Electric connector assembly

By designing an electrical connector assembly using a spanning conductive member, the problem of using jumpers between conductive terminals in the prior art is solved, and the electrical connection between multiple conductive terminals is realized without occupying additional space, meeting the electronic equipment's requirements for signal transmission.

CN222915221UActive Publication Date: 2025-05-27TARNG YU ENTERPRISE +1
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Patent Information

Application Number
CN202420420768.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-07-14
Filing Date
2024-03-05
Publication Date
2025-05-27
Estimated Expiration
2034-03-05

AI Technical Summary

Technical Problem

In the prior art, the electrical connection between multiple conductive terminals on the electrical connector assembly requires the use of jumpers, which leads to an increase in the space occupied by the electronic device and limits the development of lightweight and short-term equipment.

Method used

An electrical connector assembly is designed to enable electrical connection of multiple conductive terminals without using jumpers. The electrical connector assembly includes a bonding insulating material, a main side electrical connector member, a secondary side electrical connector member and a jumper conductive member. Through the design of the jumper conductive member, an electrical connection between the conductive terminals is realized.

Benefits of technology

The electrical connection between multiple conductive terminals without using jumpers is realized, which meets the signal transmission requirements of electronic devices, and reduces the use of internal space of the equipment, supporting the development of thin and short-term electronic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electric connector assembly which comprises a bridging conductive component, so that a plurality of conductive terminals are electrically connected through the bridging conductive component under the condition that a jumper wire is not used, and the requirement of the electric connector assembly on signal transmission is met. The manufacturing method of the electric connector assembly comprises the step of combining the plurality of electric connector components and the bridging conductive component, so that in the combining step of the electric connector assembly, the electrical connection relation of the conductive terminals can be adjusted in a customized manner through the adjustment of the plurality of electric connector components and the bridging conductive component, and the electrical connection relation of the conductive terminals can be adjusted in a customized manner. Therefore, the requirement of the electric connector assembly on signal transmission is met, and the special requirements and development of electronic equipment are met.
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Description

Technical Field

[0001] This application belongs to the technical field of electronic devices, and particularly relates to an electrical connector assembly that can achieve electrical connection of multiple conductive terminals without using jumpers. Background Art

[0002] In various modern electronic devices, an electrical connector assembly is usually provided to transmit signals. However, due to the special requirements and development of electronic devices, there may be a need for electrical connection between multiple conductive terminals on the electrical connector assembly. In this regard, the current industry can only choose to use a jumper that cooperates with the electrical connector assembly to achieve the electrical connection between multiple conductive terminals on the electrical connector assembly. However, the use of jumpers will occupy the internal space of the electronic device. Thus, it will cause the electronic device to be unable to continuously develop in the direction of being thinner, lighter, shorter, and smaller.

[0003] In view of this, how to achieve the electrical connection of multiple conductive terminals on the electrical connector assembly without using jumpers has now become a technical issue that the current industry urgently wants to challenge and overcome. Summary of the Invention

[0004] In view of the above-mentioned disadvantages of the prior art, the purpose of this application is to provide an electrical connector assembly, which is used to solve the problem of how to achieve the electrical connection of multiple conductive terminals on the electrical connector assembly without using jumpers in the manufacturing technology of the electrical connector assembly.

[0005] In a first aspect, the present application provides an electrical connector assembly, the electrical connector assembly comprising: a bonding insulating material, the bonding insulating material comprising a bonding insulating material bonding structure; a main-side electrical connector member, the main-side electrical connector member comprising a main-side insulating material, a main-side non-bridging conductive terminal, a main-side first bridging conductive terminal and a main-side second bridging conductive terminal, characterized in that the main-side insulating material positions the main-side non-bridging conductive terminal, the main-side first bridging conductive terminal and the main-side second bridging conductive terminal, separating the main-side non-bridging conductive terminal, the main-side first bridging conductive terminal and the main-side second bridging conductive terminal, and the main-side insulating material comprising a main-side electrical connector member combination structure and a main-side electrical connector member bonding structure; a secondary-side electrical connector member, the secondary-side electrical connector member comprising a secondary-side insulating material, a secondary-side non-bridging conductive terminal, a secondary-side first bridging conductive terminal and a secondary-side second bridging conductive terminal, characterized in that the secondary-side insulating material positions the secondary-side non-bridging conductive terminal, the secondary-side first bridging conductive terminal and the secondary-side second bridging conductive terminal, separating the secondary-side non-bridging conductive terminal, the secondary-side first bridging conductive terminal and the secondary-side second bridging conductive terminal, and the secondary-side insulating material comprising a secondary-side electrical connector member combination structure and a secondary-side electrical connector member bonding structure; and a bridging conductive member, the bridging conductive member comprising a bridging conductive member body, a main-side first abutting structure, a main-side second abutting structure, a secondary-side first abutting structure, a secondary-side second abutting structure, a bridging conductive member combination structure and a bridging conductive member bonding structure; characterized in that the bridging conductive member is located between the main-side electrical connector member and the secondary-side electrical connector member, enabling the main-side electrical connector member combination structure, the bridging conductive member combination structure and the secondary-side electrical connector member combination structure to be matched, so that the main-side electrical connector member, the bridging conductive member and the secondary-side electrical connector member can be combined into an electrical connector assembly combination; in the electrical connector assembly combination, the bridging conductive member body straddles the main-side non-bridging conductive terminal and the secondary-side non-bridging conductive terminal, enabling the main-side first abutting structure, the main-side second abutting structure, the secondary-side first abutting structure and the secondary-side second abutting structure to respectively abut the main-side first bridging conductive terminal, the main-side second bridging conductive terminal, the secondary-side first bridging conductive terminal and the secondary-side second bridging conductive terminal; and the bonding insulating material bonds the electrical connector assembly combination, causing the bonding insulating material, the main-side insulating material and the secondary-side insulating material to be combined into a material combination body, enabling the bonding structure, the main-side electrical connector member bonding structure, the secondary-side electrical connector member bonding structure and the bridging conductive member bonding structure to be matched, and maintaining the combination of the main-side electrical connector member, the bridging conductive member and the secondary-side electrical connector member.

[0006] In one implementation of the first aspect, in the adhesive material combination, the bonding insulating adhesive material, the main-side insulating adhesive material, and the secondary-side insulating adhesive material are fused and seamlessly bonded.

[0007] In one implementation of the first aspect, in the adhesive material combination, the bonding insulating adhesive material, the main-side insulating adhesive material, and the secondary-side insulating adhesive material are joined with a seam.

[0008] In one implementation of the first aspect, the adhesive material bonding structure includes a main-side adhesive material bonding sub-structure, a secondary-side adhesive material bonding sub-structure, and an interconnection adhesive material bonding sub-structure. It is characterized in that the main-side adhesive material bonding sub-structure, the secondary-side adhesive material bonding sub-structure, and the interconnection adhesive material bonding sub-structure can respectively bond the main-side electrical connector component bonding structure, the secondary-side electrical connector component bonding structure, and the interconnection conductive component bonding structure.

[0009] In one implementation of the first aspect, the interconnection conductive component bonding structure includes an interconnection conductive component snap-joining sub-structure, and the interconnection conductive component snap-joining sub-structure snaps onto the adhesive material bonding structure to maintain the bonding between the bonding insulating adhesive material and the electrical connector assembly combination.

[0010] In one implementation of the first aspect, the interconnection conductive component snap-joining sub-structure is a dovetail-shaped groove structure.

[0011] In one implementation of the first aspect, the main-side electrical connector component bonding structure, the secondary-side electrical connector component bonding structure, and the interconnection conductive component bonding structure are groove structures.

[0012] In one implementation of the first aspect, the interconnection conductive component body includes a main-side interconnection wall structure and a secondary-side interconnection wall structure; the main-side first abutting structure and the main-side second abutting structure are provided on the main-side interconnection wall structure, and the main-side interconnection wall structure faces the main-side electrical connector component, and the main-side interconnection wall structure straddles the main-side non-interconnection conductive terminal, so that the main-side first abutting structure and the main-side second abutting structure respectively abut the main-side first interconnection conductive terminal and the main-side second interconnection conductive terminal; and the secondary-side first abutting structure and the secondary-side second abutting structure are provided on the secondary-side interconnection wall structure, and the secondary-side interconnection wall structure faces the secondary-side electrical connector component, and the secondary-side interconnection wall structure straddles the secondary-side non-interconnection conductive terminal, so that the secondary-side first abutting structure and the secondary-side second abutting structure respectively abut the secondary-side first interconnection conductive terminal and the secondary-side second interconnection conductive terminal.

[0013] In an implementation of the first aspect, the bridging conductive component body also includes a connecting bending structure, which connects the main side bridging wall structure and the secondary side bridging wall structure, and bends the main side bridging wall structure and the secondary side bridging wall structure toward the main side electrical connector component and the secondary side electrical connector component, respectively.

[0014] In an implementation of the first aspect, the electrical connector assembly comprises a combination side and a joining side, the combination side and the joining side are opposite sides, the main side electrical connector component combination structure, the secondary side electrical connector component combination structure and the bridging conductive component combination structure are located on the combination side, and the main side electrical connector component joining structure, the secondary side electrical connector component joining structure and the bridging conductive component joining structure are located on the joining side.

[0015] In an implementation of the first aspect, the main-side electrical connector component combination structure and the secondary-side electrical connector component combination structure are structurally matched concave-convex structures; and the bridging conductive component combination structure is a perforated structure that can pass through the main-side electrical connector component combination structure or the secondary-side electrical connector component combination structure.

[0016] As described above, the electrical connector assembly described in the present application has the following beneficial effects:

[0017] The electrical connector assembly provided by the present application includes a jumper conductive component, so as to achieve electrical connection of multiple conductive terminals without using a jumper through the jumper conductive component, so as to meet the requirements of the electrical connector assembly for signal transmission. The manufacturing method of the electrical connector assembly includes the step of combining multiple electrical connector components with the jumper conductive component. Therefore, in the step of combining the electrical connector assembly, the electrical connection relationship of the conductive terminals can be customized by adjusting the multiple electrical connector components and the jumper conductive component, so as to meet the requirements of the electrical connector assembly for signal transmission and meet the special needs and development of electronic equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A three-dimensional schematic diagram of an electrical connector assembly of the present application in a first viewing angle is shown.

[0019] Figure 2 A schematic three-dimensional diagram of an electrical connector assembly of the present application at a second viewing angle is shown.

[0020] Figure 3 Shown is a top view schematic diagram of an electrical connector assembly of the present application in one embodiment.

[0021] Figure 4 Display as Figure 3Schematic cross-sectional view of some components of the shown electrical connector assembly cut along line AA.

[0022] Figure 4A Shown as Figure 3 Schematic cross-sectional view of some components of the shown electrical connector assembly cut along line A’A’.

[0023] Figure 5 Shown Figure 3 Schematic cross-sectional view of some components of the shown electrical connector assembly cut along line BB.

[0024] Figure 5A Shown as Figure 3 Schematic cross-sectional view of some components of the shown electrical connector assembly cut along line B’B’.

[0025] Figure 6 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application from a first perspective of an embodiment.

[0026] Figure 7 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application from a second perspective of an embodiment.

[0027] Figure 8 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application in an embodiment.

[0028] Figure 9 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application in an embodiment.

[0029] Figure 10 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application from a first perspective of an embodiment.

[0030] Figure 11 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application from a second perspective of an embodiment.

[0031] Figure 12 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application in an embodiment.

[0032] Figure 13 Stereoscopic schematic view of some components of an embodiment of the electrical connector assembly of the present application in an embodiment.

[0033] Description of component numbers

[0034] 1 Electrical connector assembly

[0035] 11 Bonding insulating rubber

[0036] 12 Main - side electrical connector component

[0037] 13 Sub - side electrical connector component

[0038] 14 Cross - connecting conductive component

[0039] 111 Adhesive bonding structure

[0040] 121 Main - side insulating adhesive

[0041] 122 Main - side non - cross - connecting conductive terminal

[0042] 123 Main - side first cross - connecting conductive terminal

[0043] 124 Main - side second cross - connecting conductive terminal

[0044] 131 Sub - side insulating adhesive

[0045] 132 Sub - side non - cross - connecting conductive terminal

[0046] 133 Sub - side first cross - connecting conductive terminal

[0047] 134 Sub - side second cross - connecting conductive terminal

[0048] 141 Cross - connecting conductive component body

[0049] 142 Main - side first abutting structure

[0050] 143 Main - side second abutting structure

[0051] 144 Sub - side first abutting structure

[0052] 145 Sub - side second abutting structure

[0053] 146 Cross - connecting conductive component combined structure

[0054] 147 Cross - connecting conductive component bonding structure

[0055] 1111 Main - side adhesive bonding sub - structure

[0056] 1112 Sub - side adhesive bonding sub - structure

[0057] 1113 Cross - connecting adhesive bonding sub - structure

[0058] 1211 Main - side electrical connector component combined structure

[0059] 1212 Main - side electrical connector component bonding structure

[0060] 1311 Sub - side electrical connector component combined structure

[0061] 1312 Sub - side electrical connector component bonding structure

[0062] 1411 Main - side bridging wall structure

[0063] 1412 Sub - side bridging wall structure

[0064] 1413 Connecting bending structure

[0065] 1471 Bridging conductive component clamping joint sub - structure

[0066] A Electrical connector assembly combination

[0067] S1 Combination side

[0068] S2 Joint side

[0069] C Adhesive combination Detailed implementation manners

[0070] The following uses specific examples to illustrate the implementation manners of the present application. Those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in this specification. The present application can also be implemented or applied through other different specific implementation manners. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present application. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0071] It should be noted that the diagrams provided in the following embodiments only illustrate the basic concept of the present application in a schematic manner. Therefore, only the components related to the present application are shown in the diagrams, rather than being drawn according to the number, shape, and size of the components in actual implementation. The type, quantity, and proportion of each component in actual implementation can be arbitrarily changed, and the component layout type may also be more complex.

[0072] The principle and implementation manner of an electrical connector assembly in this embodiment will be elaborated in detail below with reference to the drawings, so that those skilled in the art can understand the electrical connector assembly of this embodiment without creative labor.

[0073] The present application provides an electrical connector assembly that can achieve electrical connection of multiple conductive terminals without using jumpers. Regarding the technical concept of the present application, please also refer to Figures 1 to 13 .

[0074] In Figures 1 to 7 the illustrated embodiment, the electrical connector assembly 1 includes: a joint insulating adhesive 11, a main - side electrical connector component 12, a sub - side electrical connector component 13, and a bridging conductive component 14. The joint insulating adhesive 11 includes an adhesive joint structure 111.

[0075] The main - side electrical connector member 12 includes a main - side insulating rubber material 121, at least one main - side non - bridging conductive terminal 122, at least one main - side first bridging conductive terminal 123, and at least one main - side second bridging conductive terminal 124. The main - side insulating rubber material 121 positions the main - side non - bridging conductive terminal 122, the main - side first bridging conductive terminal 123, and the main - side second bridging conductive terminal 124 that can provide signal transmission, so as to separate the main - side non - bridging conductive terminal 122, the main - side first bridging conductive terminal 123, and the main - side second bridging conductive terminal 124, to avoid unnecessary electrical connection between the main - side non - bridging conductive terminal 122 and the main - side first bridging conductive terminal 123 and the main - side second bridging conductive terminal 124. And the main - side insulating rubber material 121 includes a main - side electrical connector member combined structure 1211 and a main - side electrical connector member joint structure 1212.

[0076] The secondary - side electrical connector member 13 includes a secondary - side insulating rubber material 131, at least one secondary - side non - bridging conductive terminal 132, at least one secondary - side first bridging conductive terminal 133, and at least one secondary - side second bridging conductive terminal 134. The secondary - side insulating rubber material 131 positions the secondary - side non - bridging conductive terminal 132, the secondary - side first bridging conductive terminal 133, and the secondary - side second bridging conductive terminal 134 that can provide signal transmission, so as to separate the secondary - side non - bridging conductive terminal 132, the secondary - side first bridging conductive terminal 133, and the secondary - side second bridging conductive terminal 134, to avoid unnecessary electrical connection between the secondary - side non - bridging conductive terminal 132 and the secondary - side first bridging conductive terminal 133 and the secondary - side second bridging conductive terminal 134. And the secondary - side insulating rubber material 131 includes a secondary - side electrical connector member combined structure 1311 and a secondary - side electrical connector member joint structure 1312.

[0077] The bridging conductive member 14 can be selected as a conductive plastic or a conductive metal that can provide signal transmission. In the above - mentioned embodiment, the bridging conductive member 14 includes a bridging conductive member body 141, at least one main - side first abutting structure 142, at least one main - side second abutting structure 143, at least one secondary - side first abutting structure 144, at least one secondary - side second abutting structure 145, a bridging conductive member combined structure 146, and a bridging conductive member joint structure 147.

[0078] In the above embodiments, the bridging conductive member 14 is located between the main-side electrical connector member 12 and the sub-side electrical connector member 13. The main-side electrical connector member combined structure 1211 and the sub-side electrical connector member combined structure 1311 are mating concave-convex structures. The bridging conductive member combined structure 146 is a perforated structure that can pass through the main-side electrical connector member combined structure 1211 or the sub-side electrical connector member combined structure 1311, so that the main-side electrical connector member combined structure 1211, the bridging conductive member combined structure 146, and the sub-side electrical connector member combined structure 1311 can be matched, enabling the main-side electrical connector member 12, the bridging conductive member 14, and the sub-side electrical connector member 13 to be combined into an electrical connector assembly combination A.

[0079] As Figures 10 to 13 shown, the electrical connector assembly combination A includes a combination side S1 and a mating side S2, and the combination side S1 and the mating side S2 are opposite sides of the electrical connector assembly combination A. It should be noted that the main-side electrical connector member combined structure 1211, the sub-side electrical connector member combined structure 1311, and the bridging conductive member combined structure 146 are located on the combination side S1, while the main-side electrical connector member mating structure 1212, the sub-side electrical connector member mating structure 1312, and the bridging conductive member mating structure 147 are located on the mating side S2.

[0080] In the electrical connector assembly combination A, the bridging conductive member body 141 straddles the main-side non-bridging conductive terminal 122 and the sub-side non-bridging conductive terminal 132, so that the main-side first abutting structure 142, the main-side second abutting structure 143, the sub-side first abutting structure 144, and the sub-side second abutting structure 145 respectively abut the main-side first bridging conductive terminal 123, the main-side second bridging conductive terminal 124, the sub-side first bridging conductive terminal 133, and the sub-side second bridging conductive terminal 134. Therefore, the bridging conductive member 14 can achieve the bridging of the main-side first bridging conductive terminal 123, the main-side second bridging conductive terminal 124, the sub-side first bridging conductive terminal 133, and the sub-side second bridging conductive terminal 134, and form a bridging circuit to enable the electrical connection of multiple conductive terminals without using jumpers, meeting the requirements of the electrical connector assembly for signal transmission.

[0081] It should be noted that the bridging circuit can transmit a ground signal to reduce the degree of interference of the signal transmission of the conductive terminals on the electrical connector assembly, thereby optimizing the signal transmission speed and quality of the electrical connector assembly. However, this is not limited thereto, and it is not excluded that the bridging circuit can provide the transmission of other forms of electrical signals to meet the requirements of the electrical connector assembly for signal transmission.

[0082] In the above embodiments, the cross-connecting conductive member body 141 includes a main-side cross-connecting wall structure 1411, a secondary-side cross-connecting wall structure 1412, and a connecting bending structure 1413. Since the cross-connecting conductive member 14 is located between the main-side electrical connector member 12 and the secondary-side electrical connector member 13, therefore, the main-side cross-connecting wall structure 1411 and the secondary-side cross-connecting wall structure 1412 can be located between the main-side electrical connector member 12 and the secondary-side electrical connector member 13 to provide shielding. In this way, the degree of interference to the signal transmission between the main-side electrical connector member 12 and the secondary-side electrical connector member 13 can be effectively reduced, thereby optimizing the signal transmission speed and quality of the electrical connector assembly 1 to meet the requirements of the electrical connector assembly 1 for signal transmission and satisfy the special needs and development of electronic devices.

[0083] Optionally, the main-side cross-connecting wall structure 1411 and the secondary-side cross-connecting wall structure 1412 can be between the main-side non-cross-connecting conductive terminal 122 and the secondary-side non-cross-connecting conductive terminal 132 to provide shielding.

[0084] Optionally, the main-side cross-connecting wall structure 1411 and the secondary-side cross-connecting wall structure 1412 can be combined into a single structure.

[0085] In the above embodiments, the connecting bending structure 1413 connects the main-side cross-connecting wall structure 1411 and the secondary-side cross-connecting wall structure 1412, and the connecting bending structure 1413 can bend the cross-connecting conductive member body 141 so that the main-side cross-connecting wall structure 1411 and the secondary-side cross-connecting wall structure 1412 face the main-side electrical connector member 12 and the secondary-side electrical connector member 13 respectively. The main-side first abutting structure 142 and the main-side second abutting structure 143 are arranged on the main-side cross-connecting wall structure 1411, and the main-side cross-connecting wall structure 1411 straddles the main-side non-cross-connecting conductive terminal 122, so that the main-side first abutting structure 142 and the main-side second abutting structure 143 respectively abut the main-side first cross-connecting conductive terminal 123 and the main-side second cross-connecting conductive terminal 124. The secondary-side first abutting structure 144 and the secondary-side second abutting structure 145 are arranged on the secondary-side cross-connecting wall structure 1412, and the secondary-side cross-connecting wall structure 1412 straddles the secondary-side non-cross-connecting conductive terminal 132, so that the secondary-side first abutting structure 144 and the secondary-side second abutting structure 145 respectively abut the secondary-side first cross-connecting conductive terminal 133 and the secondary-side second cross-connecting conductive terminal 134.

[0086] It should be noted that the primary-side first abutting structure 142, the primary-side second abutting structure 143, the secondary-side first abutting structure 144, and the secondary-side second abutting structure 145 can abut the primary-side first bridging conductive terminal 123, the primary-side second bridging conductive terminal 124, the secondary-side first bridging conductive terminal 133, and the secondary-side second bridging conductive terminal 134 at multiple positions in a multi-point abutting manner, so as to ensure that the bridging conductive member 14 can abut the primary-side first bridging conductive terminal 123, the primary-side second bridging conductive terminal 124, the secondary-side first bridging conductive terminal 133, and the secondary-side second bridging conductive terminal 134, thereby achieving the bridging of the primary-side first bridging conductive terminal 123, the primary-side second bridging conductive terminal 124, the secondary-side first bridging conductive terminal 133, and the secondary-side second bridging conductive terminal 134.

[0087] In addition, the bonding insulating adhesive 11 can bond the electrical connector assembly combination A, so that the bonding insulating adhesive 11, the primary-side insulating adhesive 121, and the secondary-side insulating adhesive 131 are combined into an adhesive combination C, enabling the adhesive bonding structure 111, the primary-side electrical connector member bonding structure 1212, the secondary-side electrical connector member bonding structure 1312, and the bridging conductive member bonding structure 147 to cooperate, thereby maintaining the combination of the primary-side electrical connector member 12, the bridging conductive member 14, and the secondary-side electrical connector member 13.

[0088] It should be noted that, as Figure 4 and Figure 5 shown, in the adhesive combination C, the bonding insulating adhesive 11, the primary-side insulating adhesive 121, and the secondary-side insulating adhesive 131 can be joined with a seam by, for example, a snap-fit method. However, this is not limiting. As Figure 4A and Figure 5A shown, in the adhesive combination C, the bonding insulating adhesive 11, the primary-side insulating adhesive 121, and the secondary-side insulating adhesive 131 can be welded seamlessly by, for example, a high-frequency method or an integrally formed method.

[0089] In Figures 1 to 7 the illustrated embodiment, the adhesive bonding structure 111 includes a primary-side adhesive bonding sub-structure 1111, a secondary-side adhesive bonding sub-structure 1112, and a bridging adhesive bonding sub-structure 1113. The primary-side adhesive bonding sub-structure 1111, the secondary-side adhesive bonding sub-structure 1112, and the bridging adhesive bonding sub-structure 1113 can respectively bond to the primary-side electrical connector member bonding structure 1212, the secondary-side electrical connector member bonding structure 1312, and the bridging conductive member bonding structure 147 that are in a groove structure. However, the primary-side electrical connector member bonding structure 1212, the secondary-side electrical connector member bonding structure 1312, and the bridging conductive member bonding structure 147 are not limited to the groove structure.

[0090] In the above embodiments, the bridging conductive member engaging structure 147 includes a bridging conductive member snap-engaging sub-structure 1471, such as Figures 6 to 7 and Figures 10 to 13 shown, the bridging conductive member snap-engaging sub-structure 1471 is a dovetail-shaped groove structure capable of snap-engaging with the adhesive bonding structure 111 to maintain the bonding of the bonding insulating adhesive 11 and the electrical connector assembly combination A. However, the bridging conductive member snap-engaging sub-structure 1471 is not limited to the dovetail-shaped groove structure.

[0091] In the above embodiments, the manufacturing of the electrical connector assembly 1 includes the following steps: Step 1, placing the bridging conductive member 14 between the main-side electrical connector member 12 and the sub-side electrical connector member 13. Then, Step 2, combining the main-side electrical connector member 12, the bridging conductive member 14, and the sub-side electrical connector member 13 into the electrical connector assembly combination A. After that, Step 3, bonding the bonding insulating adhesive 11 to the electrical connector assembly combination A to maintain the combination of the main-side electrical connector member 12, the bridging conductive member 14, and the sub-side electrical connector member 13.

[0092] It should be noted that the bonding insulating adhesive 11 can be optionally omitted. Correspondingly, the main-side insulating adhesive 121 and the sub-side insulating adhesive 131 can be combined into an adhesive combination C by, for example, high-frequency means or integral forming means. In this way, the above Step 3 of bonding the bonding insulating adhesive 11 to the electrical connector assembly combination A can be omitted.

[0093] It should be noted that the manufacturing method of the electrical connector assembly 1 of the present application at least includes the step of combining the main-side electrical connector member 12, the sub-side electrical connector member 13, and the bridging conductive member 14. Therefore, in the combination step of the electrical connector assembly 1, the electrical connection relationship of the conductive terminals can be customized and adjusted by adjusting the main-side electrical connector member 12, the sub-side electrical connector member 13, and the bridging conductive member 14 to meet the requirements of the electrical connector assembly 1 for signal transmission and satisfy the special needs and development of electronic devices.

[0094] It should be noted that the electrical connector assembly provided in this application may also omit some of the above features. For example, in this application, the electrical connector assembly includes: a bonding insulating rubber material, a main-side electrical connector component, a sub-side electrical connector component, and a bridging conductive component. The bonding insulating rubber material includes a rubber material bonding structure. The main-side electrical connector component includes a main-side insulating rubber material, a main-side non-bridging conductive terminal, a main-side first bridging conductive terminal, and a main-side second bridging conductive terminal. The main-side insulating rubber material positions the main-side non-bridging conductive terminal, the main-side first bridging conductive terminal, and the main-side second bridging conductive terminal, separating the main-side non-bridging conductive terminal, the main-side first bridging conductive terminal, and the main-side second bridging conductive terminal. The main-side insulating rubber material includes a main-side electrical connector component combination structure and a main-side electrical connector component bonding structure. The sub-side electrical connector component includes a sub-side insulating rubber material, a sub-side non-bridging conductive terminal, a sub-side first bridging conductive terminal, and a sub-side second bridging conductive terminal. The sub-side insulating rubber material positions the sub-side non-bridging conductive terminal, the sub-side first bridging conductive terminal, and the sub-side second bridging conductive terminal, separating the sub-side non-bridging conductive terminal, the sub-side first bridging conductive terminal, and the sub-side second bridging conductive terminal. The sub-side insulating rubber material includes a sub-side electrical connector component combination structure and a sub-side electrical connector component bonding structure. The bridging conductive component includes a bridging conductive component body, a main-side first abutting structure, a main-side second abutting structure, a sub-side first abutting structure, a sub-side second abutting structure, a bridging conductive component combination structure, and a bridging conductive component bonding structure. The bridging conductive component is located between the main-side electrical connector component and the sub-side electrical connector component, enabling the main-side electrical connector component combination structure, the bridging conductive component combination structure, and the sub-side electrical connector component combination structure to be matched, so that the main-side electrical connector component, the bridging conductive component, and the sub-side electrical connector component can be combined into an electrical connector assembly combination. In the electrical connector assembly combination, the bridging conductive component body straddles the main-side non-bridging conductive terminal and the sub-side non-bridging conductive terminal, causing the main-side first abutting structure, the main-side second abutting structure, the sub-side first abutting structure, and the sub-side second abutting structure to abut against the main-side first bridging conductive terminal, the main-side second bridging conductive terminal, the sub-side first bridging conductive terminal, and the sub-side second bridging conductive terminal respectively. And the bonding insulating rubber material bonds the electrical connector assembly combination, making the bonding insulating rubber material, the main-side insulating rubber material, and the sub-side insulating rubber material combine into a rubber material combination, enabling the rubber material bonding structure, the main-side electrical connector component bonding structure, the sub-side electrical connector component bonding structure, and the bridging conductive component bonding structure to be matched, and maintaining the combination of the main-side electrical connector component, the bridging conductive component, and the sub-side electrical connector component.

[0095] In addition, in the present application, a method for manufacturing an electrical connector assembly includes the following steps: placing a bridging conductive member between the main-side electrical connector member and the sub-side electrical connector member; and combining the main-side electrical connector member, the bridging conductive member, and the sub-side electrical connector member into an electrical connector assembly combination.

[0096] Furthermore, in the present application, a method for manufacturing an electrical connector assembly includes the following steps: placing a bridging conductive member between the main-side electrical connector member and the sub-side electrical connector member; combining the main-side electrical connector member, the bridging conductive member, and the sub-side electrical connector member into an electrical connector assembly combination; and using a bonding insulating adhesive to bond the electrical connector assembly combination while maintaining the combination of the main-side electrical connector member, the bridging conductive member, and the sub-side electrical connector member.

[0097] In summary, the present application provides an electrical connector assembly including a bridging conductive member to achieve electrical connection of a plurality of conductive terminals without using a jumper wire through the bridging conductive member, so as to meet the requirements of the electrical connector assembly for signal transmission. The manufacturing method of the electrical connector assembly includes steps of combining a plurality of electrical connector members and the bridging conductive member. Therefore, in the combination step of the electrical connector assembly, the electrical connection relationship of the conductive terminals can be customized and adjusted by adjusting the plurality of electrical connector members and the bridging conductive member, so as to meet the requirements of the electrical connector assembly for signal transmission and satisfy the special needs and development of electronic devices.

[0098] The above embodiments are only illustrative of the principles and effects of the present application and are not intended to limit the present application. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present application should still be covered by the claims of the present application.

Claims

1. An electrical connector assembly, characterized in that: The electrical connector assembly comprises: A bonding insulating adhesive material, wherein the bonding insulating adhesive material comprises an adhesive material bonding structure; a main-side electrical connector component, the main-side electrical connector component comprising a main-side insulating adhesive, a main-side non-crossing conductive terminal, a main-side first cross-over conductive terminal and a main-side second cross-over conductive terminal, characterized in that the main-side insulating adhesive locates the main-side non-crossing conductive terminal, the main-side first cross-over conductive terminal and the main-side second cross-over conductive terminal, so that the main-side non-crossing conductive terminal, the main-side first cross-over conductive terminal and the main-side second cross-over conductive terminal are separated, and the main-side insulating adhesive comprises a main-side electrical connector component assembly structure and a main-side electrical connector component engagement structure; A primary side electrical connector component, the secondary side electrical connector component comprising a primary side insulating adhesive, a primary side non-bridging conductive terminal, a primary side first bridging conductive terminal and a primary side second bridging conductive terminal, wherein the secondary side insulating adhesive positions the secondary side non-bridging conductive terminal, the secondary side first bridging conductive terminal and the secondary side second bridging conductive terminal, so that the secondary side non-bridging conductive terminal, the secondary side first bridging conductive terminal and the secondary side second bridging conductive terminal are separated, and the secondary side insulating adhesive comprises a primary side electrical connector component assembly structure and a primary side electrical connector component engagement structure; and A bridging conductive component, comprising a bridging conductive component body, a primary side first abutting structure, a primary side second abutting structure, a primary side first abutting structure, a primary side second abutting structure, a bridging conductive component combination structure and a bridging conductive component joint structure; characterized in that: The bridging conductive member is located between the primary electrical connector member and the secondary electrical connector member, so that the primary electrical connector member assembly structure, the bridging conductive member assembly structure and the secondary electrical connector member assembly structure can be matched, so that the primary electrical connector member, the bridging conductive member and the secondary electrical connector member can be combined into an electrical connector assembly; In the electrical connector assembly, the jumper conductive component body jumps over the primary-side non-jumper conductive terminal and the secondary-side non-jumper conductive terminal, so that the primary-side first abutting structure, the primary-side second abutting structure, the secondary-side first abutting structure and the secondary-side second abutting structure respectively abut against the primary-side first jumper conductive terminal, the primary-side second jumper conductive terminal, the secondary-side first jumper conductive terminal and the secondary-side second jumper conductive terminal; and The joining insulating adhesive material joins the electrical connector assembly so that the joining insulating adhesive material, the main-side insulating adhesive material and the secondary-side insulating adhesive material are combined into an adhesive combination, so that the adhesive material joining structure, the main-side electrical connector component joining structure, the secondary-side electrical connector component joining structure and the jumper conductive component joining structure can be matched to maintain the combination of the main-side electrical connector component, the jumper conductive component and the secondary-side electrical connector component.

2. The electrical connector assembly according to claim 1, characterized in that: In the adhesive combination, the joint insulating adhesive, the main-side insulating adhesive and the secondary-side insulating adhesive are welded and seamlessly combined.

3. The electrical connector assembly according to claim 1, characterized in that: In the adhesive combination, the joint insulating adhesive, the main-side insulating adhesive and the secondary-side insulating adhesive are combined with a seam.

4. The electrical connector assembly according to claim 1, characterized in that: The adhesive material joining structure includes a main side adhesive material joining substructure, a primary side adhesive material joining substructure and a bridging adhesive material joining substructure, wherein the main side adhesive material joining substructure, the secondary side adhesive material joining substructure and the bridging adhesive material joining substructure can respectively join the main side electrical connector component joining structure, the secondary side electrical connector component joining structure and the bridging conductive component joining structure.

5. The electrical connector assembly according to claim 1, characterized in that: The bridging conductive member engagement structure includes a bridging conductive member clamping engagement substructure, and the bridging conductive member clamping engagement substructure clamps the adhesive material engagement structure to maintain the engagement between the bonding insulating adhesive material and the electrical connector assembly.

6. The electrical connector assembly according to claim 5, characterized in that: The bridging conductive member clamping engaging substructure is a dovetail-shaped groove structure.

7. The electrical connector assembly according to claim 1, characterized in that: The primary-side electrical connector component engagement structure, the secondary-side electrical connector component engagement structure and the bridging conductive component engagement structure are groove structures.

8. The electrical connector assembly according to claim 1, characterized in that: The main body of the bridging conductive component includes a main-side bridging wall structure and a primary-side bridging wall structure; the main-side first abutting structure and the main-side second abutting structure are arranged on the main-side bridging wall structure, and the main-side bridging wall structure faces the main-side electrical connector component, and the main-side bridging wall structure spans the main-side non-bridging conductive terminal, so that the main-side first abutting structure and the main-side second abutting structure respectively abut the main-side first bridging conductive terminal and the main-side second bridging conductive terminal; and the secondary-side first abutting structure and the secondary-side second abutting structure are arranged on the secondary-side bridging wall structure, and the secondary-side bridging wall structure faces the secondary-side electrical connector component, and the secondary-side bridging wall structure spans the secondary-side non-bridging conductive terminal, so that the secondary-side first abutting structure and the secondary-side second abutting structure respectively abut the secondary-side first bridging conductive terminal and the secondary-side second bridging conductive terminal.

9. The electrical connector assembly according to claim 8, characterized in that: The main body of the bridging conductive component also includes a connecting bending structure, which connects the main side bridging wall structure and the secondary side bridging wall structure, and bends the main side bridging wall structure and the secondary side bridging wall structure toward the main side electrical connector component and the secondary side electrical connector component respectively.

10. The electrical connector assembly according to claim 1, characterized in that: The electrical connector assembly comprises a combination side and a joining side, wherein the combination side and the joining side are opposite sides, the main side electrical connector component combination structure, the secondary side electrical connector component combination structure and the bridging conductive component combination structure are located on the combination side, and the main side electrical connector component joining structure, the secondary side electrical connector component joining structure and the bridging conductive component joining structure are located on the joining side.

11. The electrical connector assembly according to claim 1, characterized in that: The primary side electrical connector component assembly structure and the secondary side electrical connector component assembly structure are structurally matched concave-convex structures; and the bridging conductive component assembly structure is a perforated structure capable of passing through the primary side electrical connector component assembly structure or the secondary side electrical connector component assembly structure.