Lamp holder assembly, pulse lamp sterilization module and air conditioner having the same
By designing the lamp holder assembly and the light bulb assembly of the air conditioner, the problem of difficult assembly and low reliability of the air conditioner is solved, and the lamp holder assembly of the light bulb assembly effectively solves the problem of difficult assembly, realizes the rapid installation and fixation of the light bulb assembly, improves the assembly efficiency and safety of the light bulb assembly, and reduces the difficulty and cost of maintenance.
Patent Information
- Application Number
- CN202310063676.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-30
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2043-01-30
AI Technical Summary
The pulse lamp sterilization module of existing air conditioners is difficult to assemble and has low reliability, resulting in difficulty and high cost in maintenance.
A lamp holder assembly is designed, including a lamp holder, a protective cover and a lamp holder terminal, which is used to support and install the bulb assembly and is connected to the bulb assembly through a lamp holder input line to achieve electrical signal transmission and pulse light control.
The assembly difficulty of the bulb assembly is reduced, the reliability is improved, the bulb is waterproof, dustproof, and anti-electric shock, and it is easy to maintain, reducing maintenance costs and time.
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Figure CN116059412B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air treatment equipment, in particular to a lamp holder assembly, a pulse lamp sterilization module and an air conditioner having the same. Background Art
[0002] In order 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 surfaces of surrounding parts. The pulse lamp sterilization module in the existing technology is mainly composed of a pulse lamp body and a pulse lamp electronic control box, which is difficult to assemble and has low reliability. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a lamp holder assembly with a simple structure and high reliability, which can reduce the difficulty of assembling a light bulb assembly and can transmit electrical signals to control the operating time of the light bulb assembly and the emission frequency of pulsed light.
[0004] The present invention also provides a pulse lamp sterilization module, which includes the above-mentioned lamp holder assembly.
[0005] The present invention also provides an air conditioner, which includes the above-mentioned pulse lamp sterilization module.
[0006] According to an embodiment of the present invention, a lamp holder assembly includes: a lamp holder, which is used to connect a bulb assembly; a protective cover, which is arranged on the lamp holder and connected to the lamp holder to define a mounting cavity, and the protective cover has a through hole for the lamp holder input wire to pass through; a lamp holder terminal, which is arranged on the lamp holder and at least partially located in the mounting cavity, and is connected to the lamp holder input wire and is suitable for being connected to the bulb terminal on the bulb assembly.
[0007] The lamp holder assembly according to the embodiments of the present invention, which supports and mounts the bulb assembly, has a simple structure, is easy to manufacture, and is highly reliable, reducing the difficulty of bulb assembly assembly. It also provides excellent waterproof, dustproof, and electric shock-proof properties. Furthermore, by connecting the lamp holder input wires to the lamp holder terminals, which in turn connect to the bulb terminals, electrical signals can be transmitted through the lamp holder assembly to control the operating time of the bulb assembly and the frequency of pulsed light emission.
[0008] In addition, the lamp holder assembly according to the present invention may also have the following additional technical features:
[0009] In some embodiments, the lamp holder input line includes a first wire body, a second wire body and a third wire body, the lamp holder terminal includes a lamp holder positive terminal, a lamp holder negative terminal and a lamp holder signal terminal, the bulb terminal includes a bulb positive terminal, a bulb negative terminal and a bulb signal line, the first wire body is connected to the lamp holder positive terminal, the second wire body is connected to the lamp holder negative terminal, the third wire body 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 line is electrically connected to the lamp holder signal terminal.
[0010] In some embodiments, the lamp holder includes: an insulating shell, the protective cover is connected to the insulating shell, the positive terminal of the lamp holder and the negative terminal of the lamp holder are arranged on the insulating shell; a conductive plate, the conductive plate is arranged in the insulating shell and connected to the insulating shell, the lamp holder signal terminal is connected to the conductive plate, and the bulb assembly is connected to the conductive plate.
[0011] In some embodiments, the conductive plate is snap-fitted to the insulating housing, or connected via fasteners, or the conductive plate and the insulating housing are an integral injection-molded part.
[0012] In some embodiments, the conductive plate includes an annular portion and a connecting portion, one end of the connecting portion is connected to an axial end of the annular portion, and the other end of the connecting portion extends radially inward of the annular portion, the lamp holder signal terminal is connected to the connecting portion, and a portion of the bulb assembly is located within the annular portion and connected to the annular portion.
[0013] In some embodiments, the annular portion is provided with a plurality of bayonet holes spaced apart along the circumferential direction of the annular portion, each of the bayonet holes includes a first port and a second port, the first port is open at one end away from the connecting portion, the second port is located on the circumferential side of the first port along the annular portion and extends along the circumferential direction of the annular portion, and the outer peripheral wall of the bulb assembly is provided with a plurality of protrusions spaced apart along the circumferential direction of the bulb assembly, the plurality of protrusions correspond one-to-one to the plurality of bayonet holes, and each of the protrusions is suitable for entering the second port from the first port.
[0014] In some embodiments, two mounting grooves are provided on the side of the insulating shell facing the protective cover, and a through hole is provided on the bottom wall of each mounting groove. The positive terminal of the lamp holder and the negative terminal of the lamp holder are respectively provided in the two mounting grooves and are partially adapted to extend from the through holes to be connected to the positive terminal and the negative terminal of the bulb respectively.
[0015] In some embodiments, a mounting protrusion is provided on the side of the insulating shell facing the protective cover, the mounting groove is provided on the mounting protrusion, and terminal bosses are provided on the outer peripheral walls of the positive terminal of the lamp holder and the negative terminal of the lamp holder, and the terminal bosses are located in the mounting groove. The lamp holder assembly also includes: a pressure plate, the pressure plate is located in the mounting cavity and the cover is provided on the mounting protrusion, the pressure plate has two avoidance holes for the positive terminal of the lamp holder and the negative terminal of the lamp holder to pass through respectively; an elastic member, there are two elastic members, and the two elastic members are respectively provided in the two mounting grooves, and the elastic member is located between the terminal boss and the pressure plate, and is used to drive the positive terminal of the lamp holder and the negative terminal of the lamp holder to move in a direction away from the pressure plate.
[0016] In some embodiments, the pressing plate is connected to the mounting protrusion via a first fastener, and the first fastener is located between the two mounting grooves.
[0017] In some embodiments, the protective cover is connected to the lamp holder via a second fastener.
[0018] In some embodiments, a plurality of spaced-apart mounting posts are provided on the side of the lamp holder facing the protective cover, and a plurality of recessed portions are provided on the outer wall surface of the protective cover, the plurality of recessed portions correspond one-to-one to the plurality of mounting posts, and a connecting hole is provided on the bottom wall of each of the recessed portions, the second fastener passes through the connecting hole and is connected to the mounting post, and the second fastener is located in the recessed portion.
[0019] In some embodiments, the lamp holder assembly further includes: a waterproof rubber ring, which is clamped in the through hole, and the waterproof rubber ring is provided with a wire hole for the lamp holder input wire to pass through.
[0020] In some embodiments, the peripheral wall of the waterproof rubber ring has an annular groove extending along the circumferential direction of the waterproof rubber ring, and a portion of the protective cover adjacent to the through hole is clamped in the annular groove.
[0021] The present invention also provides a pulse lamp sterilization module having the above embodiment.
[0022] The pulse lamp sterilization module according to an embodiment of the present invention includes: a pulse electric control box; the above-mentioned lamp holder assembly, which is separated from the pulse electric control box and electrically connected through the lamp holder input line; and a bulb assembly, which is connected to the lamp holder assembly.
[0023] According to the pulse lamp sterilization module of the embodiment of the present invention, by being provided with the above-mentioned lamp holder assembly, the pulse lamp sterilization module is decomposed into a pulse electric control box, a lamp holder assembly and a bulb assembly, and the pulse electric control box is separated from the lamp holder assembly and electrically connected through the 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, thereby realizing the separability of the pulse electric control box and the lamp holder assembly, and the lamp holder assembly and the bulb assembly. When any one of the pulse electric control box, the lamp holder assembly and the bulb assembly is damaged, the corresponding damaged parts can be replaced separately, which can reduce the repair cost and maintenance cost of the pulse lamp sterilization module, reduce the repair difficulty, shorten the repair time, and ensure the safety performance of the pulse lamp sterilization module.
[0024] The present invention also provides an air conditioner having the above embodiment.
[0025] An air conditioner according to an embodiment of the present invention includes: a shell; a heat exchange component, which is arranged in the shell; an air duct component, which is arranged in the shell; the above-mentioned pulse lamp sterilization module, which is arranged 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.
[0026] According to the air conditioner of the embodiment of the present invention, by being provided with the above-mentioned pulse lamp sterilization module, the pulse lamp sterilization module is decomposed into a pulse electric control box, a lamp holder assembly and a bulb assembly, and the pulse electric control box is separated from the lamp holder assembly and electrically connected through the 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, thereby realizing the separability of the pulse electric control box and the lamp holder assembly, and the lamp holder assembly and the bulb assembly. When any one of the pulse electric control box, the lamp holder assembly and the bulb assembly is damaged, the corresponding damaged parts can be replaced separately, which can reduce the repair cost and maintenance cost of the pulse lamp sterilization module, reduce the repair difficulty, shorten the repair time, and ensure the safety performance of the pulse lamp sterilization module.
[0027] In addition, the air conditioner according to the embodiment of the present invention may also have the following additional technical features:
[0028] In some embodiments, the heat exchange component includes: a heat exchanger body; a heat exchanger bracket, the heat exchanger bracket is arranged on the outside of the heat exchanger body and connected to the heat exchanger body, the pulse electric control box is arranged on the side of the heat exchanger bracket away from the heat exchanger body in the length direction, the heat exchanger bracket has an entry hole, the lamp holder assembly is inserted into the entry hole, and the bulb assembly is located on the side of the heat exchanger bracket facing the heat exchanger body.
[0029] In some embodiments, a baffle extending along the circumferential direction of the lamp holder assembly is provided on an outer peripheral wall of the lamp holder assembly, and the baffle is located on a side of the heat exchanger bracket away from the heat exchanger body.
[0030] In some embodiments, a side of the heat exchanger support away from the heat exchanger body has an annular rib surrounding the penetration hole, and the baffle abuts against the annular rib.
[0031] In some embodiments, the shell includes: a chassis; a back panel assembly and a panel assembly, the back panel assembly and the panel assembly are connected and one end of each is connected to the chassis, and the heat exchanger bracket is arranged on the side of the heat exchanger body close to the top plate; a top plate, the top plate is connected to the back panel assembly and the panel assembly at one end facing away from the chassis.
[0032] In some embodiments, a first mounting lug is provided on an outer peripheral wall of the lamp holder, and the first mounting lug is connected to the heat exchange component.
[0033] In some embodiments, a second mounting lug is provided on the outer peripheral wall of the pulse electric control box, and the second mounting lug is connected to the heat exchange component.
[0034] In some embodiments, the air conditioner also includes: a main electric control box, the main electric control box is arranged in the shell, the pulse electric control box is connected to the main electric control box through an electric control box input line, and at least one of the heat exchange component and the air duct component is provided with a wire clip for clamping the electric control box input line.
[0035] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which:
[0037] Figure 1 is a perspective view of an air conditioner according to an embodiment of the present invention;
[0038] Figure 2 is an exploded view of an air conditioner according to an embodiment of the present invention;
[0039] Figure 3 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 cross-sectional view;
[0040] Figure 4 yes Figure 3 Enlarged view of point A in the middle;
[0041] Figure 5 is a cross-sectional view at one angle of an air conditioner according to an embodiment of the present invention;
[0042] Figure 6 is a partial cross-sectional view of an air conditioner according to an embodiment of the present invention from another angle;
[0043] Figure 7 is a three-dimensional diagram of a pulse lamp sterilization module according to an embodiment of the present invention;
[0044] Figure 8 is a perspective view of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0045] Figure 9 is a three-dimensional view from another angle of the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;
[0046] Figure 10 is an exploded view of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0047] Figure 11 is a perspective view of a lamp holder of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0048] Figure 12 is a top view of a lamp holder of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0049] Figure 13 It is along Figure 12 Cross-sectional view along the midline BB;
[0050] Figure 14 It is along Figure 12 Cross-sectional view of the mid-CC line;
[0051] Figure 15 is a three-dimensional view of a protective cover of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0052] Figure 16 is a top view of a protective cover of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0053] Figure 17 It is along Figure 16 Cross-sectional view along the mid-DD line;
[0054] Figure 18 is a perspective view of a pressing plate of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0055] Figure 19 is a top view of a pressing plate of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0056] Figure 20 It is along Figure 19 Cross-sectional view along line EE;
[0057] Figure 21 3D diagram of a waterproof rubber ring of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0058] Figure 22 1. 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;
[0059] Figure 23 It is along Figure 22 Cross-sectional view along the midline FF;
[0060] Figure 24 is a cross-sectional view of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention, wherein the lamp holder assembly is not mated with the bulb assembly;
[0061] Figure 25 is a cross-sectional view of a lamp holder assembly of a pulse lamp sterilization module according to an embodiment of the present invention, wherein the lamp holder assembly is in a state of being engaged with the bulb assembly;
[0062] Figure 26 is a three-dimensional diagram of a pulse electric control box of a pulse lamp sterilization module according to an embodiment of the present invention;
[0063] Figure 27 is a perspective view of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0064] Figure 28 is an exploded view of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0065] Figure 29 is a cross-sectional view of a lamp tube of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0066] Figure 30 is a cross-sectional view of an insulating sleeve of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0067] Figure 31 is a cross-sectional view of a light-emitting tube of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0068] Figure 32 is a three-dimensional diagram of a connection base and a signal line trigger coil of a pulse lamp sterilization module according to an embodiment of the present invention;
[0069] Figure 33 is a perspective view of a connection base of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention, wherein a portion of the connection base is a cross-sectional view;
[0070] Figure 34 is a perspective view of a rubber plug of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0071] Figure 35 is a cross-sectional view of a rubber plug of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0072] Figure 36 is a cross-sectional view of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention;
[0073] Figure 37 is a perspective view of a bulb assembly of a pulse lamp sterilization module according to an embodiment of the present invention, wherein a portion of the bulb assembly is a cross-sectional view;
[0074] Figure 38 This is a three-dimensional diagram of the pulse electric control box and the lamp holder assembly of the pulse lamp sterilization module according to an embodiment of the present invention;
[0075] Figure 39 is a three-dimensional diagram of a pulse lamp sterilization module according to an embodiment of the present invention from another angle;
[0076] Figure 40 is a cross-sectional view of the cooperation between the lamp holder assembly and the bulb assembly of the pulse lamp sterilization module according to an embodiment of the present invention;
[0077] Figure 41 is a three-dimensional diagram of the cooperation between the heat exchange component and the air duct component of the air conditioner according to an embodiment of the present invention;
[0078] Figure 42 is a three-dimensional diagram of the pulse lamp sterilization module, heat exchange component and air duct component of the air conditioner according to an embodiment of the present invention;
[0079] Figure 43 The figure is a cross-sectional schematic diagram of the cooperation between the lamp holder assembly and the heat exchanger bracket of the air conditioner according to an embodiment of the present invention.
[0080] Reference numerals:
[0081] 100. Pulse lamp sterilization module; 1000. Air conditioner;
[0082] 1. Pulse electric control box; 11. Lamp holder input line; 111. First line; 112. Second line; 113. Third line; 12. Second mounting lug; 13. Electric control box input line;
[0083] 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 portion; 214. Ring portion; 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, pressing plate; 241, avoidance hole; 242, first fastener; 243, second mounting hole; 25, elastic member; 26, waterproof rubber ring; 261, wire hole; 262, annular groove; 27, baffle;
[0084] 3. Bulb assembly; 31. Bulb terminal; 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 cavity; 332. Annular protrusion; 34. Light-emitting tube; 341. Positive wire; 342. Negative wire; 35. Signal wire trigger coil; 36. Annular welding paste; 37. Insulating sleeve; 38. Rubber plug; 381. First insertion slot; 382. Second insertion slot; 383. First threading hole; 384. Second threading hole; 385. Third threading hole; 39. Sealing colloid; 391. First sealing colloid; 392. Second sealing colloid;
[0085] 200, housing; 201, chassis; 202, back panel assembly; 203, panel assembly; 204, top plate; 205, air intake grille;
[0086] 300, heat exchange component; 301, heat exchanger body; 302, heat exchanger bracket; 303, penetration hole; 304, annular rib; 305, lamp holder assembly mounting column; 306, pulse electric control box mounting column; 307, limit baffle; 308, support rib;
[0087] 400, air duct components; 401, wire buckle;
[0088] 500. Main electrical control box. DETAILED DESCRIPTION
[0089] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0090] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.
[0091] 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 the technical features being referred to. Thus, a feature identified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means two or more, unless otherwise specifically defined.
[0092] In the present invention, unless otherwise expressly specified or limited, terms such as "mounted," "connected," "connect," and "fixed" should be understood broadly. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0093] The following describes a lamp socket assembly 2 according to an embodiment of the present invention with reference to the accompanying drawings.
[0094] like Figure 10 As shown, the lamp holder assembly 2 according to the embodiment of the present invention includes a lamp holder 21 , a protection cover 22 and a lamp holder terminal 23 .
[0095] Specifically, refer to the attached Figure 7 As shown, the lamp holder 21 is used to connect the bulb assembly 3, and has a simple structure, which is convenient for the installation and fixation of the bulb assembly 3. Figure 8 As shown, the protective cover 22 is provided on the lamp holder 21 and is connected to the lamp holder 21 to define the installation cavity. The protective cover 22 can play the role of waterproof, dustproof and anti-electric shock, ensuring the normal operation of the interior of the lamp holder assembly 2 and the bulb assembly 3, and can ensure the safety of maintenance personnel during maintenance. In addition, refer to the attached Figure 15 and attached Figure 16As shown, the protective cover 22 has a through hole 221 for the lamp holder input line 11 to pass through, so as to transmit electrical signals to the lamp holder assembly 2.
[0096] Further, see the attached Figure 9 and attached Figure 40 As shown, the lamp holder terminals 23 are provided on the lamp holder 21 and are at least partially located within the mounting cavity. The lamp holder terminals 23 are connected to the lamp holder input wires 11 and are adapted to connect to the bulb terminals 31 on the bulb assembly 3. This allows the lamp holder input wires 11 to transmit electrical signals to the lamp holder terminals 23, and the lamp holder signal terminals 233 to transmit electrical signals to the bulb terminals 31, thereby controlling the operating time of the bulb assembly 3 and the emission frequency of the pulsed light, thereby meeting various usage requirements. It is understood that the lamp holder terminals 23 may be partially or entirely located within the mounting cavity, to meet various usage requirements depending on the state.
[0097] It should be noted that compared with the pulse lamp sterilization module in the prior art, the present invention supports and installs the bulb assembly 3 by separately setting a lamp holder assembly 2, which has a simple structure, is easy to process, and has high reliability, and can reduce the difficulty of assembling the bulb assembly 3.
[0098] According to the embodiment of the present invention, the lamp holder assembly 2 is provided to support and mount the bulb assembly 3. The lamp holder assembly 2 has a simple structure, is easy to manufacture, and has high reliability. This reduces the difficulty of assembling the bulb assembly 3, and provides excellent waterproof, dustproof, and electric shock-proof properties. Furthermore, by connecting the lamp holder input line 11 to the lamp holder terminal 23, which in turn connects the lamp holder terminal 23 to the bulb terminal 31, electrical signals can be transmitted through the lamp holder assembly 2 to control the operating time of the bulb assembly 3 and the emission frequency of the pulsed light.
[0099] In some embodiments of the present invention, Figure 11 , Attachment Figure 14 , Attachment Figure 37 and attached Figure 40As shown, the lamp holder input line 11 includes a first wire body 111, a second wire body 112 and a third wire body 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 body 111 is connected to the lamp holder positive terminal 231, the second wire body 112 is connected to the lamp holder negative terminal 232, the third wire body 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, thereby forming a closed loop, and the working time of the bulb assembly 3 and the emission frequency of the pulse light can be controlled by the pulse electric control box 1 to meet different usage requirements.
[0100] In a further embodiment of the present invention, referring to the attached Figure 11 As shown, the lamp holder 21 includes an insulating shell 211 and a conductive plate 212. The insulating shell 211 can prevent electric shock and ensure 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 provided on the insulating shell 211. Figure 13 and attached Figure 14 As shown, the conductive plate 212 is arranged in the insulating shell 211 and is connected to the insulating shell 211. The lamp holder signal terminal 233 is connected to the conductive plate 212. 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. The electrical signal 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.
[0101] In a further embodiment of the present invention, the conductive plate 212 can be snap-fitted to the insulating housing 211 or connected via fasteners to facilitate the production and processing of the lamp holder 21; the conductive plate 212 and the insulating housing 211 can also be an integral injection molded part, which can simplify the assembly process and reduce assembly time.
[0102] In a further embodiment of the present invention, referring to the attached Figure 13 and attached Figure 14As 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 inwardly of the annular portion 214, and the lamp holder signal terminal 233 is connected to the connecting portion 213, and the electrical signal can be transmitted from the lamp holder signal terminal 233 to the annular portion 214 through the connecting portion 213. Part of the bulb assembly 3 is located in the annular portion 214 and is connected to the annular portion 214, so that the electrical signal can be transmitted to the bulb assembly 3 to control the working time of the bulb assembly 3 and the emission frequency of the pulsed light.
[0103] In a further embodiment of the present invention, referring to the attached Figure 14 and attached Figure 39 As shown, the annular portion 214 is provided with a plurality of bayonet holes 215 spaced apart along the circumferential direction of the annular portion 214, each bayonet hole 215 includes a first port 2151 and a second port 2152, the first port 2151 is open at one end away from the connecting portion 213, and the second port 2152 is located on one side of the first port 2151 along the circumferential direction of the annular portion 214 and extends along the circumferential direction of the annular portion 214, and the outer peripheral wall of the bulb assembly 3 is provided with a plurality of protrusions 323 spaced apart along the circumferential direction of the bulb assembly 3, the plurality of protrusions 323 corresponding to the plurality of bayonet holes 215 one by one, and each protrusion 323 is suitable for being inserted from the first port 2151. 151 enters the second opening 2152, and can install and fix the bulb assembly 3 and the lamp holder assembly 2 from multiple places, thereby improving the reliability of the cooperation between the bulb assembly 3 and the lamp holder assembly 2. The structure is simple, which is convenient for the processing of the lamp holder assembly 2 and the bulb assembly 3. The circuit can be connected and disconnected by cooperating and separating the bayonet 215 and the protrusion 323. It is easy to assemble and disassemble, has a high safety factor, can reduce the difficulty of maintenance, and improve maintenance efficiency. In addition, when one of the lamp holder assembly 2 and the bulb assembly 3 is damaged, the corresponding damaged part can be replaced separately, thereby reducing the repair cost and maintenance cost of the pulse lamp sterilization module 100.
[0104] For example, the number of the bayonet 215 may be two, three, four, five or six spaced apart along the circumferential direction of the lamp holder 21, and the number of the protrusion 323 may be two, three, four, five or six spaced apart along the circumferential direction of the lamp assembly 3 and corresponding to the bayonet 215. Figure 27 and attached Figure 38 As shown, the peripheral wall of the lamp holder 21 has two bayonet holes 215 spaced apart along the circumferential direction of the lamp holder 21, and the outer peripheral wall of the bulb assembly 3 has two protrusions 323 spaced apart along the circumferential direction of the bulb assembly 3, which can install and fix the bulb assembly 3 and the lamp holder assembly 2 from two places, thereby improving the reliability of the cooperation between the bulb assembly 3 and the lamp holder assembly 2.
[0105] Of course, the present invention is not limited thereto, and the lamp holder assembly 2 and the bulb assembly 3 may also be connected by fasteners, which is not limited here.
[0106] In a further embodiment of the present invention, referring to the attached Figure 13 and attached Figure 25 As shown, combined with the reference Figure 12 Two mounting grooves 2112 are defined on the side of the insulating housing 211 facing the protective cover 22. A through-hole 2113 is defined on the bottom wall of each mounting groove 2112. A positive terminal 231 and a negative terminal 232 are disposed within the two mounting grooves 2112, and are partially adapted to extend from the through-holes 2113 to connect to the positive terminal 311 and the negative terminal 312 of the bulb, respectively. The through-holes 2113 allow the positive and negative terminals 231 and 232 to pass through, allowing their ends near the protective cover 22 to connect to the first and second wire bodies 111 and 112, while their ends near the bulb assembly 3 to connect to the positive and negative terminals 311 and 312 of the bulb, respectively.
[0107] In a further embodiment of the present invention, referring to the attached Figure 11 As shown, the side of the insulating shell 211 facing the protective cover 22 is provided with a mounting protrusion 2111, and the mounting groove 2112 is provided on the mounting protrusion 2111, which can leave space for the lamp holder positive terminal 231 and the lamp holder negative terminal 232 to be placed separately and protected, and the lamp holder positive terminal 231 and the lamp holder negative terminal 232 are separated from the conductive plate 212 to avoid short circuit. Figure 24 As shown, terminal bosses 234 are provided on the outer peripheral walls of the positive terminal 231 and the negative terminal 232 of the lamp holder. The terminal bosses 234 are located in the mounting groove 2112 and are used to limit the movement of the positive terminal 231 and the negative terminal 232 of the lamp holder to the side away from the protective cover 22.
[0108] Further, see the attached Figure 10 As shown, the lamp holder assembly 2 further includes a pressing plate 24 and an elastic member 25. Figure 18 and attached Figure 19 As shown, the pressing plate 24 is located in the mounting cavity and covers the mounting protrusion 2111. The pressing plate 24 has two avoidance holes 241 for the positive terminal 231 of the lamp holder and the negative terminal 232 of the lamp holder to pass through respectively. The positive terminal 231 of the lamp holder and the negative terminal 232 of the lamp holder located in the mounting groove 2112 can pass through the pressing plate 24 to connect with the first wire body 111 and the second wire body 112, and can play a certain limiting role on the positive terminal 231 of the lamp holder and the negative terminal 232 of the lamp holder.
[0109] Further, refer to the attached Figure 25As shown, there are two elastic members 25, which are respectively arranged in two mounting grooves 2112. The elastic members 25 are located between the terminal boss 234 and the pressure plate 24, and are used to drive the positive terminal 231 of the lamp holder and the negative terminal 232 of the lamp holder to move in a direction away from the pressure plate 24.
[0110] It is understood that after the lamp holder assembly 2 is assembled, when the lamp holder assembly 2 is not connected to the bulb assembly 3, refer to the attached Figure 24 As shown, the elastic member 25 is in a natural state or a slightly compressed state, and the elastic member 25 drives the terminal boss 234 to move in a direction away from the pressure plate 24, so that the terminal boss 234 fits with the inner bottom wall of the mounting groove 2112; when the lamp holder assembly 2 is connected to the bulb assembly 3, refer to the attached Figure 25 As shown, the positive and negative terminals 231 and 232 of the lamp holder are subjected to a force from the positive and negative terminals 311 and 312 of the bulb, moving toward the pressure plate 24. The terminal boss 234 moves along with the positive and negative terminals 231 and 232 of the lamp holder toward the pressure plate 24, acting on the elastic member 25. At this point, the elastic member 25 is in a compressed state, and the elastic force reacts on the positive and negative terminals 231 and 232 of the lamp holder, driving the positive and negative terminals 231 and 232 of the lamp holder away from the pressure plate 24. This ensures close contact between the positive and negative terminals 231 and 232 of the lamp holder and the positive and negative terminals 311 and 312 of the bulb, ensuring normal transmission of electrical signals. It should be noted that the amount of compression of the elastic member 25 in the compressed state is greater than that in the slightly compressed state.
[0111] In a further embodiment of the present invention, referring to the attached Figure 24 and attached Figure 25 As shown, the pressing plate 24 is connected to the mounting protrusion 2111 via the first fastener 242, which can improve the reliability of the connection between the pressing plate 24 and the mounting protrusion 2111 and facilitate the assembly and disassembly of the pressing plate 24 and the mounting protrusion 2111, thereby improving the assembly efficiency and maintenance efficiency of the lamp holder assembly 2. Furthermore, the first fastener 242 is located between the two mounting grooves 2112, which can ensure the stability of the connection between the pressing plate 24 and the mounting protrusion 2111. Figure 13 , Attachment Figure 14 As shown, combined with the reference Figure 18-20 The mounting protrusion 2111 is provided with a first mounting hole 2114, and the pressing plate 24 is provided with 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 height direction of the pressing plate 24 and the mounting protrusion 2111 in the lamp holder assembly 2 (refer to the attached Figure 24the first fastener 242 may also be an ordinary screw, the first mounting hole 2114 has a thread, and the pressure plate 24 and the mounting protrusion 2111 are relatively fixed in the height direction of the lamp holder assembly 2 by cooperating with the screw and the threaded hole.
[0112] In some embodiments of the present invention, Figure 8 and attached Figure 10 As shown, the protective cover 22 and the lamp holder 21 are connected by a 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 anti-electric shock functions of the protective cover 22, and facilitate the disassembly and assembly of the protective cover 22 and the lamp holder 21, which can improve the assembly efficiency and maintenance efficiency of the lamp holder assembly 2.
[0113] In a further embodiment of the present invention, referring to the attached Figure 11 , Attachment Figure 15 and attached Figure 17 As shown, a plurality of spaced-apart mounting posts 216 are provided on the side of the lamp holder 21 facing the protective cover 22, and a plurality of recessed portions 223 are provided on the outer wall surface of the protective cover 22, and the plurality of recessed portions 223 correspond one-to-one to the plurality of mounting posts 216. A connecting hole 224 is provided on the bottom wall of each recessed portion 223, and the second fastener 222 passes through the connecting hole 224 to be connected to the mounting post 216. The second fastener 222 is located in the recessed portion 223, which can hide the second fastener 222 to a certain extent, and prevent the second fastener from protruding from the protective cover 22, thereby playing a positioning role and improving the assembly efficiency of the lamp holder assembly 2. In addition, the connection hole 224 is provided on the bottom wall of the recessed portion 223 to facilitate the passage of the second fastener 222, thereby connecting and fixing the protective cover 22 to the lamp holder 21.
[0114] Optionally, a third mounting hole 2161 is provided on the mounting column 216, 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 realize the connection between 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 a thread, and the connection between the lamp holder 21 and the protective cover 22 is realized by the cooperation of the screw and the threaded hole.
[0115] For example, the mounting posts 216 may be spaced apart by two, three, four, five or six, and the recesses 223 may be spaced apart by two, three, four, five or six, corresponding one to one with the mounting posts 216. Figure 11 and attached Figure 17 As shown, two spaced-apart mounting posts 216 are provided on the side of the lamp holder 21 facing the protective cover 22, and two recessed portions 223 corresponding one-to-one to the mounting posts 216 are provided on the outer wall surface of the protective cover 22, so that the lamp holder 21 and the protective cover 22 can be installed and fixed from two locations, thereby improving the reliability of the cooperation between the lamp holder 21 and the protective cover 22.
[0116] In some embodiments of the present invention, Figure 10 As shown, the lamp holder assembly 2 further includes a waterproof rubber ring 26, which is clamped in the through hole 221 to improve the waterproof and dustproof capabilities of the lamp holder assembly 2. Figure 21 and attached Figure 22 As 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 have an appropriate interference fit, which can not only ensure the normal insertion of the lamp holder input wire 11, but also ensure the tight fit of the waterproof rubber ring 26 and the lamp holder input wire 11, preventing accumulated 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.
[0117] In a further embodiment of the present invention, referring to the attached Figure 21 and attached Figure 23 As shown, the peripheral wall of the waterproof rubber ring 26 has an annular groove 262 extending along the circumferential direction of the waterproof rubber ring 26, and the part of the protective cover 22 adjacent to the through hole 221 is clamped in the annular groove 262, which can achieve a close fit between the protective cover 22 and the waterproof rubber ring 26, further preventing accumulated 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.
[0118] The present invention further provides a pulse lamp sterilization module 100 having the lamp holder assembly 2 of the above embodiment.
[0119] 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 electric control box 1, a bulb assembly 3 and the above-mentioned lamp holder assembly 2.
[0120] Specifically, refer to the attached Figure 7 As shown, the pulse electric control box 1 can output signals and energy to control the working time of the lamp holder assembly 2 and the bulb assembly 3 and the emission frequency of the pulse light to meet different usage requirements.
[0121] Furthermore, the lamp holder assembly 2 is used to install and connect the bulb assembly 3, and transmit electrical energy and signals to the bulb assembly 3. The lamp holder assembly 2 is separated from the pulse electric control box 1 and is electrically connected through the lamp holder input line 11. The lamp holder input line 11 can transmit electrical energy and signals to the lamp holder assembly 2. The lamp holder input line 11 can connect the lamp holder assembly 2 to the pulse electric control box 1 through a wiring screw. Compared with the prior art method of connecting the lamp holder input line to the pulse lamp body and the pulse electric control box by welding, it is convenient to combine and separate the lamp holder assembly 2 and the pulse electric control box 1. When one of the lamp holder assembly 2 and the pulse electric control box 1 is damaged, the corresponding damaged part can be replaced separately, which can reduce the repair cost and maintenance cost of the pulse lamp sterilization module 100, reduce the difficulty of repair, shorten the repair time, and ensure the safety performance of the pulse lamp sterilization module 100 during and after repair.
[0122] Of course, the present invention is not limited thereto, and the lamp holder input line 11 may also be connected to the lamp holder assembly 2 and the pulse electric control box 1 by welding, which is not limited here.
[0123] Furthermore, the bulb assembly 3 is used to emit pulsed light to sterilize and disinfect the air and components within the air conditioner 1000, providing users with cleaner, more sanitary, and healthier air, thereby improving the user experience. The bulb assembly 3 is connected to the lamp holder assembly 2. When the bulb assembly 3 is installed on the lamp holder assembly 2, the bulb assembly 3 is electrically connected to the lamp holder assembly 2. The circuit can be connected and disconnected by the combination and separation of the bulb assembly 3 and the lamp holder assembly 2. This makes assembly and disassembly easy and safe, reduces maintenance difficulty and time, and allows for independent replacement of the damaged component in the event of damage to the lamp holder assembly 2 or the bulb assembly 3, thereby reducing the repair and maintenance costs of the pulse lamp sterilization module 100.
[0124] According to the pulse lamp sterilization module 100 of the embodiment of the present invention, by providing the above-mentioned lamp holder assembly 2, by decomposing the pulse lamp sterilization module 100 into a pulse electric control box 1, a lamp holder assembly 2 and a bulb assembly 3, and separating the pulse electric control box 1 from the lamp holder assembly 2 and electrically connecting them through the 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, thereby realizing the detachability of the pulse electric control box 1 and the lamp holder assembly 2, and the lamp holder assembly 2 and the bulb assembly 3. When any one of the pulse electric control box 1, the lamp holder assembly 2 and the bulb assembly 3 is damaged, the corresponding damaged parts can be replaced separately, which can reduce the repair cost and maintenance cost of the pulse lamp sterilization module 100, reduce the repair difficulty, shorten the repair time, and ensure the safety performance of the pulse lamp sterilization module 100.
[0125] In some embodiments of the present invention, Figure 28As shown, the bulb assembly 3 also includes a connection base 32, a lamp tube 33, a light-emitting tube 34 and a signal line trigger coil 35. Figure 32 and attached Figure 33 As shown, the connecting seat 32 is connected to the lamp holder assembly 2 and has a connecting cavity 321 , and the bulb assembly 3 can be connected to the lamp holder assembly 2 through the connecting seat 32 .
[0126] Further, refer to the attached Figure 29 , Attachment Figure 31 , Attachment Figure 36 and attached Figure 37 As shown, the lamp tube 33 is connected to the connecting seat 32. The lamp tube 33 has a tube cavity 331. The light-emitting tube 34 is arranged in the tube cavity 331. The lamp tube 33 is used to protect the light-emitting tube 34 from being damaged by external force, keep the parts inside the tube cavity 331 insulated from external objects, and provide a closed space to slow down or eliminate the oxidation caused by the heat of internal parts.
[0127] Further, see the attached 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, and the bulb terminal 31 is arranged in the connecting cavity 321 to facilitate the connection between the bulb terminal 31 and the light-emitting tube 34 in the lamp tube 33.
[0128] Further, refer to the attached Figure 33 As shown, the signal line trigger coil 35 is connected to the bulb signal line 313. The signal line trigger coil 35 is disposed within the tube cavity 331 and surrounds the light-emitting tube 34. It can transmit signals to control the emission frequency of the pulsed light of the light-emitting tube 34. It is understood that the light-emitting tube 34 is filled with inert gas. When the pulse lamp sterilization module 100 is in operation, the positive terminal 311 and the negative terminal 312 of the bulb ionize the inert gas inside the light-emitting tube 34 to emit pulsed light.
[0129] In some embodiments of the present invention, 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, and the lamp tube 33 is inserted into the opening 322. An annular protrusion 332 extending along the circumferential direction of the lamp tube 33 is provided on the outer peripheral wall of the end of the lamp tube 33 close to the connecting seat 32. The annular protrusion 332 is located in the connecting cavity 321 and abuts against the axial wall surface of the connecting cavity 321 close to the lamp tube 33. The lamp tube 33 and the connecting seat 32 can be connected by the cooperation of the annular protrusion 332 and the connecting seat 32.
[0130] In some embodiments of the present invention, Figure 36As shown, the outer circumferential wall of the annular protrusion 332 is spaced apart from the inner circumferential wall of the connecting cavity 321. An annular weld paste 36 extending circumferentially along the annular protrusion 332 is provided between the outer circumferential wall of the annular protrusion 332 and the inner circumferential wall of the connecting cavity 321. The annular weld paste 36 is used to connect the annular protrusion 332 to the inner circumferential wall of the connecting cavity 321. The annular weld paste 36 is resistant to high temperatures and moisture, and provides strong adhesion, thereby improving the reliability and stability of the fit between the annular protrusion 332 and the connecting socket 32. Furthermore, the annular weld paste 36 is controllable. During the production process of the pulse lamp sterilization module 100, if the adhesion between the lamp tube 33 and the connecting socket 32 is incorrect, the annular weld paste 36 can be heated to promptly correct the fit between the lamp tube 33 and the connecting socket 32, thereby improving the accuracy of the fit between the lamp tube 33 and the connecting socket 32.
[0131] In some embodiments of the present invention, Figure 36 As shown, the light emitting tube 34 is arranged along the length direction of the tube cavity 331 (see the attached Figure 36 One end of the light emitting tube 34 is connected to the positive terminal 311 of the bulb through the positive wire 341, and the other end is connected to the negative terminal 312 of the bulb through the negative wire 342, so as to facilitate the ionization of the inert gas inside the light emitting tube 34. It is understandable that when the pulse lamp sterilization module 100 is working, ... negative wire 342, and the other end is connected to the negative terminal 312 of the bulb through the negative wire 342, Figure 36 The positive electrode filament 341 and the negative electrode filament 342 at both ends (in the direction a shown in the figure) ionize the inert gas inside the light-emitting tube 34 to emit pulse light.
[0132] Optionally, the light-emitting tube 34 can be connected to the positive terminal 311 of the bulb through the positive wire 341 at the end close to the connecting base 32, and connected to the negative terminal 312 of the bulb through the negative wire 342 at the end away from the connecting base 32; or it can be connected to the positive terminal 311 of the bulb through the positive wire 341 at the end away from the connecting base 32, and connected to the negative terminal 312 of the bulb through the negative wire 342 at the end close to the connecting base 32, both of which can form a circuit to ionize the inert gas inside the light-emitting tube 34 and emit pulsed light.
[0133] In some embodiments of the present invention, Figure 30 and attached Figure 37 As shown, the bulb assembly 3 further includes an insulating sleeve 37 , which is sleeved on the negative wire 342 to separate the negative wire 342 from the bulb signal line 313 , thereby preventing the negative wire 342 from contacting the bulb signal line 313 and forming a short circuit.
[0134] In some embodiments of the present invention, Figure 37As shown, the axial end of the connecting cavity 321 away from the lamp tube 33 is open, and the bulb assembly 3 also includes a plug 38, part of which is arranged in the connecting cavity 321, and the other part is arranged in the tube cavity 331, which is used to seal the tube cavity 331 to prevent condensation water from being generated in the lamp tube 33, and reduce or eliminate the oxidation of the positive wire 341, the negative wire 342 and the bulb signal line 313.
[0135] Further, refer to the attached Figure 34 and attached Figure 35 As shown, 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 bulb respectively, which can be used to install and clamp the positive terminal 311 and the negative terminal 312 of the bulb. The rubber plug 38 also has a first threading hole 383 and a second threading hole 384 for the positive wire 341 and the negative wire 342 to pass through respectively. The rubber plug 38 also has a third threading hole 385 for the bulb signal line 313 to pass through, so that the positive wire 341, the negative wire 342 and the bulb signal line 313 can extend into the tube cavity 331. Optionally, the first threading hole 383 and the positive wire 341, the second threading hole 384 and the negative wire 342, and the third threading hole 385 and the bulb signal line 313 can be appropriately interference fit. The elastic characteristics of the plug 38 can not only normally insert the positive wire 341, the negative wire 342 and the bulb signal line 313, but also ensure that the plug 38 is tightly fitted with the positive wire 341, the negative wire 342 and the bulb signal line 313 to prevent water from entering the tube cavity 331.
[0136] In some embodiments of the present invention, Figure 36 As shown, the bulb assembly 3 also includes a sealing colloid 39, which is filled in the connecting cavity 321 to further seal the tube cavity 331, prevent condensation in the lamp tube 33, and reduce or eliminate oxidation of the positive and negative filaments 341 and 342, as well as the bulb signal line 313. 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. The sealing colloid 39 cooperates with the plug 38 to seal the tube cavity 331.
[0137] It should be noted that, refer to the attached Figure 36 As shown, at least part of the bulb positive terminal 311 and the 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 the bulb negative terminal 312 are normally connected and conductive with the lamp holder positive terminal 231 and the lamp holder negative terminal 232.
[0138] In some embodiments of the present invention, the connecting socket 32 is a conductive part, the bulb signal line 313 is connected to the connecting socket 32, and the connecting socket 32 is suitable for being 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 connecting socket 32, and then transmitted to the signal line trigger coil 35 to control the pulse component to emit pulse light.
[0139] The present invention also provides an air conditioner 1000 having the pulse lamp sterilization module 100 of the above embodiment.
[0140] like Figure 1 and Figure 2 As shown, the air conditioner 1000 according to the embodiment of the present invention includes a housing 200 , a heat exchange component 300 , an air duct component 400 and the above-mentioned pulse lamp sterilization module 100 .
[0141] Specifically, refer to the attached Figure 2 As shown, the housing 200 can protect the internal structure of the air conditioner 1000, preventing the internal structure of the air conditioner 1000 from being exposed and damaged, thereby increasing the service life of the air conditioner 1000 and providing a better appearance. 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 usage needs. For example, the heat exchange component 300 can be an evaporator.
[0142] Further, see the attached Figure 3 As shown, 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. Of course, the air duct component 400 can also include two fans to achieve a dual-flow air conditioner 1000, which is beneficial for increasing the air supply volume of the air conditioner 1000 and improving the ability of the air conditioner 1000 to regulate the indoor ambient temperature, thereby reducing energy consumption, improving energy efficiency, and enhancing the user experience.
[0143] Further, refer to the attached Figure 4 As shown, the pulse lamp sterilization module 100 is arranged 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 air flow in the area enclosed by the air duct component 400 and the heat exchange component 300 and various microorganisms attached to the surfaces of parts such as the air duct component 400 and the heat exchange component 300.
[0144] Optionally, the air conditioner 1000 is further provided with at least one of a purification component and a humidification component. In other words, the air conditioner 1000 may be provided with a purification component or a humidification component; or, the air conditioner 1000 may be provided with 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.
[0145] Furthermore, the airflow entering the air conditioner 1000 can be humidified by the humidifying component, so that the humidified airflow is blown into the room, increasing the water vapor content in the room and achieving a humidifying effect on the room; the airflow entering the air conditioner 1000 can be purified by the purification component, so that the purified airflow is blown into the room, improving the air quality and meeting the different usage needs of users.
[0146] According to the air conditioner 1000 of the embodiment of the present invention, by being provided with the above-mentioned pulse lamp sterilization module 100, by decomposing the pulse lamp sterilization module 100 into a pulse electric control box 1, a lamp holder assembly 2 and a bulb assembly 3, and separating the pulse electric control box 1 from the lamp holder assembly 2 and electrically connecting them through the 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, thereby realizing the detachability of the pulse electric control box 1 and the lamp holder assembly 2, and the lamp holder assembly 2 and the bulb assembly 3. When any one of the pulse electric control box 1, the lamp holder assembly 2 and the bulb assembly 3 is damaged, the corresponding damaged parts can be replaced separately, thereby reducing the repair cost and maintenance cost of the pulse lamp sterilization module 100, reducing the repair difficulty, shortening the repair time, and ensuring the safety performance of the pulse lamp sterilization module 100.
[0147] In some embodiments of the present invention, 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 arranged outside the heat exchanger body 301 and is connected to the heat exchanger body 301. The heat exchanger body 301 can be fixed in the air conditioner 1000 through the heat exchanger bracket 302. Figure 42 As shown, the pulse electric control box 1 is arranged in the length direction of the heat exchanger bracket 302 (refer to the attached Figure 42 On the side away from the heat exchanger body 301 in the direction a shown in FIG, the heat exchanger bracket 302 has a penetration hole 303, and the lamp holder assembly 2 is inserted into the penetration hole 303, thereby fixing the lamp holder assembly 2. 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 illuminate the area surrounded by the heat exchange component 300 and the air duct component 400, thereby improving the sterilization effect of the pulse lamp sterilization module 100.
[0148] In a further embodiment of the present invention, referring to the attached Figure 8 and attached Figure 43 As shown, the outer wall of the lamp holder assembly 2 has a baffle 27 extending along 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 from feeling insecure and affecting the user experience.
[0149] In a further embodiment of the present invention, referring to the attached 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 penetration hole 303, and the baffle 27 abuts against the annular rib 304, which can play a supporting and positioning role, thereby realizing the installation and fixation of the lamp holder assembly 2.
[0150] In a further embodiment of the present invention, referring to the attached Figure 1 and Figure 2 As shown, the housing 200 includes a chassis 201, a back panel assembly 202, a panel assembly 203, and a top panel 204. The back panel assembly 202 and the panel assembly 203 are connected and one end of each is connected to the chassis 201, and the top panel 204 is connected to the ends of the back panel assembly 202 and the panel assembly 203 facing away from the chassis 201, thereby forming an integral structure, thereby protecting the internal structure of the air conditioner 1000 and preventing the user from contacting the internal structure and causing injury.
[0151] Further, refer to the attached Figure 3 As shown, the back panel assembly 202 is provided with an air inlet, which is arranged along the length direction of the back panel assembly 202 (see the attached Figure 3 The airflow 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 the user's safety and ensuring the normal operation of the air conditioner 1000. Furthermore, the air inlet grille 205 prevents insects, rodents, and other such objects from entering the housing 200 of the air conditioner 1000 and causing damage, thereby 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. Removal of the air inlet grille 205 facilitates repair and replacement of components within the air conditioner 1000 and facilitates cleaning, preventing dust accumulation on the air inlet grille 205 due to prolonged use.
[0152] Further, see the attached Figure 4 As shown, the heat exchanger bracket 302 is provided on a side of the heat exchanger body 301 close to the back plate assembly 202 and is used for mounting the heat exchanger body 301 .
[0153] It should be noted that when the air conditioner 1000 is installed, 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, with good assembly performance. Especially in the process of after-sales repair and maintenance, there is no need to disassemble and assemble a large number of parts and components inside the air conditioner 1000. You only need to disassemble the top plate 204 from the top of the air conditioner 1000 to see the pulse lamp sterilization module 100, and repair and replace the pulse lamp sterilization module 100. The maintenance is convenient and simple, which greatly improves the efficiency of after-sales maintenance.
[0154] In some embodiments of the present invention, Figure 11 and attached Figure 43 As shown, the outer wall of the lamp holder 21 is provided with a first mounting lug 217, and the heat exchange component 300 is provided with a lamp holder assembly mounting column 305. The first mounting lug 217 is connected to the lamp holder assembly mounting column 305 of the heat exchange component 300 by a third fastener 2171, so that the lamp holder assembly 2 can be fixed on the heat exchange component 300 and the lamp holder assembly 2 can be easily disassembled and assembled.
[0155] In some embodiments of the present invention, Figure 26 , Attachment Figure 41 and attached Figure 42 As shown, the outer wall of the pulse electric control box 1 is provided with a second mounting lug 12, and the heat exchange component 300 is provided with a pulse electric control box mounting column 306. The second mounting lug 12 is connected to the pulse electric control box mounting column 306 of the heat exchange component 300 by fasteners, so that the pulse electric control box 1 can be fixed on the heat exchange component 300 and the pulse electric control box 1 can be easily disassembled and assembled.
[0156] Further, refer to the attached Figure 41 As shown, the heat exchange component 300 is also provided with a limit baffle 307, which matches the outer peripheral wall of the pulse electric control box 1 and can limit the pulse electric control box 1, reducing the difficulty of assembling the pulse electric control box 1. Optionally, the interior of the limit baffle 307 is provided with a support rib 308. By adjusting the support rib 308, it can be ensured that the installation surface of the pulse electric control box 1 is aligned with the length direction of the heat exchange component 300 (see Appendix Figure 41 The a direction shown in the figure is perpendicular to the pulse electric control box 1 to ensure its stability.
[0157] In some embodiments of the present invention, Figure 2As shown, the air conditioner 1000 further includes a main electric control box 500, which is disposed within the housing 200 and connected to a power source external to the air conditioner 1000, thereby supplying power to various components within the air conditioner 1000. Furthermore, the pulse electric control box 1 is connected to the main electric control box 500 via an electric control box input line 13, which can transmit electrical signals to the pulse electric control box 1.
[0158] Furthermore, at least one of the heat exchange component 300 and the air duct component 400 is provided with a wire clip 401 for clamping the electric control box input line 13, which can limit the direction of the electric control box input line 13 and fix the electric control box input line 13 to a certain extent, organize the wire harness inside the air conditioner 1000, and facilitate the maintenance of the air conditioner 1000. In a specific example, refer to the attached Figure 41 As shown, two spaced apart wire buckles 401 are provided along the length direction of the heat exchange component 300, and the air duct component 400 is provided along the length direction of the air conditioner 1000 (see the attached FIG. Figure 41 A wire buckle 401 is provided at one end of the pulse lamp sterilization module 100 (direction a shown in the figure), which can limit the direction of the electric control box input line 13 from three points, fix the electric control box input line 13, and organize the wiring harness inside the air conditioner 1000 to facilitate the maintenance of the air conditioner 1000.
[0159] Reference below Figures 1 to 43 An air conditioner 1000 according to a specific embodiment of the present invention is described. It should be understood that the following description is merely exemplary and intended to be used to explain the present invention, but should not be construed as limiting the present invention.
[0160] Specifically, if Figures 1 to 43 As 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 electric control box 500 .
[0161] Furthermore, the housing 200 can protect the internal structure of the air conditioner 1000, preventing the internal structure of the air conditioner 1000 from being exposed and damaged, thereby increasing 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 panel assembly 203, and a top panel 204. The back panel assembly 202 and the panel assembly 203 are connected, and one end of each is connected to the chassis 201. The top panel 204 is connected to the ends of the back panel assembly 202 and the panel assembly 203 facing away from the chassis 201, thereby forming an integrated structure, protecting the internal structure of the air conditioner 1000 and preventing the user from contacting the internal structure and causing injury.
[0162] 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. The heat exchanged airflow can then be blown into the room, thereby 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 a side of the heat exchanger body 301 near the back panel assembly 202 and is 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 disposed opposite the heat exchange component 300 to facilitate heat exchange of the airflow inside the air conditioner 1000.
[0163] Furthermore, the pulse lamp sterilization module 100 is provided on the heat exchange component 300, and the pulse lamp sterilization module 100 includes: a pulse electric control box 1, a lamp holder assembly 2 and a bulb assembly 3. Specifically, the pulse electric control box 1 is provided on the side of the heat exchanger bracket 302 away from the heat exchanger body 301 in the length direction, and can output signals and energy to control the working time of the lamp holder assembly 2 and the bulb assembly 3 and the emission frequency of the pulse light to meet different usage requirements. Furthermore, a second mounting lug 12 is provided on the outer peripheral wall of the pulse electric control box 1, and a pulse electric control box mounting column 306 is provided on the heat exchange component 300. The second mounting lug 12 is connected to the pulse electric control box mounting column 306 of the heat exchange component 300 by fasteners, so that the pulse electric control box 1 can be fixed on the heat exchange component 300 and the pulse electric control box 1 can be easily assembled and disassembled.
[0164] Furthermore, the lampholder assembly 2 is used to mount and connect to the bulb assembly 3, transmitting electrical energy and signals to the bulb assembly 3. The lampholder assembly 2 is separated from the pulse electric control box 1 and electrically connected via a lampholder input line 11, which transmits electrical energy and signals to the lampholder assembly 2. The lampholder assembly 2 includes a lampholder 21, a protective cover 22, lampholder terminals 23, an insulating housing 211, a pressure plate 24, an elastic member 25, and a waterproof rubber ring 26.
[0165] Specifically, lamp holder 21 is used to connect to bulb assembly 3. Its simple structure facilitates installation and securement of bulb assembly 3. A protective cover 22 is positioned over and connected to lamp holder 21 to define a mounting cavity. Protective cover 22 provides waterproof, dustproof, and electric shock-proof protection, ensuring the proper operation of the interior of lamp holder assembly 2 and bulb assembly 3, and protecting maintenance personnel during repairs. Furthermore, protective cover 22 includes a through-hole 221 for the lamp holder input cable 11 to pass through, transmitting electrical signals to lamp holder assembly 2.
[0166] Furthermore, the lamp holder terminal 23 is provided on the lamp holder 21 and is at least partially located in the mounting cavity. The lamp holder terminal 23 is connected to the lamp holder input line 11 and is suitable for connecting to the bulb terminal 31 on the bulb assembly 3. The lamp holder input line 11 includes a first wire body 111, a second wire body 112 and a third wire body 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 31. 3. The first wire body 111 is connected to the positive terminal 231 of the lamp holder, the second wire body 112 is connected to the negative terminal 232 of the lamp holder, and the third wire body 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 line 313 is electrically connected to the signal terminal 233 of the lamp holder, thereby 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 electric control box 1 to meet different usage requirements.
[0167] In addition, the lamp holder 21 includes an insulating housing 211 and a conductive plate 212. The insulating housing 211 prevents electric shock and ensures the safety of maintenance personnel during repairs. The protective cover 22 is connected to the insulating housing 211 via a second fastener 222. The lamp holder positive terminal 231 and the lamp holder negative terminal 232 are provided on the insulating housing 211. The conductive plate 212 is disposed within the insulating housing 211 and is an integral injection molded part thereof. The lamp holder signal terminal 233 is connected to the conductive plate 212, and electrical signals can be transmitted to the conductive plate 212 via the lamp holder signal terminal 233. The bulb assembly 3 is connected to the conductive plate 212, and the bulb assembly 3 and the conductive plate 212 cooperate to transmit electrical signals to the bulb assembly 3, thereby controlling the operation of the bulb assembly 3.
[0168] 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 an axial end of the annular portion 214, and the other end of the connecting portion 213 extends radially inwardly of the annular portion 214, and the lamp holder signal terminal 233 is connected to the connecting portion 213. Part of the bulb assembly 3 is located in the annular portion 214 and is connected to the annular portion 214, so that the electrical signal can be transmitted to the bulb assembly 3 to control the working time of the bulb assembly 3 and the emission frequency of the pulsed light. The annular portion 214 is provided with two bayonet holes 215 spaced apart along the circumferential direction of the annular portion 214, each bayonet hole 215 includes a first port 2151 and a second port 2152, the end of the first port 2151 away from the connecting portion 213 is open, and the second port 2152 is located on the circumferential side of the first port 2151 along the annular portion 214 and extends along the circumferential direction of the annular portion 214, and 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 to the two bayonet holes 215, and each protrusion 323 is suitable for entering the second port 2152 from the first port 2151 to realize the snap connection between the bulb assembly 3 and the lamp holder assembly 2.
[0169] Furthermore, two mounting protrusions 2111 are provided on the side of the insulating shell 211 facing the protective cover 22, and a mounting groove 2112 is provided in the mounting protrusion 2111. A through hole 2113 is provided on the bottom wall of each mounting groove 2112. The positive terminal 231 of the lamp holder and the negative terminal 232 of the lamp holder are respectively provided in the two mounting grooves 2112 and partially suitable for extending from the through hole 2113 to be connected to the positive terminal 311 and the negative terminal 312 of the lamp bulb respectively. Terminal bosses 234 are provided on the outer peripheral walls of the positive terminal 231 and the negative terminal 232 of the lamp holder. The terminal bosses 234 are located in the mounting grooves 2112 and are used to limit the positive terminal 231 and the negative terminal 232 of the lamp holder from moving toward the side away from the protective cover 22.
[0170] Furthermore, two spaced-apart mounting posts 216 are provided on the side of the lamp holder 21 facing the protective cover 22, and two recessed portions 223 are provided on the outer wall surface of the protective cover 22. The two recessed portions 223 correspond one-to-one to the two mounting posts 216, and a connecting hole 224 is provided on the bottom wall of each recessed portion 223. The second fastener 222 passes through the connecting hole 224 and is connected to the mounting post 216. The second fastener 222 is located in the recessed portion 223.
[0171] Furthermore, the pressing plate 24 is positioned within the mounting cavity and covers the mounting protrusion 2111. The pressing plate 24 has two escape holes 241 for the lamp holder's positive terminal 231 and the lamp holder's negative terminal 232 to pass through, respectively. An elastic member 25 is provided between each terminal boss 234 and the pressing plate 24 to drive the lamp holder's positive terminal 231 and the lamp holder's negative terminal 232 to move away from the pressing plate 24. The pressing plate 24 is connected to the mounting protrusion 2111 via a first fastener 242, which is located between the two mounting grooves 2112.
[0172] Furthermore, the waterproof rubber ring 26 is clamped in the through hole 221, and a wire hole 261 is provided on the waterproof rubber ring 26 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 along the circumferential direction of the waterproof rubber ring 26. The part of the protective cover 22 adjacent to the through hole 221 is clamped in the annular groove 262, thereby achieving a tight fit between the protective cover 22 and the waterproof rubber ring 26.
[0173] In addition, the heat exchanger bracket 302 has an insertion hole 303, into which the lamp holder assembly 2 is inserted. The outer peripheral wall of the lamp holder assembly 2 has a baffle 27 extending along 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. After the lamp holder assembly 2 is installed, the baffle 27 is used to block the pulsed light leaking from the insertion hole 303, thereby preventing the user from 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 rib 304 surrounding the insertion hole 303. The baffle 27 abuts against the annular rib 304, providing support and positioning for the installation and fixation of the lamp holder assembly 2. Furthermore, a first mounting lug 217 is provided on the outer peripheral wall of the lamp holder 21, and a lamp holder assembly mounting column 305 is provided on the heat exchange component 300. The first mounting lug 217 is connected to the lamp holder assembly mounting column 305 of the heat exchange component 300 by a third fastener 2171, so that the lamp holder assembly 2 can be fixed on the heat exchange component 300 and the lamp holder assembly 2 can be easily disassembled and assembled.
[0174] 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 the airflow within the area enclosed by the air duct component 400 and the heat exchange component 300, as well as various microorganisms attached to the surfaces of the air duct component 400 and the heat exchange component 300. The bulb assembly 3 is connected to the lamp holder assembly 2, and the circuit can be connected and disconnected by connecting and disconnecting the bulb assembly 3 and the lamp holder assembly 2. This facilitates assembly and disassembly, and if either the lamp holder assembly 2 or the bulb assembly 3 is damaged, the corresponding damaged component can be replaced separately.
[0175] Furthermore, the lamp holder assembly 2 includes a bulb terminal 31 , a connecting base 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 colloid 39 .
[0176] Specifically, the connecting seat 32 is a conductive member, the connecting seat 32 is connected to the lamp holder signal terminal 233 and the bulb signal line 313, the connecting seat 32 has a connecting cavity 321, the bulb terminal 31 is arranged in the connecting cavity 321, the connecting cavity 321 has an opening 322 on the axial end facing the lamp tube 33, the lamp tube 33 is inserted into the opening 322 and the lamp tube 33 has a tube cavity 331, the tube cavity 331 is connected to the connecting cavity 321, and the outer peripheral wall of the lamp tube 33 near the end of the connecting seat 32 is provided with a ring extending along the circumferential direction of the lamp tube 33. shaped protrusion 332, the annular protrusion 332 is located in the connecting cavity 321 and abuts against the axial wall of the connecting cavity 321 on the side close to the lamp tube 33, the outer peripheral wall of the annular protrusion 332 is separated from the inner peripheral wall of the connecting cavity 321, and 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 cooperation between the annular protrusion 332 and the connecting seat 32.
[0177] Furthermore, the axial end of the connecting cavity 321 away from the lamp tube 33 is open, part of the plug 38 is arranged in the connecting cavity 321, and the other part is arranged in the tube cavity 331. The 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 bulb, respectively, which can be used to install and clamp the positive terminal 311 and the negative terminal 312 of the bulb. The plug 38 also has a first threading hole 383, a second threading hole 384 and a third threading hole 385, which are used for the positive wire 341, the negative wire 342 and the bulb signal line 313 to pass through, respectively, so that the positive wire 341, the negative wire 342 and the bulb signal line 313 can be extended into the tube cavity 331.
[0178] Furthermore, the light-emitting tube 34 is arranged in the tube cavity 331 and extends along the length direction of the tube cavity 331. The end of the light-emitting tube 34 close to the connecting seat 32 is connected to the positive terminal 311 of the bulb through the positive wire 341, and the end of the light-emitting tube 34 away from the connecting seat 32 is connected to the negative terminal 312 of the bulb through the negative wire 342. The signal line trigger coil 35 is arranged in the tube 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.
[0179] Furthermore, the insulating sleeve 37 is sleeved on the negative wire 342 to separate the negative wire 342 from the bulb signal line 313 to prevent the negative wire 342 from contacting the bulb signal line 313 and forming a short circuit.
[0180] In addition, the sealing colloid 39 is filled in 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. The sealing colloid 39 can cooperate with the plug 38 to achieve sealing of the tube cavity 331.
[0181] In addition, the main electric control box 500 is arranged in the shell 200 and is connected to the power supply outside the air conditioner 1000, so as to supply power to various components inside the air conditioner 1000. The pulse electric control box 1 is connected to the main electric control box 500 through the electric 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 buckle 401 for clamping the electric control box input line 13, which can limit the direction of the electric control box input line 13 and fix the electric control box input line 13 to a certain extent, thereby organizing the wiring harness inside the air conditioner 1000 and facilitating the maintenance of the air conditioner 1000.
[0182] Other structures and operations of the lamp holder assembly 2, the pulse lamp sterilization module 100 and the air conditioner 1000 according to the embodiment of the present invention are well known to those skilled in the art and will not be described in detail here.
[0183] In the description of this specification, the reference terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification and features of different embodiments or examples without contradiction.
[0184] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the claims and their equivalents.
Claims
1. A lamp holder assembly, characterized in that: include: A lamp holder, the lamp holder being used to connect a light bulb assembly; A protective cover, the protective cover is arranged on the lamp holder and connected to the lamp holder to define a mounting cavity, the protective cover having a through hole for the lamp holder input line to pass through; A lamp holder terminal, the lamp holder terminal being provided on the lamp holder and at least partially located within the mounting cavity, the lamp holder terminal being connected to the lamp holder input line and being adapted to be connected to the bulb terminal on the bulb assembly, the lamp holder terminal comprising a lamp holder positive terminal, a lamp holder negative terminal, and a lamp holder signal terminal. The lamp holder comprises: an insulating shell, the protective cover being connected to the insulating shell, the positive terminal of the lamp holder and the negative terminal of the lamp holder being provided on the insulating shell; A conductive plate is arranged in the insulating shell and connected to the insulating shell, the conductive plate includes an annular portion and a connecting portion, one end of the connecting portion is connected to an axial end of the annular portion, and the other end of the connecting portion extends toward the radial inner side of the annular portion, the lamp holder signal terminal is connected to the connecting portion, and part of the bulb assembly is located in the annular portion and connected to the annular portion.
2. The lamp holder assembly according to claim 1, wherein: The lamp holder input line includes a first wire body, a second wire body and a third wire body, and the bulb connection terminal includes a bulb positive terminal, a bulb negative terminal and a bulb signal line. The first wire body is connected to the positive terminal of the lamp holder, the second wire body is connected to the negative terminal of the lamp holder, and the third wire body is connected to the lamp holder signal terminal. The positive terminal of the bulb is electrically connected to the positive terminal of the lamp holder, the negative terminal of the bulb is electrically connected to the negative terminal of the lamp holder, and the bulb signal line is electrically connected to the lamp holder signal terminal.
3. The lamp holder assembly according to claim 1, wherein: The conductive plate is snap-fitted to the insulating shell, or connected via fasteners, or the conductive plate and the insulating shell are an integral injection-molded part.
4. The lamp holder assembly according to claim 1, wherein: The annular portion is provided with a plurality of bayonet holes spaced apart along the circumferential direction of the annular portion, each of the bayonet holes includes a first port and a second port, the first port is open at one end away from the connecting portion, the second port is located on one side of the first port along the circumferential direction of the annular portion and extends along the circumferential direction of the annular portion, the outer peripheral wall of the bulb assembly is provided with a plurality of protrusions spaced apart along the circumferential direction of the bulb assembly, the plurality of protrusions correspond one-to-one to the plurality of bayonet holes, and each of the protrusions is suitable for entering the second port from the first port.
5. The lamp holder assembly according to claim 1, wherein: Two mounting grooves are provided on the side of the insulating shell facing the protective cover, and a through hole is provided on the bottom wall of each mounting groove. The positive terminal of the lamp holder and the negative terminal of the lamp holder are respectively provided in the two mounting grooves and are partially adapted to extend from the through holes to be connected to the positive terminal and the negative terminal of the bulb respectively.
6. The lamp holder assembly according to claim 5, wherein: A mounting protrusion is provided on one side of the insulating housing facing the protective cover, the mounting groove is provided on the mounting protrusion, a terminal boss is provided on the outer peripheral wall of the positive terminal of the lamp holder and the negative terminal of the lamp holder, the terminal boss is located in the mounting groove, and the lamp holder assembly further includes: A pressing plate, the pressing plate being located in the mounting cavity and covering the mounting protrusion, the pressing plate having two avoidance holes for respectively passing through the positive terminal of the lamp holder and the negative terminal of the lamp holder; There are two elastic members, and the two elastic members are respectively arranged in the two mounting grooves. The elastic member is located between the terminal boss and the pressure plate, and is used to drive the positive terminal of the lamp holder and the negative terminal of the lamp holder to move in a direction away from the pressure plate.
7. The lamp holder assembly according to claim 6, wherein: The pressing plate is connected to the mounting protrusion via a first fastener, and the first fastener is located between the two mounting grooves.
8. The lamp holder assembly according to claim 1, wherein: The protective cover is connected to the lamp holder via a second fastener.
9. The lamp holder assembly according to claim 8, wherein: A plurality of spaced-apart mounting posts are provided on the side of the lamp holder facing the protective cover, and a plurality of recessed portions are provided on the outer wall surface of the protective cover. The plurality of recessed portions correspond one-to-one to the plurality of mounting posts, and a connecting hole is provided on the bottom wall of each of the recessed portions. The second fastener passes through the connecting hole and is connected to the mounting post, and the second fastener is located in the recessed portion.
10. The lamp holder assembly according to claim 1, wherein: The lamp holder assembly further comprises: A waterproof rubber ring is clamped in the through hole, and a wire hole is provided on the waterproof rubber ring for the lamp holder input wire to pass through.
11. The lamp holder assembly according to claim 10, wherein: An annular groove extending along the circumferential direction of the waterproof rubber ring is provided on the peripheral wall of the waterproof rubber ring, and a portion of the protective cover adjacent to the through hole is clamped in the annular groove.
12. A pulse lamp sterilization module, characterized in that: include: Pulse electric control box; The lamp holder assembly according to any one of claims 1 to 11, wherein the lamp holder assembly is spaced apart from the pulse electric control box and is electrically connected to the lamp holder input line; A bulb assembly is connected to the lamp holder assembly.
13. An air conditioner, characterized in that: include: case; a heat exchange component, the heat exchange component being disposed in the shell; an air duct component, the air duct component being arranged in the housing; According to the pulse lamp sterilization module according to claim 12, the pulse lamp sterilization module is arranged 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.
14. The air conditioner according to claim 13, wherein: The heat exchange component includes: Heat exchanger body; The heat exchanger bracket is arranged on the outside of the heat exchanger body and connected to the heat exchanger body. The pulse electric control box is arranged on the side of the heat exchanger bracket away from the heat exchanger body in the length direction. The heat exchanger bracket has an entry hole. The lamp holder assembly is inserted into the entry hole. The bulb assembly is located on the side of the heat exchanger bracket facing the heat exchanger body.
15. The air conditioner according to claim 14, wherein: A baffle extending along the circumferential direction of the lamp holder assembly is provided on the outer peripheral wall of the lamp holder assembly, and the baffle is located on a side of the heat exchanger bracket away from the heat exchanger body.
16. The air conditioner according to claim 15, characterized in that A side of the heat exchanger bracket away from the heat exchanger body is provided with an annular rib surrounding the penetration hole, and the baffle abuts against the annular rib.
17. The air conditioner according to claim 14, wherein: The housing comprises: chassis; A back plate assembly and a panel assembly, wherein the back plate assembly and the panel assembly are connected and one end of each is connected to the chassis, and the heat exchanger bracket is provided on a side of the heat exchanger body close to the back plate assembly; A top plate is connected to the back plate assembly and one end of the panel assembly facing away from the bottom chassis.
18. The air conditioner according to claim 13, wherein: A first mounting lug is provided on the outer peripheral wall of the lamp holder, and the first mounting lug is connected to the heat exchange component.
19. The air conditioner according to claim 13, wherein: A second mounting lug is provided on the outer peripheral wall of the pulse electric control box, and the second mounting lug is connected to the heat exchange component.
20. The air conditioner according to claim 13, wherein: Also includes: A main electric control box is arranged in the shell, the pulse electric control box is connected to the main electric control box through an electric control box input line, and at least one of the heat exchange component and the air duct component is provided with a wire clip for clamping the electric control box input line.
Citation Information
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