CN209884134U - Dynamic electrocardiograph - Google Patents

Dynamic electrocardiograph Download PDF

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Publication number
CN209884134U
CN209884134U CN201822204369.0U CN201822204369U CN209884134U CN 209884134 U CN209884134 U CN 209884134U CN 201822204369 U CN201822204369 U CN 201822204369U CN 209884134 U CN209884134 U CN 209884134U
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CN
China
Prior art keywords
mainboard
display screen
casing
antenna
sim card
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Active
Application number
CN201822204369.0U
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Chinese (zh)
Inventor
毛定红
徐亚伟
陈维
张毅
朱梦云
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BORSAM BIOMEDICAL INSTRUMENTS Co.,Ltd.
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Fujian Bosheng Biotechnology Co Ltd
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Abstract

The utility model discloses a developments electrocardiograph, which comprises a housin, be equipped with mainboard and battery in the casing, the battery is connected with the mainboard electricity, be equipped with on the mainboard and be used for the line interface of leading with leading the line connection, be equipped with on the mainboard with the SIM card that the mainboard electricity is connected, still be equipped with 4G communication module on the mainboard, be equipped with the antenna in the casing, the antenna is connected with the mainboard electricity, be equipped with the pilot lamp on the casing, the pilot lamp is connected with the mainboard electricity. The utility model discloses when the patient feels uncomfortable, behind the patient's electrocardiogram data was gathered to the developments electrocardiograph, electrocardiogram data can be through 4G communication module timely with electrocardiogram data transmission to doctor's cell-phone, the doctor can receive patient's electrocardiogram data and look over the analysis in the very first time, in time salvages the patient.

Description

Dynamic electrocardiograph
Technical Field
The utility model relates to an electrocardio monitoring technology field, more specifically say so and relate to a developments electrocardiograph.
Background
In 1947, Holter is first applied to the research of monitoring the electrical activity of the heart, so the dynamic electrocardiograph technology is also called Holter monitoring electrocardiograph and is one of the important diagnostic methods for non-invasive examination in the clinical cardiovascular field. Compared with the common electrocardiogram, the dynamic electrocardiogram can continuously record electrocardiosignals for about 10 ten thousand times within 24 hours, so that the detection rate of non-continuous arrhythmia, especially transient arrhythmia and transient myocardial ischemia attack can be improved, and the clinical application range of the electrocardiogram is expanded.
The traditional dynamic electrocardiograph adopts a method of off-line recording and then analyzing electrocardiograph data, timeliness may be relatively poor, data acquired by the dynamic electrocardiograph cannot be transmitted to a doctor in time, and analysis and treatment may not be timely achieved in case of emergency.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a developments electrocardiograph can give the doctor with the timely transmission of the electrocardiogram data of gathering, makes the patient obtain timely treatment.
The technical scheme of the utility model is that: the utility model provides a developments electrocardiograph, which comprises a housin, be equipped with mainboard and battery in the casing, the battery is connected with the mainboard electricity, be equipped with on the mainboard and be used for with lead the line connection interface that leads that the line is connected, be equipped with on the mainboard with the SIM card that the mainboard electricity is connected, still be equipped with 4G communication module on the mainboard, be equipped with the antenna in the casing, the antenna is connected with the mainboard electricity, be equipped with the pilot lamp on the casing, the pilot lamp is connected with the mainboard electricity.
The dynamic electrocardiograph further comprises an electrode plate, one end of the lead wire is connected with the lead wire interface, and the electrode plate is arranged at the other end of the lead wire.
Developments electrocardiograph still includes the display screen, the casing comprises epitheca and inferior valve, open the top surface of epitheca has first window and covers and have the decoration piece, the display screen embedding in the first window of epitheca, it has corresponding to open on the decoration piece the display area's of display screen second window, and the front of display screen with it is cotton to be equipped with dustproof bubble between the decoration piece, the display screen is connected with the mainboard electricity.
The bottom surface of the display screen is provided with supporting foam.
The main board is also provided with an SIM card seat, and the SIM card is arranged in the SIM card seat.
Still be equipped with the singlechip on the mainboard, the model of singlechip is STM32F429ZET 6.
An antenna support is arranged in the shell, and the antenna is installed on the antenna support.
The utility model discloses when the patient feels uncomfortable, behind the patient's electrocardiogram data was gathered to the developments electrocardiograph, electrocardiogram data can be through 4G communication module timely with electrocardiogram data transmission to doctor's cell-phone, the doctor can receive patient's electrocardiogram data and look over the analysis in the very first time, in time salvages the patient.
Drawings
Fig. 1 is a structural diagram of a dynamic electrocardiograph according to an embodiment of the present invention.
Fig. 2 is an exploded view of a dynamic electrocardiograph according to an embodiment of the present invention.
Fig. 3 is a schematic diagram of the dynamic electrocardiograph according to the embodiment of the present invention, after the battery and the rear cover are removed.
Fig. 4 is a schematic block diagram of a dynamic electrocardiograph according to an embodiment of the present invention.
Detailed Description
As shown in fig. 1 and 2, the embodiment of the present invention provides a dynamic electrocardiograph, including casing 1, battery 2, mainboard 3, lead line (only a part of lead line is drawn in the figure) 4 and electrode slice (not drawn in the figure), mainboard 3 and battery 2 are located in casing 1, battery 2 is connected with mainboard 3 electricity, be equipped with on mainboard 3 and be used for the lead line interface 31 of being connected with lead line 4, lead line interface 31 is connected to the one end of lead line 4, the electrode slice is established at the other end of lead line 4. The electrode plate is used for being attached to a human body and collecting the electrocardio information of a patient. The lead wire 4 is a twelve lead wire, the twelve lead wire adopts a ten-core snap-button lead wire, and the lead wire interface 31 adopts a DB25 interface. The electrode plate is a disposable electrode plate, the electrode plate is connected with the lead wire through a snap fastener, and the electrode plate and the skin on the surface of the human body are fixed through viscose for detection.
Be equipped with the SIM card on mainboard 3, the SIM card is connected with 3 electricity of mainboard, still be equipped with 4G communication module on mainboard 3, be equipped with the antenna in the casing 1, the antenna is connected with 3 electricity of mainboard, the SIM card is used for providing the flow that uses 4G communication module to consume, feel when uncomfortable at the patient like this, behind the patient's electrocardiogram data is gathered to the developments electrocardiograph, electrocardiogram data can be through 4G communication module timely with electrocardiogram data transmission to doctor's cell-phone, the doctor can receive patient's electrocardiogram data and look over the analysis at the very first time, in time, rescue the patient.
An antenna bracket 5 is arranged in the shell, and the antenna is arranged on the antenna bracket 5.
Be equipped with the pilot lamp on the casing, the pilot lamp is connected with 3 electricity on the mainboard, and the pilot lamp is used for instructing the state of 4G transmission, and when the dynamic electrocardiograph was carrying out 4G data transmission, the pilot lamp will carry out the scintillation suggestion.
The dynamic electrocardiograph further comprises a display screen 7, the shell 1 is composed of an upper shell 101 and a lower shell 102, and the upper shell 101 and the lower shell 102 can be connected together through a buckle or a screw. The top surface of the upper shell 101 is provided with a first window 1011 and is covered with a decorative sheet 6, the display screen 7 is embedded into the first window 1011 on the upper shell 101, the decorative sheet 6 is provided with a second window 61 corresponding to the display area of the display screen 7, a dustproof foam 8 is arranged between the front surface of the display screen 7 and the decorative sheet 6, and the display screen 7 is electrically connected with the main board. The display screen 7 is used for previewing the acquired electrocardiogram waveform, displaying time, setting menus and the like, and can be operated by matching with keys.
The bottom surface of display screen 7 is equipped with and supports cotton 9 of bubble, supports cotton 9 of bubble and is used for protecting display screen 7.
The decorative sheet 6 is adhered to the top surface of the upper case 101 by double-sided adhesive tape, and mainly plays a decorative role.
The side of the upper shell 101 is provided with a control key 10, the top of the upper shell 101 is provided with two adjusting keys 102, when the control key 10 is pressed, the 4G transmission function is started, and electrocardiogram data before 10s and after 20s are transmitted to the mobile phone of a doctor. Two adjusting keys 102 are used for switching lead channel use, and the heights of the two adjusting keys are different, so that the two adjusting keys are convenient to distinguish and operate.
As shown in fig. 3, the main board is further provided with a SIM card socket 32, a SIM card 33 is installed in the SIM card socket 32, the SIM card socket 32 is welded on the main board, and the structure of the SIM card socket 32 is the same as that of the SIM card socket of the existing functional mobile phone.
The lower case 102 is provided with a battery well 1021, and a battery is mounted in the battery well 1021, and a rear cover 12 (refer to fig. 2) is provided on the battery well 1021 to cover the battery. The battery is a rechargeable lithium ion battery and can be recycled. The battery is connected with the mainboard through the battery shell fragment, can dismantle.
Be equipped with the through-hole on the diapire of battery jar 1021, make battery jar 1021 and the inside intercommunication of inferior valve, SIM cassette 32 locates the back of mainboard and stretches into in the through-hole of the diapire of battery jar 1021, and after the battery was pulled down like this, SIM cassette 32 can expose, can carry out the installation, the dismantlement of SIM card.
As shown in fig. 4, a single chip microcomputer 33 is further arranged on the main board, and the single chip microcomputer 33 is of a model number STM32F429ZET 6. The single chip microcomputer is used for controlling the electrode plates to collect electrocardiogram information, controlling the 4G communication module to transmit electrocardiogram data, displaying on the display screen and controlling the indicator lamp to flicker. After the motor sheet 13 collects the electrocardiogram information of the patient, the singlechip 33 converts the electrocardiogram information into electrocardiogram data, and transmits the electrocardiogram data to the mobile phone of the doctor through the 4G communication module 34.
The mainboard of the dynamic electrocardiograph is also provided with a storage module, and electrocardiogram data are stored in the storage module.
The utility model discloses in, 4G transmission function's use, need bind equipment and patient information in advance, download patient information by the doctor and save in advancing the host computer and accomplish the back of binding at the doctor end, can transmit under this patient corresponds the directory during dynamic electrocardiograph transmission data.
The above embodiments are only for illustrating the concept of the present invention, and those skilled in the art can make various modifications and changes under the concept of the present invention, and these modifications and changes are included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a developments electrocardiograph, includes the casing, be equipped with mainboard and battery in the casing, the battery is connected with the mainboard electricity, be equipped with on the mainboard and be used for the line interface of leading with leading the line connection, a serial communication port, be equipped with on the mainboard with the SIM card that the mainboard electricity is connected, still be equipped with 4G communication module on the mainboard, be equipped with the antenna in the casing, the antenna is connected with the mainboard electricity, be equipped with the pilot lamp on the casing, the pilot lamp is connected with the mainboard electricity, developments electrocardiograph still includes the electrode slice, the one end of line is connected lead the line interface, the electrode slice is established the other end of line is led.
2. The dynamic electrocardiograph according to claim 1, further comprising a display screen, wherein the housing is composed of an upper housing and a lower housing, a first window is opened on the top surface of the upper housing and covered with a decoration sheet, the display screen is embedded in the first window of the upper housing, a second window corresponding to the display area of the display screen is opened on the decoration sheet, and a dust-proof foam is arranged between the front surface of the display screen and the decoration sheet, and the display screen is electrically connected with the main board.
3. The dynamic electrocardiograph according to claim 2 wherein the bottom surface of the display screen is provided with a supporting foam.
4. The dynamic electrocardiograph according to claim 1, wherein a SIM card holder is further provided on the main board, and the SIM card is held in the SIM card holder.
5. The dynamic electrocardiograph according to claim 1, wherein a single chip microcomputer is further arranged on the main board, and the single chip microcomputer is STM32F429ZET6 in model number.
6. The dynamic electrocardiograph according to claim 1 wherein an antenna support is provided in said housing, said antenna being mounted on said antenna support.
CN201822204369.0U 2018-12-26 2018-12-26 Dynamic electrocardiograph Active CN209884134U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822204369.0U CN209884134U (en) 2018-12-26 2018-12-26 Dynamic electrocardiograph

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822204369.0U CN209884134U (en) 2018-12-26 2018-12-26 Dynamic electrocardiograph

Publications (1)

Publication Number Publication Date
CN209884134U true CN209884134U (en) 2020-01-03

Family

ID=68990074

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822204369.0U Active CN209884134U (en) 2018-12-26 2018-12-26 Dynamic electrocardiograph

Country Status (1)

Country Link
CN (1) CN209884134U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20210222

Address after: 518000 3rd floor, building a, No.2, Luozu Industrial Avenue, Luozu community, Shiyan street, Bao'an District, Shenzhen City, Guangdong Province

Patentee after: BORSAM BIOMEDICAL INSTRUMENTS Co.,Ltd.

Address before: 353300 2nd floor, Huahong science and technology building, No.49, Binhe South Road, Shuinan Town, Jiangle County, Sanming City, Fujian Province

Patentee before: FUJIAN BOSHENG BIOTECHNOLOGY Co.,Ltd.

TR01 Transfer of patent right