Electronic display screen mobile phone shell with ECG electrocardio electrode monitoring function

By integrating ECG electrodes and an electronic display module into the phone case, the problems of handheld ECG acquisition devices occupying both hands and being easily lost are solved, achieving convenient ECG monitoring and efficient use.

CN224191960UActive Publication Date: 2026-05-01SUZHOU SIPULANDI ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU SIPULANDI ELECTRONICS CO LTD
Filing Date
2025-04-25
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing handheld ECG acquisition devices occupy both hands, causing hand fatigue, making it impossible to perform other tasks at the same time. They are also easily lost, have low usage rates, and require an additional mobile app with complicated setup steps.

Method used

By integrating ECG electrodes into the phone case, along with an electronic display module and NFC antenna, ECG data can be automatically collected via a mobile app, simplifying the operation.

Benefits of technology

Improve portability and usability, prevent device loss, simplify operation steps, and enhance user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electronic display screen mobile phone shell with an ECG electrocardio electrode monitoring function, which comprises a silica gel mobile phone shell body, a mobile phone accommodating groove for accommodating a mobile phone and a display screen accommodating groove for accommodating a display screen module are respectively arranged in the silica gel mobile phone shell body, an electronic display screen module is arranged in the display screen accommodating groove, and the electronic display screen module is arranged in the silica gel mobile phone shell body. The electronic display screen module comprises a PCBA control panel, electronic paper used for displaying and an ECG electrode used for detecting electrocardio, the electronic paper and the ECG electrode are respectively connected with the PCBA control panel, the electronic display screen module further comprises an NFC antenna layer, and the NFC antenna layer is connected with the PCBA control panel. According to the structure, the ECG electrode is integrated to the back of the mobile phone shell, on one hand, time can be saved, the situation that a user needs to independently carry an ECG collecting device is avoided, and portability is improved; meanwhile, by utilizing the common use of the mobile phone shell, the electrocardio acquisition equipment is prevented from being lost and can be used at any time, the searching time is shortened, and the actual utilization rate is improved.
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Description

A mobile phone case with an electronic display screen and ECG electrocardiogram electrodes for monitoring. Technical Field

[0001] This utility model relates to the field of mobile phone cases, and in particular to a mobile phone case with an electronic display screen for ECG electrocardiogram monitoring. Background Technology

[0002] Currently, handheld ECG acquisition devices used in the medical device industry are standalone handheld devices. To collect ECG data, the thumb must be used to operate the device, occupying both hands and preventing simultaneous tasks. Therefore, prolonged or frequent use can easily lead to hand fatigue and wasted time. Furthermore, while small in size, handheld ECG acquisition devices are easily lost, and users typically don't carry them when out and about; they are often left lying around at home, requiring time to find them for future use, resulting in low actual usage. Moreover, the device requires a mobile app, adding extra steps and complexity, further reducing the willingness to use it. Summary of the Invention

[0003] The technical problem solved by this utility model is to provide a convenient mobile phone case with an electronic display screen that includes ECG electrocardiogram electrode monitoring.

[0004] The technical solution adopted by this utility model to solve its technical problem is: a mobile phone case with an electronic display screen and ECG electrocardiogram electrode monitoring, including a silicone mobile phone case body. The silicone mobile phone case body is respectively provided with a mobile phone receiving slot for placing the mobile phone and a display screen receiving slot for accommodating the display screen module. The display screen receiving slot is provided with an electronic display screen module. The electronic display screen module includes a PCBA control board, electronic paper for display, and ECG electrocardiogram electrodes for detecting electrocardiogram. The electronic paper and ECG electrocardiogram electrodes are respectively connected to the PCBA control board. It also includes an NFC antenna layer, which is connected to the PCBA control board.

[0005] Furthermore, it also includes a tempered glass layer and a PVC cover layer. The electronic display module is located between the tempered glass layer and the PVC cover layer. The tempered glass layer and the PVC cover layer are connected by an annular adhesive layer. A through groove is provided in the middle of the annular adhesive layer. The electronic display module and the NFC antenna layer are housed in the through groove of the adhesive layer.

[0006] Furthermore, it also includes a foam layer located between the electronic display module and the PVC cover layer.

[0007] Furthermore, a transparent display window is provided on the tempered glass layer, which corresponds to the electronic paper, allowing the pattern displayed on the electronic paper to be seen through the transparent display window.

[0008] Furthermore, an opening is provided on the tempered glass layer at the location of the ECG electrode, allowing the ECG electrode to pass through the opening.

[0009] Furthermore, the electronic paper is an electronic ink screen or an ECD display screen.

[0010] The beneficial effects of this invention are as follows: This structure integrates ECG electrodes into the back of a phone case, saving time and eliminating the need for users to carry the ECG acquisition device separately, thus improving portability. Simultaneously, the frequent use of the phone case ensures the ECG acquisition device is not lost and is always available, reducing search time and increasing actual usage. Furthermore, by integrating the ECG electrodes and electronic display module, it can be automatically used with a mobile app, simplifying the usage process and increasing user willingness to use it. Attached Figure Description

[0011] Figure 1 is an exploded view of an electronic display phone case with ECG electrocardiogram electrode monitoring according to an embodiment of this application.

[0012] Figure 2 is a rendering of an electronic display phone case with ECG electrocardiogram electrode monitoring according to an embodiment of this application.

[0013] The components in the diagram are labeled as follows: 1. Silicone phone case body; 2. PCBA control board; 3. Electronic paper; 4. ECG electrodes; 5. NFC antenna layer; 6. Tempered glass layer; 7. PVC cover layer; 8. Circular adhesive layer; 81. Through groove; 9. Foam layer. Detailed Implementation

[0014] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0015] As shown in Figure 1, an embodiment of this application discloses an electronic display phone case with ECG electrocardiogram electrode 4 for monitoring. It includes a silicone phone case body 1, in which a phone receiving slot for placing a phone and a display receiving slot for accommodating a display module are respectively provided. An electronic display module is disposed in the display receiving slot. The electronic display module includes a PCBA control board 2, an electronic paper 3 for display, and an ECG electrocardiogram electrode 4 for detecting electrocardiogram. The electronic paper 3 and the ECG electrocardiogram electrode 4 are respectively connected to the PCBA control board 2. It also includes an NFC antenna layer 5, which is connected to the PCBA control board 2.

[0016] In the above structure, the NFC antenna is used to establish a connection with the mobile APP and transmit external device information to the PCBA control board 2 so that the control board can perform corresponding operations according to the received data instructions. The PCBA control board 2 is connected to NFC, electronic paper 3, and ECG electrocardiogram electrode 4, and is used to receive, process, control, and transmit signals from each module and coordinate the work of each component. The ECG electrocardiogram electrode 4 is used to directly contact the skin to sense potential changes and convert them into electrical signals.

[0017] In practical application, the user places the electronic display phone case with ECG electrode 4 (as described in this application) onto their phone, with the ECG electrode 4 in close contact with the user's skin. When the user needs to monitor their ECG, they can establish a connection with the NFC antenna of this application via a mobile app. The app then sends a command to the PCBA control board 2, which in turn controls the ECG electrode 4 to collect ECG data and sends the collected data back to the PCBA control board 2. The PCBA control board 2 then sends the ECG data back to the mobile app via the NFC antenna, and the app displays the ECG data for the user to view. Simultaneously, the electronic paper 3 in this structure can display information such as time, date, battery level, and various graphics, while also displaying ECG data, making it more convenient for the user to view ECG data.

[0018] In this embodiment, the ECG electrode 4 is provided with a medical-grade nickel plating layer. This layer ensures that the ECG electrode 4 will not fail to produce test results due to sweat on the hands during use, thus making the test results more accurate.

[0019] In this embodiment, a tempered glass layer 6 and a PVC cover layer 7 are also included. The electronic display module is located between the tempered glass layer 6 and the PVC cover layer 7. The tempered glass layer 6 and the PVC cover layer 7 are connected by an annular adhesive layer 8. A through groove 81 is provided in the middle of the annular adhesive layer 8. The electronic display module and the NFC antenna layer 5 are accommodated in the through groove 81 of the adhesive layer.

[0020] Specifically, the tempered glass layer 6 is located on the outer side of the phone case, and the PVC cover layer 7 is located on the inner side of the phone case, meaning that the PVC cover layer 7 is in direct contact with the phone.

[0021] The above-described structure enhances the safety of the electronic display module, preventing scratches or impact damage from hard objects. Simultaneously, the tempered glass layer 6 improves the phone case's aesthetics, while the PVC cover layer 7 increases its flexibility, preventing scratches from an overly hard case. The annular adhesive layer 8 strengthens the connection between the tempered glass layer 6 and the PVC cover layer 7, preventing them from detaching during use. Furthermore, the through-groove 81 in the center of the adhesive layer provides installation space for the electronic display module and the NFC antenna layer 5, preventing them from being damaged by pressure from the tempered glass layer 6 and the PVC cover layer 7.

[0022] In this embodiment, a foam layer 9 is also included, which is located between the electronic display module and the PVC cover layer 7.

[0023] Specifically, the foam layer 9 enhances the cushioning performance between the electronic display module and the phone case body, preventing damage from excessive impact during installation or use. Simultaneously, the foam layer 9 acts as a seal, preventing dust, moisture, and other impurities from entering the module and affecting its normal operation. Furthermore, the foam layer 9 improves the phone case's shock resistance, allowing it to better protect the phone and its internal components from damage when subjected to external impacts.

[0024] In this embodiment, a transparent display window is provided on the tempered glass layer 6, which corresponds to the electronic paper 3, so that the pattern displayed on the electronic paper 3 can be seen through the transparent display window.

[0025] Specifically, the transparent display window ensures that users can clearly see the information displayed on the ePaper 3, such as time, date, battery level, and ECG data, improving ease of use and practicality. At the same time, the transparent display window design also enhances the aesthetics of the phone case and improves the user's visual experience.

[0026] In this embodiment, an opening is provided on the tempered glass layer 6 at the position of the ECG electrocardiogram electrode 4, so that the ECG electrocardiogram electrode 4 can pass through the opening.

[0027] Specifically, the opening design ensures close contact between the ECG electrode 4 and the user's skin, thereby accurately acquiring ECG signals. Simultaneously, the opening design prevents the ECG electrode 4 from being obstructed by the tempered glass layer 6, ensuring its normal operation. Furthermore, the shape and size of the opening can be adjusted according to actual needs to meet the requirements of different users. During use, users simply need to place the electronic display phone case with the ECG electrode 4 monitoring device onto their phone to perform ECG monitoring at any time, eliminating the need to carry a separate ECG acquisition device, greatly improving convenience and practicality.

[0028] In this embodiment, the electronic paper 3 is an electronic ink screen or an ECD display screen.

[0029] Specifically, e-ink or ECD displays offer advantages such as low power consumption, high definition, and wide viewing angles, ensuring clear visibility even in strong sunlight, allowing users to conveniently view ECG data in various environments. Furthermore, e-ink or ECD displays feature fast refresh rates, enabling real-time updates of displayed ECG data to ensure users receive the latest and most accurate information. This choice of display technology not only enhances the user experience but also further strengthens the practicality and market competitiveness of this invention.

[0030] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above descriptions are merely specific embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An electronic display screen phone case with ECG electrocardio electrode monitoring, characterized in that: The device includes a silicone phone case body (1), which has a phone housing slot for placing a phone and a display screen housing slot for accommodating a display screen module. The display screen housing slot contains an electronic display screen module, which includes a PCBA control board (2), an electronic paper (3) for display, and an ECG electrode (4) for detecting electrocardiogram. The electronic paper (3) and the ECG electrode (4) are connected to the PCBA control board (2). The device also includes an NFC antenna layer (5), which is connected to the PCBA control board (2).

2. The electronic display phone case with ECG electrocardiogram electrode (4) monitoring as described in claim 1, characterized in that: It also includes a tempered glass layer (6) and a PVC cover layer (7). The electronic display module is located between the tempered glass layer (6) and the PVC cover layer (7). The tempered glass layer (6) and the PVC cover layer (7) are connected by an annular adhesive layer (8). A through groove (81) is provided in the middle of the annular adhesive layer (8). The electronic display module and the NFC antenna layer (5) are housed in the through groove (81) of the adhesive layer.

3. The electronic display phone case with ECG electrocardiogram electrode (4) monitoring as described in claim 2, characterized in that: It also includes a foam layer (9) located between the electronic display module and the PVC cover layer (7).

4. The electronic display phone case with ECG electrocardiogram electrode (4) monitoring as described in claim 2, characterized in that: A transparent display window is provided on the tempered glass layer (6), which corresponds to the electronic paper (3), so that the pattern displayed on the electronic paper (3) can be seen through the transparent display window.

5. The cell phone case with ECG electrocardio electrode (4) monitoring electronic display screen as claimed in claim 2, characterized in that: An opening is provided on the tempered glass layer (6) at the position of the ECG electrocardiogram electrode (4), so that the ECG electrocardiogram electrode (4) can pass through the opening.

6. The electronic display phone case with ECG electrocardiogram electrode (4) monitoring as described in claim 1, characterized in that: The electronic paper (3) is an electronic ink screen or an ECD display screen.