Button switch remote control device
By designing a remote control device for push-button switches, and utilizing motors and transmission components, remote control of push-button switches is achieved. This solves the problem of time-consuming and labor-intensive manual operation of push-button switches in power plants, simplifies the installation process, reduces costs, and improves safety.
Patent Information
- Application Number
- CN202423287944.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The power station push-button switches require manual on-site operation, which is time-consuming and labor-intensive. Replacing them with remote-controlled push-button switches requires complex modifications to the power grid circuit, resulting in high costs.
Design a remote control device for a push button switch, including a housing, a motor, a main control board, a transmission component, and a pressing component. The main control board receives remote commands to control the motor to drive the pressing component to press the push button switch. The device can be directly installed above the push button switch without disassembling or modifying the circuit.
It enables remote control of push-button switches, reducing manual on-site operation, simplifying the installation process, lowering costs, avoiding power outages and safety risks caused by circuit modifications, and improving operational efficiency and safety.
Smart Images

Figure CN223842798U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of remote control device technology, and in particular to a push-button switch remote control device. Background Technology
[0002] Currently, most power station push-button switches are purely mechanical, requiring operators to be on-site for each operation. However, in most cases, multiple push-button switches exist in the same control room. To operate a specific switch, operators must locate the corresponding control room, then the corresponding control panel, and finally the switch itself, resulting in high labor costs and significant time consumption. Furthermore, power station push-button switches are connected to the power grid. Replacing existing mechanical push-button switches with remote-controlled ones requires reconnecting them to the power grid, a complex and costly modification process. Utility Model Content
[0003] This utility model mainly provides a remote control device for push button switches, which aims to solve the problem that the operation of push button switches in power plants currently requires manual on-site operation, resulting in time-consuming and labor-intensive operation.
[0004] To achieve the above objectives, this utility model proposes a button switch remote control device, which includes a housing, a motor, a main control board, a transmission assembly, and a pressing component;
[0005] The motor, the main control board, the transmission assembly, and the pressing component are all housed within the housing. The motor is electrically connected to the main control board, which receives pressing commands from an external management system and controls the motor to operate based on the pressing commands.
[0006] The pressing element is movably disposed and has a pressed position for pressing the button switch and a non-pressed position for releasing the button switch. The motor is connected to the transmission assembly, and the motor drives the pressing element to switch between the pressed position and the non-pressed position through the transmission assembly.
[0007] In some embodiments of this utility model, the surface of the housing has an operating port, one end of the pressing member has a pressing part for pressing the button switch, and the other end has a manual operating part, which is located at the operating port.
[0008] In some embodiments of this utility model, the housing is provided with a clearance groove and a receiving groove that communicate with each other. The clearance groove and the receiving groove both penetrate the side wall of the housing. The clearance groove is used to accommodate a push button switch, and the groove edge of the clearance groove holds the push button switch. The receiving groove is used to accommodate the push button switch. The housing is also provided with a mounting hole for installing the pressing member. The mounting hole communicates with the receiving groove.
[0009] In some embodiments of this utility model, the housing is fixed to the cabinet equipped with a push-button switch by an adhesive.
[0010] In some embodiments of this utility model, a mounting hole for mounting the pressing member is formed inside the housing. A movable groove extends through the wall of the mounting hole. The pressing member is provided with a force-transmitting part located on the movable groove. The transmission assembly is provided with an inclined pushing part. The pushing part abuts against the force-transmitting part. The pushing part is used to push or release the force-transmitting part when rotating, so that the pressing member presses the button switch or releases the pressing of the button switch.
[0011] In some embodiments of this utility model, the pushing part includes a pressing flat section, an tilting section, and a releasing flat section. In the pressing position, the pressing flat section abuts against the force transmitting part, and in the non-pressing position, the releasing flat section abuts against the force transmitting part.
[0012] In some embodiments of this utility model, the wall of the mounting hole is provided with at least one guide groove, and the pressing member is provided with at least one guide portion, the at least one guide portion being guided and engaged with the at least one guide groove.
[0013] In some embodiments of this utility model, the transmission assembly includes an adapter, a transmission component, and a linkage component. The housing is provided with an assembly slot for mounting the motor. The adapter is connected to the motor. The linkage component is connected to the adapter. The adapter drives the transmission component to rotate through the linkage component. The transmission component is used to drive the pressing component to move.
[0014] In some embodiments of this utility model, the adapter is provided with a convex ring and a first stop, the transmission member is provided with a second stop and a convex shaft extending into the convex ring, and the linkage member includes a linkage body sleeved on the convex ring and an elastic linkage part connected to the linkage body. The elastic linkage part extends along the radial direction of the adapter, and the first stop pushes the second stop to rotate through the elastic linkage part when rotating.
[0015] In some embodiments of this utility model, the transmission member is provided with a first limiting part and a second limiting part, and the housing is provided with a first stop part and a second stop part. When the transmission member pushes the pressing member to press the button switch, the first limiting part and the first stop part cooperate in a limiting manner. When the transmission member releases the pressing member, the second limiting part and the second stop part cooperate in a limiting manner to restrict the rotation angle of the transmission member.
[0016] In some embodiments of this utility model, the housing is provided with a placement slot for mounting the main control board, the main control board is provided with a position detector, the position detector is used to detect the rotation angle information of the transmission component, and the main control board controls the operation of the motor based on the angle information.
[0017] The beneficial effects of this utility model are as follows: Unlike the prior art, the remote control device for push-button switches disclosed in this utility model can be directly installed on top of the push-button switch. The circuit on the back of the push-button switch does not need to be disassembled or replaced, and there is no need to reconnect to the power grid circuit. The installation is relatively simple and the operating cost is low. The main control board can remotely receive operation commands, control the motor to start, and the motor drives the pressing component to move through the transmission component. The pressing component presses the push-button switch, realizing remote control of the push-button switch. This eliminates the need for manual operation at the substation site, solving the problem of time-consuming and labor-intensive manual on-site operations. It effectively improves the efficiency and reliability of operating push-button switches, and also avoids the need to disassemble the wiring to modify existing mechanical push-button switches, which could cause power outages and other safety accidents, thus improving the safety of use. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the installation of the push-button switch remote control device of this utility model;
[0020] Figure 2 This is a schematic diagram of the structure of the push-button switch remote control device of this utility model;
[0021] Figure 3 This is a cross-sectional view of the push button switch remote control device of this utility model in the unpressed state;
[0022] Figure 4 This is a cross-sectional structural diagram of the button switch remote control device of this utility model in the pressed state;
[0023] Figure 5 This is an exploded structural diagram of the push-button switch remote control device of this utility model;
[0024] Figure 6 This is a schematic diagram of the transmission component of this utility model;
[0025] Figure 7 This is a schematic diagram of the linkage component of this utility model;
[0026] Figure 8 This is a plan view of the internal structure of the push-button switch remote control device of this utility model.
[0027] Explanation of icon numbers:
[0028] 1. Housing; 11. Operating port; 12. Clearance groove; 13. Receiving groove; 14. Mounting hole; 141. Movable groove; 142. Guide groove; 15. Assembly groove; 16. Placement groove; 17. First stop; 18. Second stop; 2. Motor; 3. Main control board; 31. Position detector; 4. Transmission assembly; 41. Adapter; 411. Protruding ring; 412. First stop block; 42. Transmission component; 421 4211. Pushing section; 4212. Tilting section; 4213. Release section; 422. Second stop; 423. Protruding shaft; 424. First limiting section; 425. Second limiting section; 43. Linkage component; 431. Linkage body; 432. Elastic linkage component; 5. Pressing component; 51. Pressing part; 52. Manual operation part; 53. Force transmission part; 54. Guide part; 6. Button switch; 7. Screen cabinet.
[0029] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly. For example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0032] Furthermore, in this utility model, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.
[0033] This utility model proposes a push-button switch remote control device, referring to... Figures 1 to 4 The push-button switch remote control device includes a housing 1, a motor 2, a main control board 3, a transmission component 4, and a pressing component 5;
[0034] The motor 2, main control board 3, transmission assembly 4, and pressing element 5 are all housed within the housing 1. The motor 2 is electrically connected to the main control board 3, which receives pressing commands from the external management system and controls the motor 2 to operate based on these commands. The pressing element 5 is movably configured and has a pressing position for the pressing button switch 6 and a non-pressing position for the releasing button switch 6. The motor 2 is connected to the transmission assembly 4, and the motor 2 drives the pressing element 5 to switch between the pressing and non-pressing positions through the transmission assembly 4.
[0035] Based on the above scheme, the main control board 3 can remotely receive operation commands. The main control board 3 controls the motor 2 to start, and the motor 2 drives the pressing part 5 to move through the transmission component 4. The pressing part 5 presses the button switch 6, realizing remote control of the button switch 6. This eliminates the need for manual operation at the substation site, solving the problem of time-consuming and labor-intensive manual on-site operations. It also eliminates the need for manual operation to find the corresponding control room and press the corresponding button switch 6, effectively improving the efficiency and reliability of operating the button switch 6. Furthermore, it avoids the need to disassemble the wiring to modify the existing mechanical button switch 6, which could cause power outages and other safety accidents, thus improving the safety of use.
[0036] Furthermore, the push-button switch 6 can be directly installed on top of the push-button switch 6, and the circuit on the back of the push-button switch 6 does not need to be disassembled or replaced, nor does it require reconnection to the power grid circuit. This avoids the complexity of modifying the power grid circuit, effectively improving the ease of installation and reducing the cost of use.
[0037] An operating port 11 extends through the surface of the housing 1. One end of the pressing member 5 has a pressing part 51 for pressing the push-button switch 6, and the other end has a manual operating part 52 located at the operating port 11. While providing remote control of the push-button switch 6, the device also retains the option of manual operation by mechanically pressing the push-button switch 6. This allows for manual operation of the pressing member 5 to press the push-button switch 6, whether in special circumstances or when a person is on-site. This design broadens the applicability and improves the performance of the push-button switch remote control device.
[0038] The housing 1 is provided with a clearance groove 12 and a receiving groove 13 that are connected to each other. Both the clearance groove 12 and the receiving groove 13 penetrate the side wall of the housing 1. The clearance groove 12 is used to make way for the push button switch 6, and the groove edge of the clearance groove 12 holds the push button switch 6. The receiving groove 13 is used to accommodate the push button switch 6. The housing 1 is also provided with a mounting hole 14 for installing the pressing member 5. The mounting hole 14 is connected to the receiving groove 13.
[0039] This design allows the remote control device to be directly snapped onto the push-button switch 6, simplifying installation and enabling quick and convenient installation, thus improving installation efficiency. The receiving slot 13 prevents the push-button switch 6 from being exposed, thus preventing accidental operation to some extent.
[0040] The housing 1 is fixed to the cabinet 7 containing the push-button switch 6 using adhesive. When installing the push-button switch remote control device, the push-button switch 6 is loosened appropriately, the housing 1 is placed on the push-button switch 6, the push-button switch 6 is inserted into the receiving groove 13, and the housing 1 is directly glued to the cabinet 7 using the provided adhesive to fix the push-button switch remote control device. Then the push-button switch 6 is tightened to complete the installation of the push-button switch remote control device.
[0041] The push-button switch remote control device is fixed to the cabinet 7 using adhesive, which is a simple and effective installation method. It is also easy to disassemble and causes minimal damage to the cabinet 7. The adhesive can be double-sided tape or other structures with adhesive properties, and there are no restrictions on its use.
[0042] Reference Figures 2 to 6 The housing 1 has a mounting hole 14 for mounting the pressing member 5. The wall of the mounting hole 14 has a movable groove 141. The pressing member 5 has a force transmission part 53 located on the movable groove 141. The transmission assembly 4 has a push part 421 that is inclined. The push part 421 abuts against the force transmission part 53. The push part 421 is used to push or release the force transmission part 53 when rotating, so that the pressing member 5 presses the button switch 6 or releases the press of the button switch 6.
[0043] The force transmission part 53 is formed on the outer peripheral wall of the pressing member 5, and drives the pressing member 5 to move through transmission, leaving sufficient space for the manual operation pressing part 52 of the button switch remote control device. The pushing part 421 converts the circumferential rotation into a linear push on the pressing member 5, which simplifies the layout of the internal structure of the button switch remote control device, making the structure simpler and more reliable.
[0044] The movable groove 141 can also guide the movement of the force transmission part 53, so that the pressing part 5 can press the button switch 6 smoothly and stably, avoiding the phenomenon of the pressing part 5 not being pressed in place or jamming and failing to press, thus improving the reliability of the button switch remote control device.
[0045] like Figure 6 As shown, the pushing part 421 includes a pressing flat section 4211, an tilting section 4212, and a releasing flat section 4213. In the pressing position, the pressing flat section 4211 abuts against the force transmission part 53, and in the non-pressing position, the releasing flat section 4213 abuts against the force transmission part 53. This arrangement allows circumferential rotation to be converted into linear pushing of the pressing member 5, enabling the pressing member 5 to press the button switch 6. In the pressing position, the pressing flat section 4211 stably pushes the pressing member 5 to press the button switch 6, preventing the pressing member 5 from wobbling or experiencing uneven force, which could cause the button switch 6 to not be pressed properly. In the non-pressing position, the releasing flat section 4213 limits the force transmission part 53, thus confining the pressing member 5 within the mounting hole 14.
[0046] The mounting hole 14 has at least one guide groove 142 on its wall, and the pressing member 5 has at least one guide part 54, which guides and engages with the at least one guide groove 142. This arrangement guides the movement of the pressing member 5, enabling it to press the button switch 6 stably and reliably, ensuring the reliability and stability of the button switch 6, and facilitating remote control management.
[0047] The number of guide grooves 142 and guide parts 54 can be two or more. In this embodiment, the number of guide grooves 142 and guide parts 54 can be two. The two guide parts 54 and the two guide grooves 142 are matched one-to-one to further improve the stability of the movement of the pressing member 5.
[0048] The pressing member 5 can be configured as a pressing shaft, and the outer peripheral wall of the pressing shaft is provided with a force transmission protrusion to form a force transmission part 53.
[0049] Reference Figures 3 to 8The transmission assembly 4 includes an adapter 41, a transmission component 42, and a linkage component 43. The housing 1 has an assembly slot 15 for mounting the motor 2. The adapter 41 is connected to the motor 2, and the linkage component 43 is connected to the adapter 41. The adapter 41 drives the transmission component 42 to rotate through the linkage component 43. The transmission component 42 is used to drive the pressing component 5 to move. The force transmission part 53 has a pushing part 421, which is used to push the pressing component 5 to move.
[0050] When the button switch 6 needs to be pressed, the management system sends a pressing command to the corresponding main control board 3. Based on the pressing command, the main control board 3 controls the motor 2 to start. The motor 2 rotates and drives the adapter 41 to rotate. When the adapter 41 rotates, it drives the transmission component 42 to rotate through the linkage component 43. The transmission component 42 linearly pushes the pressing component 5 to move through the pushing part 421, so that the pressing component 5 can press the button switch 6. Through the adapter 41, the transmission component 42, and the linkage component 43, the motor 2 can effectively push the pressing component 5 to move, so as to realize remote control of pressing the button switch 6 and facilitate remote control management.
[0051] The adapter 41 has a convex ring 411 and a first stop 412. The transmission component 42 has a second stop 422 and a convex shaft 423 extending into the convex ring 411. The linkage component 43 includes a linkage body 431 sleeved on the convex ring 411 and an elastic linkage part 432 connected to the linkage body 431. The elastic linkage part 432 extends radially along the adapter 41. When the first stop 412 rotates, it pushes the second stop 422 to rotate through the elastic linkage part 432. The convex shaft 423 also extends towards the inner wall of the housing 1, so that the end of the convex shaft 423 away from the adapter 41 is matched with a hole in the housing 1. The first stop 412 is located near the edge of the adapter 41, and the second stop 422 is located near the edge of the transmission component 42. The first stop 412 and the second stop 422 are offset radially.
[0052] When not in the pressed position, the elastic linkage part 432 can be located on one side of the second stop 422. When it is necessary to drive the pressing member 5 to press the button switch 6, the motor 2 drives the adapter 41 to rotate. The adapter 41 pushes the elastic linkage part 432 to rotate through the first stop 412 until the elastic linkage part 432 rotates to the other side of the second stop 422. Then, under the action of the first stop 412, the adapter 41 pushes the second stop 422 to rotate through the elastic linkage part 432, thereby driving the transmission member 42 to rotate, so that the transmission member 42 drives the pressing member 5 to press the button switch 6 through the pushing part 421.
[0053] The elastic linkage part 432 can elastically contact the transmission member 42, so that the transmission member 42 can stably drive the pressing member 5 to press the button switch 6, avoiding the phenomenon that the transmission member 42 violently pushes the pressing member 5 and causes the pressing member 5 to forcefully press the button switch 6, thus ensuring the effectiveness of the pressing member 5 pressing the button switch 6 to a certain extent.
[0054] The linkage 43 can be a ring torsion spring, or other structural components with a linkage adapter 41 and a transmission component 42. The adapter 41 can be an adapter block, which is connected to the drive shaft of the motor 2 for a limiting connection.
[0055] The transmission component 42 is provided with a first limiting part 424 and a second limiting part 425, and the housing 1 is provided with a first stop part 17 and a second stop part 18. When the transmission component 42 pushes the pressing part 5 to press the button switch 6, the first limiting part 424 and the first stop part 17 engage in a limiting engagement; when the transmission component 42 releases the pressing part 5, the second limiting part 425 and the second stop part 18 engage in a limiting engagement, thereby limiting the rotation angle of the transmission component 42. This arrangement ensures that the transmission component 42 rotates within a certain angle range.
[0056] Reference Figure 3 and Figure 8 The housing 1 has a slot 16 for mounting the main control board 3. The main control board 3 is equipped with a position detector 31, which detects the rotation angle of the transmission component 42. The main control board 3 controls the operation of the motor 2 based on the angle information. By detecting the rotation angle of the transmission component 42 in real time through the position detector 31, when the transmission component 42 releases the pressing part 5 and returns to the non-pressed position, the main control board 3 controls the motor 2 to stop based on the angle information of the transmission component 42 detected by the position detector 31. This realizes remote intelligent control and improves the convenience of remote management of the button switch 6.
[0057] When the main control board 3 is installed inside the housing 1, it is arranged parallel to the inner wall of the housing 1, which reduces the space occupied by the main control board 3 inside the housing 1. The position detector 31 can be set as a limit switch or a position sensor, or other components or modules with position detection function.
[0058] The above description is only an optional embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A push-button switch remote control device, characterized in that, The push-button switch remote control device includes a housing, a motor, a main control board, a transmission assembly, and a pressing component; The motor, the main control board, the transmission assembly, and the pressing component are all housed within the housing. The motor is electrically connected to the main control board, which receives pressing commands from an external management system and controls the motor to operate based on the pressing commands. The pressing element is movably disposed and has a pressed position for pressing the button switch and a non-pressed position for releasing the button switch. The motor is connected to the transmission assembly, and the motor drives the pressing element to switch between the pressed position and the non-pressed position through the transmission assembly.
2. The push-button switch remote control device as described in claim 1, characterized in that, An operating port is provided through the surface of the housing. One end of the pressing member has a pressing part for pressing the button switch, and the other end has a manual operating part, which is located at the operating port.
3. The push-button switch remote control device as described in claim 1, characterized in that, The housing has a clearance groove and a receiving groove that are connected to each other. Both the clearance groove and the receiving groove penetrate the side wall of the housing. The clearance groove is used to accommodate the push button switch, and the groove edge of the clearance groove holds the push button switch. The receiving groove is used to accommodate the push button switch. The housing also has a mounting hole for installing the pressing member. The mounting hole is connected to the receiving groove.
4. The push-button switch remote control device as described in claim 3, characterized in that, The housing is fixed to the cabinet containing the push-button switch by adhesive.
5. The push-button switch remote control device as described in claim 1, characterized in that, The housing has a mounting hole for mounting the pressing member. The wall of the mounting hole has a through groove. The pressing member has a force transmission part located on the through groove. The transmission assembly has a push part that is inclined. The push part abuts against the force transmission part. The push part is used to push or release the force transmission part when rotating, so that the pressing member presses the button switch or releases the button switch.
6. The push-button switch remote control device as described in claim 5, characterized in that, The pushing part includes a pressing flat section, an tilting section, and a releasing flat section. In the pressing position, the pressing flat section abuts against the force transmitting part, and in the non-pressing position, the releasing flat section abuts against the force transmitting part.
7. The push-button switch remote control device as described in claim 5, characterized in that, The mounting hole wall is provided with at least one guide groove, and the pressing member is provided with at least one guide part, the at least one guide part being guided and engaged with the at least one guide groove.
8. The push-button switch remote control device as described in claim 1, characterized in that, The transmission assembly includes an adapter, a transmission component, and a linkage component. The housing is provided with an assembly slot for mounting the motor. The adapter is connected to the motor, and the linkage component is connected to the adapter. The adapter drives the transmission component to rotate through the linkage component, and the transmission component is used to drive the pressing component to move.
9. The push-button switch remote control device as described in claim 8, characterized in that, The adapter is provided with a convex ring and a first stop block. The transmission component is provided with a second stop block and a convex shaft extending into the convex ring. The linkage component includes a linkage body sleeved on the convex ring and an elastic linkage part connected to the linkage body. The elastic linkage part extends along the radial direction of the adapter. When the first stop block rotates, it pushes the second stop block to rotate through the elastic linkage part.
10. The push-button switch remote control device as described in claim 8, characterized in that, The transmission component is provided with a first limiting part and a second limiting part, and the housing is provided with a first stop part and a second stop part. When the transmission component pushes the pressing member to press the button switch, the first limiting part and the first stop part cooperate in a limiting manner. When the transmission component releases the pressing member, the second limiting part and the second stop part cooperate in a limiting manner to restrict the rotation angle of the transmission component.
11. The push-button switch remote control device as described in claim 8, characterized in that, The housing has a slot for mounting the main control board. The main control board has a position detector for detecting the rotation angle information of the transmission component. The main control board controls the operation of the motor based on the angle information.