CN224020631U - An operating device and a changeover switch - Google Patents

An operating device and a changeover switch

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Publication number
CN224020631U
CN224020631U CN202520201031.7U CN202520201031U CN224020631U CN 224020631 U CN224020631 U CN 224020631U CN 202520201031 U CN202520201031 U CN 202520201031U CN 224020631 U CN224020631 U CN 224020631U
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CN
China
Prior art keywords
driving
motor
piece
drive
operating device
Prior art date
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Active
Application number
CN202520201031.7U
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Chinese (zh)
Inventor
李公久
覃春乾
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Liangxin Electrical Appliances Haiyan Co ltd
Shanghai Liangxin Electrical Co Ltd
Original Assignee
Liangxin Electrical Appliances Haiyan Co ltd
Shanghai Liangxin Electrical Co Ltd
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Application filed by Liangxin Electrical Appliances Haiyan Co ltd, Shanghai Liangxin Electrical Co Ltd filed Critical Liangxin Electrical Appliances Haiyan Co ltd
Priority to CN202520201031.7U priority Critical patent/CN224020631U/en
Application granted granted Critical
Publication of CN224020631U publication Critical patent/CN224020631U/en
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Abstract

本实用新型提供了一种操作装置及转换开关,涉及电气设备技术领域。操作装置包括安装件、电机、电机驱动件、机构驱动件以及驱动组件。电机设置于安装件,电机设置有输出轴;电机驱动件可沿轴向移动地设置于输出轴;机构驱动件与电机驱动件传动配合,机构驱动件用于与触头装置连接,以在电机驱动件的驱动下带动触头装置合闸或分闸。驱动组件设置于安装件并与电机驱动件传动连接,驱动组件用于驱动电机驱动件沿输出轴远离机构驱动件的方向运动,以使电机驱动件与机构驱动件脱离,以此减小手操时的操作阻力,提高了操作装置的可靠性和便捷性。

This utility model provides an operating device and a changeover switch, relating to the field of electrical equipment technology. The operating device includes a mounting component, a motor, a motor drive component, a mechanism drive component, and a drive assembly. The motor is mounted on the mounting component and has an output shaft. The motor drive component is axially movable on the output shaft. The mechanism drive component is driven by the motor drive component and is used to connect to a contact device, so that the contact device can be closed or opened under the drive of the motor drive component. The drive assembly is mounted on the mounting component and is driven by the motor drive component. The drive assembly is used to drive the motor drive component to move along the output shaft away from the mechanism drive component, so that the motor drive component is disengaged from the mechanism drive component, thereby reducing the operating resistance during manual operation and improving the reliability and convenience of the operating device.

Description

Operating device and change-over switch
Technical Field
The utility model relates to the technical field of electrical equipment, in particular to an operating device and a change-over switch.
Background
In the prior art, power switches, such as dual power transfer switches, are typically designed with an automatic mode of operation and a manual mode of operation. In the automatic operation mode, the power switch realizes the switching of the power supply through the motor drive. However, when power conversion is required in the manual operation mode due to a failure of the motor or other reasons, the movement of the operating mechanism tends to rotate the motor, thereby increasing difficulty and resistance of manual operation, which not only affects convenience of operation, but also reduces reliability and safety of operation. This design disadvantage limits the quick response capability of the power switch in an emergency situation and increases the operational burden on the user.
Disclosure of utility model
The utility model aims to provide an operating device and a change-over switch, which can reduce the operating resistance during manual operation, improve the reliability and the safety of the operating device and enhance the quick response capability of the change-over switch in emergency.
Embodiments of the present utility model are implemented as follows:
in a first aspect, the present utility model provides an operating device comprising:
A mounting member;
The motor is arranged on the mounting piece and is provided with an output shaft;
The motor driving piece is arranged on the output shaft in an axially movable manner;
The mechanism driving piece is in transmission fit with the motor driving piece/the manual driving piece and is used for being connected with the contact device so as to drive the contact device to be switched on or switched off under the driving of the motor driving piece or the manual driving piece;
The driving assembly is arranged on the mounting piece and is in transmission connection with the motor driving piece, and the driving assembly is used for driving the motor driving piece to move along the direction that the output shaft is far away from the mechanism driving piece, so that the motor driving piece is separated from the mechanism driving piece to disconnect transmission connection.
In an alternative embodiment, the operating device further includes a reset element, where the reset element is disposed on the output shaft and located between the motor driving element and the motor, and the reset element is configured to drive the motor driving element to move along the output shaft near the mechanism driving element after the driving component withdraws the acting force on the motor driving element, so that the motor driving element is in transmission fit with the mechanism driving element.
In an alternative embodiment, the mounting member includes a mask and a bracket, the driving assembly includes a switching member and a separating member, the switching member is movably disposed on the mask, the separating member is movably disposed on the bracket, the switching member is in transmission connection with the separating member, and the separating member is disposed between the motor driving member and the mechanism driving member;
The switching piece comprises a manual mode and an automatic mode, the separating piece drives the motor driving piece to be separated from the mechanism driving piece under the driving of the switching piece under the condition that the switching piece is switched to the manual mode, and the resetting piece drives the motor driving piece to be in transmission fit with the mechanism driving piece under the condition that the switching piece is switched to the automatic mode.
In an alternative embodiment, the driving assembly further comprises a sliding cover plate, the sliding cover plate is slidably arranged on the mask, the sliding cover plate is provided with a first driving part, the separating piece is rotatably arranged on the support, one end of the separating piece is provided with a second driving part, the other end of the separating piece is provided with an actuating piece, and the actuating piece is used for driving the motor driving piece to be separated from the mechanism driving piece.
In an alternative embodiment, the operating device further comprises a manual driving piece, the manual driving piece is in transmission connection with the mechanism driving piece, the mask is provided with a first operating hole, and the sliding cover plate is provided with a second operating hole;
Under the condition that the switching piece is switched to a manual mode, the switching piece drives the sliding cover plate to move relative to the mask, so that the second operation hole corresponds to the first operation hole and the manual driving piece is exposed.
In an alternative embodiment, the actuating member includes a first actuating portion, where the first actuating portion is in a rod shape, and the first actuating portion is integrally formed with or movably connected to the separating member, and the first actuating portion is configured to abut against the motor driving member, so as to drive the motor driving member to move along a direction in which the output shaft is far away from the mechanism driving member.
In an alternative embodiment, the actuating member further includes a second actuating portion, the second actuating portion is annular, two sides of the second actuating portion are connected with the two first actuating portions, and the second actuating portion is used for being abutted with the motor driving member so as to drive the motor driving member to move along the direction that the output shaft is far away from the mechanism driving member.
In an alternative embodiment, the separating piece is further provided with a rotating shaft, the support is provided with a sliding groove and a sliding hole, the rotating shaft is arranged on the support, the first actuating part is arranged in the sliding groove, and the second actuating part is arranged in the sliding hole.
In an alternative embodiment, a first clamping part is arranged in the mechanism driving piece, a second clamping part is arranged in the motor driving piece, and the second clamping part is embedded in the mechanism driving piece and is in clamping fit with the first clamping part.
In a second aspect, the utility model provides a transfer switch comprising an operating device according to any of the preceding embodiments.
The operating device and the change-over switch have the advantages that the motor driving piece is arranged on the output shaft of the motor, and is in transmission fit with the mechanism driving piece, so that when the motor is started, the motor driving piece is driven to rotate through the output shaft, the mechanism driving piece is driven to synchronously rotate, the mechanism driving piece completes the switching-on or switching-off action of the contact device, and accordingly the operating device is in an automatic operation mode, when the motor is in failure or other reasons and power supply conversion is required in the manual operation mode, the automatic mode can be switched into the manual mode through the driving component, namely the motor driving piece is driven by the driving component to move along the direction of the output shaft away from the mechanism driving piece, so that the motor driving piece is separated from the mechanism driving piece in transmission fit, and therefore, the mechanism driving piece can drive the contact device to complete switching-on or switching-off action only under the driving of the manual operation driving piece, the resistance of the motor is avoided, the resistance and the operation difficulty of manual operation are reduced, the reliability and the safety of the operating device are improved, and the quick response capability of the change-over switch in emergency is enhanced.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some embodiments of the present utility model and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of an operating device according to an embodiment of the present utility model;
FIG. 2 is a schematic diagram of a portion of an operating device according to an embodiment of the present utility model;
FIG. 3 is an exploded view of a portion of the construction of an operating device according to an embodiment of the present utility model;
Fig. 4 is a schematic diagram of a sliding cover structure according to an embodiment of the present utility model;
FIG. 5 is a schematic view of a separator according to an embodiment of the present utility model;
FIG. 6 is a second exploded view of a portion of an operating device according to an embodiment of the present utility model;
FIG. 7 is an exploded view of a portion of an operating device according to an embodiment of the present utility model.
The icons are 10-operating device, 100-mounting, 110-mask, 111-first operating hole, 120-bracket, 121-chute, 122-slide hole, 200-motor, 210-output shaft, 300-motor driver, 310-second clamping part, 400-mechanism driver, 410-first clamping part, 500-driving component, 510-switching part, 520-separating part, 521-second driving part, 522-rotating shaft, 530-slide cover plate, 531-first driving part, 532-second operating hole, 540-actuator, 541-first actuating part, 542-second actuating part, 600-resetting part and 700-manual driving part.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. The components of the embodiments of the present utility model generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the utility model, as presented in the figures, is not intended to limit the scope of the utility model, as claimed, but is merely representative of selected embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that like reference numerals and letters refer to like items in the following figures, and thus once an item is defined in one figure, no further definition or explanation thereof is necessary in the following figures.
In the description of the present utility model, it should be noted that, directions or positional relationships indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., are directions or positional relationships based on those shown in the drawings, or are directions or positional relationships conventionally put in use of the inventive product, are merely for convenience of describing the present utility model and simplifying the description, and are not indicative or implying that the apparatus or element to be referred to must have a specific direction, be constructed and operated in a specific direction, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," "third," and the like are used merely to distinguish between descriptions and should not be construed as indicating or implying relative importance.
Furthermore, the terms "horizontal," "vertical," and the like do not denote a requirement that the component be absolutely horizontal or overhang, but rather may be slightly inclined. As "horizontal" merely means that its direction is more horizontal than "vertical", and does not mean that the structure must be perfectly horizontal, but may be slightly inclined.
In the description of the present utility model, it should also be noted that, unless explicitly specified and limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected through an intermediary, or in communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
In the prior art, power switches, such as dual power transfer switches, are typically designed with an automatic mode of operation and a manual mode of operation. In the automatic operation mode, the power switch realizes the switching of the power supply through the motor drive. However, when power conversion is required in the manual operation mode due to a failure of the motor or other reasons, the movement of the operating mechanism tends to rotate the motor, thereby increasing difficulty and resistance of manual operation, which not only affects convenience of operation, but also reduces reliability and safety of operation. This design disadvantage limits the quick response capability of the power switch in an emergency situation and increases the operational burden on the user.
Based on the problems in the prior art, referring to fig. 1 to 3, an operation device 10 is provided in an embodiment of the present utility model, and is applied to a low voltage electrical apparatus, particularly a switch or the like.
In detail, the operating device 10 includes a mounting member 100, a motor 200, a motor driver 300, a mechanism driver 400, and a driving assembly 500.
The motor 200 is arranged on the mounting piece 100, the motor 200 is provided with an output shaft 210, the motor driving piece 300 is arranged on the output shaft 210 in an axially movable mode, the mechanism driving piece 400 is in transmission fit with the motor driving piece 300, and the mechanism driving piece 400 is used for being connected with the contact device so as to drive the contact device to switch on or off under the driving of the motor driving piece 300.
The driving assembly 500 is disposed on the mounting member 100 and is in transmission connection with the motor driving member 300 and the manual driving member 700, and the driving assembly 500 is used for driving the motor driving member 300 to move along the direction of the output shaft 210 away from the mechanism driving member 400, so that the motor driving member 300 is separated from the mechanism driving member 400 to disconnect the transmission connection.
In this embodiment, the motor driver 300 is disposed on the output shaft 210 of the motor 200, and the motor driver 300 is in transmission fit with the mechanism driver 400, so that when the motor 200 is started and the motor driver 300 is driven to rotate by the output shaft 210, the mechanism driver 400 is driven to synchronously rotate, and the mechanism driver 400 completes the switching-on or switching-off action of the contact device, thereby implementing the automatic operation mode of the operation device 10, and when the motor 200 fails or other reasons cause the power supply to be switched in the manual operation mode, the automatic mode can be switched into the manual mode by the driving assembly 500, i.e. the motor driver 300 is driven by the driving assembly 500 to move along the direction of the output shaft 210 away from the mechanism driver 400, so that the motor driver 300 is separated from the transmission fit with the mechanism driver 400, therefore, the mechanism driver 400 can only drive the contact device to complete the switching-on or switching-off action under the driving of the manual driver 700, thereby avoiding the resistance of the motor 200 to bring the manual operation resistance and the operation device 10, improving the reliability and safety of the operation device 10, and enhancing the quick response capability of the switch in emergency situations.
Since the mechanism driving part 400 is separated from the motor driving part 300 in the manual mode, in order to ensure that the mechanism driving part 400 can be in transmission engagement with the motor driving part 300 again after the manual mode is switched to the automatic mode, the operating device 10 further comprises a reset part 600, wherein the reset part 600 is arranged between the motor driving part 300 and the motor 200 and is arranged on the output shaft 210, so that after the driving assembly 500 removes the acting force on the motor driving part 300, namely after the driving assembly 500 is switched from the automatic mode to the manual mode, the reset part 600 can drive the motor driving part 300 to move along the output shaft 210 close to the mechanism driving part 400, and the motor driving part 300 and the mechanism driving part 400 can be in transmission engagement again.
Alternatively, the reset member 600 may be, but is not limited to, a spring.
Further, the mounting member 100 includes a mask 110 and a bracket 120, the bracket 120 is connected to the mask 110 and located between the motor driver 300 and the mechanism driver 400, the driving assembly 500 includes a switching member 510 and a separating member 520, the switching member 510 is movably disposed on the mask 110, the separating member 520 is movably disposed on the bracket 120, the switching member 510 is in transmission connection with the separating member 520, and the separating member 520 is disposed between the motor driver 300 and the mechanism driver 400.
The switching member 510 includes a manual mode and an automatic mode, and it is understood that the manual mode and the automatic mode of the switching member 510 correspond to states of the switching member 510 when the switching member 510 is screwed to different angles.
Therefore, in the case that the switching member 510 is switched to the manual mode, the separating member 520 drives the motor driver 300 to disengage from the mechanism driver 400 under the driving of the switching member 510, and in the case that the switching member 510 is switched to the automatic mode, the resetting member 600 drives the motor driver 300 to be in driving engagement with the mechanism driver 400.
Further, as shown in fig. 4 and 5, the driving assembly 500 further includes a sliding cover 530, the sliding cover 530 is slidably disposed on the mask 110, the sliding cover 530 is provided with a first driving portion 531, the separating member 520 is rotatably disposed on the bracket 120, one end of the separating member 520 is provided with a second driving portion 521, and the other end is provided with an actuating member 540, and the actuating member 540 is used for driving the motor driving member 300 to be separated from the mechanism driving member 400.
In the present embodiment, since the switching member 510 is of a knob structure and is rotatably disposed on the mask 110, the sliding cover 530 is disposed on the mask 110 and is in transmission fit with the switching member 510, so that the switching member 510 can rotate to drive the sliding cover 530 to linearly move, and the sliding cover 530 drives the separating member 520 and the actuating member 540 to rotate, so that the actuating member 540 finally drives the motor driving member 300 to separate from the mechanism driving member 400.
Of course, in other embodiments of the present utility model, the switching member 510 can also be a sliding structure, i.e. the switching member 510 can slide along the mask 110, so that the separating member 520 and the actuating member 540 can be driven to rotate by driving the switching member 510 to linearly move along the mask, so that the actuating member 540 finally drives the motor driving member 300 to be separated from the mechanism driving member 400.
Further, the operation device 10 further includes a manual driving member 700, the manual driving member 700 is in transmission connection with the mechanism driving member 400, the mask 110 is provided with a first operation hole 111, and the slide cover 530 is provided with a second operation hole 532.
In this embodiment, when the switching member 510 is switched to the manual mode, the switching member 510 synchronously drives the sliding cover 530 to move relative to the mask 110, so that the second operation hole 532 corresponds to the first operation hole 111, and exposes the manual driving member 700, thereby facilitating the user to sequentially pass through the first operation hole 111 and the second operation hole 532 by using the manual tool and act on the manual driving member 700, and driving the manual driving member 700 to drive the mechanism driving member 400 to move, so as to achieve manual closing and opening.
It should be noted that, in some embodiments of the present utility model, as shown in fig. 6, the actuating member 540 includes a first actuating portion 541, where the first actuating portion 541 is in a rod shape, the first actuating portion 541 is integrally formed with or movably connected to the separating member 520, and the first actuating portion 541 is configured to abut against the motor driving member 300 to drive the motor driving member 300 to move along the direction of the output shaft 210 away from the mechanism driving member 400.
It should be noted that, in the present embodiment, the first actuating portion 541 may be detachably connected to the separating member 520, or may be integrally formed with the separating member 520, so long as the first actuating portion 541 can drive the motor driving member 300 to disengage from the mechanism driving member 400, which is not limited herein.
Furthermore, in other embodiments of the present utility model, as shown in fig. 3 and 7, the actuating member 540 includes, in addition to the first actuating portion 541, a second actuating portion 542 connected to the first actuating portion 541, where the second actuating portion 542 is annular, two sides of the second actuating portion 542 are connected to the two first actuating portions 541, and the second actuating portion 542 is used to abut against the motor driver 300 to make the stress of the motor driver 300 more uniform, so as to drive the motor driver 300 to move along the direction of the output shaft 210 away from the mechanism driver 400.
In this embodiment, the first actuating portion 541 and the second actuating portion 542 are located between the mechanism driving member 400 and the motor driving member 300, so that the second actuating portion 542 of the separating member 520 drives the actuating member 540 to abut against the motor driving member 300, and drives the motor driving member 300 to move along the direction of the output shaft 210 away from the mechanism driving member 400, thereby realizing the separation of the motor driving member 300 from the mechanism driving member 400.
Further, the separating member 520 is further provided with a rotating shaft 522, the bracket 120 is provided with a sliding slot 121 and a sliding hole 122, the rotating shaft 522 is disposed on the bracket 120, the first actuating portion 541 is disposed in the sliding slot 121, and the second actuating portion 542 is disposed in the sliding hole 122.
In the present embodiment, one end of the separating member 520 is provided with the second driving portion 521, the other end is connected to the actuating member 540, and the rotating shaft 522 is located between the second driving portion 521 and the actuating member 540, so that the first driving portion 531 of the sliding cover 530 synchronously drives the separating member 520 to rotate around the rotating shaft 522 when the switching member 510 is driven to displace, so that the actuating member 540 connected to the separating member 520 is abutted to and driven by the motor driving member 300 and is separated from the mechanism driving member 400.
The extending direction of the sliding groove 121 is consistent with the axial direction of the output shaft 210 of the motor 200, so that the first actuating portion 541 moves along the sliding groove 121, the sliding groove 121 can limit and guide the first actuating portion 541, and similarly, the second actuating portion 542 moves along the sliding hole 122, and the sliding can limit and guide the second rotation.
Further, a first clamping portion 410 is disposed inside the mechanism driving member 400, the motor driving member 300 is provided with a second clamping portion 310, and the second clamping portion 310 is embedded inside the mechanism driving member 400 and is in clamping fit with the first clamping portion 410.
In the present embodiment, the second retaining portion 310 is disposed through the annular second actuating portion 542 to be in retaining engagement with the first retaining portion 410, so that the motor driver 300 drives the mechanism driver 400 to rotate synchronously.
In detail, the second clamping part 310 is in a boss structure, the mechanism driving part 400 is in an annular structure, a gear structure is arranged on the outer wall of the mechanism driving part 400 and meshed with the gear structure of the manual driving part 700, the first clamping part 410 is arranged on the inner wall of the mechanism driving part 400, and the second clamping part 310 is embedded into the first clamping part 410 and is clamped and matched with the first clamping part 410, so that the mechanism driving part 400 synchronously rotates under the driving of the motor driving part 300.
In summary, the present utility model provides an operating device 10 and a change-over switch, in which a motor driving member 300 is disposed on an output shaft 210 of a motor 200, and the motor driving member 300 is in transmission fit with a mechanism driving member 400, so that when the motor 200 is started, the motor driving member 300 is driven to rotate by the output shaft 210, the mechanism driving member 400 is driven to synchronously rotate, and the mechanism driving member 400 completes a switching-on or switching-off action of a contact device, thereby implementing an automatic operating mode of the operating device 10, and when the motor 200 fails or other reasons cause that a power supply is required to be switched in the manual operating mode, the driving member 300 can be switched into the manual mode by a driving assembly 500, i.e. the motor driving member 300 is driven to move along a direction away from the mechanism driving member 400 by the driving assembly 500, so that the motor driving member 300 is separated from the mechanism driving member 400 in transmission fit, therefore, the mechanism driving member 400 can drive the contact device to complete a switching-on or switching-off action only under the driving of the manual driving member 700, thereby avoiding the resistance of the motor 200 to bring the mechanism driving member 400 to the manual operation, and enhancing the reliability of the manual operation and the safety of the change-over switch under the emergency condition.
Further, the embodiment of the present utility model also provides a change-over switch, which includes the operating device 10 in the above embodiment.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the present utility model, but various modifications and variations can be made to the present utility model by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (10)

1. An operating device, characterized by comprising:
A mounting (100);
A motor (200), the motor (200) being disposed within the mount (100), the motor (200) being provided with an output shaft (210);
a motor driver (300), wherein the motor driver (300) is arranged on the output shaft (210) in an axially movable manner;
The mechanism driving piece (400) is in transmission fit with the motor driving piece (300)/the manual driving piece (700), and the mechanism driving piece (400) is used for being connected with the contact device so as to drive the contact device to be switched on or off under the driving of the motor driving piece (300) or the manual driving piece (700);
The driving assembly (500), the driving assembly (500) set up in installed part (100) and with motor drive spare (300) transmission connection, the driving assembly (500) are used for driving motor drive spare (300) follow output shaft (210) keep away from the direction motion of mechanism drive spare (400), so that motor drive spare (300) with mechanism drive spare (400) break away from in order to disconnect transmission connection.
2. The operating device according to claim 1, further comprising a reset member (600), wherein the reset member (600) is disposed between the output shaft (210) and the motor (200), and the reset member (600) is configured to drive the motor driver (300) to move along the output shaft (210) near the mechanism driver (400) after the driving assembly (500) removes the force applied to the motor driver (300), so that the motor driver (300) is in driving engagement with the mechanism driver (400).
3. The operating device according to claim 2, wherein the mounting member (100) comprises a mask (110) and a bracket (120), the drive assembly (500) comprises a switching member (510) and a separating member (520), the switching member (510) is movably arranged on the mask (110), the separating member (520) is movably arranged on the bracket (120), the switching member (510) is in transmission connection with the separating member (520), and the separating member (520) is arranged between the motor drive member (300) and the mechanism drive member (400);
The switching piece (510) comprises a manual mode and an automatic mode, the separating piece (520) drives the motor driving piece (300) to be separated from the mechanism driving piece (400) under the driving of the switching piece (510) under the condition that the switching piece (510) is switched to the manual mode, and the resetting piece (600) drives the motor driving piece (300) to be in transmission fit with the mechanism driving piece (400) under the condition that the switching piece (510) is switched to the automatic mode.
4. The operating device according to claim 3, wherein the driving assembly (500) further comprises a sliding cover plate (530), the sliding cover plate (530) is slidably arranged on the mask (110), the sliding cover plate (530) is provided with a first driving portion (531), the separating member (520) is rotatably arranged on the bracket (120), one end of the separating member (520) is provided with a second driving portion (521), the other end is provided with an actuating member (540), and the actuating member (540) is used for driving the motor driving member (300) to be separated from the mechanism driving member (400).
5. The operating device according to claim 4, characterized in that it further comprises a manual drive (700), said manual drive (700) being in driving connection with said mechanism drive (400), said mask (110) being provided with a first operating aperture (111), said slide plate (530) being provided with a second operating aperture (532);
Under the condition that the switching piece (510) is switched to the manual mode, the switching piece (510) drives the sliding cover plate (530) to move relative to the mask (110) so that the second operation hole (532) corresponds to the first operation hole (111) and the manual driving piece (700) is exposed.
6. An operating device according to claim 4, wherein the actuating member (540) comprises a first actuating portion (541), the first actuating portion (541) being rod-shaped, the first actuating portion (541) being integrally formed or movably connected with the separating member (520), the first actuating portion (541) being adapted to abut against the motor driver (300) to drive the motor driver (300) to move in a direction in which the output shaft (210) is remote from the mechanism driver (400).
7. The operating device according to claim 6, wherein the actuating member (540) further comprises a second actuating portion (542), the second actuating portion (542) is ring-shaped, two sides of the second actuating portion (542) are connected to the two first actuating portions (541), and the second actuating portion (542) is configured to abut against the motor driving member (300) so as to drive the motor driving member (300) to move along the direction in which the output shaft (210) is away from the mechanism driving member (400).
8. The operating device according to claim 7, characterized in that the separating member (520) is further provided with a rotating shaft (522), the bracket (120) is provided with a slide groove (121) and a slide hole (122), the rotating shaft (522) is provided to the bracket (120), the first actuating portion (541) is provided in the slide groove (121), and the second actuating portion (542) is provided to the slide hole (122).
9. The operating device according to claim 1, characterized in that a first clamping portion (410) is provided inside the mechanism driving member (400), the motor driving member (300) is provided with a second clamping portion (310), and the second clamping portion (310) is embedded inside the mechanism driving member (400) and is in clamping fit with the first clamping portion (410).
10. A transfer switch comprising an operating device according to any one of claims 1-9.
CN202520201031.7U 2025-02-08 2025-02-08 An operating device and a changeover switch Active CN224020631U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520201031.7U CN224020631U (en) 2025-02-08 2025-02-08 An operating device and a changeover switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520201031.7U CN224020631U (en) 2025-02-08 2025-02-08 An operating device and a changeover switch

Publications (1)

Publication Number Publication Date
CN224020631U true CN224020631U (en) 2026-03-20

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