Digital display assembly for measuring water temperature by touching shower head

By integrating the touch spring and signal transmission module into the shower head and optimizing the connection between the temperature probe and the signal transmission module, the problems of unreliable connection and long signal transmission path in the existing technology are solved, achieving more accurate and stable water temperature display.

CN223367234UActive Publication Date: 2025-09-23SHENZHEN XINRUN PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202422436454.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-09-23
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing water temperature digital display component has problems such as unreliable connection between the temperature probe and the signal transmission module and too long signal transmission path, which leads to inaccurate temperature display and poor stability.

Method used

The touch spring and signal transmission module are integrated in a position of the single-panel panel away from the display surface. Through direct electrical connection between the touch spring and the touch module, and between the display block and the signal transmission module, the connection design between the temperature probe and the signal transmission module is optimized, the signal transmission path is reduced, and signal processing is optimized through the signal conversion module.

Benefits of technology

The accuracy of temperature display and the stability of the signal are improved, the stability of the component is enhanced, the influence of external interference on the signal is reduced, and a more reliable digital display component with touch-sensitive display of water temperature is provided.

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Abstract

The digital display assembly comprises a digital display module and a temperature probe, the digital display module is composed of a touch control spring, a single-sided board and a display block, the single-sided board and the display block are arranged in parallel, a contact surface is defined as a display surface, the touch control spring and the display block are both arranged on the display surface, and the temperature probe is arranged on the touch control spring. A touch control module and a signal transmission module are arranged on the single-sided board away from the display surface, the touch control spring is electrically connected with the touch control module, the display block is electrically connected with the signal transmission module, one end of the temperature probe is electrically connected with a signal receiving module on the single-sided board, and the other end of the temperature probe is in contact with a water source. Signal transmission paths are reduced, signal stability and temperature display accuracy are improved, the touch control module and the signal transmission module are arranged at the position, deviating from the display surface, of the single-sided board, the touch control spring is electrically connected with the touch control module, and the display block is electrically connected with the signal transmission module, so that connection directness and reliability are improved, and assembly stability is enhanced.
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Description

Technical Field

[0001] The present application relates to the field of digital display components, and in particular to a digital display component for measuring water temperature by touch in a shower head. Background Art

[0002] In modern shower systems, accurate water temperature control is crucial for user comfort. Traditional water temperature measurement and digital display components typically rely on temperature probes to detect water temperature and display it digitally on a display screen. These components are widely used in shower heads, helping users understand water temperature in real time and avoid discomfort caused by excessively high or low water temperatures. However, these traditional components typically require manual operation using buttons or knobs, which is not only inconvenient to use in humid environments but also poses safety risks.

[0003] To improve the operational convenience of traditional water temperature measurement and digital display components, various water temperature display solutions have been proposed in the prior art. For example, some technical solutions use a built-in temperature probe in the shower head to transmit the detected water temperature data to a digital display module and display it on an LCD screen. Another technical solution uses touch technology, allowing users to obtain the current water temperature by touching the screen. These solutions have improved the intuitiveness of water temperature display and the convenience of operation to a certain extent, making them more widely used.

[0004] Although the existing water temperature digital display components have shown certain advantages in displaying water temperature, there are still some shortcomings. For example, in some existing technologies, the connection between the temperature probe and the signal transmission module is not reliable enough, and the temperature display may be inaccurate due to external interference during use. The components in the existing technology usually require multiple circuit boards to realize touch and display functions, which may cause the signal transmission path to be too long, thereby affecting the stability of the signal and the stability of the temperature display. Therefore, there is an urgent need for an improved digital display component that can touch and display water temperature to improve the stability of the displayed water temperature. Utility Model Content

[0005] In view of this, it is necessary to provide a digital display component for measuring water temperature by touch with good stability to solve the above problems.

[0006] An embodiment of the present application provides a digital display component for measuring water temperature by touch in a shower head, characterized in that it includes:

[0007] A digital display module includes a touch spring, a single panel, and a display block. The single panel and the display block are arranged in parallel. The contact surface between the single panel and the display block is defined as the display surface. The touch spring and the display block are both arranged on the display surface. The single panel is provided with a touch module and a signal transmission module facing away from the display surface. The touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module.

[0008] A temperature probe is provided on the single panel away from the display surface and provided with a signal receiving module, which is arranged away from the display surface. One end of the temperature probe is electrically connected to the signal receiving module, and the other end contacts the water source.

[0009] In at least one embodiment of the present application, the touch spring is defined to include a connecting portion, and the connecting portion passes through the single-sided board and is welded to the touch module.

[0010] In at least one embodiment of the present application, a pin is provided between the display block and the contact surface of the single-sided board. The pin passes through the single-sided board and is electrically connected to the display block at one end and to the signal transmission module at the other end.

[0011] In at least one embodiment of the present application, the digital display module includes a battery, which is arranged away from the display surface. The battery also includes a positive tin sheet welded to one end face of the battery, and a negative tin sheet welded to the battery away from the positive tin sheet, and the positive and negative electrodes are both electrically connected to the digital display module.

[0012] In at least one embodiment of the present application, it is characterized in that a positive power module and a negative power module are provided on the single-panel panel away from the display surface, the positive tin sheet abuts the positive power module, and the negative tin sheet abuts the negative power module.

[0013] In at least one embodiment of the present application, the digital display component for measuring the water temperature of a shower head by touch includes a first fixing member, and a first adhesive layer is provided on both end surfaces of the first fixing member. There is a gap between the battery and the single panel. The first fixing member is arranged in the gap, and one end is fixedly adhered to the single panel, and the other end is fixedly adhered to the battery.

[0014] In at least one embodiment of the present application, the first fixing member and the second fixing member are both buffer sponges.

[0015] In at least one embodiment of the present application, the single-sided board is coated with a waterproof membrane.

[0016] In at least one embodiment of the present application, a signal conversion module is provided away from the display surface, and the signal conversion module is electrically connected to both the signal transmission module and the signal receiving module.

[0017] The above-mentioned digital display component for measuring water temperature by touch of a shower head effectively solves the problems of unreliable connection and excessively long signal transmission path in the prior art by optimizing the connection design between the temperature probe and the signal transmission module, as well as the layout of the integrated circuit board. Specifically, the touch module and the signal transmission module are arranged at a position away from the display surface of the single panel, thereby realizing the integration of touch and display functions, thereby reducing the signal transmission path and improving the stability of the signal and the temperature display. Moreover, the touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module. This design makes the connection between the touch spring and the touch module, and the display block and the signal transmission module more direct and reliable, reduces the connection points, and thus reduces the influence of external interference on the signal. This not only improves the accuracy of the temperature display, but also enhances the stability of the component, thereby providing an improved digital display component with touch-sensitive display of water temperature. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a front view of a digital display component for measuring water temperature through touch screen in a shower head;

[0019] Figure 2 This is a bottom view of a digital display component used for touch-sensitive water temperature measurement in a shower head.

[0020] Description of main component symbols

[0021] 1. Digital display module; 2. Touch spring; 3. Single panel; 4. Display block; 5. Touch module; 6. Signal transmission module; 7. Temperature probe; 8. Signal receiving module; 9. Battery; 10. Positive tin sheet; 11. Negative tin sheet; 12. Positive power module; 13. Negative power module; 14. First fixing member; 15. Second fixing member; 17. Signal conversion module; 100. A digital display component for touch-sensitive water temperature measurement in a shower head. DETAILED DESCRIPTION

[0022] The embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0023] It should be noted that when a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and similar expressions used herein are for illustrative purposes only.

[0024] The embodiment of the present application provides a digital display assembly for measuring water temperature by touch in a shower head, comprising:

[0025] A digital display module includes a touch spring, a single panel, and a display block. The single panel and the display block are arranged in parallel. The contact surface between the single panel and the display block is defined as the display surface. The touch spring and the display block are both arranged on the display surface. The single panel is provided with a touch module and a signal transmission module facing away from the display surface. The touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module.

[0026] A temperature probe is provided on the single panel away from the display surface and provided with a signal receiving module, which is arranged away from the display surface. One end of the temperature probe is electrically connected to the signal receiving module, and the other end contacts the water source.

[0027] The above-mentioned digital display component for measuring water temperature by touch of a shower head effectively solves the problems of unreliable connection and excessively long signal transmission path in the prior art by optimizing the connection design between the temperature probe and the signal transmission module, as well as the layout of the integrated circuit board. Specifically, the touch module and the signal transmission module are arranged at a position away from the display surface of the single panel, thereby realizing the integration of touch and display functions, thereby reducing the signal transmission path and improving the stability of the signal and the temperature display. Moreover, the touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module. This design makes the connection between the touch spring and the touch module, and the display block and the signal transmission module more direct and reliable, reduces the connection points, and thus reduces the influence of external interference on the signal. This not only improves the accuracy of the temperature display, but also enhances the stability of the component, thereby providing an improved digital display component with touch-sensitive display of water temperature.

[0028] The following is combined with Figure 1-2 , some embodiments of the present application are described in detail. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.

[0029] The embodiment of the present application provides a digital display assembly for measuring water temperature by touch in a shower head, comprising:

[0030] A digital display module includes a touch spring, a single panel, and a display block. The single panel and the display block are arranged in parallel. The contact surface between the single panel and the display block is defined as the display surface. The touch spring and the display block are both arranged on the display surface. The single panel is provided with a touch module and a signal transmission module facing away from the display surface. The touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module.

[0031] A temperature probe is provided on the single panel away from the display surface and provided with a signal receiving module, which is arranged away from the display surface. One end of the temperature probe is electrically connected to the signal receiving module, and the other end contacts the water source.

[0032] Specifically, the core feature of this digital display component is that it organically combines the touch spring, single panel, display block and temperature probe. The display block and touch spring are arranged side by side on the display surface through the single panel. The touch spring is connected to the touch module, and the display block realizes data transmission through the signal transmission module. The temperature probe is directly in contact with the water source and transmits the water temperature information to the display block through the signal receiving module. This structural design ensures that the user can respond quickly and obtain accurate water temperature information when touching. During the operation of the entire system, when the water flows through the temperature probe, the real-time temperature is captured and displayed on the display block. The user can adjust and view it through the touch spring. It is suitable for scenarios that require real-time monitoring and adjustment of water temperature, such as shower equipment, which significantly improves the intelligence and convenience of user use. Especially in daily showering, users can adjust the water temperature without complicated operations, which greatly improves the user experience.

[0033] In a specific example, the touch spring is defined to include a connecting portion, which passes through the single-sided board and is welded to the touch module.

[0034] Specifically, the design of the touch spring highlights a compact and efficient structural layout. The connecting part passes through the single panel and is welded to the touch module, realizing direct transmission of the touch signal. This through-type design effectively reduces the delay and interference in the signal transmission path, ensuring the high sensitivity and response speed of the touch system. It is particularly suitable for scenarios that require frequent operations, such as the rapid response when adjusting the water temperature through the shower. The welding method enhances the firmness of the connection, ensures the durability of the system, and maintains stable touch performance even under high-frequency use.

[0035] In a specific example, a pin is provided between the display block and the contact surface of the single-panel board. The pin passes through the single-panel board and has one end electrically connected to the display block and the other end electrically connected to the information transmission module.

[0036] Specifically, the display block and the signal transmission module are directly electrically connected through pins. The pins pass through the single panel and connect the display block and the signal transmission module at both ends. This electrical connection design ensures the stability and low loss of the signal during transmission, and can quickly and accurately transmit temperature information to the display block. During the use of the shower, the user can clearly see the current water temperature. The pin-through connection also simplifies the interface between components, reduces potential failure points, and improves the overall reliability and service life of the equipment. Especially in complex environments involving the combination of water and electricity, it can effectively reduce the risk of circuit failure.

[0037] In a specific example, the digital display module includes a battery, which is arranged away from the display surface. The battery also includes a positive tin sheet welded to one end face of the battery, and a negative tin sheet welded to the battery away from the positive tin sheet. Both the positive and negative electrodes are electrically connected to the digital display module.

[0038] Specifically, the battery is located on the side of the single-panel panel away from the display surface, and the positive and negative tin plates are respectively welded to the power module, ensuring the continuity and reliability of the power supply of the digital display component and avoiding the interference of the battery on the display function. The design of the positive and negative tin plates simplifies the connection between the battery and the circuit, provides stable current input, and ensures the stable power supply of the equipment during long-term use. It is suitable for digital display equipment that requires continuous power supply, such as shower water temperature display systems. This design not only improves the operating stability of the equipment, but also extends the battery life and reduces the trouble of users frequently replacing batteries.

[0039] In a specific example, a positive power module and a negative power module are provided on the single-sided board away from the display surface, the positive tin sheet abuts against the positive power module, and the negative tin sheet abuts against the negative power module.

[0040] Specifically, the positive and negative power modules are in contact with the battery tin sheets respectively, ensuring the effective transmission of power. This contact connection method improves the power transmission efficiency and reduces energy loss by optimizing the current transmission path. It can provide longer-lasting power support in applications with high power requirements such as shower equipment. At the same time, this connection method also enhances the reliability of equipment operation and avoids power outages or failures caused by poor power contact.

[0041] In a specific example, the digital display component for measuring water temperature by touch of a shower head includes a first fixing part, and a first adhesive layer is provided on both end surfaces of the first fixing part. There is a gap between the battery and the single panel. The first fixing part is arranged in the gap, and one end is fixedly adhered to the single panel, and the other end is fixedly adhered to the battery.

[0042] Specifically, the first fixing part fills the gap between the battery and the single panel, and is bonded to the single panel and the battery through the adhesive layer, providing additional physical support and improving the overall stability of the component. This filling design not only effectively reduces the shaking between the battery and the single panel and increases the durability of the device, but also performs well in anti-vibration. It is suitable for scenarios such as shower equipment that may be impacted by water flow, ensuring the stability of the internal structure during long-term use.

[0043] In a specific example, the digital display component for measuring water temperature of a shower head by touch includes a second fixing member, the second fixing member is away from the first fixing member, and both end surfaces of the second fixing member are provided with a second adhesive layer and are fixedly adhered to the battery.

[0044] Specifically, the second fixing member is arranged back-to-back with the first fixing member and is fixed to the battery with a double adhesive layer. This double fixing member design provides more stable support for the battery and reduces the impact of external shocks on the battery. Especially in the use scenario of shower equipment, it can effectively cope with water flow impact or vibration, and improve the impact resistance and overall stability of the component.

[0045] In a specific example, the first fixing member and the second fixing member are both buffer sponges.

[0046] Specifically, the first and second fixing parts are both made of buffer sponge material, which has excellent shock absorption and energy absorption functions. The buffer sponge can absorb external impact force and protect the delicate structure inside the component. Especially in usage scenarios where the device is frequently impacted by water flow or external force, the buffer sponge design significantly improves the shock resistance and durability of the device, making it suitable for shower equipment in various complex environments.

[0047] In one embodiment, the single-sided board is coated with a waterproof membrane.

[0048] Specifically, the waterproof film coated on the single-sided board effectively enhances the waterproof performance of the device, preventing water vapor from entering the circuit and causing short circuits or corrosion problems. It is suitable for use in humid environments, such as shower equipment. The presence of the waterproof film ensures the safe operation of the circuit board and extends the service life of the equipment. It can maintain stable functional performance even under high humidity conditions.

[0049] In a specific example, a signal conversion module is provided on a surface away from the display surface, and the signal conversion module is electrically connected to both the signal transmission module and the signal receiving module.

[0050] Specifically, the signal conversion module is electrically connected to the signal transmission module and the signal receiving module. By optimizing the signal processing path, the rapid conversion and display of the temperature signal is ensured. The signal conversion module plays a bridging role in the entire system, optimizing the efficiency of data flow. It is suitable for scenarios that require real-time data feedback, such as the water temperature display in shower equipment, improving the immediacy and accuracy of the user experience and ensuring that users can obtain instant temperature feedback during operation.

[0051] The above is only an implementation method of the present application. It should be pointed out that for ordinary technicians in this field, improvements can be made without departing from the creative concept of the present application, but these all fall within the scope of protection of the present application.

Claims

1. A digital display component for measuring water temperature by touch in a shower head, characterized in that: include: A digital display module includes a touch spring, a single panel, and a display block. The single panel and the display block are arranged in parallel. The contact surface between the single panel and the display block is defined as the display surface. The touch spring and the display block are both arranged on the display surface. The single panel is provided with a touch module and a signal transmission module facing away from the display surface. The touch spring is electrically connected to the touch module, and the display block is electrically connected to the signal transmission module. The temperature probe is arranged away from the display surface. The single panel is provided with a signal receiving module away from the display surface. One end of the temperature probe is electrically connected to the signal receiving module, and the other end contacts the water source.

2. A digital display component for measuring water temperature by touch in a shower head according to claim 1, characterized in that: The touch spring is defined to include a connecting portion, which passes through the single-sided board and is welded to the touch module.

3. A digital display component for measuring water temperature by touch in a shower head according to claim 1, characterized in that: A pin is provided between the display block and the contact surface of the single-panel board. The pin passes through the single-panel board, and one end of the pin is electrically connected to the display block and the other end is electrically connected to the signal transmission module.

4. A digital display assembly for measuring water temperature by touch in a shower head according to claim 1, characterized in that: The digital display module includes a battery, which is arranged away from the display surface. The battery also includes a positive tin sheet welded to one end face of the battery, and a negative tin sheet welded to the battery away from the positive tin sheet. Both the positive and negative electrodes are electrically connected to the digital display module.

5. A digital display assembly for measuring water temperature by touch in a shower head according to claim 4, characterized in that: A positive power module and a negative power module are provided on the single-sided board away from the display surface. The positive tin sheet abuts against the positive power module, and the negative tin sheet abuts against the negative power module.

6. A digital display assembly for measuring water temperature by touch in a shower head according to claim 1, characterized in that: The digital display component for measuring water temperature by touch in a shower head includes a first fixing part, and a first adhesive layer is provided on both end surfaces of the first fixing part. There is a gap between the battery and the single panel. The first fixing part is arranged in the gap, and one end is fixedly adhered to the single panel, and the other end is fixedly adhered to the battery.

7. A digital display assembly for measuring water temperature by touch in a shower head according to claim 6, characterized in that: The digital display component for measuring water temperature by touch of a shower head includes a second fixing part, the second fixing part is away from the first fixing part, and the second end surfaces of the second fixing part are both provided with a second adhesive layer and are fixedly adhered to the battery.

8. The digital display assembly for measuring water temperature by touch in a shower head according to claim 7, characterized in that: The first fixing member and the second fixing member are both buffer sponges.

9. The digital display component for measuring water temperature by touch in a shower head according to claim 1, characterized in that: The single-sided board is coated with a waterproof membrane.

10. The digital display component for measuring water temperature by touch in a shower head according to claim 1, characterized in that: A signal conversion module is provided on a surface away from the display surface, and the signal conversion module is electrically connected to both the signal transmission module and the signal receiving module.