A high-density wire spring jack connector

CN116995466BActive Publication Date: 2026-08-18SHAANXI SILING ELECTRONICS
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Patent Information

Application Number
CN202310982862.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-07
Publication Date
2026-08-18
Estimated Expiration
2043-08-07

AI Technical Summary

Technical Problem

[0004]本发明的目的在于提供一种高密度线簧插孔连接器,以解决连接器无法满足小型化、轻量化和高密度使用要求的问题

Benefits of technology

[0014] 1. In this invention, by using the connecting tube, connecting ring, connecting ring, electrical metal sheet, electrical metal ring and support plate, the upper connecting rod and the lower connecting rod can be easily clamped and positioned by the upper and lower electrical metal sheets, and the electrical connection between the upper connecting rod and the lower connecting rod can be realized at the same time. This makes the plug density of this connector higher and facilitates the application of this connector on small-volume motherboards. The electrical metal sheet is supported by the connecting ring and support plate to prevent excessive deformation of the electrical metal sheet and facilitate the installation of the crown spring body.

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Abstract

The application relates to the technical field of connectors, in particular to a high-density wire spring jack connector which comprises an upper fixed seat body, a lower fixed seat body, a plug rod main body, a heat conduction device and a positioning device, spacers are arranged on the upper two sides of the upper fixed seat body, spacers are arranged on the lower two sides of the lower fixed seat body, the upper fixed seat body and the lower fixed seat body are both provided with the positioning device, the upper fixed seat body and the lower fixed seat body are both provided with the heat conduction device, the upper connecting main body is arranged in the wire spring main body, and the wire spring main body is arranged in the lower connecting main body. In the application, the connecting pipe, the connecting ring, the connecting ring, the electric metal sheet, the electric metal ring and the supporting plate are arranged, the plug density of the connector is higher, the connector is convenient to apply to a small-size mainboard, the electric metal sheet is supported under the action of the connecting ring and the supporting plate, excessive deformation of the electric metal sheet is prevented, and the installation of the crown spring main body is facilitated.
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Description

Technical Field

[0001] This invention relates to the field of connector technology, specifically to a high-density wire spring socket connector. Background Technology

[0002] Connectors, also known as plugs or sockets, generally refer to electrical connectors, which are devices that connect two active devices to transmit current or signals and realize the connection between circuit boards. Spring-loaded jack connectors are characterized by stable mechanical performance, good electrical performance, strong adaptability to replacement, and easy maintenance.

[0003] Traditional connectors require the plug and socket to be fixed separately on the two circuit boards to be connected, and then the connector plug and socket are installed. In this case, the connector itself is relatively large, and it is not possible to achieve mating with a small board pitch while ensuring reliable contact of the connector plug. This is not convenient for the use of miniaturized, lightweight and high-density small boards. Therefore, a high-density wire spring socket connector is proposed to address the above problems. Summary of the Invention

[0004] The purpose of this invention is to provide a high-density wire spring socket connector to solve the problem that connectors cannot meet the requirements of miniaturization, lightweighting and high-density use.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A high-density wire spring socket connector includes an upper fixed base, a lower fixed base, a plug body, a heat conduction device, and a positioning device. Gaskets are provided on both upper and lower sides of the upper fixed base, and gaskets are provided on both lower and lower sides of the lower fixed base. Positioning devices are provided on both sides of both the upper and lower fixed bases. Heat conduction devices are provided in both the upper and lower fixed bases. A plug body is provided in both the upper and lower fixed bases. The plug body includes an upper connecting body, a lower connecting body, and a wire spring body. The upper connecting body is disposed within the wire spring body, and the wire spring body is disposed within the lower connecting body. The upper connecting body includes an upper fixed rod, one end of which is fixedly connected to an upper connecting rod. The upper connecting rod is located near the upper... A positioning plate is fixedly connected to the outer side of one end of the fixing rod. The lower connecting body includes a lower fixing rod, a lower connecting rod is fixedly connected to one end of the lower fixing rod, and a fixing shell is fixedly connected to the outer side of the lower connecting rod. The coil spring body includes a connecting tube, and connecting rings are fixedly connected to both ends of the connecting tube. The outer sides of the two connecting rings are tightly fitted with the crown spring body. The outer side of the crown spring body is provided with evenly distributed support plates. The crown spring body includes a connecting ring, and evenly distributed electrical metal sheets are fixedly connected to the outer side of the connecting ring. An electrical metal ring is fixedly connected to the end of the electrical metal sheet away from the connecting ring. The electrical metal ring is tightly fitted with the connecting ring. One end of the support plate is fixedly connected to the connecting ring, and the other end of the support plate is tightly fitted with the connecting tube.

[0007] Preferably, the main body of the coil spring is disposed inside the fixed shell, and the crown spring bodies provided on the main body of the coil spring are respectively disposed on the upper and lower sides of the fixed shell, and the connecting ring provided on one side of the crown spring body is tightly fitted to the fixed shell.

[0008] Preferably, the upper fixing rod is disposed inside the fixing shell, and one end of the upper fixing rod and the lower fixing rod are respectively disposed on the upper and lower sides of the connecting pipe, and the outer sides of the upper fixing rod and the lower fixing rod are tightly attached to the electrical metal sheet.

[0009] Preferably, the upper fixing body includes an upper socket with uniformly distributed first heat dissipation holes and uniformly distributed first through holes. The lower fixing body includes a lower socket with uniformly distributed second heat dissipation holes and uniformly distributed second through holes. Both the upper and lower fixing bodies are provided with heat-conducting devices, each including a heat-conducting gel ring. The heat-conducting gel rings are uniformly distributed on the upper and lower sockets and are respectively located on the outer sides of the upper and lower connecting rods. A heat-conducting plate is fixedly connected to one side of the heat-conducting gel ring, and a heat-conducting sheet is fixedly connected to one side of the heat-conducting plate. The heat-conducting sheet has heat-conducting holes.

[0010] Preferably, the heat-conducting holes of the heat-conducting sheet are arranged in pairs and respectively in the first heat dissipation hole of the upper socket and the second heat dissipation hole of the lower socket. The first heat dissipation hole of the upper socket and the second heat dissipation hole of the lower socket are respectively arranged on both sides of the heat-conducting sheet.

[0011] Preferably, the positioning device includes a rubber shell, a fixing block is provided inside the rubber shell, and positioning rods are provided on both sides of the fixing block in a uniformly distributed manner. An installation block is fixedly connected to the end of the positioning rod away from the fixing block. A connecting plate is provided inside the installation block, and an installation rod is installed inside the connecting plate. A spring is provided on the outer side of one end of the installation rod, and a push plate is fixedly connected to one end of the connecting plate.

[0012] Preferably, the positioning rod has a positioning ring on its outer side, the outer side of the positioning ring is tightly fitted to the rubber shell, the two sides of the rubber shell are tightly fitted to the upper socket and the lower socket respectively, one end of the mounting rod passes through the mounting block, and one end of the mounting rod is hemispherical. The hemispherical end of the upper mounting rod is set in the upper socket, and the hemispherical end of the lower mounting rod is set in the lower socket.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] 1. In this invention, by using the connecting tube, connecting ring, connecting ring, electrical metal sheet, electrical metal ring and support plate, the upper connecting rod and the lower connecting rod can be easily clamped and positioned by the upper and lower electrical metal sheets, and the electrical connection between the upper connecting rod and the lower connecting rod can be realized at the same time. This makes the plug density of this connector higher and facilitates the application of this connector on small-volume motherboards. The electrical metal sheet is supported by the connecting ring and support plate to prevent excessive deformation of the electrical metal sheet and facilitate the installation of the crown spring body.

[0015] 2. In this invention, the upper fixing rod, upper connecting rod, positioning plate, lower fixing rod, lower connecting rod and fixing shell can be conveniently fixed in the upper socket and lower socket respectively, which facilitates the assembly of the upper fixing body and the lower fixing body, and facilitates the installation and use of the connector;

[0016] 3. In this invention, by providing a first heat dissipation hole, a first through hole, a second heat dissipation hole, a second through hole, a thermally conductive gel ring, a thermally conductive plate, a thermally conductive sheet, and a thermally conductive hole, when current passes through the upper connecting rod, the spring body, and the lower connecting rod and generates heat, the thermally conductive gel ring will guide the heat from the outside of the upper and lower connecting rods into the thermally conductive plate, then the thermally conductive plate will send the heat into the thermally conductive sheet, and finally the heat will be sent out through the first heat dissipation hole, the first through hole, the second heat dissipation hole, the second through hole, and the thermally conductive hole, thus achieving heat dissipation.

[0017] 4. In this invention, the rubber shell, fixing block, positioning rod, positioning ring, mounting block, push plate, connecting plate, mounting rod and spring can be set to conveniently position and buffer the upper socket and lower socket, and buffer and position the plates connected to the upper fixing body and lower fixing body, making the spring-loaded connector more stable in use. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0019] Figure 2 This is a cross-sectional view of the first and second heat dissipation holes of the upper and lower sockets of the present invention.

[0020] Figure 3 This is a cross-sectional view of the first and second through holes of the upper and lower sockets of the present invention.

[0021] Figure 4 This is a schematic diagram of the heat conduction device of the present invention;

[0022] Figure 5 For the present invention Figure 4 A schematic diagram of the structure at point A;

[0023] Figure 6 This is a schematic diagram of the structure of the insert body of the present invention;

[0024] Figure 7 This is a schematic diagram of the main body of the wire spring of the present invention;

[0025] Figure 8 This is a schematic diagram of the mounting structure of the crown spring body of the present invention;

[0026] Figure 9 This is a schematic diagram of the structure of the connecting body of the present invention;

[0027] Figure 10 This is a cross-sectional view of the connecting body of the present invention;

[0028] Figure 11 This is a schematic diagram of the positioning device of the present invention;

[0029] Figure 12 This is a schematic cross-sectional view of the installation structure of the fixing block of the present invention;

[0030] Figure 13 This is a schematic cross-sectional view of the mounting rod of the present invention.

[0031] In the diagram: 1-Upper fixed base, 11-Upper socket, 12-First heat dissipation hole, 13-First through hole, 2-Lower fixed base, 21-Lower socket, 22-Second heat dissipation hole, 23-Second through hole, 3-Plug body, 31-Upper connecting body, 311-Upper fixing rod, 312-Upper connecting rod, 313-Positioning plate, 32-Lower connecting body, 321-Lower fixing rod, 322-Lower connecting rod, 323-Fixed shell, 33-Spring body, 331-Connecting tube, 33 2-Connecting ring, 333-Crown spring body, 3331-Connecting ring, 3332-Electrically conductive metal sheet, 3333-Electrically conductive metal ring, 334-Support plate, 4-Gasket, 5-Heat-conducting device, 51-Heat-conducting gel ring, 52-Heat-conducting plate, 53-Heat-conducting sheet, 54-Heat-conducting hole, 6-Positioning device, 61-Rubber shell, 62-Fixing block, 63-Positioning rod, 64-Positioning ring, 65-Mounting block, 66-Push plate, 67-Connecting plate, 68-Mounting rod, 69-Spring. Detailed Implementation

[0032] Example 1:

[0033] Please see Figure 1-13 The present invention provides a technical solution:

[0034] A high-density wire spring socket connector includes an upper fixed base 1, a lower fixed base 2, a plug body 3, a heat conduction device 5, and a positioning device 6. Gaskets 4 are provided on both upper sides of the upper fixed base 1, and gaskets 4 are provided on both lower sides of the lower fixed base 2. Positioning devices 6 are provided on both sides of both the upper and lower fixed bases. Heat conduction devices 5 are provided in both the upper and lower fixed bases. A plug body 3 is provided in both the upper and lower fixed bases. The plug body 3 includes an upper connecting body 31, a lower connecting body 32, and a wire spring body 33. The upper connecting body 31 is disposed within the wire spring body 33, and the wire spring body 33 is disposed within the lower connecting body 32. The upper connecting body 31 includes an upper fixing rod 311. 11 is fixedly connected to an upper connecting rod 312 at one end. A positioning plate 313 is fixedly connected to the outer side of the upper connecting rod 312 near the upper fixed rod 311. The lower connecting body 32 includes a lower fixed rod 321. A lower connecting rod 322 is fixedly connected to one end of the lower fixed rod 321. A fixing shell 323 is fixedly connected to the outer side of the lower connecting rod 322. The coil spring body 33 includes a connecting tube 331. Connecting rings 332 are fixedly connected to both ends of the connecting tube 331. The outer sides of the two connecting rings 332 are tightly fitted with the crown spring body 333. The outer side of the crown spring body 333 is provided with evenly distributed support plates 334. With this setting, the crown spring body 333 can be directly placed into the fixing shell 323. At this time, the crown spring body 333 is engaged with the lower connecting rod 322. Next, insert the upper connecting rod 312 into the crown spring body 333. This completes the connector installation. The crown spring body 333 reduces the size of the connection and fixing components, thus reducing the connector's size and allowing it to be used on small circuit boards. The crown spring body 333 includes a connecting ring 3331. Evenly distributed electrical metal sheets 3332 are fixedly connected to the outer side of the connecting ring 3331. An electrical metal ring 3333 is fixedly connected to the end of the electrical metal sheet 3332 away from the connecting ring 3331. The electrical metal ring 3333 fits tightly against the connecting ring 332. One end of the support plate 334 is fixedly connected to the connecting ring 3331, and the other end of the support plate 334 fits tightly against the connecting tube 331. This arrangement allows for the installation of the connector on small circuit boards. When the conductive metal sheet 3332 is installed, it limits the movement of the connecting ring 3331, reducing the movement distance of the connecting ring 3331 and preventing excessive deformation of the conductive metal sheet 3332 during installation. This facilitates the installation of the upper connecting rod 312 and the lower connecting rod 322. The coil spring body 33 is set inside the fixed housing 323. The crown spring bodies 333 of the coil spring body 33 are respectively set on the upper and lower sides inside the fixed housing 323. The connecting ring 3331 of one crown spring body 333 fits tightly against the fixed housing 323. This setting allows the coil spring body 33 to be directly placed into the fixed housing 323 for storage and positioning, facilitating the installation of the upper connecting rod 312 and the lower connecting rod 322. The upper fixed rod 311 is set inside the fixed housing 323.One end of the upper fixing rod 311 and the lower fixing rod 321 are respectively located on the upper and lower sides of the connecting tube 331. The outer sides of both the upper fixing rod 311 and the lower fixing rod 321 are tightly fitted with the electrical metal sheet 3332. This arrangement facilitates the installation and positioning of the crown spring body 333, and also limits the positioning of the upper connecting rod 312 and the lower connecting rod 322 during installation.

[0035] like Figure 1 , 6 As shown in Figures 7, 8, 9, and 10, the upper fixing body 1 includes an upper socket 11, within which are evenly distributed first heat dissipation holes 12 and evenly distributed first through holes 13. The lower fixing body 2 includes a lower socket 21, within which are evenly distributed second heat dissipation holes 22 and evenly distributed second through holes 23. This arrangement allows for the dissipation of heat through the first heat dissipation holes 12 and the first through holes 23 when heat is generated by the current flowing through the insertion rod body 3. 13. The second heat dissipation hole 22 and the second through hole 23 dissipate heat, making the connector more stable in use. Both the upper fixed base 1 and the lower fixed base 2 are equipped with heat-conducting devices 5, each including a thermally conductive gel ring 51. The thermally conductive gel rings 51 are evenly distributed on the upper socket 11 and the lower socket 21, and are respectively located on the outer sides of the upper connecting rod 312 and the lower connecting rod 322. A heat-conducting plate 52 is fixedly connected to one side of the thermally conductive gel ring 51, and a heat-conducting plate 52 is fixedly connected to one side of the heat-conducting plate 52. A heat-conducting plate 53 is connected, and heat-conducting holes 54 are formed inside the heat-conducting plate 53. This configuration allows heat from the upper connecting rod 312 and the lower connecting rod 322 to be easily transferred to the heat-conducting plate 52 through the heat-conducting gel ring 51. Then, the heat is transferred to the heat-conducting plate 53 through the heat-conducting plate 52. At this time, the heat-conducting holes 54 on the surface of the heat-conducting plate 53 can increase air circulation. Then, when the upper socket 11 and the lower socket 21 dissipate heat, the heat in the heat-conducting plate 53 is dissipated. Two are respectively set in the first heat dissipation hole 12 opened in the upper socket 11 and the second heat dissipation hole 22 opened in the lower socket 21. The first heat dissipation hole 12 opened in the upper socket 11 and the second heat dissipation hole 22 opened in the lower socket 21 are respectively set on both sides of the heat-conducting plate 53. Through this arrangement, the heat on the heat-conducting plate 53 can be discharged through the first heat dissipation hole 12, the first through hole 13, the second heat dissipation hole 22 and the second through hole 23, thereby improving the heat dissipation effect of the connector and making the connector more stable in use.

[0036] like Figure 1 , 11As shown in Figures 12 and 13, the positioning device 6 includes a rubber shell 61, a fixing block 62 is provided inside the rubber shell 61, and positioning rods 63 are evenly distributed on both sides of the fixing block 62. The end of the positioning rod 63 away from the fixing block 62 is fixedly connected to a mounting block 65. A connecting plate 67 is provided inside the mounting block 65, and a mounting rod 68 is installed inside the connecting plate 67. A spring 69 is provided on the outer side of one end of the mounting rod 68. A push plate 66 is fixedly connected to one end of the connecting plate 67. With this arrangement, the fixing block 62 and the rubber shell 61 can be installed between the upper socket 11 and the lower socket 21, separating the upper socket 11 and the lower socket 21. At this time, the air circulation on the surface of the fixing shell 323 can be increased, so that the heat can be dissipated quickly, making the connector more stable in use.

[0037] Workflow: When using this high-density spring-loaded connector, first, the upper connecting rod 312 is inserted through the upper socket 11. At this time, the positioning plate 313 and the upper socket 11 are in contact. Next, the upper fixing rod 311 is inserted through the small circuit board to be connected. Finally, the upper fixing rod 311 is soldered onto the small circuit board. Then, the lower fixing rod 321 is inserted through the lower socket 21. At this time, the bottom of the fixing shell 323 is in contact with the lower socket 21. Next, the lower fixing rod 321 is inserted through another small circuit board to be installed. Finally, the lower fixing rod 321 is soldered onto the small circuit board. Then, the electrical metal ring 3333 is fitted onto the outside of the connecting ring 332. Under its own stress and elasticity, the electrical metal ring 3333 is tightly fitted to the connecting ring 332. Then, the connecting ring 3331 is placed inside the fixing shell 323. After multiple connecting rings 3331 are placed inside the fixing shell 323, the center of the electrical metal ring 3332... The curved bend at the position fits tightly with the lower connecting rod 322. Then, press down on the upper connecting ring 3331. At this time, the upper connecting ring 3331 pushes the connecting tube 331 into the fixed shell 323 through the support plate 334. At this time, the lower electrical metal sheet 3332 fits tightly with the lower connecting rod 322 until the bottom of the connecting ring 3331 fits tightly with the fixed shell 323. Then, the rubber shell 61 is inserted into the positioning rod 63 until the hemispherical end of the positioning rod 63 is inserted into the fixed block 62. At this time, the outer side of the positioning ring 64 fits tightly with the rubber shell 61. Then, the upper connecting rod 312 passes through the upper connecting ring 3331, so that the upper connecting rod 312 is inserted between the upper electrical metal rings 3333. At this time, the outer side of the upper connecting rod 312 fits tightly with the electrical metal sheet 3332. At the same time, the upper positioning rod 63 is inserted into the rubber shell 61 to complete the installation. At this time, the installation of two small circuit boards can be realized.

[0038] Example 2:

[0039] Please see Figure 1 , Figure 11 , Figure 12 and Figure 13 The present invention provides a technical solution:

[0040] A high-density wire spring socket connector includes a positioning device 6 comprising a rubber shell 61, a fixing block 62 disposed within the rubber shell 61, and positioning rods 63 evenly distributed on both sides of the fixing block 62. A mounting block 65 is fixedly connected to the end of each positioning rod 63 away from the fixing block 62. A connecting plate 67 is disposed within the mounting block 65, and a mounting rod 68 is installed within the connecting plate 67. A spring 69 is disposed on the outer side of one end of the mounting rod 68. A push plate 66 is fixedly connected to one end of the connecting plate 67. This arrangement allows the fixing block 62 and the rubber shell 61 to be installed between the upper socket 11 and the lower socket 21, separating the upper socket 11 and the lower socket 21. This increases the airflow over the surface of the fixing shell 323, reducing heat... The connector can be quickly disassembled, making its use more stable. The positioning rod 63 has a positioning ring 64 on its outer side, which fits tightly against the rubber shell 61. The two sides of the rubber shell 61 fit tightly against the upper socket 11 and the lower socket 21, respectively. One end of the mounting rod 68 passes through the mounting block 65. One end of the mounting rod 68 is hemispherical. The hemispherical end of the upper mounting rod 68 is placed inside the upper socket 11, and the hemispherical end of the lower mounting rod 68 is placed inside the lower socket 21. With this setting, when the connector is recycled, the push plate 66 can be pushed directly. The push plate 66 and the connecting plate 67 drive the mounting rod 68 to move. At this time, the positioning rod 63 and the mounting block 65 can be taken out together for recycling.

[0041] Workflow: When recycling small circuit boards after they have been discarded, the upper and lower circuit boards are first separated. At this time, the upper connecting rod 312 leaves the fixing shell 323, and the upper positioning rod 63 leaves the rubber shell 61. Then, the solder is melted, and the upper fixing rod 311 and the lower fixing rod 321 are removed from the small circuit board. Then, the upper connecting rod 312 is removed from the upper socket 11, and the lower connecting rod 322 is removed from the lower socket 21. Then, the push plate 66 is pushed, which moves the connecting plate 67. The connecting plate 67 moves the mounting rod 68. After the mounting rod 68 enters the mounting block 65, the positioning rod 63 is pushed upward. The positioning rod 63 moves the mounting block 65 upward. Then, the mounting block 65 is removed, and the positioning device 6, the upper connecting body 31, and the lower connecting body 32 are recycled.

[0042] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only for the purpose of helping to understand the method and core ideas of the present invention. The above descriptions are only preferred embodiments of the present invention. It should be noted that due to the limitations of textual expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of the present invention, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of the present invention.

Claims

1. A high-density wire spring socket connector, comprising an upper fixed base (1), a lower fixed base (2), a plug body (3), a heat conduction device (5), and a positioning device (6), characterized in that: Gaskets (4) are provided on both upper sides of the upper fixed base (1), and gaskets (4) are provided on both lower sides of the lower fixed base (2). Positioning devices (6) are provided on both sides of the upper fixed base (1) and the lower fixed base (2). Heat conduction devices (5) are provided in both the upper fixed base (1) and the lower fixed base (2). Insertion rod bodies (3) are provided in both the upper fixed base (1) and the lower fixed base (2). The insertion rod body (3) includes an upper connecting body (31) and a lower connecting body (32). The upper connecting body (31) is disposed inside the spring body (33), and the spring body (33) is disposed inside the lower connecting body (32). The upper connecting body (31) includes an upper fixing rod (311), one end of which is fixedly connected to an upper connecting rod (312). A positioning plate (313) is fixedly connected to the outer side of the upper connecting rod (312) near the upper fixing rod (311). The lower connecting body (32) includes a lower fixing rod (321). One end of the lower fixing rod (321) is fixedly connected to a lower connecting rod (322), and a fixing shell (323) is fixedly connected to the outside of the lower connecting rod (322). The spring body (33) includes a connecting tube (331), and both ends of the connecting tube (331) are fixedly connected to connecting rings (332). The outer sides of the two connecting rings (332) are tightly fitted with the crown spring body (333). The outer side of the crown spring body (333) is provided with evenly distributed support plates (334). The device includes a connecting ring (3331), on the outside of which are uniformly distributed electrical metal sheets (3332) are fixedly connected. At the end of the electrical metal sheet (3332) away from the connecting ring (3331), an electrical metal ring (3333) is fixedly connected. The electrical metal ring (3333) is tightly fitted with the connecting ring (332). One end of the support plate (334) is fixedly connected to the connecting ring (3331), and the other end of the support plate (334) is tightly fitted with the connecting tube (331). The main body of the wire spring (33) is set inside the fixed shell (323), and the crown spring body (333) of the main body of the wire spring (33) is respectively set on the upper and lower sides inside the fixed shell (323). The connecting ring (3331) of the crown spring body (333) on one side is tightly fitted to the fixed shell (323); The upper fixing rod (311) is installed inside the fixing shell (323). One end of the upper fixing rod (311) and the lower fixing rod (321) are respectively installed on the upper and lower sides of the connecting pipe (331). The outer sides of the upper fixing rod (311) and the lower fixing rod (321) are tightly attached to the electrical metal sheet (3332).

2. The high-density wire spring socket connector according to claim 1, characterized in that: The upper fixing body (1) includes an upper socket (11), in which a first heat dissipation hole (12) is evenly distributed and a first through hole (13) is evenly distributed. The lower fixing body (2) includes a lower socket (21), in which a second heat dissipation hole (22) is evenly distributed and a second through hole (23) is evenly distributed. Both the upper fixing body (1) and the lower fixing body (2) have... A heat-conducting device (5) is provided, the heat-conducting device (5) includes a heat-conducting gel ring (51), the heat-conducting gel ring (51) is evenly distributed on the upper socket (11) and the lower socket (21), and the heat-conducting gel ring (51) is respectively located on the outside of the upper connecting rod (312) and the lower connecting rod (322). A heat-conducting plate (52) is fixedly connected to one side of the heat-conducting gel ring (51), and a heat-conducting sheet (53) is fixedly connected to one side of the heat-conducting plate (52). A heat-conducting hole (54) is opened in the heat-conducting sheet (53).

3. A high-density wire spring socket connector according to claim 2, characterized in that: The heat-conducting holes (54) of the heat-conducting sheet (53) are arranged in pairs and respectively in the first heat dissipation hole (12) of the upper socket (11) and the second heat dissipation hole (22) of the lower socket (21). The first heat dissipation hole (12) of the upper socket (11) and the second heat dissipation hole (22) of the lower socket (21) are respectively arranged on both sides of the heat-conducting sheet (53).

4. A high-density wire spring socket connector according to claim 1, characterized in that: The positioning device (6) includes a rubber shell (61), a fixing block (62) is provided inside the rubber shell (61), and positioning rods (63) are evenly distributed on both sides inside the fixing block (62). An installation block (65) is fixedly connected to one end of the positioning rod (63) away from the fixing block (62). A connecting plate (67) is provided inside the installation block (65), and an installation rod (68) is installed inside the connecting plate (67). A spring (69) is provided on the outer side of one end of the installation rod (68), and a push plate (66) is fixedly connected to one end of the connecting plate (67).

5. A high-density wire spring socket connector according to claim 4, characterized in that: The positioning rod (63) is provided with a positioning ring (64) on the outside. The positioning ring (64) is tightly fitted to the rubber shell (61) on the outside. The rubber shell (61) is tightly fitted to the upper socket (11) and the lower socket (21) on both sides respectively. One end of the mounting rod (68) passes through the mounting block (65). One end of the mounting rod (68) is hemispherical. The hemispherical end of the upper mounting rod (68) is set in the upper socket (11), and the hemispherical end of the lower mounting rod (68) is set in the lower socket (21).

Citation Information

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