Body temperature monitoring device for newborns

By placing a low-sensitivity silicone pad on the bottom surface of the temperature patch and covering it with an anti-slip pad, and fixing it with a sterile rubber band, the problem of unreliable adhesion of the temperature patch was solved, thus achieving stability and safety in newborn temperature monitoring.

CN224004550UActive Publication Date: 2026-03-17JINGZHOU FIRST PEOPLES HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing newborn temperature monitoring devices often have glue residue on the bottom of the temperature patch, leading to poor adhesion.

Method used

A low-sensitivity silicone pad is placed on the bottom surface of the lower shell of the temperature patch, and an anti-slip pad is placed on top of it. The anti-slip pad is fixed to the lower shell with sterile rubber bands to form an integrated structure, ensuring that no adhesive residue is left when replacing the low-sensitivity silicone pad. The sterile rubber bands also ensure a strong adhesion.

Benefits of technology

This effectively prevents glue residue, ensures that the thermometer adheres firmly to the newborn's skin, keeps the area clean, avoids the spread of germs, and guarantees the stability and safety of the monitoring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a body temperature monitoring device for newborns, which belongs to the field of newborns and comprises a body temperature patch consisting of a temperature sensor, an analysis board for analyzing and transmitting signals of the temperature sensor and a rechargeable battery for supplying energy. Compared with the prior art, the temperature sensor has the advantages that the anti-skid gasket is arranged between the low-sensitivity silica gel pad and the bottom surface of the lower shell, and the anti-skid gasket is fixed on the lower shell through the sterile rubber band, so that after the low-sensitivity silica gel pad is adhered to the skin of a newborn, the temperature sensor can operate normally, and the temperature sensor can be prevented from being damaged. The low-sensitivity silica gel pad and the anti-skid pad are of an integrated structure before use, the low-sensitivity silica gel pad is attached to the lower shell during use, and therefore the body temperature patch can be kept clean all the time, and the body temperature patch is convenient to use. And the condition that germs on the body temperature patch are adhered to the skin of the newborn is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of neonatal care, specifically to a body temperature monitoring device for newborns. Background Technology

[0002] Children are the future of humanity, and their existence is crucial to the continuation of human civilization. When newborns are first born, their immune systems are not yet fully capable of effectively protecting them from various external environments. This means that newborns require 24-hour care from their caregivers. When a newborn is sick, changes in body temperature are one of the quickest ways to confirm their illness. To monitor these changes, caregivers must take the child's temperature at regular intervals to ensure their safety.

[0003] To facilitate real-time monitoring of infants' body temperature, a temperature patch has been invented based on technological data. This temperature patch mainly consists of a temperature sensor, an analysis board that analyzes and transmits the temperature sensor's signals, and a rechargeable battery for power. The temperature patch is attached to the infant's armpit using a hypoallergenic silicone pad. The temperature sensor monitors the child's body temperature in real time, and the analysis board converts the data into a wireless signal, which is received by the user's mobile phone software to analyze the child's health status.

[0004] Hypoallergenic silicone pads, as a common porous material, have good adsorption properties and generally do not cause allergic reactions on human skin. They are often used to make various human filler tendons and artificial joints, which ensures the safety of newborns when using hypoallergenic silicone pads. However, in order to ensure sterility, hypoallergenic silicone pads are mostly disposable materials. After use, they need to be peeled off from the temperature patch and replaced with a new hypoallergenic silicone pad. However, during the replacement process, some silicone will inevitably stick to the bottom surface of the lower shell. With the increase of repeated use, these residual adhesives will seriously affect the adsorption force of the bottom surface of the temperature patch. Utility Model Content

[0005] The technical problem this invention aims to solve is that glue residue easily accumulates under the temperature patch of existing neonatal temperature monitoring devices, which may lead to poor adhesion during subsequent use.

[0006] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows: a body temperature monitoring device for newborns, comprising a body temperature patch consisting of a temperature sensor, an analysis board for analyzing and transmitting temperature sensor signals, and a rechargeable battery for power supply. The outer shell of the body temperature patch is composed of an upper shell and a lower shell connected by pins. The bottom surface of the lower shell is provided with a low-sensitivity silicone pad that adheres to the skin under the armpit of the newborn. An anti-slip pad is provided above the silicone coating of the low-sensitivity silicone pad and wrapped around the outer wall of the lower shell. The anti-slip pad is connected to the outer wall of the lower shell by a sterile rubber band.

[0007] As an improvement, one side of the upper housing is provided with an opening plate for easy removal of the body temperature patch, and the interior of the upper housing and the opening plate is provided with charging contacts that connect to the rechargeable battery.

[0008] As an improvement, a sealing plate is welded above the cavity where the charging contacts are located.

[0009] As an improvement, the side of the lower housing is provided with a convenient sterile rubber band to be fixed in the positioning groove, and the low-sensitivity silicone pad and the anti-slip pad are integrated into one structure.

[0010] As an improvement, the outer wall of the body temperature patch is provided with a battery compartment for storing and charging the body temperature patch, and one side of the battery compartment is provided with a power contact connected to the charging contact.

[0011] As an improvement, the anti-slip pad is a single-sided smooth pad, and the contact surface between the anti-slip pad and the lower housing is a rough surface.

[0012] The advantages of this invention compared to existing technologies are as follows: This device places an anti-slip pad between the hypoallergenic silicone pad and the bottom surface of the lower housing, and fixes the anti-slip pad to the lower housing using sterile rubber bands. This ensures that after the hypoallergenic silicone pad adheres to the newborn's skin, the temperature sensor can operate normally, while preventing adhesive residue from appearing on the bottom surface of the lower housing when the hypoallergenic silicone pad is replaced. This guarantees the adhesion of the temperature patch. Furthermore, since the hypoallergenic silicone pad and the anti-slip pad are an integrated structure before use and are attached to the lower housing during use, the temperature patch can always maintain its cleanliness, preventing germs from the temperature patch from sticking to the newborn's skin. Attached Figure Description

[0013] Figure 1 This is a general structural diagram of a newborn body temperature monitoring device according to the present invention.

[0014] Figure 2 This is a structural diagram of the battery compartment of a newborn body temperature monitoring device according to this utility model.

[0015] Figure 3 This is a cross-sectional view of a body temperature patch for a newborn body temperature monitoring device according to this utility model.

[0016] Figure 4 This is an exploded view of a body temperature patch for a newborn body temperature monitoring device according to this utility model.

[0017] As shown in the figure: 1. Temperature patch; 11. Temperature sensor; 12. Analyzer plate; 13. Rechargeable battery; 14. Upper shell; 141. Opening plate; 142. Charging contact; 143. Sealing plate; 15. Lower shell; 151. Positioning groove; 2. Low-sensitivity silicone pad; 21. Anti-slip pad; 22. Sterile elastic band; 3. Battery compartment; 31. Power contact. Detailed Implementation

[0018] The present invention will now be described in further detail with reference to the accompanying drawings.

[0019] As per the instruction manual Figure 1 , 2 As shown in Figures 3 and 4, a body temperature patch 1 is comprising a temperature sensor 11, an analysis board 12 for analyzing and transmitting signals from the temperature sensor 11, and a rechargeable battery 13 for power supply. The outer shell of the body temperature patch 1 is composed of an upper shell 14 and a lower shell 15 connected by pins. One side of the upper shell 14 has an opening plate 141 for easy removal of the body temperature patch 1, and the interior of the upper shell 14 and the opening plate 141 has a charging contact 142 that connects to the rechargeable battery 13. A sealing plate 143 is welded above the cavity where the charging contact 142 is located. The outer wall of the body temperature patch 1 has a battery compartment 3 for storing and charging the body temperature patch 1, and one side of the battery compartment 3 has a power contact 31 connected to the charging contact 142. The temperature sensor 11, the analysis board 12, and the rechargeable battery 15 are connected to the rechargeable battery 13. The power output interface of battery 13 is connected using a data cable, which is then placed into the lower housing 15. The sensing end of temperature sensor 11 passes through a bottom through-hole to monitor temperature changes. One side of the charging cable is connected to the charging contact 142, and the charging contact 142 is fixed in the through-hole below the opening plate 141. Then, the other end of the charging cable is passed through the bottom surface of the cavity of the upper housing 14 and welded to the charging port of rechargeable battery 13. Finally, a sealing plate 143 is welded to the opening end of the cavity of the upper housing 14 for sealing. Then, the pin on the bottom surface of the upper housing 14 is inserted into the pin hole inside the lower housing 15 for fixing. Then, the body temperature patch 1 is placed in the battery compartment 3, and the light-proof power contact 31 and the charging contact 142 are connected to charge the rechargeable battery 13.

[0020] The bottom surface of the lower housing 15 is provided with a hypoallergenic silicone pad 2 that adheres to the skin under the armpit of a newborn. Above the silicone coating of the hypoallergenic silicone pad 2 is an anti-slip pad 21 wrapped around the outer wall of the lower housing 15. The anti-slip pad 21 is a single-sided smooth pad, and the contact surface between the anti-slip pad 21 and the lower housing 15 is a rough surface. The anti-slip pad 21 is connected to the outer wall of the lower housing 15 by a sterile elastic band 22. The side of the lower housing 15 is provided with a positioning groove 151 for easy fixing of the sterile elastic band 22. The hypoallergenic silicone pad 2 and the anti-slip pad 21... As an integrated structure, when not in use, the hypoallergenic silicone pad 2 is attached to the smooth surface of the anti-slip pad 21 on one side to ensure its adsorption force, while the other side is sealed with sealing paper to prevent the silicone of the hypoallergenic silicone pad 2 from drying and cracking due to the external environment. The sterile rubber band 22, the anti-slip pad 21 and the hypoallergenic silicone pad 2 are all sealed in vacuum packaging bags under normal conditions to prevent bacterial infection. The positioning groove 151 on the outer wall of the lower shell 15 is to prevent the anti-slip pad 21 from slipping off the smooth outer wall of the lower shell 15.

[0021] In specific implementation of this utility model, the packaging bag of the hypoallergenic silicone pad 2 is torn open, and the temperature patch 1 is taken out from the battery compartment 3; the anti-slip pad 21 is wrapped around the bottom surface of the lower shell 15, and then it is fixed in the positioning groove 151 using a sterile rubber band 22; the sealing paper on the other side of the hypoallergenic silicone pad 2 is torn off, and the hypoallergenic silicone pad 2 is to be attached to the newborn under the armpit; the temperature patch 1 is connected to the mobile phone via Bluetooth, and the temperature patch 1, like a Bluetooth headset, will convert the temperature sensed by the temperature sensor 11 into a wireless signal through the analysis board 12, which is then received and analyzed by the guardian's mobile phone to obtain and analyze the newborn's health data.

[0022] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A neonatal body temperature monitoring device, comprising a body temperature patch (1) consisting of a temperature sensor (11), an analysis board (12) for analyzing and transmitting signals of the temperature sensor (11), and a rechargeable battery (13) for power supply, wherein the outer shell of the body temperature patch (1) is composed of an upper shell (14) and a lower shell (15) connected by a pin, and the bottom surface of the lower shell (15) is provided with a low-sensitivity silica gel pad (2) for adsorbing the skin under the armpit of a neonate, characterized in that: The low-sensitivity silica gel pad (2) is provided with an anti-skid pad (21) wrapped on the outer wall of the lower shell (15), and the anti-skid pad (21) is connected with the outer wall of the lower shell (15) through a sterile rubber band (22).

2. A body temperature monitoring device for a neonate according to claim 1, wherein: The upper shell (14) is provided with an opening plate (141) on one side for conveniently tearing off the body temperature sticker (1), and the inside of the upper shell (14) and the opening plate (141) is provided with a charging contact (142) connected with the rechargeable battery (13).

3. A body temperature monitoring device for a neonate according to claim 2, wherein: The charging contact (142) is welded with a sealing plate (143) above the cavity.

4. The body temperature monitoring device for a neonate according to claim 1, characterized by: The lower shell (15) is provided with a positioning groove (151) on the side for conveniently fixing the sterile rubber band (22), and the low-sensitivity silica gel pad (2) and the anti-skid pad (21) are integrated.

5. The body temperature monitoring device for a neonate according to claim 2, characterized by: The outer wall of the body temperature sticker (1) is provided with a battery compartment (3) for storing and charging the body temperature sticker (1), and one side of the battery compartment (3) is provided with a power supply contact (31) connected with the charging contact (142).

6. The body temperature monitoring device for a neonate of claim 1, wherein: The anti-skid pad (21) is a single-sided smooth pad, and the contact surface of the anti-skid pad (21) and the lower shell (15) is rough.