Pulsed lamp sterilization module and air conditioner having the same

By decomposing the pulse lamp sterilization module of the air conditioner into a pulse control box, a lamp holder assembly, and a bulb assembly, a separable design is achieved, solving the problems of high maintenance costs, high difficulty, and low safety performance in existing technologies, thus reducing costs and improving safety.

CN115992984BActive Publication Date: 2026-03-24GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-30
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The pulse lamp sterilization module in existing air conditioners has high maintenance costs, is difficult to repair, and has low safety performance.

Method used

The pulse lamp sterilization module is decomposed into a pulse control box, a lamp holder assembly, and a bulb assembly. The pulse control box and the lamp holder assembly are separated and electrically connected through the lamp holder input line. The lamp holder assembly and the bulb assembly are detachably connected, realizing a separable design.

Benefits of technology

It reduces maintenance and repair costs, simplifies repairs, shortens repair time, and ensures safety performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a pulse lamp sterilization module and an air conditioner with the same. The pulse lamp sterilization module comprises a pulse electric control box, a lamp holder assembly, and a bulb assembly. The lamp holder assembly is spaced apart from the pulse electric control box and electrically connected to the pulse electric control box through a lamp holder input line. The bulb assembly is detachably connected to the lamp holder assembly. When the bulb assembly is installed on the lamp holder assembly, the bulb assembly is electrically connected to the lamp holder assembly. According to the pulse lamp sterilization module, the pulse electric control box, the lamp holder assembly, and the bulb assembly are separated, the pulse electric control box and the lamp holder assembly and the lamp holder assembly and the bulb assembly are separable, any one of the pulse electric control box, the lamp holder assembly, and the bulb assembly can be replaced when any one of the pulse electric control box, the lamp holder assembly, and the bulb assembly is damaged, the maintenance cost and the maintenance cost of the pulse lamp sterilization module can be reduced, the maintenance difficulty can be reduced, the maintenance time can be shortened, and the safety performance of the pulse lamp sterilization module can be ensured.
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Description

Technical Field

[0001] This invention relates to the field of air handling equipment technology, and in particular to a pulse lamp sterilization module and an air conditioner having the same. Background Technology

[0002] To improve user experience, many air conditioners use pulse lamp sterilization modules to emit pulse light to sterilize the air in the air duct and the surface of surrounding parts. Existing pulse lamp sterilization modules mainly consist of a pulse lamp body and a pulse lamp control box, which has high maintenance costs, high maintenance difficulty, and low safety performance. Summary of the Invention

[0003] This invention aims to at least solve one of the technical problems existing in the prior art. To this end, this invention proposes a pulse lamp sterilization module, wherein damaged components can be replaced individually, reducing maintenance costs and difficulty, and ensuring the safety performance of the pulse lamp sterilization module.

[0004] The present invention also proposes an air conditioner, which includes the above-mentioned pulse lamp sterilization module.

[0005] According to an embodiment of the present invention, a pulse lamp sterilization module includes: a pulse electrical control box; a lamp holder assembly, the lamp holder assembly being spaced apart from the pulse electrical control box and electrically connected via a lamp holder input line; and a bulb assembly, the bulb assembly being detachably connected to the lamp holder assembly, wherein when the bulb assembly is installed on the lamp holder assembly, the bulb assembly is electrically connected to the lamp holder assembly.

[0006] According to an embodiment of the present invention, the pulse lamp sterilization module is decomposed into a pulse control box, a lamp holder assembly, and a bulb assembly. The pulse control box and the lamp holder assembly are spaced apart and electrically connected through a lamp holder input line. The lamp holder assembly and the bulb assembly are detachably connected, and when the lamp holder assembly and the bulb assembly are connected, the lamp holder assembly and the bulb assembly are electrically connected. This enables the separation of the pulse control box and the lamp holder assembly, and the lamp holder assembly and the bulb assembly. If any of the pulse control box, the lamp holder assembly, and the bulb assembly is damaged, the corresponding damaged part can be replaced individually. This reduces the maintenance and repair costs of the pulse lamp sterilization module, reduces the difficulty of maintenance, shortens the maintenance time, and ensures the safety performance of the pulse lamp sterilization module.

[0007] In addition, the pulse lamp sterilization module according to the present invention may also have the following additional technical features:

[0008] In some embodiments, the lamp holder input line includes a first wire, a second wire, and a third wire; the lamp holder assembly includes a lamp holder terminal block; the bulb assembly includes a bulb terminal block; the lamp holder terminal block includes a lamp holder positive terminal, a lamp holder negative terminal, and a lamp holder signal terminal; the bulb terminal block includes a bulb positive terminal, a bulb negative terminal, and a bulb signal wire; the first wire is connected to the lamp holder positive terminal; the second wire is connected to the lamp holder negative terminal; the third wire is connected to the lamp holder signal terminal; the bulb positive terminal is electrically connected to the lamp holder positive terminal; the bulb negative terminal is electrically connected to the lamp holder negative terminal; and the bulb signal wire is electrically connected to the lamp holder signal terminal.

[0009] In some embodiments, the bulb assembly further includes: a connector, the connector being connected to the bulb socket assembly and having a connecting cavity; a bulb tube, the bulb tube being connected to the connector, the bulb tube having a cavity communicating with the connecting cavity, and the bulb terminal being disposed within the connecting cavity; a light-emitting tube, the light-emitting tube being disposed within the cavity and connected to the positive and negative terminals of the bulb; and a signal line trigger coil, the signal line trigger coil being disposed within the cavity and surrounding the light-emitting tube.

[0010] In some embodiments, the connecting cavity has an opening at one axial end facing the lamp tube, the lamp tube passes through the opening, and an annular protrusion extending in the circumferential direction of the outer peripheral wall of the end of the lamp tube near the connecting seat is provided. The annular protrusion is located in the connecting cavity and abuts against the axial wall surface of the connecting cavity near the lamp tube.

[0011] In some embodiments, the outer peripheral wall of the annular protrusion is spaced apart from the inner peripheral wall of the connecting cavity, and an annular welding mud extending in the circumferential direction of the annular protrusion is provided between the outer peripheral wall of the annular protrusion and the inner peripheral wall of the connecting cavity.

[0012] In some embodiments, the light-emitting tube extends along the length of the cavity, one end of the light-emitting tube is connected to the positive terminal of the bulb via a positive electrode wire, and the other end is connected to the negative terminal of the bulb via a negative electrode wire.

[0013] In some embodiments, the bulb assembly further includes an insulating sleeve fitted over the negative electrode wire.

[0014] In some embodiments, the axial end of the connecting cavity away from the lamp tube is open, and the bulb assembly further includes: a rubber plug, a portion of which is disposed in the connecting cavity and another portion of which is disposed in the tube cavity. The rubber plug has a first insertion groove and a second insertion groove for inserting the positive terminal and the negative terminal of the bulb, respectively. The rubber plug also has a first wire hole and a second wire hole for the positive wire and the negative wire to pass through, respectively. The rubber plug also has a third wire hole for the bulb signal wire to pass through.

[0015] In some embodiments, the bulb assembly further includes a sealing adhesive filling the connection cavity, the sealing adhesive comprising a first sealing adhesive located on the side of the plug away from the lamp tube and a second sealing adhesive located between the outer peripheral wall of the plug and the inner peripheral wall of the connection cavity.

[0016] In some embodiments, the connector is a conductive element, the bulb signal line is connected to the connector, and the connector is adapted to be electrically connected to the bulb socket signal terminal.

[0017] In some embodiments, the bulb assembly is snap-fitted to the lamp holder assembly.

[0018] In some embodiments, a portion of the bulb assembly is located within the lamp holder. The outer peripheral wall of the bulb assembly has a plurality of protrusions spaced apart along the circumferential direction of the bulb assembly. The peripheral wall of the lamp holder has a plurality of slots spaced apart along the circumferential direction of the lamp holder. Each slot corresponds one-to-one with a plurality of protrusions. Each slot includes a first opening and a second opening. One end of the first opening is open. The second opening is located on the circumferential side of the first opening and extends along the circumferential direction of the lamp holder assembly. Each protrusion is adapted to enter the second opening from the first opening.

[0019] The present invention also provides an air conditioner having the above-described embodiments.

[0020] An air conditioner according to an embodiment of the present invention includes: a housing; a heat exchange component disposed within the housing; an air duct component disposed within the housing; and the aforementioned pulse lamp sterilization module disposed on the heat exchange component, wherein at least a portion of the bulb assembly is located between the air duct component and the heat exchange component.

[0021] According to an embodiment of the present invention, the air conditioner, by incorporating the aforementioned pulse lamp sterilization module, decomposes the pulse lamp sterilization module into a pulse control box, a lamp holder assembly, and a bulb assembly. The pulse control box and the lamp holder assembly are spaced apart and electrically connected via a lamp holder input line. The lamp holder assembly and the bulb assembly are detachably connected, and when connected, the lamp holder assembly and the bulb assembly are electrically connected. This enables the separation of the pulse control box from the lamp holder assembly and the lamp holder assembly, and the lamp holder assembly from the bulb assembly. If any of the pulse control box, lamp holder assembly, or bulb assembly is damaged, the corresponding damaged component can be replaced individually. This reduces the maintenance and repair costs of the pulse lamp sterilization module, lowers the difficulty of repair, shortens the repair time, and ensures the safety performance of the pulse lamp sterilization module.

[0022] In addition, the air conditioner according to embodiments of the present invention may also have the following additional technical features:

[0023] In some embodiments, the heat exchange component includes: a heat exchanger body; a heat exchanger bracket, the heat exchanger bracket being disposed outside the heat exchanger body and connected to the heat exchanger body, the pulse control box being disposed on the side of the heat exchanger bracket away from the heat exchanger body in the length direction, the heat exchanger bracket having a through hole, the lamp holder assembly being disposed in the through hole, and the bulb assembly being located on the side of the heat exchanger bracket facing the heat exchanger body.

[0024] In some embodiments, the lamp holder assembly has a baffle extending in the circumferential direction of the outer peripheral wall, the baffle being located on the side of the heat exchanger support away from the heat exchanger body.

[0025] In some embodiments, the side of the heat exchanger support away from the heat exchanger body has an annular rib surrounding the insertion hole, and the baffle abuts against the annular rib.

[0026] In some embodiments, the housing includes: a chassis; a back plate assembly and a panel assembly, the back plate assembly and the panel assembly being connected and each having one end connected to the chassis, the heat exchanger support being disposed on the side of the heat exchanger body near the back plate assembly; and a top plate, the top plate being connected to the end of the back plate assembly and the panel assembly opposite to the chassis.

[0027] In some embodiments, the outer peripheral wall of the lamp holder has a first mounting lug, which is connected to the heat exchange component.

[0028] In some embodiments, the outer peripheral wall of the pulse control box has a second mounting lug, which is connected to the heat exchange component.

[0029] In some embodiments, the air conditioner further includes: a main control box, which is disposed inside the housing, and the pulse control box is connected to the main control box via a control box input line. At least one of the heat exchange component and the air duct component is provided with a wire clip for securing the control box input line.

[0030] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0031] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0032] Figure 1 This is a perspective view of an air conditioner according to an embodiment of the present invention;

[0033] Figure 2 This is an exploded view of an air conditioner according to an embodiment of the present invention;

[0034] Figure 3 This is a perspective view of an air conditioner according to an embodiment of the present invention, wherein a portion of the air conditioner is a sectional view;

[0035] Figure 4 yes Figure 3 Enlarged view of point A in the middle;

[0036] Figure 5 This is a cross-sectional view of an air conditioner according to an embodiment of the present invention;

[0037] Figure 6 This is a partial cross-sectional view of an air conditioner according to an embodiment of the present invention from another angle;

[0038] Figure 7 This is a perspective view of a pulse lamp sterilization module according to an embodiment of the present invention;

[0039] Figure 8 This is a perspective view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0040] Figure 9 This is a perspective view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention from another angle;

[0041] Figure 10 This is an exploded view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0042] Figure 11 This is a perspective view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention.

[0043] Figure 12 This is a top view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0044] Figure 13 It is along Figure 12 Sectional view of the middle BB line;

[0045] Figure 14 It is along Figure 12 A cross-sectional view of the CC line;

[0046] Figure 15 This is a perspective view of the protective cover of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0047] Figure 16 This is a top view of the protective cover of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0048] Figure 17 It is along Figure 16 Sectional view of the DD line;

[0049] Figure 18 This is a perspective view of the pressure plate of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0050] Figure 19 This is a top view of the pressure plate of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0051] Figure 20 It is along Figure 19 Sectional view of the middle EE line;

[0052] Figure 21 This is a perspective view of the waterproof rubber ring of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0053] Figure 22 This is a top view of the waterproof rubber ring of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0054] Figure 23 It is along Figure 22 Sectional view of the middle FF line;

[0055] Figure 24 This is a cross-sectional view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention, wherein the lamp holder assembly is in a state not engaged with the bulb assembly;

[0056] Figure 25 This is a cross-sectional view of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention, wherein the lamp holder assembly is in a state of engagement with the bulb assembly;

[0057] Figure 26This is a perspective view of the pulse control box of the pulse lamp sterilization module according to an embodiment of the present invention;

[0058] Figure 27 This is a perspective view of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0059] Figure 28 This is an exploded view of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0060] Figure 29 This is a cross-sectional view of the lamp tube of the lamp assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0061] Figure 30 This is a cross-sectional view of the insulating sleeve of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0062] Figure 31 This is a cross-sectional view of the light-emitting tube of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0063] Figure 32 This is a perspective view of the connector and signal line trigger coil of the pulse lamp sterilization module according to an embodiment of the present invention;

[0064] Figure 33 This is a perspective view of the connector of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention, wherein a portion of the connector is a cross-sectional view.

[0065] Figure 34 This is a perspective view of the rubber plug of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0066] Figure 35 This is a cross-sectional view of the rubber plug of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0067] Figure 36 This is a cross-sectional view of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;

[0068] Figure 37 This is a perspective view of the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention, wherein a portion of the bulb assembly is a cross-sectional view;

[0069] Figure 38 This is a perspective view of the pulse control box and lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention.

[0070] Figure 39 This is a perspective view of the pulse lamp sterilization module according to an embodiment of the present invention from another angle;

[0071] Figure 40This is a cross-sectional view of the lamp holder assembly and bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention.

[0072] Figure 41 This is a perspective view of the heat exchange component and the air duct component of an air conditioner according to an embodiment of the present invention.

[0073] Figure 42 This is a perspective view of the pulse lamp sterilization module, heat exchange component, and air duct component of an air conditioner according to an embodiment of the present invention.

[0074] Figure 43 This is a cross-sectional schematic diagram of the lamp holder assembly and heat exchanger bracket of an air conditioner according to an embodiment of the present invention.

[0075] Figure label:

[0076] 100. Pulse lamp sterilization module; 1000. Air conditioner;

[0077] 1. Pulse control box; 11. Lamp holder input wire; 111. First wire body; 112. Second wire body; 113. Third wire body; 12. Second mounting lug; 13. Control box input wire;

[0078] 2. Lamp holder assembly; 21. Lamp holder; 211. Insulating housing; 2111. Mounting protrusion; 2112. Mounting groove; 2113. Through hole; 2114. First mounting hole; 212. Conductive plate; 213. Connecting part; 214. Annular part; 215. Bayonet; 2151. First opening; 2152. Second opening; 216. Mounting post; 2161. Third mounting hole; 217. First mounting lug; 2171. Third fastener; 22. Protective cover; 221. Through hole; 222. Second fastener; 223. Recessed portion; 224. Connecting hole; 23. Lamp holder terminal; 231. Lamp holder positive terminal; 232. Lamp holder negative terminal; 233. Lamp holder signal terminal; 234. Terminal boss; 24. Pressure plate; 241. Clearance hole; 242. First fastener; 243. Second mounting hole; 25. Elastic element; 26. Waterproof rubber ring; 261. Wire passage hole; 262. Annular groove; 27. Baffle;

[0079] 3. Bulb assembly; 31. Bulb terminal block; 311. Bulb positive terminal; 312. Bulb negative terminal; 313. Bulb signal wire; 32. Connector; 321. Connecting cavity; 322. Opening; 323. Protrusion; 33. Lamp tube; 331. Tube; 332. Annular protrusion; 34. Light-emitting tube; 341. Positive wire; 342. Negative wire; 35. Signal wire trigger coil; 36. Annular solder paste; 37. Insulating sleeve; 38. Rubber stopper; 381. First insertion slot; 382. Second insertion slot; 383. First wire hole; 384. Second wire hole; 385. Third wire hole; 39. Sealing compound; 391. First sealing compound; 392. Second sealing compound;

[0080] 200. Housing; 201. Chassis; 202. Back panel assembly; 203. Panel assembly; 204. Top panel; 205. Air intake grille;

[0081] 300. Heat exchanger component; 301. Heat exchanger body; 302. Heat exchanger bracket; 303. Through hole; 304. Annular rib; 305. Lamp holder assembly mounting post; 306. Pulse control box mounting post; 307. Limiting baffle; 308. Supporting rib;

[0082] 400. Air duct components; 401. Cable clips;

[0083] 500. Main electrical control box. Detailed Implementation

[0084] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0085] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0086] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0087] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0088] The pulse lamp sterilization module 100 according to an embodiment of the present invention is described below with reference to the accompanying drawings.

[0089] like Figure 7 and attached Figure 39 As shown, the pulse lamp sterilization module 100 according to an embodiment of the present invention includes a pulse control box 1, a lamp holder assembly 2, and a bulb assembly 3.

[0090] Specifically, see the attached document. Figure 7 As shown, the pulse control box 1 can output signals and energy to control the working time and pulse light emission frequency of the lamp holder assembly 2 and the bulb assembly 3, meeting different usage requirements. Furthermore, the lamp holder assembly 2 is used to install and connect the bulb assembly 3, transmitting electrical energy and signals to the bulb assembly 3. The lamp holder assembly 2 is spaced apart from the pulse control box 1 and electrically connected via the lamp holder input line 11, which can transmit electrical energy and signals to the lamp holder assembly 2.

[0091] Furthermore, the lamp holder input line 11 can be connected to the lamp holder assembly 2 and the pulse control box 1 via wiring screws. Compared to the existing technology that uses soldering to connect the lamp holder input line to the pulse lamp body and the pulse control box, this facilitates the assembly and disassembly of the lamp holder assembly 2 and the pulse control box 1. If either the lamp holder assembly 2 or the pulse control box 1 is damaged, the corresponding damaged component can be replaced individually. This reduces the maintenance and repair costs of the pulse lamp sterilization module 100, lowers the difficulty of maintenance, shortens maintenance time, and ensures the safety performance of the pulse lamp sterilization module 100 during and after maintenance. Of course, the invention is not limited to this; the lamp holder input line 11 can also be connected to the lamp holder assembly 2 and the pulse control box 1 via soldering, and this is not a limitation.

[0092] Furthermore, the bulb assembly 3 emits pulsed light to sterilize and disinfect the air and components inside the air conditioner 1000, providing users with cleaner, more hygienic, and healthier air, thus improving the user experience. The bulb assembly 3 is detachably connected to the lamp holder assembly 2. When the bulb assembly 3 is installed on the lamp holder assembly 2, the bulb assembly 3 and the lamp holder assembly 2 are electrically connected. The circuit can be connected or disconnected by the engagement and disengagement of the bulb assembly 3 and the lamp holder assembly 2. This design facilitates easy assembly and disassembly, has a high safety factor, reduces maintenance difficulty, shortens maintenance time, and allows for individual replacement of the damaged component if either the lamp holder assembly 2 or the bulb assembly 3 fails, thereby reducing the maintenance and repair costs of the pulsed light sterilization module 100.

[0093] According to an embodiment of the present invention, the pulse lamp sterilization module 100 is decomposed into a pulse control box 1, a lamp holder assembly 2, and a bulb assembly 3. The pulse control box 1 and the lamp holder assembly 2 are spaced apart and electrically connected through a lamp holder input line 11. The lamp holder assembly 2 and the bulb assembly 3 are detachably connected. When the lamp holder assembly 2 and the bulb assembly 3 are connected, the lamp holder assembly 2 and the bulb assembly 3 are electrically connected. This enables the separation of the pulse control box 1 and the lamp holder assembly 2, and the lamp holder assembly 2 and the bulb assembly 3. If any of the pulse control box 1, the lamp holder assembly 2, and the bulb assembly 3 is damaged, the corresponding damaged part can be replaced individually. This reduces the maintenance cost and repair cost of the pulse lamp sterilization module 100, reduces the difficulty of maintenance, shortens the maintenance time, and ensures the safety performance of the pulse lamp sterilization module 100.

[0094] In some embodiments of the present invention, reference is made to the appendix. Figure 9 and attached Figure 40 As shown, the lamp holder assembly 2 includes a lamp holder terminal 23, and the bulb assembly 3 includes a bulb terminal 31. The lamp holder terminal 23 is connected to the lamp holder input line 11 and is adapted to be connected to the bulb terminal 31 on the bulb assembly 3. This enables the lamp holder input line 11 to transmit electrical signals to the lamp holder terminal 23, and the lamp holder signal terminal 233 to transmit electrical signals to the bulb terminal 31, thereby controlling the working time of the bulb assembly 3 and the emission frequency of the pulse light to meet different usage requirements.

[0095] Specifically, see the attached document. Figure 11 Appendix Figure 14 Appendix Figure 37 and attached Figure 40As shown, the lamp holder input line 11 includes a first wire 111, a second wire 112, and a third wire 113. The lamp holder terminal 23 includes a lamp holder positive terminal 231, a lamp holder negative terminal 232, and a lamp holder signal terminal 233. The bulb terminal 31 includes a bulb positive terminal 311, a bulb negative terminal 312, and a bulb signal line 313. The first wire 111 is connected to the lamp holder positive terminal 231, the second wire 112 is connected to the lamp holder negative terminal 232, and the third wire 113 is connected to the lamp holder signal terminal 233. The bulb positive terminal 311 is electrically connected to the lamp holder positive terminal 231, the bulb negative terminal 312 is electrically connected to the lamp holder negative terminal 232, and the bulb signal line 313 is electrically connected to the lamp holder signal terminal 233, thus forming a closed loop. The working time of the bulb assembly 3 and the emission frequency of the pulse light can be controlled by the pulse control box 1 to meet different usage requirements.

[0096] In a further embodiment of the invention, reference is made to the appendix. Figure 28 As shown, the bulb assembly 3 also includes a connector 32, a lamp tube 33, a light-emitting tube 34, and a signal line trigger coil 35. (See attached diagram) Figure 32 and attached Figure 33 As shown, the connector 32 is connected to the lamp holder assembly 2 and has a connecting cavity 321. The bulb assembly 3 and the lamp holder assembly 2 can be connected through the connector 32.

[0097] Further, see Appendix Figure 29 Appendix Figure 31 Appendix Figure 36 and attached Figure 37 As shown, the lamp tube 33 is connected to the connector 32. The lamp tube 33 has a cavity 331. The light-emitting tube 34 is disposed in the cavity 331. The lamp tube 33 is used to protect the light-emitting tube 34 from damage caused by external force, keep the parts inside the cavity 331 insulated from external objects, and provide a sealed space to slow down or eliminate oxidation caused by the heat of the internal parts.

[0098] Furthermore, see the attached document. Figure 31 and attached Figure 36 As shown, the light-emitting tube 34 is connected to the positive terminal 311 and the negative terminal 312 of the bulb. The tube cavity 331 is connected to the connecting cavity 321. The bulb terminal 31 is located in the connecting cavity 321, which facilitates the connection of the bulb terminal 31 to the light-emitting tube 34 in the lamp tube 33.

[0099] Furthermore, see the attached document. Figure 33As shown, the signal line trigger coil 35 is connected to the bulb signal line 313. The signal line trigger coil 35 is located inside the cavity 331 and surrounds the light-emitting tube 34, and can transmit signals to control the emission frequency of the pulse light of the light-emitting tube 34. It can be understood that the light-emitting tube 34 is filled with inert gas. When the pulse lamp sterilization module 100 is working, the positive terminal 311 and the negative terminal 312 of the bulb ionize the inert gas inside the light-emitting tube 34 to emit pulse light.

[0100] In a further embodiment of the invention, reference is made to the appendix. Figure 29 and attached Figure 33 As shown, the connecting cavity 321 has an opening 322 on one axial end facing the lamp tube 33. The lamp tube 33 passes through the opening 322. The outer peripheral wall of the end of the lamp tube 33 near the connecting seat 32 is provided with an annular protrusion 332 extending in the circumferential direction of the lamp tube 33. The annular protrusion 332 is located in the connecting cavity 321 and abuts against the axial wall surface of the connecting cavity 321 near the lamp tube 33. The connection between the lamp tube 33 and the connecting seat 32 can be realized through the cooperation of the annular protrusion 332 and the connecting seat 32.

[0101] In a further embodiment of the invention, reference is made to the appendix. Figure 36 As shown, the outer peripheral wall of the annular protrusion 332 is spaced apart from the inner peripheral wall of the connecting cavity 321. An annular welding putty 36 extending circumferentially from the outer peripheral wall of the annular protrusion 332 to the inner peripheral wall of the connecting cavity 321 is provided between them. The annular welding putty 36 is used to connect the annular protrusion 332 and the inner peripheral wall of the connecting cavity 321. The annular welding putty 36 is heat-resistant, moisture-resistant, and has a strong adhesive bond, which can improve the reliability and stability of the fit between the annular protrusion 332 and the connecting seat 32. Furthermore, the annular welding putty 36 is controllable. During the production process of the pulse lamp sterilization module 100, if there is an error in the adhesion between the lamp tube 33 and the connecting seat 32, the annular welding putty 36 can be heated to correct the fit between the lamp tube 33 and the connecting seat 32 in a timely manner, thereby improving the accuracy of the fit between the lamp tube 33 and the connecting seat 32.

[0102] In a further embodiment of the invention, reference is made to the appendix. Figure 36 As shown, the light-emitting tube 34 extends along the length of the cavity 331 (see attached diagram). Figure 36 Extending in the direction shown (a), one end of the light-emitting tube 34 is connected to the positive terminal 311 of the bulb via a positive electrode wire 341, and the other end is connected to the negative terminal 312 of the bulb via a negative electrode wire 342, facilitating the ionization of the inert gas inside the light-emitting tube 34. It can be understood that when the pulse lamp sterilization module 100 is working, the bulb terminal 31 outputs a signal to control the length direction of the light-emitting tube 34 (see attached diagram). Figure 36 The positive electrode wire 341 and negative electrode wire 342 at both ends (as shown in direction a) ionize the inert gas inside the light-emitting tube 34 to emit pulsed light.

[0103] Optionally, the light-emitting tube 34 can be connected to the positive terminal 311 of the bulb via a positive wire 341 at one end near the connector 32, and to the negative terminal 312 of the bulb via a negative wire 342 at the other end. Alternatively, the end away from the connector 32 can be connected to the positive terminal 311 of the bulb via a positive wire 341, and the end near the connector 32 can be connected to the negative terminal 312 of the bulb via a negative wire 342. Both can form a circuit, ionize the inert gas inside the light-emitting tube 34, and emit pulsed light.

[0104] In a further embodiment of the invention, reference is made to the appendix. Figure 30 and attached Figure 37 As shown, the bulb assembly 3 also includes an insulating sleeve 37, which is sleeved on the negative electrode wire 342 to separate the negative electrode wire 342 from the bulb signal line 313 and prevent the negative electrode wire 342 from contacting the bulb signal line 313 and forming a short circuit.

[0105] In a further embodiment of the invention, reference is made to the appendix. Figure 37 As shown, the axial end of the connecting cavity 321 away from the lamp tube 33 is open. The bulb assembly 3 also includes a rubber plug 38. Part of the rubber plug 38 is disposed in the connecting cavity 321 and the other part is disposed in the tube 331. It is used to seal the tube 331, prevent condensation from forming in the lamp tube 33, and reduce or eliminate oxidation of the positive electrode wire 341, the negative electrode wire 342 and the bulb signal line 313.

[0106] Further, see Appendix Figure 34 and attached Figure 35 As shown, the rubber stopper 38 has a first insertion groove 381 and a second insertion groove 382 for inserting the positive terminal 311 and the negative terminal 312 of the bulb, respectively, which can be used to install and clamp the positive terminal 311 and the negative terminal 312 of the bulb. The rubber stopper 38 also has a first wire hole 383 and a second wire hole 384 for the positive wire 341 and the negative wire 342 to pass through, respectively. The rubber stopper 38 also has a third wire hole 385 for the bulb signal wire 313 to pass through, so that the positive wire 341, the negative wire 342 and the bulb signal wire 313 can be extended into the tube 331. Optionally, the first wire hole 383 can be appropriately interference-fitted with the positive electrode wire 341, the second wire hole 384 with the negative electrode wire 342, and the third wire hole 385 with the bulb signal wire 313. The elasticity of the rubber stopper 38 allows the positive electrode wire 341, the negative electrode wire 342, and the bulb signal wire 313 to be inserted normally, while also ensuring that the rubber stopper 38 is tightly fitted with the positive electrode wire 341, the negative electrode wire 342, and the bulb signal wire 313 to prevent water from entering the tube 331.

[0107] In a further embodiment of the invention, reference is made to the appendix. Figure 36As shown, the bulb assembly 3 also includes a sealing colloid 39, which fills the connecting cavity 321 to further seal the cavity 331, preventing condensation inside the bulb tube 33 and reducing or eliminating oxidation of the positive electrode wire 341, the negative electrode wire 342, and the bulb signal wire 313. The sealing colloid 39 includes a first sealing colloid 391 located on the side of the plug 38 away from the bulb tube 33 and a second sealing colloid 392 located between the outer peripheral wall of the plug 38 and the inner peripheral wall of the connecting cavity 321, which can cooperate with the plug 38 to seal the cavity 331.

[0108] It should be noted that the reference appendix Figure 36 As shown, at least a portion of the bulb positive terminal 311 and bulb negative terminal 312 are located on the side of the sealing colloid 39 away from the plug 38, ensuring that the bulb positive terminal 311 and bulb negative terminal 312 are properly connected to the lamp holder positive terminal 231 and lamp holder negative terminal 232 for electrical conduction.

[0109] In a further embodiment of the present invention, the connector 32 is a conductive element, the bulb signal line 313 is connected to the connector 32, and the connector 32 is adapted to be electrically connected to the lamp holder signal terminal 233. The electrical signal of the lamp holder signal terminal 233 can be transmitted to the bulb signal line 313 through the connector 32, and then to the signal line trigger coil 35 to control the pulse component to emit pulse light.

[0110] In some embodiments of the present invention, the bulb assembly 3 and the lamp holder assembly 2 are snap-fit ​​connected, which is simple in structure and easy to connect. This facilitates the disassembly and assembly of the bulb assembly 3 and the lamp holder assembly 2, reduces maintenance difficulty, shortens maintenance time, and allows for the replacement of the corresponding damaged part when either the lamp holder assembly 2 or the bulb assembly 3 is damaged, thereby reducing the maintenance and upkeep costs of the pulse lamp sterilization module 100.

[0111] Of course, the present invention is not limited to this. The bulb assembly 3 and the lamp holder assembly 2 can also be connected by fasteners, and there is no limitation here.

[0112] In a further embodiment of the invention, reference is made to the appendix. Figure 14 and attached Figure 39As shown, part of the bulb assembly 3 is located inside the lamp holder 21. The outer peripheral wall of the bulb assembly 3 has multiple protrusions 323 spaced apart along the circumferential direction of the bulb assembly 3. The peripheral wall of the lamp holder 21 has multiple slots 215 spaced apart along the circumferential direction of the lamp holder 21. Each slot 215 corresponds one-to-one with a protrusion 323, enabling the bulb assembly 3 and the lamp holder assembly 2 to be installed and fixed from multiple points, improving the reliability of the fit between the bulb assembly 3 and the lamp holder assembly 2. Furthermore, each slot 215 includes a first opening 2151 and a second opening 2152. One end of the first opening 2151 is open, and the second opening 2152 is located on the circumferential side of the first opening 2151 and extends along the circumferential direction of the lamp holder assembly 2. Each protrusion 323 is adapted to enter the second opening 2152 from the first opening 2151. This structure is simple, facilitating the processing and disassembly of the lamp holder assembly 2 and the bulb assembly 3, reducing maintenance difficulty and improving maintenance efficiency.

[0113] For example, protrusions 323 can be two, three, four, five, or six spaced apart along the circumferential direction of the bulb assembly 3, and slots 215 can be two, three, four, five, or six corresponding to protrusions 323 spaced apart along the circumferential direction of the lamp holder 21. In a specific example, refer to the appendix... Figure 27 and attached Figure 38 As shown, the outer peripheral wall of the bulb assembly 3 has two protrusions 323 spaced apart along the circumferential direction of the bulb assembly 3, and the peripheral wall of the lamp holder 21 has two slots 215 spaced apart along the circumferential direction of the lamp holder 21. The bulb assembly 3 and the lamp holder assembly 2 can be installed and fixed from two places, thereby improving the reliability of the fit between the bulb assembly 3 and the lamp holder assembly 2.

[0114] In some embodiments of the present invention, reference is made to the appendix. Figure 10 As shown, the lamp holder assembly 2 includes a lamp holder 21, a protective cover 22, and a lamp holder terminal block 23. Specifically, refer to the attached diagram. Figure 7 As shown, the lamp holder 21 is used to connect the bulb assembly 3. Its simple structure facilitates the installation and fixation of the bulb assembly 3. Further, refer to the attached diagram. Figure 8 As shown, the protective cover 22 is fitted over and connected to the lamp holder 21 to define the mounting cavity. The lamp holder terminal 23 is located on the lamp holder 21 and is at least partially located within the mounting cavity. The protective cover 22 serves to provide waterproofing, dustproofing, and protection against electric shock, ensuring the normal operation of the lamp holder assembly 2 and the bulb assembly 3, and also ensuring the safety of maintenance personnel during maintenance. It is understood that the lamp holder terminal 23 can be partially or completely located within the mounting cavity, depending on the specific configuration to meet different usage requirements. Furthermore, in conjunction with... Figure 15 and Figure 16 As shown, the protective cover 22 has a through hole 221 for the lamp holder input line 11 to pass through, which can transmit electrical signals to the lamp holder assembly 2.

[0115] It should be noted that, compared with the pulse lamp sterilization module in the prior art, the present invention uses a separate lamp holder assembly 2 to support and install the bulb assembly 3, which has a simple structure, is easy to process, and has high reliability, and can reduce the assembly difficulty of the bulb assembly 3.

[0116] In some embodiments of the present invention, reference is made to the appendix. Figure 11 As shown, the lamp holder 21 includes an insulating shell 211 and a conductive plate 212. The insulating shell 211 prevents electric shock and ensures the safety of maintenance personnel during maintenance. The protective cover 22 is connected to the insulating shell 211. The positive terminal 231 and the negative terminal 232 of the lamp holder are disposed on the insulating shell 211. Further, refer to the attached diagram. Figure 13 and attached Figure 14 As shown, the conductive plate 212 is disposed inside and connected to the insulating shell 211. The lamp holder signal terminal 233 is connected to the conductive plate 212, and the electrical signal can be transmitted to the conductive plate 212 through the lamp holder signal terminal 233. The bulb assembly 3 is connected to the conductive plate 212, and the electrical signal can be transmitted to the bulb assembly 3 through the cooperation of the bulb assembly 3 and the conductive plate 212, thereby controlling the operation of the bulb assembly 3.

[0117] In some embodiments of the present invention, the conductive plate 212 can be snapped onto the insulating shell 211 or connected by fasteners, which facilitates the production and processing of the lamp holder 21; the conductive plate 212 and the insulating shell 211 can also be an integral injection molded part, which can simplify the assembly process and reduce the assembly time.

[0118] In some embodiments of the present invention, reference is made to the appendix. Figure 13 and attached Figure 14 As shown, the conductive plate 212 includes an annular portion 214 and a connecting portion 213. One end of the connecting portion 213 is connected to one axial end of the annular portion 214, and the other end of the connecting portion 213 extends radially inward toward the annular portion 214. The lamp holder signal terminal 233 is connected to the connecting portion 213, and an electrical signal can be transmitted from the lamp holder signal terminal 233 to the annular portion 214 through the connecting portion 213. A portion of the bulb assembly 3 is located inside the annular portion 214 and connected to the annular portion 214, thereby enabling the transmission of an electrical signal to the bulb assembly 3 to control the working time of the bulb assembly 3 and the emission frequency of the pulse light.

[0119] In some embodiments of the present invention, reference is made to the appendix. Figure 13 and attached Figure 25 As shown, in conjunction with the reference appendix Figure 12The insulating outer shell 211 has two mounting grooves 2112 on the side facing the protective cover 22. Each mounting groove 2112 has a through hole 2113 on its bottom wall. The positive terminal 231 and the negative terminal 232 of the lamp holder are respectively located in the two mounting grooves 2112 and are partially adapted to extend from the through hole 2113 to connect with the positive terminal 311 and the negative terminal 312 of the bulb, respectively. The through hole 2113 allows the positive terminal 231 and the negative terminal 232 of the lamp holder to pass through, so that the end of the positive terminal 231 and the negative terminal 232 of the lamp holder near the protective cover 22 is connected to the first wire 111 and the second wire 112, and the end of the positive terminal 231 and the negative terminal 232 of the lamp holder near the bulb assembly 3 is connected to the positive terminal 311 and the negative terminal 312 of the bulb.

[0120] In some embodiments of the present invention, reference is made to the appendix. Figure 11 As shown, the insulating housing 211 has a mounting protrusion 2111 on the side facing the protective cover 22. A mounting groove 2112 is provided on the mounting protrusion 2111, providing space to separately place and protect the positive terminal 231 and negative terminal 232 of the lamp holder, and separating the positive terminal 231 and negative terminal 232 from the conductive plate 212 to prevent short circuits. Further, refer to the attached... Figure 24 As shown, terminal bosses 234 are provided on the outer peripheral walls of the lamp holder positive terminal 231 and the lamp holder negative terminal 232. The terminal bosses 234 are located in the mounting groove 2112 and are used to restrict the lamp holder positive terminal 231 and the lamp holder negative terminal 232 from moving away from the protective cover 22.

[0121] Furthermore, see the attached document. Figure 10 As shown, the lamp holder assembly 2 also includes a pressure plate 24 and an elastic element 25. (See attached diagram) Figure 18 and attached Figure 19 As shown, the pressure plate 24 is located inside the mounting cavity and covers the mounting protrusion 2111. The pressure plate 24 has two clearance holes 241 for the positive terminal 231 and the negative terminal 232 of the lamp holder to pass through, respectively. The positive terminal 231 and the negative terminal 232 of the lamp holder located in the mounting groove 2112 can pass through the pressure plate 24 to connect with the first wire 111 and the second wire 112, and can play a certain limiting role for the positive terminal 231 and the negative terminal 232 of the lamp holder.

[0122] Furthermore, see the attached document. Figure 25 As shown, there are two elastic elements 25, which are respectively disposed in two mounting slots 2112. The elastic elements 25 are located between the terminal boss 234 and the pressure plate 24, and are used to drive the positive terminal 231 and the negative terminal 232 of the lamp holder to move away from the pressure plate 24.

[0123] Understandably, after the lamp holder assembly 2 is assembled, when the bulb assembly 3 is not connected to the lamp holder assembly 2, refer to the attached... Figure 24 As shown, the elastic element 25 is in its natural or slightly compressed state. The elastic element 25 drives the terminal boss 234 to move away from the pressure plate 24, so that the terminal boss 234 fits against the inner bottom wall of the mounting groove 2112. When a bulb assembly 3 is connected to the lamp holder assembly 2, refer to the attached diagram. Figure 25 As shown, the positive terminal 231 and negative terminal 232 of the lamp holder are subjected to a force from the positive terminal 311 and negative terminal 312 of the bulb, moving towards the pressure plate 24. The terminal boss 234 moves along with the positive terminal 231 and negative terminal 232 of the lamp holder towards the pressure plate 24, acting on the elastic element 25. At this time, the elastic element 25 is in a compressed state, and the elastic force reacts on the positive terminal 231 and negative terminal 232 of the lamp holder, driving the positive terminal 231 and negative terminal 232 of the lamp holder to move away from the pressure plate 24, ensuring close contact between the positive terminal 231 and negative terminal 232 of the lamp holder and the positive terminal 311 and negative terminal 312 of the bulb, and ensuring normal transmission of electrical signals. It should be noted that the compression of the elastic element 25 in the compressed state is greater than the compression of the elastic element 25 in the slightly compressed state.

[0124] In some embodiments of the present invention, reference is made to the appendix. Figure 24 and attached Figure 25 As shown, the pressure plate 24 and the mounting protrusion 2111 are connected by the first fastener 242, which improves the reliability of the connection between the pressure plate 24 and the mounting protrusion 2111 and facilitates the assembly and disassembly of the pressure plate 24 and the mounting protrusion 2111, thereby improving the assembly and maintenance efficiency of the lamp holder assembly 2. Furthermore, the first fastener 242 is located between the two mounting slots 2112, which ensures the stability of the connection between the pressure plate 24 and the mounting protrusion 2111. Specifically, refer to the attached diagram. Figure 13 Appendix Figure 14 As shown, in conjunction with the reference appendix Figure 18-20 The mounting protrusion 2111 has a first mounting hole 2114, and the pressure plate 24 has a second mounting hole 243. The first fastener 242 can be a self-tapping screw, which passes through the second mounting hole 243 and is directly screwed into the first mounting hole 2114 to achieve the same height direction between the pressure plate 24 and the mounting protrusion 2111 in the lamp holder assembly 2 (see attached figure). Figure 24 The first fastener 242 can also be a regular screw. The first mounting hole 2114 has threads. The relative fixation of the pressure plate 24 and the mounting protrusion 2111 in the height direction of the lamp holder assembly 2 is achieved by the cooperation of the screw and the threaded hole.

[0125] In some embodiments of the present invention, reference is made to the appendix. Figure 8 and attached Figure 10As shown, the protective cover 22 and the lamp holder 21 are connected by the second fastener 222, which can improve the reliability of the connection between the protective cover 22 and the lamp holder 21, give full play to the waterproof, dustproof and electric shock prevention functions of the protective cover 22, and facilitate the disassembly and assembly of the protective cover 22 and the lamp holder 21, thereby improving the assembly efficiency and maintenance efficiency of the lamp holder assembly 2.

[0126] In some embodiments of the present invention, reference is made to the appendix. Figure 11 Appendix Figure 15 and attached Figure 17 As shown, the lamp holder 21 has multiple spaced mounting posts 216 on the side facing the protective cover 22. The outer wall of the protective cover 22 has multiple recesses 223, each corresponding to a mounting post 216. Each recess 223 has a connecting hole 224 on its bottom wall. The second fastener 222 passes through the connecting hole 224 and connects to the mounting post 216. The second fastener 222 is located inside the recess 223, which can hide the second fastener 222 to a certain extent, preventing it from protruding from the protective cover 22 and playing a positioning role, thus improving the assembly efficiency of the lamp holder assembly 2. Furthermore, the connecting hole 224 on the bottom wall of the recess 223 facilitates the passage of the second fastener 222, connecting and fixing the protective cover 22 to the lamp holder 21.

[0127] Optionally, the mounting post 216 is provided with a third mounting hole 2161, and the second fastener 222 can be a self-tapping screw, which passes through the connecting hole 224 and is directly screwed into the third mounting hole 2161 to connect the lamp holder 21 and the protective cover 22; the second fastener 222 can also be an ordinary screw, and the third mounting hole 2161 has threads, and the connection between the lamp holder 21 and the protective cover 22 is achieved by the cooperation of the screw and the threaded hole.

[0128] For example, the mounting posts 216 can be two, three, four, five, or six spaced apart, and the recesses 223 can be two, three, four, five, or six corresponding to the mounting posts 216. In a specific example, refer to the appendix... Figure 11 and attached Figure 17 As shown, the lamp holder 21 has two spaced mounting posts 216 on the side facing the protective cover 22, and the outer wall of the protective cover 22 has two recesses 223 that correspond one-to-one with the mounting posts 216. The lamp holder 21 and the protective cover 22 can be installed and fixed from two places, improving the reliability of the fit between the lamp holder 21 and the protective cover 22.

[0129] In some embodiments of the present invention, reference is made to the appendix. Figure 10 As shown, the lamp holder assembly 2 also includes a waterproof rubber ring 26, which is fitted inside the through hole 221 to improve the waterproof and dustproof capabilities of the lamp holder assembly 2. Further, refer to the attached... Figure 21 and attached Figure 22As shown, the waterproof rubber ring 26 is provided with a wire hole 261 for the lamp holder input wire 11 to pass through, and the waterproof rubber ring 26 has a certain elasticity. The wire hole 261 and the lamp holder input wire 11 are appropriately interference-fitted, which can not only ensure the normal insertion of the lamp holder input wire 11, but also ensure the tight fit between the waterproof rubber ring 26 and the lamp holder input wire 11, preventing water from entering the interior of the lamp holder assembly 2, and ensuring the normal operation of the interior of the lamp holder assembly 2 and the bulb assembly 3.

[0130] In some embodiments of the present invention, reference is made to the appendix. Figure 21 and attached Figure 23 As shown, the waterproof rubber ring 26 has an annular groove 262 extending along the circumferential direction of the waterproof rubber ring 26 on its peripheral wall. The portion of the protective cover 22 adjacent to the through hole 221 is engaged in the annular groove 262, which can achieve a tight fit between the protective cover 22 and the waterproof rubber ring 26, further preventing water from entering the interior of the lamp holder assembly 2 and ensuring the normal operation of the interior of the lamp holder assembly 2 and the bulb assembly 3.

[0131] The present invention also proposes an air conditioner 1000 having the pulse lamp sterilization module 100 of the above embodiments.

[0132] like Figure 1 and Figure 2 As shown, the air conditioner 1000 according to an embodiment of the present invention includes a housing 200, a heat exchange component 300, an air duct component 400, and the pulse lamp sterilization module 100 described above.

[0133] Specifically, see the attached document. Figure 2 As shown, the housing 200 protects the internal structure of the air conditioner 1000, preventing damage caused by exposure of the internal structure and extending the service life of the air conditioner 1000, while also providing a better aesthetic appearance. Furthermore, the heat exchange component 300 is housed within the housing 200. Airflow within the housing 200 can exchange heat with the heat exchange component 300, and the heat-exchanged airflow can be blown into the room, thereby regulating the indoor temperature and meeting user needs. For example, the heat exchange component 300 can be an evaporator.

[0134] Furthermore, see the attached document. Figure 3 As shown, the air duct component 400 is disposed within the housing 200. The air duct component 400 can drive airflow from outside the air conditioner 1000 into the housing 200. The air duct component 400 includes a fan, which is arranged opposite to the heat exchange component 300 to facilitate heat exchange of the airflow inside the air conditioner 1000. Of course, the air duct component 400 can also include two fans, enabling a dual-flow air conditioner 1000, which is beneficial for increasing the air volume delivered by the air conditioner 1000 and improving its ability to regulate indoor ambient temperature, thereby reducing energy consumption, improving energy efficiency, and enhancing the user experience.

[0135] Furthermore, see the attached document. Figure 4 As shown, the pulse lamp sterilization module 100 is disposed on the heat exchange component 300, and at least part of the bulb assembly 3 is located between the air duct component 400 and the heat exchange component 300. The pulse lamp sterilization module 100 can kill and sterilize the airflow and various microorganisms attached to the surface of the air duct component 400 and the heat exchange component 300 within the area enclosed by the air duct component 400 and the heat exchange component 300.

[0136] Optionally, the air conditioner 1000 may also include at least one of a purification component and a humidification component. In other words, the air conditioner 1000 may include either a purification component or a humidification component. Alternatively, the air conditioner 1000 may include both a purification component and a humidification component. Different components can be selected according to the actual needs of different air conditioners 1000 to meet different usage requirements.

[0137] Furthermore, the humidifying component can humidify the airflow entering the air conditioner 1000, allowing the humidified airflow to be blown into the room, increasing the indoor water vapor content and achieving a humidifying effect; the purifying component can purify the airflow entering the air conditioner 1000, allowing the purified airflow to be blown into the room, improving air quality and meeting different user needs.

[0138] According to an embodiment of the present invention, the air conditioner 1000, by providing the aforementioned pulse lamp sterilization module 100, decomposes the pulse lamp sterilization module 100 into a pulse control box 1, a lamp holder assembly 2, and a bulb assembly 3, and separates the pulse control box 1 from the lamp holder assembly 2 and electrically connects them through a lamp holder input line 11. The lamp holder assembly 2 and the bulb assembly 3 are detachably connected, and when the lamp holder assembly 2 and the bulb assembly 3 are connected, the lamp holder assembly 2 and the bulb assembly 3 are electrically connected. This enables the separation of the pulse control box 1 from the lamp holder assembly 2 and the lamp holder assembly 2 from the bulb assembly 3. If any of the pulse control box 1, the lamp holder assembly 2, and the bulb assembly 3 is damaged, the corresponding damaged part can be replaced individually. This reduces the maintenance cost and repair cost of the pulse lamp sterilization module 100, reduces the difficulty of maintenance, shortens the maintenance time, and ensures the safety performance of the pulse lamp sterilization module 100.

[0139] In some embodiments of the present invention, reference is made to the appendix. Figure 4 and attached Figure 5 As shown, the heat exchange component 300 includes a heat exchanger body 301 and a heat exchanger bracket 302. The heat exchanger bracket 302 is located outside the heat exchanger body 301 and connected to it, allowing the heat exchanger body 301 to be fixed inside the air conditioner 1000. Further, refer to the attached diagram. Figure 42 As shown, the pulse control box 1 is located along the length of the heat exchanger bracket 302 (see attached diagram). Figure 42On the side away from the heat exchanger body 301 in direction a) shown, the heat exchanger bracket 302 has a through hole 303, and the lamp holder assembly 2 passes through the through hole 303 to fix the lamp holder assembly 2. Further, refer to the attached... Figure 6 As shown, the bulb assembly 3 is located on the side of the heat exchanger bracket 302 facing the heat exchanger body 301, so that the pulse light emitted by the bulb assembly 3 can directly hit the area enclosed by the heat exchange component 300 and the air duct component 400, thereby improving the sterilization effect of the pulse lamp sterilization module 100.

[0140] In a further embodiment of the invention, reference is made to the appendix. Figure 8 and attached Figure 43 As shown, the outer peripheral wall of the lamp holder assembly 2 has a baffle 27 extending in the circumferential direction of the lamp holder assembly 2. The baffle 27 is located on the side of the heat exchanger bracket 302 away from the heat exchanger body 301. The baffle 27 is used to block the pulse light leaking from the penetration hole 303 after the lamp holder assembly 2 is installed, so as to avoid the user feeling unsafe and affecting the user experience.

[0141] In a further embodiment of the invention, reference is made to the appendix. Figure 41 and attached Figure 43 As shown, the side of the heat exchanger bracket 302 away from the heat exchanger body 301 has an annular rib 304 surrounding the insertion hole 303. The baffle 27 abuts against the annular rib 304, which can play a supporting and positioning role, so as to realize the installation and fixation of the lamp holder assembly 2.

[0142] In a further embodiment of the invention, reference is made to the appendix. Figure 1 and Figure 2 As shown, the housing 200 includes a chassis 201, a back panel assembly 202, a front panel assembly 203, and a top panel 204. The back panel assembly 202 and the front panel assembly 203 are connected and each has one end connected to the chassis 201. The top panel 204 is connected to the end of the back panel assembly 202 and the front panel assembly 203 that is away from the chassis 201, thus forming an integral structure that protects the internal structure of the air conditioner 1000 and prevents the user from being injured by contact with the interior.

[0143] Further, see Appendix Figure 3 As shown, the back panel assembly 202 is provided with an air inlet, which is located along the length of the back panel assembly 202 (see attached diagram). Figure 3Extending in the direction shown (a), airflow from outside the air conditioner 1000 can enter the air conditioner 1000 through the air inlet. An air inlet grille 205 is provided at the air inlet. The air inlet grille 205 prevents hands or other foreign objects from entering the air conditioner 1000, protecting user safety and ensuring the normal operation of the air conditioner 1000. On the other hand, the air inlet grille 205 prevents insects and rodents from entering the housing 200 of the air conditioner 1000 and damaging it, ensuring the normal operation of the air conditioner 1000 and maintaining its aesthetic appearance. Optionally, the air inlet grille 205 is detachably connected to the back panel assembly 202. The air inlet grille 205 ensures the aesthetic appearance of the housing 200, and after removal, it facilitates the maintenance and replacement of components inside the air conditioner 1000. It also facilitates cleaning of the air inlet grille 205, preventing dust accumulation due to prolonged use.

[0144] Furthermore, see the attached document. Figure 4 As shown, the heat exchanger bracket 302 is located on the side of the heat exchanger body 301 near the back plate assembly 202 and is used to mount the heat exchanger body 301.

[0145] It should be noted that during the installation of the air conditioner 1000, the pulse lamp sterilization module 100 can be installed together with the heat exchange component 300 and installed on the air conditioner 1000 along with the heat exchange component 300, or it can be installed separately on the air conditioner 1000. It has good assemblability. Especially in the process of after-sales maintenance and repair, there is no need to disassemble a large number of internal parts and components of the air conditioner 1000. Only the top plate 204 needs to be removed from the top of the air conditioner 1000 to see the pulse lamp sterilization module 100 and repair or replace it. The maintenance is convenient and simple, which greatly improves the efficiency of after-sales maintenance.

[0146] In some embodiments of the present invention, reference is made to the appendix. Figure 11 and attached Figure 43 As shown, the lamp holder 21 has a first mounting lug 217 on its outer peripheral wall, and the heat exchange component 300 is provided with a lamp holder assembly mounting post 305. The first mounting lug 217 is connected to the lamp holder assembly mounting post 305 of the heat exchange component 300 by a third fastener 2171, which can fix the lamp holder assembly 2 on the heat exchange component 300 and ensure that the lamp holder assembly 2 is easy to install and remove.

[0147] In some embodiments of the present invention, reference is made to the appendix. Figure 26 Appendix Figure 41 and attached Figure 42As shown, the pulse control box 1 has a second mounting lug 12 on its outer peripheral wall, and the heat exchange component 300 is provided with a pulse control box mounting post 306. The second mounting lug 12 is connected to the pulse control box mounting post 306 of the heat exchange component 300 by fasteners, which can fix the pulse control box 1 on the heat exchange component 300 and ensure that the pulse control box 1 is easy to install and remove.

[0148] Further, see Appendix Figure 41 As shown, the heat exchange component 300 is also provided with a limiting baffle 307. The limiting baffle 307 matches the outer peripheral wall of the pulse control box 1, which can limit the pulse control box 1 and reduce the assembly difficulty of the pulse control box 1. Optionally, the limiting baffle 307 is provided with a support rib 308 inside. By adjusting the support rib 308, the mounting surface of the pulse control box 1 can be aligned with the length direction of the heat exchange component 300 (see attached figure). Figure 41 The direction shown (a) is perpendicular to ensure the stability of the pulse control box 1.

[0149] In some embodiments of the present invention, reference is made to the appendix. Figure 2 As shown, the air conditioner 1000 also includes a main control box 500, which is located inside the housing 200 and connected to an external power source for the air conditioner 1000, providing power to the various components inside the air conditioner 1000. Furthermore, the pulse control box 1 is connected to the main control box 500 via a control box input line 13, which can transmit electrical signals to the pulse control box 1.

[0150] Furthermore, at least one of the heat exchange component 300 and the air duct component 400 is provided with a wire clip 401 for securing the electrical control box input wire 13. This clip restricts the routing of the electrical control box input wire 13 and, to some extent, secures it, thus organizing the wiring harness inside the air conditioner 1000 and facilitating maintenance. In a specific example, refer to the attached... Figure 41 As shown, two spaced-apart wire clips 401 are provided along the length of the heat exchange component 300, and the air duct component 400 is along the length of the air conditioner 1000 (see attached diagram). Figure 41 A wire clip 401 is provided at one end of the pulse lamp sterilization module 100 (as shown in direction a), which can restrict the direction of the electrical control box input line 13 from three places, fix the electrical control box input line 13, organize the wiring harness inside the air conditioner 1000, and facilitate the maintenance of the air conditioner 1000.

[0151] The following is for reference. Figures 1 to 43 The following description describes an air conditioner 1000 according to a specific embodiment of the present invention. It is to be understood that the following description is merely exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.

[0152] Specifically, such as Figures 1 to 43As shown, the air conditioner 1000 includes: a housing 200, a heat exchange component 300, an air duct component 400, a pulse lamp sterilization module 100, and a main electrical control box 500.

[0153] Furthermore, the housing 200 protects the internal structure of the air conditioner 1000, preventing damage caused by exposure of the internal structure, thus extending the service life of the air conditioner 1000 and providing a better appearance. The housing 200 includes: a chassis 201, a back panel assembly 202, a front panel assembly 203, and a top panel 204. The back panel assembly 202 and the front panel assembly 203 are connected, with one end of each connected to the chassis 201. The top panel 204 is connected to the end of the back panel assembly 202 and the front panel assembly 203 that faces away from the chassis 201, thereby forming an integral structure that protects the internal structure of the air conditioner 1000 and prevents users from being injured by contact with the interior.

[0154] Furthermore, the heat exchange component 300 is disposed within the housing 200. The airflow within the housing 200 can exchange heat with the heat exchange component 300, and the heat-exchanged airflow can be blown into the room, thereby achieving the effect of regulating the indoor temperature and meeting the user's needs. The heat exchange component 300 includes: a heat exchanger body 301 and a heat exchanger bracket 302. The heat exchanger bracket 302 is disposed on the side of the heat exchanger body 301 near the back panel assembly 202 and connected to the heat exchanger body 301 for mounting the heat exchanger body 301. Furthermore, the air duct component 400 is disposed within the housing 200. The air duct component 400 can drive the airflow outside the air conditioner 1000 into the housing 200. The air duct component 400 includes a fan, which is arranged opposite to the heat exchange component 300 to facilitate heat exchange of the airflow inside the air conditioner 1000.

[0155] Furthermore, the pulse lamp sterilization module 100 is mounted on the heat exchange component 300. The pulse lamp sterilization module 100 includes a pulse control box 1, a lamp holder assembly 2, and a bulb assembly 3. Specifically, the pulse control box 1 is located on the side of the heat exchanger bracket 302 away from the heat exchanger body 301 along its length. It can output signals and energy to control the working time of the lamp holder assembly 2 and the bulb assembly 3, as well as the emission frequency of the pulse light, to meet different usage requirements. Furthermore, the outer peripheral wall of the pulse control box 1 has a second mounting lug 12, and the heat exchange component 300 is provided with a pulse control box mounting post 306. By fastening fasteners, the second mounting lug 12 is connected to the pulse control box mounting post 306 of the heat exchange component 300, which can fix the pulse control box 1 on the heat exchange component 300 and ensure that the pulse control box 1 is easy to install and remove.

[0156] Furthermore, the lamp holder assembly 2 is used to install and connect the bulb assembly 3, and to transmit electrical energy and signals to the bulb assembly 3. The lamp holder assembly 2 is spaced apart from the pulse control box 1 and electrically connected via the lamp holder input line 11, which can transmit electrical energy and signals to the lamp holder assembly 2. The lamp holder assembly 2 includes: a lamp holder 21, a protective cover 22, a lamp holder terminal block 23, an insulating shell 211, a pressure plate 24, an elastic element 25, and a waterproof rubber ring 26.

[0157] Specifically, the lamp holder 21 is used to connect the bulb assembly 3. Its simple structure facilitates the installation and fixation of the bulb assembly 3. The protective cover 22 covers the lamp holder 21 and connects to it to define the mounting cavity. The protective cover 22 serves to prevent water, dust, and electric shock, ensuring the normal operation of the lamp holder assembly 2 and the bulb assembly 3, and also ensuring the safety of maintenance personnel during repairs. Furthermore, the protective cover 22 has a through hole 221 for the lamp holder input wire 11 to pass through, allowing electrical signals to be transmitted to the lamp holder assembly 2.

[0158] Furthermore, the lamp holder terminal 23 is disposed on the lamp holder 21 and at least partially located within the mounting cavity. The lamp holder terminal 23 is connected to the lamp holder input line 11 and is adapted to connect to the lamp holder terminal 31 on the lamp assembly 3. The lamp holder input line 11 includes a first wire 111, a second wire 112, and a third wire 113. The lamp holder terminal 23 includes a lamp holder positive terminal 231, a lamp holder negative terminal 232, and a lamp holder signal terminal 233. The lamp holder terminal 31 includes a lamp holder positive terminal 311, a lamp holder negative terminal 312, and a lamp holder signal line 31. 3. The first wire 111 is connected to the positive terminal 231 of the lamp holder, the second wire 112 is connected to the negative terminal 232 of the lamp holder, and the third wire 113 is connected to the signal terminal 233 of the lamp holder. The positive terminal 311 of the bulb is electrically connected to the positive terminal 231 of the lamp holder, the negative terminal 312 of the bulb is electrically connected to the negative terminal 232 of the lamp holder, and the bulb signal wire 313 is electrically connected to the signal terminal 233 of the lamp holder, thus forming a closed loop. The working time of the bulb assembly 3 and the emission frequency of the pulse light can be controlled by the pulse control box 1 to meet different usage requirements.

[0159] In addition, the lamp holder 21 includes an insulating shell 211 and a conductive plate 212. The insulating shell 211 prevents electric shock and ensures the safety of maintenance personnel during maintenance. The protective cover 22 is connected to the insulating shell 211 by a second fastener 222. The positive terminal 231 and the negative terminal 232 of the lamp holder are located on the insulating shell 211. The conductive plate 212 is located inside the insulating shell 211 and is an integral injection molded part with the insulating shell 211. The lamp holder signal terminal 233 is connected to the conductive plate 212, and electrical signals can be transmitted to the conductive plate 212 through the lamp holder signal terminal 233. The bulb assembly 3 is connected to the conductive plate 212, and electrical signals can be transmitted to the bulb assembly 3 through the cooperation of the bulb assembly 3 and the conductive plate 212 to control the operation of the bulb assembly 3.

[0160] Furthermore, the conductive plate 212 includes an annular portion 214 and a connecting portion 213. One end of the connecting portion 213 is connected to one axial end of the annular portion 214, and the other end of the connecting portion 213 extends radially inward toward the annular portion 214. The lamp holder signal terminal 233 is connected to the connecting portion 213. A portion of the bulb assembly 3 is located inside the annular portion 214 and connected to the annular portion 214, thereby enabling the transmission of electrical signals to the bulb assembly 3 to control the working time of the bulb assembly 3 and the emission frequency of the pulse light. The annular portion 214 is provided with two slots 215 spaced apart along the circumferential direction of the annular portion 214. Each slot 215 includes a first opening 2151 and a second opening 2152. The end of the first opening 2151 away from the connecting portion 213 is open. The second opening 2152 is located on the circumferential side of the first opening 2151 along the annular portion 214 and extends along the circumferential direction of the annular portion 214. The outer peripheral wall of the bulb assembly 3 is provided with two protrusions 323 spaced apart along the circumferential direction of the bulb assembly 3. The two protrusions 323 correspond one-to-one with the two slots 215. Each protrusion 323 is adapted to enter the second opening 2152 from the first opening 2151 to realize the snap-fit ​​connection between the bulb assembly 3 and the lamp holder assembly 2.

[0161] Furthermore, the insulating housing 211 has two mounting protrusions 2111 on the side facing the protective cover 22. The mounting protrusions 2111 have mounting grooves 2112. Each mounting groove 2112 has a through hole 2113 on its bottom wall. The lamp holder positive terminal 231 and the lamp holder negative terminal 232 are respectively located in the two mounting grooves 2112 and are partially adapted to extend out of the through hole 2113 to connect with the bulb positive terminal 311 and the bulb negative terminal 312 respectively. The outer peripheral walls of the lamp holder positive terminal 231 and the lamp holder negative terminal 232 are each provided with a terminal boss 234. The terminal boss 234 is located in the mounting groove 2112 and is used to restrict the lamp holder positive terminal 231 and the lamp holder negative terminal 232 from moving away from the protective cover 22.

[0162] Furthermore, the lamp holder 21 has two spaced-apart mounting posts 216 on the side facing the protective cover 22, and the outer wall of the protective cover 22 has two recesses 223, which correspond one-to-one with the two mounting posts 216. Each recess 223 has a connecting hole 224 on its bottom wall, and the second fastener 222 passes through the connecting hole 224 and connects to the mounting post 216. The second fastener 222 is located inside the recess 223.

[0163] Furthermore, the pressure plate 24 is located within the mounting cavity and covers the mounting protrusion 2111. The pressure plate 24 has two clearance holes 241 for the positive terminal 231 and the negative terminal 232 of the lamp holder to pass through, respectively. An elastic element 25 is provided between each terminal protrusion 234 and the pressure plate 24 to drive the positive terminal 231 and the negative terminal 232 of the lamp holder to move away from the pressure plate 24. The pressure plate 24 and the mounting protrusion 2111 are connected by a first fastener 242, which is located between two mounting grooves 2112.

[0164] Furthermore, the waterproof rubber ring 26 is fitted into the through hole 221. The waterproof rubber ring 26 has a wire hole 261 for the lamp holder input wire 11 to pass through. The peripheral wall of the waterproof rubber ring 26 has an annular groove 262 extending in the circumferential direction of the waterproof rubber ring 26. The portion of the protective cover 22 adjacent to the through hole 221 is fitted into the annular groove 262, so as to achieve a tight fit between the protective cover 22 and the waterproof rubber ring 26.

[0165] In addition, the heat exchanger bracket 302 has an insertion hole 303, and the lamp holder assembly 2 passes through the insertion hole 303. The outer peripheral wall of the lamp holder assembly 2 has a baffle 27 extending in the circumferential direction of the lamp holder assembly 2. The baffle 27 is located on the side of the heat exchanger bracket 302 away from the heat exchanger body 301. The baffle 27 is used to block the pulse light leaking from the insertion hole 303 after the lamp holder assembly 2 is installed, so as to avoid the user feeling unsafe and affecting the user experience. Furthermore, the side of the heat exchanger bracket 302 away from the heat exchanger body 301 has an annular protrusion 304 surrounding the insertion hole 303. The baffle 27 and the annular protrusion 304 abut against each other, which can play a supporting and positioning role, so as to realize the installation and fixation of the lamp holder assembly 2. Furthermore, the lamp holder 21 has a first mounting lug 217 on its outer peripheral wall, and the heat exchange component 300 is provided with a lamp holder assembly mounting post 305. The first mounting lug 217 is connected to the lamp holder assembly mounting post 305 of the heat exchange component 300 by a third fastener 2171, which can fix the lamp holder assembly 2 on the heat exchange component 300 and ensure that the lamp holder assembly 2 is easy to install and remove.

[0166] Furthermore, the bulb assembly 3 is located on the side of the heat exchanger bracket 302 facing the heat exchanger body 301 and is at least partially located between the air duct component 400 and the heat exchange component 300. The pulse lamp sterilization module 100 can sterilize and kill various microorganisms adhering to the airflow and surfaces of components such as the air duct component 400 and the heat exchange component 300 within the area enclosed by the air duct component 400 and the heat exchange component 300. The bulb assembly 3 is connected to the lamp holder assembly 2. The connection and disconnection of the circuit can be achieved by the engagement and disengagement of the bulb assembly 3 and the lamp holder assembly 2. Disassembly and assembly are convenient, and if either the lamp holder assembly 2 or the bulb assembly 3 is damaged, the corresponding damaged component can be replaced individually.

[0167] Furthermore, the lamp holder assembly 2 includes a bulb terminal block 31, a connector 32, a lamp tube 33, a light-emitting tube 34, a signal line trigger coil 35, an insulating sleeve 37, a rubber plug 38, and a sealing compound 39.

[0168] Specifically, the connector 32 is a conductive component, and it is connected to the lamp holder signal terminal 233 and the bulb signal line 313. The connector 32 has a connecting cavity 321, and the bulb terminal 31 is located inside the connecting cavity 321. The connecting cavity 321 has an opening 322 on one axial end facing the lamp tube 33. The lamp tube 33 passes through the opening 322 and has a tube cavity 331 that communicates with the connecting cavity 321. The outer peripheral wall of the end of the lamp tube 33 near the connector 32 is provided with a ring extending in the circumferential direction of the lamp tube 33. The annular protrusion 332 is located inside the connecting cavity 321 and abuts against the axial wall of the connecting cavity 321 on the side near the lamp tube 33. The outer peripheral wall of the annular protrusion 332 is spaced apart from the inner peripheral wall of the connecting cavity 321. An annular weld paste 36 extending along the circumferential direction of the annular protrusion 332 is provided between the outer peripheral wall of the annular protrusion 332 and the inner peripheral wall of the connecting cavity 321. The annular weld paste 36 is used to connect the annular protrusion 332 and the inner peripheral wall of the connecting cavity 321, which can improve the reliability and stability of the fit between the annular protrusion 332 and the connecting seat 32.

[0169] Furthermore, the axial end of the connecting cavity 321 away from the lamp tube 33 is open. Part of the rubber plug 38 is located in the connecting cavity 321, and the other part is located in the tube cavity 331. The rubber plug 38 has a first insertion groove 381 and a second insertion groove 382 for inserting the positive terminal 311 and the negative terminal 312 of the lamp, respectively, which can be used to install and clamp the positive terminal 311 and the negative terminal 312 of the lamp. The rubber plug 38 also has a first wire hole 383, a second wire hole 384 and a third wire hole 385, which are used for the positive wire 341, the negative wire 342 and the lamp signal wire 313 to pass through, respectively, so that the positive wire 341, the negative wire 342 and the lamp signal wire 313 can extend into the tube cavity 331.

[0170] Furthermore, the light-emitting tube 34 is disposed inside the cavity 331 and extends along the length of the cavity 331. The end of the light-emitting tube 34 near the connector 32 is connected to the positive terminal 311 of the bulb through the positive electrode wire 341, and the end of the light-emitting tube 34 away from the connector 32 is connected to the negative terminal 312 of the bulb through the negative electrode wire 342. The signal line trigger coil 35 is disposed inside the cavity 331 and surrounds the light-emitting tube 34, and can transmit signals to control the emission frequency of the pulse light of the light-emitting tube 34.

[0171] Furthermore, the insulating sleeve 37 is fitted onto the negative electrode wire 342 to separate the negative electrode wire 342 from the bulb signal line 313, preventing the negative electrode wire 342 from contacting the bulb signal line 313 and causing a short circuit.

[0172] In addition, the sealing colloid 39 fills the connecting cavity 321. The sealing colloid 39 includes a first sealing colloid 391 located on the side of the plug 38 away from the lamp tube 33 and a second sealing colloid 392 located between the outer peripheral wall of the plug 38 and the inner peripheral wall of the connecting cavity 321. It can cooperate with the plug 38 to seal the cavity 331.

[0173] In addition, the main control box 500 is located inside the housing 200 and connected to the external power supply of the air conditioner 1000, which can supply power to various components inside the air conditioner 1000. The pulse control box 1 is connected to the main control box 500 through the control box input line 13. At least one of the heat exchange component 300 and the air duct component 400 is provided with a wire clip 401 for locking the control box input line 13, which can restrict the direction of the control box input line 13 and fix the control box input line 13 to a certain extent, organize the wiring harness inside the air conditioner 1000, and facilitate the maintenance of the air conditioner 1000.

[0174] Other configurations and operations of the pulse lamp sterilization module 100 and the air conditioner 1000 according to embodiments of the present invention are known to those skilled in the art and will not be described in detail here.

[0175] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0176] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A pulse lamp sterilization module, characterized in that, include: Pulse control box; A lamp holder assembly, which is spaced apart from the pulse control box and electrically connected via a lamp holder input line, the lamp holder assembly includes lamp holder terminals, and the lamp holder terminals include lamp holder signal terminals; A bulb assembly is detachably connected to a lamp holder assembly. When the bulb assembly is mounted on the lamp holder assembly, the bulb assembly is electrically connected to the lamp holder assembly. The bulb assembly includes bulb terminals, which include a positive terminal, a negative terminal, and a signal wire. The bulb assembly also includes: A connector, which is connected to the lamp holder assembly and has a connecting cavity; A lamp tube is connected to the connector, the lamp tube has a cavity that communicates with the connector cavity, and the bulb terminal is located inside the connector cavity; A light-emitting tube is disposed inside the cavity and is connected to the positive terminal and the negative terminal of the light bulb. A signal line trigger coil is disposed within the cavity and surrounds the light-emitting tube. The connector is a conductive component, the bulb signal line is connected to the connector, and the connector is adapted to be electrically connected to the lamp holder signal terminal.

2. The pulse lamp sterilization module according to claim 1, characterized in that, The lamp holder input line includes a first wire, a second wire, and a third wire. The lamp holder terminals include a positive terminal and a negative terminal. The first wire is connected to the positive terminal, the second wire is connected to the negative terminal, and the third wire is connected to the lamp holder signal terminal. The bulb positive terminal is electrically connected to the lamp holder positive terminal, the bulb negative terminal is electrically connected to the lamp holder negative terminal, and the bulb signal wire is electrically connected to the lamp holder signal terminal.

3. The pulse lamp sterilization module according to claim 1, characterized in that, The connecting cavity has an opening at one axial end facing the lamp tube, and the lamp tube passes through the opening. The outer peripheral wall of the lamp tube near the connecting seat has an annular protrusion extending in the circumferential direction of the lamp tube. The annular protrusion is located in the connecting cavity and abuts against the axial wall surface of the connecting cavity near the lamp tube.

4. The pulse lamp sterilization module according to claim 3, characterized in that, The outer peripheral wall of the annular protrusion is spaced apart from the inner peripheral wall of the connecting cavity, and an annular welding mud extending along the circumferential direction of the annular protrusion is provided between the outer peripheral wall of the annular protrusion and the inner peripheral wall of the connecting cavity.

5. The pulse lamp sterilization module according to claim 1, characterized in that, The light-emitting tube extends along the length of the cavity. One end of the light-emitting tube is connected to the positive terminal of the bulb via a positive electrode wire, and the other end is connected to the negative terminal of the bulb via a negative electrode wire.

6. The pulse lamp sterilization module according to claim 5, characterized in that, The bulb assembly also includes: An insulating sleeve is fitted onto the negative electrode wire.

7. The pulse lamp sterilization module according to claim 5, characterized in that, The connecting cavity is open at one axial end away from the lamp tube, and the bulb assembly further includes: A rubber plug, part of which is disposed in the connecting cavity and the other part of which is disposed in the tube cavity, has a first insertion groove and a second insertion groove for inserting the positive terminal and the negative terminal of the bulb, respectively. The rubber plug also has a first wire hole and a second wire hole for the positive wire and the negative wire to pass through, respectively. The rubber plug also has a third wire hole for the bulb signal wire to pass through.

8. The pulse lamp sterilization module according to claim 7, characterized in that, The bulb assembly also includes: A sealing colloid, the sealing colloid filling the connecting cavity, the sealing colloid comprising a first sealing colloid located on the side of the plug away from the lamp tube and a second sealing colloid located between the outer peripheral wall of the plug and the inner peripheral wall of the connecting cavity.

9. The pulse lamp sterilization module according to claim 1, characterized in that, The bulb assembly is snapped into the lamp holder assembly.

10. The pulse lamp sterilization module according to claim 9, characterized in that, A portion of the bulb assembly is located within the lamp holder assembly. The outer peripheral wall of the bulb assembly has a plurality of protrusions spaced apart along the circumferential direction of the bulb assembly. The peripheral wall of the lamp holder assembly has a plurality of slots spaced apart along the circumferential direction of the lamp holder assembly. Each slot corresponds one-to-one with a plurality of protrusions. Each slot includes a first opening and a second opening. One end of the first opening is open. The second opening is located on the circumferential side of the first opening and extends along the circumferential direction of the lamp holder assembly. Each protrusion is adapted to enter the second opening from the first opening.

11. An air conditioner, characterized in that, include: case; A heat exchange component, wherein the heat exchange component is disposed within the housing; A duct component, wherein the duct component is disposed within the housing; According to any one of claims 1-10, the pulse lamp sterilization module is disposed on the heat exchange component, and at least a portion of the bulb assembly is located between the air duct component and the heat exchange component.

12. The air conditioner according to claim 11, characterized in that, The heat exchange component includes: Heat exchanger body; A heat exchanger bracket is provided on the outside of the heat exchanger body and connected to the heat exchanger body. The pulse control box is provided on the side of the heat exchanger bracket away from the heat exchanger body in the length direction. The heat exchanger bracket has a through hole. The lamp holder assembly is inserted into the through hole. The bulb assembly is located on the side of the heat exchanger bracket facing the heat exchanger body.

13. The air conditioner according to claim 12, characterized in that, The lamp holder assembly has a baffle extending along the circumferential direction of the lamp holder assembly on its outer peripheral wall, and the baffle is located on the side of the heat exchanger bracket away from the heat exchanger body.

14. The air conditioner according to claim 13, characterized in that, The side of the heat exchanger support away from the heat exchanger body has an annular rib surrounding the insertion hole, and the baffle abuts against the annular rib.

15. The air conditioner according to claim 12, characterized in that, The housing includes: Chassis; A backplate assembly and a panel assembly are connected and each end is connected to the chassis. The heat exchanger bracket is located on the side of the heat exchanger body near the backplate assembly. A top plate, which is connected to the back plate assembly and the panel assembly at the end opposite to the chassis.

16. The air conditioner according to claim 11, characterized in that, The lamp holder assembly has a first mounting lug on its outer peripheral wall, and the first mounting lug is connected to the heat exchange component.

17. The air conditioner according to claim 11, characterized in that, The outer peripheral wall of the pulse control box has a second mounting lug, which is connected to the heat exchange component.

18. The air conditioner according to claim 11, characterized in that, Also includes: The main electrical control box is located inside the housing. The pulse electrical control box is connected to the main electrical control box via an electrical control box input line. At least one of the heat exchange component and the air duct component is provided with a wire clip for securing the electrical control box input line.

Citation Information

Patent Citations

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