Connector female seat, connector, center console and vehicle
Patent Information
- Application Number
- CN202521560127.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-24
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-07-24
AI Technical Summary
可以解决现有技术中连接器母座和连接器公头之间存在连接可靠性低的问题,所述技术方案如下:
Smart Images

Figure CN224669018U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of connectors, and more particularly to a connector socket, connector, center console, and vehicle. Background Technology
[0002] Connectors typically consist of a female connector and a male connector. The mating of the female and male connectors enables electrical connections and signal transmission between circuits or electronic devices, allowing the transmission of current, data, and other information while ensuring the reliability and separability of the connection.
[0003] Currently, connector females have mating holes with connecting terminals inside, and connectors have plugs. After the plug is inserted into the mating hole, it makes contact with the connecting terminals, thus achieving electrical connection between the connector female and the connector male.
[0004] However, there is a problem of low connection reliability between the currently used female connector and male connector. Utility Model Content
[0005] This application provides a connector female socket, a connector, a center console, and a vehicle. It solves the problem of low connection reliability between the connector female socket and the connector male connector in the prior art. The technical solution is as follows:
[0006] In a first aspect, a connector female socket is provided, comprising: a female socket body and a conductive portion;
[0007] The female connector body has a plug-in hole;
[0008] The conductive part includes: an integrally formed connector and at least two spring contacts; the at least two spring contacts are located inside the insertion hole, a portion of the connector is connected to the at least two spring contacts inside the insertion hole and connected to the female body, and a portion of the connector can extend through the female body to the outside of the insertion hole.
[0009] Because the conductive part has at least two spring contacts, and both spring contacts are located within the mating hole, the contact area or contact points between the conductive part and the device to be connected can be increased. Increasing the contact area or contact points for electrical connection between the conductive part and the device to be connected improves the reliability of the connection between the connector socket and the device. The spring contacts in the conductive part have a certain degree of elasticity, facilitating the entry and exit of the device to be connected while ensuring the contact strength between the conductive part and the device, thus guaranteeing the reliability of the connection between the connector socket and the device. Furthermore, the conductive part includes an integrally molded connector and at least two spring contacts. Part of the conductive part can extend outside the mating hole without the need for an intermediate component. This integrally molded conductive part is easy to manufacture and install, and has low cost.
[0010] In some possible implementations, the female body also has a slot communicating with the sidewall of the insertion hole;
[0011] The connector includes: a first connecting piece and a second connecting piece connected to each other; a portion of the first connecting piece is connected to the female body body within the gap, and the first connecting piece is connected to the at least two spring clips; the second connecting piece extends out of the insertion hole through the gap.
[0012] The first connecting piece enables an indirect connection between the spring contact and the second connecting piece. Placing the spring contact inside the insertion hole allows for electrical connection between the spring contact and the device to be connected within the insertion hole. Placing the second connecting piece outside the insertion hole allows for electrical connection between the second connecting piece and other devices outside the connector socket. The first connecting piece, acting as an intermediary between the spring contact and the second connecting piece, is located within the gap in the main body of the connector socket. This avoids the first connecting piece occupying space within the insertion hole, facilitating a more compact and miniaturized design for the connector socket.
[0013] In some possible implementations, the mother seat body includes: a first seat body and a second seat body that are relatively distributed in a first direction;
[0014] The first base and the second base are detachably connected, and after the first base and the second base are connected, the insertion hole is formed between the sides of the first base and the second base that are close to each other.
[0015] The first base has the slot, and a portion of the first connecting piece is connected to the first base at the slot; the first direction is perpendicular to the axial direction of the insertion hole.
[0016] The first and second bases are detachably connected, which facilitates the connection between the conductive part and the first base.
[0017] In some possible implementations, the first connecting piece includes: two first connecting segments and one second connecting segment; the two first connecting segments are distributed opposite to each other in a second direction, and one end of each first connecting segment is connected to the end of the spring piece; the two ends of the second connecting segment are respectively connected to the other ends of the two first connecting segments, and the second connecting segment is connected to the second connecting piece; the two first connecting segments and the second connecting segment are both located within the gap;
[0018] The first direction and the second direction intersect each other and are both perpendicular to the axis of the insertion hole.
[0019] The first connecting piece can form a U-shaped or near-U-shaped connecting piece through two first connecting segments and one second connecting segment. The U-shaped or near-U-shaped connecting piece makes it easy for the whole piece to be placed in the gap, thus avoiding the first connecting piece occupying the space inside the plug hole, which facilitates the compact and miniaturized design of the connector female structure.
[0020] In some possible implementations, the plane containing the second connecting piece intersects with the plane containing the first connecting piece.
[0021] After the second connecting piece, which intersects the plane of the first connecting piece, passes through the gap and is placed outside the insertion hole, the second connecting piece is bent toward the side closer to the outer wall of the first body. In this way, the structure of the outer side of the first body can be made compact, which is conducive to the compact and miniaturized design of the connector socket.
[0022] In some possible implementations, the spring clip includes: a first segment and a second segment; one end of the first segment is connected to the first connecting piece, and the other end of the first segment is connected to one end of the second segment;
[0023] The plane containing the first segment intersects with the plane containing the first connecting piece and the plane containing the second segment; there is an outgoing contact point between the first segment and the second segment.
[0024] By using a spring piece including a first segment and a second segment, the distance between at least two spring pieces can be made smaller and larger from the side of the hole furthest from the bottom of the hole to the side of the hole closest to the bottom of the hole, thus facilitating the entry or exit of the device to be connected into or out of the hole.
[0025] In some possible implementations, the connector female also includes: a female housing and wires;
[0026] The female housing has a receiving cavity and a first opening; the first opening is located on the side wall of the female housing and communicates with the receiving cavity;
[0027] The female body is installed in the receiving cavity through the first opening, and the second connecting piece is exposed through the first opening;
[0028] One end of the wire is connected to the second connecting piece at the first opening.
[0029] The first opening facilitates the installation of the female body within the receiving cavity and exposes the second connecting piece at the seam of the female body, thereby facilitating the connection between the wire and the second connecting piece.
[0030] In some possible implementations, the connector female also includes: a cover; one end of the cover is rotatably connected to the female housing at the edge of the first opening, and the other end of the cover is snapped into the female housing;
[0031] Wherein, after the cover body is engaged with the female housing, the cover body covers the first opening.
[0032] By covering the first opening with a cover, the connection between the wire and the second connecting piece can be protected, ensuring a reliable connection between the wire and the second connecting piece. Simultaneously, one end of the cover is rotatably connected to the female housing, and the other end is snapped into the female housing. This facilitates opening and fixing of the cover, thereby simplifying the connection or maintenance between the wire and the second connecting piece.
[0033] In some possible implementations, the insertion hole includes: a plurality of hole segments distributed axially in the insertion hole;
[0034] The connector female has multiple conductive parts, each of which corresponds to a specific hole segment, and each conductive part is located within its corresponding hole segment.
[0035] By using multiple holes, multiple connectors, and multiple conductive parts in a one-to-one correspondence, a reliable connection between the plug and the conductive parts can be ensured, avoiding misconnection.
[0036] In a second aspect, a connector is provided, comprising: a connector female and a connector male; wherein the connector female is any of the connector females described above;
[0037] The male connector has a plug, a portion of which is inserted into the socket and electrically connected to the at least two contact springs.
[0038] Thirdly, a central control panel is provided, including: a connector female as described above or a connector as described above.
[0039] Fourthly, a vehicle is provided, including: a center console, and a connector female as described above or a connector as described above;
[0040] The central control unit and the connector socket are connected. Attached Figure Description
[0041] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0042] Figure 1 This is a schematic diagram of a connector female socket structure provided in an embodiment of this application;
[0043] Figure 2 This is a schematic diagram of another connector female structure provided in an embodiment of this application;
[0044] Figure 3 This is a schematic diagram of another connector female structure provided in the embodiments of this application;
[0045] Figure 4 This is a schematic diagram of a conductive part structure provided in an embodiment of this application;
[0046] Figure 5 This is a schematic diagram of another connector female structure provided in the embodiments of this application;
[0047] Figure 6 This is a schematic diagram of a connector structure provided in an embodiment of this application;
[0048] Figure 7 This is a schematic diagram of another connector structure provided in an embodiment of this application;
[0049] Figure 8 This is a schematic diagram of another connector structure provided in the embodiments of this application. Detailed Implementation
[0050] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0051] Figure 1 This is a schematic diagram of a connector female socket structure provided in an embodiment of this application. Please refer to it. Figure 1 One embodiment of this application provides a connector female socket 000, including: a female socket body 010 and a conductive part 020.
[0052] The female body 010 has a plug hole K.
[0053] The conductive part 020 includes: an integrally formed connector 021 and at least two spring contacts 022. The at least two spring contacts 022 are located inside the insertion hole K. A portion of the connector 021 is connected to the at least two spring contacts 022 inside the insertion hole K and is connected to the female body 010. A portion of the connector 021 can extend through the female body 010 to the outside of the insertion hole K.
[0054] In summary, since the conductive part has at least two spring contacts, and both spring contacts are located within the mating hole, the contact area or contact points between the conductive part and the device to be connected can be increased. Increasing the contact area or contact points for electrical connection between the conductive part and the device improves the reliability of the connection between the connector socket and the device. The spring contacts in the conductive part have a certain degree of elasticity, facilitating the entry and exit of the device from the mating hole while ensuring the contact strength between the conductive part and the device, thus guaranteeing the reliability of the connection between the connector socket and the device. Furthermore, the conductive part includes an integrally molded connector and at least two spring contacts, allowing a portion of the conductive part to extend outside the mating hole without the need for an intermediate component. This integrally molded conductive part is easy to manufacture and install, and has low cost.
[0055] The female connector 000 is used to connect to the device to be connected, such as the male connector 110.
[0056] Figure 2 This is a schematic diagram of another connector female structure provided in an embodiment of this application. Please refer to it. Figure 2 In some possible implementations, the female body 010 also has a slot J that communicates with the side wall of the insertion hole K.
[0057] The connector 021 includes a first connecting piece 0211 and a second connecting piece 0212 that are connected to each other. A portion of the first connecting piece 0211 is connected to the female body 010 within the gap J, and the first connecting piece 0211 is connected to at least two spring clips 022. The second connecting piece 0212 extends through the gap J to the outside of the insertion hole K.
[0058] The first connecting piece 0211, placed within the gap J, can be interference-fitted with the gap J, thus enabling the connection between the first connecting piece 0211 and the female body 010. Alternatively, the thickness of the gap J can be slightly greater than the thickness of the first connecting piece 0211 and the second connecting piece 0212, facilitating the insertion of a portion of the first connecting piece 0211 into the gap J, while the second connecting piece 0212 extends through the gap J to the insertion hole K. When the thickness of the gap J is slightly greater than the thickness of the first connecting piece 0211 and the second connecting piece 0212, the connection between the first connecting piece 0211 and / or the second connecting piece 0212 and the female body 010 can be achieved through welding, bonding, or other means.
[0059] It should be noted that the directions corresponding to the thicknesses mentioned are all parallel to the axial direction of the insertion hole K. The thickness of the first connecting piece 0211 and the thickness of the second connecting piece 0212 can be the same or different. When the thicknesses of the first connecting piece 0211 and the second connecting piece 0212 are different, the thickness of the first connecting piece 0211 can be greater than the thickness of the second connecting piece 0212. This facilitates the clamping of the first connecting piece 0211 within the gap J, while the second connecting piece 0212 can smoothly extend out of the insertion hole K.
[0060] The first connecting piece 0211 enables indirect connection between the spring contact 022 and the second connecting piece 0212. Placing the spring contact 022 within the insertion hole K allows for electrical connection between the spring contact 022 and the device to be connected within the insertion hole K. Placing the second connecting piece 0212 outside the insertion hole K allows for electrical connection between the second connecting piece 0212 and other devices outside the connector socket 000. The first connecting piece 0211, acting as an intermediary between the spring contact 022 and the second connecting piece 0212, is located within the gap J of the socket body 010. This avoids the first connecting piece 0211 occupying space within the insertion hole K, facilitating a more compact and miniaturized design of the connector socket 000.
[0061] For example, the second connecting piece 0212 extending out of the plug hole K can be used to connect to a power source, realize the conduction between the power source and the conductive part 020, thereby powering the connector female 000 and powering the device to be connected through the connector female 000.
[0062] Please continue to refer to this. Figure 2 In some possible implementations, the mother body 010 includes: a first seat body 011 and a second seat body 0112 that are relatively distributed in a first direction.
[0063] The first base 011 and the second base 0112 are detachably connected, and after the first base 011 and the second base 0112 are connected, the first base 011 and the second base 0112 close to each other form a plug hole K.
[0064] The first base 011 has a slot J, and a portion of the first connecting piece 0211 is connected to the first base 011 at the slot J. The first direction is perpendicular to the axis of the insertion hole K.
[0065] The first base 011 and the second base 0112 are detachably connected, which facilitates the connection between the conductive part 020 and the first base 011.
[0066] For example, with Figure 2For example, when installing the conductive part 020, the first base 011 and the second base 0112 are in a separated state. The conductive part 020 is inserted into the slot J along the first direction through the opening on the side of the first base 011 facing the second base 0112, so that the first connecting piece 0211 in the conductive part 020 is placed in the slot J, and the second connecting piece 0212 in the conductive part 020 passes through the slot J and is placed on the outside of the first base 011. That is, the conductive part 020 is installed on the first base 011 from the inside to the outside.
[0067] The first connecting piece 0211 can be entirely located inside the gap J, or partially located outside the gap J. For example, the end portion of the first connecting piece 0211 that connects to the spring piece 022 may be placed inside the insertion hole K to facilitate the connection between the first connecting piece 0211 and the spring piece 022. Similarly, the second connecting piece 0212 can be entirely located outside the gap J, or partially located inside the gap J to facilitate the connection between the first connecting piece 0211 and the second connecting piece 0212.
[0068] Please continue to refer to this. Figure 2 The first seat 011 has a first latching portion 0111 on the side near the second seat 0112, and the second seat 0112 has a second latching portion 0121 on the side near the first seat 011. The first latching portion 0111 can be snapped together with the second latching portion 0121 to achieve a detachable connection between the first seat 011 and the second seat 0112.
[0069] Figure 3 This is a schematic diagram of another connector female structure provided in the embodiments of this application. Please refer to it. Figure 3 , Figure 3 It can be Figure 2 A schematic diagram of the structure after the first seat 011 and the second seat 0112 are connected. Therefore, it can be combined with... Figure 2 and Figure 3 To understand the assembly or installation relationship between the main body 010 and the conductive part 020.
[0070] Figure 4 This is a schematic diagram of a conductive part structure provided in an embodiment of this application. Please refer to it. Figure 4 In some possible implementations, the first connecting piece 0211 includes two first connecting segments 0211a and one second connecting segment 0211b. The two first connecting segments 0211a are distributed opposite each other in a second direction, and one end of each first connecting segment 0211a is connected to the end of the spring piece 022. The two ends of the second connecting segment 0211b are respectively connected to the other ends of the two first connecting segments 0211a, and the second connecting segment 0211b is connected to the second connecting piece 0212. Both the two first connecting segments 0211a and the second connecting segment 0211b are located within the gap J.
[0071] The first direction and the second direction intersect and are both perpendicular to the axis of the insertion hole K.
[0072] It is understandable that the insertion hole K is usually circular, and correspondingly, the inner wall of the first base 011 is semi-circular or approximately semi-circular. In this case, the first connecting piece 0211 can form a U-shaped or approximately U-shaped connecting piece through two first connecting segments 0211a and one second connecting segment 0211b. The U-shaped or approximately U-shaped connecting piece facilitates the placement of the first connecting piece 0211 as a whole within the slot J on the first base 011.
[0073] The first connecting piece 0211 can form a U-shaped or near-U-shaped connecting piece through two first connecting segments 0211a and one second connecting segment 0211b. The U-shaped or near-U-shaped connecting piece makes it easy for the whole to be placed in the gap J, thus avoiding the first connecting piece 0211 occupying the space in the insertion hole K, which facilitates the compact and miniaturized design of the connector female socket 000.
[0074] Please continue to refer to this. Figure 4 In some possible implementations, the plane where the second connecting piece 0212 is located intersects the plane where the first connecting piece 0211 is located.
[0075] according to Figure 3 As shown in the schematic diagram of the connector female socket 000, after the second connecting piece 0212, which intersects with the plane of the first connecting piece 0211, passes through the gap J and is placed outside the insertion hole K, the second connecting piece 0212 and the outer wall of the first base body 011 are parallel or approximately parallel. That is, the second connecting piece 0212 is bent towards the side closer to the outer wall of the first base body 011. In this way, the structure of the outer side of the first base body 011 can be made compact, which is conducive to the compact and miniaturized design of the connector female socket 000.
[0076] It should be noted that, since the second connecting piece 0212 is a sheet-like structure, it is easy to bend and can be shaped after bending. Therefore, to facilitate the installation of the conductive part 020, before the second connecting piece 0212 passes through the gap J, i.e., before the conductive part 020 is installed, the plane containing the first connecting piece 0211 in the conductive part 020 can be parallel or coplanar with the plane containing the first connecting piece 0211.
[0077] Please continue to refer to this. Figure 4 In some possible implementations, the spring 022 includes: a first segment 0221 and a second segment 0222. One end of the first segment 0221 is connected to the first connecting piece 0211, and the other end of the first segment 0221 is connected to one end of the second segment 0222.
[0078] The plane containing the first segment 0221 intersects the plane containing the first connecting piece 0211 and the plane containing the second segment 0222. A lead-out contact 0223 is located between the first segment 0221 and the second segment 0222.
[0079] It should be noted that the first segment 0221 and the second segment 0222 located within the insertion hole K can be distributed adjacently along the axis of the insertion hole K. Furthermore, multiple spring contacts 022 within the same conductive portion 020 are located at the same axial position within the insertion hole K.
[0080] By using the spring piece 022, which includes the first segment 0221 and the second segment 0222, the spacing between at least two spring pieces 022 distributed at the same axial position of the insertion hole K can be such that the spacing between the at least two spring pieces 022 first decreases and then increases from the side away from the bottom of the insertion hole K to the side near the bottom of the insertion hole K. This facilitates the entry or exit of the device to be connected into the insertion hole K.
[0081] Taking a conductive part 020 including two spring pieces 022 as an example, it can be understood that the distance between the two spring pieces 022 refers to the distance between the two spring pieces 022 in the radial direction of the insertion hole K.
[0082] Figure 5 This is a schematic diagram of another connector female structure provided in the embodiments of this application. Please refer to it. Figure 5 In some possible implementations, the connector female 000 may also include: a female housing 030 and a wire 040.
[0083] The female housing 030 has a receiving cavity Q and a first opening K1. The first opening K1 is located on the side wall of the female housing 030 and communicates with the receiving cavity Q.
[0084] The female body 010 is installed in the receiving cavity Q through the first opening K1, and the second connecting piece 0212 is exposed through the first opening K1.
[0085] One end of the wire 040 is connected to the second connecting piece 0212 at the first opening K1, and the other end of the wire 040 can be connected to the power supply.
[0086] The first opening K1 facilitates the installation of the female body 010 in the receiving cavity Q, and exposes the second connecting piece 0212 at the gap J of the female body 010, thereby facilitating the connection between the wire 040 and the second connecting piece 0212.
[0087] For example, the female connector body 010 is made of an insulating material, such as a plastic body. This allows for insulation protection between the female connector housing 030 and the conductive part 020, preventing abnormal phenomena such as short circuits from occurring.
[0088] Please continue to refer to this. Figure 5 In some possible implementations, the connector female 000 further includes a cover 050. One end of the cover 050 is rotatably connected to the female housing 030 at the edge of the first opening K1, and the other end of the cover 050 is snapped into the female housing 030.
[0089] In this case, after the cover 050 is engaged with the female housing 030, the cover 050 covers the first opening K1.
[0090] By covering the first opening K1 with the cover 050, the connection between the wire 040 and the second connecting piece 0212 can be protected, ensuring a reliable connection between the wire 040 and the second connecting piece 0212. Simultaneously, one end of the cover 050 is rotatably connected to the female housing 030, and the other end is snapped into the female housing 030. This facilitates opening and fixing of the cover 050, thereby facilitating the connection or maintenance between the wire 040 and the second connecting piece 0212.
[0091] Please continue to refer to this. Figure 5 In some possible implementations, the connector female 000 also includes a fixing body 060.
[0092] The outer wall of the first body 011 is provided with a sealing groove C, and the gap J is located in the sealing groove C, and the gap J and the sealing groove C are connected.
[0093] The sealing groove C is provided with a fixing body 060, which covers the connection between the second connecting piece 0212 and the wire 040.
[0094] Among them, the fixing body 060 can be a sealant or an injection molded part.
[0095] In summary, since the conductive part has at least two spring contacts, and both spring contacts are located within the mating hole, the contact area or contact points between the conductive part and the device to be connected can be increased. Increasing the contact area or contact points for electrical connection between the conductive part and the device improves the reliability of the connection between the connector socket and the device. The spring contacts in the conductive part have a certain degree of elasticity, facilitating the entry and exit of the device from the mating hole while ensuring the contact strength between the conductive part and the device, thus guaranteeing the reliability of the connection between the connector socket and the device. Furthermore, the conductive part includes an integrally molded connector and at least two spring contacts, allowing a portion of the conductive part to extend outside the mating hole without the need for an intermediate component. This integrally molded conductive part is easy to manufacture and install, and has low cost.
[0096] Figure 6 This is a schematic diagram of a connector structure provided in an embodiment of this application. Please refer to it. Figure 6In another embodiment of this application, a connector 100 is provided, including: a connector female 000 and a connector male 110. The connector female 000 is any of the connector female 000 described above.
[0097] The male connector 110 has a plug 111, a portion of which is inserted into a socket K and electrically connected to at least two spring contacts 022.
[0098] Since the conductive part 020 has at least two spring contacts 022, and both spring contacts 022 are located inside the insertion hole K, the contact area or contact portion between the conductive part 020 and the plug 111 can be increased by using at least two spring contacts 022. When the contact area or contact portion for electrical connection between the conductive part 020 and the plug 111 is increased, the reliability of the connection between the connector female 000 and the connector male 110 can be improved, and the current carrying capacity of the connector 100 can be enhanced.
[0099] Please continue to refer to this. Figure 6 In some possible implementations, the connector female 000 has a first connecting portion 070;
[0100] The male connector 110 has a second connecting portion 112;
[0101] The first connecting part 070 and the second connecting part 112 are detachably connected.
[0102] The connection between the first connecting part 070 and the second connecting part 112 increases the connection strength between the connector female 000 and the connector male 110, preventing the connector male 110 from detaching from the connector female 000. For example, under abnormal operating conditions such as vibration and impact, a reliable connection between the connector female 000 and the connector male 110 can also be ensured.
[0103] Figure 7 This is a schematic diagram of another connector structure provided in an embodiment of this application. Please refer to it. Figure 7 For example, a mechanical connection hole is formed in the storage cavity outside the female body 010.
[0104] The plug 111 is divided into a first plug 111a and a second plug 111b along the axial direction;
[0105] At least a portion of the first plug 111a is inserted into the plug hole K and electrically connected to at least two spring contacts 022; the first connecting part 070 is an internal thread on the inner wall of the mechanical connecting hole, and the second connecting part 112 is an external thread on the outer wall of the second plug 111b, and the first connecting part 070 and the second connecting part 112 are threadedly connected.
[0106] The connector female socket 000 and the connector male head 110 in the connector 100 can be threadedly connected through the first connecting part 070 and the second connecting part 112, and can be electrically connected through the conductive part 020 and the plug 111. That is, the connector 100 in this embodiment is a rotatable connector 100, which provides power supply capability while being threaded and tightened.
[0107] The connector 100 in this embodiment supports rotational mating and has stable terminal contact, making it suitable for use scenarios where the connector 100 interface requires rotation, and can be extended to industrial equipment and robotics fields.
[0108] Figure 8 This is a schematic diagram of another connector structure provided in an embodiment of this application. Please refer to it. Figure 8 , Figure 8 It can be Figure 7 A schematic diagram of the structure after the female connector 000 and the male connector 110 are connected.
[0109] Please continue to refer to this. Figure 7 In some possible implementations, the insertion hole K includes multiple hole segments K2 distributed along the axial direction of the insertion hole K.
[0110] The plug 111 includes a plurality of plug segments 111c distributed along the axial direction of the plug 111.
[0111] The number of conductive parts 020 in the connector female socket 000 is multiple.
[0112] The multiple hole segments K2, multiple plug segments 111c, and multiple conductive parts 020 are corresponding one-to-one, and each conductive part 020 is located in the corresponding hole segment K2. After a portion of the plug 111 is inserted into the plug hole K, each plug segment 111c is located in the corresponding hole segment K2 and is electrically connected to the corresponding conductive part 020.
[0113] From the side of the hole near the bottom of the insertion hole K to the side of the hole away from the bottom of the insertion hole K, the radial dimensions of multiple hole segments K2 continuously increase. Correspondingly, the radial dimensions of multiple conductive parts 020 and multiple insertion segments 111c also continuously increase, and the dimensions of the corresponding hole segments K2, conductive parts 020 and insertion segments 111c are matched.
[0114] For example, there are three segments K2, three conductive parts 020, and three plug segments 111c. From the side near the bottom of the plug hole K to the side away from the bottom of the plug hole K, the three plug segments 111c have the following in sequence: Detect Pin, VBUSPIN, and GND pin.
[0115] The Detect Pin is used for charging detection and protocol communication. The VBUSPIN and GND pins are used for charging. The plug segment 111c corresponding to the Detect Pin can be CNC machined, while the plug segments 111c corresponding to the VBUSPIN and GND pins can be machined using a drawing process. The integrally formed conductive part 020 can be machined using a stamping process. Furthermore, the three plug segments 111c can be coaxially distributed.
[0116] By having multiple hole segments K2, multiple plug segments 111c, and multiple conductive parts 020 corresponding one-to-one, a reliable connection between the plug 111 and the conductive part 020 can be ensured, avoiding the occurrence of misconnection.
[0117] In another embodiment of this application, a central control panel is provided, including: a connector female 000 as described above or a connector 100 as described above.
[0118] For example, the center console has threaded holes, see reference. Figure 6 The connector female 000 has an external connecting part 080. The connector female 000 is threadedly connected to the threaded hole in the center console through the external connecting part 080.
[0119] In another embodiment of this application, a vehicle is provided, including: a center console, and a connector female 000 as described above or a connector 100 as described above.
[0120] The center console and connector socket 000 are connected.
[0121] For example, the female connector 000 can be electrically connected to the vehicle's power supply via the wire-to-board connector 100, using the vehicle's power to supply power to the female connector 000. The male connector 110 can be connected to other devices that require charging, such as a mobile phone holder used to charge mobile phones, cameras, and other products. Thus, when the male connector 110 and the female connector 000 are plugged in, the conductive part 020 can be electrically connected to the plug 111, allowing power to sequentially charge the mobile phone holder via the female connector 000 and the male connector 110.
[0122] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.
[0123] The above description is merely an optional embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A connector female socket, characterized in that, include: The main body of the female connector (010) and the conductive part (020); The female body (010) has a plug hole (K); The conductive part (020) includes: an integrally formed connector (021) and at least two spring contacts (022); the at least two spring contacts (022) are all located inside the plug hole (K), a portion of the connector (021) is connected to the at least two spring contacts (022) inside the plug hole (K) and connected to the female body (010), and a portion of the connector (021) can extend through the female body (010) to the outside of the plug hole (K).
2. The connector female socket according to claim 1, characterized in that, The female body (010) also has a slot (J) communicating with the side wall of the insertion hole (K); The connector (021) includes: a first connecting piece (0211) and a second connecting piece (0212) connected to each other; a portion of the first connecting piece (0211) is connected to the female body (010) within the gap (J), and the first connecting piece (0211) is connected to the at least two spring pieces (022); the second connecting piece (0212) extends out of the insertion hole (K) through the gap (J).
3. The connector female socket according to claim 2, characterized in that, The main body (010) of the female seat includes: a first seat body (011) and a second seat body (012) that are relatively distributed in a first direction; The first base (011) and the second base (012) are detachably connected, and after the first base (011) and the second base (012) are connected, the insertion hole (K) is formed between the sides of the first base (011) and the second base (012) that are close to each other. The first seat (011) has the slot (J), and a portion of the first connecting piece (0211) is connected to the first seat (011) at the slot (J); the first direction is perpendicular to the axial direction of the insertion hole (K).
4. The connector female socket according to claim 3, characterized in that, The first connecting piece (0211) includes: two first connecting segments (0211a) and one second connecting segment (0211b); the two first connecting segments (0211a) are distributed opposite to each other in a second direction, and one end of each first connecting segment (0211a) is connected to the end of the spring piece (022); the two ends of the second connecting segment (0211b) are respectively connected to the other ends of the two first connecting segments (0211a), and the second connecting segment (0211b) is connected to the second connecting piece (0212); the two first connecting segments (0211a) and the second connecting segment (0211b) are all located within the gap (J); The first direction and the second direction intersect each other and are both perpendicular to the axis of the insertion hole (K).
5. The connector female socket according to claim 2, characterized in that, The plane where the second connecting piece (0212) is located intersects the plane where the first connecting piece (0211) is located.
6. The connector female socket according to claim 2, characterized in that, The spring clip (022) includes: a first segment (0221) and a second segment (0222); one end of the first segment (0221) is connected to the first connecting piece (0211), and the other end of the first segment (0221) is connected to one end of the second segment (0222); The plane containing the first segment (0221) intersects the plane containing the first connecting piece (0211) and the plane containing the second segment (0222); there is an outgoing contact (0223) between the first segment (0221) and the second segment (0222).
7. The connector female according to any one of claims 2 to 6, characterized in that, The connector female also includes: a female housing (030) and a wire (040); The female housing (030) has a receiving cavity (Q) and a first opening (K2); the first opening (K2) is located on the side wall of the female housing (030) and communicates with the receiving cavity (Q); The female body (010) is installed in the receiving cavity (Q) through the first opening (K2), and the second connecting piece (0212) is exposed through the first opening (K2); One end of the wire (040) is connected to the second connecting piece (0212) at the first opening (K2).
8. The connector female according to claim 7, characterized in that, The connector female also includes: a cover (050); one end of the cover (050) is rotatably connected to the female housing (030) at the edge of the first opening (K2), and the other end of the cover (050) is snapped into the female housing (030); Wherein, after the cover (050) is engaged with the female housing (030), the cover (050) covers the first opening (K2).
9. The connector female according to any one of claims 1 to 6, 8, characterized in that, The insertion hole (K) includes a plurality of hole segments (K2) distributed along the axial direction of the insertion hole (K); The number of conductive parts (020) in the connector female is multiple, and each of the multiple conductive parts (020) corresponds to a multiple of the hole segments (K2), and each conductive part (020) is located in the corresponding hole segment (K2).
10. A connector, characterized in that, include: A female connector (000) and a male connector (110); the female connector (000) is the female connector as described in any one of claims 1 to 9; The male connector (110) has a plug (111) in which a portion of the plug (111) is inserted into the socket (K) and electrically connected to the at least two spring contacts (022).
11. A central control panel, characterized in that, include: The connector female according to any one of claims 1 to 9 or the connector according to claim 10.
12. A vehicle, characterized in that, include: The central control unit, and the connector female according to any one of claims 1 to 9 or the connector according to claim 10; The central control unit and the connector socket are connected.