A new electrically powered rebounder

The modularly designed electric bouncer integrates a drive unit and a control module, solving the problems of short lifespan, fixed trigger force, and insufficient intelligence of the bouncer. It achieves intelligent interaction and stable drive, making it suitable for smart home scenarios.

CN224532515UActive Publication Date: 2026-07-21SHENZHEN COLORLIGHT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN COLORLIGHT TECHNOLOGY CO LTD
Filing Date
2025-08-22
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing bouncers suffer from problems such as short service life, fixed trigger force, lack of intelligent interactive functions, complex installation and maintenance, and insufficient safety protection.

Method used

The modularly designed electric bouncer integrates a drive unit, control module, and sensors. Through components such as micro motors, transmission mechanisms, and infrared sensors, it achieves precise driving and intelligent control, making it suitable for smart home scenarios.

Benefits of technology

It achieves intelligent interaction and stable driving of the bouncer, extends its service life, simplifies installation and maintenance, and improves safety and adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel electric rebounder, the rebounder passes through the optimization structure design and the intelligent control integration, adopts the modular assembly of installation base and protection shell, combines drive unit, control module and its linkage, realizes the accurate drive and intelligent control of external telescopic component, effectively solves the problem that traditional rebounder is single function, poor adaptability and intelligent deficiency. Utility model includes installation base and protection shell, and protection shell is limited cooperation in installation base, and protection shell is equipped with drive unit, control module in, drive unit includes micro motor and transmission mechanism, and control module is used for controlling the start -stop and positive -negative rotation of micro motor, and transmission mechanism is used for pushing external telescopic component. The utility model discloses is applied to rebounder technical field.
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Description

Technical Field

[0001] This invention relates to the field of rebound device technology, and in particular to a novel electric rebound device. Background Technology

[0002] With the rapid development of the smart home industry, the demand for automation and intelligence in rebound mechanisms, which are used for opening and closing furniture, cabinets, and other items, is becoming increasingly prominent. Currently, rebound mechanisms on the market are mainly divided into two categories: mechanical push-button type and simple electric type. Mechanical push-button rebound mechanisms rely on a physical spring structure to achieve rebound, which has drawbacks such as short lifespan, fixed trigger force, and lack of intelligent interactive functions. Simple electric rebound mechanisms, although incorporating motor drive, generally adopt a single control mode, lacking intelligent modules such as infrared sensing and wireless remote control, and also suffer from complex installation and maintenance, and insufficient safety protection.

[0003] To address the aforementioned problems, this utility model provides a novel electric rebound device. This rebound device integrates optimized structural design and intelligent control, adopts modular assembly of mounting base and protective shell, and combines drive unit, control module and their linkage to achieve precise driving and intelligent control of external telescopic components, effectively solving the problems of traditional rebound devices having single function, poor adaptability and insufficient intelligence. Utility Model Content

[0004] To overcome the shortcomings of existing technologies, this utility model provides a novel electric rebound device that integrates intelligent control and efficient transmission. It utilizes a control module to link intelligent components such as motors and sensors to achieve intelligent interaction and stable drive, making it suitable for smart home scenarios.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] This utility model provides a novel electric rebound device, including a mounting base and a protective shell. The protective shell is fitted onto the mounting base. The protective shell contains a drive unit and a control module. The drive unit includes a micro motor and a transmission mechanism. The control module is used to control the start, stop, and forward / reverse rotation of the micro motor. The transmission mechanism is used to push an external telescopic component.

[0007] As described above, in a novel electric rebounder, the mounting base is provided with at least one threaded hole, and the mounting base is fitted onto an external table surface by means of the threaded hole and screws.

[0008] As described above, in a novel electric rebounder, the transmission mechanism includes a gear set, a lead screw, and a nut component. The output shaft of the micro motor is connected to the lead screw via the gear set, and the nut component is sleeved on the lead screw and drives and moves in conjunction with an external telescopic component.

[0009] As described above, in a novel electric rebound device, the control module includes a microprocessor and a wireless communication module. The microprocessor is used to receive and process electrical signals, and the wireless communication module is used to receive signal transmissions from a mobile phone or remote control.

[0010] As described above, in a novel electric rebound device, an infrared sensor is provided on the mounting base. The infrared sensor is electrically coupled with the control module. The infrared sensor is used to detect whether there is an obstruction in front and transmits the signal to the control module.

[0011] The novel electric bouncer described above further includes a power supply component, which includes a built-in rechargeable battery and an interface for an external power source. The control module integrates a power management circuit for battery charging management and overcharge / over-discharge protection.

[0012] As described above, the control module of the novel electric rebounder is further provided with a manual trigger interface, which is connected and cooperates with an external mechanical button to manually control the operation of the drive unit when the infrared sensor fails.

[0013] As described above, in a novel electric rebound device, the bottom of the protective housing is provided with a limiting buckle, and the mounting base is provided with a buckle hole adapted to the limiting buckle. The protective housing is fixedly mounted on the mounting base by the cooperation of the limiting buckle and the buckle hole.

[0014] The beneficial effects of this utility model are as follows: The mounting base provides a stable installation foundation for the protective shell, ensuring precise assembly of internal components without displacement. The protective shell effectively supports and limits the internal electronic components and mechanical parts. Simultaneously, its sealed design provides dustproof, moisture-proof, and impact-resistant protection, significantly extending the service life of the components. The micro-motor can achieve bidirectional rotation by changing the direction of the current, providing a stable driving force for the device. Combined with a transmission mechanism to adjust torque, it can precisely drive external telescopic components to extend or retract. The control module is responsible for signal processing and motor control, receiving commands to link with the drive unit to complete operations. The overall structure is stable and reliable, adapting to the needs of smart home scenarios. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a schematic diagram of the structure of this utility model in its non-working state;

[0018] Figure 2 This is a structural schematic diagram of the working state of this utility model;

[0019] Figure 3 This is an exploded structural diagram of the present invention;

[0020] Figure 4 This is a schematic diagram of the mounting base structure;

[0021] Figure 5 This is a schematic diagram of the structure of a micro motor and transmission mechanism;

[0022] Figure 6 This is a schematic diagram of the installation structure of the protective shell and the mounting base. Detailed Implementation

[0023] 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.

[0024] like Figure 1 and Figure 6As shown, in this embodiment, the present invention includes a mounting base 1 and a protective housing 2. The protective housing 2 is fitted onto the mounting base 1. The protective housing 2 is provided with a drive unit 3 and a control module 4. The drive unit 3 includes a micro motor 30 and a transmission mechanism 31. The control module 4 is used to control the start, stop and forward / reverse rotation of the micro motor 30. The transmission mechanism 31 is used to push the external telescopic component. Therefore, the mounting base 1 provides the foundation for the protective housing 2, ensuring precise assembly of the internal components and preventing internal displacement. The protective housing 2 supports and limits the internal electronic components and mechanical parts, while also providing sealing against dust, moisture, and impact, thus extending the service life of the components. The micro motor 30 provides driving force and can achieve bidirectional rotation by changing the current direction, driving the extension or retraction of the telescopic component. The transmission mechanism 31 adjusts the torque, and the control module 4 processes signals and controls the micro motor 30. In this invention, the control module 4 receives commands to start the micro motor 30, which drives the transmission mechanism 31. The transmission mechanism 31 then pushes the externally extended component to complete the operation. The entire process is stabilized and protected by the mounting base 1 and the protective housing 2. This design is suitable for smart home scenarios.

[0025] Furthermore, in this embodiment, the mounting base 1 is provided with at least one threaded hole 10, and the mounting base 1 is positioned on the external platform through the threaded hole 10 and the screw 11. Thus, the mounting base 1 provides support and positioning for the at least one threaded hole 10, and the screw 11 secures the mounting base 1 to the external platform. This screw 11 fixation allows for quick disassembly of the mounting base 1 for maintenance without destructive operations, greatly improving installation and maintenance efficiency. Moreover, the use of screw 11 saves design costs, achieving a balance between stability, maintainability, and cost control.

[0026] Furthermore, in this embodiment, the transmission mechanism 31 includes a gear set, a lead screw, and a nut component. The output shaft of the micro motor 30 is connected to the lead screw via the gear set, and the nut component is sleeved on the lead screw and drives the external telescopic component. Thus, the gear set amplifies the driving force of the micro motor 30, and the lead screw meshes with the nut component to convert rotational motion into linear motion.

[0027] Furthermore, in this embodiment, the control module 4 includes a microprocessor and a wireless communication module. The microprocessor is used to receive and process electrical signals, and the wireless communication module is used to receive signal transmissions from a mobile phone or remote control. Therefore, the microprocessor is the core of the control module 4, and its function is to control other components by receiving and processing various electrical signals. The wireless communication module plays a role in wireless remote interactive signal transmission, suitable for smart device scenarios in the Internet of Things era.

[0028] Furthermore, in this embodiment, an infrared sensor 5 is provided on the mounting base 1. The infrared sensor 5 is electrically connected to the control module 4. The infrared sensor 5 is used to detect whether there is an obstruction in front and transmits the signal to the control module 4. Thus, the mounting base 1 serves to install and limit the infrared sensor 5. The infrared sensor 5 sends and receives reflected signals to detect whether the door in front is open or closed. The infrared sensor 5 transmits the signal to the control module 4. After receiving the signal, the control module 4 can transmit signals to enable functions such as switching lights on or off. Intelligent functions are achieved through the linkage between the sensor and the control module 4.

[0029] Optionally, in this embodiment, the electric bouncer further includes a power supply component, which includes a built-in rechargeable battery and an interface for an external power source. The control module 4 integrates a power management circuit for battery charging management and overcharge / over-discharge protection. Thus, the electric bouncer provides support and limitation for the power supply component, while the power supply component provides energy to drive the electric bouncer, allowing it to be fixed in any position without being constrained by an external power source. The built-in rechargeable battery and interface for an external power source reduce the consumption of disposable batteries, lower long-term operating costs, and comply with environmental standards. This achieves a balance between portability and energy efficiency, meeting the demands of modern electronic devices for long battery life, ease of maintenance, and environmental friendliness.

[0030] Optionally, in this embodiment, the control module 4 also includes a manual trigger interface, which connects and cooperates with an external mechanical button to manually control the operation of the drive unit 3 when the infrared sensor 5 fails. Thus, the control module 4 provides support and fixation for the manual trigger interface. By integrating the manual trigger interface and the mechanical button, a redundant control mechanism is constructed to ensure that the user can still safely operate the equipment even when the automatic control system, such as the infrared sensor or wireless module, fails.

[0031] Furthermore, in this embodiment, the bottom of the protective housing 2 is provided with a limiting buckle 20, and the mounting base 1 is provided with a buckle hole adapted to the limiting buckle 20. The protective housing 2 is limited and installed on the mounting base 1 by the cooperation of the limiting buckle 20 and the buckle hole. It can be seen that the protective housing 2 provides support and fixation for the limiting buckle 20. The protective housing 2 can be quickly assembled and disassembled on the mounting base 1 by the limiting buckle 20 without the need for tools. Moreover, the limiting buckle 20 is integrally formed on the protective housing 2, eliminating the need for secondary assembly processes and improving assembly efficiency. It achieves a balance between assembly efficiency, cost, and reliability, meeting the comprehensive requirements of modern intelligent devices for "ease of use, durability, and low cost".

[0032] The working principle of this utility model is as follows:

[0033] The present invention is fixed to the side wall of the cabinet or other positions by the threaded hole 10 and screw 11 of the mounting base 1. The protective shell 2 is assembled by the limit buckle 20 cooperating with the buckle hole of the mounting base 1. The infrared sensor 5 monitors the opening and closing status of the cabinet door in real time and transmits the signal to the control module 4. When the cabinet door is opened, the lights inside the cabinet are turned on under the control of the control module 4.

[0034] On the other hand, the operator can send commands to the control module 4 via mobile phone, voice, or manual means, so that the control module 4 can start the micro motor 30. The micro motor 30 drives the lead screw to rotate through the gear set. The nut component on the lead screw converts the rotational motion into linear motion and pushes the external telescopic component to realize the opening and closing operation of the cabinet door. During this process, the power supply component supplies power to the entire device. The power management circuit on the control module 4 manages the charging and discharging of the battery and provides overcharge and over-discharge protection to ensure the stable operation of the device.

[0035] It should be understood that the terms "first," "second," etc., are used in this utility model to describe various information, but this information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this utility model, "first" information can also be referred to as "second" information, and similarly, "second" information can also be referred to as "first" information. In addition, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0036] The above embodiments do not limit the scope of protection of this utility model. All equivalent modifications and variations made by those skilled in the art without departing from the overall concept of this utility model shall still fall within the scope of this utility model.

Claims

1. A novel electric rebounder, comprising a mounting base (1) and a protective housing (2), wherein the protective housing (2) is fitted onto the mounting base (1), characterized in that, The protective housing (2) is provided with a drive unit (3) and a control module (4). The drive unit (3) includes a micro motor (30) and a transmission mechanism (31). The control module (4) is used to control the start, stop and forward / reverse rotation of the micro motor (30). The transmission mechanism (31) is used to push the external telescopic component.

2. The novel electric rebound device according to claim 1, characterized in that, The mounting base (1) is provided with at least one threaded hole (10), and the mounting base (1) is limited and fitted on the outer table surface by the threaded hole (10) and screws (11).

3. The novel electric rebound device according to claim 1, characterized in that, The transmission mechanism (31) includes a gear set, a lead screw and a nut component. The output shaft of the micro motor (30) is connected to the lead screw through the gear set. The nut component is sleeved on the lead screw and is driven and linked with the external telescopic component.

4. The novel electric rebound device according to claim 1, characterized in that, The control module (4) includes a microprocessor and a wireless communication module. The microprocessor is used to receive and process electrical signals, and the wireless communication module is used to receive signal transmissions from a mobile phone or remote control.

5. A novel electric rebound device according to claim 1, characterized in that, An infrared sensor (5) is provided on the mounting base (1). The infrared sensor (5) is electrically connected to the control module (4). The infrared sensor (5) is used to detect whether there is an obstruction in front and transmit the signal to the control module (4).

6. The novel electric rebound device according to claim 1, characterized in that, The electric rebounder also includes a power supply component, which includes a built-in rechargeable battery and an interface for an external power supply. The control module (4) integrates a power management circuit for battery charging management and overcharge and over-discharge protection.

7. A novel electric rebound device according to claim 5, characterized in that, The control module (4) is also provided with a manual trigger interface, which is connected and cooperates with an external mechanical button to manually control the operation of the drive unit (3) when the infrared sensor (5) fails.

8. A novel electric rebound device according to claim 1, characterized in that, The bottom of the protective housing (2) is provided with a limiting buckle (20), and the mounting base (1) is provided with a buckle hole that is adapted to the limiting buckle (20). The protective housing (2) is limited and installed on the mounting base (1) by the cooperation of the limiting buckle (20) and the buckle hole.