Anti-scald TDP physiotherapy lamp

By designing an anti-scalding TDP therapy lamp and utilizing a cylindrical telescopic lamp housing and a metal anti-scalding net, the problem of scalding caused by insufficient adjustment distance of existing TDP therapy lamps is solved, achieving safe and reliable use.

CN223416589UActive Publication Date: 2025-10-10PEOPLES HOSPITAL AFFILIATED TO FUJIAN UNIV OF TRADITIONAL CHINESE MEDICINE (FUJIAN PROVINCIAL PEOPLES HOSPITAL)
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Patent Information

Application Number
CN202421957845.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-10-10
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The TDP therapy lamps on the market are too limited in adjusting the distance between the lamp head and the skin, which can easily cause burns and fail to achieve the best effect.

Method used

A scald-proof TDP therapy lamp was designed, which adopts a cylindrical telescopic lamp shell and a metal anti-scald net, combined with an adjustable vertical bracket. The distance between the lamp head and the skin can be adjusted by telescoping, and a protective cover and a copper-plated energy-concentrating cover are added to the outside of the lamp shell to enhance the anti-scald function.

Benefits of technology

The distance between the lamp head and the skin can be flexibly adjusted to avoid burns, thereby improving the safety and effect of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-scald TDP physiotherapy lamp which comprises a lamp holder assembly and a vertical support, and the lamp holder assembly is rotationally connected with the top end of the vertical support through a support movable joint. The lamp holder assembly comprises a cylindrical telescopic lamp shell, a protective cover and a rear end plate, one side face of the rear end plate is fixedly connected with the support movable joint, the other side face of the rear end plate is connected with the fixed end of the cylindrical telescopic lamp shell, and the end face of the telescopic end of the cylindrical telescopic lamp shell is detachably sleeved with the protective cover. A metal anti-scalding net is arranged on the outer side of the opening of the end surface; a copper-plated energy-gathering cover is arranged on the inner side; a mica heat insulation plate, a radiant panel and a heater are sequentially arranged in the copper-plated energy gathering cover in the direction away from the protective cover, and the heater communicates with a circuit board installed on the rear end plate through a spiral wire. The main body of the lamp shell is designed into the barrel-shaped telescopic lamp shell for telescopic adjustment, and the anti-scald part is of a fixed structure, so that the anti-scald function is considered, the heating position of the lamp holder can be adjusted, the distance between a heat source of the lamp holder and the skin can be adjusted by stretching and pulling the lamp shell back and forth when a user uses the LED lamp, the LED lamp is convenient to use, and the service life of the LED lamp is prolonged. The defect that the distance is controlled by adjusting a vertical lamp bracket can be overcome; meanwhile, a circle of protective cover is additionally arranged on the periphery of the anti-scald net to increase the distance between the baking lamp and the skin of the patient.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical devices, in particular to an anti-scalding TDP physiotherapy lamp. Background Art

[0002] Infrared light is usually divided into three parts according to the length of its wavelength: near infrared, mid-infrared and far infrared. Among them, far infrared is the most beneficial to human health. Far-infrared therapy lamps have been widely used in the field of medical care. They can effectively promote blood circulation and enhance the muscle's ability to absorb inflammation of joint tissue, thereby alleviating arthritis symptoms. They have a good effect on rheumatoid arthritis and can also promote the healing of soft tissue injuries.

[0003] Currently, the TDP therapy lamps on the market control the distance between the heated part of the lamp head and the user's skin by adjusting the lamp holder installed at the bottom of the lamp head. However, the control distance range is too limited and cannot achieve the best effect. Instead, it is very easy to cause burns to the user. Therefore, we urgently need a scald-proof TDP therapy lamp to solve the above problem. Utility Model Content

[0004] In order to solve the above problems existing in the prior art, the utility model provides an anti-scalding TDP physiotherapy lamp.

[0005] The technical solution of the utility model is as follows:

[0006] A scald-proof TDP physiotherapy lamp includes a lamp head assembly and a vertical bracket. The lamp head assembly is rotatably connected to the top end of the vertical bracket through a movable joint of the bracket. The lamp head assembly includes a cylindrical telescopic lamp housing, a protective cover and a rear end plate. One side of the rear end plate is fixedly connected to the movable joint of the bracket, and the other side of the rear end plate is connected to the fixed end of the cylindrical telescopic lamp housing. A detachable protective cover is provided on the outer periphery of the end face of the telescopic end of the cylindrical telescopic lamp housing. A metal scald-proof mesh is provided on the outer side of the end face opening and a copper-plated energy-gathering cover is provided on the inner side. A mica heat insulation board, a radiation board and a heater are sequentially provided inside the copper-plated energy-gathering cover in a direction away from the protective cover. The heater is connected to a circuit board installed on the rear end plate through a spiral wire.

[0007] Preferably, the cylindrical telescopic lamp housing includes a hard section, a flexible section and heat dissipation slots, the hard section and the flexible section are alternately arranged, and the hard section is made of hard material and the flexible section is made of flexible material; the heat dissipation slots are evenly arranged around the peripheral wall of the hard section.

[0008] Preferably, the circuit board is fixedly mounted on the side surface of the rear end plate via mounting posts.

[0009] Preferably, the protective cover is arranged in a trumpet shape and is detachably mounted on the periphery of the end surface of the telescopic end of the cylindrical telescopic lamp housing by means of buckles.

[0010] Preferably, the spiral guide wire is elastic and can maintain a spiral state when in a contracted state.

[0011] Preferably, the vertical bracket is assembled from a number of height-adjustable support rods, and a control panel is provided on the wall of the support rods for adjusting and controlling the temperature of the heater; the vertical bracket firmly supports the entire device through support feet fixedly installed at the bottom.

[0012] The utility model has the following beneficial effects: the utility model designs the main body of the lamp shell into a cylindrical telescopic lamp shell for telescopic adjustment, and the anti-scalding part is a fixed structure. In this way, while taking into account the anti-scalding function, it can also adjust the heating position of the lamp head. When using it, the user can adjust the distance between the heat source of the lamp head and the skin by pulling the lamp shell back and forth, which is convenient to use and can make up for the deficiency of relying on adjusting the vertical lamp stand to complete the control distance; at the same time, a circle of protective cover is added to the outer periphery of the anti-scalding net to increase the distance between the heating lamp and the patient's skin. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the overall structure of the device of the present invention;

[0014] Figure 2 This is a structural cross-sectional view of the lamp holder assembly of the utility model when it is in a retracted state;

[0015] Figure 3 This is a structural cross-sectional view of the lamp holder assembly of the present invention when it is in an extended state;

[0016] Figure 4 This is a schematic diagram of the lamp holder assembly of the present invention in an extended state.

[0017] The reference numerals in the figures are as follows:

[0018] 1. Lamp head assembly; 101. Tubular telescopic lamp housing; 1011. Hard section; 1012. Flexible section; 1013. Heat dissipation slots; 102. Protective cover; 103. Mica insulation board; 104. Radiant board; 105. Heater; 106. Metal anti-scalding mesh; 107. Spiral wire; 108. Rear end panel; 109. Circuit board; 110. Mounting column; 111. Bracket movable joint; 112. Copper-plated energy-gathering cover; 2. Vertical lamp stand; 3. Control panel; 4. Support leg. DETAILED DESCRIPTION

[0019] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] See also Figures 1 to 4 A scald-proof TDP physiotherapy lamp includes a lamp head assembly 1 and a vertical bracket 2. The lamp head assembly 1 is rotatably connected to the top of the vertical bracket 2 through a bracket movable joint 111; the lamp head assembly 1 includes a cylindrical telescopic lamp housing 101, a protective cover 102 and a rear end plate 108. One side of the rear end plate 108 is fixedly connected to the bracket movable joint 111, and the other side of the rear end plate 108 is connected to the fixed end of the cylindrical telescopic lamp housing 101. The protective cover 102 is detachably mounted on the outer periphery of the end face of the telescopic end of the cylindrical telescopic lamp housing 101. A metal anti-scalding mesh 106 is provided on the outside of the end face opening and a copper-plated energy focusing cover 112 is provided on the inside; a mica heat insulation board 103, a radiation board 104 and a heater 105 are sequentially arranged inside the copper-plated energy focusing cover 112 in a direction away from the protective cover 102. The heater 105 is connected to a circuit board 109 installed on the rear end plate 108 through a spiral wire 107.

[0021] Furthermore, the cylindrical telescopic lamp housing 101 includes a hard section 1011, a flexible section 1012 and a heat dissipation slot 1013. The hard section 1011 and the flexible section 1012 are alternately arranged, and the hard material used in the hard section 1011 is a hard plastic material, and the flexible material used in the flexible section 1012 is a silicone material; the heat dissipation slot 1013 is evenly arranged on the peripheral wall of the hard section 1011.

[0022] Furthermore, the circuit board 109 is fixedly mounted on the side of the rear end plate 108 via mounting posts 110 .

[0023] Furthermore, the protective cover 102 is configured in a trumpet shape and is detachably mounted on the periphery of the end surface of the telescopic end of the cylindrical telescopic lamp housing 101 by means of buckles.

[0024] Furthermore, the spiral guide wire 107 is elastic and can maintain a spiral state when in a contracted state.

[0025] Furthermore, the vertical bracket 2 is assembled from a number of height-adjustable support rods, and a control panel 3 is provided on the support rod wall for adjusting the temperature of the heater 105; the vertical bracket 2 firmly supports the entire device through the support legs 4 fixedly installed at the bottom.

[0026] The working principle of this utility model:

[0027] In the present invention, the lamp head assembly 1 is rotatably connected to the top of the vertical bracket 2 through the bracket movable joint 111. The vertical bracket 2 is assembled from a plurality of height-adjustable support rods. In this embodiment, three support rods are assembled to form the vertical lamp stand 2. The three support rods are rotatably connected to each other, so that the user can adjust the irradiation height and angle of the heating lamp during use. A control panel 3 is provided on the support rod wall for adjusting the temperature of the heater 105. The vertical bracket 2 firmly supports the entire device through the support legs 4 fixed at the bottom, making the entire device more stable during use.

[0028] In the present invention, the lamp head assembly 1 includes a cylindrical telescopic lamp housing 101, a protective cover 102 and a rear end plate 108. One side of the rear end plate 108 is fixedly connected to the bracket movable joint 111, which is convenient for adjusting the illumination angle of the entire lamp head assembly 1; the other side of the rear end plate 108 is connected to the fixed end of the cylindrical telescopic lamp housing 101. The cylindrical telescopic lamp housing 101 includes a hard section 1011, a flexible section 1012 and a heat dissipation slot 1013. The hard section 1011 and the flexible section 1012 are alternately arranged, so that the cylindrical telescopic lamp housing 101 can be repeatedly telescoped and used. The heat dissipation slot 1013 is evenly arranged on the peripheral wall of the hard section 1011 to dissipate excess heat in time and prevent the cylindrical telescopic lamp housing 101 from malfunctioning due to high temperature.

[0029] A protective cover 102 is detachably mounted on the outer periphery of the end face of the telescopic end of the cylindrical telescopic lamp housing 101. The protective cover 102 is horn-shaped and is detachably mounted on the outer periphery of the end face of the telescopic end of the cylindrical telescopic lamp housing 101 by snap fasteners. At the same time, a metal anti-scalding mesh 106 is provided on the outer side of the end face opening of the telescopic end of the cylindrical telescopic lamp housing 101 and a copper-plated energy focusing cover 112 is provided on the inner side. Inside the copper-plated energy focusing cover 112, a mica heat insulation board 103, a radiation board 104 and a heater 105 are sequentially provided in the direction away from the protective cover 102. The mica heat insulation board 103 is used to further prevent scalding. The heater 105 is connected to a circuit board 109 installed on the rear end plate 108 through a spiral wire 107. The spiral wire 107 is elastic and can maintain a spiral state in the contracted state and can be stretched in the extended state to cooperate with the extension or contraction of the cylindrical telescopic lamp housing 101. The circuit board 109 is fixedly mounted on the side of the rear end plate 108 through a mounting post 110.

[0030] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A scald-proof TDP therapy lamp, characterized by: The invention comprises a lamp holder assembly (1) and a vertical bracket (2), wherein the lamp holder assembly (1) is rotatably connected to the top end of the vertical bracket (2) via a bracket movable joint (111); the lamp holder assembly (1) comprises a cylindrical telescopic lamp housing (101), a protective cover (102) and a rear end plate (108), wherein one side of the rear end plate (108) is fixedly connected to the bracket movable joint (111), and the other side of the rear end plate (108) is connected to the fixed end of the cylindrical telescopic lamp housing (101). ) is provided with a detachable protective cover (102) on the outer periphery of the telescopic end of the device; a metal anti-scalding mesh (106) is provided on the outer side of the end opening and a copper-plated energy-gathering cover (112) is provided on the inner side; a mica heat insulation board (103), a radiation board (104) and a heater (105) are provided in sequence inside the copper-plated energy-gathering cover (112) in a direction away from the protective cover (102); the heater (105) is connected to a circuit board (109) installed on a rear end plate (108) via a spiral wire (107).

2. The anti-scalding TDP therapy lamp according to claim 1, characterized in that: The cylindrical telescopic lamp housing (101) comprises a hard section (1011), a flexible section (1012) and heat dissipation slots (1013); the hard section (1011) and the flexible section (1012) are alternately arranged, and the hard section (1011) is made of a hard material, while the flexible section (1012) is made of a flexible material; the heat dissipation slots (1013) are evenly arranged around the peripheral wall of the hard section (1011).

3. The anti-scalding TDP therapy lamp according to claim 1, characterized in that: The circuit board (109) is fixedly mounted on the side of the rear end plate (108) via mounting posts (110).

4. The anti-scalding TDP therapy lamp according to claim 1, characterized in that: The protective cover (102) is arranged in a trumpet shape and is detachably mounted on the outer periphery of the end surface of the telescopic end of the cylindrical telescopic lamp housing (101) by means of a buckle.

5. The anti-scalding TDP therapy lamp according to claim 1, characterized in that: The spiral guide wire (107) is elastic and can maintain a spiral state when in a contracted state.

6. The anti-scalding TDP therapy lamp according to claim 1, characterized in that: The vertical support (2) is assembled from a plurality of height-adjustable support rods, and a control panel (3) is provided on the support rod wall for adjusting and controlling the temperature of the heater (105); the vertical support (2) firmly supports the entire device through support feet (4) fixedly installed at the bottom.