Cold compress laser physiotherapy instrument
By integrating the cold compress assembly and laser physiotherapy component into the physiotherapy device, the problem that a single-function laser physiotherapy device cannot meet the versatility needs is solved, and the versatility and convenience is improved. The cold compress function effectively reduces pain and cooling.
Patent Information
- Application Number
- CN202421441016.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-06-21
AI Technical Summary
Most of the laser physiotherapy devices on the market only have laser physiotherapy functions and cannot meet the growing versatility needs of consumers.
The cold compress assembly and laser physiotherapy assembly are integrated inside the physiotherapy instrument housing. The cold compress assembly includes a cold compress conductor, a semiconductor refrigeration sheet, a heat dissipation bracket and a fan. The laser physiotherapy assembly includes a laser light circuit board and a light guide sheet, both of which are arranged in a relative manner to ensure integrity and appearance.
It increases the versatility of the product, provides more choices and convenience, enhances the added value and market competitiveness of the product, and the cold compress function effectively reduces pain and cooling.
Smart Images

Figure CN223054927U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of physiotherapy instruments, in particular to a cold compress laser physiotherapy instrument. Background Art
[0002] A laser physiotherapy instrument is a physiotherapy device. Different types of laser therapy instruments have different treatment effects. A laser therapy instrument can remove facial pigmentation, thereby fading age spots; it can stimulate the regeneration and recombination of facial collagen and elastic fibers, fade facial wrinkles, shrink pores, make the skin tender, and reduce the secretion of facial oil, thereby achieving the effect of delaying aging. Before laser treatment, an individualized treatment plan needs to be formulated by a doctor according to the specific situation of the patient for symptomatic treatment.
[0003] Most of the laser physiotherapy instruments on the market only have the function of laser physiotherapy. With the continuous development of society, the changing needs of consumers and the intensification of competition, the multifunctionality of products can provide more convenience for life. Single-function laser physiotherapy instruments can no longer meet the usage needs of users. Content of the Utility Model
[0004] The utility model provides a cold compress laser physiotherapy instrument to solve the problems in the background art.
[0005] To achieve the above object, the utility model provides the following technical solution: A cold compress laser physiotherapy instrument, including a physiotherapy instrument housing, and a cold compress component and a laser physiotherapy component are respectively arranged at the top of both sides of the physiotherapy instrument housing;
[0006] The cold compress component includes a cold compress conduction sheet, a semiconductor refrigeration sheet embedded on one side of the cold compress conduction sheet, a heat dissipation bracket arranged on one side of the semiconductor refrigeration sheet, and a fan arranged inside the heat dissipation bracket.
[0007] Further, the refrigerating surface of the semiconductor refrigeration sheet is attached to one side of the cold compress conduction sheet through a layer of thermal conductive silicone grease, and the heating surface of the semiconductor refrigeration sheet is attached to one side of the heat dissipation bracket through a layer of thermal conductive silicone grease.
[0008] Further, the cold compress component further includes a light guide ring, the cold compress conduction sheet is embedded inside one side of the light guide ring, and a ring-shaped lamp board is arranged inside the other side of the light guide ring.
[0009] Further, the physiotherapy instrument housing includes a front shell and a rear shell, the cold compress component is embedded at the top of one side of the front shell, and the side of the cold compress conduction sheet away from the semiconductor refrigeration sheet protrudes outside the front shell.
[0010] Further, the laser physiotherapy component includes a laser lamp circuit board arranged at the top inside the rear shell, a laser lamp heat dissipation seat arranged on one side of the laser lamp circuit board, and a light guide sheet arranged at the top of one side of the rear shell.
[0011] Further, the laser physiotherapy component and the cold compress component are arranged opposite to each other.
[0012] Further, ventilation holes 1 are formed at the top of the front shell on both sides of the heat dissipation bracket.
[0013] Further, ventilation holes 2 are formed at the top of the rear shell on both sides of the laser lamp heat dissipation base.
[0014] Further, a main circuit board is arranged inside the front shell, and an operation panel nested with one side of the front shell is arranged on one side of the main circuit board.
[0015] Further, a battery electrically connected to the main circuit board is arranged inside the rear shell.
[0016] Compared with the prior art, the present utility model provides a cold compress laser physiotherapy instrument, which has the following beneficial effects:
[0017] In this cold compress laser physiotherapy instrument, the cold compress component and the laser physiotherapy component are integrated inside the physiotherapy instrument housing. While retaining the traditional laser physiotherapy function, a cold compress function is added. The cold compress function is a relatively effective method for reducing pain and lowering fever, increasing the versatility of the product, providing more choices and conveniences for consumers, and at the same time can also enhance the added value and market competitiveness of the product. The application prospect is broad, and the laser physiotherapy component and the cold compress component are arranged opposite to each other, ensuring the integrity and appearance of the product and the usability of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 is a side view of the structure of the present utility model;
[0020] Figure 3 is an exploded view of the structure of the present utility model;
[0021] Figure 4 is a schematic structural diagram of the laser physiotherapy component of the present utility model.
[0022] In the figure: 1, physiotherapy instrument housing; 11, front shell; 12, rear shell; 13, ventilation holes 1; 14, ventilation holes 2; 15, main circuit board; 16, operation panel; 17, battery; 2, cold compress component; 21, cold compress conduction sheet; 22, semiconductor refrigeration sheet; 23, heat dissipation bracket; 24, fan; 25, light guide ring; 26, annular lamp board; 3, laser physiotherapy component; 31, laser lamp circuit board; 32, laser lamp heat dissipation base; 33, light guide sheet. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] Next, in combination with the accompanying drawings in the embodiments of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0024] Please refer to Figures 1-4 , the present utility model discloses a cold compress laser physiotherapy instrument, which includes a physiotherapy instrument housing 1. On both top sides of the physiotherapy instrument housing 1, a cold compress component 2 and a laser physiotherapy component 3 are respectively arranged.
[0025] The cold compress component 2 includes a cold compress conduction sheet 21, a semiconductor refrigeration sheet 22 embedded on one side of the cold compress conduction sheet 21, a heat dissipation bracket 23 arranged on one side of the semiconductor refrigeration sheet 22, and a fan 24 arranged inside the heat dissipation bracket 23.
[0026] Specifically, the refrigerating surface of the semiconductor refrigeration sheet 22 is attached to one side of the cold compress conduction sheet 21 through a layer of thermal conductive silicone grease, and the heating surface of the semiconductor refrigeration sheet 22 is attached to one side of the heat dissipation bracket 23 through a side thermal conductive silicone grease. The setting of the thermal conductive silicone grease can make heat conduction or cold conduction more efficient. When the semiconductor refrigeration sheet 22 works, one side cools and the other side starts to heat. In order to make the semiconductor refrigeration sheet 22 work continuously and efficiently, by arranging the heat dissipation bracket 23 to contact the heating surface of the semiconductor refrigeration sheet 22, multiple heat dissipation fins are provided on the heat dissipation bracket 23 to increase the heat dissipation area, and in cooperation with the use of the fan 24, the fan 24 can accelerate the air flow after starting, further ensuring the heat dissipation efficiency.
[0027] Specifically, the cold compress component 2 further includes a light guide ring 25. The cold compress conduction sheet 21 is embedded inside one side of the light guide ring 25, and an annular lamp board 26 is arranged inside the other side of the light guide ring 25. A plurality of red and blue lamp beads are arranged on the annular lamp board 26. After the lamp beads are lit, the red and blue light is projected onto the light guide ring 25, which is convenient for users to observe.
[0028] Specifically, the physiotherapy instrument housing 1 includes a front shell 11 and a rear shell 12. The cold compress component 2 is embedded on the top side of one side of the front shell 11, and the side of the cold compress conduction sheet 21 away from the semiconductor refrigeration sheet 22 protrudes outside the front shell 11. When using the cold compress component 2, after starting the semiconductor refrigeration sheet 22, the temperature of the cold compress conduction sheet 21 drops rapidly. When the cold compress conduction sheet 21 is attached to the skin, the body feels cold, which causes the capillaries to contract, reduces congestion, and reduces the sensitivity of nerve endings. It is a relatively effective method for reducing pain and lowering fever, and can also reduce the local blood flow of the patient to prevent the spread of inflammation.
[0029] Specifically, the laser physiotherapy component 3 includes a laser lamp circuit board 31 arranged at the top inside the rear shell 12, a laser lamp heat dissipation seat 32 arranged on one side of the laser lamp circuit board 31, and a light guide plate 33 arranged at the top of one side of the rear shell 12. A number of laser lamp beads are integrated on the laser lamp circuit board 31. The laser lamp beads penetrate through the laser lamp heat dissipation seat 32 and contact the light guide plate 33. When the laser acts on human tissues, it can penetrate tissues such as skin, muscle, and bone. After being absorbed by the tissues, it produces biological effects, reduces inflammation, relieves pain, etc. The power, wavelength, pulse time, etc. of the laser lamp beads can be adjusted to achieve different effects. When the laser lamp works, it generates heat. Therefore, adding the laser lamp heat dissipation seat 32 to dissipate heat from the laser lamp beads ensures the service performance of the laser lamp beads and reduces the failures caused by high heat.
[0030] Specifically, the laser physiotherapy component 3 and the cold compress component 2 are arranged oppositely. Refer to Figures 1-2 , the laser physiotherapy component 3 and the cold compress component 2 are arranged oppositely, ensuring the integrity and appearance of the product.
[0031] Specifically, a first ventilation hole 13 is opened at the top of the front shell 11 on both sides of the heat dissipation bracket 23, and a second ventilation hole 14 is opened at the top of the rear shell 12 on both sides of the laser lamp heat dissipation seat 32. The first ventilation hole 13 and the second ventilation hole 14 are used for the air exchange inside and outside the shell 1 of the physiotherapy device, further increasing the heat dissipation efficiency.
[0032] Specifically, a main circuit board 15 is arranged inside the front shell 11. Refer to Figure 3 , a charging interface for charging the battery 17 is also integrated at the bottom of one side of the main circuit board 15. The bottom end of the charging interface extends to the bottom of the rear shell 12. An operation panel 16 nested with one side of the front shell 11 is arranged on one side of the main circuit board 15. A battery 17 electrically connected to the main circuit board 15 is arranged inside the rear shell 12. The main circuit board 15 is electrically connected to the semiconductor refrigeration sheet 22, the fan 24, the annular lamp board 26, the laser lamp circuit board 31, and the battery 17. The operation panel 16 is integrated with a refrigeration gear button, a physiotherapy gear button, and a digital display tube. The user can independently control the cold compress component 2 and the laser physiotherapy component 3 through the operation panel 16.
[0033] In summary, for this cold compress laser physiotherapy device, the cold compress component 2 and the laser physiotherapy component 3 are integrated inside the shell 1 of the physiotherapy device. While retaining the traditional laser physiotherapy function, the cold compress function is added. The cold compress function is a relatively effective method for reducing pain and lowering fever, increasing the versatility of the product, providing more choices and conveniences for consumers, and at the same time, it can also enhance the added value and market competitiveness of the product. The application prospect is broad. Moreover, the laser physiotherapy component 3 and the cold compress component 2 are arranged oppositely, ensuring the integrity and appearance of the product and the usability of the product.
[0034] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A cold compress laser physiotherapy instrument, comprising a physiotherapy instrument housing (1), characterized in that: On both top sides of the physiotherapy device housing (1), a cold compress component (2) and a laser physiotherapy component (3) are respectively arranged. The cold compress component (2) includes a cold compress conduction sheet (21), a semiconductor refrigeration sheet (22) embedded on one side of the cold compress conduction sheet (21), a heat dissipation bracket (23) arranged on one side of the semiconductor refrigeration sheet (22), and a fan (24) arranged inside the heat dissipation bracket (23). The cold compress component (2) further includes a light guide ring (25). The cold compress conduction sheet (21) is embedded inside one side of the light guide ring (25), and an annular lamp board (26) is arranged inside the other side of the light guide ring (25).
2. The cryogenic laser physiotherapy apparatus according to claim 1, wherein: The refrigerating surface of the semiconductor refrigeration sheet (22) is attached to one side of the cold compress conduction sheet (21) through a layer of thermal conductive silicone grease, and the heating surface of the semiconductor refrigeration sheet (22) is attached to one side of the heat dissipation bracket (23) through a side thermal conductive silicone grease.
3. The cryogenic laser physiotherapy apparatus according to claim 1, wherein: The physiotherapy device housing (1) includes a front shell (11) and a rear shell (12). The cold compress component (2) is embedded in the top of one side of the front shell (11), and the side of the cold compress conduction sheet (21) away from the semiconductor refrigeration sheet (22) protrudes to the outside of the front shell (11).
4. The cryogenic laser physiotherapy apparatus according to claim 1, wherein: The laser physiotherapy component (3) includes a laser lamp circuit board (31) arranged on the inner top of the rear shell (12), a laser lamp heat dissipation seat (32) arranged on one side of the laser lamp circuit board (31), and a light guide sheet (33) arranged on the top of one side of the rear shell (12).
5. The cryogenic laser physiotherapy apparatus according to claim 1, wherein: The laser physiotherapy component (3) and the cold compress component (2) are arranged oppositely.
6. The cryogenic laser physiotherapy apparatus according to claim 3, characterized in that: Ventilation holes one (13) located on both sides of the heat dissipation bracket (23) are opened at the top of the front shell (11).
7. The cryogenic laser physiotherapy apparatus according to claim 3, wherein: Ventilation holes two (14) located on both sides of the laser lamp heat dissipation seat (32) are opened at the top of the rear shell (12).
8. The cryogenic laser physiotherapy apparatus according to claim 3, characterized in that: A main circuit board (15) is arranged inside the front shell (11), and an operation panel (16) nested with one side of the front shell (11) is arranged on one side of the main circuit board (15).
9. The cryogenic laser physiotherapy apparatus according to claim 3, characterized in that: A battery (17) electrically connected to the main circuit board (15) is arranged inside the rear shell (12).