Far infrared womb warming and health preserving instrument

By introducing an infrared ranging sensor into the far-infrared uterine warming health device to control the far-infrared emission, the problem of the lack of hardware protection in existing far-infrared therapy lamps is solved, achieving safe and reliable far-infrared irradiation and providing a variety of irradiation modes to meet different needs.

CN224585207UActive Publication Date: 2026-08-04CHEUNG LEE ELECTRICAL PRODS SHENZHEN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHEUNG LEE ELECTRICAL PRODS SHENZHEN
Filing Date
2025-08-20
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Existing far-infrared therapy lamps lack hardware design to actively prevent eye irradiation and mainly rely on user operation, which poses a safety risk.

Method used

Design a far-infrared uterine warming health device, comprising a shell assembly, a far-infrared emitting element, a control assembly, and an infrared ranging sensor. The infrared ranging sensor detects the position of the human body and controls the on/off state of the far-infrared emitting element to ensure that far-infrared rays do not shine into the eyes.

Benefits of technology

It effectively avoids far-infrared rays shining into the eyes, improving safety and ensuring that the far-infrared irradiation distance is within an optimal range, while providing multiple irradiation modes to meet different needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a far-infrared uterine warming and health-preserving device, including a housing assembly, a far-infrared emitting element, a control assembly, and an infrared ranging sensor. The housing assembly forms a receiving cavity with an opening on one side, the opening being the cavity opening. The far-infrared emitting element is disposed within the receiving cavity, emitting far-infrared rays towards the cavity opening. The control assembly is electrically connected to the far-infrared emitting element and to an external power supply. The infrared ranging sensor is disposed within the receiving cavity and electrically connected to the control assembly. Both the infrared emitting probe and the infrared receiving probe of the infrared ranging sensor face the cavity opening. The infrared ranging sensor is used to activate the far-infrared emitting element by infrared sensing of the human body when the cavity opening is close to the human body. When the cavity opening of the far-infrared uterine warming and health-preserving device is angled upwards towards the head, the infrared ranging sensor will not detect the human body's infrared signal, meaning the circuit of the far-infrared emitting element is disconnected, thus avoiding the problem of far-infrared rays shining into the eyes.
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Description

Technical Field

[0001] This disclosure relates to the field of far-infrared physiotherapy products, and in particular to a far-infrared uterine warming and health-preserving device. Background Technology

[0002] Women are prone to sub-health symptoms such as uterine coldness, chills, menstrual cramps, and abdominal pain during menstruation. Currently, far-infrared therapy lamps are widely used to apply heat to the abdominal cavity and uterus to alleviate these symptoms. However, existing far-infrared therapy lamps typically lack active eye protection on the irradiation surface, relying mainly on instruction manuals and user operating guidelines to mitigate risks. Therefore, existing far-infrared therapy products need to be optimized and improved to address these issues. Utility Model Content

[0003] In order to overcome the shortcomings of the prior art, this disclosure proposes a far-infrared uterine warming health device, which is designed with a hardware structure to prevent the far-infrared irradiation surface of the health device from shining into the eyes, thus helping to avoid the problem of far-infrared rays shining into the eyes when the product is used.

[0004] The technical solution of this utility model is a far-infrared uterine warming and health-preserving instrument, comprising: A housing assembly having a receiving cavity with an opening on one side, the opening being the opening of the receiving cavity; A far-infrared emitting element is disposed within a receiving cavity, and the far-infrared emitting element emits far-infrared rays toward the cavity opening; A control component is electrically connected to the far-infrared emitting element and is connected to an external power source to supply power to the far-infrared emitting element. An infrared ranging sensor is disposed inside the receiving cavity and electrically connected to the control component. Both the infrared emitting probe and the infrared receiving probe of the infrared ranging sensor face the cavity opening. The infrared ranging sensor is used to activate the far-infrared emitting element by infrared sensing of the human body when the cavity opening is close to the human body.

[0005] Furthermore, the housing assembly includes a rear side panel and a left side panel and a right side panel connected to the left and right side edges of the rear side panel, an upper side panel and a lower side panel connected to the upper and lower side edges of the rear side panel, the left side panel and the right side panel extending toward the same side of the rear side panel along the thickness direction, the upper and lower ends of the left side panel and the right side panel being flush with the upper and lower ends of the rear side panel, and the upper side panel and the lower side panel respectively covering the upper and lower ends of the left side panel, the right side panel and the rear side panel.

[0006] Furthermore, the far-infrared emitting element includes a front far-infrared emitting element, a left far-infrared emitting element, and a right far-infrared emitting element. The left and right plates are "C"-shaped curved side plates that curve towards the center of the cavity opening. The left plate forms a left concave cavity, and the right plate forms a right concave cavity. The left and right concave cavities are respectively equipped with the left far-infrared emitting element and the right far-infrared emitting element.

[0007] Furthermore, the upper and lower side plates are provided with upper and lower first protrusions, upper and lower first protrusions, upper and lower second protrusions, upper and lower third protrusions, and upper and lower fourth protrusions on their corresponding surfaces within the receiving cavity. The upper and lower first and second protrusions, and the lower and lower second protrusions are arranged parallel to each other on the rear side near the receiving cavity, while the upper and lower third protrusions are located in the corresponding left-side recess near the front side of the receiving cavity. The upper fourth protrusion and the lower fourth protrusion are located in the corresponding right-side recess near the front side of the receiving cavity. An upper groove is formed between the upper first protrusion and the upper second protrusion, and a lower groove is formed between the lower first protrusion and the lower second protrusion. The upper groove and the lower groove are used to fix the front far-infrared emitting element. The left far-infrared emitting element is fixed between the upper third protrusion and the lower third protrusion, and the right far-infrared emitting element is fixed between the upper fourth protrusion and the lower fourth protrusion.

[0008] Furthermore, a mounting hole is provided at the middle position of the lower first protrusion, which is used to install the infrared ranging sensor.

[0009] Furthermore, the upper and lower side plates are provided with an arc-shaped notch on one side of the cavity corresponding to the cavity opening, and the arc-shaped notch is symmetrical from left to right.

[0010] Furthermore, a front protective mask is provided between the upper first protrusion and the lower first protrusion. The front sides of the upper first protrusion and the lower first protrusion, together with the front sides of the left side plate and the right side plate, respectively form the left cavity opening of the left cavity and the right cavity opening of the right cavity. The left cavity opening is provided with a left protective mask, and the right cavity opening is provided with a right protective mask.

[0011] Furthermore, the front protective panel, left protective panel, and right protective panel are all made of stainless steel corrugated mesh.

[0012] The control components further include a power control socket and a controller. The power control socket is a socket equipped with a power switch and is connected to the controller. The controller is connected to the infrared ranging sensor and the far-infrared emitting element via a power cord. The controller is equipped with a switch button and a toggle button. The front far-infrared emitting element and the left far-infrared emitting element are connected in series. The toggle button is used to switch between activating the left far-infrared emitting element and the right far-infrared emitting element, or activating the front far-infrared emitting element, or activating all three far-infrared emitting elements.

[0013] Furthermore, the far-infrared emitting element on the left, the far-infrared emitting element on the right, and the far-infrared emitting element on the front are made of carbon fiber heating plate or far-infrared mica heating plate.

[0014] The beneficial effects of this invention are as follows: the shell assembly of the far-infrared uterine warming and health-preserving instrument comprises a receiving cavity with an opening on one side. A far-infrared emitting element and an infrared ranging sensor are installed within the cavity. When the cavity opening is close to the human body, the infrared ranging sensor detects the infrared signal and converts it into an electrical signal to power the far-infrared emitting element. When the cavity opening is beyond the sensing distance of the infrared ranging sensor, the circuit of the far-infrared emitting element is cut off. This design ensures that the cavity opening is within the sensing distance of the infrared ranging sensor when using the far-infrared uterine warming and health-preserving instrument. The sensing distance is typically set to 5-10 cm, which is within the optimal range for far-infrared irradiation. On the other hand, when the far-infrared uterine warming health device of this solution is held by both hands with the sides of the shell facing upwards and towards the face, the infrared ranging sensor will not detect the infrared signal of the human body. That is, the circuit of the far-infrared emitting element is disconnected, thus avoiding the problem of far-infrared rays shining into the eyes. Attached Figure Description

[0015] The accompanying drawings, which are included in and form part of this specification, illustrate exemplary embodiments, features, and aspects of this disclosure together with the specification and serve to explain the principles of this disclosure.

[0016] Figure 1 This is a perspective view of the overall structure of an embodiment of the present utility model.

[0017] Figure 2 This is a front view of an embodiment of the present utility model.

[0018] Figure 3 for Figure 2 A cross-sectional view of the AA structure in the image.

[0019] Figure 4 for Figure 2 Cross-sectional view of the BB structure in the image.

[0020] Figure 5 This is a top view of an embodiment of the present utility model.

[0021] Figure 6 for Figure 5 Cross-sectional view of the CC structure in the image.

[0022] Explanation of reference numerals in the attached figures: 1-Rear panel; 2-Left side panel; 201-Left side cavity; 3-Right side panel; 301-Right side cavity; 4-Upper side panel; 5-Lower side panel; 61-Front far-infrared emitting element; 62-Left far-infrared emitting element; 63-Right far-infrared emitting element; 7-Lower first protrusion; 7'-Upper first protrusion; 8-Lower second protrusion; 8'-Upper second protrusion; 78-Lower groove; 78'-Upper groove; 9-Lower third protrusion; 9'-Upper third protrusion; 10-Lower fourth protrusion; 10'-Upper fourth protrusion; 11-Front protective panel; 12-Left side protective panel; 13-Right side protective panel; 14-Power control socket; 15-Controller; 100-Infrared ranging sensor. Detailed Implementation

[0023] The technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments of this disclosure, all other embodiments obtained by those skilled in the art without creative effort are also within the scope of protection of this disclosure.

[0024] Please refer to Figures 1 to 6This is a specific embodiment of a far-infrared uterine warming and health-preserving device disclosed in this solution, mainly used for the care of women with cold uterus, to achieve the purpose of warming the uterus and preserving health. The far-infrared uterine warming and health-preserving device in this embodiment includes a housing assembly, a far-infrared emitting element, a control assembly, and an infrared ranging sensor 100. The housing assembly forms a receiving cavity with an opening on one side, the opening being the cavity opening. The far-infrared emitting element is disposed within the receiving cavity, emitting far-infrared rays towards the cavity opening. The control assembly is electrically connected to the far-infrared emitting element and is connected to an external power source to power the far-infrared emitting element. The infrared ranging sensor 100 is disposed within the receiving cavity and electrically connected to the control assembly, with both its infrared emitting probe and infrared receiving probe facing the cavity opening. The infrared ranging sensor 100 is used to activate the far-infrared emitting element by infrared sensing of the human body when the cavity opening is close to the human body. Preferably, the infrared rangefinder 100 is set with an infrared sensing distance of 5-10cm. When the cavity of the far-infrared uterine warming health device is close to the human abdomen, the infrared rangefinder 100 activates the far-infrared emitting element at this sensing distance. This helps to constrain the user from having to hold the cavity of the therapy device close to the human abdomen, which is exactly the optimal distance for far-infrared irradiation. On the other hand, when the far-infrared uterine warming health device is held normally with the cavity facing the face, the infrared rangefinder 100 is not at the infrared sensing distance, and the circuit of the far-infrared emitting element is disconnected, thus avoiding the problem of far-infrared rays shining into the eyes.

[0025] In this embodiment, the housing assembly includes a rear side panel and a left side panel 2 and a right side panel 3 connected to the left and right side edges of the rear side panel, and an upper side panel 4 and a lower side panel 5 connected to the upper and lower side edges of the rear side panel. The left side panel 2 and the right side panel 3 extend towards the same side of the rear side panel along the thickness direction, and the upper and lower ends of the left side panel 2 and the right side panel 3 are flush with the upper and lower ends of the rear side panel. The upper side panel 4 and the lower side panel 5 respectively cover the upper and lower ends of the left side panel 2, the right side panel 3, and the rear side panel. The housing assembly can be joined by strong adhesive, or the rear side panel can be joined to the left side panel 2 and the right side panel 3 by strong adhesive, and the upper side panel 4 and the lower side panel 5 can be fixed to the upper and lower ends of the rear side panel, the left side panel 2, and the right side panel 3 by screws.

[0026] Preferably, the far-infrared emitting element includes a front far-infrared emitting element 61, a left far-infrared emitting element, and a right far-infrared emitting element. The left side plate 2 and the right side plate 3 are "C"-shaped curved side plates that curve towards the center of the cavity opening. The left side plate 2 forms a left concave cavity 201, and the right side plate 3 forms a right concave cavity 301. The left concave cavity 201 and the right concave cavity 301 are respectively provided with a left far-infrared emitting element 62 and a right far-infrared emitting element 63. By setting the left far-infrared emitting element and the right far-infrared emitting element on the left and right sides of the front far-infrared emitting element 61, the cavity opening of the far-infrared uterine warming health device receives far-infrared rays irradiated from the front and from both sides.

[0027] In this embodiment, the left far-infrared emitting element 62, the right far-infrared emitting element, and the front far-infrared emitting element 61 are made of carbon fiber heating plate or far-infrared mica heating plate.

[0028] In this embodiment, the upper side plate 4 and the lower side plate 5 are provided with upper first protrusion 7' ​​and lower first protrusion 7, upper second protrusion 8' and lower second protrusion 8, upper third protrusion 9' and lower third protrusion 9, upper fourth protrusion 10' and lower fourth protrusion 10 on the corresponding plate surfaces within the receiving cavity. The upper first protrusion 7' ​​and upper second protrusion 8', and the lower first protrusion 7 and lower second protrusion 8 are arranged parallel to each other on the rear side near the receiving cavity. The upper third protrusion 9' and lower third protrusion 9 are arranged in the corresponding left-side recess 201 near the front side of the receiving cavity. The upper fourth protrusion 10' and the lower fourth protrusion 10 are located in the corresponding right-side recess 301 near the front side of the receiving cavity. An upper groove 78' is formed between the upper first protrusion 7' ​​and the upper second protrusion 8', and a lower groove 78 is formed between the lower first protrusion 7 and the lower second protrusion 8. The upper groove 78' and the lower groove 78 are used to fix the front far-infrared emitting element 61. The left-side far-infrared emitting element 62 is fixed between the upper third protrusion 9' and the lower third protrusion 9, and the right-side far-infrared emitting element 63 is fixed between the upper fourth protrusion 10' and the lower fourth protrusion 10. The upper first protrusion 7', upper second protrusion 8', upper third protrusion 9', and upper fourth protrusion 10' are integrally formed with the upper side plate 4, and the lower first protrusion 7, lower second protrusion 8, lower third protrusion 9, and lower fourth protrusion 10 are integrally formed with the lower side plate 5.

[0029] Preferably, the lower first protrusion 7 has a mounting hole at the middle position, which is used to mount the infrared ranging sensor 100.

[0030] Preferably, the upper side plate 4 and the lower side plate 5 have an arc-shaped notch on one side corresponding to the cavity opening, which is concave inward toward the inside of the cavity. The arc-shaped notch is symmetrical on both sides. By designing the arc-shaped notch, on the one hand, the cavity opening can better fit the female abdomen, allowing far-infrared rays to irradiate the uterine cavity area of ​​the female abdomen. On the other hand, it allows the left and right far-infrared emitting elements on both sides to better irradiate the left and right sides of the abdomen.

[0031] Furthermore, a front protective mask is provided between the upper first protrusion 7' ​​and the lower first protrusion 7. The front sides of the upper first protrusion 7' ​​and the lower first protrusion 7, together with the front sides of the left side plate 2 and the right side plate 3, respectively form the left cavity opening of the left cavity 201 and the right cavity opening of the right cavity 301. The left cavity opening is provided with the left protective mask, and the right cavity opening is provided with the right protective mask. Preferably, the front protective panel 11, the left protective panel 12, and the right protective panel 13 are all made of stainless steel corrugated mesh. The front protective panel 11 can be provided with slots on the upper first protrusion 7' ​​and the lower first protrusion 7, and slot openings are provided on the left and right outer sides of the upper first protrusion 7' ​​and the lower first protrusion 7. The inner sides of the left protective panel 12 and the right protective panel 13 are inserted into the slot openings, and the outer sides of the left protective panel 12 and the right protective panel 13 are fixed to the left side plate 2 and the right side plate 3 by screws.

[0032] In this embodiment, the control component includes a power control socket 14 and a controller 15. The power control socket 14 is a socket equipped with a power switch and is connected to the controller 15. The controller 15 is connected to the infrared ranging sensor 100 and the far-infrared emitting element via a power wire. The controller 15 is equipped with a switch button and a switching button. The left far-infrared emitting element 62 and the right far-infrared emitting element 63 are connected in series. The switching button is used to switch the activation of the left far-infrared emitting element 62 and the right far-infrared emitting element, or the activation of the front far-infrared emitting element 61, or the activation of the left far-infrared emitting element 62, the right far-infrared emitting element, and the front far-infrared emitting element 61. This far-infrared uterine warming and health-preserving instrument features three modes: frontal irradiation, left and right side irradiation, and frontal and left and right side irradiation. These modes allow for different far-infrared irradiation intensities, which can be controlled by switching buttons. The controller 15 has these three modes running in a cycle, allowing the far-infrared irradiation intensity to vary from weak to strong and from strong to weak. Simultaneously, the irradiation cycle can be from the front to the sides and back to the front and sides, thus achieving the effect of warming and nourishing the female uterus.

[0033] The power control socket 14 is connected to an external power source via a power cord. A power switch controls the connection to and from the external power source. Once the external power is connected, the circuit connecting the controller 15 to the infrared ranging sensor 100 is activated via the switch button on the controller 15. The infrared sensing signal from the infrared ranging sensor 100 is converted into an electrical signal, and the controller 15 controls the power supply to the far-infrared emitting element based on this electrical signal. Both the power control socket 14 and the controller 15 are embedded in the upper side panel 4. It should be understood that a power indicator light is provided on the controller 15 to indicate whether the controller 15 is connected to an external power source.

[0034] It should be noted that the infrared ranging sensor described in this embodiment operates on the same principle as that of an infrared ranging hand dryer. Specifically, the infrared ranging sensor detects an infrared signal from the hand and controls the activation of the heating circuit relay and the blowing circuit relay, initiating heating and blowing. When the signal detected by the sensor disappears, the heating circuit and the blowing circuit relays deactivate, stopping heating and blowing. Therefore, the control circuits of the infrared ranging sensor and controller 15 in this embodiment will not be described in detail.

[0035] The parts not described in detail in this technical solution specification are obvious to those skilled in the art and can be supplemented and improved based on existing technical knowledge. At the same time, those skilled in the art should understand that the above embodiments are merely preferred embodiments of this utility model. For those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A far infrared womb warming and health preserving instrument, characterized in that, include: A housing assembly having a receiving cavity with an opening on one side, the opening being the opening of the receiving cavity; A far-infrared emitting element is disposed within a receiving cavity, and the far-infrared emitting element emits far-infrared rays toward the cavity opening; A control component is electrically connected to the far-infrared emitting element and is connected to an external power source to supply power to the far-infrared emitting element. An infrared ranging sensor is disposed inside the receiving cavity and electrically connected to the control component. Both the infrared emitting probe and the infrared receiving probe of the infrared ranging sensor face the cavity opening. The infrared ranging sensor is used to activate the far-infrared emitting element by infrared sensing of the human body when the cavity opening is close to the human body.

2. The far infrared womb-caring health instrument according to claim 1, characterized in that, The housing assembly includes a rear side panel and a left side panel and a right side panel connected to the left and right side edges of the rear side panel, and an upper side panel and a lower side panel connected to the upper and lower side edges of the rear side panel. The left side panel and the right side panel extend toward the same side of the rear side panel along the thickness direction. The upper and lower ends of the left side panel and the right side panel are flush with the upper and lower ends of the rear side panel. The upper side panel and the lower side panel respectively cover the upper and lower ends of the left side panel, the right side panel, and the rear side panel.

3. The far infrared womb-caring health instrument according to claim 2, characterized in that, The far-infrared emitting element includes a front far-infrared emitting element, a left far-infrared emitting element, and a right far-infrared emitting element. The left and right plates are "C"-shaped curved side plates that curve towards the center of the cavity opening. The left plate forms a left concave cavity, and the right plate forms a right concave cavity. The left and right concave cavities are respectively equipped with the left far-infrared emitting element and the right far-infrared emitting element.

4. The far infrared womb-caring health instrument according to claim 3, characterized in that, The upper and lower side plates, corresponding to the surfaces within the receiving cavity, are provided with opposing upper and lower first and second, upper and lower second and third, and upper and lower fourth convex sections. The upper and second, and lower first and second convex sections are arranged parallel to each other on the rear side near the receiving cavity. The upper and lower third convex sections are located in the corresponding left-side recess near the front side of the receiving cavity. The upper fourth protrusion and the lower fourth protrusion are located in the corresponding right-side recess near the front side of the receiving cavity. An upper groove is formed between the upper first protrusion and the upper second protrusion, and a lower groove is formed between the lower first protrusion and the lower second protrusion. The upper groove and the lower groove are used to fix the front far-infrared emitting element. The left far-infrared emitting element is fixed between the upper third protrusion and the lower third protrusion, and the right far-infrared emitting element is fixed between the upper fourth protrusion and the lower fourth protrusion.

5. The far infrared womb-caring health instrument according to claim 4, characterized in that, The lower first protrusion has a mounting hole at the middle position, which is used to install the infrared ranging sensor.

6. The far infrared womb-caring health instrument according to claim 2, characterized in that, The upper and lower side plates have an arc-shaped notch on one side of the cavity corresponding to the cavity opening. The arc-shaped notch is symmetrical from left to right.

7. The far infrared womb-caring health instrument according to claim 4, characterized in that, A front protective mask is provided between the upper first protrusion and the lower first protrusion. The front sides of the upper first protrusion and the lower first protrusion, together with the front sides of the left side plate and the right side plate, respectively form the left cavity opening of the left cavity and the right cavity opening of the right cavity. The left cavity opening is provided with a left protective mask, and the right cavity opening is provided with a right protective mask.

8. The far infrared womb-caring health instrument according to claim 7, characterized in that, The front protective panel, left protective panel, and right protective panel are all made of stainless steel corrugated mesh.

9. The far infrared womb-caring health instrument of claim 3, wherein, The control component includes a power control socket and a controller. The power control socket is a socket equipped with a power switch and is connected to the controller. The controller is connected to the infrared ranging sensor and the far-infrared emitting element via a power cord. The controller is equipped with a switch button and a toggle button. The front far-infrared emitting element and the left far-infrared emitting element are connected in series. The toggle button is used to switch between activating the left far-infrared emitting element and the right far-infrared emitting element, or activating the front far-infrared emitting element, or activating all three far-infrared emitting elements.

10. The far infrared womb-caring health instrument according to claim 9, characterized in that, The far-infrared emitting element on the left, the far-infrared emitting element on the right, and the far-infrared emitting element on the front are made of carbon fiber heating plate or far-infrared mica heating plate.