Portable electrocardiogram monitoring device
By integrating a built-in display screen, an active back panel and a built-in battery into the ECG monitoring device, the problem of inconvenient data viewing in the prior art is solved, and a portable ECG monitoring system that can quickly obtain ECG data without a mobile phone is realized.
Patent Information
- Application Number
- CN202422566595.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-10-23
AI Technical Summary
When using existing ECG monitoring devices without a mobile phone, it is difficult to quickly obtain and view ECG waveform data.
A portable electrocardiogram (ECG) monitoring device is designed, which includes a built-in display, a movable back panel, a built-in battery, and a tempered glass film, allowing direct viewing of ECG data without an external power supply, protecting connection cables, and providing convenient operation.
It enables rapid acquisition and viewing of ECG data without the need for a mobile phone, improves operational convenience and data accessibility, and enhances the durability and portability of the device.
Smart Images

Figure CN223453241U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical instrument technical field, concretely is a kind of electrocardiogram monitoring device convenient to carry. BACKGROUND
[0002] Electrocardiograph is a kind of key medical equipment, it helps doctor to diagnose heart disease by monitoring the electrical activity of heart. This equipment can record and analyze electrocardiogram (ECG) in real time, so as to find myocardial infarction, arrhythmia and other heart problems. In the treatment and rehabilitation process, electrocardiograph provides continuous heart condition monitoring, ensures that patients receive timely and appropriate medical intervention.
[0003] After a large amount of retrieval, the publication number CN210727731U discloses a portable real-time electrocardiogram monitoring device, the first connecting wire, the second connecting wire and the third connecting wire are fixedly connected with the positive electrode patch, the intermediate electrode patch and the negative electrode patch at one end outside the storage box. By connecting the Bluetooth receiver and the mobile phone through signals, the electrocardiogram data can be transmitted to the mobile phone for family members to review and analyze relevant data to accurately understand the electrocardiogram of the human body. The Bluetooth receiver sends the electrocardiogram waveform data to the mobile phone in real time, and the mobile phone sends the data to the background for data analysis. If the human body state is abnormal, an alarm will be given, the speaker will be started, and the user will be notified to treat. The device realizes real-time monitoring of heart data, real-time feedback and real-time recording, and accurately understands the heart condition, improving the practicability of the portable real-time electrocardiogram monitoring device.
[0004] In the prior art, the electrocardiogram waveform data needs to be viewed through a mobile phone when the device is in use, which makes it difficult to quickly obtain data information if the mobile phone is not carried. Therefore, a portable electrocardiogram monitoring device is needed to solve the above problems. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a portable electrocardiogram monitoring device, which has the advantages of allowing operators to quickly obtain data information and directly view the data information, and solves the problem of inconvenient data viewing when the device is in use in the prior art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a portable electrocardiogram monitoring device, comprising a frame, a cavity is formed at the rear end of the frame, a host computer is fixedly installed at one side of the cavity inside the frame, an installation slot is formed on the front inner side of the frame, a display screen is embedded and installed in the installation slot, a first reserved slot is formed at one side of the bottom of the front of the frame, a start switch is movably installed in the first reserved slot, a second reserved slot is formed at the other side of the bottom of the front of the frame, and a wiring terminal is embedded and installed in the second reserved slot.
[0007] The back of the frame body is movably mounted with a back plate, and an observation window is formed in the back plate. A connecting line is placed in the cavity of the observation window.
[0008] Preferably, a limiting pin is movably inserted into the hole at the rear end of the top of the frame body, the bottom end of the limiting pin passes through the hole at the top of the frame body and is movably inserted into the top of the back plate, and a connecting spring is arranged on the limiting pin at the top of the frame body. In the design, a hole is designed at the rear end of the top of the frame body, through which a limiting pin is movably inserted. The bottom end of the limiting pin passes through the hole at the top of the frame body and is movably inserted into the top of the back plate. In addition, a connecting spring is specially designed on the limiting pin at the top of the frame body. The advantage of this design is that it provides a simple and effective mechanism to fix the back plate and protect the connecting line, while allowing flexible opening and closing between the back plate and the frame body. The use of the connecting spring enhances the durability and reliability of the device, ensuring stability during long-term use.
[0009] Preferably, the top of the connecting spring is elastically connected with the limiting pin, the bottom end of the connecting spring is elastically connected with the top of the frame body, and the connecting spring is designed with a tensile spring material. In the design, the top of the connecting spring is elastically connected with the limiting pin, while the bottom end is elastically connected with the top of the frame body. The connecting spring is designed with a tensile spring material. The advantage of this design is that it not only provides the necessary elastic support for the opening and closing of the back plate, but also ensures that the connecting spring can maintain its shape and function even under frequent use or accidental impact, thereby improving the durability and service life of the entire device.
[0010] Preferably, a storage battery is built-in in the main machine, the main machine is electrically connected with the display screen, and the main machine is electrically connected with the starting switch and the wiring end. In the design, a storage battery is built-in in the main machine, which enables the device to work independently without external power supply. The main machine is electrically connected with the display screen, ensuring real-time display of electrocardiogram data. In addition, the main machine is also electrically connected with the starting switch and the wiring end. The advantage of this design is that it provides a compact and efficient power management solution, making the entire device more portable and easy to use. The design of the built-in storage battery allows users to perform electrocardiogram monitoring in environments without power sockets, greatly expanding the use scenarios
[0011] Preferably, the display screen is perpendicular to the front bottom of the frame body, and a tempered glass film is attached to the surface of the display screen. In the design, the display screen is installed vertically to the front bottom of the frame body, which allows the display screen to provide the best viewing angle at any time, making it convenient for users to view electrocardiogram data. A tempered glass film is attached to the surface of the display screen. The advantage of this design is that it not only enhances the scratch resistance and impact resistance of the display screen, but also provides a better visual experience. The use of tempered glass film ensures that the display screen remains clear and complete even under long-term use or accidental dropping, thereby ensuring the accuracy and reliability of the monitoring data.
[0012] Preferably, the back plate back bottom is rotatably connected to the frame bottom through a hinge, and a handle is fixedly installed above the back plate back, perpendicular to the back plate back. In the design, the back plate back bottom is rotatably connected to the frame bottom through a hinge, which allows flexible rotation between the back plate and the frame, making it easy for users to adjust the position of the observation window as needed. A handle is fixedly installed above the back plate back, perpendicular to the back plate back. The advantage of this design is that it provides a simple and effective way to carry, making it easy for users to carry and move the ECG monitoring device. The handle is designed with ergonomics in mind, ensuring comfort and stability during carrying.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The display screen is directly embedded in the mounting groove on the front inner side of the frame, which means that the operator can directly view the electrocardiogram data on the device without additional equipment. This design simplifies the data viewing process and improves efficiency. The start switch and the wiring terminal are located on the front of the frame, making it easy for the operator to quickly find and operate. This intuitive layout reduces operational complexity, making it faster to start and connect data. The back plate is provided with an observation window, allowing the operator to quickly view the placement of the connection line without opening the back plate. The movable installation of the back plate also makes the entire device more portable and easier to store. The observation window provides a view of the connection line, and the back plate protects the connection line from external damage, ensuring the integrity of the connection line, which is crucial for quickly and accurately obtaining electrocardiogram data. The main machine is built into the cavity inside the frame and connected to the battery, which means that the device can work without external power supply, increasing the flexibility and convenience of use. Through the start switch in the first reserved slot, the operator can quickly start the electrocardiogram monitoring device, reducing preparation time. The handle is fixedly installed above the back plate back, making it easier to move or carry the device when needed, especially suitable for use in outdoor or mobile environments. In summary, the design of this electrocardiogram monitoring device solves the problem of inconvenient data viewing in existing devices during use by integrating the display screen, protecting the connection line with the back plate, and building the main machine inside, improving the convenience of operation and accessibility of data. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a front view structure schematic diagram of the utility model;
[0016] Figure 2 It is a cross-sectional structure schematic diagram of the utility model;
[0017] Figure 3 It is a Figure 2 structure schematic diagram of the enlarged part.
[0018] Figure 4 This is a rear view structural diagram of the utility model;
[0019] Figure 5 This is a schematic diagram of the frame structure of the present utility model.
[0020] In the figure: 1. frame; 11. display screen; 111. mounting slot; 12. start switch; 121. first reserved slot; 13. connection terminal; 131. second reserved slot; 14. host; 2. limit pin; 21. connecting spring; 3. back panel; 31. handle; 32. hinge; 33. observation window. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] Example 1
[0023] like Figures 1 to 5 As shown, the utility model provides an embodiment: a portable electrocardiogram monitoring device, including a frame 1, a cavity is formed at the rear end of the frame 1, a main unit 14 is fixedly mounted on one side of the cavity in the frame 1, a mounting groove 111 is formed on the inner side of the front of the frame 1, a display screen 11 is embedded and mounted in the mounting groove 111, a first reserved groove 121 is formed on one side of the bottom of the front of the frame 1, a start switch 12 is movably mounted in the first reserved groove 121, a second reserved groove 131 is formed on the other side of the bottom of the front of the frame 1, a terminal 13 is embedded and mounted in the second reserved groove 131;
[0024] A back plate 3 is movably mounted on the back of the frame 1 . An observation window 33 is provided on the back plate 3 . A connecting wire is placed in the cavity where the observation window 33 is provided.
[0025] Specifically, the display screen 11 is embedded directly within the mounting slot 111 on the inner front side of the frame 1, allowing operators to view ECG data directly on the device without the need for additional equipment. This design simplifies the data viewing process and improves efficiency. The start switch 12 and connection terminals 13 are both located on the front side of the frame 1, making them easy for operators to quickly locate and operate. This intuitive layout reduces operational complexity and makes startup and data connection faster. An observation window 33 is provided on the back panel 3, allowing operators to quickly check the placement of the connecting cables without opening the back panel 3. The removable mounting structure of the back panel 3 also makes the entire device more portable and storeable. The observation window 33 provides a place to view the connecting cables, while the back panel 3 protects the cables from external damage, ensuring their integrity, which is crucial for quickly and accurately acquiring ECG data. The main unit 14 is built into the cavity of the frame 1 and is connected to a battery. This means the device can operate without an external power source, increasing flexibility and convenience. The start switch 12 in the first reserved slot 121 allows operators to quickly start the ECG monitoring device, reducing setup time. A handle 31 is fixedly mounted on the upper back surface of the back panel 3, making it more convenient to move or carry the device, making it particularly suitable for use outdoors or in mobile environments. Overall, the design of this ECG monitoring device, by integrating the display screen 11, the back panel 3 for protecting the connecting cables, and the built-in host 14, solves the problem of inconvenient data viewing during use in conventional devices, thereby improving operational convenience and data accessibility.
[0026] Example 2
[0027] In order to protect the connection line, Figures 2 to 4 As shown, in this embodiment, a hole is opened at the rear end of the top of the frame 1 and a limit pin 2 is movably inserted. The bottom end of the limit pin 2 passes through the opening at the top of the frame 1 and is movably inserted on the top of the back panel 3. A connecting spring 21 is provided on the limit pin 2 at the top of the frame 1. In the design, an opening is designed at the rear end of the top of the frame 1, through which the limit pin 2 is movably inserted. The bottom end of this limit pin 2 passes through the opening at the top of the frame 1 and is movably inserted on the top of the back panel 3. In addition, a connecting spring 21 is specially designed on the limit pin 2 at the top of the frame 1. The advantage of this design is that it provides a simple and effective mechanism to fix the back panel 3 and protect the connecting wires, while allowing flexible opening and closing between the back panel 3 and the frame 1. The use of the connecting spring 21 enhances the durability and reliability of the device and ensures stability during long-term use.
[0028] Further, the top of the connecting spring 21 is elastically connected with the limiting pin 2, the bottom end of the connecting spring 21 is elastically connected with the top of the frame body 1, and the connecting spring 21 is designed of tensile spring material. In the design, the top of the connecting spring 21 is elastically connected with the limiting pin 2, and the bottom end thereof is elastically connected with the top of the frame body 1. The connecting spring 21 is designed of tensile spring material, which has the advantages that it not only provides necessary elastic support for the opening and closing of the backboard 3, but also ensures that the connecting spring 21 can maintain its shape and function even under frequent use or accidental impact, thereby improving the durability and service life of the entire device.
[0029] Further, the host 14 is internally installed with a storage battery, the host 14 is electrically connected with the display screen 11, and the host 14 is electrically connected with the start switch 12 and the wiring terminal 13. In the design, the host 14 is internally installed with a storage battery, which enables the device to work independently without external power supply. The host 14 is electrically connected with the display screen 11, which ensures real-time display of electrocardiogram data. In addition, the host 14 is also electrically connected with the start switch 12 and the wiring terminal 13, which has the advantages that it provides a compact and efficient power management solution, making the entire device more portable and easy to use. The design of the built-in storage battery allows users to perform electrocardiogram monitoring in environments without power sockets, greatly expanding the use scenarios
[0030] Further, the bottom of the back of the backboard 3 is rotationally connected with the bottom of the frame body 1 through the hinge 32, and the upper part of the back of the backboard 3 is fixedly installed with the handle 31, which is perpendicular to the back of the backboard 3. In the design, the bottom of the back of the backboard 3 is rotationally connected with the bottom of the frame body 1 through the hinge 32, which allows flexible rotation between the backboard 3 and the frame body 1, and facilitates users to adjust the position of the observation window 33 as needed. The upper part of the back of the backboard 3 is fixedly installed with the handle 31, which is perpendicular to the back of the backboard 3, which has the advantages that it provides a simple and effective carrying method, making it easy for users to carry and move the electrocardiogram monitoring device. The design of the handle 31 takes into account ergonomics, ensuring comfort and stability during carrying.
[0031] Embodiment Three
[0032] In order to facilitate viewing of the display screen during use and to avoid damage to the display screen during use, such as Figures 2 to 3 Figures 2 to 3As shown, in this embodiment, the display screen 11 is perpendicular to the front bottom of the frame body 1, and a tempered glass film is attached to the surface of the display screen 11. In the design, the display screen 11 is installed vertically to the front bottom of the frame body 1, which allows the display screen 11 to provide the best viewing angle at any time, making it convenient for users to view the electrocardiogram data. The tempered glass film attached to the surface of the display screen 11 has the advantage of not only enhancing the scratch resistance and impact resistance of the display screen 11, but also providing a better visual experience. The use of tempered glass film ensures that the display screen 11 remains clear and complete even in the case of long-term use or accidental dropping, thereby ensuring the accuracy and reliability of the monitoring data.
[0033] When the utility model is used, it is ensured that the electrocardiogram monitoring device has been charged and has sufficient power in the battery, all connection lines are checked for integrity, and the connection lines in the observation window 33 have been placed correctly. The back plate 3 is opened, the connection lines are taken out, and the connection lines are connected to the patient's body and the other end of the connection lines is inserted into the wiring end 13. The electrocardiogram monitoring device is started through the starting switch 12 in the first reserved slot 121. Once the connection is completed and the device is started, the display screen 11 will display electrocardiogram data. The display screen 11 is located in the mounting slot 111 on the inside of the front of the frame body 1, and the electrocardiogram waveform can be directly viewed. When monitoring is needed in movement, the handle 31 on the back of the back plate 3 can be lifted to facilitate carrying the electrocardiogram monitoring device. The built-in battery in the host 14 can support the device to work without external power supply. At the same time, the host 14 can record electrocardiogram data. After completing electrocardiogram monitoring, the starting switch 12 is turned off to turn off the device, the connection lines are disconnected, and the connection lines are neatly put back into the cavity. The back plate 3 is closed to ensure that all parts are fixed in place, and then the device can be safely stored or carried.
[0034] It is obvious to those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A portable electrocardio monitoring device, comprising a frame (1), a cavity is formed in the rear end of the frame (1), a main machine (14) is fixedly installed on the inner side of the cavity in the frame (1), characterized in that: a mounting groove (111) is formed in the front inner side of the frame (1), a display screen (11) is embeddedly installed in the mounting groove (111), a first reserved groove (121) is formed on one side of the bottom of the front of the frame (1), a starting switch (12) is movably installed in the first reserved groove (121), a second reserved groove (131) is formed on the other side of the bottom of the front of the frame (1), a wiring terminal (13) is embeddedly installed in the second reserved groove (131); a back plate (3) is movably installed on the back of the frame (1), an observation window (33) is formed in the back plate (3), a connecting line is placed in the cavity where the observation window (33) is formed.
2. The portable electrocardiogram monitoring device of claim 1, wherein, A limiting pin (2) is movably inserted into the hole formed in the top rear end of the frame (1), the limiting pin (2) passes through the hole formed in the top of the frame (1) and is movably inserted into the top of the back plate (3), a connecting spring (21) is arranged on the limiting pin (2) in the top of the frame (1).
3. The portable electrocardiogram monitoring device of claim 2, wherein, The top of the connecting spring (21) is elastically connected with the limiting pin (2), the bottom of the connecting spring (21) is elastically connected with the top of the frame (1), and the connecting spring (21) is designed of tensile spring material.
4. The portable electrocardiogram monitoring device of claim 1, wherein, A storage battery is built-in installed in the main machine (14), the main machine (14) is electrically connected with the display screen (11), and the main machine (14) is electrically connected with the starting switch (12) and the wiring terminal (13).
5. The portable electrocardiogram monitoring device of claim 1, wherein, The display screen (11) is perpendicular to the bottom of the front of the frame (1), and a tempered glass film is attached to the surface of the display screen (11).
6. The portable electrocardiogram monitoring device of claim 1, wherein, The back plate (3) is rotatably connected with the bottom of the frame (1) through a hinge (32) on the back bottom of the back plate (3), a handle (31) is fixedly installed on the back plate (3) above the back, and the handle (31) is perpendicular to the back of the back plate (3).
Citation Information
Patent Citations
Portable real-time electrocardiogram monitoring device
CN210727731U