Rhinitis meter
Patent Information
- Application Number
- CN202520541456.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-03-26
AI Technical Summary
但传统的鼻炎治疗仪,往往都是依靠长长的引线连接的探头和鼻炎治疗仪主体,而引线容易缠绕在一起且易断,给使用带来了诸多不便
[0016] The guide post of this utility model adopts a hinged installation method and is assisted by springs. When the main body is taken out from the shell, the two light-transmitting nasal tubes are inserted into the two nostrils respectively. With the assistance of the springs, the two light-transmitting nasal tubes can be clamped on the nasal septum cartilage to prevent the main body from falling off. After the main body is used, it can also be stored through the shell for easy carrying and protection.
Smart Images

Figure CN224655842U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical auxiliary instrument technology, specifically to a rhinitis device. Background Technology
[0002] Rhinitis is an inflammatory disease of the nasal cavity, caused by viruses, bacteria, allergens, various physical and chemical factors, and certain systemic diseases, resulting in inflammation of the nasal mucosa. The main pathological changes in rhinitis include congestion, swelling, exudation, hyperplasia, atrophy, or necrosis of the nasal mucosa. As a chronic disease, rhinitis causes long-term distress and suffering for patients.
[0003] In recent years, the concept and effectiveness of laser therapy have gained increasing popularity among patients, leading to the development of numerous laser rhinitis treatment devices. However, traditional rhinitis treatment devices often rely on long leads connecting the probe and the main body, which are prone to tangling and breakage, causing inconvenience. Therefore, existing technologies have improved upon traditional rhinitis treatment devices with long leads by directly fixing the probe to the main body. However, this results in the probe not maintaining a tight fit with the nose during use, requiring the user to lie down to prevent separation. Furthermore, there is a lack of a suitable housing for storing the main body. Therefore, this invention proposes a new rhinitis treatment device. Utility Model Content
[0004] The purpose of this utility model is to provide a rhinitis device in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model specifically adopts the following technical solution:
[0006] A rhinitis device includes a housing and a cover hinged to the housing, with a main body placed inside the housing;
[0007] The main body includes an upper shell and a lower shell that are interlocked. A circuit board is installed inside the lower shell by screws. A rubber sleeve is installed on the lower shell. Two guide posts are hinged inside the lower shell. The ends of the guide posts pass through the rubber sleeves and are equipped with far-infrared lamps. The far-infrared lamps are electrically connected to the circuit board. A light-transmitting nose tube is sleeved on the outside of the guide posts. A positioning post is installed inside the lower shell. A spring is sleeved on the positioning post, and the spring abuts against the guide post.
[0008] Furthermore, both the upper and lower shells are provided with mounting grooves, and the main body is provided with a rubber pad for embedding in the mounting groove.
[0009] Furthermore, the outer shell includes a top shell and a bottom shell that are interlocked with each other. The shell cover is installed on the top shell, and the main body is housed in the bottom shell. A second circuit board is installed on the bottom shell by screws. A charging head, an LED indicator and a pin are connected to the second circuit board.
[0010] Furthermore, a receiving chamber is installed inside the bottom shell by snap-fit, and a placement chamber is connected to one side of the receiving chamber. The placement chamber is constructed with a placement cavity and a connecting hole. The main body is located in the placement cavity, and the light-transmitting nose tube enters the placement chamber through the connecting hole. The placement chamber is constructed with a perforation for the pin to pass through.
[0011] Furthermore, a reflector and a disinfection lamp are connected to the second circuit board, wherein the reflector is screwed to the receiving compartment.
[0012] Furthermore, a spare compartment is interspersed on the bottom shell.
[0013] Furthermore, a magnet is connected to the outside of the placement compartment, and a magnet is connected to the cover, which is magnetically connected to the magnet.
[0014] Furthermore, the cover includes a cover body and a cover plate that are interlocked with each other, the second magnet is installed in the cover body, and a Hall sensor is installed in the cover plate.
[0015] The beneficial effects of this utility model are as follows:
[0016] The guide post of this utility model adopts a hinged installation method and is assisted by springs. When the main body is taken out from the shell, the two light-transmitting nasal tubes are inserted into the two nostrils respectively. With the assistance of the springs, the two light-transmitting nasal tubes can be clamped on the nasal septum cartilage to prevent the main body from falling off. After the main body is used, it can also be stored through the shell for easy carrying and protection. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the structure of the shell cover of this utility model after it is opened;
[0019] Figure 3 This is a schematic diagram of the outer shell structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the main structure of this utility model;
[0021] Figure 5 This is an exploded view of the main structure of this utility model;
[0022] Figure 6 This is an exploded view of the outer shell structure of this utility model.
[0023] Reference numerals: 1. Outer shell; 101. Top shell; 102. Bottom shell; 103. Placement compartment; 104. Reception compartment; 105. Magnet one; 106. Circuit board two; 107. Ejector pin; 108. Reflector; 109. Disinfection lamp; 2. Shell cover; 201. Cover body; 202. Cover plate; 203. Magnet two; 204. Hall sensor; 3. Main body; 301. Upper shell; 302. Lower shell; 303. Circuit board one; 304. Light-transmitting nose tube; 305. Spring; 306. Positioning post; 307. Rubber sleeve; 308. Mounting groove; 309. Rubber pad; 3010. Guide post; 4. Charging head; 5. LED indicator light; 6. Placement cavity; 7. Connecting hole; 8. Perforation; 9. Spare compartment. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0025] like Figures 1-6 As shown, one embodiment of the rhinitis device proposed in this utility model includes a housing 1 and a cover 2 hinged to the housing 1. A main body 3 is placed inside the housing 1. After opening the cover 2, the main body 3 is placed inside the housing 1, and then the cover 2 is closed to complete the storage of the main body 3. The open and closed states of the housing 1 are as follows: Figure 1 and Figure 2 As shown;
[0026] like Figure 5The diagram shown is an exploded view of the main body 3, which includes an upper shell 301 and a lower shell 302 that are interlocked using a locking block and slot method. A circuit board 303 is installed inside the lower shell 302 via screws. A rubber sleeve 307 is installed on the lower shell 302. Two guide posts 3010 are hinged inside the lower shell 302. The ends of the guide posts 3010 pass through the rubber sleeve 307 and are fitted with far-infrared lamps. The rubber sleeve 307 has two through holes for the guide posts 3010 to pass through. The purpose of device 7 is twofold: firstly, to meet the requirement that the guide post 3010 can rotate around the hinge point; and secondly, to improve sealing, such as preventing nasal mucus from entering the main body 3. The rubber sleeve 307 provides a seal. The far-infrared lamp is electrically connected to the circuit board 303. A light-transmitting nasal tube 304 is fitted over the outside of the guide post 3010, protecting the far-infrared lamp. When this device is used in conjunction with nasal medication, the therapeutic light passes through the light-transmitting nasal tube 304, deeply stimulating the nasal mucosa. It increases blood circulation and cell activity, promoting the absorption of nasal medication and thus enhancing its therapeutic effect. Even without nasal medication, it can still relieve rhinitis by promoting blood circulation. The far-infrared lamp is obscured by the light-transmitting nasal tube 304 and is not shown in the diagram. A positioning post 306 is installed inside the lower shell 302, and a spring 305 is fitted onto the positioning post 306. The spring 305 abuts against the guide post 3010. The upper shell 301 has a switch hole, and the circuit board 303 is equipped with a button. When the upper shell... After the main body 301 and the lower shell 302 are assembled, the button passes through the switch hole. In this utility model, the guide post 3010 adopts a hinged installation method and is assisted by the spring 305. When the main body 3 is taken out from the shell 1, the two light-transmitting nose tubes 304 are inserted into the two nostrils respectively. With the assistance of the spring 305, the two light-transmitting nose tubes 304 can be clamped on the nasal septum cartilage to prevent the main body 3 from falling off. After the main body 3 is used, it can also be stored through the shell 1 for easy carrying and protection.
[0027] like Figure 5 As shown, in order to improve the feel of the main body 3 during use, both the upper shell 301 and the lower shell 302 are provided with mounting grooves 308. The main body 3 is provided with a rubber pad 309 for embedding in the mounting groove 308. Before assembling the upper shell 301 and the lower shell 302, the rubber pad 309 is inserted into the mounting groove 308 on the lower shell 302. When the upper shell 301 and the lower shell 302 are engaged, the rubber pad 309 is squeezed and fixed. Both the rubber pad 309 and the rubber sleeve 307 are made of silicone.
[0028] like Figure 6As shown, in some embodiments, the outer shell 1 includes a top shell 101 and a bottom shell 102 that are snapped together. The shell cover 2 is installed on the top shell 101, and the main body 3 is housed in the bottom shell 102. A second circuit board 106 is installed on the bottom shell 102 by screws. A charging head 4, an LED indicator 5, and a push pin 107 are connected to the second circuit board 106. A battery is provided on the first circuit board 303. When the main body 3 is placed inside the outer shell 1, the main body 3 is charged through the push pin 107. The bottom shell 102 is constructed with small holes through which the charging head 4 and the LED indicator 5 pass, so as to expose the charging head 4 and the LED indicator 5.
[0029] like Figure 3 and Figure 6 As shown, in some embodiments, a receiving chamber 104 is installed inside the bottom shell 102 by snap-fit. A placement chamber 103 is connected to one side of the receiving chamber 104. The placement chamber 103 has a placement cavity 6 and a connecting hole 7. The main body 3 is located in the placement cavity 6, and the light-transmitting nose tube 304 enters the placement chamber 103 through the connecting hole 7. The placement chamber 103 has a through hole 8 for the ejector pin 107 to pass through. When the main body 3 is placed inside the outer shell 1, the entire main body 3 is placed in two parts inside the outer shell 1, one part is located in the placement cavity 6, and the other part is located in the placement chamber 103. The ejector pin 107 is inserted into the charging port on the main body 3 through the through hole 8, and then connected to the power supply with the charging head 4 to complete the charging of the main body 3.
[0030] like Figure 6 As shown, in some embodiments, a reflector 108 and a disinfection lamp 109 are connected to the circuit board 106. The reflector 108 is screwed to the receiving chamber 104. The reflector 108, together with the placement chamber 103, can fully cover the light-transmitting nose tube 304 located in the placement chamber 103. When the disinfection lamp 109 is working, the light emitted is reflected by the reflector 108, which can effectively disinfect the light-transmitting nose tube 304.
[0031] like Figure 1 As shown, in order to make more reasonable use of the internal space of the outer shell 1, in some embodiments, a spare compartment 9 is inserted and connected to the bottom shell 102. The spare compartment 9 contains a light-transmitting nose tube 304, which can be replaced. In this way, two sets of light-transmitting nose tubes 304 can be used by two people, such as two family members using their own light-transmitting nose tubes 304, which improves hygiene.
[0032] In some embodiments, a magnet 105 is connected to the outside of the storage compartment 103, and a magnet 203 magnetically connected to the magnet 105 is connected to the cover 2. The cover 2 includes a cover body 201 and a cover plate 202 that are interlocked with each other. The magnet 203 is installed inside the cover body 201, and a Hall sensor 204 is installed inside the cover plate 202. The magnetic connection method facilitates the opening and closing of the cover 2.
[0033] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A rhinitis device, characterized in that, It includes an outer shell (1) and a cover (2) hinged to the outer shell (1), and a main body (3) is placed inside the outer shell (1); The main body (3) includes an upper shell (301) and a lower shell (302) that are interlocked. A circuit board (303) is installed inside the lower shell (302) by screws. A rubber sleeve (307) is installed on the lower shell (302). Two guide posts (3010) are hinged inside the lower shell (302). The ends of the guide posts (3010) pass through the rubber sleeve (307) and are equipped with far-infrared lamps. The far-infrared lamps are electrically connected to the circuit board (303). A light-transmitting nose tube (304) is sleeved on the outside of the guide posts (3010). A positioning post (306) is installed inside the lower shell (302). A spring (305) is sleeved on the positioning post (306). The spring (305) abuts against the guide post (3010).
2. The rhinitis device according to claim 1, characterized in that, The upper shell (301) and the lower shell (302) are each provided with a mounting groove (308), and the main body (3) is provided with a rubber pad (309) for embedding in the mounting groove (308).
3. The rhinitis device according to claim 1, characterized in that, The outer shell (1) includes a top shell (101) and a bottom shell (102) that are snapped together. The cover (2) is installed on the top shell (101), and the main body (3) is housed in the bottom shell (102). A second circuit board (106) is installed on the bottom shell (102) by screws. A charging head (4), an LED indicator (5) and a pin (107) are connected to the second circuit board (106).
4. The rhinitis device according to claim 3, characterized in that, The bottom shell (102) is fitted with a receiving chamber (104) by snap-fit. The receiving chamber (104) is connected to a placement chamber (103) on one side. The placement chamber (103) is constructed with a placement cavity (6) and a connecting hole (7). The main body (3) is located in the placement cavity (6), and the light-transmitting nose tube (304) enters the placement chamber (103) through the connecting hole (7). The placement chamber (103) is constructed with a perforation (8) for the pin (107) to pass through.
5. The rhinitis device according to claim 4, characterized in that, A reflector (108) and a disinfection lamp (109) are connected to the second circuit board (106), wherein the reflector (108) is screwed to the receiving chamber (104).
6. The rhinitis device according to claim 3, characterized in that, A spare compartment (9) is interspersed on the bottom shell (102).
7. The rhinitis device according to claim 4, characterized in that, A magnet (105) is connected to the outside of the placement compartment (103), and a magnet (203) is connected to the cover (2) and is magnetically connected to the magnet (105).
8. The rhinitis device according to claim 7, characterized in that, The cover (2) includes a cover body (201) and a cover plate (202) that are interlocked with each other. The second magnet (203) is installed inside the cover body (201), and a Hall sensor (204) is installed inside the cover plate (202).