Quick waterproof connector and electric connection assembly

By designing a quick-connect waterproof connector, convenient disconnection and secure connection of electrical wires are achieved, solving the problems of complex and unstable disconnection of electrical wires in existing technologies, and improving the reliability and safety of electrical systems.

CN224021200UActive Publication Date: 2026-03-20KEGAO INTELLIGENT GARDEN TECHNOLOGY (GUANGDONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-20

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Abstract

The utility model relates to a rapid waterproof connector and an electric connection assembly, and belongs to the field of wiring devices. A rapid waterproof connector comprises a connector housing which is provided with a first channel, a second channel and a third channel; the deconcentrator is arranged on the connector shell, and the deconcentrator is provided with a first separation channel and a second separation channel; and a wiring assembly, wherein a part of the wiring assembly can extend to the first separation channel and the second separation channel. According to the rapid waterproof connector disclosed by the invention, the connector shell, the deconcentrator and the wiring assembly are matched with one another, so that efficient line management is realized. All links from access, separation to connection of the lines are in close cooperation, so that the lines can be orderly arranged and connected in the connector. The efficient line management mode not only improves the installation and maintenance convenience of the connector, but also improves the reliability of the whole electrical system.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of wiring device, especially quick waterproof connector and electric connection assembly. BACKGROUND

[0002] In today's electrical application scenarios, from industrial production workshop to daily life, various electrical equipment is widely popular, and the performance and use convenience of the electric connection wire as the key component for connecting power supply and equipment and realizing power transmission are crucial. However, the existing electric connection wire has serious deficiencies in the tapping link.

[0003] Under normal circumstances, the tapping operation of the electric connection wire is not simple and direct. The traditional tapping mode often needs professional personnel to use complex tools, and a lot of time and energy is consumed to complete. For ordinary users, it is difficult to tap the electric connection wire by themselves. In the tapping process, due to the lack of simple and effective tapping device and method, the user needs to frequently peel off the insulating layer and connect the wire, and slight operation error can easily cause the wire connection to be not firm.

[0004] Such unstable connection is extremely likely to cause the resistance to increase, and then cause local overheating. Once the temperature is too high, the insulating material will accelerate aging or even be burned out, which undoubtedly greatly increases the risk of short circuit. Once the short circuit occurs, not only the electrical equipment cannot operate normally, but also the production and life order is affected, and dangerous accidents such as fire are more likely to occur, which seriously threatens the safety of people's life and property.

[0005] At present, people's requirements for electrical safety and convenience are increasing, and the problem of inconvenient tapping of electric connection wire and easy occurrence of dangerous accidents needs to be solved to ensure the stable operation of the electrical system and the safety of the user. INVENTION CONTENTS

[0006] Therefore, it is necessary to provide a quick waterproof connector and an electric connection assembly for the problem of inconvenient tapping of the electric connection wire.

[0007] A quick waterproof connector comprises:

[0008] A connector shell is provided with a first channel, a second channel and a third channel, the first channel, the second channel and the third channel are respectively provided with a first opening, a second opening and a third opening, and the first channel, the second channel and the third channel intersect;

[0009] A line distributor is arranged on the connector shell and located at the intersection of the first channel, the second channel and the third channel, and the line distributor is provided with a first separation channel and a second separation channel, and the first separation channel and the second separation channel are adjacent.

[0010] A wiring assembly is arranged on the connector housing and part of the wiring assembly can extend to the first and second separate channels.

[0011] The present application discloses a quick waterproof connector, the connector housing is provided with a first channel, a second channel and a third channel, and a first opening, a second opening and a third opening are respectively arranged. This design provides convenience for the access and arrangement of the line. A line distributor is arranged at the intersection of the first channel, the second channel and the third channel, and is provided with a first separate channel and a second separate channel. Adjacent separate channels can accurately separate the lines entering the intersection. When the lines converge from different channels to the intersection, the line distributor can guide them to the corresponding separate channels respectively, ensuring that the lines do not mix or short circuit with each other. By separating the lines in different channels, a waterproof sealing structure can be arranged in the separate channels. A wiring assembly is arranged on the connector housing and part of the wiring assembly can extend to the first and second separate channels. This design makes the line connection more convenient. After the lines are separated by the line distributor, the wiring assembly can be directly connected with the lines in the separate channels without complex wiring and adjustment. The connector housing, the line distributor and the wiring assembly cooperate with each other to realize efficient line management. From the access, separation to connection of the lines, each link closely cooperates, so that the lines can be arranged and connected in order inside the connector. This efficient line management method not only improves the installation and maintenance convenience of the connector, but also reduces the risk of failure caused by line confusion, and improves the reliability of the entire electrical system.

[0012] In one embodiment, the connector housing includes a housing body and a nut, the housing body is provided with the first channel, the second channel and the third channel, the nut is provided with a through hole, and the number of nuts is three. The three nuts are arranged on the housing body and located at the first opening, the second opening and the third opening respectively. The nuts are arranged at the first opening, the second opening and the third opening of the housing body, and the nuts are provided with through holes. The fastening action of the nuts can keep the lines stable after accessing the channels. During the operation of the equipment, vibration or shaking may occur. If the line connection is not stable, it is easy to cause poor contact or even fall off. After the nut is tightened, a certain pressure is applied to the line passing through the through hole, so that the line is tightly fixed at the opening to prevent the line from loosening due to vibration. For example, in a vehicle electrical system, the vehicle vibrates frequently during driving. At this time, the nut ensures the stable connection of the connector and the line, and ensures the normal operation of the vehicle-mounted equipment.

[0013] In one embodiment, the housing body is T-shaped. By the T-shaped housing body, its unique shape provides a clear and reasonable layout basis for the arrangement of the first channel, the second channel and the third channel. The T-shaped housing body can realize the arrangement of multiple channels in a limited space. The T-shaped structure enables the three channels to intersect in a reasonable manner. The first channel, the second channel and the third channel can realize efficient convergence and dispersion of lines at the intersection of the T-shaped housing body. This cross layout avoids mutual interference between channels, while also providing suitable space for the arrangement of the distribution box and the wiring assembly, ensuring the reasonableness and compactness of the internal structure of the connector.

[0014] In one embodiment, a plurality of sealing sleeves are further included, which are arranged on the connector housing and located inside the first opening, the second opening and the third opening respectively. By arranging a plurality of sealing sleeves inside the first opening, the second opening and the third opening respectively, a strict waterproof barrier is formed. When the connector is in a humid environment, such as an outdoor electrical equipment connection scene, water tries to enter the connector interior through the openings. At this time, the sealing sleeve can tightly fit the line and the opening edge, effectively preventing water penetration. Even in the case of water flow impact, the sealing sleeve can prevent water from entering the first channel, the second channel and the third channel due to its good flexibility and sealing performance, protect the internal wiring assembly and line connection point, avoid electrical faults such as short circuit and corrosion caused by water intrusion, and greatly improve the waterproof reliability of the connector. Since the sealing sleeve has a certain elasticity, it can adapt to lines of different diameters. When lines of different specifications pass through the first opening, the second opening and the third opening, the sealing sleeve can automatically adjust the fitting degree according to the thickness of the line, and always maintain good sealing effect.

[0015] In one of the embodiments, the shell body comprises a main shell and locking pieces, the main shell is provided with the first channel, the second channel and the third channel, the number of the locking pieces is multiple, the multiple locking pieces are divided into three groups, and the three groups of locking pieces are respectively arranged on the main shell and located at the first opening, the second opening and the third opening. Through the multiple locking pieces divided into three groups and arranged at the first opening, the second opening and the third opening of the main shell, when the line passes through the openings into the corresponding channels, the locking pieces can fasten the line. Since the locking pieces have a certain elasticity and adjustability, they can adapt to lines of different diameters and materials. For thinner signal lines, the locking pieces can deform by their own elasticity and tightly fit the surface of the line to provide sufficient friction to fix the line; for thicker power lines, multiple locking pieces can work together to clamp the line from different angles, ensuring that lines of any specification can be stably fixed at the opening, improving the compatibility and applicability of the connector to various lines.

[0016] In one of the embodiments, the first channel and the second channel form a wire passing channel, the third channel is communicated with the wire passing channel through a via, the number of the via is two, and the wiring assembly is adapted to the two vias. By forming a wire passing channel through the first channel and the second channel, a simpler wire routing option is provided for the line. The provision of two vias and the adaptation of the wiring assembly to the vias can optimize the electrical performance of the connector. The close fit of the wiring assembly and the via can provide good electrical connection, reduce contact resistance and improve current transmission efficiency. In high-power electrical equipment, this optimized electrical performance can ensure the stable operation of the equipment and reduce equipment failures caused by electrical connection problems. The adaptation of the wiring assembly to the two vias can achieve precise line connection. The wiring assembly can be accurately inserted into the via to reliably connect the line in the third channel with the line in the wire passing channel. This precise connection method reduces the probability of line connection errors and improves the installation quality of the connector.

[0017] In one of the embodiments, the line divider comprises a line divider body and a partition plate, the line divider body is arranged on the connector shell, the line divider body is adapted to the channel wall of the first channel and / or the second channel, and the partition plate is arranged on the line divider body to divide the line divider body into the first divided channel and the second divided channel. By arranging the line divider body on the connector shell and adapting it to the channel wall of the first channel and / or the second channel, the line divider can be accurately installed in the appropriate position. The partition plate is arranged on the line divider body to divide it into the first divided channel and the second divided channel, providing clear wire routing space for lines of different functions.

[0018] In one of the embodiments, the wire distributor further comprises a plurality of limiting blocks, which are arranged on the wire distributor body and located on the inner walls of the first and second separation channels respectively. By arranging the limiting blocks on the inner walls of the first and second separation channels respectively, the wires in the channels can be effectively limited. During the operation of the electrical equipment, vibration, shaking or external force pulling may occur, at which time the limiting blocks can block the displacement of the wires in the channels. The limiting blocks have certain elasticity and adjustability, which can adapt to wires of different diameters and materials. The limiting blocks can assist the wiring assembly to achieve more accurate wire connection. During wiring, the limiting blocks can fix the wires in the appropriate position, making it easier for the wiring assembly to interface with the wires.

[0019] In one of the embodiments, the wiring assembly comprises a plug body, a female terminal, a connecting wire, a mounting block and an electrical connection pin. The plug body is arranged on the connector housing and located in the third channel. The female terminal is arranged on the plug body and located in the plug body. The connecting wire is arranged on the plug body and electrically connected with the female terminal. The electrical connection pin is arranged on the mounting block, one end of which is inserted into the female terminal, and the other end of which extends to the first and second separation channels. By arranging the plug body in the third channel of the connector housing, a stable installation foundation is provided for the entire wiring assembly. The female terminal is arranged in the plug body, and the connecting wire is electrically connected with the female terminal. This structure ensures that the external wires are reliably electrically connected with the female terminal through the connecting wire. During the operation of the electrical equipment, the current and signal can be stably transmitted, avoiding power failure or signal interruption caused by unstable connection. One end of the electrical connection pin is inserted into the female terminal, and the other end extends to the first and second separation channels, realizing the connection of wires in different channels. The close cooperation between the electrical connection pin and the female terminal provides a low-resistance electrical connection path, reduces the contact resistance and reduces the power loss. At the same time, this close cooperation can withstand a certain external pulling force, preventing the electrical connection pin from separating from the female terminal during equipment vibration or movement, ensuring the stability of the wire connection and guaranteeing the normal operation of the electrical system. The connection mode of the connecting wire with the female terminal and the electrical connection pin helps to optimize the current transmission performance.

[0020] In one of the embodiments, the wiring assembly comprises a plug body, a connecting wire and an electric connecting pin, the plug body is arranged on the connector housing and located in the third channel, the electric connecting pin is arranged on the plug body and extends to the first and second separate channels, and the connecting wire is arranged on the connector housing and electrically connected with the electric connecting pin. By arranging the plug body in the third channel of the connector housing, a stable and reliable mounting position is provided for the wiring assembly. This mounting method enables the plug body to be closely combined with the connector housing, and can effectively resist the influence of external forces such as vibration and shaking during the operation of the equipment, so as to avoid the unstable connection of the line caused by the loosening of the plug body. The electric connecting pin is arranged on the plug body and extends to the first and second separate channels, thereby directly establishing a connection bridge between the lines in different channels and the external line through the connecting wire. The stable connection of the electric connecting pin and the plug body ensures that the electric connecting pin will not easily fall off from the plug body even if it is pulled by a certain external force during long-term use, thereby ensuring that the electrical connection between the lines in different channels and the connecting wire is always stable and reliable, and avoiding the problems of power failure or signal interruption.

[0021] The second aspect of the present application discloses an electrical connection assembly, comprising:

[0022] The above-mentioned quick waterproof connector;

[0023] A power line, the power line penetrates the first and second channels, and parts of the power line are located at the first and second separate channels respectively, the part of the wiring assembly extending to the first and second separate channels is inserted into the power line, and the wiring assembly is electrically connected with the power line.

[0024] The second aspect of the present application discloses an electrical connection assembly, which further enhances the waterproof effect through the structural design of the line splitter. When the power line penetrates the first and second channels and is connected with the wiring assembly at the first and second separate channels, the limiting block in the line splitter can press the sealing sleeve more tightly on the power line and the channel wall, forming multiple waterproof lines. The part of the wiring assembly extending to the first and second separate channels is inserted into the power line and electrically connected, which effectively reduces the risk of electrical connection failure caused by moisture intrusion, and ensures the stable operation of the electrical connection assembly in harsh environments. When the electrical connection assembly fails, its structural design facilitates maintenance and troubleshooting. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a perspective view of the first embodiment of the quick waterproof connector;

[0026] Figure 2 It is an exploded view of the first embodiment of the quick waterproof connector;

[0027] Figure 3 exploded view of the first embodiment of the quick waterproof connector;

[0028] Figure 4 first cross-sectional view of the first embodiment of the quick waterproof connector;

[0029] Figure 5 second cross-sectional view of the first embodiment of the quick waterproof connector;

[0030] Figure 6 third cross-sectional view of the first embodiment of the quick waterproof connector;

[0031] Figure 7 perspective view of the connector housing of the first embodiment of the quick waterproof connector;

[0032] Figure 8 exploded view of the connector housing of the first embodiment of the quick waterproof connector;

[0033] Figure 9 cross-sectional view of the connector housing of the first embodiment of the quick waterproof connector;

[0034] Figure 10 perspective view of the wire distributor of the first embodiment of the quick waterproof connector;

[0035] Figure 11 perspective view of the wiring assembly of the first embodiment of the quick waterproof connector;

[0036] Figure 12 cross-sectional view of the wiring assembly of the first embodiment of the quick waterproof connector;

[0037] Figure 13 exploded view of the wiring assembly of the first embodiment of the quick waterproof connector;

[0038] Figure 14 perspective view of the second embodiment of the quick waterproof connector;

[0039] Figure 15 exploded view of the second embodiment of the quick waterproof connector;

[0040] Figure 16 cross-sectional view of the second embodiment of the quick waterproof connector.

[0041] wherein the correspondence between the reference signs and the component names is as follows:

[0042] 100 quick waterproof connector;

[0043] 1 connector housing, 11 housing body, 111 main housing, 112 locking piece, 12 nut, 13 sealing sleeve, 101 first channel, 102 second channel, 103 third channel, 104 first opening, 105 second opening, 106 third opening, 107 via, 108 through hole;

[0044] 2 wire splitter, 21 wire splitter body, 22 partition, 23 limiting block, 201 first separation channel, 202 second separation channel;

[0045] 3 wiring assembly, 31 plug body, 32 female terminal, 33 connecting wire, 34 mounting block, 35 electrical connection needle;

[0046] 200 power cord. DETAILED DESCRIPTION

[0047] In order to enable the above-mentioned objects, features and advantages of the present application to be more clearly understood, the following further describes the present application with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0048] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the scope of protection of the present application is not limited by the specific embodiments disclosed below.

[0049] Some embodiments of the quick waterproof connector and the electrical connection assembly are described below with reference to the accompanying drawings.

[0050] Embodiment 1

[0051] As shown in Figures 1 to 13 The present embodiment discloses a quick waterproof connector, comprising: a connector housing 1, the connector housing 1 is provided with a first channel 101, a second channel 102 and a third channel 103, the first channel 101, the second channel 102 and the third channel 103 are respectively provided with a first opening 104, a second opening 105 and a third opening 106, and the first channel 101, the second channel 102 and the third channel 103 intersect; a wire splitter 2, the wire splitter 2 is arranged on the connector housing 1 and located at the intersection of the first channel 101, the second channel 102 and the third channel 103, the wire splitter 2 is provided with a first separation channel 201 and a second separation channel 202, and the first separation channel 201 and the second separation channel 202 are adjacent; a wiring assembly 3, the wiring assembly 3 is arranged on the connector housing 1 and part of the wiring assembly 3 can extend to the first separation channel 201 and the second separation channel 202.

[0052] The disclosure discloses a kind of waterproof connector fast, connector housing 1 The first passage 101, second passage 102 and third passage 103 are provided, and first opening 104, second opening 105 and third opening 106 are respectively opened, this design provides the convenience for the access and arrangement of line.The distributor 2 is arranged at the intersection of the first passage 101, second passage 102 and third passage 103, and is provided with first separation channel 201 And second separation channel 202, adjacent separation channel can accurately separate the line entering intersection.When line converges to intersection from different passages, distributor 2 It can be guided to corresponding separation channel respectively, ensure that line will not be confused or short-circuit each other.By separating line in different passages, waterproof sealing structure can be provided in separation channel.Wiring assembly 3 It is arranged on connector housing 1 And part can extend to first separation channel 201 And second separation channel 202, this design makes line connection more convenient.When line is separated by distributor 2, wiring assembly 3 It can be directly connected with the line in separation channel, without complex wiring and adjustment.Connector housing 1, distributor 2 And wiring assembly 3 It cooperates with each other, realizes efficient line management.From the access, separation to connection of line, each link closely cooperates, so that line can be arranged and connected in order inside connector.This efficient line management mode not only improves the installation and maintenance convenience of connector, but also reduces the risk of failure caused by line confusion, improves the reliability of entire electrical system.

[0053] As Figure 7 , Figure 8 And Figure 9 Indicated, in addition to the features of the above embodiments, the present embodiment is further limited: connector housing 1 Including housing body 11 And nut 12, housing body 11 It is provided with first passage 101, second passage 102 and third passage 103, nut 12 It is provided with through hole 108, the number of nut 12 It is three, three nuts 12 It is arranged on housing body 11 And respectively located at first opening 104, second opening 105 and third opening 106 place.Through the first opening 104, second opening 105 and third opening 106 of nut 12 It is arranged on housing body 11, and nut 12 It is provided with through hole 201.Through the fastening effect of nut 12 Line can be kept stable after accessing channel.In the process of equipment operation, vibration or shaking may occur, if line connection is not stable, it is easy to cause poor contact even fall off.Nut 12 After tightening, a certain pressure is applied to the line passing through through hole 201, so that the line is tightly fixed at the opening, to prevent the line from loosening due to vibration.For example, in vehicle electrical system, vibration is frequent during vehicle driving, at this time nut 12 Ensure the stable connection of connector and line, ensure the normal operation of vehicle-mounted equipment.

[0054] As Figure 7 ,Figure 8 and Figure 9 As shown in FIG. 11, in addition to the features of the above embodiments, this embodiment is further defined as: the shell body 11 is T-shaped. By virtue of the T-shaped shell body 11, its unique shape provides a clear and reasonable layout basis for the arrangement of the first channel 101, the second channel 102 and the third channel 103. The T-shaped shell body 11 can realize the arrangement of multiple channels in a limited space. The T-shaped structure enables the three channels to intersect in a reasonable manner. The first channel 101, the second channel 102 and the third channel 103 can realize efficient convergence and dispersion of lines at the intersection of the T-shaped structure. This cross layout avoids mutual interference between channels, while also providing suitable space for the arrangement of the distribution unit 2 and the wiring assembly 3, ensuring the reasonableness and compactness of the internal structure of the connector.

[0055] As shown in FIG. 12, in addition to the features of the above embodiments, this embodiment is further defined as: the shell body 11 is T-shaped. By virtue of the T-shaped shell body 11, its unique shape provides a clear and reasonable layout basis for the arrangement of the first channel 101, the second channel 102 and the third channel 103. The T-shaped shell body 11 can realize the arrangement of multiple channels in a limited space. The T-shaped structure enables the three channels to intersect in a reasonable manner. The first channel 101, the second channel 102 and the third channel 103 can realize efficient convergence and dispersion of lines at the intersection of the T-shaped structure. This cross layout avoids mutual interference between channels, while also providing suitable space for the arrangement of the distribution unit 2 and the wiring assembly 3, ensuring the reasonableness and compactness of the internal structure of the connector. Figure 7 , Figure 8 and Figure 9 As shown in FIG. 11, in addition to the features of the above embodiments, this embodiment is further defined as: the shell body 11 is T-shaped. By virtue of the T-shaped shell body 11, its unique shape provides a clear and reasonable layout basis for the arrangement of the first channel 101, the second channel 102 and the third channel 103. The T-shaped shell body 11 can realize the arrangement of multiple channels in a limited space. The T-shaped structure enables the three channels to intersect in a reasonable manner. The first channel 101, the second channel 102 and the third channel 103 can realize efficient convergence and dispersion of lines at the intersection of the T-shaped structure. This cross layout avoids mutual interference between channels, while also providing suitable space for the arrangement of the distribution unit 2 and the wiring assembly 3, ensuring the reasonableness and compactness of the internal structure of the connector.

[0056] As shown in FIG. 12, in addition to the features of the above embodiments, this embodiment is further defined as: the shell body 11 is T-shaped. By virtue of the T-shaped shell body 11, its unique shape provides a clear and reasonable layout basis for the arrangement of the first channel 101, the second channel 102 and the third channel 103. The T-shaped shell body 11 can realize the arrangement of multiple channels in a limited space. The T-shaped structure enables the three channels to intersect in a reasonable manner. The first channel 101, the second channel 102 and the third channel 103 can realize efficient convergence and dispersion of lines at the intersection of the T-shaped structure. This cross layout avoids mutual interference between channels, while also providing suitable space for the arrangement of the distribution unit 2 and the wiring assembly 3, ensuring the reasonableness and compactness of the internal structure of the connector. Figure 8As shown, in addition to the features of the above embodiments, this embodiment is further limited in that: the shell body 11 includes a main shell 111 and locking pieces 112, the main shell 111 is provided with a first passage 101, a second passage 102 and a third passage 103, the number of locking pieces 112 is multiple, the multiple locking pieces 112 are divided into three groups, and the three groups of locking pieces 112 are respectively arranged on the main shell 111 and respectively located at the first opening 104, the second opening 105 and the third opening 106. By dividing the multiple locking pieces 112 into three groups and arranging them at the first opening 104, the second opening 105 and the third opening 106 of the main shell 111, the locking pieces 112 can tighten the wire when the wire passes through these openings into the corresponding passages. Since the locking pieces 112 have a certain elasticity and adjustability, they can adapt to wires of different diameters and materials. For thinner signal wires, the locking pieces 112 can deform elastically to tightly fit the wire surface and provide enough friction to fix the wire; for thicker power wires, multiple locking pieces 112 can work together to clamp the wire from different angles, ensuring that wires of any specification can be securely fixed at the opening, improving the compatibility and applicability of the connector to various wires.

[0057] As shown in Figure 8 and Figure 9 shown, in addition to the features of the above embodiments, this embodiment is further limited in that: the first passage 101 and the second passage 102 form a wire passage, the third passage 103 is in communication with the wire passage through a via hole 107, the number of via holes 107 is two, and the wiring assembly 3 is adapted to the two via holes 107. By forming a wire passage through the first passage 101 and the second passage 102, a simpler wiring option is provided for the wire. The provision of two via holes 107 and the adaptation of the wiring assembly 3 to the via holes 107 can optimize the electrical performance of the connector. The close fit of the wiring assembly 3 to the via holes 107 can provide good electrical connection, reduce contact resistance and improve current transmission efficiency. In high-power electrical equipment, this optimized electrical performance can ensure stable operation of the equipment and reduce equipment failures caused by electrical connection problems. The adaptation of the wiring assembly 3 to the two via holes 107 enables precise wire connection. The wiring assembly 3 can be accurately inserted into the via hole 107 to reliably connect the wire in the third passage 103 to the wire in the wire passage. This precise connection method reduces the probability of wire connection errors and improves the installation quality of the connector.

[0058] As shown in Figure 10As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the wire distributor 2 comprises a wire distributor body 21 and a partition plate 22, the wire distributor body 21 is arranged on the connector housing 1 and is adapted to the channel wall of the first channel 101 and / or the second channel 102, the partition plate 22 is arranged on the wire distributor body 21 and separates the wire distributor body 21 into a first separated channel 201 and a second separated channel 202. By arranging the wire distributor body 21 on the connector housing 1 and adapting it to the channel wall of the first channel 101 and / or the second channel 102, the wire distributor can be accurately installed in the appropriate position. The partition plate 22 is arranged on the wire distributor body 21 to separate it into the first separated channel 201 and the second separated channel 202, providing clear wiring space for lines with different functions.

[0059] As shown, Figure 10 As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the wire distributor 2 further comprises a plurality of limiting blocks 23, the plurality of limiting blocks 23 are arranged on the wire distributor body 21 and are respectively located on the inner walls of the first separated channel 201 and the second separated channel 202. By arranging the plurality of limiting blocks 23 on the inner walls of the first separated channel 201 and the second separated channel 202, the lines in the channels can be effectively limited. During the operation of the electrical equipment, vibration, shaking or external force pulling may occur, at which time the limiting blocks 23 can block the displacement of the lines in the channels. The limiting blocks 23 have a certain elasticity and adjustability, which can adapt to lines with different diameters and materials. The limiting blocks 23 can assist the wiring assembly 3 to achieve more accurate line connection. During the wiring process, the limiting blocks 23 can fix the lines in the appropriate position, making it easier for the wiring assembly 3 to butt joint with the lines.

[0060] As shown, Figure 11 , Figure 12 and Figure 13As shown, in addition to the features of the above embodiments, this embodiment is further defined as: the wiring assembly 3 includes a plug body 31, a female terminal 32, a connecting wire 33, a mounting block 34, and an electrical connection pin 35, the plug body 31 is arranged on the connector housing 1 and located in the third passage 103, the female terminal 32 is arranged on the plug body 31 and located in the plug body 31, the connecting wire 33 is arranged on the plug body 31 and electrically connected with the female terminal 32, the electrical connection pin 35 is arranged on the mounting block 34, one end of the electrical connection pin 35 is inserted into the female terminal 32, and the other end of the electrical connection pin 35 extends to the first and second partition passages 201 and 202. By arranging the plug body 31 in the third passage 103 of the connector housing 1, a stable installation foundation is provided for the entire wiring assembly 3. The female terminal 32 is arranged in the plug body 31, and the connecting wire 33 is electrically connected with the female terminal 32, which ensures that the external line is reliably electrically connected with the female terminal 32 through the connecting wire 33. During the operation of the electrical equipment, the current and signal can be stably transmitted, and the problem of power failure or signal interruption caused by unstable connection can be avoided. One end of the electrical connection pin 35 is inserted into the female terminal 32, and the other end extends to the first and second partition passages 201 and 202, realizing the connection of lines in different passages. The close cooperation of the electrical connection pin 35 and the female terminal 32 provides a low-resistance electrical connection path, reduces the contact resistance, and reduces the power loss. At the same time, this close cooperation can withstand a certain external pulling force, preventing the electrical connection pin 35 from separating from the female terminal 32 during equipment vibration or movement, ensuring the stability of the line connection and guaranteeing the normal operation of the electrical system. The connection mode of the connecting wire 33 with the female terminal 32 and the electrical connection pin 35 helps to optimize the current transmission performance.

[0061] Embodiment 2

[0062] As Figure 14 , Figure 15 and Figure 16As shown, in addition to the features of the above embodiments, this embodiment further defines: the wiring assembly 3 includes a plug body 31, a connecting wire 33, and an electrical connecting pin 35. The plug body 31 is disposed on the connector housing 1 and located within the third channel 103. The electrical connecting pin 35 is disposed on the plug body 31 and extends to the first separating channel 201 and the second separating channel 202. The connecting wire 33 is disposed on the connector housing 1 and is electrically connected to the electrical connecting pin 35. By disposing of the plug body 31 within the third channel 103 of the connector housing 1, a stable and reliable installation position is provided for the wiring assembly 3. This installation method ensures that the plug body 31 is tightly integrated with the connector housing 1, effectively resisting the influence of external forces such as vibration and shaking during equipment operation, and avoiding unstable wiring connections due to loosening of the plug body 31. The electrical connecting pin 35, disposed on the plug body 31 and extending to the first separating channel 201 and the second separating channel 202, directly establishes a connection bridge between wiring in different channels and external wiring through the connecting wire 33. The secure connection between the electrical connector pin 35 and the plug body 31 ensures that even under certain external force during long-term use, the electrical connector pin 35 will not easily fall off the plug body 31, thereby ensuring that the electrical connection between the lines and the connecting wires 33 in different channels is always stable and reliable, avoiding problems such as power outages or signal interruptions.

[0063] Example 2

[0064] like Figures 1 to 14 As shown, this embodiment discloses an electrical connection component, including:

[0065] The aforementioned quick-release waterproof connector 100;

[0066] A power cord 200 passes through the first channel 101 and the second channel 102. A portion of the power cord 200 is located at the first partition channel 201 and the second partition channel 202, respectively. A portion of the wiring assembly 3 extending to the first partition channel 201 and the second partition channel 202 is inserted into the power cord 200. The wiring assembly 3 is electrically connected to the power cord 200.

[0067] The second aspect of the application discloses an electrical connection assembly, which further enhances the waterproof effect through the structural design of the distributor 2. When the power line 200 penetrates the first channel 101 and the second channel 202 and is connected with the wiring assembly 3 at the first partition channel 201 and the second partition channel 202, the limiting block 23 in the distributor 2 can press the sealing sleeve 13 more tightly on the power line 200 and the channel wall, forming multiple waterproof lines. The part of the wiring assembly 3 extending to the first partition channel 201 and the second partition channel 202 is inserted into the power line 200 and realizes electrical connection, effectively reducing the risk of electrical connection failure caused by moisture intrusion, and ensuring the stable operation of the electrical connection assembly in harsh environments. When the electrical connection assembly fails, its structural design facilitates maintenance and troubleshooting.

[0068] The technical features of the above-described embodiments can be combined in any manner. To make the description concise, all possible combinations of the technical features in the above-described embodiments are not described, but as long as the combinations of the technical features do not contradict, they should be considered within the scope of the present disclosure.

[0069] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be pointed out that for ordinary skilled persons in the art, some modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A quick-connect waterproof connector, characterized in that, The aforementioned quick-connect waterproof connector includes: The connector housing (1) is provided with a first channel (101), a second channel (102) and a third channel (103). The first channel (101), the second channel (102) and the third channel (103) are respectively provided with a first opening (104), a second opening (105) and a third opening (106). The first channel (101), the second channel (102) and the third channel (103) intersect. Splitter (2), the splitter (2) is disposed on the connector housing (1) and located at the intersection of the first channel (101), the second channel (102) and the third channel (103), the splitter (2) is provided with a first partition channel (201) and a second partition channel (202), the first partition channel (201) and the second partition channel (202) are adjacent to each other; Wiring assembly (3), which is disposed on the connector housing (1) and a portion thereof is capable of extending to the first partition channel (201) and the second partition channel (202).

2. The quick-connect waterproof connector according to claim 1, characterized in that, The connector housing (1) includes a housing body (11) and a nut (12). The housing body (11) is provided with a first channel (101), a second channel (102) and a third channel (103). The nut (12) is provided with a through hole (108). There are three nuts (12). The three nuts (12) are disposed on the housing body (11) and are respectively located at the first opening (104), the second opening (105) and the third opening (106).

3. The quick-connect waterproof connector according to claim 2, characterized in that, The shell body (11) is T-shaped; And / or may also include a plurality of sealing sleeves (13), wherein the plurality of sealing sleeves (13) are disposed on the connector housing (1) and are respectively located inside the first opening (104), the second opening (105) and the third opening (106).

4. The quick-connect waterproof connector according to claim 2, characterized in that, The housing body (11) includes a main housing (111) and locking pieces (112). The main housing (111) is provided with a first channel (101), a second channel (102) and a third channel (103). There are multiple locking pieces (112), which are divided into three groups. The three groups of locking pieces (112) are respectively disposed on the main housing (111) and located at the first opening (104), the second opening (105) and the third opening (106).

5. The quick-connect waterproof connector according to claim 2, characterized in that, The first channel (101) and the second channel (102) are connected to form a wire passage. The third channel (103) is connected to the wire passage through a via (107). There are two vias (107). The wiring assembly (3) is adapted to the two vias (107).

6. The quick-connect waterproof connector according to claim 1, characterized in that, The splitter (2) includes a splitter body (21) and a partition (22). The splitter body (21) is disposed on the connector housing (1). The splitter body (21) is adapted to the channel wall of the first channel (101) and / or the second channel (102). The partition (22) is disposed on the splitter body (21). The partition (22) divides the splitter body (21) into the first partition channel (201) and the second partition channel (202).

7. The quick-connect waterproof connector according to claim 6, characterized in that, The splitter (2) also includes a limiting block (23), and there are multiple limiting blocks (23). The multiple limiting blocks (23) are disposed on the splitter body (21) and are respectively located on the inner walls of the first dividing channel (201) and the second dividing channel (202).

8. The quick-connect waterproof connector according to claim 1, characterized in that, The wiring assembly (3) includes a plug body (31), a female terminal (32), a connecting wire (33), a mounting block (34), and an electrical connector (35). The plug body (31) is disposed on the connector housing (1) and located in the third channel (103). The female terminal (32) is disposed on the plug body (31) and located in the plug body (31). The connecting wire (33) is disposed on the plug body (31) and electrically connected to the female terminal (32). The electrical connector (35) is disposed on the mounting block (34). One end of the electrical connector (35) is inserted into the female terminal (32), and the other end of the electrical connector (35) extends to the first separation channel (201) and the second separation channel (202).

9. The quick-connect waterproof connector according to claim 1, characterized in that, The wiring assembly (3) includes a plug body (31), a connecting wire (33), and an electrical connecting pin (35). The plug body (31) is disposed on the connector housing (1) and located in the third channel (103). The electrical connecting pin (35) is disposed on the plug body (31) and extends to the first separation channel (201) and the second separation channel (202). The connecting wire (33) is disposed on the connector housing (1) and electrically connected to the electrical connecting pin (35).

10. An electrical connection assembly, characterized in that, The electrical connection component includes: The quick-connect waterproof connector (100) according to any one of claims 1 to 9; A power cord (200) passes through the first channel (101) and the second channel (102), with portions of the power cord (200) located at the first partition channel (201) and the second partition channel (202), and the portion of the wiring assembly (3) extending to the first partition channel (201) and the second partition channel (202) is inserted into the power cord (200), and the wiring assembly (3) is electrically connected to the power cord (200).