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CN215993958U - Non-contact vital sign monitor - Google Patents

Non-contact vital sign monitor
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Publication number
CN215993958U
CN215993958UCN202121737022.8UCN202121737022UCN215993958UCN 215993958 UCN215993958 UCN 215993958UCN 202121737022 UCN202121737022 UCN 202121737022UCN 215993958 UCN215993958 UCN 215993958U
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CN
China
Prior art keywords
vital sign
module
monitor
contact vital
sign monitor
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Active
Application number
CN202121737022.8U
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Chinese (zh)
Inventor
朱婉露
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Zhejiang Shengfei Technology Co ltd
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Zhejiang Shengfei Technology Co ltd
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Application filed by Zhejiang Shengfei Technology Co ltdfiledCriticalZhejiang Shengfei Technology Co ltd
Priority to CN202121737022.8UpriorityCriticalpatent/CN215993958U/en
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Publication of CN215993958UpublicationCriticalpatent/CN215993958U/en
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Abstract

The utility model provides a non-contact vital sign monitor, includes the housing, the monitor still includes millimeter wave biological radar module and display screen, the signal transmission end of millimeter wave biological radar module is located the housing outer wall, waits to detect human thorax position and is located the coverage of signal transmission end, the output and the main control module of millimeter wave biological radar module are connected, the main control module is connected with display module, display module's output is connected with the display screen, the display screen is located on the housing. The utility model provides a non-contact vital sign monitor which is convenient to use, simple in structure and rich in functions.

Description

Non-contact vital sign monitor
Technical Field
The utility model belongs to monitoring equipment, and relates to a vital sign monitor.
Background
The prior vital sign monitor, such as Chinese patent application No. 201910295390.2, is named as a whole-process monitoring method and a vital sign monitoring device, and discloses a whole-process monitoring method and a vital sign monitoring device, which mainly comprise that the vital sign monitoring device with wireless and display functions is worn on a patient, the vital sign information of the patient is collected, the external monitoring system and the vital sign monitoring device are connected, the external monitoring system receives the data of the vital sign monitoring device and displays the data on the external monitoring system, once the connection with the external monitoring system is applied to be disconnected or the vital sign monitoring device leaves the wireless network coverage area of the external monitoring system, the connection between the external monitoring system and the vital sign monitoring device is disconnected, the collected vital sign information of the patient is displayed on the vital sign monitoring device, the utility model overcomes the discontinuous monitoring under different platforms and different scenes in the prior art, monitoring blind areas often appear, so that the requirement of monitoring the whole vital signs of a patient cannot be met, and the method has very important significance for popularization of the full vital sign monitoring in the perioperative period.
In the existing vital sign monitoring mode, the mode of collecting the vital sign information of a patient is still contact type, the use is inconvenient, and the structure is complex.
Disclosure of Invention
In order to overcome the defects of inconvenient use and complex structure of the existing vital sign monitoring mode, the utility model provides the non-contact vital sign monitor which is convenient to use, has a simplified structure and rich functions.
The technical scheme adopted by the utility model for solving the technical problems is as follows:
the utility model provides a non-contact vital sign monitor, includes the housing, the monitor still includes millimeter wave biological radar module and display screen, the signal transmission end of millimeter wave biological radar module is located the housing outer wall, waits to detect human thorax position and is located the coverage of signal transmission end, the output and the main control module of millimeter wave biological radar module are connected, the main control module is connected with display module, display module's output is connected with the display screen, the display screen is located on the housing.
Further, the monitor still includes the infrared sensor who is used for the body temperature of measurement, infrared sensor installs in the housing, infrared sensor's output and main control module are connected.
Still further, the monitor still includes temperature sensor and the humidity transducer who is used for measuring the environment humiture, temperature sensor and humidity transducer install in the housing, temperature sensor and humidity transducer's output and main control module are connected.
Furthermore, the monitor also comprises a data transmission module used for transmitting the monitoring data outwards, receiving an external control instruction and displaying information, and the data transmission module is connected with the main control module.
In the data transmission module, the data transmission mode may be a wired mode or a wireless mode.
And a reading lamp is arranged on the housing.
Preferably, the housing comprises a front cover, a face shell and a rear cover, the front cover is fixedly connected with the front part of the face mask, and the rear part of the face mask is fixedly connected with the rear cover.
The upper part of the mounting cavity between the front cover and the face shell is provided with the millimeter wave biological radar module, and the signal transmitting end of the millimeter wave biological radar module extends out of the upper end of the front cover.
The display screen is positioned at the lower part of the front cover and comprises a liquid crystal display and a backlight plate, and a conductive adhesive tape is arranged between the liquid crystal display and the backlight plate.
And a reading lamp is arranged on the upper part of the front cover.
The lower part of the face shell is provided with an operation key. The control keys comprise a screen display mode switching button, a reading lamp starting closing button and a one-key calling button. Of course, other function keys may be provided.
The back lid is connected with installation card frame fixed connection, the installation card frame is connected with external equipment, and external equipment can be the equipment area or wall etc. behind the bed body. Of course, other mounting arrangements may be used.
The monitor also comprises a power supply module, wherein the power supply module adopts a battery, the battery can be a lithium battery or a rechargeable battery, and the power supply module can be provided with a charging interface and selects a wired or wireless mode.
Through the data transmission module, data can be transmitted to a monitoring center (such as a management center or a monitoring department) remotely, and can also be transmitted to a mobile phone APP. In addition, the display information can be uniformly displayed on the display screen through the data transmission module, and the display information can be various information.
The technical conception of the utility model is as follows: the millimeter wave biological radar technology is adopted, the biological radar can obtain the heart rate, the breathing rate and other information of the human body by irradiating the human body, the technology is a non-contact measurement technology, and the technology is fused into monitoring equipment, so that the use is convenient and fast; furthermore, the whole detection equipment is fused into the housing, so that the structure is simplified; the body temperature detection, the environment temperature and humidity detection function and the reading lamp function are added, and the functions are rich.
The utility model has the following beneficial effects: convenient use, simplified structure and rich functions.
Drawings
Figure 1 is an exploded schematic view of a non-contact vital sign monitor.
Figure 2 is a front view of the non-contact vital sign monitor.
Figure 3 is a top view of the non-contact vital sign monitor.
Figure 4 is a side view of a non-contact vital sign monitor.
Detailed Description
The utility model is further described below with reference to the accompanying drawings.
Referring to fig. 1-4, a non-contact vital sign monitor, includes the housing, the monitor still includes millimeter wave biological radar module 3 and display screen, millimeter wave biological radar module 3's signal transmission end is located the housing outer wall, waits to detect human thorax position and is located in the coverage of signal transmission end, millimeter wave biological radar module 3's output andmain control module 12 are connected,main control module 12 is connected with display module, display module's output and display screen are connected, the display screen is located on the housing.
Further, the monitor still includes infrared sensor 4 that is used for the body temperature of measurement, infrared sensor 4 installs in the housing, infrared sensor 4's output andmain control module 12 are connected.
Still further, the monitor still includes temperature sensor 5 and the humidity transducer 6 that are used for measuring the environment humiture, temperature sensor 5 and humidity transducer 6 are installed in the housing, temperature sensor 5 and humidity transducer 6's output andmain control module 12 are connected.
Furthermore, the monitor also comprises a data transmission module used for transmitting the monitoring data outwards and receiving external control instructions and display information, and the data transmission module is connected with themain control module 12.
In the data transmission module, the data transmission mode may be a wired mode, such as the data line 9, or a wireless mode.
The cover is provided with a reading lamp 1.
Preferably, the housing comprises afront cover 2, a face shell 7 and arear cover 13, thefront cover 2 is fixedly connected with the front part of the face mask 7, and the rear part of the face mask 7 is fixedly connected with therear cover 13.
The upper part of the mounting cavity between thefront cover 2 and the face shell 7 is provided with the millimeter wave biological radar module 3, and the signal transmitting end of the millimeter wave biological radar module 3 extends out of the upper end of thefront cover 2.
The display screen is positioned at the lower part of thefront cover 2 and comprises a liquid crystal display 10 and a backlight plate 11, and a conductiveadhesive tape 15 is arranged between the liquid crystal display 10 and the backlight plate 11. .
The upper part of thefront cover 2 is provided with a reading lamp 1.
The lower part of the face shell 7 is provided with anoperation key 16. The control keys comprise a screen display mode switching button, a reading lamp starting closing button and a one-key calling button. Of course, other function keys may be provided.
Theback lid 13 andinstallation card frame 14 fixed connection,installation card frame 14 is connected with external equipment, and external equipment can be the equipment area or wall etc. behind the bed body. Of course, other mounting arrangements may be used.
The monitor also comprises a power supply module, wherein the power supply module adopts a battery, the battery can be a lithium battery or a rechargeable battery, and the power supply module can be provided with a charging interface and selects a wired or wireless mode.
Through the data transmission module, data can be transmitted to a monitoring center (such as a management center or a monitoring department) remotely, and can also be transmitted to a mobile phone APP. In addition, the display information can be uniformly displayed on the display screen through the data transmission module, and the display information can be various information.
The scheme of this embodiment adopts millimeter wave biological radar, installs in for example the head of a bed apart from the wall of ground 1.5 meters, through the angle that equipment itself and bed were set up, and radar signal center direct alignment reaches the purpose of accurate detection at bed personnel rhythm of the heart and respiratory rate at bed personnel's thorax position.
Furthermore, an infrared sensor is adopted to detect a temperature module, so that the body temperature change of the bed personnel is monitored in real time; adopt temperature and humidity sensor monitoring environment's humiture, add LED reading lamp, convenient and practical.
A large-screen LCD with night vision display is arranged below the monitoring equipment; partitioning display contents: a, the basic information of the bed comprises information such as a bed number, a check-in number, check-in date and time and the like; b, summarizing by the name, the sex, the in-bed judgment section, historical condition reflection, diagnosis and treatment personnel, nursing level, diet type and the like of the bed person; c, monitoring data, environment temperature and humidity, body temperature of bed personnel, respiratory rate and heart rate in real time and the like; and displaying the diagnosis and treatment nursing scheme and the medication condition in the same day in real time.
The control part of this embodiment adopts three major function buttons to control: 1, freely switching a button between day and night on a screen display, 2, calling a site function button by one key, 3 and turning on and off a reading lamp; furthermore, remote information transmission control can be realized, the equipment is connected with a background work station diagnosis room through a wired cable or a wireless transmission module, background personnel can process data information in a centralized mode through the platform, input the data information to the equipment end to display the information, receive calling information sent by bed personnel and the like.
The scheme of this embodiment can be applicable to at home monitoring (family or asylum for the aged etc.), also can be applicable to professional monitoring (for example hospital ward etc.), can conveniently detect human physiological parameters through the monitor.
The embodiments described in this specification are merely examples of implementations of the inventive concepts, which are intended for illustrative purposes only. The scope of the present invention should not be construed as being limited to the particular forms set forth in the examples, but rather as being defined by the claims and the equivalents thereof which can occur to those skilled in the art upon consideration of the present inventive concept.

Claims (10)

CN202121737022.8U2021-07-282021-07-28Non-contact vital sign monitorActiveCN215993958U (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CN202121737022.8UCN215993958U (en)2021-07-282021-07-28Non-contact vital sign monitor

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CN202121737022.8UCN215993958U (en)2021-07-282021-07-28Non-contact vital sign monitor

Publications (1)

Publication NumberPublication Date
CN215993958Utrue CN215993958U (en)2022-03-11

Family

ID=80589537

Family Applications (1)

Application NumberTitlePriority DateFiling Date
CN202121737022.8UActiveCN215993958U (en)2021-07-282021-07-28Non-contact vital sign monitor

Country Status (1)

CountryLink
CN (1)CN215993958U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN113499050A (en)*2021-07-282021-10-15浙江晟飞科技有限公司Non-contact vital sign monitor
WO2024041091A1 (en)*2022-08-232024-02-29德沃康科技集团有限公司Millimeter wave detection apparatus, installation structure, control system, seat, and control method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN113499050A (en)*2021-07-282021-10-15浙江晟飞科技有限公司Non-contact vital sign monitor
WO2024041091A1 (en)*2022-08-232024-02-29德沃康科技集团有限公司Millimeter wave detection apparatus, installation structure, control system, seat, and control method

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