Intelligent remote controller structure based on bathroom

By embedding copper tubing in metal and using a sealed design, the problem of short circuits and loosening caused by moisture and water vapor in the bathroom environment has been solved, achieving higher safety and convenience, and providing a better operating experience, especially for middle-aged and elderly users.

CN120957385APending Publication Date: 2025-11-14XIAMEN GUANGHONG ELECTRONICS
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511186327.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-23
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

Existing smart remote controls are prone to short circuits in bathroom environments due to moisture and water vapor, and they are also prone to loosening during use, affecting safety and convenience, especially for middle-aged and elderly users who find them inconvenient to operate at night.

Method used

The design incorporates a metal-embedded copper tube structure, which enhances the compressive strength and stability of the conductive pins. The connection is sealed with a sealing ring and an embedded ring. Combined with a PCB control board and a TFT display screen, it enables multiple functions, increasing safety and convenience.

Benefits of technology

It effectively reduces the probability of short circuits in conductive connectors in bathroom environments, improves safety and stability, and increases functionality and convenience, especially the convenience of nighttime operation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120957385A_ABST
    Figure CN120957385A_ABST
Patent Text Reader

Abstract

The invention discloses an intelligent remote controller structure based on a bathroom, relates to the technical field of remote controllers, and solves the problem that an internal conductive structure is easy to be short-circuited or loosened when the intelligent remote controller is used. The intelligent remote controller structure based on the bathroom comprises a remote controller shell structure, the battery module is arranged at the bottom in the remote controller shell structure; the digital intelligent regulation and control mechanism is electrically connected with the battery module and is arranged in the remote controller shell structure; the TFT display screen is electrically connected with the digital intelligent regulation and control mechanism and is mounted at the top in the remote controller shell structure; and the fluorescent ring sleeves the outer side of the remote controller shell structure. According to the intelligent remote controller, the conductive capability is guaranteed, meanwhile, the stronger conductive pin constraining force is achieved, and the probability that the intelligent remote controller loosens when falling can be effectively reduced. And the external pressure of the metal embedded copper pipe can be effectively dispersed, so that the heat dissipation effect is improved, and meanwhile, the service life is longer.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of remote control technology, specifically to a smart remote control structure based on bathroom fixtures. Background Technology

[0002] A smart remote control is a tool that uses infrared, radio frequency, or wireless technology to remotely control home appliances. Its core functions include automatic environmental adjustment, multi-device linkage control, and smart scene setting, making it a core device for building smart homes.

[0003] When used in a home bathroom system, a smart remote control can control smart toilets, smart faucets, and other appliances, and features voice prompts and lighting control, making it suitable for various scenarios.

[0004] However, this smart remote control has the following drawbacks in actual use: 1. When existing smart remote controls are used in bathroom environments to control various devices, the unique environment (high humidity) means that moisture from the outside environment can easily enter the remote control and affect its internal structure, potentially causing short circuits and other safety risks. Furthermore, for ease of operation and handling, smart remote controls are typically placed on a table. During handling, they are prone to being dropped, which can loosen the internal conductive structure and affect its conductivity. 2. Existing smart remote controls have limited internal functionality in practical use. When users spend extended periods in the bathroom at night, family members (especially elderly people with poor eyesight) may have difficulty quickly locating the remote, impacting the convenience and safety of use for middle-aged and elderly users. Summary of the Invention

[0005] The purpose of this invention is to provide a smart remote control structure based on bathroom fixtures to solve the problems mentioned in the background art.

[0006] To achieve the above-mentioned objectives, the present invention adopts the following technical solution: This invention provides a smart remote control structure based on bathroom fixtures, comprising: a remote control housing structure; a battery module disposed at the bottom inside the remote control housing structure; a digital intelligent control mechanism electrically connected to the battery module and disposed inside the remote control housing structure; a TFT display screen electrically connected to the digital intelligent control mechanism and mounted at the top inside the remote control housing structure; and a fluorescent ring sleeved on the outside of the remote control housing structure. The digital intelligent control mechanism includes: a charging and discharging structure electrically connected to the battery module; a PCB intelligent panel electrically connected to the charging and discharging structure and installed inside the remote control housing structure; a safety plug-in module electrically connected to one side of the top center of the PCB intelligent panel; a plug-in disposed on the side of the safety plug-in module and electrically connected to the PCB intelligent panel; and a conductive connector structure connected to the plug-in and electrically connected to the bottom of the TFT display screen. The conductive connector structure has a self-disconnecting socket installed on one side, which is electrically connected to the safety plug module.

[0007] As a preferred embodiment of the present invention, the remote control housing structure includes: a back cover; a fixing seat threadedly connected to the outer side of the top of the back cover; a top cover threadedly connected to the outer side of the top of the fixing seat; and a battery assembly mounted at the center of the top of the back cover. The battery module is fixedly mounted on the inner side of the battery assembly.

[0008] In a preferred embodiment of the present invention, a wireless charging module is installed at the center of the interior of the rear cover, and the wireless charging module is disposed inside the battery assembly. The top of the wireless charging module abuts against the battery module.

[0009] In a preferred embodiment of the present invention, an embedding ring is fitted inside the fixing base, and a PCB smart panel is fitted and fixed inside the embedding ring. A rubber sealing ring is installed on the inner side of the connection between the fixing base and the top cover. A TFT display screen is fixed on the top of the top cover, and a fluorescent ring located on the outer side of the top of the fixing base is sleeved on the outer side of the top cover.

[0010] As a preferred embodiment of the present invention, the charging and discharging structure includes: an external connector connected to one side of the battery module; a discharge socket electrically connected to the external connector; a discharge plug connected to the top of the discharge socket; a conductive connecting strip electrically connected to the bottom of the discharge plug and passing through the embedded ring; and a connecting plug installed at the tail of the conductive connecting strip. The bottom of the connector plug is electrically connected to the PCB smart panel.

[0011] As a preferred embodiment of the present invention, the PCB smart panel includes: a PCB control board installed inside the mounting base; a charging connector electrically connected to one side of the top of the PCB control board and electrically connected to the connector plug; a smart chip electrically connected to the top of the PCB control board; and a digital chip electrically connected to the top of the PCB control board and located to the side of the smart chip. The PCB control board has a safety plug-in module electrically connected to one side of the top center, and a plug connector electrically connected to the other side of the top center.

[0012] In a preferred embodiment of the present invention, conductive pins are electrically connected to both sides of the top of the connector, and the conductive pins extend into the interior of the conductive connector structure and are electrically connected to the conductive connector structure. The connector has an outwardly protruding conductive terminal at the center of its top, which extends into and is electrically connected to the conductive connector structure.

[0013] As a preferred embodiment of the present invention, the conductive connector structure includes: a connector housing electrically connected to the bottom center of the TFT display screen; a side mounting cover snapped and fixed to one side of the connector housing; a partition plate disposed at an eccentric position inside the connector housing; an inner insulating plate installed on the inner wall of the connector housing and located on the side of the side mounting cover; a conductive hub module disposed at the top inside the connector housing and electrically connected to the TFT display screen; a power transmission module snapped and fixed to the bottom of the conductive hub module and electrically connected to the conductive hub module; a sealing cover sleeved on the outside of the power transmission module and installed at the bottom inside the connector housing; conductive sockets opened on both sides of the bottom of the power transmission module; a metal embedded copper tube disposed inside the conductive socket; and a pin socket disposed inside the metal embedded copper tube and electrically connected to the power transmission module. The conductive socket has an inner base installed at its inner bottom, and the inner base is located on the outside of the metal embedded copper tube.

[0014] In a preferred embodiment of the present invention, a self-disconnecting socket is provided on one side of the partition plate and the inner wall of the connector housing, and the center of the bottom of the power transmission module is electrically connected to the conductive terminal. The conductive pins are disposed inside the metal-embedded copper tube, extending into and electrically connecting to the pin socket. Compared with existing technologies, one or more of the above technical solutions have the following beneficial effects: 1. In the structure of a bathroom-based smart remote control, when the internal conductive connection structure of the smart remote control is connected, the design of the metal-embedded copper tube structure enhances the longitudinal compression strength and capability of the conductive pins through the hourglass-shaped structure at its center, the metal-embedded copper tube, and reinforcing ribs. This provides stable and firm compression and fixation for the conductive pins penetrating the inner side of the metal-embedded copper tube, ensuring conductivity while providing stronger constraint force on the conductive pins, effectively reducing the probability of the smart remote control loosening when dropped. Furthermore, the inward-curving slanted groove and the hourglass structure in the middle of the metal-embedded copper tube effectively disperse external pressure, preventing deformation or cracking of the metal-embedded copper tube under the high-temperature environment of the conductive connection, improving heat dissipation and extending service life. 2. In the structure of the bathroom-based smart remote control, during assembly, the rubber sealing ring (ring-shaped) at the connection between the mounting base and the top cover, the embedded ring between the PCB control board and the mounting base, and the sealing cap and inner seat at the connection between the connector and the metal embedded copper tube can fill and seal the gaps in the connection. This minimizes the probability of moisture and water vapor in the working and use environment causing short circuits in the conductive connector structure, thus improving the safety of the smart remote control during use. Simultaneously, the embedded ring sealing the PCB control board assembly position can also constrain and fix the conductive connecting strip that passes through it, reducing the probability of displacement of the conductive connecting strip affecting normal charging and discharging operations. 3. In the bathroom-based smart remote control structure, the design of the smart chip and digital chip structure electrically connected by the PCB control board, combined with the TFT display screen to display various functions, enables the smart remote control structure to realize multiple functions such as temperature display, seat sensing, flushing, automatic flushing, self-sensing seat temperature, UV sterilization, lid opening, top spray switch setting, pre-drainage setting, automatic heating control, shower control and program setting for smart toilets and smart faucets, meeting different usage environments and requirements, and ensuring greater convenience and safety for middle-aged and elderly users; 4. In the bathroom-based smart remote control structure, the design of the smart remote control structure (fluorescent ring) can effectively increase entertainment and fluorescent interaction, solving the pain points of middle-aged and elderly people who "cannot locate accurately or learn how to use it." It can also integrate core bathroom control needs, reducing clutter in the bathroom. Furthermore, it can reduce the probability of the smart remote control being bumped or knocked at night, making the positioning of the smart remote control more intuitive. Attached Figure Description

[0015] The accompanying drawings, which form part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an improper limitation of the invention.

[0016] Furthermore, the terms "installation," "setup," "equipped with," "connection," "linking," and "socketing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is an exploded view of the entire invention; Figure 3 This is a schematic diagram of the overall front cross-section of the present invention; Figure 4 This is a schematic cross-sectional view of the entire structure of the present invention; Figure 5 This is the present invention. Figure 4 Enlarged structural diagram of region A in the middle; Figure 6 This is an exploded view of the entire invention after cross-section; Figure 7 This is an exploded view of the connection between the mounting base and the TFT display screen of the present invention. Figure 8 This is an exploded view of the conductive connector structure of the present invention; Figure 9 This is an exploded view of the conductive connector structure and the connector connection of the present invention; Figure 10 This is an exploded view of the connection between the connector housing and the side assembly cover of the present invention; Figure 11 This is a cross-sectional structural diagram of the power transmission module and pin connector connection of the present invention; Figure 12 This is the present invention. Figure 11 Enlarged structural diagram of region B in the middle; Figure 13 This is a cross-sectional structural schematic diagram of the connection between the metal-embedded copper tube and the reinforcing rib of the present invention; Figure 14 This is an exploded cross-sectional view of the blood glucose testing module of the present invention after assembly; In the picture: 10. Remote control shell structure; 101. Back cover; 1011. Wireless charging module; 102. Mounting base; 1021. Embedded ring; 103. Top cover; 104. Battery assembly; 105. Rubber sealing ring; 20. Battery module; 30. Digital intelligent control mechanism; 301. Charging and discharging structure; 302. PCB intelligent panel; 303. Safety plug-in module; 304. Plug-in connector; 305. Conductive connector structure; 306. Self-disconnecting plug-in socket; 3011 External connector; 3012 Discharge socket; 3013 Discharge plug; 3014 Conductive connecting strip; 3015 Connecting plug; 3021, PCB control board; 3022, charging connector socket; 3023, smart chip; 3024, digital chip; 3041, conductive pin; 3042, conductive terminal; 3051 Connector housing; 3052 Side mounting cover; 3053 Partition plate; 3054 Inner insulating plate; 3055 Conductive hub module; 3056 Power transmission module; 3057 Sealing cover; 3058 Conductive socket; 30581 Embedded socket; 3059 Metal embedded copper tube; 30510 Pin socket; 40. TFT display screen; 50. Fluorescent ring; 60. Hourglass shape; 601. Angled groove; 602. Elastic compression plate; 603. Reinforcing rib; 70. Blood glucose testing module. Detailed Implementation

[0018] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application. Example 1

[0019] Please see Figures 1-12The bathroom-based smart remote control structure includes a remote control housing structure 10; a battery module 20 disposed at the bottom inside the remote control housing structure 10; a digital intelligent control mechanism 30 electrically connected to the battery module 20 and disposed inside the remote control housing structure 10; a TFT display screen 40 electrically connected to the digital intelligent control mechanism 30 and mounted at the top inside the remote control housing structure 10; and a fluorescent ring 50 sleeved on the outside of the remote control housing structure 10. The digital intelligent control mechanism 30 includes: a charging and discharging structure 301 electrically connected to the battery module 20; and a charging and discharging structure 301 electrically connected to the charging and discharging structure 301. A PCB smart panel 302 is connected to and installed inside the remote control housing structure 10; a safety plug module 303 is electrically connected to one side of the top center of the PCB smart panel 302; a plug 304 is disposed on the side of the safety plug module 303 and electrically connected to the PCB smart panel 302; a conductive connector structure 305 is connected to the plug 304 and electrically connected to the bottom of the TFT display screen 40, wherein a self-disconnecting plug 306 is installed on one side inside the conductive connector structure 305, and the self-disconnecting plug 306 is electrically connected to the safety plug module 303.

[0020] In this invention, conductive pins 3041 are electrically connected to both sides of the top of the connector 304. The conductive pins 3041 extend into the interior of the conductive connector structure 305 and are electrically connected to the conductive connector structure 305. A conductive terminal 3042 protruding outward is electrically connected to the center of the top of the connector 304. The conductive terminal 3042 extends into the interior of the conductive connector structure 305 and is electrically connected to the conductive connector structure 305.

[0021] The working principle described above is as follows: When assembling the smart remote control, the battery module 20 is first assembled and fixed to the inner bottom of the remote control housing structure 10. The charging / discharging structure 301 is then connected to the battery module 20 via manual or automated assembly. The PCB smart panel 302, connected to the charging / discharging structure 301, is then assembled inside the remote control housing structure 10. Next, the conductive connector structure 305, connected to the TFT display screen 40, is plugged and fixed to the top of the safety plug module 303 and the connector 304. The PCB smart panel 302 is then electrically connected to the TFT display screen 40. Through the chip and preset program inside the PCB smart panel 302, various functions are displayed on the TFT display screen 40, enhancing the functionality and intelligence of the smart remote control. The design of the conductive connection between the safety plug module 303, the connector 304, and the conductive connector structure 305 reduces the entry of external moisture and water vapor into the conductive connector structure 305, minimizing short circuits caused by excessive moisture and water vapor, and improving the safety of the smart remote control during use. On the other hand, it can reduce the problem of loosening between the two parts of the assembly and ensure the conductivity of both parts.

[0022] For details, please refer to the following: Figure 6 and Figure 7 The remote control housing structure 10 includes: a back cover 101; a fixing seat 102 threadedly connected to the top outer side of the back cover 101; a top cover 103 threadedly connected to the top outer side of the fixing seat 102; and a battery assembly 104 installed at the top center of the back cover 101, wherein a battery module 20 is mounted and fixed on the inner side of the battery assembly 104.

[0023] In this design, a wireless charging module 1011 is installed at the center of the back cover 101. The wireless charging module 1011 is located inside the battery assembly 104, and the top of the wireless charging module 1011 abuts against the battery module 20.

[0024] In the bathroom-based smart remote control structure of this invention, the remote control shell structure 10 is assembled and fixed by threaded assembly, allowing for simple and convenient assembly and fixing. The wireless charging module 1011 is designed to work with a wireless charging base to charge the entire smart remote control structure, making it even more convenient.

[0025] An embedded ring 1021 is fitted on the inner side of the mounting base 102, and a PCB smart panel 302 is fitted and fixed on the inner side of the embedded ring 1021. A rubber sealing ring 105 is installed on the inner side of the connection between the mounting base 102 and the top cover 103. A TFT display screen 40 is fitted and fixed on the top of the top cover 103, and a fluorescent ring 50 located on the outer side of the top of the mounting base 102 is sleeved on the outer side of the top of the top cover 103.

[0026] In the bathroom-based smart remote control structure of the present invention, the design of the embedded ring 1021 facilitates the assembly and compression of the inner PCB smart panel 302, ensuring the sturdiness of the PCB smart panel 302 during assembly. Furthermore, it can wrap and fix the charging / discharging structure 301 that penetrates its inner side, reducing the shaking of the charging / discharging structure 301 after actual assembly and constraining the charging / discharging structure 301.

[0027] For details, please refer to the following: Figure 4 and Figure 5 The charging and discharging structure 301 includes: an external connector 3011 connected to one side of the battery module 20; a discharge socket 3012 electrically connected to the external connector 3011; a discharge plug 3013 connected to the top of the discharge socket 3012; a conductive connecting strip 3014 electrically connected to the bottom of the discharge plug 3013 and passing through the embedded ring 1021; and a connecting plug 3015 installed at the tail of the conductive connecting strip 3014, wherein the bottom of the connecting plug 3015 is electrically connected to the PCB smart panel 302.

[0028] In the bathroom-based smart remote control structure of the present invention, when the smart remote control is in use, the current inside the battery module 20 can be transmitted to the discharge socket 3012 through the external connector 3011, and then transmitted to the conductive connecting strip 3014 through the discharge plug 3013 connected to the discharge socket 3012. The current inside the conductive connecting strip 3014 is then transmitted to the PCB smart panel 302 through the connecting plug 3015, providing power for the operation of the PCB smart panel 302.

[0029] For details, please refer to the following: Figure 6 The PCB smart panel 302 includes: a PCB control board 3021 installed inside the mounting base 102; a charging socket 3022 electrically connected to one side of the top of the PCB control board 3021 and electrically connected to a connector 3015; a smart chip 3023 electrically connected to the top of the PCB control board 3021; ​​and a digital chip 3024 electrically connected to the top of the PCB control board 3021 and located on the side of the smart chip 3023. A safety plug-in module 303 is electrically connected to one side of the top center of the PCB control board 3021, and a plug connector 304 is electrically connected to the other side of the top center of the PCB control board 3021.

[0030] In the bathroom-based smart remote control structure of the present invention, the smart chip 3023 and digital chip 3024, electrically connected through the PCB control board 3021, can control the smart toilet and smart faucet through the TFT display screen 40. Simultaneously, a conductive connection is established between the safety plug-in module 303 and the plug connector 304, both electrically connected to the PCB control board 3021, and the conductive connector structure 305.

[0031] In this invention, the TFT display screen 40 can display a variety of functions for the smart toilet and smart faucet, including temperature display, seat sensing, flushing, automatic flushing, self-sensing seat temperature, UV sterilization, lid opening, top spray switch setting, pre-drainage setting, automatic warm air control, shower head control, and program settings.

[0032] For details, please refer to the following: Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12The conductive connector structure 305 includes: a connector housing 3051 electrically connected to the center of the bottom of the TFT display screen 40; a side mounting cover 3052 snapped and fixed to one side of the connector housing 3051; a partition plate 3053 disposed eccentrically inside the connector housing 3051; an inner insulating plate 3054 installed on the inner wall of the connector housing 3051 and located on the side of the side mounting cover 3052; a conductive central module 3055 disposed at the top inside the connector housing 3051 and electrically connected to the TFT display screen 40; and a conductive central module 3055 snapped and fixed to the bottom of the conductive central module 3055 and connected to the conductive central module. Block 3055 is electrically connected to a power transmission module 3056; a sealing cover 3057 is sleeved on the outside of the power transmission module 3056 and installed at the bottom of the connector housing 3051; conductive sockets 3058 are opened on both sides of the bottom of the power transmission module 3056; a metal embedded copper tube 3059 is disposed inside the conductive socket 3058; a pin socket 30510 is disposed inside the metal embedded copper tube 3059 and electrically connected to the power transmission module 3056, wherein an inner socket 30581 is installed at the bottom of the conductive socket 3058, and the inner socket 30581 is disposed on the outside of the metal embedded copper tube 3059.

[0033] In this solution, a self-disconnecting plug 306 is provided on one side of the partition plate 3053 and the inner wall of the connector housing 3051. The center of the bottom of the power transmission module 3056 is electrically connected to the conductive terminal 3042. The conductive pin 3041 is provided inside the metal embedded copper tube 3059. The conductive pin 3041 extends into the inside of the pin socket 30510 and is electrically connected to the pin socket 30510.

[0034] In the bathroom-based smart remote control structure of the present invention, when a conductive connection is made with the connector 304, the conductive pin 3041 at the top of the connector 304 is inserted into the interior of the metal-embedded copper tube 3059 inside the conductive socket 3058, and extends into the interior of the pin socket 30510. Through the conductive connection at the pin socket 30510, power is transmitted through the pin socket 30510 to the interior of the conductive central module 3055 and the power transmission module 3056. Subsequently, the current located inside the conductive central module 3055 and the power transmission module 3056 is transmitted to the interior of the TFT display screen 40 to control the operation of the TFT display screen 40 and the display of various functional images. The design of the metal-embedded copper tube 3059 structure compresses the conductive pin 3041 on its inner side, ensuring the stability and firmness of the conductive pin 3041 during conductive connection. On the other hand, in conjunction with the external sealing cap 3057 and the inner socket 30581, the conductive connection is sealed, reducing the probability of external moisture and humidity entering the conductive connection and improving safety in the conductive state. Example 2

[0035] For details, please refer to the following: Figure 13 The metal is embedded in the middle part of the copper tube 3059 to form an hourglass body 60. Multiple oblique grooves 601 are provided on the conical surfaces on the upper and lower sides of the hourglass body 60. An elastic pressure plate 602 is formed between two adjacent oblique grooves 601. A reinforcing rib 603 is sleeved on the outside of the connection between the upper and lower elastic pressure plates 602. The reinforcing rib 603 is located at the center of the outside of the hourglass body 60.

[0036] In the bathroom-based smart remote control structure of the present invention, after the conductive pins 3041 extend into the interior of the metal-embedded copper tube 3059, they press against the elastic compression plates 602 inside the metal-embedded copper tube 3059. Through the elastic compression of the elastic compression plates 602, the conductive pins 3041 inside the multiple elastic compression plates 602 are pressed and fixed inside the metal-embedded copper tube 3059. The design of the external reinforcing ribs 603 of the elastic compression plates 602 can constrain the outward displacement of the elastic compression plates 602 and compress the position after the displacement, increasing the strength of the compression and fixing of the conductive pins 3041 and effectively reducing the probability of the conductive pins 3041 loosening.

[0037] For details, please refer to the following: Figure 14 Furthermore, a blood glucose testing module 70 is embedded and installed on the outside of the mounting base 102. The blood glucose testing module 70 uses infrared light of a special wavelength, combined with an algorithm, to test blood glucose without drawing blood.

[0038] It should be noted that the blood glucose testing module 70 is electrically connected to the PCB control board 3021. Through the AI ​​algorithm in the internal program of the PCB control board 3021, the user's blood glucose level can be accurately detected.

[0039] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

[0040] The terms “center,” “longitudinal,” “lateral,” “front,” “rear,” “left,” “right,” “vertical,” “horizontal,” “top,” “bottom,” “inner,” and “outer,” etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are merely simplified descriptions for the convenience of describing the present invention 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 limiting the scope of protection of the present invention.

[0041] Therefore, any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this invention, based on the technical solution and inventive concept of this invention, should be covered within the protection scope of this invention.

Claims

1. A smart remote control structure based on bathroom fixtures, characterized in that: include: Remote control shell structure (10); A battery module (20) is disposed at the bottom inside the remote control housing structure (10); a digital intelligent control mechanism (30) is electrically connected to the battery module (20) and disposed inside the remote control housing structure (10); a TFT display screen (40) is electrically connected to the digital intelligent control mechanism (30) and installed at the top inside the remote control housing structure (10); and a fluorescent ring (50) is sleeved on the outside of the remote control housing structure (10). The digital intelligent control mechanism (30) includes: a charging and discharging structure (301) electrically connected to the battery module (20); a PCB intelligent panel (302) electrically connected to the charging and discharging structure (301) and installed inside the remote control housing structure (10); a safety plug-in module (303) electrically connected to one side of the top center of the PCB intelligent panel (302); a plug (304) disposed on the side of the safety plug-in module (303) and electrically connected to the PCB intelligent panel (302); and a conductive connector structure (305) connected to the plug (304) and electrically connected to the bottom of the TFT display screen (40). The conductive connector structure (305) has a self-disconnecting socket (306) installed on one side, and the self-disconnecting socket (306) is electrically connected to the safety plug module (303).

2. The intelligent remote control structure based on bathroom fixtures according to claim 1, characterized in that: The remote control housing structure (10) includes: a rear cover (101); a fixing seat (102) threadedly connected to the top outer side of the rear cover (101); a top cover (103) threadedly connected to the top outer side of the fixing seat (102); and a battery assembly (104) installed at the top center of the rear cover (101). The battery assembly (104) has a battery module (20) fixedly mounted on its inner side.

3. The intelligent remote control structure based on bathroom fixtures according to claim 2, characterized in that: A wireless charging module (1011) is installed at the center of the interior of the rear cover (101), and the wireless charging module (1011) is located inside the battery assembly (104). The top of the wireless charging module (1011) abuts against the battery module (20).

4. The intelligent remote control structure based on bathroom fixtures according to claim 2, characterized in that: An embedded ring (1021) is fitted on the inner side of the fixing base (102), and a PCB smart panel (302) is fitted and fixed on the inner side of the embedded ring (1021). A rubber sealing ring (105) is installed on the inner side of the connection between the fixing base (102) and the top cover (103). A TFT display screen (40) is fixed on the top of the top cover (103). A fluorescent ring (50) located on the outer side of the top of the fixing base (102) is sleeved on the outer side of the top of the top cover (103).

5. The intelligent remote control structure based on bathroom fixtures according to claim 4, characterized in that: The charging and discharging structure (301) includes: an external connector (3011) connected to one side of the battery module (20); a discharge socket (3012) electrically connected to the external connector (3011); a discharge plug (3013) connected to the top of the discharge socket (3012); a conductive connecting strip (3014) electrically connected to the bottom of the discharge plug (3013) and passing through the embedded ring (1021); and a connecting plug (3015) installed at the tail of the conductive connecting strip (3014). The bottom of the connector (3015) is electrically connected to the PCB smart panel (302).

6. The bathroom-based smart remote control structure according to claim 5, characterized in that: The PCB smart panel (302) includes: a PCB control board (3021) installed inside the mounting base (102); a charging connector socket (3022) electrically connected to the top side of the PCB control board (3021) and electrically connected to the connector plug (3015); a smart chip (3023) electrically connected to the top of the PCB control board (3021); and a digital chip (3024) electrically connected to the top of the PCB control board (3021) and located on the side of the smart chip (3023). The PCB control board (3021) has a safety plug module (303) electrically connected to one side of the top center, and a plug connector (304) electrically connected to the other side of the top center.

7. The intelligent remote control structure based on bathroom fixtures according to claim 1, characterized in that: The top two sides of the connector (304) are electrically connected to conductive pins (3041), which extend into the interior of the conductive connector structure (305) and are electrically connected to the conductive connector structure (305). The connector (304) has an electrically connected conductive terminal (3042) protruding outward at the center of its top. The conductive terminal (3042) extends into the interior of the conductive connector structure (305) and is electrically connected to the conductive connector structure (305).

8. The intelligent remote control structure based on bathroom fixtures according to claim 7, characterized in that: The conductive connector structure (305) includes: a connector housing (3051) electrically connected to the bottom center of the TFT display screen (40); a side mounting cover (3052) snapped and fixed to one side of the connector housing (3051); a partition plate (3053) disposed eccentrically inside the connector housing (3051); an inner insulating plate (3054) installed on the inner wall of the connector housing (3051) and located on the side of the side mounting cover (3052); and a conductive hub module (305) disposed at the top inside the connector housing (3051) and electrically connected to the TFT display screen (40). 5); a power transmission module (3056) snapped and fixed at the bottom of the conductive hub module (3055) and electrically connected to the conductive hub module (3055); a sealing cover (3057) sleeved on the outside of the power transmission module (3056) and installed at the bottom of the connector housing (3051); conductive sockets (3058) opened on both sides of the bottom of the power transmission module (3056); a metal embedded copper tube (3059) disposed inside the conductive socket (3058); and a pin socket (30510) disposed inside the metal embedded copper tube (3059) and electrically connected to the power transmission module (3056). The conductive socket (3058) has an inner base (30581) installed at its inner bottom, and the inner base (30581) is located on the outside of the metal embedded copper tube (3059).

9. The intelligent remote control structure based on bathroom fixtures according to claim 8, characterized in that: A self-disconnecting plug (306) is provided on one side of the partition plate (3053) and the inner wall of the connector housing (3051). The center of the bottom of the power transmission module (3056) is electrically connected to the conductive terminal (3042). The conductive pin (3041) is provided inside the metal embedded copper tube (3059), and the conductive pin (3041) extends into the pin socket (30510) and is electrically connected to the pin socket (30510).