Soft rubber panel for remote control device and remote control device

By using a soft rubber panel as the installation and limiting structure in the remote control device, the problem of cumbersome assembly of hard rubber buttons is solved, enabling convenient installation and limiting, reducing production and replacement costs, and adapting to the button requirements of different types of vehicles.

CN224248512UActive Publication Date: 2026-05-15ZHENGZHOU SENPENG ELECTRONICS TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU SENPENG ELECTRONICS TECH
Filing Date
2025-05-28
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

In existing remote control devices, hard plastic buttons need to be assembled with two structural components: a soft plastic button body and a shell. This makes assembly troublesome and replacement costs high.

Method used

A soft rubber panel is used as the installation and limiting structure. The soft rubber panel has an installation groove and a limiting flange corresponding to the hard rubber button. The edge of the hard rubber button is provided with a stop edge, and the groove is provided with a stop edge to prevent it from falling out. The soft rubber panel itself is elastic and can be deformed under the pressure of the hard rubber button, so as to realize the convenient installation and anti-dislodgement of the hard rubber button.

Benefits of technology

It enables convenient installation and positioning of hard plastic buttons, reduces production and replacement costs, adapts to the button requirements of different types of vehicles, and is easy to assemble.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a soft rubber panel for a remote control device and the remote control device, and belongs to the technical field of structural parts of electric equipment. The remote control device comprises an elastic sheet type instantaneous switch, hard rubber keys and an installation limiting structure for installing and limiting the hard rubber keys, the installation limiting structure is a soft rubber panel, the soft rubber panel comprises force transmission parts in one-to-one correspondence with triggering parts of the elastic sheet type instantaneous switch, the force transmission parts are in contact with the hard rubber keys, and the hard rubber keys are arranged on the elastic sheet type instantaneous switch. Mounting grooves in one-to-one correspondence with the hard rubber keys are formed in the soft rubber panel, blocking edges are arranged on the edges of the hard rubber keys, limiting flanges in blocking fit with the blocking edges are arranged at notches of the mounting grooves, and moving spaces for the hard rubber keys to move are formed in the mounting grooves. According to the utility model, the soft rubber panel is adopted to replace an installation limiting structure in the prior art, and the installation and the limiting of the hard rubber key can be realized only by assembling the hard rubber key and the soft rubber panel during assembly, so that the assembly is convenient. And the hard rubber keys are convenient to replace, so that the appearance configuration of each remote control device can be changed at the lowest cost.
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Description

Technical Field

[0001] This utility model relates to a soft rubber panel for a remote control device and the remote control device itself, belonging to the technical field of structural components of electrical equipment. Background Technology

[0002] In the engineering field, there are numerous work vehicles for different trades. The remote control devices that come with these vehicles typically have a multi-button structure. The different trades involved in each vehicle result in variations in the button display functions (labels on the buttons) of the remote control device. Furthermore, these multi-button devices are often integrated into a single silicone button panel. Because the button labels differ for different trades, custom-made silicone button panels are required for each trade, leading to high production costs. Additionally, even for vehicles used for the same trade, if the configuration is changed later, the corresponding buttons on the remote control device also need to be replaced. Since the multi-button design is integrated, even replacing individual buttons requires replacing the entire silicone button panel, resulting in high replacement costs.

[0003] In response, Chinese utility model patent CN201048097Y discloses a remote control button structure, which is actually a remote control device. This device includes a housing, a PCB board, a hard rubber button top, and a soft rubber button body. The soft rubber button body is made of soft silicone, and the hard rubber button top is made of hard plastic. The hard rubber button top fits snugly onto the soft rubber button body, preventing them from easily coming loose and facilitating production and assembly. The hard rubber button top extends from the housing, and a limiting flange is provided around its bottom perimeter. The housing can restrict the limiting flange, preventing the button from peeling off.

[0004] Each hard plastic button in the aforementioned remote control device is installed independently and can be replaced individually. If applied to engineering vehicles, the buttons can be easily replaced when the vehicle configuration is changed, resulting in low replacement costs. Furthermore, each button can be mass-produced, and different buttons can be combined for remote control devices of different types of vehicles, thereby reducing production costs.

[0005] However, the installation and limiting of the hard rubber button in the above-mentioned remote control device requires the use of two structural components: the soft rubber button body and the outer shell (the soft rubber button body and the outer shell together constitute the installation and limiting structure). The outer shell also serves as the panel of the remote control device. During assembly, the hard rubber button (i.e. the hard rubber button) needs to be assembled with the soft rubber button body first, and then with the outer shell, which is quite troublesome. Utility Model Content

[0006] The purpose of this utility model is to provide a remote control device to solve the problem of assembly trouble caused by the need to assemble hard rubber buttons with two structural components, soft rubber button body and shell, in the prior art; the purpose of this utility model is also to provide a soft rubber panel for a remote control device to solve the above problems.

[0007] To achieve the above objectives, the remote control device of this utility model adopts the following technical solution:

[0008] A remote control device includes at least two spring-loaded instantaneous switches, a hard plastic button corresponding to each spring-loaded instantaneous switch, and an installation limiting structure for mounting and limiting each hard plastic button. The installation limiting structure is a soft plastic panel, which includes a force transmission part corresponding to the trigger part of each spring-loaded instantaneous switch for pressing the trigger part. The force transmission part contacts the hard plastic button and is pressed by the hard plastic button. The soft plastic panel is provided with a mounting groove corresponding to each hard plastic button for mounting the hard plastic button. The edge of the hard plastic button is provided with a stop. The opening of the mounting groove is provided with a limiting flange that cooperates with the stop to prevent the hard plastic button from falling out. The mounting groove has a moving space for the hard plastic button to move when it is pressed.

[0009] The beneficial effects of the above technical solution are as follows: This utility model is an improved invention, further defining the installation limiting structure for mounting and limiting each hard rubber button. The installation limiting structure is a soft rubber panel, which includes a force transmission part corresponding to the trigger part of each spring-type instantaneous switch for pressing the trigger part. The force transmission part contacts the hard rubber button and is pressed by the hard rubber button. Thus, when the hard rubber button is pressed, the hard rubber button can trigger the spring-type instantaneous switch through the force transmission part, realizing the basic function of the remote control device. At the same time, the soft rubber panel is provided with a corresponding part for mounting each hard rubber button. The mounting groove for the hard rubber button has a retaining edge on its edge. The groove opening has a limiting flange that engages with the retaining edge to prevent the hard rubber button from coming out. Since the soft rubber panel itself is elastic, it will deform under the pressure of the hard rubber button. Therefore, as long as the retaining edge of the hard rubber button can pass over the limiting flange and enter the mounting groove, the hard rubber button can be installed and prevented from coming out. In addition, the mounting groove has a moving space for the hard rubber button to move when it is pressed, ensuring that the hard rubber button has a movement margin when pressed, thereby ensuring that the spring-type instantaneous switch can be triggered.

[0010] In summary, this utility model uses a soft rubber panel to replace the installation limiting structure in the prior art. The soft rubber panel also serves as the panel of the remote control device. During assembly, it is only necessary to assemble the hard rubber button with the soft rubber panel to realize the installation and limiting of the hard rubber button, which is relatively convenient.

[0011] Furthermore, the soft rubber panel is provided with receiving grooves that correspond one-to-one with each spring-type instantaneous switch to accommodate the spring-type instantaneous switches. The receiving grooves and the mounting grooves are separated by a partition wall, and the force transmission part is disposed on the partition wall.

[0012] Furthermore, the partition wall includes an outer portion, a central portion, and a connecting portion between the outer portion and the central portion. The central portion constitutes the force transmission part, and the thickness of both the outer portion and the central portion is greater than the thickness of the connecting portion.

[0013] Furthermore, the hard rubber button includes a cap-shaped body, the rim of which is disposed at the edge of the cap-shaped body, and a top post extending toward the force transmission part is disposed at the center of the cap-shaped body for pressing against the force transmission part.

[0014] Furthermore, the edge of the cap-shaped body is also provided with a guide slope to guide the hard rubber button into the mounting groove during installation.

[0015] Furthermore, the bottom wall of the mounting groove includes a stop slope for engaging with the guide slope when the hard rubber button is pressed and moved to its limit position.

[0016] To achieve the above objectives, the soft rubber panel used in the remote control device of this utility model adopts the following technical solution:

[0017] A soft rubber panel for a remote control device includes a force transmission part for pressing the trigger part of each spring-type instantaneous switch of the remote control device. The force transmission part has a force-receiving surface for contacting and being pressed by a hard rubber button of the remote control device. The soft rubber panel is provided with a mounting groove for mounting the hard rubber button, which corresponds to each hard rubber button of the remote control device. The groove opening is provided with a limiting flange that stops the hard rubber button from falling out by engaging with the edge of the hard rubber button. The mounting groove has a moving space for the hard rubber button to move when it is pressed.

[0018] The beneficial effects of the above technical solution are as follows: This utility model is a pioneering invention, proposing a soft rubber panel for a remote control device. The soft rubber panel includes a force-transmitting part that corresponds one-to-one with the triggering parts of each spring-type instantaneous switch of the remote control device to press the triggering parts. The force-transmitting part has a force-receiving surface for contacting and being pressed by the hard rubber button of the remote control device. Thus, when the hard rubber button is pressed, the hard rubber button can trigger the spring-type instantaneous switch through the force-transmitting part, realizing the basic function of the remote control device. Simultaneously, the soft rubber panel is provided with a surface that corresponds one-to-one with each hard rubber button of the remote control device. The mounting slot is used to install hard rubber buttons. The opening of the mounting slot is provided with a limiting flange that engages with the edge of the hard rubber button to prevent the hard rubber button from falling out. Since the soft rubber panel itself is elastic, it will deform under the pressure of the hard rubber button. Therefore, as long as the edge of the hard rubber button can pass over the limiting flange and enter the mounting slot, the hard rubber button can be installed and prevented from falling out. In addition, the mounting slot has a moving space for the hard rubber button to move when it is pressed, ensuring that the hard rubber button has a movement margin when pressed, thereby ensuring that the spring-type instantaneous switch can be triggered.

[0019] In summary, the soft rubber panel used in the remote control device of this utility model is not only a panel, but also allows for easy installation and positioning of the hard rubber button by simply assembling it with the soft rubber panel.

[0020] Furthermore, the soft rubber panel is provided with receiving grooves for accommodating each spring-type instantaneous switch. The receiving grooves and the mounting grooves are separated by a partition wall, and the force transmission part is disposed on the partition wall.

[0021] Furthermore, the partition wall includes an outer portion, a central portion, and a connecting portion between the outer portion and the central portion. The central portion constitutes the force transmission part, and the thickness of both the outer portion and the central portion is greater than the thickness of the connecting portion.

[0022] Furthermore, the bottom wall of the mounting groove includes a stop slope for engaging with the guide slope of the hard rubber button when the hard rubber button is pressed and moved to its limit position. Attached Figure Description

[0023] Figure 1 This is a perspective view of an embodiment of the remote control device of this utility model;

[0024] Figure 2 This is a cross-sectional view of an embodiment of the remote control device of this utility model;

[0025] Figure 3 for Figure 2 A magnified view of a portion of the image;

[0026] Figure 4 for Figure 3 The diagram shown conceals the hard plastic buttons.

[0027] In the diagram: 1. Housing; 2. Soft rubber panel; 21. Mounting groove; 22. Receiving groove; 23. Outer part; 24. Central part; 25. Connecting part; 26. Limiting flange; 27. Stopping plane; 28. Stopping slope; 3. Hard rubber button; 31. Cap-shaped body; 32. Top post; 33. Stopping edge; 34. Guide slope; 4. Circuit board; 5. Tactile switch; 6. Waterproof plug for wires. Detailed Implementation

[0028] To address the technical problems existing in the prior art, the basic concept of this utility model is to use a soft rubber panel as both the panel of the remote control device and the force transmission part that triggers each spring-type instantaneous switch and the mounting groove for mounting the hard rubber button. Furthermore, the groove opening is provided with a limiting flange to prevent the hard rubber button from falling out. During assembly, the hard rubber button can be directly assembled with the soft rubber panel, making assembly more convenient.

[0029] The features and performance of this utility model will be further described in detail below with reference to the embodiments.

[0030] Implementation method of the remote control device in this utility model:

[0031] like Figure 1 and Figure 2 As shown, the remote control device includes a housing 1, which is made of rigid plastic, such as ASA, PVC, ABS, PC, PS, etc., to ensure that the housing 1 has a certain degree of rigidity. The housing 1 is generally a cuboid structure, including four side walls and a bottom plate, and the four side walls and the bottom plate form a long strip-shaped mounting cavity. A circuit board 4 is fixedly installed in the mounting cavity. Two or more spring-loaded instantaneous switches are installed on the circuit board 4. Each spring-loaded instantaneous switch is used to control a corresponding component on the engineering vehicle to perform a corresponding action. In this embodiment, there are eight spring-loaded instantaneous switches, and the spring-loaded instantaneous switches are tactile switches 5. In other embodiments, the spring-loaded instantaneous switches can also be dome switches, and the number of spring-loaded instantaneous switches can be more than eight or less than eight, but there should be at least two.

[0032] A waterproof plug 6 is installed on the bottom plate of the housing 1. The wires connected to the circuit board 4 pass through the waterproof plug 6 and are connected to the control device on the engineering vehicle, ensuring the waterproof sealing of the remote control device.

[0033] The remote control device also includes hard rubber buttons 3 corresponding to each tactile switch 5, and mounting limiting structures for mounting and limiting each hard rubber button 3. In this invention, the mounting limiting structure is a soft rubber panel 2. The "soft" in soft rubber panel 2 is relative to the "hard" in hard rubber buttons 3. The material of soft rubber panel 2 can be silicone, LSR, TPE / TPR, EPDM rubber, TPU, etc., to ensure that soft rubber panel 2 has a certain elasticity and can deform under external force. The material of hard rubber buttons 3 can be ASA, PVC, ABS, PC, PS, etc., to ensure that they have a certain hardness and to ensure a good feel when pressed.

[0034] In this invention, the soft rubber panel 2 serves as both the panel of the remote control device and the triggering component for each tactile switch 5. It also functions as the mounting and limiting component for each hard rubber button 3. Therefore, the soft rubber panel 2 includes a force transmission part that corresponds one-to-one with the triggering part of each tactile switch 5 to press the triggering part. The force transmission part has a force-receiving surface that contacts the hard rubber button 3 and is pressed by the hard rubber button 3. That is, when the hard rubber button 3 is pressed, the hard rubber button 3 can trigger the tactile switch 5 through the force transmission part to realize the basic function of the remote control device.

[0035] Specific combination Figure 3 and Figure 4As shown, the soft rubber panel 2 is provided with mounting grooves 21 that correspond one-to-one with each hard rubber button 3 for mounting the hard rubber button 3. At the same time, the soft rubber panel 2 is also provided with receiving grooves 22 that correspond one-to-one with each tactile switch 5 for accommodating the tactile switch 5. The receiving grooves 22 and the mounting grooves 21 are separated by a partition wall. The aforementioned force transmission part is set on the partition wall, making the partition wall a weak part on the soft rubber panel 2, which is conducive to the movement and deformation of the force transmission part.

[0036] Meanwhile, the soft rubber panel 2 is located inside the mounting cavity of the housing 1. Steps for fixing the soft rubber panel 2 are formed within the housing 1. The four sides of the soft rubber panel 2 are in close contact with the inner wall of the housing 1. The back of the soft rubber panel 2 is fixed to the steps with adhesive, ensuring a reliable fixation and airtightness. Furthermore, the back of the soft rubber panel 2 is close enough to the circuit board 4 that the remaining parts of the soft rubber panel 2, except for the receiving groove 22 and the mounting groove 21, maintain a certain thickness, facilitating manufacturing and maintaining the overall shape.

[0037] Furthermore, in this embodiment, the partition wall includes an outer portion 23, a central portion 24, and a connecting portion 25 connecting the outer portion 23 and the central portion 24. The central portion 24 constitutes the force transmission part described above, and the thickness of both the outer portion 23 and the central portion 24 is greater than the thickness of the connecting portion 25, which is equivalent to weakening the strength of the connecting portion 25, making the central portion 24 more independent, which is beneficial for its independent movement and deformation.

[0038] The end face of the central portion 24 facing the hard plastic button 3 is the force-bearing surface described above, and the end face facing the tactile switch 5 is the pressure-pressing surface. The thickness of the central portion 24 is greater than the thickness of the outer portion 23 to ensure that the central portion 24 can generate sufficient elastic deformation when pressed by the hard plastic button 3, providing the operator with a better feel, and that the hard plastic button 3 can rebound promptly when released. Of course, in other embodiments, the thickness of the central portion 24 can be equal to the thickness of the outer portion 23, or even the thicknesses of the outer portion 23, the central portion 24, and the connecting portion 25 can be equal.

[0039] like Figure 3 As shown, the hard plastic button 3 in this embodiment includes a cap-shaped body 31. A top post 32 extending towards the force transmission part (i.e., the central part 24) is provided at the center of the cap-shaped body 31 to press against the central part 24. An annular groove is formed between the top post 32 and the inner wall of the cap-shaped body 31. The end face size of the top post 32 is approximately equal to the size of the force-bearing surface of the central part 24. This saves material on the hard plastic button 3 and reduces manufacturing costs. In other embodiments, the hard plastic button 3 can be entirely solid, i.e., without the aforementioned annular groove.

[0040] The edge of the hat-shaped main body 31 is provided with a brim 33, combined with Figure 3and Figure 4 As shown, the mounting groove 21 has a limiting flange 26 at its opening that engages with the retaining edge 33 to prevent the hard plastic button 3 from detaching. Furthermore, retaining edges 33 are provided around all four edges of the hard plastic button 3. The soft plastic panel 2 wraps around these retaining edges 33, achieving a good anti-detachment effect. Simultaneously, the retaining edges 33 can engage with the side walls of the mounting groove 21, preventing the hard plastic button 3 from moving laterally.

[0041] When installing the hard rubber button 3, the soft rubber panel 2, being elastic, will deform under the pressure of the hard rubber button 3. Therefore, as long as the retaining edge 33 of the hard rubber button 3 can pass over the limiting flange 26 and enter the mounting groove 21, the hard rubber button 3 can be installed, and it can be prevented from falling out without external force. When removing the hard rubber button 3, the elasticity of the soft rubber panel 2 is also utilized. With a suitable tool and a little force, the hard rubber button 3 can be pried out.

[0042] Furthermore, to facilitate the installation of the hard plastic button 3, this embodiment also provides a guide slope 34 on the edge of the hard plastic button 3 to guide it into the mounting groove 21 during installation. Of course, in other embodiments, since the soft plastic panel 2 itself is elastic, installation can be achieved even without the guide slope 34 on the edge of the hard plastic button 3, although more force is required.

[0043] In order to trigger the tactile switch 5 through the force transmission part on the soft rubber panel 2 when the hard rubber button 3 is pressed, the mounting groove 21 is designed to have a moving space for the hard rubber button 3 to move when it is pressed, so as to ensure that the hard rubber button 3 has a movable margin when it is pressed.

[0044] Furthermore, to limit the extreme position of the hard plastic button 3 and prevent excessive movement from damaging the tactile switch 5, the bottom wall of the mounting groove 21 is designed to include a stop slope 28 for engaging with the guide slope 34 when the hard plastic button 3 is pressed and moved to its extreme position. The bottom wall of the mounting groove 21 also includes a stop plane 27 for engaging with the end face of the hard plastic button 3 to ensure the stopping and limiting effect. The stop plane 27 is in contact with the stop slope 28. When the hard plastic button 3 is not pressed, the distance between the stop slope 28 and the guide slope 34, and the distance between the stop plane 27 and the end face of the hard plastic button 3 constitute the aforementioned movement space.

[0045] Of course, in other embodiments, if the edge of the hard plastic button 3 is not provided with a guiding slope 34, then the bottom wall of the mounting groove 21 does not need to be provided with a blocking slope 28; only the blocking plane 27 and the end face of the hard plastic button 3 need to block it. In other embodiments, the blocking surface may not be used to limit the extreme position of the hard plastic button 3. Theoretically, the movement space is large enough. When a person presses the hard plastic button 3, as long as the force is controlled and brute force is not deliberately used to press it hard, the tactile switch 5 inside will not be damaged.

[0046] In the assembly of this utility model's remote control device, after the housing 1, circuit board 4, and soft rubber panel 2 are assembled, the hard rubber button 3 is installed. The guide slope 34 on the hard rubber button 3 allows it to be easily inserted into the mounting groove 21 of the soft rubber panel 2, preventing lateral movement of the hard rubber button 3. The limiting flange 26 prevents the hard rubber button 3 from falling out. After the hard rubber button 3 is installed in the mounting groove 21, the trigger part of the tactile switch 5 presses against the top surface of the central part 24, and the force-bearing surface of the central part 24 presses against the top post 32 in the middle of the hard rubber button 3. This allows the longitudinal movement of the hard rubber button 3 to apply pressure to the tactile switch 5, enabling electrical signal transmission. The reserved movement space within the mounting groove 21 increases the travel of the hard rubber button 3, and the hard rubber button 3 has a certain degree of hardness, while the central part 24 has a certain degree of elasticity, resulting in a better feel during pressing.

[0047] Therefore, this utility model uses a soft rubber panel 2 to replace the installation limiting structure in the prior art. The soft rubber panel 2 also serves as the remote control device panel. During assembly, only the hard rubber button 3 needs to be assembled with the soft rubber panel 2 to achieve the installation and limiting of the hard rubber button 3, making assembly relatively convenient. At the same time, for engineering vehicles of different types, the housing 1, soft rubber panel 2, and hard rubber button 3 can all be mass-produced. Then, according to the specific control functions of the engineering vehicle, corresponding control programs can be provided, and different combinations of hard rubber buttons 3 can be used, which can reduce production costs. For engineering vehicles of the same type, when the vehicle configuration is changed, the hard rubber button 3 can be easily replaced. Using a handy tool, the hard rubber button 3 can be pried out with a little force, and then a new hard rubber button 3 can be installed. There is no need to replace all the buttons or the soft rubber panel 2, thus achieving the goal of changing the appearance configuration of each remote control device at the lowest cost.

[0048] In other embodiments of the remote control device: the soft rubber panel may only have mounting slots for installing each hard rubber button, and no longer have a receiving slot for accommodating the spring-loaded instantaneous switch. In this case, there is a large gap between the back of the soft rubber panel and the circuit board. The bottom wall of the mounting slot has a certain thickness. The bottom wall of the slot is configured to include an outer part, a central part, and a connecting part connecting the outer part and the central part. Similarly, the central part constitutes the force transmission part. The thickness of both the outer part and the central part is greater than the thickness of the connecting part. Furthermore, the thickness of the central part is greater than the thickness of the outer part. Of course, the thickness of the central part can also be equal to the thickness of the outer part, or the outer part, the central part, and the connecting part can no longer be distinguished. The wall thickness of the bottom wall of the slot is uniform, and the central part of the bottom wall of the slot constitutes the force transmission part.

[0049] The implementation method of the soft rubber panel for the remote control device in this utility model is as follows: The specific structure of the soft rubber panel for the remote control device is the same as that of the soft rubber panel in the above-described implementation method of the remote control device, and will not be repeated here.

[0050] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. The patent protection scope of the present utility model shall be determined by the claims. Similarly, any equivalent structural changes made based on the description and drawings of the present utility model shall also be included within the protection scope of the present utility model.

Claims

1. A remote control device, comprising at least two spring-loaded instantaneous switches, hard plastic buttons corresponding one-to-one with each spring-loaded instantaneous switch, and an installation limiting structure for mounting and limiting each hard plastic button, characterized in that, The mounting limiting structure is a soft rubber panel. The soft rubber panel includes a force transmission part that corresponds to the trigger part of each spring-type instantaneous switch to press the trigger part. The force transmission part contacts the hard rubber button and is pressed by the hard rubber button. The soft rubber panel is provided with a mounting groove that corresponds to each hard rubber button to install the hard rubber button. The edge of the hard rubber button is provided with a stop. The groove opening of the mounting groove is provided with a limiting flange that cooperates with the stop to prevent the hard rubber button from falling out. The mounting groove has a moving space for the hard rubber button to move when it is pressed.

2. The remote control device according to claim 1, characterized in that, The soft rubber panel is provided with receiving slots that correspond one-to-one with each spring-type instantaneous switch to accommodate the spring-type instantaneous switches. The receiving slots and the mounting slots are separated by a partition wall, and the force transmission part is arranged on the partition wall.

3. The remote control device according to claim 2, characterized in that, The partition wall includes an outer portion, a central portion, and a connecting portion between the outer portion and the central portion. The central portion constitutes the force transmission part. The thickness of both the outer portion and the central portion is greater than the thickness of the connecting portion.

4. The remote control device according to any one of claims 1 to 3, characterized in that, The hard rubber button includes a cap-shaped body, the rim of which is disposed on the edge of the cap-shaped body, and a top post extending toward the force transmission part at the center of the cap-shaped body for pressing against the force transmission part.

5. The remote control device according to claim 4, characterized in that, The edge of the cap-shaped body is also provided with a guide slope to guide the hard rubber button into the mounting groove during installation.

6. The remote control device according to claim 5, characterized in that, The bottom wall of the mounting slot includes a stop ramp for engaging with the guide ramp when the hard rubber button is pressed and moved to its limit position.

7. A soft rubber panel for a remote control device, characterized in that, The soft rubber panel includes a force transmission part that corresponds one-to-one with the trigger part of each spring-type instantaneous switch of the remote control device to press the trigger part. The force transmission part has a force-receiving surface that contacts the hard rubber button of the remote control device and is pressed by the hard rubber button. The soft rubber panel is provided with a mounting groove that corresponds one-to-one with each hard rubber button of the remote control device for mounting the hard rubber button. The groove opening is provided with a limiting flange that cooperates with the edge of the hard rubber button to prevent the hard rubber button from falling out. The mounting groove has a moving space for the hard rubber button to move when it is pressed.

8. The soft rubber panel for the remote control device according to claim 7, characterized in that, The soft rubber panel is provided with a receiving groove for accommodating each spring-type instantaneous switch. The receiving groove and the mounting groove are separated by a partition wall, and the force transmission part is arranged on the partition wall.

9. The soft rubber panel for the remote control device according to claim 8, characterized in that, The partition wall includes an outer portion, a central portion, and a connecting portion between the outer portion and the central portion. The central portion constitutes the force transmission part. The thickness of both the outer portion and the central portion is greater than the thickness of the connecting portion.

10. The soft rubber panel for the remote control device according to any one of claims 7 to 9, characterized in that, The bottom wall of the mounting slot includes a stop ramp for engaging with the guide ramp of the hard rubber button when the hard rubber button is pressed and moved to its limit position.