Auxiliary device of connector

By designing connector auxiliary devices, the lever principle of pushing parts and pushing parts is used to solve the offset and manpower requirements when connecting and disconnecting the connectors of medium or large equipment, and the correct connection and separation of single-person-operated equipment and connectors is achieved.

CN120280735APending Publication Date: 2025-07-08GUANGZHOU HANGXIN AVIATION TECH CO LTD
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Patent Information

Application Number
CN202510298582.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

When the connection end of a medium or large device is connected and separated from the connector, the device or connector needs to move along the plug-and-release direction of the connector and cannot be offset, otherwise it will be easily damaged and the plug-and-release force is large, which usually requires cooperation from multiple people, resulting in inconvenience in connection or separation.

Method used

An auxiliary device for connectors is designed, including a base, pushing member, pushing member and operating member. Through the design of pushing member and pushing member, the correct connection and separation between the equipment and the connector is achieved, and the leverage principle is used to reduce manpower demand.

Benefits of technology

It realizes easy connection and separation between the equipment and the connector by a single person, avoids deviation, saves manpower, and is suitable for a variety of scenarios and is convenient to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an auxiliary device of a connector, and relates to the technical field of connectors. The auxiliary device comprises a base, a pushing part, a pushing part and an operating part. The base is provided with an installation position used for placing equipment and a fixing position used for installing a connector. A first shaft and a second shaft are arranged on the base; the pushing piece comprises a pushing part; the pushing piece is movably arranged on the base along the plugging direction of the connector, the operating piece comprises a rotating part, a thrust part and a force application part, and the rotating part is connected with the thrust part and the force application part. As the pushing piece is movably arranged on the base along the plugging direction of the connector, and the pushing part is movably arranged on the base along the plugging direction of the connector, the moving direction of the equipment can be guided through the pushing piece and the pushing part, so that the equipment is close to or far away from the connector along the plugging direction of the connector; therefore, deviation of equipment in the connection and separation process is reduced, and correct connection and separation of the equipment and the connector are guaranteed. The length of the force application part is larger than that of the thrust part, and manpower is saved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of connectors, and particularly relates to an auxiliary device for a connector. Background Art

[0002] When the connection end of a medium-sized or large-sized device is connected to and separated from a connector, the device or the connector needs to move along the insertion and extraction direction of the connector without deviation, so as not to damage the connector or the connection end of the device. In addition, since the connector has a large number of pins, the force required for insertion and extraction is relatively large, and at least two people are required to exert all their strength to complete the connection and separation; and during the connection or separation process of the device and the connector, due to the non-uniform application directions of multiple people, it is easy to damage the connector or the connection end of the device. Summary of the Invention

[0003] The purpose of the present invention is to provide an auxiliary device for a connector, which can ensure the correct connection and separation of the device and the connector and save manpower.

[0004] The technical solution adopted to solve the above technical problems:

[0005] An embodiment of the present invention provides an auxiliary device for a connector, including:

[0006] A base, on which there are provided an installation position for placing a device and a fixing position for installing a connector; a first shaft and a second shaft are provided on the base, the first shaft is provided corresponding to the fixing position, and the second shaft is provided corresponding to the installation position;

[0007] A pushing member, including a pushing portion; the pushing portion is movably arranged on the base along the insertion and extraction direction of the connector, and the pushing portion is located between the installation position and the fixing position; the pushing portion is used to push the device located on the installation position to move in a direction away from the fixing position, so that the device and the connector are separated;

[0008] A driving member, the driving member is movably arranged on the base along the insertion and extraction direction of the connector, and the driving member is located on the side of the installation position facing away from the fixing position; the driving member is used to push the device located on the installation position to move towards the fixing position, so that the device and the connector are connected;

[0009] An operating member, including a rotating portion, a thrust portion and a force application portion, the rotating portion connects the thrust portion and the force application portion; the length of the force application portion is greater than the length of the thrust portion; the rotating portion is used to be sleeved outside the first shaft or the second shaft, and by applying force to the force application portion, the thrust portion drives the pushing portion or the driving member to move, so that the device and the connector are separated or connected.

[0010] An auxiliary device for a connector according to an embodiment of the present invention, the pushing member further includes a force-receiving portion connected to the pushing portion, the force-receiving portion being located on a side of the fixed position away from the mounting position; the thrust portion includes a first thrust portion, and the first thrust portion can act on the force-receiving portion to push the pushing portion to move, so as to separate the device and the connector; a force-receiving column is provided on a side of the force-receiving portion close to the first shaft, and the first thrust portion has an arc surface abutting against the force-receiving column.

[0011] An auxiliary device for a connector according to an embodiment of the present invention, the force-applying portion is strip-shaped, and the length of the force-applying portion is greater than or equal to twice the distance between the force-receiving column and the first shaft.

[0012] An auxiliary device for a connector according to an embodiment of the present invention, the force-receiving column and the first shaft are arranged adjacent to each other, and the axes of the force-receiving column and the first shaft are both arranged on the side surface of the base along the width direction of the auxiliary device.

[0013] An auxiliary device for a connector according to an embodiment of the present invention, the base includes a base and a side wall connected to each other, the mounting position is arranged on the base, and the fixed position is arranged on the side wall; the pushing portion is located on a side of the side wall close to the mounting position, and the force-receiving portion is located on a side of the side wall away from the mounting position; a window is provided on the side wall, and the pins of the connector pass through the window.

[0014] An auxiliary device for a connector according to an embodiment of the present invention, the pushing member further includes a connecting column, the connecting column connects the force-receiving portion and the thrust portion; a guiding through groove is provided on the base, the connecting column passes through the guiding through groove, and the guiding through groove extends along the plugging and unplugging direction of the connector; the auxiliary device further includes a first elastic member, the first elastic member is sleeved on the connecting column and is located between the side wall and the force-receiving portion.

[0015] An auxiliary device for a connector according to an embodiment of the present invention, a guide rail is provided on the base, the pushing member is slidably arranged on the guide rail, and the guide rail is arranged along the plugging and unplugging direction of the connector; a limiting wall is provided at one end of the guide rail close to the fixed position; the auxiliary device further includes a second elastic member, the second elastic member is sleeved outside the guide rail, and the second elastic member is located between the limiting wall and the pushing member.

[0016] An auxiliary device for a connector according to an embodiment of the present invention, the base includes a main body portion, an extension portion and at least two connecting members, the connecting members have a rotating end and a fastening end connected to each other; one of the main body portion and the extension portion is rotatably connected to the rotating end, and the other is provided with a buckle cooperating with the fastening end; the lengths of at least two of the connecting members are different.

[0017] An auxiliary device for a connector according to an embodiment of the present invention, the second shaft is disposed adjacent to the pushing member, and the axis of the second shaft is disposed along the height direction of the auxiliary device.

[0018] An auxiliary device for a connector according to an embodiment of the present invention, the thrust portion includes a second thrust portion; the second thrust portion has an abutting section and a connecting section connected to each other, and the abutting section and the connecting section are bent; the abutting section is used to abut the pushing member.

[0019] The beneficial effects of the present invention at least include:

[0020] The pushing member is located on the side of the installation position facing away from the fixing position, so that when the pushing member moves towards the fixing position, the device can be directly pushed to move, and then the device located at the installation position is connected to the connector located at the fixing position; since the pushing member is movably disposed on the base along the plugging direction of the connector, the movement direction of the device can be guided by the pushing member, so that the device approaches the connector along the plugging direction of the connector, so as to reduce the offset of the device during the connection process, and then ensure the correct connection between the device and the connector; the length of the force application portion is greater than the length of the thrust portion, and by using the different lengths of the force application portion and the thrust portion, a smaller force applied to the force application portion can make the thrust portion push the device to move with a larger force, achieving the effect of saving manpower.

[0021] The pushing portion is located between the installation position and the fixing position, so that when the pushing portion moves in a direction away from the fixing position, the device can be directly pushed away from the connector, and then the device located at the installation position is separated from the connector located at the fixing position; since the pushing portion is movably disposed on the base along the plugging direction of the connector, the movement direction of the device can be guided by the pushing portion, so that the device moves away from the connector along the plugging direction of the connector, so as to reduce the offset of the device during the separation process, and then ensure the correct separation between the device and the connector; the length of the force application portion is greater than the length of the thrust portion, and by using the different lengths of the force application portion and the thrust portion, a smaller force applied to the force application portion can make the pushing portion push the device to move with a larger force, achieving the effect of saving manpower. Description of the Drawings

[0022] The following further describes the present invention with reference to the drawings and embodiments;

[0023] Figure 1 is a schematic structural diagram of an auxiliary device for a connector provided by an embodiment of the present invention;

[0024] Figure 2 is a schematic overall structure diagram of an operating member of an auxiliary device for a connector provided by an embodiment of the present invention;

[0025] Figure 3One of the schematic diagrams of the overall structure of the auxiliary device for the connector provided by the embodiment of the present invention;

[0026] Figure 4 Schematic diagram of the overall structure of the pusher of the auxiliary device for the connector provided by the embodiment of the present invention;

[0027] Figure 5 Another schematic diagram of the overall structure of the auxiliary device for the connector provided by the embodiment of the present invention;

[0028] Figure 6 Schematic diagram of the cooperation relationship between the guide rail and the pusher of the auxiliary device for the connector provided by the embodiment of the present invention;

[0029] Figure 7 Another schematic diagram of the overall structure of the auxiliary device for the connector provided by the embodiment of the present invention;

[0030] Figure 8 Another schematic diagram of the overall structure of the auxiliary device for the connector provided by the embodiment of the present invention;

[0031] Figure 9 Another schematic diagram of the overall structure of the auxiliary device for the connector provided by the embodiment of the present invention.

[0032] The reference signs in the drawings are as follows:

[0033] 100, base; 110, mounting position; 120, fixing position; 130, first shaft; 140, second shaft; 150, base; 160, side wall; 161, window; 171, body part; 172, extension part; 173, connecting part; 180, guiding groove; 181, guide rail; 182, limiting wall;

[0034] 200, pusher; 210, pushing part; 220, force-receiving part; 221, force-receiving column; 230, connecting column;

[0035] 300, pusher; 310, relief chamfer;

[0036] 400, operating part; 410, rotating part; 420, thrust part; 421, first thrust part; 422, second thrust part; 422a, abutting section; 422b, connecting section; 430, force-applying part;

[0037] 500, first elastic member;

[0038] 600, second elastic member. Detailed implementation manners

[0039] This section will describe in detail specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the accompanying drawings. The function of the accompanying drawings is to supplement the description in the text part of the specification, enabling people to intuitively and vividly understand each technical feature and the overall technical solution of the present invention. However, it should not be construed as a limitation on the protection scope of the present invention.

[0040] In the description of the present invention, it should be understood that with regard to the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right, etc., is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on the present invention.

[0041] In the description of the present invention, if there are words such as "a number of" for description, its meaning is one or more, and the meaning of multiple is two or more. Understandings such as greater than, less than, exceeding, etc. do not include the present number, and understandings such as above, below, within, etc. include the present number. If there is a description of first, second, third, etc., it is only for the purpose of distinguishing technical features and cannot be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or the sequence relationship of the indicated technical features.

[0042] In the description of the present invention, unless otherwise clearly defined, words such as setting, installing, connecting, etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above words in the present invention in combination with the specific content of the technical solution.

[0043] Refer to Figures 1 to 9 , and several embodiments of the auxiliary device of the connector of the present invention will be given below.

[0044] As Figures 1 to 3 shown, the auxiliary device of the connector in the embodiment of the present invention includes a base 100, a pushing member 200, a driving member 300, and an operating member 400. The base 100 is provided with a mounting position 110 for placing a device and a fixing position 120 for mounting a connector; the base 100 is provided with a first shaft 130 and a second shaft 140. The first shaft 130 corresponds to the fixing position 120, and the second shaft 140 corresponds to the mounting position 110; the pushing member 200 includes a pushing portion 210; the pushing portion 210 is along the plugging and unplugging direction of the connector (such as Figure 1The a-direction (in the figure) movable setting is arranged on the base 100, and the pushing part 210 is located between the installation position 110 and the fixing position 120; the pushing part 210 is used to push the device located on the installation position 110 to move in a direction away from the fixing position 120, so that the device and the connector are separated; the pushing member 300 is movably arranged on the base 100 along the plugging direction of the connector, and the pushing member 300 is located on the side of the installation position 110 facing away from the fixing position 120; the pushing member 300 is used to push the device located on the installation position 110 to move towards the fixing position 120, so that the device and the connector are connected; the operating member 400 includes a rotating part 410, a thrust part 420 and a force applying part 430, and the rotating part 410 connects the thrust part 420 and the force applying part 430; the length of the force applying part 430 is greater than the length of the thrust part 420; the rotating part 410 is used to be sleeved outside the first shaft 130 or the second shaft 140, and by applying a force to the force applying part 430, the thrust part 420 drives the pushing part 210 or the pushing member 300 to move, so that the device and the connector are separated or connected.

[0045] When connecting, place the device at the installation position 110, and the connection end of the device faces the fixing position 120, place the connector at the fixing position 120, so that the device and the connector are in pre-contact; sleeved the rotating part 410 on the second shaft 140, and by applying a force to the force applying part 430 of the operating member 400, make the operating member 400 rotate relative to the second shaft 140; during the rotation process, the thrust part 420 drives the pushing member 300 to move along the plugging direction of the connector, so that the device approaches the connector along the plugging direction of the connector under the action of the pushing member 300, and further makes the connection end of the device connected to the connector; when separating, sleeved the rotating part 410 on the first shaft 130, and by applying a force to the force applying part 430 of the operating member 400, make the operating member 400 rotate relative to the first shaft 130; during the rotation process, the thrust part 420 drives the pushing part 210 to move along the plugging direction of the connector, so that the device moves away from the connector along the plugging direction of the connector under the action of the pushing part 210, and further makes the connection end of the device separated from the connector.

[0046] The pusher 300 is located on the side of the installation position 110 facing away from the fixing position 120. When the pusher 300 moves towards the fixing position 120, it can directly push the device to move, so that the device located at the installation position 110 is connected to the connector located at the fixing position 120. Since the pusher 300 is movably arranged on the base 100 along the insertion and extraction direction of the connector, the movement direction of the device can be guided by the pusher 300, so that the device approaches the connector along the insertion and extraction direction of the connector, so as to reduce the offset of the device during the connection process, and then ensure the correct connection between the device and the connector. The length of the force application part 430 is greater than the length of the thrust part 420. By using the different lengths of the force application part 430 and the thrust part 420, a small force applied to the force application part 430 can make the thrust part 420 push the device to move with a large force, achieving the effect of saving manpower.

[0047] The pushing part 210 is located between the installation position 110 and the fixing position 120. When the pushing part 210 moves in the direction away from the fixing position 120, it can directly push the device away from the connector, so that the device located at the installation position 110 is separated from the connector located at the fixing position 120. Since the pushing part 210 is movably arranged on the base 100 along the insertion and extraction direction of the connector, the movement direction of the device can be guided by the pushing part 210, so that the device moves away from the connector along the insertion and extraction direction of the connector, so as to reduce the offset of the device during the separation process, and then ensure the correct separation between the device and the connector. The length of the force application part 430 is greater than the length of the thrust part 420. By using the different lengths of the force application part 430 and the thrust part 420, a small force applied to the force application part 430 can make the pushing part 210 push the device to move with a large force, achieving the effect of saving manpower.

[0048] The present invention can realize the connection and separation operations of the connection end of the device and the connector by a single person easily without relying on external devices, and can make the device move along the insertion and extraction direction of the connector during connection and separation, avoiding damage to the connector or the connection end of the device.

[0049] In the related art, the auxiliary devices used have too single functions, either only for connection or only for separation, and the versatility is not high, basically for special purposes only. The present invention combines auxiliary connection and auxiliary separation into one, and can connect and separate two devices smoothly and labor-savingly. Moreover, it has strong versatility and can be applied to multiple scenarios, and the operation is convenient.

[0050] Among them, the rotating part 410 can be a sleeve. By sleeving the rotating part 410 on the first shaft 130 or the second shaft 140, the operating part 400 can rotate relative to the first shaft 130 or the second shaft 140. Two operating parts 400 can be provided. The first shaft 130 and the second shaft 140 are arranged on opposite sides of the base 100. The first shaft 130 corresponds to the operating part 400 one by one, and the second shaft 140 corresponds to the operating part 400 one by one. Through the two operating parts 400, they can cooperate with the first shaft 130 at the same time, so that both sides of the pushing part 210 are stressed simultaneously, which is beneficial to the stable movement of the pushing part 210. Through the two operating parts 400, they can cooperate with the second shaft 140 at the same time, so that both sides of the pushing part 300 are stressed simultaneously, which is beneficial to the stable movement of the pushing part.

[0051] In some embodiments, such as Figure 1 and Figure 4 shown, the pushing member 200 further includes a force-receiving part 220 connected to the pushing part 210. The force-receiving part 220 is located on the side of the fixed position 120 away from the mounting position 110. The thrust part 420 includes a first thrust part 420. The first thrust part 420 can act on the force-receiving part 220 to push the pushing part 210 to move, so as to separate the device and the connector. Since the force-receiving part 220 is located on the side of the fixed position 120 away from the mounting position 110, and the pushing part 210 is located between the fixed position 120 and the mounting position 110, the first thrust part 420 directly acts on the force-receiving part 220, and then transmits the acting force to the pushing part 210 through the force-receiving part 220, which can reduce the limitation on the force application space of the first thrust part 420, and is more beneficial for the first thrust part 420 to apply an acting force to the pushing member 200. A force-receiving column 221 is provided on the side of the force-receiving part 220 close to the first shaft 130. The first thrust part 420 has an arc surface that abuts against the force-receiving column 221. During the separation process of the device and the connector, since the operating part 400 rotates relative to the first shaft 130, and the insertion and extraction direction of the connector is a linear direction, therefore, during the process of the operating part 400 pushing the force-receiving column 221, the force-receiving column 221 slides on the first thrust part 420, and the surface of the first thrust part 420 abutting against the force-receiving column 221 is an arc surface, which is more beneficial for the first thrust part 420 to act on the force-receiving column 221 and reduce the risk of the force-receiving column 221 sliding out of the first thrust part 420 during the separation process. Among them, the first thrust part 420 can be a bent strip. The force-receiving column 221 is located on the side of the auxiliary device, and the force-receiving column 221 protrudes from the force-receiving part 220, which is beneficial for the operator to apply an acting force to the pushing member 200 on the side of the auxiliary device.

[0052] In some embodiments, such as Figure 1 、 Figure 2 and Figure 4As shown, the force - applying part 430 is strip - shaped, so that the length of the force - applying part 430 is extended as much as possible, and the overall volume of the force - applying part 430 is reduced as much as possible; the length of the force - applying part 430 is greater than or equal to twice the distance between the force - receiving column 221 and the first shaft 130. By increasing the length of the force - applying part 430 and using the lever principle, on the premise of prying the equipment of the same weight, the force applied by the operator to the force - applying part 430 can be reduced as much as possible, achieving the effect of saving manpower; in this embodiment, the length of the force - applying part 430 is three times the distance between the force - receiving column 221 and the first shaft 130.

[0053] In some embodiments, such as Figure 1 、 Figure 2 and Figure 4 As shown, the force - receiving column 221 and the first shaft 130 are arranged adjacent to each other so that the operating member 400 is sleeved outside the first shaft 130 and applies force to the force - receiving column 221; wherein, the axes of the force - receiving column 221 and the first shaft 130 are both arranged on the side surface of the base 100, and the operator can perform the separation operation on one side of the auxiliary device; the axes of the force - receiving column 221 and the first shaft 130 are both arranged along the width direction of the auxiliary device, and the rotating part 410 is sleeved on the first shaft 130, so that the operating member 400 rotates along the plane perpendicular to the width direction of the auxiliary device. The operator only needs to press the force - applying part 430 downward to push the pushing part 210 to move.

[0054] In some embodiments, such as Figure 1 、 Figure 4 and Figure 5 As shown, the base 100 includes a base 150 and a side wall 160 connected to each other. The installation position 110 is arranged on the base 150, and the fixing position 120 is arranged on the side wall 160; the pushing part 210 is located on one side of the side wall 160 close to the installation position 110, and the force - receiving part 220 is located on the side of the side wall 160 far from the installation position 110. The side wall 160 supports the pusher 200; the side wall 160 is provided with a window 161, and the pin of the connector passes through the window 161, so that the pin of the connector can be located on the side of the side wall 160 close to the installation position 110, thus facilitating the connection between the connector and the equipment. Correspondingly, through - holes for the connector to pass through are provided on the pushing part 210 and the force - receiving part 220.

[0055] In some embodiments, such as Figure 4As shown, the pushing member 200 further includes a connecting column 230, and the connecting column 230 connects the force receiving portion 220 and the thrust portion 420; a guiding through groove is provided on the base 100, and the connecting column 230 passes through the guiding through groove, and the guiding through groove is arranged along the insertion and extraction direction of the connector. The movement direction of the connecting column 230 can be guided through the guiding through groove to ensure that the pushing member 200 moves along the insertion and extraction direction of the connector; the auxiliary device further includes a first elastic member 500, and the first elastic member 500 is sleeved on the connecting column 230 and is located between the side wall 160 and the force receiving portion 220; when the pushing member 200 pushes the device away from the connector, as Figure 5 shown, the first elastic member 500 is compressed to store energy. When the device is completely separated from the connector, the pushing member 200 is released, as Figure 8 and Figure 9 shown, the first elastic member 500 releases the elastic force to reset the pushing member 200; generally, the first elastic member 500 is a spring.

[0056] In some embodiments, as Figure 6 shown, a guide rail 181 is provided on the base 100, and the pushing member 300 is slidably arranged on the guide rail 181. The guide rail 181 is arranged along the insertion and extraction direction of the connector. The movement direction of the pushing member 300 is guided through the guide rail 181, so that the device can be arranged along the insertion and extraction direction of the connector; a limiting wall 182 is provided at one end of the guide rail 181 close to the fixed position 120; the auxiliary device further includes a second elastic member 600, and the second elastic member 600 is sleeved outside the guide rail 181, and the second elastic member 600 is located between the limiting wall 182 and the pushing member 300; during the process that the pushing member 300 moves towards the device towards the connector, as Figure 7 shown, the second elastic member 600 is compressed to store energy. When the device and the connector are completely connected, the pushing member 300 is released, as Figure 3 shown, the second elastic member 600 releases the elastic force to reset the pushing member 300; generally, the second elastic member 600 is a spring.

[0057] As Figure 6 shown, one end of the second elastic member 600 abuts against the limiting wall 182, and the other end abuts against the pushing member 300. The pushing member 300 moves towards the fixed position 120 to squeeze the second elastic member 600, so that the second elastic member 600 is compressed to store energy; the pushing member 300 is released, and under the elastic acting force of the second elastic member 600, the pushing member 300 is reset. Wherein, a guiding groove 180 is provided on the base 100, and the guiding groove 180 is arranged along the insertion and extraction direction of the connector; the guide rail 181 is arranged in the guiding groove 180; the inner wall of the guiding groove 180 away from the pushing member 300 is the limiting wall 182.

[0058] The existing device lacks an automatic reset device, and manual reset is required every time an operation is performed, which is inconvenient for operation. In this embodiment, the pusher 300 and the pusher member 200 are used to achieve the dual functions of connection and separation, and both the connection operation and the separation operation can be automatically reset. After the operation is completed, the pusher member 200 or the pusher 300 can return to its original position automatically, which is convenient for the next operation.

[0059] In some embodiments, such as Figure 5 shown, the base 100 includes a main body portion 171, an extension portion 172, and at least two connecting members 173. The connecting members 173 have a rotating end and a fastening end that are connected to each other; one of the main body portion 171 and the extension portion 172 is rotatably connected to the rotating end, and the other is provided with a buckle that cooperates with the fastening end, so that the main body portion 171 and the extension portion 172 are connected to carry the device; the lengths of the at least two connecting members 173 are different; by using the different lengths of the connecting members 173, the distance between the main body portion 171 and the extension portion 172 can be adjusted, thereby increasing the length of the base 100 to adapt to devices of different sizes.

[0060] In this embodiment, as Figure 5 shown, the connecting end is rotatably connected to the extension portion, and a buckle is provided on the main body portion 171; the buckle is a protrusion protruding from the side surface of the main body portion 171, and a groove cooperating with the protrusion is provided on the fastening end. When the protrusion and the groove cooperate, the notch of the groove faces the bottom of the base 100 to prevent the buckle and the fastening end from detaching.

[0061] In some embodiments, such as Figure 1 shown, the second shaft 140 is disposed adjacent to the pusher 300, and the distance between the second shaft 140 and the pusher 300 can be shortened as much as possible so as to push the device to move by using the lever principle; the axis of the second shaft 140 is disposed along the height direction of the auxiliary device. When the rotating portion 410 of the operating member 400 is sleeved on the second shaft 140, the operating member 400 can rotate on a plane perpendicular to the height direction of the auxiliary device, thereby causing the pusher 300 to push the device to move.

[0062] In some embodiments, such as Figure 2 and Figure 6As shown, the thrust portion 420 includes a second thrust portion 420; the second thrust portion 420 has an abutting section 422a and a connecting section 422b that are connected to each other. The abutting section 422a is used to abut against the pushing member 300 and directly act on the pushing member 300 through the abutting section 422a to cause the pushing member 300 to move; the abutting section 422a and the connecting section 422b are bent so that during the rotation of the operating member 400, the abutting section 422a can better apply a thrust to the pushing member 300, so as to effectively utilize the acting force applied by the operating member 400; wherein, a relief chamfer 310 is provided on the pushing member 300, and the relief chamfer 310 is used to avoid the second thrust portion 420 to prevent the corners of the pushing member 300 from hindering the operating member 400 from applying a force to the pushing member 300.

[0063] When connecting, place the device on the installation position 110, and the connecting end of the device faces the fixing position 120. Place the connector in the fixing position 120, and insert the pins of the connector through the window 161. At this time, the device is in pre-contact with the connector; sleave the rotating portion 410 of one of the operating members 400 on one of the second shafts 140, and sleave the rotating portion 410 of the other operating member 400 on the other second shaft 140, as Figure 3 shown, push the force-applying portion 430, and the operating member 400 rotates relative to the base 100; during the rotation, the second thrust portion 420 drives the pushing member 300 to move, as Figure 7 shown, so that the pushing member 300 pushes the device along the insertion and extraction direction of the connector towards the connector, and further connects the connecting end of the device to the connector; release the pushing member 300, as Figure 3 shown, the pushing member 300 returns to its original position under the action of the second elastic member 600; when separating, as Figure 8 and Figure 9 shown, sleave the rotating portion 410 of one of the operating members 400 on one of the first shafts 130, and sleave the rotating portion 410 of the other operating member 400 on the other first shaft 130. Press down the force-applying portion 430 to make the operating member 400 rotate relative to the base 100; during the rotation, the first thrust portion 420 drives the pushing portion 210 to move, as Figure 5 shown, so that the pushing portion 210 pushes the device along the insertion and extraction direction of the connector away from the connector, and further separates the connecting end of the device from the connector; release the pushing portion 210, as Figure 8 and Figure 9 shown, the pushing portion 210 returns to its original position under the action of the first elastic member 500.

[0064] The above has specifically described the preferred embodiments of the present invention. However, the present invention is not limited to the described embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention, and these equivalent modifications or substitutions are all included within the scope defined by the claims of this application.

Claims

1. An auxiliary device for a connector, characterized in that, Comprising: A base (100) provided with a mounting position (110) for placing a device and a fixing position (120) for mounting a connector thereon; a first shaft (130) and a second shaft (140) are provided on the base (100), the first shaft (130) is provided corresponding to the fixing position (120), and the second shaft (140) is provided corresponding to the mounting position (110); A pushing member (200) including a pushing portion (210); the pushing portion (210) is movably provided on the base (100) along the insertion and extraction direction of the connector, and the pushing portion (210) is located between the mounting position (110) and the fixing position (120); the pushing portion (210) is configured to push the device located on the mounting position (110) to move in a direction away from the fixing position (120), so that the device and the connector are separated; A driving member (300) movably provided on the base (100) along the insertion and extraction direction of the connector, the driving member (300) is located on a side of the mounting position (110) facing away from the fixing position (120); the driving member (300) is configured to push the device located on the mounting position (110) to move towards the fixing position (120), so that the device and the connector are connected; An operating member (400) including a rotating portion (410), a thrust portion (420) and a force-applying portion (430), the rotating portion (410) connects the thrust portion (420) and the force-applying portion (430); the length of the force-applying portion (430) is greater than the length of the thrust portion (420); the rotating portion (410) is configured to be sleeved outside the first shaft (130) or the second shaft (140), and by applying a force to the force-applying portion (430), the thrust portion (420) drives the pushing portion (210) or the driving member (300) to move, thereby separating or connecting the device and the connector.

2. The auxiliary device of the connector according to claim 1, characterized in that The pushing member (200) further includes a force-receiving portion (220) connected to the pushing portion (210), the force-receiving portion (220) is located on a side of the fixing position (120) away from the mounting position (110); the thrust portion (420) includes a first thrust portion (421), the first thrust portion (421) can act on the force-receiving portion (220) to push the pushing portion (210) to move, thereby separating the device and the connector; a force-receiving post (221) is provided on a side of the force-receiving portion (220) close to the first shaft (130), and the first thrust portion (421) has an arc surface abutting against the force-receiving post (221).

3. The auxiliary device for a connector according to claim 2, wherein The force-applying portion (430) is strip-shaped, and the length of the force-applying portion (430) is greater than or equal to twice the distance between the force-receiving post (221) and the first shaft (130).

4. The auxiliary device of the connector according to claim 2, characterized in that The force-bearing column (221) and the first shaft (130) are arranged adjacent to each other, and the axes of the force-bearing column (221) and the first shaft (130) are both arranged on the side surface of the base (100) along the width direction of the auxiliary device.

5. The auxiliary device of the connector according to claim 2, characterized in that, The base (100) includes a base (150) and a side wall (160) connected to each other. The installation position (110) is arranged on the base (150), and the fixing position (120) is arranged on the side wall (160); the pushing part (210) is located on one side of the side wall (160) close to the installation position (110), and the force-bearing part (220) is located on the side of the side wall (160) far from the installation position (110); the side wall (160) is provided with a window (161), and the pin of the connector passes through the window (161).

6. The auxiliary device of the connector according to claim 5, characterized in that, The pushing member (200) further includes a connecting column (230), and the connecting column (230) connects the force-bearing part (220) and the thrust part (420); a guiding through groove is arranged on the base (100), and the connecting column (230) is inserted into the guiding through groove, and the guiding through groove extends along the plugging and unplugging direction of the connector; the auxiliary device further includes a first elastic member (500), and the first elastic member (500) is sleeved on the connecting column (230) and is located between the side wall (160) and the force-bearing part (220).

7. The auxiliary device of the connector according to any one of claims 1 to 5, characterized in that, A guide rail (181) is arranged on the base (100), and the pushing member (300) is slidably arranged on the guide rail (181), and the guide rail (181) is arranged along the plugging and unplugging direction of the connector; a limiting wall (182) is arranged at one end of the guide rail (181) close to the fixing position (120); the auxiliary device further includes a second elastic member (600), and the second elastic member (600) is sleeved outside the guide rail (181), and the second elastic member (600) is located between the limiting wall (182) and the pushing member (300).

8. The auxiliary device of the connector according to any one of claims 1 to 5, characterized in that The base (100) includes a main body part (171), an extension part (172) and at least two connecting members (173), and the connecting members (173) have a rotating end and a buckling end connected to each other; one of the main body part (171) and the extension part (172) is rotatably connected to the rotating end, and the other is provided with a buckle cooperating with the buckling end; the lengths of at least two of the connecting members (173) are different.

9. The auxiliary device of the connector according to any one of claims 1 to 5, characterized in that The second shaft (140) is arranged adjacent to the pushing member (300), and the axis of the second shaft (140) is arranged along the height direction of the auxiliary device.

10. The auxiliary device of the connector according to any one of claims 1 to 5, characterized in that The thrust part (420) includes a second thrust part (422); the second thrust part (422) has an abutting section (422a) and a connecting section (422b) connected to each other, and the abutting section (422a) and the connecting section (422b) are bent; the abutting section (422a) is used for abutting against the pushing member (300).