A compact interactive function box
Patent Information
- Application Number
- CN202522534359.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-28
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-28
AI Technical Summary
现有壳体内功能组件包括语音组件、照明组件等,功能组件散乱地设置在壳体内,既导致空间利用效率低,增大了壳体体积,还导致线路交错混乱,影响装配维护效率,影响使用体验
[0018]本实用新型的有益效果:将电池设置在支架侧方,将语音组件和发光组件分置在支架的两端部处,确保容纳腔内各区域空间能被有效利用,既提升容纳腔内空间利用效率,有效减小壳体体积,还方便线路铺设,提升装配维护效率,提升使用体验。
Smart Images

Figure CN224818370U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliances, specifically to an interactive functional box. Background Technology
[0002] Existing interactive functional boxes consist of a housing and functional mechanisms housed within it. These mechanisms enclose various functional components to meet user needs in different scenarios. The existing housing contains functional components such as voice and lighting components. These components are scattered throughout the housing, resulting in low space utilization efficiency, increased housing size, and tangled wiring, which negatively impacts assembly and maintenance efficiency and the user experience. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a compact interactive functional box that separates the battery, voice component, and light-emitting component into different areas of the housing cavity. This not only makes reasonable use of the space within the housing cavity and effectively reduces the size of the housing, but also facilitates wiring, improves assembly and maintenance efficiency, and enhances the user experience.
[0004] This utility model is achieved through the following method: a compact interactive functional box includes a shell with an internal receiving cavity and a functional mechanism disposed within the receiving cavity. A support is provided in the center of the receiving cavity. The functional mechanism includes a battery disposed on the side of the support and lighting and voice components disposed at opposite ends of the support, so that the battery, lighting, and voice components are arranged in a staggered and compact manner within the receiving cavity. By placing the battery on the side of the support and distributing the voice and lighting components at opposite ends of the support, the space within the receiving cavity is effectively utilized, improving space utilization efficiency, reducing shell volume, facilitating wiring, improving assembly and maintenance efficiency, and enhancing the user experience.
[0005] Preferably, the housing includes a base and an upper cover that can be vertically stacked and enclosed to form the receiving cavity. The base has an upward-facing exposed mounting groove, and the functional mechanism is installed in the mounting groove and covered by the upper cover. The housing has a modular structure, including independently machined and stackable base and upper cover, which facilitates processing and assembly, reduces processing difficulty, and allows the use of different materials for the base and upper cover to achieve corresponding functional effects. The mounting groove in the base is exposed upwards, facilitating disassembly and maintenance.
[0006] Preferably, the bottom wall of the mounting groove extends upward to form a central connecting post, and the bracket overlaps the central connecting post from top to bottom and is fixed and locked in place by fasteners. There are at least two central connecting posts, which are used to support and fix the bracket, ensuring that the bracket has a fixed position within the receiving cavity.
[0007] Preferably, the bottom wall of the mounting groove, located in the side region of the bracket, extends upward to form two opposing arc-shaped limiting plates. These limiting plates enclose a cylindrical mounting chamber, into which the battery is inserted and secured. The vertically positioned limiting plates facilitate injection molding and demolding. The cylindrical mounting chamber formed by the limiting plates effectively secures and limits the battery, preventing it from shifting and posing a safety hazard, and also effectively reduces noise.
[0008] Preferably, there are two batteries, which are placed on both sides of the bracket to effectively utilize the space on both sides of the bracket, improve space utilization efficiency, and extend the operating time of the functional mechanism.
[0009] Preferably, the base has an exposed charging port on its rear wall, through which the battery is connected to an external power source. The charging port can be connected to an external power source via a charging cable to charge the battery, ensuring a continuous power supply for the functional mechanisms.
[0010] Preferably, the upper cover is made of a light-transmitting material, through which the light generated by the lighting component is scattered outwards. The upper cover allows light to pass through, serving both to shield the functional mechanisms within the mounting slot and to ensure that the light generated by the lighting component diffuses outwards.
[0011] Preferably, the top two sides of the upper cover extend upward to form symmetrical decorative ears. The decorative ears are vertical strips with a rabbit ear outline, making the shell look like a rabbit. This provides the user with a point of leverage to grip the shell and also enhances the aesthetics.
[0012] Preferably, the lighting assembly includes a light switch fixed to the rear end of the bracket, a light-emitting element disposed on the top surface of the bracket, and a light control board disposed below the rear end of the bracket. The light switch passes through the rear wall of the base and is exposed, so that pressing the light switch triggers the light-emitting element to open and close via the light control board. The lighting assembly is disposed at the rear of the receiving cavity, effectively avoiding the battery and voice components. The light switch is fixed to the rear end of the bracket and exposed on the rear wall of the base, making it convenient for the user to press and trigger the light-emitting element. The light-emitting element is disposed on the top surface of the bracket, allowing light to propagate upwards and diffuse evenly outwards after passing through the upper cover.
[0013] Preferably, the rear of the bottom wall of the mounting groove extends upward to form a rear connecting post, and the lighting control board is horizontally attached to the rear connecting post and secured with fasteners. The height of the rear connecting post is less than that of the central connecting post, so that the lighting control board is located below the bracket, effectively utilizing the space below the rear end of the bracket.
[0014] Preferably, the light switch includes a light button exposed on the rear wall of the base and a light trigger plate inserted and fixed to the rear end of the bracket. The light button moves under force and triggers the light trigger plate. The light button is exposed on the rear wall of the base for easy pressing by the user. The light button moves under force and triggers the light trigger plate, thereby transmitting a switch signal to the light control board.
[0015] Preferably, the voice component includes a voice switch located on the front end of the bracket, a voice control panel located below the front end of the bracket, and a speaker and microphone connected to the voice control panel. The speaker, microphone, and voice switch are all exposed on the front wall of the base. The voice component is positioned at the front of the receiving cavity, effectively avoiding the battery and lighting components. The voice switch is fixed to the front end of the bracket and exposed on the front wall of the base, allowing the user to easily press and activate the voice component. The voice control panel receives external sound sources through the microphone and generates an internal sound source that propagates outwards through the speaker, thus forming a voice interaction with the user. The speaker and microphone are both exposed on the front wall of the base to facilitate sound propagation.
[0016] Preferably, the front of the bottom wall of the mounting groove extends upward to form two limiting strips, and the voice control board is vertically inserted and positioned between the limiting strips. The height of the limiting strips matches the height of the voice control board and is lower than the central connecting column. The voice control board is vertically inserted between the limiting strips, effectively utilizing the space below the front end of the bracket.
[0017] Preferably, the voice switch includes a voice button exposed on the front wall of the base and a voice trigger plate inserted and fixed to the front end of the bracket. The voice button moves under force and triggers the voice trigger plate. The voice button is exposed on the front wall of the base for easy pressing by the user. The movement of the voice button under force triggers the voice trigger plate, thereby transmitting a switch signal to the voice control board.
[0018] The beneficial effects of this utility model are as follows: By placing the battery on the side of the bracket and placing the voice component and the light-emitting component at the two ends of the bracket, the space in each area of the cavity can be effectively utilized, which not only improves the space utilization efficiency of the cavity and effectively reduces the size of the shell, but also facilitates the laying of circuits, improves the efficiency of assembly and maintenance, and enhances the user experience. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the disassembled structure of the interactive function box;
[0020] Figure 2 This is a cross-sectional view of the interactive function box.
[0021] Figure 3 This is a top view of the base structure.
[0022] Figure 4This is a schematic diagram of the structure of the base;
[0023] Figure 5 This is a partial cross-sectional view of the base.
[0024] Figure 6 This is another partial cross-sectional view of the base.
[0025] In the diagram: 1. Bracket, 2. Battery, 3. Lighting component, 4. Voice component, 5. Base, 6. Top cover, 7. Central connecting column, 8. Limiting plate, 9. Charging port, 10. Decorative ear, 11. Lighting element, 12. Lighting control board, 13. Lighting trigger board, 14. Lighting button, 15. Voice control board, 16. Speaker, 17. Microphone, 18. Limiting clip, 19. Voice button, 20. Voice trigger board, 21. Rear connecting column. Detailed Implementation
[0026] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0027] like Figure 1 and 2 The illustrated interactive functional box features a compact structure, including a housing with an internal cavity and functional mechanisms disposed within the cavity. A support 1 is located in the center of the cavity. The functional mechanisms include a battery 2 positioned on the side of the support 1, and an illumination component 3 and a voice component 4 disposed at opposite ends of the support 1. This arrangement of the battery 2, illumination component 3, and voice component 4 within the cavity ensures efficient use of space within the cavity, improving space utilization, reducing housing volume, facilitating wiring, enhancing assembly and maintenance efficiency, and improving the user experience.
[0028] In actual operation, the bracket 1 is set in the middle of the receiving cavity, and the length direction of the bracket 1 coincides with the front-to-back centerline of the housing. This divides the receiving cavity into a front area for the installation of the voice component 4, a rear area for the installation of the lighting component 3, and a side area for the installation of the battery 2. This not only makes effective use of the space inside the receiving cavity, but also allows the internal wiring of the battery 2, lighting component 3, and voice component 4 to be set independently, effectively reducing the intersecting wiring and facilitating assembly and maintenance.
[0029] In actual operation, the housing includes a base 5 and an upper cover 6 that can be vertically stacked and enclosed to form the receiving cavity. The base 5 has an upward-facing mounting groove, and the functional mechanism is installed in the mounting groove and covered by the upper cover 6. The base 5 and the upper cover 6 are independently processed and can be stacked and fixed together to form the receiving cavity.
[0030] In practice, since the upper cover 6 and the base 5 are processed independently, they can use different materials and achieve different effects. The base 5 is made of a relatively hard material, and the functional mechanisms are all set in the mounting groove of the base 5, which not only protects the functional mechanisms but also facilitates disassembly and maintenance. The upper cover 6 is made of a light-transmitting material, and the light generated by the lighting component 3 is scattered outward through the upper cover 6, which facilitates the outward propagation of light and can also change the color of the light, enhancing the decorative effect. In addition, the top two sides of the upper cover 6 extend upward to form symmetrical decorative ears 10, and the shape of the upper cover 6 can also be adjusted and changed as needed, which should also be considered as a specific embodiment of this utility model.
[0031] In practice, the bottom wall of the mounting groove extends upward to form a central connecting post 7 (e.g., Figure 3 As shown, the bracket 1 overlaps the central connecting column 7 from top to bottom and is fixed and locked by fasteners. The central connecting column 7 extends upward from the bottom wall of the mounting groove, ensuring that the central connecting column 7 has good structural strength and facilitating integrated injection molding, thus improving processing convenience. A screw hole is opened in the middle of the top surface of the central connecting column 7, and the fastener passes through the bracket 1 and is screwed into the screw hole to lock it, ensuring that the bracket 1 is reliably positioned at the preset work position.
[0032] In actual operation, the bottom wall of the mounting groove, located in the side area of the bracket 1, extends upward to form two opposing arc-shaped limiting plates 8 (e.g., Figure 4 As shown, the limiting plates 8 enclose a cylindrical mounting compartment, into which the battery 2 is inserted and secured. The battery 2 is cylindrical and has the same diameter as the mounting compartment, allowing it to be securely held within the compartment. Two batteries 2 are positioned on either side of the bracket 1, effectively utilizing the space on both sides of the receiving cavity and ensuring vertical misalignment between the mounting compartment and the bracket 1, facilitating vertical insertion and removal of the batteries 2 for replacement and maintenance.
[0033] In actual operation, the rear wall of the base 5 is provided with an exposed charging interface 9, and the battery 2 is connected to an external power source through the charging interface 9. The charging interface 9 is connected to the mounting compartment by a wire, so that the electrical energy obtained by the charging interface 9 can be stored in the battery 2 and provide the power required for the operation of the voice component 4 and the lighting component 3.
[0034] In actual operation, the lighting assembly 3 includes a light switch fixed to the rear end of the bracket 1, a light-emitting element 11 disposed on the top surface of the bracket 1, and a light control board 12 disposed below the rear end of the bracket 1. The light switch passes through the rear wall of the base 5 and is exposed, so that when the light switch is pressed, it is triggered and the light-emitting element 11 is driven to open and close via the light control board 12. Users can turn the light-emitting element 11 on and off or switch between different lighting modes by pressing the light switch to meet the usage needs of different scenarios.
[0035] In actual operation, the rear part of the bottom wall of the mounting groove extends upward to form a rear connecting column. The lighting control board 12 is horizontally attached to the rear connecting column and fixed and locked with fasteners. There are two rear connecting columns, which are used to support and fix the lighting control board 12. Since the lighting control board 12 is small, it can be placed horizontally, which facilitates connection with the separate light-emitting components 11 and light switches.
[0036] In actual operation, the light-emitting element 11 can be a single light source or multiple light sources, both of which should be regarded as specific embodiments of this utility model.
[0037] In actual operation, the light switch includes a light button 14 exposed on the rear wall of the base 5 and a light trigger plate 13 inserted and fixed to the rear end of the bracket 1 (e.g., Figure 5 As shown, the light button 14 moves under force and triggers the light trigger plate 13. The light button 14 is exposed on the rear wall of the base 5, serving both to transmit force and as a decorative element. The light trigger plate 13 is triggered by force and transmits a signal to the light control board 12.
[0038] In actual operation, the voice component 4 includes a voice switch located on the front end of the bracket 1, a voice control board 15 located below the front end of the bracket 1, and a speaker 16 and a microphone 17 connected to the voice control board 15 (e.g., ...). Figure 6 As shown, the speaker 16, microphone 17, and voice switch are all exposed on the front wall of the base 5. The voice control board 15 can be opened and closed by the voice switch. When opened, the voice control board 15 receives external sound sources through the microphone 17, processes them, and plays audio out through the speaker 16, thus performing the function of voice interaction.
[0039] In actual operation, the front part of the bottom wall of the mounting groove extends upward to form two limiting clamps 18, and the voice control board 15 is vertically inserted and positioned between the limiting clamps 18. The limiting clamps 18 are upright, and vertical clamping grooves are opened on the corresponding side walls of the limiting clamps 18. The side edge of the voice control board 15 is inserted into the corresponding clamping groove to ensure that the voice control board 15 is reliably positioned.
[0040] In actual operation, the voice switch includes a voice button 19 exposed on the front wall of the base 5 and a voice trigger plate 20 inserted and fixed to the front end of the bracket 1. The voice button 19 moves under force and triggers the voice trigger plate 20. The voice button 19, exposed on the front wall of the base 5, serves both to transmit force and as a decorative element. The voice trigger plate 20 is triggered by force and transmits a signal to the voice control panel 15.
Claims
1. A compact interactive functional box, comprising a housing with an internal receiving cavity and a functional mechanism disposed within the receiving cavity, characterized in that, The cavity is provided with a support (1) in the middle. The functional mechanism includes a battery (2) disposed on the side of the support (1) and a lighting component (3) and a voice component (4) disposed at both ends of the support (1), so that the battery (2), the lighting component (3) and the voice component (4) are staggered and compactly arranged in the cavity.
2. The compact interactive functional box according to claim 1, characterized in that, The housing includes a base (5) that can be stacked vertically and enclosed to form the receiving cavity and an upper cover (6). The base (5) has an upwardly exposed mounting groove, and the functional mechanism is installed in the mounting groove and covered and shielded by the upper cover (6).
3. The compact interactive functional box according to claim 2, characterized in that, The bottom wall of the mounting groove extends upward to form a central connecting column (7), and the bracket (1) overlaps the central connecting column (7) from top to bottom and is fixed and locked by fasteners.
4. The compact interactive functional box according to claim 2, characterized in that, The bottom wall of the mounting groove is located on the side of the bracket (1) and extends upward to form two opposing arc-shaped limiting plates (8). The limiting plates (8) enclose a cylindrical mounting compartment, and the battery (2) is inserted into the mounting compartment and fixed in place.
5. The compact interactive functional box according to claim 4, characterized in that, The batteries (2) are two and are placed on both sides of the bracket (1); or, the rear wall of the base (5) is provided with an exposed charging interface (9), and the batteries (2) are connected to an external power source through the charging interface (9).
6. The compact interactive functional box according to claim 2, characterized in that, The upper cover (6) is made of a light-transmitting material, and the light generated by the lighting component (3) is scattered outward through the upper cover (6); or, the top two sides of the upper cover (6) are extended upward to form symmetrical decorative ears (10).
7. A compact interactive functional box according to any one of claims 2-6, characterized in that, The lighting assembly (3) includes a light switch fixed to the rear end of the bracket (1), a light-emitting element (11) disposed on the top surface of the bracket (1), and a light control board (12) disposed below the rear end of the bracket (1). The light switch passes through the rear wall of the base (5) and is exposed so that the light switch can be pressed and triggered, and the light-emitting element (11) can be opened and closed by the light control board (12).
8. The compact interactive functional box according to claim 7, characterized in that, The rear part of the bottom wall of the mounting groove extends upward to form a rear connecting post (21), and the light control board (12) is horizontally attached to the rear connecting post (21) and fixed and locked by fasteners; or, the light switch includes a light button (14) exposed on the rear wall of the base (5) and a light trigger plate (13) inserted and fixed on the rear end of the bracket (1), and the light button (14) moves under force and triggers the light trigger plate (13).
9. A compact interactive functional box according to any one of claims 2-6, characterized in that, The voice component (4) includes a voice switch on the front end of the bracket (1), a voice control board (15) below the front end of the bracket (1), and a speaker (16) and a microphone (17) connected to the voice control board (15). The speaker (16), microphone (17) and voice switch are all exposed on the front wall of the base (5).
10. A compact interactive functional box according to claim 9, characterized in that, The front part of the bottom wall of the mounting groove extends upward to form two limiting clips (18), and the voice control board (15) is inserted and positioned between the limiting clips (18) in a vertical position; or, the voice switch includes a voice button (19) exposed on the front wall of the base (5) and a voice trigger plate (20) inserted and fixed on the front end of the bracket (1), and the voice button (19) moves under force and triggers the voice trigger plate (20).