, and the reliability and conductive performance of the connector are improved.
Patent Information
- Application Number
- CN201910513468.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-06-14
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2039-06-14
AI Technical Summary
The thickness of the traditional connector in the connection direction results in a larger spacing between the two connected active devices, increasing the thickness and mating height of the product.
A connector is designed to allow the conductive sheet to elastically abut in the male and female seats by providing a specific conductive sheet structure and slot design, and to be partially located in the receiving slot during plugging, reducing the plug height.
Achieve a smaller plug-in height and thickness, improving the reliability and conductivity of the connector while reducing the thickness of the product.
Smart Images

Figure CN112086777B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of signal transmission, and in particular to a connector. Background Art
[0002] Connectors are used to connect two active devices to transmit current or signals. Connectors have mechanical, electrical and environmental properties. Connectors are developing towards high density, high-speed transmission and high frequency.
[0003] However, the conventional connector is thicker in the connection direction, which makes the spacing between the two active devices connected by the connector larger, resulting in a higher mating height of the product, thereby making the thickness of the product thicker. Summary of the invention
[0004] Based on this, it is necessary to provide a connector to address the problem of high mating height of the product.
[0005] A connector, comprising:
[0006] A male seat, wherein the male seat is formed with a communicating receiving groove and a first slot;
[0007] A female seat, wherein at least a portion of the female seat is located in the receiving groove, and the female seat is provided with a connected exposed groove and a clamping groove;
[0008] A first conductive sheet, the first conductive sheet comprising a first conductive sheet body, a first bending portion and a second bending portion, the first conductive sheet body being inserted into the first slot, the first conductive sheet body, the first bending portion and the second bending portion being sequentially connected along a direction in which the first conductive sheet body is inserted into the first slot;
[0009] The second conductive sheet comprises a second conductive sheet body and two snap-in portions respectively connected to two sides of the second conductive sheet body, the second conductive sheet body portion is located in the exposed groove and abuts against the second bent portion, and the two snap-in portions are both buckled into the snap-in groove.
[0010] In the above-mentioned connector, when the female socket and the male socket are plugged in and matched, at least part of them are located in the accommodating groove, so that the plugging of the female socket and the male socket is more reliable, and at the same time the height of the plugging and matching between the two is reduced; because the first conductive sheet includes the first conductive sheet body, the first bending portion and the second bending portion which are sequentially connected along the direction in which the first conductive sheet body is inserted into the first slot, the bending shape structure of the first bending portion and the second bending portion not only enables the first conductive sheet to elastically abut against the second conductive sheet, but also enables the first conductive sheet to have better accommodation in the direction of insertion into the first slot, thereby making the thickness of the male socket smaller; because the two snap-in portions are respectively It is connected to both sides of the second conductive sheet body, that is, the second conductive sheet body is located in the middle position between the two clip-in parts, both clip-in parts are clipped into the clip-in groove, and the second conductive sheet body part is located in the exposed groove and abuts against the second bending part, so that the second conductive sheet body located in the exposed groove has larger dimensions on both sides perpendicular to the direction in which the first clip-in part clips into the clip-in groove, that is, the lateral dimension of the second conductive sheet is larger and the longitudinal dimension in the direction in which it clips into the clip-in groove is smaller, thereby making the thickness dimension of the female seat smaller; since the thickness dimensions of the male seat and the female seat are both smaller, the mating height of the connector is smaller, thereby reducing the thickness of the product.
[0011] In one of the embodiments, the second conductive sheet body abuts against the inner wall of the exposed groove, making the structure of the connector more compact and increasing the abutment area between the second conductive sheet and the female socket; because the second conductive sheet body abuts against the inner wall of the exposed groove, the resistance encountered during the plug-in mating process between the male socket and the female socket is smaller.
[0012] In one embodiment, the bending direction of the first bending portion is opposite to the bending direction of the second bending portion, so that the second bending portion of the first conductive sheet can better elastically abut against the second conductive sheet body, and at the same time, the dimension of the first conductive sheet in the direction of insertion into the first slot has better accommodation, thereby reducing the thickness of the male seat.
[0013] In one of the embodiments, the second bending portion is provided with an open groove, so that the first conductive sheet has better elasticity. At the same time, when the second bending portion abuts against the second conductive sheet body, air dissipates heat through the open groove, thereby improving the heat dissipation performance of the connector.
[0014] In one embodiment, the opening groove extends to the first bending portion, so that the first conductive sheet has better elasticity.
[0015] In one embodiment, a first guiding bevel is provided on an edge of the first slot adjacent to the male seat, and a second guiding bevel parallel to the first guiding bevel is provided on the end of the second conductive sheet body located in the exposed slot. When the male seat and the female seat are mated and plugged, the second bent portion is quickly inserted into the exposed slot along the first guiding bevel and the second guiding bevel respectively and abuts against the second conductive sheet body, thereby playing a guiding role and reducing the resistance to the mating and plugging of the male seat and the female seat.
[0016] In one embodiment, the first slot includes two first unit slots, each of which is connected to the accommodating slot, each of which is provided with a first conductive sheet inserted therein, the first bent portions of the two first conductive sheets in the two first unit slots have opposite bending directions, and the second bent portions of the two first conductive sheets in the two first unit slots have opposite bending directions;
[0017] The snap-in slot includes two snap-in unit slots, both of which are connected to the exposed slot, and each of the snap-in unit slots is buckled into a second conductive sheet, and the second bent portions of the two first conductive sheets are respectively abutted against the second conductive sheet bodies of the two second conductive sheets. Since the bending directions of the second bent portions of the two first conductive sheets located in the two first unit slots are opposite, the abutting forces of the second bent portions of the two first conductive sheets elastically abutting against the two second conductive sheet bodies are equal in magnitude and opposite in direction, thereby making the insertion of the male socket and the female socket more secure and reliable, and at the same time improving the conductive performance of the connector.
[0018] In one embodiment, the connector further includes a first guide terminal and a second guide terminal;
[0019] The male seat is provided with a second slot and an open slot connected to each other, the second slot is connected to the accommodating slot through the open slot, the first guide terminal comprises a terminal body and an abutment portion connected to each other, the terminal body is inserted into the second slot, the abutment portion is inserted into the open slot; the abutment portion is bent;
[0020] The female base is provided with a connected plug-in slot, the second guide terminal is located in the plug-in slot and connected to the female base, and at least part of the abutment portion is located in the accommodating slot and abuts against the second guide terminal, so that the first guide terminal and the second guide terminal are electrically connected. The female base and the male base are plugged together to realize the signal connection of the two printed circuit boards, that is, the two printed circuit boards transmit signals through the first guide terminal and the second guide terminal, so that the connector has a signal transmission function, and because the connector also has a power transmission function, the connector can simultaneously realize the transmission of signals and power.
[0021] In one of the embodiments, the female socket is further provided with a connecting groove connected to the plug-in groove, and the second conductor terminal is partially located in the connecting groove and connected to the female socket to prevent the second conductor terminal from moving relative to the female socket, so that the second conductor terminal can be reliably connected to the female socket.
[0022] In one embodiment, the male seat is formed with a boss structure, the boss structure is located in the accommodating groove, the second slot and the opening groove are both opened in the boss structure, and the boss structure is buckled into the connecting groove so that the abutting portion is pressed against the second guide terminal, thereby making the abutting portion more reliably abut against the second guide terminal. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a schematic diagram of a connector according to an embodiment;
[0024] Figure 2 for Figure 1 An exploded view of the connector shown;
[0025] Figure 3 for Figure 1 A cross-sectional view of the connector along line AA;
[0026] Figure 4 for Figure 3 A schematic diagram showing that the male socket of the connector is connected to the first conductive sheet and the first guide terminal respectively;
[0027] Figure 5 for Figure 3 A schematic diagram showing that the female socket of the connector is connected to the second conductive sheet and the second guide terminal respectively;
[0028] Figure 6 for Figure 5 A partial schematic diagram of the connector shown;
[0029] Figure 7 for Figure 1 An exploded view of the connector shown;
[0030] Figure 8 for Figure 1 A partial schematic diagram of another viewing angle of the connector shown. DETAILED DESCRIPTION
[0031] In order to facilitate understanding of the present application, the connector will be described more fully below with reference to the relevant drawings. The preferred embodiments of the connector are shown in the drawings. However, the connector can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the connector more thorough and comprehensive.
[0032] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation method.
[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used in the specification of the connector herein are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" as used herein includes any and all combinations of one or more of the related listed items.
[0034] One embodiment is that a connector includes a male seat, a female seat, a first conductive sheet and a second conductive sheet, the male seat is formed with a connected accommodating groove and a first slot; the female seat is at least partially located in the accommodating groove, and the female seat is provided with a connected exposed groove and a snap-in groove; the first conductive sheet includes a first conductive sheet body, a first bending portion and a second bending portion, the first conductive sheet body is inserted into the first slot, the first conductive sheet body, the first bending portion and the second bending portion are connected in sequence along the direction of the first conductive sheet body being inserted into the first slot; the second conductive sheet includes a second conductive sheet body, two snap-in portions respectively connected to both sides of the second conductive sheet body, the second conductive sheet body is partially located in the exposed groove and abuts against the second bending portion, and the two snap-in portions are both snapped into the snap-in groove.
[0035] like Figure 1 and Figure 2 As shown, a connector 10 of an embodiment includes a male socket 100, a female socket 200, a first conductive sheet 300, and a second conductive sheet 400. During installation, the male socket is connected to one of the printed circuit boards, and the female socket is connected to the other printed circuit board. The female socket and the male socket are plugged together, so that the two printed circuit boards are connected together through the connector. Figure 3 and Figure 4 As shown, in one embodiment, the male seat is formed with a communicating receiving groove 110 and a first slot 120. In one embodiment, the female seat is at least partially located in the receiving groove, so that when the female seat and the male seat are plugged together, at least part of the female seat is located in the receiving groove, making the plugging of the female seat and the male seat more reliable and reducing the height of the plugging and matching between the two. Figure 5 and Figure 6As shown, in one embodiment, the female seat 200 is provided with a connected exposed groove 210 and a clamping groove 220. In this embodiment, the male seat and the female seat are both made of plastic. In one embodiment, the male seat and the female seat are both processed by injection molding, so that the structure of the connector is simpler and easier to mold.
[0036] In this embodiment, the first conductive sheet abuts against the second conductive sheet to achieve power transmission. Figure 7 As shown, in one embodiment, the first conductive sheet 300 includes a first conductive sheet body 310, a first bending portion 320 and a second bending portion 330, and the first conductive sheet body is inserted into the first slot. The first conductive sheet body, the first bending portion and the second bending portion are sequentially connected along the direction in which the first conductive sheet body is inserted into the first slot.
[0037] In one embodiment, the direction along which the first conductive sheet body is inserted into the first slot is set as the first direction, and the direction perpendicular to the first direction is set as the second direction, the second direction is the extension direction of the first slot, and the second direction is not the thickness direction of the first conductive sheet. Figure 3 The X-axis direction is shown, and the second direction is Figure 3 In the Y-axis direction shown. In this embodiment, the first conductive sheet body is a rectangular sheet structure, and the size of the first conductive sheet body in the first direction is smaller than the size of the first conductive sheet body in the second direction. Under the condition of the same power flow, the required size of the first conductive sheet in the direction of inserting into the first slot is smaller, so that the thickness of the male seat is smaller.
[0038] In one embodiment, the first bending portion and the second bending portion are both bent sheet structures. The linear dimension of the end of the first conductive sheet body away from the first bending portion and the end of the second bending portion away from the first bending portion in the first direction is the longitudinal dimension of the first conductive sheet. Since the dimension of the first conductive sheet body in the second direction is larger than the dimension of the first bending portion in the second direction and also larger than the dimension of the second bending portion in the second direction, the dimension of the first conductive sheet body in the second direction is defined as the transverse dimension of the first conductive sheet. In one embodiment, the longitudinal dimension of the first conductive sheet is smaller than the transverse dimension of the first conductive sheet, so that the longitudinal dimension of the first conductive sheet is smaller under the same overcurrent condition, thereby making the thickness dimension of the corresponding male seat smaller, that is, the width of the product is increased in the transverse direction of the physical structure to enhance the current carrying capacity of the connector. In one embodiment, the end of the first conductive sheet body away from the first bending portion is connected to the printed circuit board by a fisheye crimping process, thereby improving the assembly efficiency of the connector.
[0039] like Figure 7As shown, in one embodiment, the second conductive sheet 400 includes a second conductive sheet body 410 and two snap-in portions 420 respectively connected to two sides of the second conductive sheet body. In this embodiment, the two snap-in portions are respectively connected to two sides of the second conductive sheet parallel to the second direction. Figure 6 In one embodiment, the second conductive sheet body is partially located in the exposed groove and abuts against the second bent portion, so that the second bent portion elastically abuts against the second conductive sheet body, thereby electrically connecting the second conductive sheet to the first conductive sheet. Since the first bent portion and the second bent portion are both bent sheet structures, the second bent portion has better elasticity. In one embodiment, the two snap-in portions are both snapped into the snap-in groove, so that the second conductive sheet is snapped to the female seat. In this embodiment, the two snap-in portions have an L-shaped notch, so that the two snap-in portions are better snapped to the female seat. In one embodiment, the second conductive sheet body is connected to the printed circuit board through a fisheye crimping process, which improves the assembly efficiency of the connector.
[0040] In this embodiment, the number of first slots is N, the number of first conductive sheets is 2N, each first slot is connected to the receiving slot, and each first slot is provided with two first conductive sheets. The two first conductive sheets located in the same receiving slot are arranged in parallel and spaced apart to realize the conduction of the positive and negative poles of the power supply of a single channel. Correspondingly, the number of exposed slots is N, the number of snap-in slots is 2N, and each exposed slot is connected to two snap-in slots respectively. The number of second conductive sheets is 2N, and the two snap-in slots respectively connected to the same exposed slot buckle the two second conductive sheets, so that the two second conductive sheets are arranged in parallel and spaced apart. The second bending portion of each first conductive sheet abuts against the second conductive sheet body of the corresponding second conductive sheet. In this embodiment, N is 6, that is, the connector can realize power transmission of 6 channels at the same time. In other embodiments, N can also be 7 or 8 or other numbers.
[0041] In the above-mentioned connector, since the first conductive sheet includes the first conductive sheet body, the first bending portion and the second bending portion which are sequentially connected along the direction in which the first conductive sheet body is inserted into the first slot, the bending shape structure of the first bending portion and the second bending portion not only enables the first conductive sheet to elastically abut against the second conductive sheet, but also enables the first conductive sheet to have better accommodation in the direction of insertion into the first slot, thereby making the thickness dimension of the male seat smaller; since the two snap-in portions are respectively connected to the two sides of the second conductive sheet body, that is, the second conductive sheet body is located in the middle position between the two snap-in portions, the two snap-in portions are both snapped into the snap-in slot, and the second conductive sheet body part is located in the exposed slot and abuts against the second bending portion, so that the second conductive sheet body located in the exposed slot has larger dimensions on both sides perpendicular to the direction in which the first snap-in portion is snapped into the snap-in slot, that is, the lateral dimension of the second conductive sheet is larger and the longitudinal dimension in the direction in which it is snapped into the snap-in slot is smaller, thereby making the thickness dimension of the female seat smaller; since the thickness dimensions of the male seat and the thickness dimensions of the female seat are both smaller, the matching height of the connector is smaller, thereby reducing the thickness of the product.
[0042] In one of the embodiments, the first conductive sheet body, the first bending portion and the second bending portion are integrally formed, so that the structure of the first conductive sheet is more compact and the manufacturing cost of the first conductive sheet is lower. In one of the embodiments, the first conductive sheet body, the first bending portion and the second bending portion are integrally stamped and formed, so that the manufacturing process of the first conductive sheet is simpler. In one of the embodiments, the width dimension of the second conductive sheet body parallel to the second direction is larger than the dimension of the second conductive sheet body parallel to the first direction, so that the lateral width dimension of the second conductive sheet is larger. Under the condition of the same current carrying capacity, the required second conductive sheet is smaller in the direction in which the snap-in portion is inserted into the snap-in groove, so that the thickness dimension of the female seat is smaller, and the matching height of the product is further reduced.
[0043] In one embodiment, the second conductive sheet body and the two snap-in parts are integrally stamped and formed, so that the structure of the second conductive sheet is relatively simple. In other embodiments, the second conductive sheet body and the two snap-in parts can also be formed separately and connected together by welding.
[0044] In one embodiment, the second conductive sheet body abuts against the inner wall of the exposed groove, making the structure of the connector more compact and increasing the abutment area between the second conductive sheet and the female socket. Since the second conductive sheet body abuts against the inner wall of the exposed groove, the resistance encountered during the plug-in mating process between the male socket and the female socket is small. In this embodiment, the second conductive sheet body completely abuts against the inner wall of the exposed groove, making the connection between the second conductive sheet body and the female socket more compact.
[0045] In one embodiment, the bending direction of the first bending portion is opposite to the bending direction of the second bending portion, so that the first conductive sheet has better elasticity, the second bending portion of the first conductive sheet is better elastically abutted against the second conductive sheet body, and the first conductive sheet has better accommodation in the direction of insertion into the first slot, so that the thickness of the male seat is smaller. It can be understood that in other embodiments, the bending direction of the first bending portion and the bending direction of the second bending portion can also be the same.
[0046] like Figure 7 As shown, in one embodiment, the second bending portion is provided with an open slot 332, so that the first conductive sheet has better elasticity, and when the second bending portion abuts against the second conductive sheet body, air dissipates heat through the open slot, thereby improving the heat dissipation performance of the connector. In this embodiment, the open slot extends in a direction parallel to the first direction.
[0047] In order to make the first conductive sheet have better elasticity, in one embodiment, the opening groove extends to the first bending portion, so that the first conductive sheet has better elasticity. In this embodiment, the opening grooves are respectively opened in the first bending portion and the second bending portion. In order to further improve the elasticity of the first conductive sheet, the opening groove also extends to the end of the first bending portion connected to the first conductive sheet body, so that the first bending portion and the second bending portion are both divided into two parts by the opening groove, so that the second bending portion of the first conductive sheet has better elasticity when it abuts against the second conductive sheet body.
[0048] like Figure 5 As shown, in order to reduce the resistance of the male and female seats to be plugged in, in one embodiment, the edge of the first slot adjacent to the male seat is provided with a first guide bevel 122. When the male and female seats are plugged in, the second bend is inserted into the exposed groove along the first guide bevel and abuts against the second conductive sheet body. In one embodiment, the end of the second conductive sheet body located in the exposed groove is provided with a second guide bevel 412 parallel to the first guide bevel. When the male and female seats are plugged in, the second bend is quickly inserted into the exposed groove along the first guide bevel and the second guide bevel, respectively, to abut against the second conductive sheet body, playing a guiding role, while reducing the resistance of the male and female seats to be plugged in. In one embodiment, the inclination angle of the first guide bevel is 75° to 85°. In this embodiment, the inclination angle of the first guide bevel is 80°, so that the first guide bevel has a better guiding effect, and can better reduce the resistance of the second bend inserted into the exposed groove.
[0049] like Figure 4As shown, in one embodiment, the first slot includes two first unit slots 120a, each of which is connected to the receiving slot, and each of which has a first conductive sheet inserted therein. In one embodiment, the first bending portions of the two first conductive sheets in the two first unit slots have opposite bending directions, and the second bending portions of the two first conductive sheets in the two first unit slots have opposite bending directions. In one embodiment, the first slot also includes a ventilation slot 120b connected to the receiving slot, and the two first unit slots are connected through the ventilation slot, so that the air in the receiving slot can dissipate the heat of the first conductive sheet body in each first unit slot through the ventilation slot, thereby improving the heat dissipation performance of the connector and reducing the weight of the male socket.
[0050] In one of the embodiments, the snap-in slot includes two snap-in unit slots, and both of the snap-in unit slots are connected to the exposed slot. In this embodiment, the two snap-in unit slots are connected through the exposed slot, that is, the two snap-in unit slots are separated by the exposed slot. In one of the embodiments, each of the snap-in unit slots buckles one of the second conductive sheets. In one of the embodiments, the second bent portions of the two first conductive sheets abut against the second conductive sheet bodies of the two second conductive sheets in a one-to-one correspondence. Since the bending directions of the second bent portions of the two first conductive sheets located in the two first unit slots are opposite, the abutment forces of the second bent portions of the two first conductive sheets elastically abutting against the two second conductive sheet bodies are equal in magnitude and opposite in direction, thereby making the insertion of the male and female sockets more secure and reliable, and at the same time improving the conductive performance of the connector.
[0051] In this embodiment, the second bent portions of the two first conductive sheets in the two first unit slots are bent in directions away from each other, so that the bending directions of the second bent portions of the two first conductive sheets in the two first unit slots are opposite, so that the second bent portions of the first conductive sheets in the two first unit slots are inserted into the same exposed groove and abut against the corresponding second conductive sheet body, and at the same time, the second bent portions of the two first conductive sheets in the two first unit slots can be better prevented from abutting against each other. In other embodiments, the second bent portions of the two first conductive sheets in the two first unit slots are bent in directions approaching each other.
[0052] like Figure 3As shown, in one embodiment, a first groove 130 is formed on the side of the male seat away from the female seat, so that the male seat can be formed by mold processing, while reducing the weight of the male seat. In one embodiment, a second groove 230 is formed on the side of the female seat away from the male seat, and the cross section of the second groove is trapezoidal, so that the female seat can be formed by mold processing, especially to facilitate the film removal of the female seat, while reducing the weight of the female seat.
[0053] like Figure 5 As shown, in one embodiment, a positioning column 140 is provided on one side of the male seat adjacent to the female seat, and the positioning column is located in the receiving groove. Figure 6 A positioning groove 240 is provided on the female socket, and the positioning column is inserted into the positioning groove, so that the female socket and the male socket are accurately plugged in, thereby improving the plug-in efficiency of the connector.
[0054] like Figure 7 As shown, in one embodiment, the connector further includes a first guide terminal 500 and a second guide terminal 600. In one embodiment, the male socket is provided with a second slot 150 and an opening slot 160 connected to each other, and the second slot is connected to the receiving slot through the opening slot. Figure 4 As shown, in one embodiment, the first guide terminal includes a terminal body 510 and an abutment portion 520 connected to each other, the terminal body is inserted into the second slot, and the abutment portion is inserted into the opening slot, that is, the abutment portion partially protrudes from the opening slot, so that the abutment portion is partially exposed in the receiving slot. In one embodiment, the abutment portion is bent, so that the space occupied by the first guide terminal in the direction of insertion into the second slot is smaller. In this embodiment, the first guide terminal and the second guide terminal can both be processed by stamping technology, so that the structure of the connector is simpler and easier to form.
[0055] like Figure 5 and Figure 7As shown, in one embodiment, the female seat is provided with a connected plug-in slot 250. In one embodiment, the second guide terminal is located in the plug-in slot and connected to the female seat, and at least part of the abutment portion is located in the accommodating slot and abuts against the second guide terminal, so that the first guide terminal and the second guide terminal are electrically connected. When the female seat and the male seat are plugged and matched, the two printed circuit boards are connected through the first guide terminal and the second guide terminal to realize the signal connection of the two printed circuit boards, so that the connector has a signal transmission function, and because the connector also has a power transmission function, the connector can simultaneously realize the transmission of signals and power. In one embodiment, the number of the first guide terminal and the second guide terminal are both multiple, and the multiple first guide terminals correspond to the multiple second guide terminals one by one to realize multiple signal conduction channels. In this embodiment, the number of the first guide terminal and the second guide terminal is 40, forming 40 signal conduction channels. The 40pin signal terminal is arranged in four rows, that is, 10pin per row, which reduces the space occupied by the guide terminal, reduces the production difficulty during assembly and production, and improves production efficiency.
[0056] like Figure 5 As shown, in order to make the second conductor terminal reliably connected to the female base, in one embodiment, the female base is also provided with a connecting groove 260 connected to the plug-in slot. The second conductor terminal is partially located in the connecting groove and connected to the female base to prevent the second conductor terminal from moving relative to the female base, so that the second conductor terminal can be reliably connected to the female base. In one embodiment, the number of second conductor terminals is multiple, the number of plug-in slots is multiple, and the multiple second conductor terminals are located in the multiple plug-in slots in a one-to-one correspondence. In this embodiment, the multiple plug-in slots are arranged at intervals, and the multiple plug-in slots are all connected to the connecting groove, so that the multiple second conductor terminals are installed on the female base at intervals. As shown Figure 8 As shown, in one embodiment, the male seat is formed with a boss structure 170, and the boss structure is located in the connecting groove. Figure 4 The second slot and the opening slot are both provided in the boss structure. The boss structure is buckled into the connection slot, so that the abutting portion is pressed tightly against the second guide terminal, so that the abutting portion abuts against the second guide terminal more reliably.
[0057] The technical features of the above-described embodiments may be arbitrarily combined. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0058] The above-described embodiments only express several implementation methods of the present application, and the descriptions thereof are relatively specific and detailed, but they cannot be construed as limiting the scope of the patent application. It should be noted that, for a person of ordinary skill in the art, several variations and improvements may be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the attached claims.
Claims
1. A connector, characterized in that: include: A male seat, wherein the male seat is formed with a communicating receiving groove and a first slot; A female seat, wherein at least a portion of the female seat is located in the receiving groove, and the female seat is provided with a connected exposed groove and a clamping groove; A first conductive sheet, the first conductive sheet comprising a first conductive sheet body, a first bending portion and a second bending portion, the first conductive sheet body being inserted into the first slot, the first conductive sheet body, the first bending portion and the second bending portion being sequentially connected along a direction in which the first conductive sheet body is inserted into the first slot; The first slot includes two first unit slots, the first unit slots are connected to the receiving slot, each of the first unit slots is inserted with the first conductive sheet, the first slot also includes a ventilation slot connected to the receiving slot, the two first unit slots are connected through the ventilation slot, and the heat dissipation of the first conductive sheet body is achieved; A second conductive sheet, the second conductive sheet comprising a second conductive sheet body, two snap-in portions respectively connected to two sides of the second conductive sheet body, the second conductive sheet body portion being located in the exposed groove and abutting against the second bent portion, and the two snap-in portions being both buckled into the snap-in groove; The second bending portion is provided with an open groove, and the open groove extends to the end portion where the first bending portion is connected to the first conductive sheet body, so that the first bending portion and the second bending portion are both divided into two parts by the open groove.
2. The connector according to claim 1, characterized in that: The second conductive sheet body abuts against the inner wall of the exposed groove.
3. The connector according to claim 1, characterized in that: The bending direction of the first bending portion is opposite to the bending direction of the second bending portion.
4. The connector according to any one of claims 1 to 3, characterized in that: A first guiding slope is disposed on an edge of the first slot adjacent to the male seat, and a second guiding slope is disposed on an end of the second conductive sheet body located in the exposed groove and parallel to the first guiding slope.
5. The connector according to any one of claims 1 to 3, characterized in that: The first bending portions of the two first conductive sheets located in the two first unit slots have opposite bending directions, and the second bending portions of the two first conductive sheets located in the two first unit slots have opposite bending directions; The snap-in slot includes two snap-in unit slots, both of which are connected to the exposed slot, each of which is buckled into a second conductive sheet, and the second bending portions of the two first conductive sheets are correspondingly abutted against the second conductive sheet bodies of the two second conductive sheets.
6. The connector according to claim 1, characterized in that: The connector further comprises a first guide terminal and a second guide terminal; The male seat is provided with a second slot and an open slot connected to each other, the second slot is connected to the accommodating slot through the open slot on the male seat, the first guide terminal comprises a terminal body and an abutment portion connected to each other, the terminal body is inserted into the second slot, the abutment portion is inserted into the open slot on the male seat; the abutment portion is bent; The female base is provided with a connected plug-in slot, the second conductor terminal is located in the plug-in slot and connected to the female base, and at least a part of the abutment portion is located in the accommodating slot and abuts against the second conductor terminal.
7. The connector according to claim 6, characterized in that: The female socket is also provided with a connecting groove connected with the plug-in groove, and the second conductor terminal is partially located in the connecting groove and connected with the female socket.
8. The connector according to claim 7, characterized in that: The male seat is formed with a boss structure, the boss structure is located in the accommodating groove, the second slot and the opening groove are both opened in the boss structure, and the boss structure is buckled into the connecting groove.
Citation Information
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