Intelligent Sensing Oral Irrigator

The intelligent sensing oral irrigator addresses unstable wiring and assembly issues by using a body integrated frame with a wiring constraint structure and side-wall display, enhancing stability and reducing costs while maintaining compactness.

JP3255386UActive Publication Date: 2026-04-07BIXDO (SH) HEALTHCARE TECH CO LTD +1
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2023-11-08
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing intelligent oral cleaners face issues with unstable wiring connections between the sensor and motherboard, entanglement during assembly, and increased volume due to integrating displays, leading to higher costs and assembly difficulties.

Method used

An intelligent sensing oral irrigator with a body integrated frame that includes a wiring constraint structure to stabilize and streamline the sensing data line routing, separate the sensor and core units, and use a display on the side wall to maintain tank capacity, employing connectors and a transparent frame for easier assembly.

Benefits of technology

Stabilizes communication between the sensor and core units, reduces tangling and assembly complexity, and lowers costs by using a general display, ensuring a compact and stable oral cleaner design.

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Abstract

This application provides an intelligent sensing type oral irrigator. The intelligent sensing type oral irrigator includes a body integrated frame having a wiring constraint structure, a sensing cover unit provided on the upper side of the body integrated frame, a sensor unit provided on the sensing cover unit, a core unit provided on the body integrated frame, and a data transmission unit having a sensing data line. The laying path of the sensing data line passes through the wiring constraint structure so that the sensing data line is constrained to the body integrated frame. Furthermore, both ends of the sensing data line in its direction of extension are electrically connected to the sensor unit and the core unit, respectively. This application ensures the stability of communication between the sensor unit and the core unit by making the laying path of the sensing data line located between the sensor unit and the core unit even more stable and smoother.
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Description

Technical Field

[0001] This application relates to the technical field of oral cleaning, and particularly to an intelligent sensing type oral cleaner.

Background Art

[0002] With the improvement of living standards, people are paying more and more attention to oral care. Oral cleaners can not only clean the tooth surfaces, but also clean the gingival sulci. Therefore, oral cleaners, which are one of dental cleaning care products, are widely used. Oral cleaners have now become essential sanitary products in many households.

[0003] Currently, for intelligent oral cleaners, in order to improve the user experience and reduce the volume of the oral cleaner to make it easier to carry, an intelligent sensor is assembled on the ceiling of the oral cleaner to separate it from the core motherboard, and at the same time, the display is integrated into the core motherboard. However, in this case, the following problems are faced. That is, the wiring connection between the intelligent sensor and the motherboard of the device becomes unstable, and it takes time to arrange the wiring connection during assembly, and it is easy to get entangled. Also, the connection becomes uncertain due to the special-shaped sensor designed to avoid interference with the water outlet. And in order to solve the problem that the volume of the main body of the oral cleaner becomes too large and affects the tank capacity, etc. by integrating the display into the motherboard, a high-cost ultra-thin display is selected, resulting in an increase in the assembly difficulty and cost.

Summary of the Invention

Problems to be Solved by the Invention

[0004] In view of the shortcomings of the prior art described above, the technical problem that this invention aims to solve is to provide an intelligent sensing type oral irrigator that guarantees the stability of communication between a sensor unit and a core unit by making it possible to further stabilize and streamline the laying path of the sensing data line located between the sensor unit and the core unit. [Means for solving the problem]

[0005] To solve the above technical problems, this application provides an intelligent sensing oral irrigator. The intelligent sensing oral irrigator includes a body integrated frame having a wiring constraint structure, a sensing cover unit provided on the upper side of the body integrated frame, a sensor unit provided on the sensing cover unit, a core unit provided on the body integrated frame, and a data transmission unit having a sensing data line. The routing path for the sensing data line passes through the wiring constraint structure so that the sensing data line is constrained to the body integrated frame. Furthermore, both ends of the sensing data line in its direction of extension are electrically connected to the sensor unit and the core unit, respectively.

[0006] Preferably, the intelligent sensing mouth irrigator further includes a display. The display is provided on the side wall of the body-integrated frame. The data transmission unit further includes display data lines. The display data lines are electrically connected at both ends in their extension direction to the display and the core unit, respectively.

[0007] Preferably, the data transmission unit further includes a display connector. The display connector is provided at the end of the display data line and / or on the core circuit board of the core unit, forming a connection structure between the display data line and the core circuit board.

[0008] Preferably, the body-integrated frame includes a frame body and a display restraint member that is detachably connected to the outer wall of the frame body. The display is sandwiched between the frame body and the display restraint member.

[0009] Preferably, the data transmission unit further includes a sensor connector. The sensor connector is provided at the end of the sensing data line and / or on the core circuit board of the core unit, forming a connection structure between the sensing data line and the core circuit board.

[0010] Preferably, the body-integrated frame includes a frame body having a hollow structure. Wiring engagement grooves are provided on the inner wall of the frame body, and these wiring engagement grooves constitute the wiring restraint structure.

[0011] Preferably, the sensing cover unit includes a cover body. The cover body is provided with a groove with an opening facing downwards, and the sensor unit is provided within the groove.

[0012] Preferably, the body integration frame is made of a transparent material.

[0013] Preferably, the core unit includes a core frame and a core circuit board provided on the core frame and electrically connected to sensing data lines. The core frame has auxiliary restraint grooves that restrain the sensing data lines.

[0014] Preferably, the intelligent sensing type oral irrigator further includes a body casing for housing the body integrated frame. The sensing cover unit constitutes part of the ceiling structure of the body casing. [Effects of the Invention]

[0015] As described above, the intelligent sensing type oral irrigator in this application has the following beneficial effects. Specifically, the intelligent sensing type oral irrigator employs a layout in which the sensor unit and the core unit are separated from each other. That is, the sensing cover unit is provided on the upper side of the body integrated frame, and the sensor unit is provided on the sensing cover unit. In this way, the sensor unit can collect information about the user's face through the sensing cover unit. The core unit is provided on the body integrated frame. Furthermore, both ends of the sensing data line in its direction of extension are electrically connected to the sensor unit and the core unit, respectively. In this way, the information collected by the sensor unit can be transmitted to the core unit through the sensing data line. To solve the installation problems of unstable connection of the sensing data line and the difficulty of wiring, the body integrated frame has a wiring constraint structure. The laying path of the sensing data line passes through the wiring constraint structure so that the sensing data line is constrained to the body integrated frame. By providing it in this way, the laying path of the sensing data line from the sensor unit to the core unit is made smoother, less prone to tangling, and easier to assemble. This makes the sensing data line more stable relative to the body integration frame, further guaranteeing the stability of communication between the sensor unit and the core unit. Therefore, the intelligent sensing type oral irrigator in this application guarantees the stability of communication between the sensor unit and the core unit by enabling further stabilization and smoothing of the laying path of the sensing data line located between the sensor unit and the core unit. [Brief explanation of the drawing]

[0016] [Figure 1] Figure 1 shows an exploded view of the intelligent sensing type oral irrigator in this application. [Figure 2] Figure 2 shows the relative positions of the sensing cover unit, core unit, and display during assembly. [Figure 3]Figure 3 shows a cross-sectional view of the sensing cover unit, sensor unit, and display during assembly. [Figure 4] Figure 4 shows a perspective view of the body integration frame. [Figure 5] Figure 5 shows a perspective view of the sensing cover unit. [Figure 6] Figure 6 shows a perspective view of the sensor unit, sensing data lines, and sensor connector. [Modes for carrying out the invention]

[0017] Embodiments of the present application will be described below with reference to specific examples. Those familiar with this technology will readily understand the other advantages and effects of the present application from the information disclosed herein.

[0018] It should be made clear that the structures, proportions, sizes, etc., shown in the drawings of this specification are merely for the understanding and viewing of those familiar with this art, and are intended to be combined with the content disclosed in the specification, and do not define any limiting conditions that can be met in this application. Therefore, they have no substantive technical significance. Any additions to the structure, changes in proportions, or adjustments to size shall be considered to fall within the scope covered by the technical content disclosed in this application, provided that they do not affect the effects that this application can achieve or the objectives that it can accomplish. Furthermore, terms such as "top," "bottom," "left," "right," "center," and "one" referenced in this specification are merely for clarity and do not limit the scope that can be met in this application. Therefore, any changes or adjustments to their relative relationships shall also be considered within the scope that can be met in this application, provided that they do not substantially change the technical content.

[0019] Referring to FIG. 1, the intelligent sensing type oral irrigator in the present application includes a body casing (not shown) and a body integrated frame 1 provided in the internal space of the body casing. The body casing is mainly used to accommodate the body integrated frame 1 and other body parts. The body integrated frame 1 is used to attach a plurality of body parts such as, for example, a sensing cover unit 2 and a core unit 4. Generally, when the user uses the intelligent sensing type oral irrigator, the sensing cover unit 2 is located at the ceiling portion of the body casing so that the facial information of the user can be detected more closely. The sensing cover unit 2 can form a part of the ceiling structure of the body casing.

[0020] As shown in FIGS. 1 to 6, the present application provides an intelligent sensing type oral irrigator. The intelligent sensing type oral irrigator includes a body integrated frame 1 having a wiring restraint structure (specifically, refer to FIG. 4), a sensing cover unit 2 provided above the body integrated frame 1 (specifically, refer to FIG. 5), a sensor unit 3 provided on the sensing cover unit 2 (specifically, refer to FIG. 6), a core unit 4 provided on the body integrated frame 1 (specifically, refer to FIG. 2), and a data transmission unit 5 having a sensing data line 51. The laying path of the sensing data line 51 passes through the wiring restraint structure so that the sensing data line 51 is restrained by the body integrated frame 1. Further, both ends of the sensing data line 51 in its extending direction are electrically connected to the sensor unit 3 and the core unit 4, respectively.

[0021] In this invention, the intelligent sensing oral irrigator employs a layout in which the sensor unit 3 and the core unit 4 are separated from each other. That is, the sensing cover unit 2 is provided on the upper side of the body integrated frame 1, and the sensor unit 3 is provided on the sensing cover unit 2. This allows the sensor unit 3 to collect user facial information through the sensing cover unit 2. The core unit 4 is provided on the body integrated frame 1. Furthermore, the sensing data line 51 (the sensing data line 51 may also be a wire harness, for example, an FPC) has both ends in its extension direction electrically connected to the sensor unit 3 and the core unit 4, respectively. This allows the information collected by the sensor unit 3 to be transmitted to the core unit 4 through the sensing data line 51. To solve the installation problems of unstable connection of the sensing data line 51 and the difficulty of wiring, the body integrated frame 1 has a wiring constraint structure. The laying path of the sensing data line 51 passes through the wiring constraint structure so that the sensing data line 51 is constrained to the body integrated frame 1. By providing this configuration, the routing path of the sensing data line 51 from the sensor unit 3 to the core unit 4 is made smoother, less prone to tangling, and easier to assemble. As a result, the sensing data line 51 becomes more stable relative to the body integration frame 1, further ensuring the stability of communication between the sensor unit 3 and the core unit 4. Therefore, the intelligent sensing type oral irrigator in this application ensures the stability of communication between the sensor unit 3 and the core unit 4 by further stabilizing and streamlining the laying path of the sensing data line 51 located between the sensor unit 3 and the core unit 4.

[0022] By integrating the display into the motherboard, in order to solve the problem that the conventional oral irrigator becomes too large in volume and affects the tank capacity, the display 6 of the intelligent sensing type oral irrigator is provided on the side wall of the body integration frame 1. The data transmission unit 5 further includes a display data line 52 (the display data line 52 may also be a wire harness, for example, an FPC). Both ends of the display data line 52 in its extending direction are electrically connected to the display 6 and the core unit 4 respectively. By providing it in this way, the display 6 can be further separated from the position of the tank of the intelligent sensing type oral irrigator, so that it will not affect the tank capacity, and it is also possible to reduce the assembly difficulty of the display 6. The display 6 can be fixed to the side wall of the body integration frame 1 by means such as a hook. Further, the side wall of the body integration frame 1 may be designed with concavities and convexities, and the display 6 may be fitted into the side wall of the body integration frame 1. By doing so, without selecting a high-cost ultra-thin display, a general display can be used, thus reducing the cost.

[0023] Combining FIGS. 1 and 2, in order to facilitate the connection between the core unit 4 and the display 6, the data transmission unit 5 further includes a display connector 53. The display connector 53 is provided at the end of the display data line 52 and / or on the core circuit board 41 of the core unit 4 to form an insertion connection structure between the display data line 52 and the core circuit board 41. Further, the display connector 53 may include a male insertion member and a female insertion member that are fitted to each other. One of the male insertion member and the female insertion member is provided at the end of the display data line 52, and the other is provided on the core circuit board 41 of the core unit 4.

[0024] As shown in Figure 4, to facilitate the installation of the display 6, the body-integrated frame 1 includes a frame body 11 and a display restraint member 12 that is detachably connected to the outer wall of the frame body 11. The display 6 is sandwiched between the frame body 11 and the display restraint member 12. Furthermore, the display restraint member 12 is a transparent cover. The transparent cover can be detachably attached to the outer wall of the frame body 11 by screws or positioning pins.

[0025] By combining Figures 1 and 2, the data transmission unit 5 further includes a sensor connector 54 to facilitate the connection between the core unit 4 and the sensor unit 3. The sensor connector 54 is provided on the end of the sensing data line 51 and / or on the core circuit board 41 of the core unit 4, forming a connection structure between the sensing data line 51 and the core circuit board 41. Furthermore, the sensor connector 54 may include a male and female connector that are fitted together. Of the male and female connectors, one is provided on the end of the sensing data line 51, and the other is provided on the core circuit board 41 of the core unit 4.

[0026] As shown in Figure 3, in order to complete the wiring of the sensing data line 51 from inside the body integration frame 1, the body integration frame 1 includes a hollow frame body 11. A wiring engagement groove 13 is provided on the inner wall of the frame body 11, and the wiring engagement groove 13 constitutes the wiring restraint structure. Furthermore, the ceiling portion of the core unit 4 extends into the interior of the frame body 11 and can be fixedly connected to the frame body 11. This improves the compactness of the structure.

[0027] As shown in Figure 3, the sensing cover unit 2 includes a cover body 21 so that the sensor unit 3 can more easily collect user facial information. The cover body 21 is provided with a groove 22 with an opening facing downwards, and the sensor unit 3 is installed in the groove 22. Furthermore, the sensor unit 3 can be attached to the inside of the cover body 21 by means of an engagement groove, a positioning pin, and tightening screws.

[0028] The body integrated frame 1 is made of a transparent material so that workers can easily observe the internal structure of the body integrated frame 1, for example, to observe the wiring direction of the sensing data line 51.

[0029] As shown in Figure 2, in order to further improve the stability of the wiring of the sensing data lines 51, the core unit 4 includes a core frame 42 and a core circuit board 41 provided on the core frame 42 and electrically connected to the sensing data lines 51. The core frame 42 has auxiliary restraint grooves 421 that restrain the sensing data lines 51.

[0030] As described above, the intelligent sensing type oral irrigator in this application ensures the stability of communication between the sensor unit and the core unit by further stabilizing and streamlining the routing of the sensing data line located between the sensor unit and the core unit. Therefore, this application effectively eliminates various shortcomings of the prior art and has high industrial value.

[0031] The above embodiments are merely illustrative examples illustrating the principles and effects of the present application and do not limit it. Those familiar with the present art may supplement or modify the above embodiments, provided they do not depart from the spirit and scope of the present application. Therefore, any equivalent supplement or modification completed by a person skilled in the art without departing from the spirit and technical concept disclosed herein remains within the scope of the utility model claims. [Explanation of Symbols]

[0032] 1. Body-integrated frame 11 Frame Body 12 Display restraint member 13 Wiring engagement groove 2. Sensing Cover Unit 21 Cover body 22 grooves 3 Sensor Unit 4 Core Units 41 Core circuit board 42 Coreframe 421 Auxiliary restraint groove 5. Data transmission unit 51 Sensing data lines 52 Display data lines 53 Display Connectors 54 Sensor Connectors 6 displays

Claims

1. A body integrated frame (1) having a wiring restraint structure, A sensing cover unit (2) is provided on the upper side of the body integrated frame (1), A sensor unit (3) is provided on the sensing cover unit (2), A core unit (4) provided on the body integrated frame (1), An intelligent sensing type oral irrigator characterized by having a sensing data line (51), the laying path of the sensing data line (51) passing through the wiring constraint structure such that the sensing data line (51) is constrained to the body integrated frame (1), and the sensing data line (51) includes a data transmission unit (5) at both ends in its extension direction electrically connected to a sensor unit (3) and a core unit (4), respectively.

2. The intelligent sensing type oral irrigator according to claim 1, further comprising a display (6) provided on the side wall of the body integrated frame (1), and the data transmission unit (5) further comprising a display data line (52), wherein both ends of the display data line (52) in its extending direction are electrically connected to the display (6) and the core unit (4), respectively.

3. The intelligent sensing oral irrigator according to claim 2, wherein the data transmission unit (5) further includes a display connector (53), the display connector (53) being provided on the end of the display data line (52) and / or on the core circuit board (41) of the core unit (4), forming a connection structure between the display data line (52) and the core circuit board (41).

4. The intelligent sensing oral irrigator according to claim 2, wherein the body integrated frame (1) includes a frame body (11) and a display restraint member (12) that is detachably connected to the outer wall of the frame body (11), and the display (6) is sandwiched between the frame body (11) and the display restraint member (12).

5. The intelligent sensing type oral irrigator according to claim 1, wherein the data transmission unit (5) further includes a sensor connector (54), the sensor connector (54) being provided on the end of the sensing data line (51) and / or on the core circuit board (41) of the core unit (4), forming a connection structure between the sensing data line (51) and the core circuit board (41).

6. The intelligent sensing type oral irrigator according to claim 1, characterized in that the body integrated frame (1) includes a frame body (11) having a hollow structure, and a wiring engagement groove (13) is provided on the inner wall of the frame body (11), and the wiring engagement groove (13) constitutes the wiring restraint structure.

7. The intelligent sensing type oral irrigator according to claim 1, characterized in that the sensing cover unit (2) includes a cover body (21), the cover body (21) is provided with a groove (22) with an opening facing downward, and the sensor unit (3) is provided in the groove (22).

8. The intelligent sensing type oral irrigator according to claim 1, characterized in that the body integrated frame (1) is made of a transparent material.

9. The intelligent sensing type oral irrigator according to claim 1, wherein the core unit (4) includes a core frame (42) and a core circuit board (41) provided on the core frame (42) and electrically connected to the sensing data line (51), and the core frame (42) has an auxiliary restraint groove (421) that restrains the sensing data line (51).

10. The intelligent sensing type oral irrigator according to claim 1, further comprising a body casing for housing the body integrated frame (1), wherein the sensing cover unit (2) constitutes a part of the ceiling structure of the body casing.