Integrated energy storage connector with low-voltage auxiliary function
By introducing guide elements into the energy storage connector, the problem of difficult signal terminal insertion is solved, enabling efficient and convenient signal terminal installation.
Patent Information
- Application Number
- CN202422927351.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The signal terminals are difficult to plug into the energy storage connector smoothly, which affects installation efficiency and is inconvenient to use.
The design incorporates a plug and socket structure with guides to guide the plug's signal terminal group, ensuring smooth insertion with the socket's signal terminal group and reducing positional sensitivity.
It improves the installation efficiency of signal terminals, enables fast and stable connections, and enhances ease of use.
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Figure CN223462552U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to connector technical field especially is to point to a kind of integrated energy storage connector with low-voltage auxiliary function. BACKGROUND
[0002] Energy storage connector generally includes plug and socket, and it belongs to one kind of electric connector. When using, plug and socket are respectively installed on two energy storage box bodies, and two adjacent box bodies are connected by plug and socket to realize electrical connection. In energy storage connector, positive and negative terminals, ground terminals and signal terminals are installed on the shell of the connector to realize power-on, signal sensing and transmission.
[0003] However, due to the difficulty of signal terminals to be smoothly inserted into the socket from the plug, the position degree of the signal terminal insertion is large, which affects the installation efficiency of the signal terminal, and the use is extremely inconvenient. UTILITY MODEL CONTENT
[0004] The utility model provides an integrated energy storage connector with low-voltage auxiliary function to reduce the position degree of signal terminal insertion, improve the installation efficiency of signal terminal and facilitate use in view of the deficiency of prior art.
[0005] In order to solve the above technical problems, the utility model adopts the following technical scheme:
[0006] The utility model provides an integrated energy storage connector with low-voltage auxiliary function, which comprises a plug body, a socket body connected with the plug body, a plug signal terminal group installed on the plug body, a socket signal terminal group installed on the socket body, and a guide piece installed on one side of the plug body close to the socket body.
[0007] The plug body is provided with a containing portion, the containing portion is provided with a mounting cavity, the guide piece is installed in the mounting cavity, and the plug signal terminal group extends into the mounting cavity after passing through the guide piece.
[0008] When the plug body is connected with the socket body, the plug signal terminal group is connected with the socket signal terminal group.
[0009] The plug body is provided with a plug mounting portion connected with the containing portion, and the plug signal terminal group extends into the mounting cavity after passing through the plug mounting portion and the guide piece.
[0010] The socket body is provided with a socket mounting portion and a butt joint portion connected with the socket mounting portion, and the socket signal terminal group is arranged in the socket mounting portion and the butt joint portion.
[0011] When the plug body is connected with the socket body, the butt joint portion is inserted into the mounting cavity.
[0012] The accommodating part is provided with a first positive-negative cavity and a second positive-negative cavity, and a first group of plug positive-negative terminals and a second group of plug positive-negative terminals are respectively installed in the first positive-negative cavity and the second positive-negative cavity.
[0013] The first group of plug positive-negative terminals is plugged with the first group of socket positive-negative terminals, and the second group of plug positive-negative terminals is plugged with the second group of socket positive-negative terminals.
[0014] The accommodating part is provided with a grounding cavity, a grounding plug terminal group is installed in the grounding cavity, and a grounding socket terminal group is installed in the socket mounting part, and the grounding plug terminal group is plugged with the grounding socket terminal group.
[0015] The socket mounting part is provided with a first mounting cylinder, a second mounting cylinder and a third mounting cylinder, and the first group of socket positive-negative terminals, the second group of socket positive-negative terminals and the grounding socket terminal group are respectively installed in the first mounting cylinder, the second mounting cylinder and the third mounting cylinder.
[0016] The socket mounting part is provided with an accommodating cylinder, and the butt joint part, the first mounting cylinder, the second mounting cylinder and the third mounting cylinder are located in the accommodating cylinder, the accommodating part is provided with a sealing ring, and the accommodating part and the sealing ring are inserted into the accommodating cylinder.
[0017] The plug body is provided with a first mounting sleeve; the plug body is provided with a first through hole, the first mounting sleeve includes a first head and a first sleeve rod connected with the first head, one end of the first sleeve rod is provided with a first stop ring after penetrating out of the first through hole, the outer diameter of the first sleeve rod is smaller than the diameter of the first through hole, so that a first horizontal movement gap is left between the first sleeve rod and the first through hole, and the distance between the first stop ring and the first head is greater than the depth of the first through hole, so that a first up-down movement gap is left between the first mounting sleeve and the plug body.
[0018] The socket body is provided with a second mounting sleeve; the socket body is provided with a second through hole, the second mounting sleeve includes a second head and a second sleeve rod connected with the second head, one end of the second sleeve rod is provided with a second stop ring after penetrating out of the second through hole, the outer diameter of the second sleeve rod is smaller than the diameter of the second through hole, so that a second horizontal movement gap is left between the second sleeve rod and the second through hole, and the distance between the second stop ring and the second head is greater than the depth of the second through hole, so that a second up-down movement gap is left between the second mounting sleeve and the socket body.
[0019] The plug body is provided with a plug guide column, and the socket body is provided with a socket guide hole matched with the plug guide column.
[0020] The plug signal terminal group includes a first plug signal terminal and a second plug signal terminal, the guide member is provided with a first signal hole and a second signal hole, and the socket signal terminal group includes a first socket signal terminal and a second socket signal terminal. The front end of the first plug signal terminal passes through the first signal hole and is plugged into the first socket signal terminal, and the front end of the second plug signal terminal passes through the second signal hole and is plugged into the second socket signal terminal.
[0021] The mounting cavity is provided with a signal guide hole, the guide member is provided with a signal guide column cooperating with the signal guide hole, the mounting cavity is provided with a card slot, the guide member is provided with an elastic claw, and the elastic claw is clamped in the card slot.
[0022] Among them, the inner wall of the grounding cavity is provided with an anti-idiot groove, and the third mounting tube is provided with an anti-idiot block that cooperates with the anti-idiot groove. The first mounting tube, the second mounting tube and the third mounting tube are respectively plugged into the first positive and negative cavity, the second positive and negative cavity and the grounding cavity.
[0023] Beneficial effects of the utility model:
[0024] When two energy storage boxes need to be electrically connected, the plug body and the socket body are aligned and plugged in to achieve the connection between adjacent energy storage boxes; the guide piece is provided to effectively guide the front end of the plug signal terminal group, so that the plug signal terminal group can be smoothly plugged into the socket signal terminal group, reducing the position accuracy of the signal terminal plug-in, improving the installation efficiency of the signal terminal, and making it easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 This is a three-dimensional diagram of the integrated energy storage connector with low-voltage auxiliary function.
[0026] Figure 2 Schematic diagram of the exploded structure of the plug body.
[0027] Figure 3 This is a schematic diagram of the three-dimensional structure of the socket signal terminal group separated from the socket body.
[0028] Figure 4 It is a schematic diagram of the three-dimensional structure of the plug body and the socket body.
[0029] Figure 5 It is another three-dimensional structural diagram of the plug body and the socket body.
[0030] Figure 6 This is a schematic diagram of the exploded structure of the socket body.
[0031] Figure 7 This is a cross-sectional view of the installation structure of the first installation sleeve and the plug body.
[0032] Figure 8Figure 7 is a sectional view of the mounting structure of the second mounting sleeve and the socket body.
[0033] Figure 9 Figure 8 is an exploded view of the plug signal terminal set, the guide member and the socket signal terminal set.
[0034] Figure 10 Figure 9 is a sectional view of the mounting structure of the guide member.
[0035] 1, plug body; 101, first through hole;
[0036] 11, accommodating portion; 12, plug mounting portion;
[0037] 111, mounting cavity; 1111, signal guide hole; 1112, clamping groove;
[0038] 112, first positive and negative cavity; 113, second positive and negative cavity;
[0039] 114, ground cavity; 1141, foolproof groove;
[0040] 115, sealing ring;
[0041] 13, plug guide column;
[0042] 100, ground plug terminal set;
[0043] 200, ground socket terminal set;
[0044] 2, socket body; 201, second through hole;
[0045] 21, socket mounting portion;
[0046] 211, first mounting cylinder; 212, second mounting cylinder;
[0047] 213, third mounting cylinder; 2131, foolproof block;
[0048] 214, accommodating cylinder;
[0049] 22, mating portion;
[0050] 23, socket guide hole;
[0051] 3, plug signal terminal set;
[0052] 31, first plug signal terminal; 32, second plug signal terminal; 4, socket signal terminal set;
[0053] 41, first socket signal terminal; 42, second socket signal terminal;
[0054] 5, guide member; 51, first signal hole; 52, second signal hole;
[0055] 53, signal guide post; 54, elastic clamping jaw;
[0056] 6, first set of plug positive and negative terminals; 7, second set of plug positive and negative terminals;
[0057] 8, first set of socket positive and negative terminals; 9, second set of socket positive and negative terminals;
[0058] 01, first mounting sleeve;
[0059] 011, first head; 012, first sleeve rod; 013, first stop ring;
[0060] 02, second mounting sleeve;
[0061] 021, second head; 022, second sleeve rod; 023, second stop ring. DETAILED DESCRIPTION
[0062] For the convenience of those skilled in the art, the present application will be further described below in conjunction with the embodiments and the accompanying drawings. The specific embodiments of the present application will be described below, and it should be noted that, in the specific description of these embodiments, the present specification cannot describe all the features of the actual embodiments in detail for the sake of brevity and conciseness.
[0063] Reference Figures 1 to 10 As shown in the figure, the utility model provides a kind of integrated energy storage connector with low-voltage auxiliary function, including plug body 1, and the plug body 1 of plug-in socket body 2, the plug body 1 is equipped with plug signal terminal group 3, the socket body 2 is equipped with socket signal terminal group 4, the plug body 1 is equipped with guide 5 on the side close to socket body 2;The plug body 1 is provided with containing portion 11, the containing portion 11 is provided with installation cavity 111, the guide 5 is installed in installation cavity 111, the plug signal terminal group 3 is inserted into installation cavity 111 after passing through guide 5;When the plug body 1 is plugged with socket body 2, the plug signal terminal group 3 is plugged with socket signal terminal group 4.
[0064] Reference Figure 1 、 4 As shown in the figure, in actual application, the outer side of plug body 1 and socket body 2 is provided with sealing washer, plug body 1 and socket body 2 are respectively installed in the inner side of two energy storage box bodies, and the sealing performance of plug body 1 and socket body 2 and corresponding energy storage box body connecting place is guaranteed by sealing washer;When two energy storage box bodies need to be electrically connected, plug body 1 is plugged with socket body 2, to realize the connection of adjacent energy storage box bodies;Reference Figure 2As shown, the front end of the plug signal terminal group 3 is effectively guided by the guide 5, the position degree of the signal terminal insertion is reduced, the plug signal terminal group 3 is smoothly inserted with the socket signal terminal group 4, the installation efficiency of the signal terminal is improved, and the use is convenient.
[0065] Reference Figure 2 , 3 As shown, in the embodiment, the plug body 1 is provided with a plug mounting portion 12 connected with the accommodating portion 11, the plug signal terminal group 3 extends into the mounting cavity 111 through the plug mounting portion 12 and the guide 5; the socket body 2 is provided with a socket mounting portion 21 and a butt joint portion 22 connected with the socket mounting portion 21, the socket signal terminal group 4 is arranged in the socket mounting portion 21 and the butt joint portion 22.
[0066] When the plug body 1 is inserted with the socket body 2, the butt joint portion 22 is inserted into the mounting cavity 111, so that the connection part of the plug signal terminal group 3 and the socket signal terminal group 4 is located in the mounting cavity 111, and the connection of the signal terminal is stable.
[0067] Reference Figure 4 , 5 As shown, in the embodiment, the accommodating portion 11 is provided with a first positive and negative cavity 112 and a second positive and negative cavity 113, the first positive and negative cavity 112 and the second positive and negative cavity 113 are respectively provided with a first group of plug positive and negative terminals 6 and a second group of plug positive and negative terminals 7, the socket mounting portion 21 is further provided with a first group of socket positive and negative terminals 8 and a second group of socket positive and negative terminals 9; the first group of plug positive and negative terminals 6 is inserted with the first group of socket positive and negative terminals 8, and the second group of plug positive and negative terminals 7 is inserted with the second group of socket positive and negative terminals 9, so that the positive and negative terminals can be installed between the two energy storage boxes, and the connection requirement of the positive and negative terminals is met.
[0068] Reference Figure 4 , 5 As shown, in the embodiment, the accommodating portion 11 is provided with a grounding cavity 114, the grounding cavity 114 is provided with a grounding plug terminal group 100, the socket mounting portion 21 is further provided with a grounding socket terminal group 200, the grounding plug terminal group 100 is inserted with the grounding socket terminal group 200, so that a grounding wire can be drawn out from the energy storage box to meet the connection requirement.
[0069] Reference Figure 4 , 6As shown, in the embodiment, the socket mounting portion 21 is provided with a first mounting cylinder 211, a second mounting cylinder 212 and a third mounting cylinder 213, and the first set of socket positive and negative terminals 8, the second set of socket positive and negative terminals 9 and the ground socket terminal group 200 are respectively mounted on the first mounting cylinder 211, the second mounting cylinder 212 and the third mounting cylinder 213; the socket mounting portion 21 is provided with a containing cylinder 214, and the mating portion 22, the first mounting cylinder 211, the second mounting cylinder 212 and the third mounting cylinder 213 are located in the containing cylinder 214; the containing portion 11 is provided with a sealing ring 115, and the containing portion 11 and the sealing ring 115 are inserted into the containing cylinder 214.
[0070] Referring to Figure 4 , 5 As shown, in actual application, when the plug body 1 is plugged with the socket body 2, the containing portion 11 and the sealing ring 115 are inserted into the containing cylinder 214, the connection between the containing portion 11 and the containing cylinder 214 is sealed by the sealing ring 115, and the respective male and female end connections of the signal terminals, the positive and negative terminals and the power terminals are all located in a sealed environment, which has good waterproof performance and ensures stable connection of the signal terminals, the positive and negative terminals and the power terminals.
[0071] Referring to Figure 1 , 7 As shown, in the embodiment, the plug body 1 is mounted with a first mounting sleeve 01; the plug body 1 is provided with a first through hole 101, the first mounting sleeve 01 includes a first head 011 and a first sleeve rod 012 connected with the first head 011, one end of the first sleeve rod 012 is provided with a first stop ring 013 after penetrating out of the first through hole 101, the outer diameter of the first sleeve rod 012 is smaller than the diameter of the first through hole 101, so that a first horizontal movement gap is left between the first sleeve rod 012 and the first through hole 101, and the distance between the first stop ring 013 and the first head 011 is greater than the depth of the first through hole 101, so that a first up-down movement gap is left between the first mounting sleeve 01 and the plug body 1; specifically, the first mounting sleeve 01 is preferably four, in actual application, the components mounted between the plug body 1 and the socket body 2 are connected with the first mounting sleeve 01, so as to realize connection of the components with the plug body 1, since the plug body 1 can move in the horizontal and up-down spaces relative to the first mounting sleeve 01, the plug body 1 does not need to be accurately positioned when connected with the socket body 2, so as to realize quick connection; specifically, when the first stop ring 013 is mounted on the first sleeve rod 012, a corresponding jig can be used to expand the first sleeve rod 012 to eliminate the gap between the first sleeve rod 012 and the first stop ring 013, so as to realize radial pre-tightening.
[0072] Referring to Figure 1 , 8As shown, in the embodiment, the socket body 2 is provided with a second mounting sleeve 02; the socket body 2 is provided with a second through hole 201, the second mounting sleeve 02 comprises a second head 021 and a second sleeve rod 022 connected with the second head 021, one end of the second sleeve rod 022 is provided with a second check ring 023 after penetrating out of the second through hole 201, the outer diameter of the second sleeve rod 022 is smaller than the diameter of the second through hole 201, so that a second horizontal movement gap is left between the second sleeve rod 022 and the second through hole 201, and the distance between the second check ring 023 and the second head 021 is greater than the depth of the second through hole 201, so that a second up-down movement gap is left between the second mounting sleeve 02 and the socket body 2; specifically, the second mounting sleeve 02 is preferably four, in actual application, the parts mounted between the plug body 1 and the socket body 2 are connected with the second mounting sleeve 02, so as to realize the connection between the parts and the socket body 2, since the socket body 2 can move in the horizontal and up-down space relative to the second mounting sleeve 02, the plug body 1 and the socket body 2 can be connected without precise alignment, so as to realize quick connection; specifically, when the second check ring 023 is mounted on the second sleeve rod 022, a corresponding jig can be used to expand the second sleeve rod 022 to eliminate the gap between the second sleeve rod 022 and the second check ring 023, so as to realize radial pre-tightening.
[0073] Reference Figure 1 As shown, in the embodiment, the plug body 1 is provided with a plug guide column 13, and the socket body 2 is provided with a socket guide hole 23 matched with the plug guide column 13, so as to guide and position the plug-in connection of the plug body 1 and the socket body 2, and make it easy to plug in and pull out.
[0074] Reference Figure 9 As shown, the plug signal terminal group 3 comprises a first plug signal terminal 31 and a second plug signal terminal 32, the guide 5 is provided with a first signal hole 51 and a second signal hole 52, the socket signal terminal group 4 comprises a first socket signal terminal 41 and a second socket signal terminal 42, the front end of the first plug signal terminal 31 penetrates through the first signal hole 51 and is plugged with the first socket signal terminal 41, and the front end of the second plug signal terminal 32 penetrates through the second signal hole 52 and is plugged with the second socket signal terminal 42; the first signal hole 51 and the second signal hole 52 are arranged to guide the plug-in connection of the front ends of the first plug signal terminal 31 and the second plug signal terminal 32, so as to smoothly realize the plug-in connection of the first signal terminal and the second signal terminal, and reduce the position degree of the plug-in connection of the signal terminal; in actual application, the first signal terminal and / or the second signal terminal can be selected according to the model and use demand of the used energy storage box, so as to be compatible with different use occasions.
[0075] Reference Figure 2 , 9As shown, the mounting cavity 111 is provided with a signal guide hole 1111, and the guide piece 5 is provided with a signal guide column 53 matched with the signal guide hole 1111. Figure 10 As shown, the mounting cavity 111 is provided with a clamping groove 1112, and the guide piece 5 is provided with an elastic clamping jaw 54 clamped in the clamping groove 1112.
[0076] As shown, Figure 4 , 6 As shown, the inner side wall of the grounding cavity 114 is provided with a foolproof groove 1141, and the third mounting cylinder 213 is provided with a foolproof block 2131 matched with the foolproof groove 1141, and the first mounting cylinder 211, the second mounting cylinder 212 and the third mounting cylinder 213 are respectively inserted with the first positive and negative cavity 112, the second positive and negative cavity 113 and the grounding cavity 114; the male and female end connecting portions of the first positive and negative terminals, the second positive and negative terminals and the grounding terminals are respectively shielded by the first positive and negative cavity 112, the second positive and negative cavity 113 and the grounding cavity 114, so that each terminal is in an independent containing space, preventing mutual interference between the terminals and improving the structural stability; the foolproof groove 1141 and the foolproof block 2131 are arranged to prevent the plug body 1 from being misinserted with the socket body 2, and improve the insertion accuracy.
[0077] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as above, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the present application, and any simple modification, equivalent change and modification of the above embodiment within the scope of the present application are all within the scope of the present application.
Claims
1. An integrated energy storage connector with low voltage auxiliary function, characterized by, The utility model provides a plug and socket connector, which comprises a plug body (1), a socket body (2) connected with the plug body (1), the plug body (1) is provided with a plug signal terminal group (3), the socket body (2) is provided with a socket signal terminal group (4), and a guide piece (5) is arranged on the side of the plug body (1) close to the socket body (2); The plug body (1) is provided with a containing portion (11), the containing portion (11) is provided with a mounting cavity (111), the guide piece (5) is mounted in the mounting cavity (111), and the plug signal terminal group (3) extends into the mounting cavity (111) through the guide piece (5); When the plug body (1) is connected with the socket body (2), the plug signal terminal group (3) is connected with the socket signal terminal group (4).
2. The integrated energy storage connector with low voltage auxiliary function of claim 1, wherein, The plug body (1) is provided with a plug mounting portion (12) connected with the containing portion (11), the plug signal terminal group (3) extends into the mounting cavity (111) through the plug mounting portion (12) and the guide piece (5); The socket body (2) is provided with a socket mounting portion (21) and a connecting portion (22) connected with the socket mounting portion (21), and the socket signal terminal group (4) is arranged in the socket mounting portion (21) and the connecting portion (22); When the plug body (1) is connected with the socket body (2), the connecting portion (22) is inserted into the mounting cavity (111).
3. The integrated energy storage connector with low voltage auxiliary function of claim 2, wherein, The containing portion (11) is provided with a first positive and negative cavity (112) and a second positive and negative cavity (113), a first group of plug positive and negative terminals (6) and a second group of plug positive and negative terminals (7) are arranged in the first positive and negative cavity (112) and the second positive and negative cavity (113) respectively, and the socket mounting portion (21) is further provided with a first group of socket positive and negative terminals (8) and a second group of socket positive and negative terminals (9); The first group of plug positive and negative terminals (6) is connected with the first group of socket positive and negative terminals (8), and the second group of plug positive and negative terminals (7) is connected with the second group of socket positive and negative terminals (9).
4. The integrated energy storage connector with low voltage auxiliary function of claim 3, wherein, The containing portion (11) is provided with a grounding cavity (114), a grounding plug terminal group (100) is arranged in the grounding cavity (114), the socket mounting portion (21) is further provided with a grounding socket terminal group (200), and the grounding plug terminal group (100) is connected with the grounding socket terminal group (200).
5. The integrated energy storage connector with low voltage auxiliary function of claim 4, wherein, The socket mounting portion (21) is provided with a first mounting cylinder (211), a second mounting cylinder (212) and a third mounting cylinder (213), the first group of socket positive and negative terminals (8), the second group of socket positive and negative terminals (9) and the grounding socket terminal group (200) are arranged in the first mounting cylinder (211), the second mounting cylinder (212) and the third mounting cylinder (213) respectively; The socket mounting portion (21) is provided with a containing cylinder (214), the connecting portion (22), the first mounting cylinder (211), the second mounting cylinder (212) and the third mounting cylinder (213) are arranged in the containing cylinder (214), the containing portion (11) is provided with a sealing ring (115), and the containing portion (11) and the sealing ring (115) are inserted into the containing cylinder (214).
6. The integrated energy storage connector with low voltage auxiliary function of claim 1, wherein, The plug body (1) is provided with a first mounting sleeve (01); the plug body (1) is provided with a first through hole (101), the first mounting sleeve (01) comprises a first head (011) and a first sleeve rod (012) connected with the first head (011), one end of the first sleeve rod (012) is provided with a first check ring (013) after penetrating out of the first through hole (101), the outer diameter of the first sleeve rod (012) is smaller than the diameter of the first through hole (101), so that a first horizontal movement gap is left between the first sleeve rod (012) and the first through hole (101), the distance between the first check ring (013) and the first head (011) is greater than the depth of the first through hole (101), so that a first up-down movement gap is left between the first mounting sleeve (01) and the plug body (1).
7. The integrated energy storage connector with low voltage auxiliary function of claim 6, wherein, The socket body (2) is provided with a second mounting sleeve (02); the socket body (2) is provided with a second through hole (201), the second mounting sleeve (02) comprises a second head (021) and a second sleeve rod (022) connected with the second head (021), one end of the second sleeve rod (022) is provided with a second check ring (023) after penetrating out of the second through hole (201), the outer diameter of the second sleeve rod (022) is smaller than the diameter of the second through hole (201), so that a second horizontal movement gap is left between the second sleeve rod (022) and the second through hole (201), the distance between the second check ring (023) and the second head (021) is greater than the depth of the second through hole (201), so that a second up-down movement gap is left between the second mounting sleeve (02) and the socket body (2).
8. The integrated energy storage connector with low voltage auxiliary function of claim 1, wherein, The plug body (1) is provided with a plug guide column (13), and the socket body (2) is provided with a socket guide hole (23) matched with the plug guide column (13); The plug signal terminal group (3) comprises a first plug signal terminal (31) and a second plug signal terminal (32), the guide piece (5) is provided with a first signal hole (51) and a second signal hole (52), the socket signal terminal group (4) comprises a first socket signal terminal (41) and a second socket signal terminal (42), the front end of the first plug signal terminal (31) is inserted into the first socket signal terminal (41) after penetrating through the first signal hole (51), and the front end of the second plug signal terminal (32) is inserted into the second socket signal terminal (42) after penetrating through the second signal hole (52).
9. The integrated energy storage connector with low voltage auxiliary function of claim 2, wherein, The mounting cavity (111) is provided with a signal guide hole (1111), the guide piece (5) is provided with a signal guide column (53) matched with the signal guide hole (1111), the mounting cavity (111) is provided with a clamping groove (1112), and the guide piece (5) is provided with an elastic clamping jaw (54), the elastic clamping jaw (54) is clamped in the clamping groove (1112).
10. The integrated energy storage connector with low voltage auxiliary function of claim 5, wherein, The inner side wall of the grounding cavity (114) is provided with an anti-stupid slot (1141), the third mounting cylinder (213) is provided with an anti-stupid block (2131) matched with the anti-stupid slot (1141), and the first mounting cylinder (211), the second mounting cylinder (212) and the third mounting cylinder (213) are respectively inserted with the first positive and negative cavity (112), the second positive and negative cavity (113) and the grounding cavity (114).