Smart voice mouse that is easy to assemble in a modular fashion

The intelligent voice mouse, with its modular structure design, solves the problem of inconvenient disassembly and assembly in existing intelligent voice mice, achieving convenient maintenance and reduced maintenance costs.

CN224581877UActive Publication Date: 2026-07-31HEFEI YIKANG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEFEI YIKANG TECHNOLOGY CO LTD
Filing Date
2025-09-01
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing smart voice mice, due to their integrated design, are difficult and costly to repair when components are damaged, and cannot be easily disassembled and reassembled.

Method used

It adopts a modular structure design, with the bottom groove, inner shell, outer shell and outer button detachably connected by threaded sleeve and spring structure, and the integrated circuit board, roller mechanism and voice recognition module can be detached and installed.

Benefits of technology

It enables convenient assembly and disassembly of the smart voice mouse, reducing maintenance difficulty and cost, and improving maintenance efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of voice mouse technology, specifically disclosing an intelligent voice mouse that is easy to assemble modularly. The bottom plate has a photoelectric window in the middle; an integrated circuit board is detachably installed in the middle of the bottom cavity, and a roller mechanism, inner buttons, and a voice recognition module are inserted into the top surface of the integrated circuit board; the outer edge of the bottom end of the inner shell is detachably installed in the bottom cavity, and a roller groove is provided in the middle of the rear end of the top surface of the inner shell, with recessed grooves on both sides of the middle, and a button groove in the middle of the recessed grooves; the outer shell includes a ring sleeve detachably fitted onto the bottom of the inner shell and a rear cover integrally formed on the front of the top end of the ring sleeve; the outer button includes a button plate, a locking block integrally formed on the bottom surface of the button plate and engaging with the button groove, and a threaded sleeve three integrally formed on the rear end of the bottom surface of the locking block; a screw one is threadedly engaged with the threaded sleeve three, and its bottom diameter is larger than the width of the button groove. This design effectively solves the problem of intelligent voice mice being inconvenient to disassemble and assemble, thus making them difficult to repair.
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Description

Technical Field

[0001] This utility model relates to the field of voice mouse technology, specifically to an intelligent voice mouse that is easy to assemble in a modular manner. Background Technology

[0002] A mouse is an external input device for computers, serving as an indicator for horizontal and vertical coordinate positioning on a computer display system. Named for its resemblance to a mouse, the mouse is used to simplify and expedite computer operation, replacing the cumbersome commands of the keyboard. With continuous technological advancements, in recent years, intelligent mice with voice recognition capabilities have emerged and are gradually gaining widespread application.

[0003] Existing smart voice mice typically employ an integrated design, with internal components such as microphones, motherboards, batteries, and buttons tightly integrated. If any component (such as the microphone or microswitch) fails, it is inconvenient to disassemble and reassemble, resulting in high repair difficulty and cost, usually requiring the entire mouse to be replaced, leading to waste. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent voice mouse that is easy to modularly assemble, in order to solve the problem that current intelligent voice mice are not easy to disassemble and repair.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a smart voice mouse that is easy to assemble in a modular manner, with a photoelectric window in the middle of the bottom plate of the bottom groove; an integrated circuit board is detachably installed in the middle of the inner cavity of the bottom groove, and a roller mechanism, an inner button, and a voice recognition module are inserted into the top surface of the integrated circuit board; the outer edge of the bottom end of the inner shell is detachably installed on the outer edge of the inner cavity of the bottom groove, a roller groove is provided in the middle of the rear end of the top surface of the inner shell, and recessed grooves are provided on both sides of the middle of the rear end of the top surface of the inner shell, with a button groove in the middle of the recessed groove; the outer shell includes an annular sleeve that is detachably fitted around the bottom periphery of the inner shell and a rear cover integrally formed on the front side of the middle of the top surface of the annular sleeve; the outer button includes a button plate, a locking block integrally formed in the middle of the bottom surface of the button plate and slidingly engaged with the button groove, and a threaded sleeve three integrally formed in the rear end of the bottom surface of the locking block and extending vertically; a screw one is threadedly engaged with the threaded sleeve three, and the bottom diameter is greater than the width of the button groove.

[0006] Preferably, at the four corners of the bottom surface of the inner cavity of the bottom groove, there are threaded sleeves extending vertically, and at the outer edge of the bottom end of the inner shell, there is an annular plate that fits into the inner cavity of the bottom groove. The annular plate is provided with a through hole corresponding to each of the threaded sleeves, and a screw is installed in the through hole with its bottom end threaded into the threaded sleeve.

[0007] Preferably, the bottom surface of the inner cavity of the bottom groove is integrally formed with threaded sleeves extending vertically near the four corners, and the four corners of the integrated circuit board are respectively fitted with screws whose bottom ends are threadedly matched with the threaded sleeves.

[0008] Preferably, the front ends of the two side walls of the button slot are respectively provided with arc-shaped sliding grooves, the top surface of the recessed groove is provided with a circular groove corresponding to the rear end of the button slot, the front ends of the two side walls of the locking block are respectively vertically connected with short shafts that slide and engage with the arc-shaped sliding grooves, and the circular groove is provided with a vertical spring that engages with the threaded sleeve.

[0009] Preferably, the inner shell has side holes that do not penetrate the inner shell side walls at the middle of the two side walls near the bottom. A transverse spring is fitted inside the side hole, and a pin is connected to the outer end of the transverse spring and slidably sleeved with the side hole. The outer end of the pin has a spherical convex structure. The inner walls of the annular sleeve have positioning holes that match the pin in slidable sleeve. The outer wall of the annular sleeve has two through holes at the positions corresponding to the positioning holes.

[0010] Preferably, the bottom groove, inner shell, outer shell, and outer button are all integrally injection molded from polycarbonate.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] The present invention relates to a modularly assembled smart voice mouse, which is detachable and assembled from a modular structure. The main structure is easy to disassemble and assemble, thus effectively solving the problem that smart voice mice are inconvenient to disassemble and assemble, and therefore difficult to repair. Attached Figure Description

[0013] Figure 1 This is an exploded structural diagram of the entire utility model;

[0014] Figure 2 This is a three-dimensional structural diagram of the bottom groove of this utility model;

[0015] Figure 3 This is a three-dimensional structural diagram of the inner shell of this utility model;

[0016] Figure 4 This is a three-dimensional structural diagram of the outer shell of this utility model;

[0017] Figure 5 This is a three-dimensional structural diagram of the button of this utility model.

[0018] In the diagram: 1-bottom groove; 1.1-photoelectric window; 1.2-threaded sleeve one; 1.3-threaded sleeve two;

[0019] 2-Integrated circuit board;

[0020] 3-Inner shell; 3.1-Annular plate; 3.2-Sunken groove; 3.3-Roller groove; 3.4-Button groove; 3.5-Arc-shaped slide groove; 3.6-Circular groove;

[0021] 3.7 - Side hole; 3.8 - Through hole one; 3.9 - Transverse spring; 3.10 - Pin;

[0022] 4-Outer shell; 4.1-Annular sleeve; 4.1.1-Positioning hole; 4.1.2-Through hole two; 4.2-Rear cover;

[0023] 5-External button; 5.1-Button board; 5.2-Card block; 5.3-Short shaft; 5.4-Threaded sleeve three;

[0024] 6-Screw 1;

[0025] 7-Vertical spring;

[0026] 8-Screw Two;

[0027] 9-Screw 3. Detailed Implementation

[0028] 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.

[0029] Please see Figure 1-5 This utility model provides a technical solution: an intelligent voice mouse that is easy to assemble in a modular manner. The bottom plate of the bottom groove 1 has a photoelectric window 1.1 in the middle. The bottom surface of the inner cavity of the bottom groove 1 has a threaded sleeve 2 1.3 extending vertically integrally formed at the four corners. The bottom surface of the inner cavity of the bottom groove 1 has a threaded sleeve 1.2 extending vertically integrally formed at the four corners, i.e., at the inner side of the threaded sleeve 2 1.3.

[0030] The integrated circuit board 2 is detachably installed in the middle of the inner cavity of the bottom groove 1. A roller mechanism, internal buttons, and a voice recognition module are inserted into the top surface of the integrated circuit board 2. Screws 2 and 8, whose bottom ends match the threaded sleeves 1 and 2, are respectively fitted at the four corners of the integrated circuit board 2. That is, the main functional components on the integrated circuit board 2 are assembled on the top surface of the integrated circuit board 2 using quick-connect connectors. The four corners of the integrated circuit board 2 are fixed to the inner cavity of the bottom groove 1 using screws 2 and 8, so that the four corners of the bottom surface of the integrated circuit board 2 are supported on the threaded sleeves 1 and 2.

[0031] The outer edge of the bottom end of the inner shell 3 is detachably installed on the outer edge of the inner cavity of the bottom groove 1. A roller groove 3.3 is provided in the middle of the rear end of the top surface of the inner shell 3. A recessed groove 3.2 is provided on both sides of the middle of the rear end of the top surface of the inner shell 3. A button groove 3.4 is provided in the middle of the recessed groove 3.2. The outer edge of the bottom end of the inner shell 3 is integrally formed with an annular plate 3.1 that fits into the inner cavity of the bottom groove 1. The annular plate 3.1 has a through hole 3.8 corresponding to the threaded sleeve 1.3. A screw 9 with the bottom end matching the threaded sleeve 1.3 is installed in the through hole 3.8. That is, the inner shell 3 is fixed in the inner cavity of the bottom groove 1 by the screw 9. The four corners of the bottom surface of the annular plate 3.1 are supported on the top surface of the threaded sleeve 1.3. The outer edge of the annular plate 3.1 is in contact with the inner circumferential wall of the bottom groove 1. The front ends of the two side walls of the button groove 3.4 are respectively provided with arc-shaped sliding grooves 3.5, and the top surface of the recessed groove 3.2 is provided with a circular groove 3.6 corresponding to the rear end of the button groove 3.4. The middle of the two side walls of the inner shell 3 is provided with side holes 3.7 that do not penetrate the side walls of the inner shell 3. A transverse spring 3.9 is fitted inside the cavity of the side hole 3.7, and the outer end of the transverse spring 3.9 is connected to a pin 3.10 that slides and engages with the side hole 3.7. The outer end of the pin 3.10 has a spherical convex structure.

[0032] The external button 5 includes a button plate 5.1, a locking block 5.2 integrally formed in the middle of the bottom surface of the button plate 5.1 and slidably engaged with the button groove 3.4, and a threaded sleeve 5.4 integrally formed in the rear end of the bottom surface of the locking block 5.2 and extending vertically. A screw 6 is threadedly engaged with the threaded sleeve 5.4, and its bottom diameter is greater than the width of the button groove 3.4. The front ends of the two side walls of the locking block 5.2 are vertically connected to short shafts 5.3 that slidably engage with the arc-shaped sliding groove 3.5. A vertical spring 7 is provided in the circular groove 3.6 that engages with the threaded sleeve 5.4. When installing the outer button 5, first insert its two short shafts 5.3 into the arc-shaped groove 3.5 until the short shafts 5.3 slide to the front end of the inner cavity of the arc-shaped groove 3.5. Then, fit the vertical spring 7 onto the threaded sleeve 5.4, and rotate the button plate 5.1 backward so that the bottom end of the vertical spring 7 is supported at the outer edge of the bottom surface of the inner cavity of the circular groove 3.6. The threaded sleeve 5.4 then extends downward through the button groove 3.4. Finally, install the screw 6 at the bottom end of the threaded sleeve 5.4 to complete the assembly connection between the outer button 5 and the inner housing 3. When the button plate 5.1 is pressed, the bottom end of the screw 6 will press the button on the inner button to complete the button operation.

[0033] The outer casing 4 includes an annular sleeve 4.1 that is detachably fitted around the bottom periphery of the inner casing 3, and a rear cover 4.2 integrally formed on the front side of the top center of the annular sleeve 4.1. The inner walls of the annular sleeve 4.1 are respectively provided with positioning holes 4.1.1 that are slidably fitted with the pin 3.10, and the outer walls of the annular sleeve 4.1 are respectively provided with through holes 4.1.2 corresponding to the positions of the positioning holes 4.1.1.

[0034] In summary, when assembling and installing the mouse, first use screw 28 to fix the integrated circuit board 2 in the inner cavity of the bottom groove 1, and then the scroll wheel mechanism, inner buttons and voice recognition module can be inserted into the integrated circuit board 2.

[0035] First, assemble and connect the outer button 5 to the inner housing 3, and then use screws 3 and 9 to fix the inner housing 3 to the bottom groove 1.

[0036] Finally, the outer shell 4 is snapped onto the inner shell 3. When installing the outer shell 4, the bottom ends of the middle of the inner edges of the annular sleeve 4.1 push the pin 3.10, causing the pin 3.10 to compress the transverse spring 3.9 and retract into the side hole 3.7. When the annular sleeve 4.1 is fitted onto the top of the inner shell 3 and the bottom surface of the annular sleeve 4.1 is in contact with the top surface of the annular plate 3.1, the pin 3.10 is exactly aligned with the positioning hole 4.1.1. Under the rebound action of the transverse spring 3.9, the pin 3.10 is inserted into the positioning hole 4.1.1 to complete the installation of the outer shell 4.

[0037] When the mouse needs to be disassembled, first use a push pin to push the push pin 3.10 inward through the through hole 4.1.2, so that the push pin 3.10 compresses the horizontal spring 3.9 and retracts into the side hole 3.7. Then pry the outer shell 4 upward as a whole.

[0038] After removing the outer casing 4, use a screwdriver to remove screw 39, then the inner casing 3 can be removed from the bottom groove 1. After removing screw 28, use a screwdriver to remove screw 2, then the integrated circuit board 2 can be removed from the bottom groove 1.

[0039] By unscrewing screw 6, the outer button 5 can be easily removed from the inner housing 3.

[0040] In addition, the bottom groove 1, inner shell 3, outer shell 4 and outer button 5 are all integrally injection molded from polycarbonate.

[0041] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0042] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A smart voice mouse for ease of modular assembly, characterized by, include: The bottom groove (1) has a photoelectric window (1.1) in the middle of the bottom plate; An integrated circuit board (2) is detachably installed in the middle of the inner cavity of the bottom groove (1). A roller mechanism, an inner button and a voice recognition module are inserted into the top surface of the integrated circuit board (2). The inner shell (3) has its bottom outer edge detachably mounted on the outer edge of the inner cavity of the bottom groove (1). The inner shell (3) has a roller groove (3.3) in the middle of the rear end of its top surface. The inner shell (3) has sink grooves (3.2) on both sides of the middle of the rear end of its top surface. The sink groove (3.2) has a button groove (3.4) in the middle. The outer shell (4) includes an annular sleeve (4.1) that is detachably fitted around the bottom periphery of the inner shell (3) and a rear cover (4.2) integrally formed on the front side of the center of the top surface of the annular sleeve (4.1); The external button (5) includes a button plate (5.1), a locking block (5.2) integrally formed in the middle of the bottom surface of the button plate (5.1) and slidably engaged with the button groove (3.4), and a threaded sleeve (5.4) integrally formed in the rear end of the bottom surface of the locking block (5.2) and extending vertically. Screw 1 (6) is threaded and matched with the threaded sleeve 3 (5.4), and the bottom diameter is greater than the width of the key groove (3.4).

2. The smart voice mouse for ease of modular assembly as claimed in claim 1, wherein: The bottom of the groove (1) has four vertically extending threaded sleeves (1.3) integrally formed at the four corners of the bottom surface. The outer edge of the bottom of the inner shell (3) has an annular plate (3.1) that fits into the inner cavity of the groove (1). The annular plate (3.1) has a through hole (3.8) that corresponds to the threaded sleeve (1.3). The through hole (3.8) is fitted with a screw (9) whose bottom end fits into the threaded sleeve (1.3).

3. The smart voice mouse for ease of modular assembly as claimed in claim 1 wherein: The bottom surface of the inner cavity of the bottom groove (1) is integrally formed with threaded sleeves (1.2) extending vertically at the four corners. The four corners of the integrated circuit board (2) are respectively fitted with screws (8) whose bottom ends are matched with the threaded sleeves (1.2).

4. The smart voice mouse for ease of modular assembly as claimed in claim 1, wherein: The front ends of the two side walls of the button slot (3.4) are respectively provided with arc-shaped sliding grooves (3.5), the top surface of the recess (3.2) is provided with a circular groove (3.6) corresponding to the rear end of the button slot (3.4), the front ends of the two side walls of the locking block (5.2) are respectively vertically connected with short shafts (5.3) that slide and engage with the arc-shaped sliding grooves (3.5), and the circular groove (3.6) is provided with a vertical spring (7) that engages with the threaded sleeve (5.4).

5. The smart voice mouse for ease of modular assembly as claimed in claim 1 wherein: The inner shell (3) has side holes (3.7) that do not penetrate the side walls of the inner shell (3) near the bottom of the middle of the two side walls. A transverse spring (3.9) is fitted inside the side hole (3.7). A pin (3.10) that slides through the side hole (3.7) is connected to the outer end of the transverse spring (3.9). The outer end of the pin (3.10) has a spherical convex structure. The inner walls of the annular sleeve (4.1) have positioning holes (4.1.1) that slide through the pin (3.10) in the middle of the two side walls. The outer wall of the annular sleeve (4.1) has through holes (4.1.2) at the positions corresponding to the positioning holes (4.1.1).

6. The smart voice mouse that facilitates modular assembly of claim 1, wherein: The bottom groove (1), inner shell (3), outer shell (4) and outer button (5) are all integrally injection molded from polycarbonate.