Base assembly for adjusting torque upgrading and intelligent equipment
By adjusting the connection between the adjustment components and the power supply components and the base, the force feedback intensity can be dynamically adjusted, which solves the user experience limitation problem caused by the fixed force feedback of the base in the prior art, and realizes personalized experience and cost reduction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2026-03-27
AI Technical Summary
The force feedback output method of existing racing simulator bases is fixed, which cannot meet the personalized needs of users, resulting in high cost and inconvenience in replacing the base.
A base assembly for adjusting torque is provided. It is connected to the base via a pluggable adjustment component and a power supply component to achieve dynamic adjustment of force feedback intensity. The assembly includes an adjustment component and a power supply component, which are respectively connected to the interface of the base to control the device to output corresponding force feedback.
It enables users to have a personalized force feedback experience, reduces the cost of replacing the base, improves convenience, and meets the needs of different users.
Smart Images

Figure CN224052742U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of simulation racing, in particular to a base assembly for adjusting torque upgrading and an intelligent device. BACKGROUND
[0002] As a device for simulating real driving experience, a base is one of the core components of a racing simulator, which simulates the driving experience of a racing car under different road conditions through a force feedback system. At present, the base design of the racing simulator mainly provides force feedback by the torque output of the built-in motor.
[0003] The base of the prior art provides fixed peak force feedback when outputting force feedback. This way of outputting force feedback limits the personalized experience of users. When the driver needs a larger or smaller peak force feedback, the entire base needs to be replaced, which not only increases the cost but also brings inconvenience. CONTENT OF THE UTILITY MODEL
[0004] The application mainly provides a base assembly for adjusting torque upgrading and an intelligent device to solve the problem that the personalized experience of users is limited.
[0005] The application provides a base assembly for adjusting torque upgrading, comprising:
[0006] a base, one end of the base is provided with at least one first interface and at least one second interface, the other end of the base is provided with a third interface, and the base is connected with a control device through the third interface;
[0007] a plurality of adjusting assemblies, the adjusting assemblies are inserted into the first interfaces to be connected with the base through the first interfaces;
[0008] a plurality of power supply assemblies, the power supply assemblies correspond to the adjusting assemblies and are connected with the base through the second interfaces, and the power supply assemblies are used for providing power output for the base;
[0009] When any one of the adjusting assemblies and the power supply assemblies corresponding to the adjusting assemblies are connected with the base, the base is used for outputting corresponding force feedback to the control device based on the adjusting assemblies and the power supply assemblies.
[0010] Each adjusting assembly comprises a first connecting piece and an adjusting piece, the adjusting piece is arranged on the first connecting piece, the adjusting piece is used for controlling the force feedback output by the base, and the first connecting piece is configured to be connected with the first interface so that the adjusting assembly is connected with the base.
[0011] Each of the power supply components comprises a power supply and a second connecting member, the power supply corresponds to the adjusting member, the power supply is connected to one end of the second connecting member, and the other end of the second connecting member is configured to be connected to the second interface, so that the power supply component is connected to the base.
[0012] When any one of the adjusting members and the power supply corresponding to the adjusting member are connected to the base, the base outputs force feedback to the control device based on the adjusting member and the power supply.
[0013] The base comprises a first circuit board, a driving member, and a third connecting member, one end of the driving member is connected to the first circuit board, the other end of the driving member is connected to one end of the third connecting member, and the other end of the third connecting member is connected to the control device.
[0014] The first interface and the second interface are arranged on the side of the first circuit board away from the driving member, the adjusting component is connected to the first circuit board through the first interface, and the power supply component corresponding to the adjusting component is connected to the first circuit board through the second interface.
[0015] When the adjusting component and the power supply component corresponding to the adjusting component are connected to the first circuit board, the first circuit board controls the driving member to output force feedback to the control device through the third connecting member based on the adjusting component and the power supply component.
[0016] The base further comprises a second circuit board and a third circuit board, the second circuit board is located at one end of the third connecting member close to the driving member, the third circuit board is located at the other end of the third connecting member away from the driving member, one end of the driving member is connected to the first circuit board, the other end of the driving member is connected to the second circuit board and the third circuit board respectively, the third interface is arranged on the side of the third circuit board away from the second circuit board, and the third circuit board is connected to the control device through the third interface.
[0017] When the adjusting component and the power supply component corresponding to the adjusting component are connected to the first circuit board, the first circuit board controls the driving member to output torque to the third circuit board based on the adjusting component and the power supply component, and the third circuit board outputs force feedback to the control device based on the torque.
[0018] The base further comprises a housing, the first circuit board, the driving member, and the third connecting member are located in the housing, and the adjusting component and the power supply component are located outside the housing.
[0019] The application also provides a smart device, the smart device includes game data, the smart device is connected with the base, the base is the base in the base assembly, the smart device sends the game data to the base, and the base is used for adjusting the component and the power component to output force feedback based on the game data.
[0020] The application has the beneficial effect that the base assembly for adjusting torque upgrade includes a base, a plurality of adjusting components and a plurality of power components, the adjusting components and the power components correspond; when any adjusting component and the power component corresponding to the adjusting component are connected to the base, the base is used for outputting corresponding force feedback to the control device based on the adjusting component and the power component. By selecting a suitable adjusting component and connecting the base to the corresponding power component, the base outputs corresponding force feedback, improves the user's personalized experience, and when the driver needs a larger or smaller peak force feedback, the entire base does not need to be replaced, the cost is reduced, and the convenience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and for those skilled in the art, other drawings can also be obtained without creative labor. Among them:
[0022] Fig. 1 is a structural schematic diagram of an embodiment of a base assembly for adjusting torque upgrade provided by the application;
[0023] Fig. 2 is a structural schematic diagram of another embodiment of a base assembly for adjusting torque upgrade provided by the application. DETAILED DESCRIPTION
[0024] The embodiments of the technical solutions of the application will be described in detail below with reference to the drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the application, and therefore only serve as examples, and cannot limit the protection scope of the application.
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the application; the terms "include" and "have" in the specification and claims of the application and the above description of drawings mean to cover non-exclusive inclusion.
[0026] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features.
[0027] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily independent or alternative embodiments to each other. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0028] In the description of the embodiments of the present application, the term "and / or" is only a description of the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases of A alone, A and B together, and B alone. In addition, the character " / " herein generally represents an "or" relationship between the front and rear associated objects.
[0029] In the description of the embodiments of the present application, the term "a plurality of" refers to two or more (including two), and similarly, "a plurality of groups" refers to two or more groups (including two groups), and "a plurality of pieces" refers to two or more pieces (including two pieces).
[0030] In the description of the embodiments of the present application, the technical terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the embodiments of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the embodiments of the present application.
[0031] In the description of the embodiments of the present application, unless otherwise explicitly specified and limited, the technical terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanical connection, or it can be electrical connection; it can be connected between, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0032] The prior art base provides a fixed peak force feedback when outputting force feedback. This way of outputting force feedback limits the user's personalized experience, and when the driver needs a larger or smaller peak force feedback, the entire base needs to be replaced, which not only increases the cost, but also brings inconvenience.
[0033] The present application provides a base assembly for adjusting torque upgrade, please see Figs. 1-2 The present application provides a base assembly for adjusting torque upgrade, please see Fig. 1 is a structural schematic diagram of an embodiment of a base assembly for adjusting torque upgrade provided by the present application; Fig. 2 is a structural schematic diagram of another embodiment of a base assembly for adjusting torque upgrade provided by the present application. The base assembly 1 of the embodiment comprises a base 10, a plurality of adjustment assemblies 20 and a plurality of power supply assemblies 30.
[0034] The base 10 is provided with at least one first interface 11 and at least one second interface 12 at one end, and is provided with a third interface 13 at the other end, and is connected with a control device (not shown in the figure) through the third interface 13. The first interface 11, the second interface 12 and the third interface 13 include but are not limited to USB interface, Type-C interface, HDMI interface, DP interface and audio interface, etc.
[0035] Among them, the base 10 refers to the part or device in the base assembly 1 connected with the steering wheel, mainly plays a feedback role, including force feedback. Optionally, the control device is a steering wheel.
[0036] The first interface 11, the second interface 12 and the third interface 13 refer to the physical or logical channels connecting different assemblies, allowing data and signals to be transmitted between them.
[0037] Optionally, the third interface 13 is a physical channel connecting the base 10 and the control device, and allows data and signals to be transmitted between the base 10 and the control device.
[0038] The adjustment assembly 20 is inserted into the first interface 11 to connect with the base 10 through the first interface 11.
[0039] Optionally, the first interface 11 is a physical channel connecting the adjustment assembly 20 and the base 10, and allows data and signals to be transmitted between the adjustment assembly 20 and the base 10.
[0040] The adjustment assembly 20 refers to the part or device for adjusting the force feedback output by the base 10. Among them, the adjustment information of each adjustment assembly 20 is different, that is, the plurality of adjustment assemblies 20 adjusts the base 10 to output force feedback of different levels or strengths.
[0041] The power supply assembly 30 corresponds to the adjusting assembly 20 and is connected to the base 10 through the second interface 12. The power supply assembly 30 is configured to provide power output for the base 10.
[0042] Optionally, the second interface 12 is a physical channel connecting the power supply assembly 30 and the base 10, and allows data and signals to be transmitted between the power supply assembly 30 and the base 10.
[0043] The power supply assembly 30 is configured to provide power output for the base 10, i.e., the power supply assembly 30 supplies power for the base 10 as the energy source of the base 10, so that the base 10 can output force feedback.
[0044] In this embodiment, the power supply assembly 30 corresponds to the adjusting assembly 20, i.e., each adjusting assembly 20 is paired with a power supply assembly 30. In other embodiments, at least two adjusting assemblies 20 can share the same power supply assembly 30, which will not be described herein.
[0045] Specifically, the power supply assembly 30 corresponds to the adjusting assembly 20, i.e., the power supply assembly 30 provides the energy required by the base 10 to output different levels or intensities of force feedback based on the adjustment of the adjusting assembly 20.
[0046] When any adjusting assembly 20 and the power supply assembly 30 corresponding to the adjusting assembly 20 are connected to the base 10, the base 10 is configured to output corresponding force feedback to the control device based on the adjusting assembly 20 and the power supply assembly 30.
[0047] Specifically, when one adjusting assembly 20 is connected to the base 10, the adjusting assembly 20 transmits adjustment information to the base 10; and the power supply assembly 30 corresponding to the adjusting assembly 20 is connected to the base 10, so that the power supply assembly 30 supplies power for the base 10. The base 10 outputs corresponding force feedback to the control device based on the adjustment information of the adjusting assembly 20 and the power output of the power supply assembly 30.
[0048] In this embodiment, the base 10 can output corresponding force feedback by selecting appropriate adjusting assemblies 20 and corresponding power supply assemblies 30 to connect the base 10, which improves the personalized experience of the user. When the driver needs greater or smaller peak force feedback, the entire base 10 does not need to be replaced, which reduces the cost and improves the convenience.
[0049] According to some embodiments of the present application, each adjusting assembly 20 includes a first connecting piece 21 and an adjusting piece (not labeled in the figure), the adjusting piece is arranged on the first connecting piece 21, and the adjusting piece is configured to control the force feedback output by the base 10. The first connecting piece 21 is configured to be connected to the first interface 11, so that the adjusting assembly 20 is connected to the base 10.
[0050] The first connecting member 21 refers to a component or part for connecting the base 10 in the adjusting assembly 20.
[0051] The adjusting member refers to a component containing adjustment information, such as an encryption chip, which stores specific authorization information for unlocking the base 10 to output force feedback of different levels or intensities, i.e., controlling the force feedback output by the base 10.
[0052] Optionally, the first connecting member 21 is a crystal head device, and the adjusting member can be embedded in the first connecting member 21, and the adjusting assembly 20 is also called a key. In other embodiments, the first connecting member 21 is a USB device.
[0053] According to the embodiment, the user can adjust the intensity of the force feedback as needed through the adjusting member, thereby achieving a more personalized operation experience.
[0054] According to some embodiments of the present application, each power supply assembly 30 includes a power supply 31 and a second connecting member 32, the power supply 31 corresponds to the adjusting member, the power supply 31 is connected to one end of the second connecting member 32, and the other end of the second connecting member 32 is configured to be connected to the second interface 12, so that the power supply assembly 30 is connected to the base 10.
[0055] The second connecting member 32 refers to a component or part for connecting the base 10 in the power supply assembly 30.
[0056] The power supply 31 refers to a device that converts other forms of energy into electrical energy and provides electrical power output to the base 10, such as a battery, a power adapter, or a circuit board, etc.
[0057] The power supply 31 corresponds to the adjusting member, i.e., the power supply assembly 30 corresponds to the adjusting assembly 20.
[0058] According to some embodiments of the present application, when any adjusting member and the power supply 31 corresponding to the adjusting member are connected to the base 10, the base 10 outputs force feedback to the control device based on the adjusting member and the power supply 31.
[0059] Specifically, when any adjusting member is connected to the base 10 through the first connecting member 21, and the power supply 31 corresponding to the adjusting member is connected to the base 10 through the second connecting member 32, the base 10 outputs force feedback to the control device based on the adjustment information of the adjusting member and the electrical power output provided by the power supply 31.
[0060] In the embodiment, the base 10 can accurately output force feedback according to the setting of the adjusting member, thereby providing a more realistic user experience.
[0061] According to some embodiments of the present application, the base 10 comprises a first circuit board 14, a driving member 15, and a third connecting member 16. One end of the driving member 15 is connected to the first circuit board 14, and the other end of the driving member 15 is connected to one end of the third connecting member 16. The other end of the third connecting member 16 is connected to the control device.
[0062] The first circuit board 14 is commonly referred to as a printed circuit board, which is a substrate for electrical connection of electronic components. On the circuit board, circuit patterns can be formed by printing, etching, or other methods. These patterns are composed of conductive tracks, pads (or solder pads), and holes, which are used to achieve the interconnection between electronic components or connection with external devices.
[0063] The driving member 15 refers to a mechanical component for providing power, such as a servo motor.
[0064] The third connecting member 16 refers to a structure or component in the base 10 for connecting to the control device.
[0065] Optionally, one end of the driving member 15 penetrates through the first circuit board 14 and is electrically connected to the first circuit board 14. The first circuit board 14 is used to control the output torque of the driving member 15. The other end of the driving member 15 is electrically connected to one end of the third connecting member 16. The other end of the third connecting member 16 is connected to the control device. The third connecting member 16 is used to output force feedback to the control device based on the output torque of the driving member 15.
[0066] Optionally, the third interface 13 is arranged on the other end of the third connecting member 16, so that the other end of the third connecting member 16 is connected to the control device through the third interface 13.
[0067] According to some embodiments of the present application, the first interface 11 and the second interface 12 are arranged on the side of the first circuit board 14 away from the driving member 15. The adjustment assembly 20 is connected to the first circuit board 14 through the first interface 11. The power supply assembly 30 corresponding to the adjustment assembly 20 is connected to the first circuit board 14 through the second interface 12.
[0068] Optionally, one end of the driving member 15 penetrates through the first circuit board 14. The first interface 11 and the second interface 12 are arranged on the side of the first circuit board 14 away from the other end of the driving member 15.
[0069] Specifically, the adjustment assembly 20 is connected to the first circuit board 14 through the first interface 11, so that the adjustment assembly 20 is connected to the base 10. The power supply assembly 30 corresponding to the adjustment assembly 20 is connected to the first circuit board 14 through the second interface 12, so that the power supply assembly 30 is connected to the base 10.
[0070] According to some embodiments of the present application, when the adjusting assembly 20 and the power supply assembly 30 corresponding to the adjusting assembly 20 are connected to the first circuit board 14, the first circuit board 14 controls the driving member 15 to output force feedback to the control device through the third connecting member 16 based on the adjusting assembly 20 and the power supply assembly 30.
[0071] Specifically, when the adjusting assembly 20 is connected to the first circuit board 14 through the first interface 11 and the power supply assembly 30 corresponding to the adjusting assembly 20 is connected to the first circuit board 14 through the second interface 12, the adjusting assembly 20 transmits adjustment information to the first circuit board 14, and the power supply assembly 30 provides power output for the first circuit board 14. Based on the adjustment information of the adjusting assembly 20 and the power output provided by the power supply assembly 30, the first circuit board 14 controls the driving member 15 to output torque to the third connecting member 16, and the third connecting member 16 outputs corresponding force feedback to the control device.
[0072] The base 10 can accurately control the strength and characteristics of the force feedback and provide a more realistic user experience through the cooperative work of the adjusting assembly 20, the power supply assembly 30, the first circuit board 14, the driving member 15, and the third connecting member 16.
[0073] According to some embodiments of the present application, the base 10 further comprises a second circuit board 17 and a third circuit board (not labeled in the figure). The second circuit board 17 is located at one end of the third connecting member 16 close to the driving member 15, and the third circuit board is located at the other end of the third connecting member 16 away from the driving member 15. One end of the driving member 15 is connected to the first circuit board 14, and the other end of the driving member 15 is connected to the second circuit board 17 and the third circuit board, respectively. The third interface 13 is arranged on the side of the third circuit board away from the second circuit board 17, and the third circuit board is connected to the control device through the third interface 13.
[0074] The second circuit board 17 and the third circuit board are both substrates for electrical connection of electronic components.
[0075] Alternatively, the other end of the driving member 15 passes through the second circuit board 17, and the driving member 15 is electrically connected to the second circuit board 17 and the third circuit board.
[0076] Alternatively, a display screen (not shown in the figure) or an indicator light (not shown in the figure) can be arranged on the second circuit board 17, and the second circuit board 17 is used to power the display screen or the indicator light. The display screen or the indicator light can be used to display the working state of the base 10.
[0077] The third interface 13 is arranged on the side of the third circuit board away from the second circuit board 17, and the third circuit board is connected to the control device through the third interface 13, that is, the third connecting member 16 is connected to the control device.
[0078] Optionally, the control device is a steering wheel, and the third circuit board is connected to and powers the steering wheel, i.e., the third circuit board powers the control device.
[0079] Specifically, when the first circuit board 14 is connected to the adjustment assembly 20 and the power assembly 30 corresponding to the adjustment assembly 20, the first circuit board 14 controls the driving member 15 to output a torque to the third circuit board based on the adjustment assembly 20 and the power assembly 30, and the third circuit board outputs a force feedback to the control device based on the torque.
[0080] The embodiment can precisely control the strength and characteristics of the force feedback through the cooperative work of the adjustment assembly 20, the power assembly 30, the first circuit board 14, the driving member 15, and the third circuit board, and provide a more realistic user experience.
[0081] According to some embodiments of the present application, the base 10 further includes a housing 18, and the first circuit board 14, the driving member 15, and the third connecting member 16 are located in the housing 18, and the adjustment assembly 20 and the power assembly 30 are located outside the housing 18.
[0082] The housing 18 is an external structure of the base 10, and is used to protect the internal components and fix their positions.
[0083] The embodiment can protect the circuit boards and components inside the base 10 from physical damage and environmental influences such as dust and moisture, thereby improving the durability and reliability of the base 10.
[0084] The present application also provides a smart device (not shown in the figure), which includes game data, and is connected to the base 10. The base 10 is the base 10 in the base assembly 1 of the above-mentioned embodiments. The smart device sends the game data to the base 10, and the base 10 is used to output a force feedback based on the game data, the adjustment assembly 20, and the power assembly 30.
[0085] The smart device refers to a device that can perceive the environment, collect data, make decisions, and perform corresponding actions through built-in sensors, processors, software, and other intelligent components. Optionally, the smart device is a computer terminal, and the smart device includes game data simulating a racing car. In other embodiments, the smart device can be a mobile phone and a tablet computer, etc.
[0086] The user can select appropriate adjustment assemblies 20 and power assemblies 30 to connect to the base 10 based on the game data transmitted by the smart device to the base 10 from the user's own needs, so that the base 10 outputs corresponding force feedback, and realizes personalized operation experience.
[0087] In other embodiments, the smart device further includes different adjustment information, which is used to adjust the base 10 to output different levels or intensities of force feedback, such as a digital key, an activation code, etc. Specifically, when the smart device is connected to the base 10, the corresponding adjustment information and game data can be sent to the base 10, the base 10 is connected to the power component 30 corresponding to the adjustment information, and the base 10 outputs force feedback based on the adjustment information, game data and power component 30. At this time, the base 10 is only connected to the power component 30, without the need to connect the adjustment component 20, the base 10 obtains the game data and the adjustment information through the smart device, and outputs the force feedback based on the adjustment information, the game data and the power component 30.
[0088] In summary, the present application can connect the base 10 by selecting a suitable adjustment component 20 and a corresponding power component 30, so that the base 10 outputs corresponding force feedback, improves the user's personalized experience, and when the driver needs a larger or smaller peak force feedback, the entire base 10 does not need to be replaced, reducing the cost and improving the convenience.
[0089] The above is only an embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A base assembly for regulating torque upgradation, characterized by, The application relates to a base, a plurality of adjusting assemblies and a plurality of power supply assemblies. The base is provided with at least one first interface and at least one second interface at one end, and is provided with a third interface at the other end and is connected with a control device through the third interface. The adjusting assemblies are inserted into the first interface and are connected with the base through the first interface. The power supply assemblies correspond to the adjusting assemblies and are connected with the base through the second interface, and the power supply assemblies are used for providing power output for the base. When any one of the adjusting assemblies and the power supply assemblies corresponding to the adjusting assemblies are connected with the base, the base is used for outputting corresponding force feedback to the control device based on the adjusting assemblies and the power supply assemblies.
2. The susceptor assembly of claim 1, wherein, Each adjusting assembly comprises a first connecting piece and an adjusting piece arranged on the first connecting piece, the adjusting piece is used for controlling force feedback output by the base, and the first connecting piece is configured to be connected with the first interface so as to connect the adjusting assembly with the base.
3. The susceptor assembly of claim 2, wherein, Each power supply assembly comprises a power supply and a second connecting piece, the power supply corresponds to the adjusting piece, the power supply is connected with one end of the second connecting piece, and the other end of the second connecting piece is configured to be connected with the second interface so as to connect the power supply assembly with the base.
4. The susceptor assembly of claim 3, wherein, When any one of the adjusting pieces and the power supplies corresponding to the adjusting pieces are connected with the base, the base outputs force feedback to the control device based on the adjusting pieces and the power supplies.
5. The susceptor assembly of claim 1, wherein, The base comprises a first circuit board, a driving piece and a third connecting piece, one end of the driving piece is connected with the first circuit board, the other end of the driving piece is connected with one end of the third connecting piece, and the other end of the third connecting piece is connected with the control device.
6. The susceptor assembly of claim 5, wherein, The first interface and the second interface are arranged on the side of the first circuit board away from the driving piece, the adjusting assembly is connected with the first circuit board through the first interface, and the power supply assembly corresponding to the adjusting assembly is connected with the first circuit board through the second interface.
7. The susceptor assembly of claim 6, wherein, When the adjusting assembly and the power supply assembly corresponding to the adjusting assembly are connected with the first circuit board, the first circuit board controls the driving piece to output force feedback to the control device through the third connecting piece based on the adjusting assembly and the power supply assembly.
8. The susceptor assembly of claim 5, wherein, The base further comprises a second circuit board and a third circuit board, the second circuit board is located at one end of the third connecting piece close to the driving piece, the third circuit board is located at one end of the third connecting piece away from the driving piece, one end of the driving piece is connected with the first circuit board, the other end of the driving piece is connected with the second circuit board and the third circuit board respectively, the third interface is arranged on the side of the third circuit board away from the second circuit board, and the third circuit board is connected with the control device through the third interface. When the adjusting assembly and the power supply assembly corresponding to the adjusting assembly are connected to the first circuit board, the first circuit board controls the driving member to output a torque to the third circuit board based on the adjusting assembly and the power supply assembly, and the third circuit board outputs a force feedback to the control device based on the torque.
9. The susceptor assembly of claim 5, wherein, The base further comprises a housing, the first circuit board, the driving member and the third connecting member are located in the housing, and the adjusting assembly and the power supply assembly are located outside the housing.
10. A smart device, comprising: The smart device comprises game data, the smart device is connected to a base, the base is the base in the base assembly of any one of claims 1-9, and the smart device sends the game data to the base, and the base is used for outputting a force feedback based on the game data, the adjusting assembly and the power supply assembly.