Novel body temperature monitoring device

By designing a square-structured body temperature monitoring device, and using three sets of fixing straps and movable connectors to fix it under the armpit, the problem of inconvenience in pasting existing devices under the armpit is solved. This achieves comfortable and reliable underarm body temperature monitoring and real-time data transmission, making it suitable for long-term monitoring.

CN223783767UActive Publication Date: 2026-01-09XINYANG VOCATIONAL & TECHN COLLEGE
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Patent Information

Application Number
CN202520466329.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-09
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Existing body temperature monitoring devices are inconvenient to attach temperature-sensing patches under the armpit, making long-term body temperature monitoring inconvenient. In addition, the existing devices have a narrow monitoring range, making it difficult to achieve long-term accurate body temperature monitoring.

Method used

The body temperature monitoring device adopts a square structure and is fixed to the human body with three sets of fixing straps (shoulder, neck and chest). It uses temperature sensors under the armpits for monitoring, and combined with movable connectors and elastic bands, it can be worn securely and comfortably. It also has a built-in data acquisition and signal transmission module to achieve real-time monitoring and data transmission.

Benefits of technology

It enables real-time monitoring of axillary body temperature, is comfortable, securely fixed, not easily falls off, supports flexible adjustment, and has real-time data transmission capabilities, making it convenient for long-term use and monitoring.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223783767U_ABST
Patent Text Reader

Abstract

The utility model relates to a novel body temperature monitoring device which comprises a monitoring module body and a fixing band arranged on the monitoring module body. The monitoring module main body is of a square structure, and a temperature sensor is arranged at the top of the monitoring module main body; the three sets of fixing belts are arranged and correspond to the shoulder direction, the neck direction and the chest direction respectively, the fixing belts fix the monitoring module body in the three directions, and the temperature sensor at the top of the monitoring module body is fixed to the armpit of the human body for body temperature monitoring. A data acquisition module, a signal transmitting module and a power supply module are arranged in the monitoring module main body, and body temperature information is monitored and acquired in real time for a long time. The whole body temperature monitoring device adopts a square structure, is fixed on the human body through three groups of fixing belts, monitors the body temperature of the armpit part of the human body, and abandons a patch with a sticking structure, so that the use experience of a patient is better, and long-term body temperature monitoring is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of medical body temperature measurement device technology, specifically a novel body temperature monitoring device. Background Technology

[0002] In medical care, body temperature monitoring is an essential part. It is an important vital sign that can be used to diagnose and treat patients, observe the progression of their condition, and assess their recovery.

[0003] Current temperature monitoring equipment has a relatively narrow range of applications in clinical practice, mainly due to limitations in the monitoring sites. Generally, the temperature in the mouth, armpit, and rectum is closer to the body's true temperature, resulting in higher measurement accuracy. However, the mouth and rectum are not convenient for long-term monitoring. Existing monitors use adhesive patches that are attached to the body, which is not ideal for the armpit. Therefore, long-term temperature monitoring presents certain inconveniences. In hospital wards, patient temperature monitoring primarily relies on periodic manual measurements. Summary of the Invention

[0004] This utility model is a novel body temperature monitoring device. It adopts a square structure and is fixed to the human body by three sets of fixing straps. It monitors the body temperature in the armpit area, eliminating the need for adhesive patches, thus improving the user experience for patients and facilitating long-term body temperature monitoring.

[0005] The present invention adopts the following technical solution:

[0006] A novel body temperature monitoring device includes a monitoring module body and a fixing strap on the monitoring module body. The monitoring module body has a square structure and a temperature sensor is provided on the top of the monitoring module body. The fixing strap has three sets, corresponding to the shoulder, neck and chest directions respectively. The fixing strap fixes the monitoring module body from three directions, so that the temperature sensor on the top of the monitoring module body is fixed under the armpit of the human body for body temperature monitoring.

[0007] The three sets of fixing straps are a shoulder fixing strap, a neck fixing strap, and a chest fixing strap. The shoulder fixing strap is set around the shoulders from the top of the main body of the monitoring module, the neck fixing strap is set diagonally around the neck from the middle of the main body of the monitoring module, and the chest fixing strap is set around the chest from the bottom of the main body of the monitoring module.

[0008] The shoulder strap, neck strap, and chest strap are all connected to the main body of the monitoring module via connectors, which are movable.

[0009] Furthermore, the connector includes a slider, and the front and rear sides of the monitoring module body are respectively provided with corresponding grooves for the slider. The slider slides and locks in the grooves. The slider has three sets corresponding to the front and rear, which are respectively connected to three sets of fixing straps. The shoulder fixing strap, neck fixing strap, and chest fixing strap are elastic band structures and their two ends are respectively connected to the corresponding sliders. The connector also includes a hook, which is a ring structure, and the two ends of the fixing strap are respectively connected to the hook.

[0010] The slider is a stepped columnar structure, and the corresponding groove is an inverted T-shaped structure. The slider slides in the groove. A movable push rod is provided at the center of the slider. The push rod is a telescopic structure. The push rod supports the bottom surface of the groove through telescopic support to limit and release the slider.

[0011] The hook has an extension rod at the bottom and a horizontal notch at the center of the upper half of the slider. The extension rod corresponds to the notch, and the hook is hinged to the notch through the extension rod. The top of the top rod corresponds to the notch, and the tail of the extension rod has a protrusion. When the extension rod lies down in the notch, the protrusion does not support the top rod. When the hook rotates and stands up, the extension rod rotates to support the top of the top rod, so that it supports the bottom of the slide groove.

[0012] Furthermore, the slider is also provided with a support spring to support the top rod, the support spring supports the top rod to keep it away from the bottom surface of the slide groove; the bottom surface of the slide groove is provided with a pad, the pad is made of flexible material.

[0013] Furthermore, the corresponding notch on the slider extends from the center of the slider to one side and passes through the slider, and the extension rod moves within the notch on that side; when the extension rod is upright, it is pressed against the other side of the notch.

[0014] Furthermore, a strip-shaped thermometer slot is provided at the center of the rear part of the main body of the monitoring module, and the top of the thermometer slot extends upward through the top of the main body of the monitoring module.

[0015] The monitoring module has a built-in data acquisition module, signal transmission module, and power supply module. The data acquisition module collects the data measured by the temperature sensor and transmits it to the outside world through the signal transmission module. The power supply module provides power to the temperature sensor and other modules. The signal transmission module can transmit data via Bluetooth or network, among other methods.

[0016] This utility model has the following beneficial effects:

[0017] This device enables real-time monitoring of axillary body temperature. Its simple overall structure makes it easy to attach to the body, offering better comfort compared to patch-type devices and ensuring it stays in place for extended periods. Furthermore, the device is highly flexible, allowing for easy adjustment and fixation of the strap angle to suit different body types.

[0018] This device also has a built-in thermometer slot, and a mercury thermometer can be placed in the slot for further determination of body temperature as needed during actual use. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the present invention.

[0020] Figure 2 This is a schematic diagram of the connector.

[0021] Figure 3 This is a cross-sectional view of the connector when the extension rod is laid down.

[0022] Figure 4 This is a sectional view of the connector when the extension rod is erected.

[0023] Figure 5 This is a schematic diagram of the built-in modules of the monitoring module. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] like Figures 1-5 The present invention discloses a novel body temperature monitoring device, which includes a monitoring module body 1 and a fixing strap 2 disposed on the monitoring module body 1. The monitoring module body 1 has a square structure and a temperature sensor 101 is provided on the top of the monitoring module body 1. The fixing strap 2 is provided in three sets, corresponding to the shoulder, neck and chest directions respectively. The fixing strap 2 fixes the monitoring module body 1 from three directions, so that the temperature sensor 101 on the top of the monitoring module body 1 is fixed under the armpit of the human body for body temperature monitoring.

[0026] The three sets of fixing straps 2 are a shoulder fixing strap 201, a neck fixing strap 202, and a chest fixing strap 203. The shoulder fixing strap 201 is arranged around the shoulder from the top of the monitoring module body 1, the neck fixing strap 202 is arranged diagonally around the neck from the middle of the monitoring module body 1, and the chest fixing strap 203 is arranged around the chest from the bottom of the monitoring module body 1.

[0027] The shoulder strap 201, neck strap 202, and chest strap 203 are respectively connected to the main body 1 of the monitoring module via connector 3, and the connector 3 is a movable structure.

[0028] Furthermore, the connector 3 includes a slider 301. The front and rear sides of the monitoring module body 1 are respectively provided with slide grooves 102 corresponding to the slider 301. The slider 301 slides and locks in the slide grooves 102. The slider 301 is provided with three sets corresponding to the front and rear sides, which are respectively connected to three sets of fixing straps 2. The shoulder fixing strap 201, neck fixing strap 202, and chest fixing strap 203 are elastic band structures and their two ends are respectively connected to the corresponding slider 301.

[0029] The connector 3 also includes a hook 302, which is a ring structure, and the two ends of the fixing strap 2 are respectively connected to the hook 302.

[0030] The slider 301 has a stepped columnar structure, and the corresponding slide groove 102 has an inverted T-shaped structure. The slider 301 slides in the slide groove 102. A movable top rod 303 is provided at the center of the slider 301. The top rod 303 has a telescopic structure. The top rod 303 supports the bottom surface of the slide groove 102 through telescopic support to limit and release the slider 301.

[0031] The hook 302 has an extension rod 304 at its lower part, and a horizontal notch 305 is provided at the center of the upper half of the slider 301. The extension rod 304 corresponds to the notch 305, and the hook 302 is hinged to the notch 305 through the extension rod 304. The top rod 303 corresponds to the notch 305 at its upper part. The tail of the extension rod 304 has a protrusion 306. When the extension rod 304 lies down in the notch 305, the protrusion 306 does not support the top rod 303. When the extension rod 304 rotates and stands up, the protrusion 306 rotates to support the top of the top rod 303, so that it supports the bottom of the slide groove 102.

[0032] Furthermore, the slider 301 is also provided with a support spring 307 to support the top rod 303. The support spring 307 supports the top rod 303 to keep it away from the bottom surface of the slide groove 102. The bottom surface of the slide groove 102 is provided with a pad 103, which is made of flexible material.

[0033] Furthermore, the corresponding notch 305 on the slider 301 extends from the center of the slider 301 to one side and passes through the slider 301, and the extension rod 304 moves within the notch 305 on this side; when the extension rod 304 is upright, it is pressed against the other side of the notch 305.

[0034] Furthermore, a strip-shaped thermometer slot 104 is provided at the center of the rear part of the monitoring module body 1, and the top of the thermometer slot 104 extends upward through the top of the monitoring module body 1.

[0035] The main body 1 of the monitoring module has a built-in data acquisition module, a signal transmission module and a power supply module. The data acquisition module collects the data measured by the temperature sensor and transmits it to the outside world through the signal transmission module. The power supply module provides power to the temperature sensor and other modules. The transmission methods of the signal transmission module include, but are not limited to, Bluetooth transmission and network transmission.

[0036] When in use, this device is secured to the main body with three fixing straps. The three fixing straps provide a good fixation effect to the main body, and the device will not fall off during the user's activities.

[0037] The connector can be adjusted in position and angle as needed to fit the human body. When movement is required, simply flip the hook to one side of the notch, and the top rod loses its support and limit on the pad. The connector can slide freely, and the entire slider can be rotated to adjust the orientation of the hook. When fixed, the hook is raised, and the protrusion supports the top rod, allowing it to be supported downwards onto the pad to achieve the limit. The flexible structure of the pad is to facilitate the extension and fixation of the top rod.

[0038] In actual use, the notch can be positioned so that the direction of the fixing strap is opposite. When the fixing strap pulls the hook, the extension rod under the hook will fit against the other side of the notch, preventing the hook and extension rod from falling over.

[0039] The main monitoring module of this device monitors human body temperature using a temperature sensor and transmits the collected data via a signal transmission module. In hospital use, real-time data can be uploaded to the hospital's system terminal via Bluetooth or network transmission, allowing medical staff to view patients' temperatures in real time. The real-time data also provides a good indication of changes in patients' body temperature. Furthermore, a mobile application platform can be added to transmit body temperature data to mobile phones via the signal transmission module for viewing and alerting by specific users.

Claims

1. A novel body temperature monitoring device, characterized in that: It includes a monitoring module body and a fixing strap on the monitoring module body; the monitoring module body has a square structure and a temperature sensor is provided on the top of the monitoring module body; the fixing strap has three sets, corresponding to the shoulder, neck and chest directions respectively, and the fixing strap fixes the monitoring module body from three directions, so that the temperature sensor on the top of the monitoring module body is fixed under the armpit of the human body for body temperature monitoring.

2. The novel body temperature monitoring device according to claim 1, characterized in that: The three sets of fixing straps are a shoulder fixing strap, a neck fixing strap, and a chest fixing strap. The shoulder fixing strap is set around the shoulders from the top of the main body of the monitoring module, the neck fixing strap is set diagonally around the neck from the middle of the main body of the monitoring module, and the chest fixing strap is set around the chest from the bottom of the main body of the monitoring module.

3. The novel body temperature monitoring device according to claim 2, characterized in that: The shoulder strap, neck strap, and chest strap are all connected to the main body of the monitoring module via connectors, which are movable.

4. The novel body temperature monitoring device according to claim 3, characterized in that: The connector includes a slider. The front and rear sides of the monitoring module body are respectively provided with grooves corresponding to the slider. The slider slides and locks in the grooves. The slider has three sets corresponding to the front and rear, which are respectively connected to three sets of fixing straps. The shoulder fixing strap, neck fixing strap, and chest fixing strap are elastic band structures and their two ends are respectively connected to the corresponding slider. The connector also includes a hook. The hook is a ring structure and the two ends of the fixing strap are respectively connected to the hook.

5. A novel body temperature monitoring device according to claim 4, characterized in that: The slider is a stepped columnar structure, and the corresponding groove is an inverted T-shaped structure. The slider slides in the groove. A movable push rod is provided at the center of the slider. The push rod is a telescopic structure. The push rod supports the bottom surface of the groove through telescopic support to limit and release the slider.

6. A novel body temperature monitoring device according to claim 5, characterized in that: The hook has an extension rod at the bottom and a horizontal notch at the center of the upper half of the slider. The extension rod corresponds to the notch, and the hook is hinged to the notch through the extension rod. The top of the top rod corresponds to the notch, and the tail of the extension rod has a protrusion. When the extension rod lies down in the notch, the protrusion does not support the top rod. When the hook rotates and stands up, the extension rod rotates to support the top of the top rod, so that it supports the bottom of the slide groove.

7. A novel body temperature monitoring device according to claim 6, characterized in that: The slider is also equipped with a support spring to support the top rod, and the support spring supports the top rod to keep it away from the bottom surface of the slide groove; the bottom surface of the slide groove is equipped with a pad, and the pad is made of flexible material.

8. A novel body temperature monitoring device according to claim 7, characterized in that: The corresponding notch on the slider extends from the center of the slider to one side and passes through the slider. The extension rod moves within the notch on that side. When the extension rod is upright, it is pressed against the other side of the notch.

9. A novel body temperature monitoring device according to claim 8, characterized in that: The monitoring module body has a strip-shaped thermometer slot at the center of its rear, and the top of the thermometer slot extends upward through the top of the monitoring module body.

10. A novel body temperature monitoring device according to claim 9, characterized in that: The monitoring module has a built-in data acquisition module, signal transmission module, and power supply module. The data acquisition module collects the data measured by the temperature sensor and transmits it to the outside world through the signal transmission module. The power supply module provides power to the temperature sensor and other modules. The signal transmission module can transmit data via Bluetooth or network, among other methods.