Combined module for air conditioner and air conditioner

By using an electronic control box to control the pulse lamp and the negative ion generator in the air conditioner, the problems of high cost of electronic control devices and complex installation of pulse lamps in the prior art are solved, and the effect of reducing costs and improving maintenance efficiency is achieved.

CN120084022APending Publication Date: 2025-06-03CHONGQING MIDEA REFRIGERATION EQUIP CO LTD +1
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Patent Information

Application Number
CN202311594778.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-27
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

In existing air conditioners, independent high-voltage package power supply control of pulse lamp sterilization module and negative ion dust removal module leads to high cost of electrical control devices, and complex installation and disassembly of pulse lamps, and low maintenance efficiency.

Method used

A combined module for air conditioners is proposed, which controls the pulse lamp and negative ion generator through an electronic control box, reduces the number of electronic control components, reduces the cost of the whole machine, and simplifies the installation and maintenance process.

Benefits of technology

The control and power supply of pulse lamps and negative ion generators is achieved through an electronic control box, which reduces the number of electronic control components inside the air conditioner, reduces the cost of air conditioner assembly, and improves the efficiency of installation and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a combined module for an air conditioner and the air conditioner, and the combined module comprises an electric control box which is arranged on a shell of the air conditioner and is provided with a first power supply end and a second power supply end; the pulse lamp is arranged on the shell and suitable for emitting pulse light towards the interior of the shell, and the pulse lamp is electrically connected with the first power supply end; the negative ion generator is arranged in the shell, the negative ion generator is suitable for generating negative ions into the shell, and the negative ion generator is electrically connected with the second power supply end. According to the combined module, the pulse lamp and the negative-ion generator are controlled by the electric control box to sterilize and dedust the interior of the air conditioner, the number of electric control elements is reduced, and the whole machine cost is reduced.
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Description

Technical Field

[0001] The present invention relates to the field of air conditioners, and more particularly to a combined module for an air conditioner and an air conditioner. Background Art

[0002] In the prior art, an air conditioner has a pulsed lamp sterilization module and a negative ion dust removal module. Among them, the pulsed lamp sterilization module and the negative ion dust removal module are both powered and controlled by their respective separate high-voltage packages. The cost of the electronic control devices is relatively high. Moreover, the pulsed lamp is installed inside the air conditioner air duct, and the pulsed lamp is installed on the air conditioner housing using screws. The installation and disassembly of the pulsed lamp are very complicated, and the maintenance efficiency of the pulsed lamp is low. Summary of the Invention

[0003] The present invention aims to at least solve one of the technical problems existing in the prior art. To this end, an object of the present invention is to provide a combined module for an air conditioner. The combined module of the present application controls a pulsed lamp and a negative ion generator through an electronic control box to sterilize and remove dust inside the air conditioner, reducing the number of electronic control components and lowering the overall cost of the machine.

[0004] The present invention also provides an air conditioner having the above combined module.

[0005] The combined module for an air conditioner according to the present invention includes: an electronic control box, the electronic control box is disposed on the housing of the air conditioner and the electronic control box is provided with a first power supply terminal and a second power supply terminal; a pulsed lamp, the pulsed lamp is disposed on the housing and is adapted to emit pulsed light toward the inside of the housing, and the pulsed lamp is electrically connected to the first power supply terminal; a negative ion generator, the negative ion generator is disposed on the housing, the negative ion generator is adapted to generate negative ions into the housing, and the negative ion generator is electrically connected to the second power supply terminal.

[0006] The combined module for an air conditioner according to the present invention electrically connects the pulsed lamp and the negative ion generator to the same electronic control box, and controls and powers the pulsed lamp and the negative ion generator through one electronic control box, reducing the number of electronic control components inside the air conditioner and lowering the overall cost of the air conditioner. Since the number of electronic control boxes is smaller, the installation layout of the electronic control boxes is also more convenient.

[0007] According to an embodiment of the present invention, the pulsed lamp includes: a lower lamp base cover, the lower lamp base cover is provided with a light-emitting hole facing the inside of the housing; an upper lamp base cover, the upper lamp base cover is disposed on the lower lamp base cover and defines a lamp body accommodating cavity between the upper lamp base cover and the lower lamp base cover, and a first light guiding surface facing the light-emitting hole is formed on the upper lamp base cover; a lamp body, the lamp body is disposed in the lamp body accommodating cavity and is adapted to emit light toward the first light guiding surface and the light-emitting hole, and the lamp body is electrically connected to the first power supply terminal.

[0008] According to an embodiment of the present invention, a second light guide surface is formed on the lower cover of the lamp base, the second light guide surface is connected to the first light guide surface, and the first light guide surface and the second light guide surface are configured as a parabolic light guide surface with the center of the lamp body as the focus.

[0009] According to an embodiment of the present invention, the lower cover of the lamp base includes: a lower cover plate of the lamp base, an outgoing light hole is provided on the lower cover plate of the lamp base, and second light guide surfaces located on both sides of the outgoing light hole are formed on the lower cover plate of the lamp base, and the lower cover plate of the lamp base is adapted to be fixedly clamped with an evaporator component; a first clamping plate, the first clamping plate is provided on at least one side in the width direction of the lower cover plate of the lamp base, and a first clamping groove adapted to accommodate the lamp body is formed on the first clamping plate; the upper cover of the lamp base includes: an upper cover plate of the lamp base, a first light guide surface facing the outgoing light hole is provided on the upper cover plate of the lamp base; a second clamping plate, the second clamping plate is provided on at least one side in the width direction of the upper cover plate of the lamp base, and a second clamping groove adapted to accommodate the lamp body is formed on the second clamping plate.

[0010] According to an embodiment of the present invention, the first clamping plate and the second clamping plate are correspondingly arranged, a clamping groove is formed on one of the first clamping plate and the second clamping plate, and a clamping protrusion cooperating with the clamping groove is formed on the other of the first clamping plate and the second clamping plate.

[0011] According to an embodiment of the present invention, a first clamping rib protruding towards the lamp body is formed on the inner wall of the first clamping groove and / or a second clamping rib protruding towards the lamp body is formed in the second clamping groove.

[0012] According to an embodiment of the present invention, a first flanging and a second flanging are provided on the lower cover plate of the lamp base at intervals in the extending direction of the lamp body; a third flanging and a fourth flanging are provided on the upper cover plate of the lamp base at intervals in the extending direction of the lamp body; wherein the first flanging and the third flanging are arranged opposite to each other in the extending direction of the lamp body, and a first limiting notch is formed on one of the first flanging and the third flanging, and the other of the first flanging and the third flanging is embedded into the first limiting notch; the second flanging and the fourth flanging are arranged opposite to each other in the extending direction of the lamp body, and a second limiting notch is formed on one of the second flanging and the fourth flanging, and the other of the second flanging and the fourth flanging is embedded into the second limiting notch.

[0013] According to an embodiment of the present invention, a wire buckle and a limiting post are formed on the second clamping plate, the opening direction of the wire buckle is orthogonal to the extending direction of the lamp body, and the wire buckle and the limiting post are arranged alternately in the extending direction of the lamp body.

[0014] An air conditioner according to another embodiment of the present invention will be briefly described below.

[0015] The air conditioner according to the present invention comprises a shell and the combination module described in any one of the above embodiments, the combination module is arranged in the shell, an air inlet is provided in the shell, and the combination module is suitable for sterilizing and removing dust from the air entering the air duct from the air inlet. Since the air conditioner according to the present invention has the combination module described in any one of the above embodiments, the air conditioner according to the present invention can control the pulse lamp and the negative ion generator through an electric control box, thereby reducing the number of electric control components and reducing the overall cost of the air conditioner.

[0016] According to one embodiment of the present invention, it includes: an air outlet frame, which is provided with an air outlet; an evaporator component, which is connected to the air outlet frame, and an air duct is provided between the evaporator component and the air outlet frame; wherein the pulse lamp is arranged on the evaporator component and is suitable for emitting pulse light toward the air inlet.

[0017] According to one embodiment of the present invention, the evaporator component includes: an upper plate and a lower plate, the upper plate and the lower plate are spaced apart; supporting ribs, the two ends of the supporting ribs connect the upper plate and the lower plate and form the air inlet between the upper plate and the lower plate; wherein a light-transmitting hole open toward the air inlet is formed on one of the upper plate and the lower plate, the pulse lamp is arranged on a side of the upper plate away from the air inlet or a side of the lower plate away from the air inlet, and the pulse lamp emits pulse light toward the air inlet through the light-transmitting hole.

[0018] According to one embodiment of the present invention, the upper plate or the lower plate is provided with a first position-limiting fitting portion located at the periphery of the light-transmitting hole, and the pulse lamp is provided with a second position-limiting fitting portion suitable for engaging with the first position-limiting fitting portion.

[0019] According to one embodiment of the present invention, the upper plate or the lower plate is provided with a first limiting rib and a second limiting rib located on both sides of the light-transmitting hole, and the first limiting rib and the second limiting rib are provided with a first blocking rib extending toward each other; the pulse lamp is respectively provided with a second blocking rib on both sides in the width direction, and the pulse lamp is accommodated between the first limiting rib and the second limiting rib, and the second blocking rib is arranged opposite to the first blocking rib in the direction away from the air inlet.

[0020] According to one embodiment of the present invention, the first limiting fitting portion is arranged between the first limiting rib and the second limiting rib and is constructed as a buckle, and the second limiting fitting portion is configured as a third retaining rib arranged on one side of the length direction of the pulse lamp, and the third retaining rib is suitable for snap-fitting with the buckle.

[0021] According to an embodiment of the present invention, a clamping hole is formed on the air outlet frame, and the clamping hole penetrates from the side of the air outlet frame facing the evaporator component to the air outlet, and the negative ion generator penetrates through the clamping hole and is arranged facing the air outlet.

[0022] According to an embodiment of the present invention, a limiting protrusion is provided on the negative ion generator, the thickness of the limiting protrusion gradually decreases in the direction facing the air outlet, and the limiting protrusion is adapted to abut against the wall surface of the air outlet frame facing the air outlet.

[0023] According to an embodiment of the present invention, the air outlet frame includes: an air outlet housing on which the air outlet is formed; a top housing provided on the top of the air outlet housing, and an electric control box is provided on the side of the top housing facing the evaporator component.

[0024] According to an embodiment of the present invention, a first fixing portion is provided on the top housing, a second fixing portion is provided on the outer periphery of the electric control box, the first fixing portion and the second fixing portion are constructed as a plurality of one-to-one correspondences and are arranged on the outer periphery of the electric control box, and the first fixing portion and the second fixing portion are connected by fasteners and / or snap connections.

[0025] According to an embodiment of the present invention, a support surface for supporting the electric control box is formed on the top of the air outlet housing, and a stop rib is formed on the support surface, and the stop rib abuts against at least part of the edge of the electric control box.

[0026] According to an embodiment of the present invention, a clamping hole penetrating in the thickness direction is formed on the air outlet frame, the negative ion generator penetrates through the clamping hole and is arranged facing the air outlet, and a limiting protrusion is provided on the negative ion generator, and the thickness of the limiting protrusion gradually decreases in the direction facing the air outlet.

[0027] Additional aspects and advantages of the present invention will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] The above and / or additional aspects and advantages of the present invention will become apparent and easy to understand from the description of the embodiments in conjunction with the following drawings, wherein:

[0029] Figure 1 is a structural diagram of a combined module according to an embodiment of the present invention;

[0030] Figure 2 is a bottom view of a pulse lamp according to an embodiment of the present invention;

[0031] Figure 3Exploded view of the upper lamp socket cover, lamp body and lower lamp socket cover according to an embodiment of the present invention;

[0032] Figure 4 Structural diagram of the upper lamp socket cover according to an embodiment of the present invention;

[0033] Figure 5 Structural diagram of the lower lamp socket cover according to an embodiment of the present invention;

[0034] Figure 6 Overall structural diagram of the pulse lamp according to an embodiment of the present invention;

[0035] Figure 7 It is Figure 6 Cross-sectional view taken along A-A in;

[0036] Figure 8 It is Figure 6 Cross-sectional view taken along B-B in;

[0037] Figure 9 Figure 8 Cross-sectional view taken along C-C in;

[0038] Figure 10 Assembly schematic diagram of the combination module and the air conditioner according to an embodiment of the present invention;

[0039] Figure 11 It is Figure 10 Partial schematic diagram showing a in;

[0040] Figure 12 Structural diagram of the evaporator component according to an embodiment of the present invention;

[0041] Figure 13 It is Figure 12 Partial schematic diagram showing b in;

[0042] Figure 14 Cooperating schematic diagram of the combination module and the evaporator component according to an embodiment of the present invention;

[0043] Figure 15 It is Figure 14 Partial schematic diagram showing c in;

[0044] Figure 16 It is Figure 14 Partial cross-sectional view taken along D-D in;

[0045] Figure 17 Overall structural diagram of the air conditioner according to an embodiment of the present invention;

[0046] Figure 18 Exploded view of the air conditioner according to an embodiment of the present invention;

[0047] Figure 19 Structural diagram of an air outlet frame according to an embodiment of the present invention;

[0048] Figure 20 Assembly schematic diagram of a combination module according to an embodiment of the present invention;

[0049] Figure 21 is Figure 20 Partial schematic diagram of the circled d in

[0050] Figure 22 Assembly schematic diagram of a negative ion generator according to an embodiment of the present invention;

[0051] Figure 23 is Figure 22 Partial schematic diagram of the circled e in

[0052] Reference numerals:

[0053] Combination module 1;

[0054] Upper cover 101 of the lamp holder, lower cover 102 of the lamp holder;

[0055] Electric control box 11; first power supply terminal 111, pulse lamp input line 1111, second power supply terminal 112, negative ion input line 1121; second fixing part 1131, electric control box input line 114, wire outlet hole 1141;

[0056] Pulse lamp 12, lower cover plate 121 of the lamp holder, light outlet hole 1211, second light guide surface 1212, first clamping plate 1213, first clamping groove 12131, first clamping rib 12132, clamping protrusion 1214, first flanging 12151, first limiting stop 121511, second flanging 12152, second limiting stop 121521, upper cover plate 122 of the lamp holder, first light guide surface 1221, second clamping plate 1222, second clamping groove 12221, second clamping rib 12222, wire buckle 12223, limiting post 12224, clamping groove 1223, third flanging 12241, fourth flanging 12242, lamp body 123, sealing plug 1231; negative ion generator 13, limiting protrusion 131;

[0057] Air outlet frame 14, air outlet 141, first fixing part 142, clamping hole 143, air outlet housing 144, stop rib 1441, top housing 145; evaporator component 15, upper plate 151, light transmission hole 1511, first limiting rib 15121, second limiting rib 15122, first stop rib 15123, second stop rib 15124, third stop rib 15125, buckle 15126, support rib 152, lower plate 153, air inlet 154;

[0058] Upper panel 161, lower panel 162, top cover 163, chassis 164, wind wheel assembly 165, back panel component 166. Detailed implementation mode

[0059] The embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation of the present invention.

[0060] In the prior art, an air conditioner has a pulse lamp sterilization module and a negative ion dust removal module. Among them, both the pulse lamp sterilization module and the negative ion dust removal module are powered and controlled by their respective separate high-voltage packages, resulting in a relatively high cost of the electronic control components. Moreover, the pulse lamp is installed inside the air conditioner duct, and the pulse lamp is installed on the air conditioner housing using screws. The installation and disassembly of the pulse lamp are very complicated, and the maintenance efficiency of the pulse lamp is low.

[0061] The following refers to Figures 1 - 23 Describe the combined module 1 for an air conditioner according to an embodiment of the present invention.

[0062] The combined module 1 for an air conditioner according to the present invention includes an electronic control box 11, a pulse lamp 12, and a negative ion generator 13. The electronic control box 11 is disposed on the housing of the air conditioner, and the electronic control box 11 is provided with a first power supply terminal 111 and a second power supply terminal 112; the pulse lamp 12 is disposed on the housing and is adapted to emit pulsed light toward the inside of the housing, and the pulse lamp 12 is electrically connected to the first power supply terminal 111; the negative ion generator 13 is disposed on the housing, and the negative ion generator 13 is adapted to generate negative ions inside the housing, and the negative ion generator 13 is electrically connected to the second power supply terminal 112.

[0063] As Figure 1 shown, the present application provides a first power supply terminal 111 and a second power supply terminal 112 on the electronic control box 11. The first power supply terminal 111 is adapted to be electrically connected to the pulse lamp 12, and the second power supply terminal 112 is adapted to be electrically connected to the negative ion generator 13. One end of the electronic control box 11 can be connected to the main control box through the electronic control box input line 114 for control and power supply by the main control box. After the pulse lamp 12 is powered on, it can emit pulsed light inside the housing, and the pulsed light can kill bacteria in the air, thereby realizing the purification of the air entering the inside of the housing. After the negative ion generator 13 is powered on, it can generate negative ions inside the housing, and the negative ions can adsorb tiny particles such as soot and lint in the air, realizing the purification of the air. The present application realizes the sterilization and purification of the air by electrically connecting an electronic control box 11 to a pulse lamp 12 and a negative ion generator 13 respectively, ensuring the user experience.

[0064] According to the present invention, the combined module 1 for an air conditioner electrically connects the pulse lamp 12 and the negative ion generator 13 to the same electronic control box 11, and controls and supplies power to the pulse lamp 12 and the negative ion generator 13 through one electronic control box 11, reducing the number of electronic control components inside the air conditioner and lowering the overall cost of the air conditioner. Since the number of electronic control boxes 11 is smaller, the installation layout of the electronic control box 11 is more convenient.

[0065] According to an embodiment of the present invention, the pulse lamp 12 includes a lamp base lower cover 102, a lamp base upper cover 101, and a lamp body 123. The lamp base lower cover 102 is provided with a light-emitting hole 1211 facing the inside of the housing; the lamp base upper cover 101 is disposed on the lamp base lower cover 102 and defines a lamp body accommodation cavity between the lamp base upper cover 101 and the lamp base lower cover 102. A first light guide surface 1221 facing the light-emitting hole 1211 is formed on the lamp base upper cover 101; the lamp body 123 is disposed in the lamp body accommodation cavity and is adapted to emit light toward the first light guide surface 1221 and the light-emitting hole 1211, and the lamp body 123 is electrically connected to the first power supply terminal 111.

[0066] The structure of the pulse lamp 12 is as Figures 2 - 6 shown. The lamp base upper cover 101 and the lamp base lower cover 102 can be connected by snap fasteners or by bolts, and a lamp body accommodation cavity adapted to accommodate the lamp body 123 is formed between the lamp base upper cover 101 and the lamp base lower cover 102. After the lamp body 123 is assembled with the lamp base upper cover 101 and the lamp base lower cover 102, the lamp body 123 in the lamp body accommodation cavity emits pulsed light to the inside of the housing to sterilize and purify the air. Among them, the lamp base lower cover 102 is provided with a light-emitting hole 1211, and the light-emitting hole 1211 can be directly opposite to the air duct of the air conditioner. The light emitted by the lamp body 123 can be emitted from the light-emitting hole 1211 and directly enter the air duct to improve the sterilization effect on the air in the air duct. A first light guide surface 1221 facing the light-emitting hole 1211 is formed on the lamp base upper cover 101. As Figure 3 shown, the first light guide surface 1221 is configured as an arc-shaped light guide surface. After the lamp body 123 is electrically connected to the first power supply terminal 111, the electronic control box 11 supplies power to the lamp body 123. The pulsed light emitted by the lamp body 123 is incident on the first light guide surface 1221 at different angles. The first light guide surface 1221 can reflect the incident pulsed light at different angles. The pulsed light reflected by the first light guide surface 1221 is emitted to the inside of the housing through the light-emitting hole 1211. A part of the pulsed light emitted by the lamp body 123 directly enters the inside of the air duct, and a part of the pulsed light is reflected by the first light guide surface 1221, increasing the irradiation area of the pulsed light and improving the sterilization range of the pulse lamp 12. And after a part of the pulsed light is parallelly reflected by the first light guide surface 1221, the intensity of the pulsed light increases, enhancing the sterilization effect.

[0067] According to an embodiment of the present invention, a second light guide surface 1212 is formed on the lower lamp base cover 102. The second light guide surface 1212 is connected to the first light guide surface 1221, and the first light guide surface 1221 and the second light guide surface 1212 are configured as a parabolic light guide surface with the center of the lamp body 123 as the focus.

[0068] Specifically, after the upper lamp base cover 122 and the lower lamp base cover 121 are assembled, the second light guide surface 1212 is connected to the first light guide surface 1221. The first light guide surface 1221 and the second light guide surface 1212 surround at least a part of the outer periphery of the lamp body 123 and form a parabolic light guide surface with the center of the lamp body 123 as the focus. A part of the pulsed light emitted from the lamp body 123 directly enters the air duct through the light outlet hole 1211, and another part of the pulsed light enters the parabolic light guide surface at different angles. After being reflected by the parabolic light guide surface, the pulsed light is reflected to the air duct at different angles, so that the irradiation range of the pulsed light is larger, and the parabolic light guide surface has strong light condensing performance. The pulsed light emitted from the lamp body 123 is reflected by the parabolic light guide surface, and the light intensity of the pulsed light is greater, enhancing the sterilization effect.

[0069] According to an embodiment of the present invention, the lower lamp base cover 102 includes a lower lamp base plate 121 and a first clamping plate 1213. An light outlet hole 1211 is provided on the lower lamp base plate 121. Second light guide surfaces 1212 are formed on both sides of the light outlet hole 1211 on the lower lamp base plate 121. The lower lamp base plate 121 is adapted to be fixedly connected to the evaporator component 15 by clamping; the first clamping plate 1213 is provided on at least one side in the width direction of the lower lamp base plate 121, and a first clamping groove 12131 adapted to receive the lamp body 123 is formed on the first clamping plate 1213; the upper lamp base cover 101 includes an upper lamp base plate 122 and a second clamping plate 1222. A first light guide surface 1221 facing the light outlet hole 1211 is provided on the upper lamp base plate 122; the second clamping plate 1222 is provided on at least one side in the width direction of the upper lamp base plate 122, and a second clamping groove 12221 adapted to receive the lamp body 123 is formed on the second clamping plate 1222.

[0070] The structure of the lower lamp base plate 121 is as Figures 10 - 12 shown. Among them, the lower lamp base plate 121 can be fixedly connected to the evaporator component 15 of the air conditioner by clamping. In the prior art, the pulsed lamp is generally arranged in the air duct of the air conditioner by means of screw fixed connection. The assembly difficulty of the pulsed lamp is large, the assembly efficiency is low, and the after-sales inspection and maintenance efficiency of the pulsed lamp is low. The lower lamp base plate 121 of the present application is fixedly connected to the evaporator component 15 of the air conditioner by clamping and can be arranged outside the air duct, greatly improving the production and assembly efficiency of the whole air conditioner. Moreover, since the lower lamp base plate 121 is fixedly connected to the evaporator component 15 by clamping, the disassembly of the pulsed lamp 12 is more convenient, and the after-sales inspection and maintenance efficiency is higher;

[0071] An optical outlet hole 1211 is provided on the lower cover plate 121 of the lamp holder. The optical outlet hole 1211 can be directly opposite to the air duct in the air conditioner. The pulsed light emitted by the lamp body 123 of the pulsed lamp 12 can directly enter the air duct through the optical outlet hole 1211, improving the sterilization effect of the pulsed light. Second light guide surfaces 1212 are respectively formed on both sides of the optical outlet hole 1211. The second light guide surfaces 1212 can be connected to the first light guide surfaces 1221 on the upper cover plate 122 of the lamp holder. The second light guide surfaces 1212 and the first light guide surfaces 1221 together form a parabolic light guide surface. The second light guide surfaces 1212 are inclined relative to the plane where the lower cover plate 121 of the lamp holder is located and extend towards the upper cover plate 122 of the lamp holder. After the pulsed light emitted by the lamp body 123 enters the first light guide surfaces 1221 and the second light guide surfaces 1212, it is reflected by the first light guide surfaces 1221 and the second light guide surfaces 1212 and emitted at different angles, so as to increase the irradiation range of the pulsed light and increase the pulsed light sterilization area. At the same time, the second light guide surfaces 1212 can reflect the pulsed light in parallel, greatly enhancing the intensity of the pulsed light and enhancing the sterilization effect.

[0072] First clamping plates 1213 are provided on both sides in the width direction of the lower cover plate 121 of the lamp holder. A first clamping groove 12131 for accommodating the lamp body 123 is formed on the first clamping plates 1213. The first clamping groove 12131 can be configured as a U-shaped groove. The first clamping groove 12131 covers at least a part of the outer periphery of the lamp body 123, and the first clamping groove 12131 has a stronger wrapping effect on the lamp body 123. Second clamping plates 1222 opposite to the first clamping plates 1213 are provided on both sides in the width direction of the upper cover plate 122 of the lamp holder. A second clamping groove 12221 is formed in the second clamping plates 1222. The first clamping groove 12131 and the second clamping groove 12221 are arranged opposite to each other. The end of the lamp body 123 is accommodated in the first clamping groove 12131 and the second clamping groove 12221. Among them, a sealing plug 1231 is provided at the end of the lamp body 123. The sealing plug 1231 can seal the gap between the lamp body 123 and the first clamping groove 12131 and the second clamping groove 12221, so that the lamp body 123 is stably arranged between the upper cover plate 122 of the lamp holder and the lower cover plate 121 of the lamp body, avoiding the lamp body 123 from shaking relative to the upper cover plate 122 of the lamp holder and the lower cover plate 121 of the lamp holder.

[0073] According to an embodiment of the present invention, the first clamping plates 1213 and the second clamping plates 1222 are correspondingly arranged. A clamping groove 1223 is formed on one of the first clamping plates 1213 and the second clamping plates 1222. A clamping protrusion 1214 cooperating with the clamping groove 1223 is formed on the other of the first clamping plates 1213 and the second clamping plates 1222.

[0074] As Figure 3As shown, the first clamping plate 1213 is arranged on both sides in the width direction of the lower cover plate 121 of the lamp base, and the second clamping plate 1222 is arranged on both sides in the width direction of the upper cover plate 122 of the lamp base. The first clamping plate 1213 and the second clamping plate 1222 are arranged opposite to each other. A clamping groove 1223 is formed on the second clamping plate 1222. The clamping grooves 1223 are configured in multiple numbers. The multiple clamping grooves 1223 are arranged at intervals on the second clamping plate 1222 and extend towards the second clamping plate 1222 respectively. A clamping protrusion 1214 is formed on the first clamping plate 1213. The clamping protrusions 1214 and the clamping grooves 1223 correspond one by one. Each clamping protrusion 1214 is respectively clamped with the inner wall of the corresponding clamping groove 1223, so as to fasten the upper cover plate of the lamp base and the lower cover plate 121 of the lamp base. By arranging the cooperation and connection of multiple clamping grooves 1223 and multiple clamping protrusions 1214, the assembly of the upper cover plate and the lower cover plate of the lamp body 123 is more stable. Moving the clamping protrusion 1214 out of the clamping groove can separate the upper cover plate 122 of the lamp base from the lower cover plate 121 of the lamp base, which is convenient for the maintenance and replacement of the lamp body 123.

[0075] According to an embodiment of the present invention, a first clamping rib 12132 protruding towards the lamp body 123 is formed on the inner wall of the first clamping groove 12131 and / or a second clamping rib 12222 protruding towards the lamp body 123 is formed in the second clamping groove 12221.

[0076] Specifically, a first clamping rib 12132 is formed on the inner wall of the first clamping groove 12131, and a second clamping rib 12222 is formed on the inner wall of the second clamping groove 12221. Both the first clamping rib 12132 and the second clamping rib 12222 protrude towards the lamp body 123. After the upper cover plate 122 of the lamp base and the lower cover plate 121 of the lamp base are fastened, at least part of the lamp body 123 is respectively received in the first clamping groove 12131 and the second clamping groove 12221. At least part of the outer periphery of the lamp body 123 abuts against the first clamping rib 12132 and the second clamping rib 12222 respectively to limit the shaking of the lamp body 123 relative to the upper cover plate 122 of the lamp base and the lower cover plate 121 of the lamp base, ensuring that the lamp body 123 is stably received in the lamp body accommodation cavity. In this application, by arranging multiple first clamping ribs 12132 and second clamping ribs 12222 to support the outer periphery of the lamp body 123, the assembly of the lamp body 123 with the upper cover plate 122 of the lamp base and the lower cover plate 121 of the lamp base is more stable.

[0077] Among them, the first clamping rib 12132 and the second clamping rib 12222 can be symmetrically arranged relative to the lamp body 123, or the first clamping rib 12132 and the second clamping rib 12222 can be asymmetrically arranged relative to the lamp body 123. When the first clamping rib 12132 and the second clamping rib 12222 are symmetrically arranged relative to the lamp body 123, stable support is provided for the symmetric regions in the circumferential direction of the lamp body 123, and the force on the lamp body 123 is more stable. When the first clamping rib 12132 and the second clamping rib 12222 are asymmetrically arranged relative to the lamp body 123, the force-bearing area in the circumferential direction of the lamp body 123 is increased, and the installation of the lamp body 123 is more stable.

[0078] According to an embodiment of the present invention, a first flanging 12151 and a second flanging 12152 are provided on the lower cover plate 121 of the lamp socket and are spaced apart in the extending direction of the lamp body 123; a third flanging 12241 and a fourth flanging 12242 are provided on the upper cover plate 122 of the lamp socket and are spaced apart in the extending direction of the lamp body 123; wherein the first flanging 12151 and the third flanging 12241 are disposed opposite to each other in the extending direction of the lamp body 123, and a first limiting notch 121511 is formed on one of the first flanging 12151 and the third flanging 12241, and the other of the first flanging 12151 and the third flanging 12241 is embedded into the first limiting notch 121511; the second flanging 12152 and the fourth flanging 12242 are disposed opposite to each other in the extending direction of the lamp body 123, and a second limiting notch 121521 is formed on one of the second flanging 12152 and the fourth flanging 12242, and the other of the second flanging 12152 and the fourth flanging 12242 is embedded into the second limiting notch 121521.

[0079] Among them, the first flanging 12151 and the second flanging 12152 extend towards the upper cover plate 122 of the lamp socket, and the third flanging 12241 and the fourth flanging 12242 extend towards the lower cover plate 121 of the lamp socket. A first limiting notch 121511 can be provided on the first flanging 12151, and a second limiting notch 121521 can be provided on the second flanging 12152. During the assembly process of the upper cover plate 122 and the lower cover plate 121 of the lamp socket, the third flanging 12241 is embedded into the first limiting notch 121511, and the fourth flanging 12242 is embedded into the second limiting notch 121521. The side of the first flanging 12151 facing away from the first clamping plate 1213 is in contact with the side of the third flanging 12241 facing the second clamping plate 1222, and the side of the second flanging 12152 facing away from the first clamping plate 1213 is in contact with the side of the fourth flanging 12242 facing the second clamping plate 1222, so as to limit the movement of the upper cover plate 122 of the lamp socket relative to the lower cover plate 121 of the lamp socket in the extending direction of the lamp body 123. The connection between the upper cover plate 122 and the lower cover plate 121 of the lamp socket is more reliable, and the wrapping of the lamp body 123 is more tight.

[0080] According to an embodiment of the present invention, a wire buckle 12223 and a limiting post 12224 are formed on the second clamping plate 1222. The opening direction of the wire buckle 12223 is orthogonal to the extending direction of the lamp body 123, and the wire buckle 12223 and the limiting post 12224 are arranged staggeredly in the extending direction of the lamp body 123.

[0081] As Figure 4 shown, a wire buckle 12223 and a limiting post 12224 are formed on the side of the first clamping plate 1213 away from the clamping groove 1223. The opening direction of the limiting buckle is orthogonal to the extending direction of the lamp body 123. The pulse lamp input wire 1111 extending from the electronic control box 11 extends to the lamp body 123 and is connected to the lamp body 123. A part of the pulse lamp input wire 1111 extends to one end of the lamp body 123 and is electrically connected to the lamp body 123, and another part of the pulse lamp input wire 1111 extends to the other end of the lamp body 123 and is electrically connected to the lamp body 123. The pulse lamp input wire 1111 extending to the other end of the lamp body 123 is arranged on the side of the first clamping plate 1213 away from the clamping groove 1223. The pulse lamp input wire 1111 passes through the limiting post 12224 and the wire buckle 12223 in sequence and then is connected to the other side of the lamp body 123. Under the limitation of the limiting post 12224 and the wire buckle 12223, the assembly between the pulse lamp input wire 1111 and the first clamping plate 1213 is more compact. Among them, the limiting post 12224 and the wire buckle 12223 are respectively configured as multiple and are arranged staggeredly in the extending direction of the lamp body 123. The wire buckle 12223 is arranged on one side of the pulse lamp input wire 1111, and the limiting post 12224 is arranged on the other side of the pulse lamp input wire 1111. The wire buckle 12223 and the limiting post 12224 respectively limit the pulse lamp input wire 1111 from both sides of the pulse lamp input wire 1111, preventing the pulse lamp input wire 1111 from being wired in a mess and ensuring that the structure between the pulse lamp input wire 1111 and the first clamping plate 1213 is more compact.

[0082] The air conditioner according to the present invention will be briefly described below.

[0083] The air conditioner according to the present invention includes a housing and the combination module 1 described in any one of the above embodiments. The combination module 1 is arranged in the housing. An air inlet 154 is provided in the housing. The combination module 1 is adapted to sterilize and remove dust from the air entering the air duct from the air inlet 154. Since the air conditioner according to the present invention has the combination module 1 described in any one of the above embodiments, therefore, the air conditioner according to the present invention can control the pulse lamp 12 and the negative ion generator 13 through an electronic control box 11, reducing the number of electronic control components and lowering the overall cost of the air conditioner.

[0084] According to an embodiment of the present invention, an air conditioner includes an air outlet frame 14 and an evaporator component 15. The air outlet frame 14 is provided with an air outlet 141; the evaporator component 15 is connected to the air outlet frame 14, and a air duct is provided between the evaporator component 15 and the air outlet frame 14; wherein a pulsed lamp 12 is disposed on the evaporator component 15 and is adapted to emit pulsed light toward the air inlet 154.

[0085] Specifically, the evaporator component 15 is connected to the air outlet frame 14, a air duct is provided between the evaporator component 15 and the air outlet frame 14, and a wind wheel assembly 165 is disposed in the air duct. The wind wheel assembly 165 drives air flow to enter the air duct through the air inlet 154. After the air flow exchanges heat with the evaporator component 15, it can flow out from the air outlet 141, thereby realizing temperature adjustment. The pulsed lamp 12 is disposed on the evaporator component 15 and can emit pulsed light toward the air inlet 154 to sterilize the air flow flowing into the air duct. In this application, the pulsed lamp 12 can be specifically disposed on the top of the evaporator component 15 and outside the air duct. The pulsed light emitted by the pulsed lamp 12 can irradiate the entire air duct cavity, and through the reflection of the first light guiding surface 1221 and the second light guiding surface 1212, the pulsed light can also cover the wind wheel assembly 165, increasing the pulsed light sterilization area and enhancing the sterilization effect.

[0086] According to an embodiment of the present invention, the evaporator component 15 includes an upper plate 151, a lower plate 153, and support ribs 152. The upper plate 151 and the lower plate 153 are spaced apart; both ends of the support ribs 152 are connected to the upper plate 151 and the lower plate 153 to form an air inlet 154 between the upper plate 151 and the lower plate 153; wherein a light transmissive hole 1511 that opens toward the air inlet 154 is formed on one of the upper plate 151 and the lower plate 153. The pulsed lamp 12 is disposed on the side of the upper plate 151 facing away from the air inlet 154 or on the side of the lower plate 153 facing away from the air inlet 154, and the pulsed lamp 12 emits pulsed light toward the air inlet 154 through the light transmissive hole 1511.

[0087] Specifically, a plurality of mounting screw holes are spaced apart on the support ribs 152. The evaporator component 15 is connected to the air outlet frame 14 through the support ribs 152. The upper plate 151 and the lower plate 153 are respectively disposed on both sides of the support ribs 152. Among them, on the upper plate 151, there can be formed as Figure 13For the light-transmitting hole 1511 shown, the pulsed lamp 12 can be arranged on the side of the upper plate 151 facing away from the air inlet 154, and the light-emitting hole 1211 can be aligned with the light-transmitting hole 1511. The pulsed light emitted by the pulsed lamp 12 can irradiate into the air duct through the light-transmitting hole 1511 to sterilize the air flow in the air duct. Among them, the pulsed lamp 12 can be fixed to the upper plate 151 by snap connection. Compared with the prior art in which the pulsed lamp is connected to the housing by bolts, the pulsed lamp 12 in this application is more convenient to assemble. And since the pulsed lamp 12 in this application is arranged on the side of the evaporator component 15 facing away from the air duct, the pulsed lamp 12 does not need to be installed inside the air duct, and it is also more convenient to replace and repair the pulsed lamp 12.

[0088] In some embodiments, a back plate component 166 is further arranged outside the evaporator component 15. An air intake grille is arranged in the extending direction of the back plate component 166, and the arrangement position of the air intake grille is aligned with the air inlet of the evaporator component 15, which can prevent hands or other foreign objects from entering the inside of the air duct, protect the safety of users and ensure the normal operation of the air conditioner. On the other hand, the air intake grille can prevent insects, mice, etc. from entering the inside of the air conditioner and causing damage to the air conditioner, ensure the normal installation of the air conditioner operation, and ensure the beautiful appearance of the air conditioner.

[0089] According to an embodiment of the present invention, the upper plate 151 or the lower plate 153 is provided with a first limiting and mating portion located outside the periphery of the light-transmitting hole 1511, and the pulsed lamp 12 is provided with a second limiting and mating portion adapted to be snap-connected with the first limiting and mating portion.

[0090] Specifically, a first limiting and mating portion is arranged outside the periphery of the light-transmitting hole 1511. The first limiting and mating portion can be configured as a snap or a limiting flange and other structures. The pulsed lamp 12 is provided with a second limiting and mating portion that is snap-connected with the first limiting and mating portion. Among them, the second limiting and mating portion can be configured as a lapping plate arranged outside the periphery of the light-emitting hole 1211, and the lapping plate is snap-connected with the snap or the limiting flange to fix the pulsed lamp 12 to the upper plate 151 or the lower plate 153, so as to ensure that the light-emitting hole 1211 is always aligned with the light-transmitting hole 1511, and limit the pulsed lamp 12 from shaking relative to the upper plate 151 or the lower plate 153, ensure that the pulsed light emitted by the lamp body 123 stably irradiates inside the air duct, and ensure the sterilization effect.

[0091] According to an embodiment of the present invention, the upper plate 151 or the lower plate 153 is provided with a first limiting rib 15121 and a second limiting rib 15122 located on both sides of the light-transmitting hole 1511, and a first blocking rib 15123 extending towards each other is provided on the first limiting rib 15121 and the second limiting rib 15122; second blocking ribs 15124 are respectively provided on both sides of the pulse lamp 12 in the width direction, the pulse lamp 12 is received between the first limiting rib 15121 and the second limiting rib 15122, and the second blocking rib 15124 and the first blocking rib 15123 are arranged opposite to each other in the direction away from the air inlet 154.

[0092] Specifically, the first limiting rib 15121 and the second limiting rib 15122 as shown in Figure 13 are provided on the upper plate 151. The two sides of the pulse lamp 12 are respectively abutted against the first limiting rib 15121 and the second limiting rib 15122, restricting the lateral movement of the pulse lamp 12 relative to the upper plate 151 or the lower plate 153 and ensuring that the light-emitting hole 1211 is aligned with the light-transmitting hole 1511. Avoidance notches are respectively formed on the first limiting rib 15121 and the second limiting rib 15122, and the avoidance notch on the first limiting rib 15121 is aligned with the avoidance notch on the second limiting rib 15122. When the pulse lamp 12 needs to be repaired or replaced, the side part of the pulse lamp 12 can be fixed through the avoidance notch and the pulse lamp 12 can be pulled out from between the first limiting rib 15121 and the second limiting rib 15122, facilitating the disassembly of the pulse lamp 12; first blocking ribs 15123 extending towards each other are respectively provided on the first limiting rib 15121 and the second limiting rib 15122. The structure of the first blocking rib 15123 is as shown in Figure 13 There is a receiving gap between the first blocking rib 15123 and the plate body around the light-transmitting hole 1511. Second blocking ribs 15124 are respectively provided on both sides of the pulse lamp 12 in the width direction. The second blocking rib 15124 and the first blocking rib 15123 are arranged opposite to each other in the direction away from the air inlet 154, and at least part of the second blocking rib 15124 can be received in the receiving gap to restrict the pulse lamp 12 from detaching from the upper plate 151 in the air duct extending direction and ensure the stable installation of the pulse lamp 12.

[0093] According to an embodiment of the present invention, the first limiting and cooperating part is a buckle 15126 provided between the first limiting rib 15121 and the second limiting rib 15122 and configured as such, and the second limiting and cooperating part is a third blocking rib 15125 provided on one side in the length direction of the pulse lamp 12, and the third blocking rib 15125 is adapted to be snap-fitted with the buckle 15126.

[0094] Specifically, the first cooperating part is configured as shown in Figure 13The buckle 15126 shown in the figure is arranged between the first limiting rib 15121 and the second limiting rib 15122, and a hook is arranged at the end of the buckle 15126 away from the upper plate 151, and a third retaining rib 15125 is arranged on the pulse lamp 12, and the third retaining rib 15125 extends toward the buckle 15126. When the second retaining rib 15124 is engaged with the first retaining rib 15123, the pulse lamp 12 is installed between the first limiting rib 15121 and the second limiting rib 15122, and at least a part of the second retaining rib 15124 is accommodated in In the receiving gap, one end of the third retaining rib 15125 abuts against the buckle 15126 to limit the movement of the pulse lamp 12 in the length direction relative to the upper plate 151, and the hook abuts against the side of the third retaining rib 15125 away from the upper plate 151 to limit the detachment of the pulse lamp 12. The buckle 15126 has a certain elasticity, and the engagement state between the buckle 15126 and the third retaining rib 15125 can be released by moving the buckle 15126, and the pulse lamp 12 can be pulled out from the first limiting rib 15121 and the second limiting rib 15122, so as to facilitate the disassembly of the pulse lamp 12.

[0095] According to one embodiment of the present invention, a snap-in hole 143 is formed on the air outlet frame 14 , and the snap-in hole 143 passes through the side of the air outlet frame 14 facing the evaporator component 15 to the air outlet 141 , and the negative ion generator 13 passes through the snap-in hole 143 and is arranged toward the air outlet 141 .

[0096] Specifically, a snap-in hole 143 is provided on the air outlet frame 14, and the negative ion generator 13 is inserted into the snap-in hole 143 for fixation, so that the negative ion generator 13 is provided on the air outlet frame 14, and the negative ion generator 13 is provided toward the air outlet 141. One end of the negative ion generator 13 is connected to the electric control box 11 through a negative ion input line 1121. After the negative ion generator 13 is powered on, negative ions are generated in the air duct to absorb dust in the air duct, and the airflow delivered from the air outlet 141 is cleaner, thereby ensuring the user experience.

[0097] According to one embodiment of the present invention, a limiting protrusion 131 is provided on the negative ion generator 13 , and the thickness of the limiting protrusion 131 gradually decreases in the direction toward the air outlet 141 , and the limiting protrusion 131 is suitable for abutting against the wall surface of the air outlet frame 14 toward the air outlet 141 .

[0098] The structure of the negative ion generator 13 is as follows: Figures 22 - 23As shown, the thickness of the limiting protrusion 131 gradually decreases in the direction towards the air outlet 141. During the process of inserting the negative ion generator 13 into the clamping hole 143, the end with a smaller thickness of the limiting protrusion 131 first inserts into the clamping hole 143. As the negative ion generator 13 is inserted, the thickness of the limiting protrusion 131 gradually increases until the negative ion generator 13 is fully inserted into the clamping hole 143. The limiting protrusion 131 passes through the clamping hole 143, and the side with the largest thickness of the limiting protrusion 131 abuts against the wall surface of the air outlet frame 14 towards the air outlet 141 to prevent the negative ion generator 13 from disengaging from the clamping hole 143, and the negative ion generator 13 is stably connected to the air outlet frame 14.

[0099] According to an embodiment of the present invention, the air outlet frame 14 includes an air outlet housing 144 and a top housing 145. An air outlet 141 is formed on the air outlet housing 144, and the top housing 145 is disposed on the top of the air outlet housing 144. An electric control box 11 is disposed on one side of the top housing 145 facing the evaporator component 15.

[0100] Specifically, the air outlet 141 is formed on the air outlet housing 144. A wind duct facing the air outlet 141 is formed in the air outlet housing 144. The electric control box 11 is disposed at the top of the wind duct and faces the evaporator component 15. The electric control box 11 is connected to the pulse lamp 11 through a pulse lamp input wire 1111. The pulse lamp 11 is disposed on the evaporator component 15. The electric control box 11 is disposed facing the evaporator component 15, which is convenient for the wiring arrangement of the pulse lamp input wire 1111. The electric control box 11 is connected to the negative ion generator 13 through a negative ion input wire 1121. The negative ion generator 13 is disposed in the air outlet housing 144. By disposing the electric control box 11 at the top of the air outlet housing 144, the wiring distance of the negative ion input wire 1121 is reduced. At the same time, by arranging the electric control box 11 on the air outlet frame 14 and outside the wind duct, the assembly of the electric control box 11 is convenient.

[0101] According to an embodiment of the present invention, a first fixing portion is provided on the top housing 145, and a second fixing portion is provided on the outer periphery of the electric control box. The first fixing portion and the second fixing portion are configured as a plurality of corresponding structures and are arranged on the outer periphery of the electric control box. The first fixing portion and the second fixing portion are connected by fasteners and / or snap connections.

[0102] As Figures 19 - 20As shown, the first fixing portion 142 can be constructed as a mounting boss, and a first mounting screw hole is provided on the mounting boss. The second fixing portion 1131 can be constructed as a mounting plate, and a second mounting screw hole matching the first mounting screw hole is provided on the mounting plate. After the screw passes through the first mounting hole and the second mounting hole, the mounting plate is fixed to the mounting boss, wherein the mounting boss is constructed as a plurality of and is spaced apart at the periphery of the electric control box 11, and the mounting plate is constructed as a plurality of corresponding mounting bosses, thereby fixing the electric control box 11 to the top shell 145 at multiple positions on the periphery to ensure that the electric control box 11 is stably installed on the top shell 145, and the electric control box 11 can be disassembled by removing the screws, which is convenient for replacement and maintenance of the electric control box 11, wherein the first fixing portion 142 and the second fixing portion 1132 can also be connected by a snap-fit ​​connection, which is convenient for installation and disassembly of the electric control box 11.

[0103] According to one embodiment of the present invention, a support surface for supporting the electric control box 11 is formed on the top of the air outlet housing 144 , and a stop rib 1441 is formed on the support surface. The stop rib 1441 abuts against at least part of the edge of the electric control box 11 .

[0104] Specifically, the bottom of the electric control box 11 abuts against the support surface, and the support surface stably supports the electric control box 11. Figure 19 The stop rib 1441 shown in the figure extends vertically from the supporting surface and is suitable for abutting against at least part of the edge of the electric control box 11. The electric control box 11 and the stop rib 1441 are limitedly cooperated to prevent the electric control box 11 from shaking relative to the air outlet shell 144 and the top shell 145. A plurality of reinforcing ribs are arranged at intervals on the side of the stop rib 1441 away from the electric control box 11 to increase the structural strength of the stop rib 1441 and prevent the stop rib 1441 from bending.

[0105] In some embodiments, a wire outlet hole 1141 is further provided on the top shell 145 , and the negative ion input line 1121 is led out from the electric control box 11 and extends to the negative ion generator 13 through the wire outlet hole 1141 .

[0106] In summary, the combined module 1 for an air conditioner according to the present invention electrically connects the pulse lamp 12 and the negative ion generator 13 to the same electronic control box 11. The electronic control box 11 supplies power to the pulse lamp 12 and the negative ion generator 13, reducing the number of electronic control components in the air conditioner and lowering the overall installation cost of the air conditioner. The electronic control box is arranged in the air outlet frame and located outside the air duct, facilitating the installation of the electronic control box. The arrangement of the connecting wire harness between the electronic control box and the pulse lamp 12 and the negative ion generator 13 is simpler. The pulse lamp 12 is installed on the top of the evaporator component 15 and is arranged outside the air duct, facilitating the installation and disassembly of the pulse lamp 12. Among them, the pulse lamp 12 includes a lamp socket upper cover, a lamp socket lower cover, and a lamp body 123. A first light guide surface 1221 is formed on the lamp socket upper cover, and a second light guide surface 1212 is formed on the lamp socket lower cover. The first light guide surface 1221 and the second light guide surface 1212 together form a parabolic light guide surface with the lamp body 123 as the focus. Part of the pulsed light emitted by the lamp body 123 directly enters the air duct, and the other part is enhanced in light intensity after being condensed by the parabolic light guide surface and is reflected into the air duct from multiple directions, increasing the sterilization range of the pulse lamp 12 and improving the sterilization effect. The negative ion generator 13 is arranged in the air outlet frame 14 and generates negative ions into the air duct to perform a dust removal operation on the air flow in the air duct.

[0107] In some embodiments, the air conditioner further includes an upper panel 161 and a lower panel 162. The upper panel 161 and the lower panel 162 are connected, and at least part of the upper panel 161 and the lower panel 162 is connected to the air outlet frame 14. An accommodation cavity is defined between the upper panel 161 and the lower panel 162 and the back panel component 166. The evaporator component 15 is housed in the accommodation cavity to ensure the external beauty of the air conditioner. A top cover 163 is provided at the top of the accommodation cavity, and a chassis 164 is provided at the bottom of the accommodation cavity. The top cover 163 and the chassis 164 respectively seal the top and bottom of the accommodation cavity to prevent foreign objects from entering the air conditioner and affecting its normal operation.

[0108] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings, and is 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 construed as a limitation to the present invention.

[0109] In the description of the present invention, the "first feature" and "second feature" may include one or more of such features.

[0110] In the description of the present invention, "a plurality of" means two or more.

[0111] In the description of the present invention, a first feature being "above" or "below" a second feature may include direct contact between the first and second features, or may include contact between the first and second features not being direct but through additional features therebetween.

[0112] In the description of the present invention, a first feature being "above", "over" and "on" a second feature includes the first feature being directly above and obliquely above the second feature, or merely means that the horizontal height of the first feature is higher than that of the second feature.

[0113] In the description of this specification, descriptions with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc. mean that the specific features, structures, materials, or characteristics described in connection 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 may be combined in any one or more embodiments or examples in a suitable manner.

[0114] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A combined module for an air conditioner, characterized in that, it includes: An electric control box, which is arranged on the housing of the air conditioner and is provided with a first power supply terminal and a second power supply terminal; A pulse lamp, which is arranged on the housing and is adapted to emit pulsed light towards the interior of the housing, and the pulse lamp is electrically connected to the first power supply terminal; A negative ion generator, which is arranged on the housing, and the negative ion generator is adapted to generate negative ions into the housing, and the negative ion generator is electrically connected to the second power supply terminal.

2. The combined module for an air conditioner according to claim 1, characterized in that, The pulse lamp includes: A lower lamp socket cover, which is provided with a light-emitting hole facing the interior of the housing; An upper lamp socket cover, which is arranged on the lower lamp socket cover and defines a lamp body accommodation cavity between the upper lamp socket cover and the lower lamp socket cover, and a first light guide surface facing the light-emitting hole is formed on the upper lamp socket cover; A lamp body, which is arranged in the lamp body accommodation cavity and is adapted to emit light towards the first light guide surface and the light-emitting hole, and the lamp body is electrically connected to the first power supply terminal.

3. The combined module for an air conditioner according to claim 2, characterized in that, A second light guide surface is formed on the lower lamp socket cover, the second light guide surface is connected to the first light guide surface, and the first light guide surface and the second light guide surface are configured as a parabolic light guide surface with the center of the lamp body as the focus.

4. The combined module for an air conditioner according to claim 3, characterized in that, The lower lamp socket cover includes: a lower lamp socket cover plate, on which the light-emitting hole is provided, and second light guide surfaces located on both sides of the light-emitting hole are formed on the lower lamp socket cover plate, and the lower lamp socket cover plate is adapted to be snap-fitted and fixed with the evaporator component; A first snap-fitting plate, which is arranged on at least one side in the width direction of the lower lamp socket cover plate, and a first clamping groove adapted to accommodate the lamp body is formed on the first snap-fitting plate; The upper lamp socket cover includes: An upper lamp socket cover plate, on which a first light guide surface facing the light-emitting hole is provided; A second snap-fitting plate, which is arranged on at least one side in the width direction of the upper lamp socket cover plate, and a second clamping groove adapted to accommodate the lamp body is formed on the second snap-fitting plate.

5. The combined module for an air conditioner according to claim 4, characterized in that, The first snap-fitting plate and the second snap-fitting plate are arranged corresponding to each other, a snap-fitting groove is formed on one of the first snap-fitting plate and the second snap-fitting plate, and a snap-fitting protrusion cooperating with the snap-fitting groove is formed on the other of the first snap-fitting plate and the second snap-fitting plate.

6. The combined module for an air conditioner according to claim 4, characterized in that, A first clamping rib protruding towards the lamp body is formed on the inner wall of the first clamping groove and / or a second clamping rib protruding towards the lamp body is formed in the second clamping groove.

7. The combined module for an air conditioner according to claim 4, characterized in that, First flanges and second flanges are arranged at intervals in the extending direction of the lamp body on the lower lamp socket cover plate; The upper cover plate of the lamp holder is provided with a third flange and a fourth flange which are arranged at intervals in the extending direction of the lamp body; in The first flange and the third flange are arranged opposite to each other in the extension direction of the lamp body, and a first limit stop is formed on one of the first flange and the third flange, and the other of the first flange and the third flange is embedded in the first limit stop; The second flange and the fourth flange are arranged opposite to each other in the extension direction of the lamp body, and a second limit stop is formed on one of the second flange and the fourth flange, and the other of the second flange and the fourth flange is embedded in the second limit stop.

8. The combined module for an air conditioner according to claim 4, It is characterized in that A wire buckle and a limiting column are formed on the second clamping plate. The opening direction of the wire buckle is orthogonal to the extending direction of the lamp body. The wire buckle and the limiting column are staggered in the extending direction of the lamp body.

9. An air conditioner, It is characterized in that include: A housing, wherein the housing is provided with an air inlet; A combined module is arranged in the shell and is constructed as the combined module according to any one of claims 1-8.

10. The air conditioner according to claim 9, It is characterized in that include: An air outlet frame, wherein the air outlet frame is provided with an air outlet; an evaporator component, the evaporator component is connected to the air outlet frame, and an air duct is provided between the evaporator component and the air outlet frame; in The pulse lamp is disposed on the evaporator component and is suitable for emitting pulse light toward the air inlet.

11. The air conditioner according to claim 10, It is characterized in that The evaporator component comprises: An upper plate and a lower plate, wherein the upper plate is spaced apart from the lower plate; Support ribs, the two ends of which connect the upper plate and the lower plate and form the air inlet between the upper plate and the lower plate; wherein A light-transmitting hole open toward the air inlet is formed on one of the upper plate and the lower plate, and the pulse lamp is arranged on a side of the upper plate away from the air inlet or a side of the lower plate away from the air inlet, and the pulse lamp emits pulse light toward the air inlet through the light-transmitting hole.

12. The air conditioner according to claim 11, It is characterized in that The upper plate or the lower plate is provided with a first position-limiting fitting portion located at the outer periphery of the light-transmitting hole, and the pulse lamp is provided with a second position-limiting fitting portion suitable for engaging with the first position-limiting fitting portion.

13. The air conditioner according to claim 12, It is characterized in that The upper plate or the lower plate is provided with a first limiting rib and a second limiting rib located on both sides of the light-transmitting hole, and the first limiting rib and the second limiting rib are provided with first blocking ribs extending toward each other; The pulse lamp is provided with second blocking ribs on both sides in the width direction, respectively. The pulse lamp is accommodated between the first limiting rib and the second limiting rib, and the second blocking rib is arranged opposite to the first blocking rib in the direction away from the air inlet.

14. The air conditioner according to claim 13, It is characterized in that The first limiting and mating portion is a buckle provided between the first limiting rib and the second limiting rib, and the second limiting and mating portion is a third blocking rib provided on one side in the length direction of the pulse lamp, and the third blocking rib is adapted to be snap-fitted with the buckle.

15. The air conditioner according to claim 10, wherein, a snap hole is formed in the air outlet frame, the snap hole penetrates from the side of the air outlet frame facing the evaporator component to the air outlet, and the negative ion generator penetrates through the snap hole and is arranged facing the air outlet.

16. The air conditioner according to claim 15, wherein, a limiting protrusion is provided on the negative ion generator, the thickness of the limiting protrusion gradually decreases in the direction facing the air outlet, and the limiting protrusion is adapted to abut against the wall surface of the air outlet frame facing the air outlet.

17. The air conditioner according to claim 10, wherein, the air outlet frame includes: an air outlet housing on which the air outlet is formed; a top housing provided on the top of the air outlet housing, and an electric control box is provided on the side of the top housing facing the evaporator component.

18. The air conditioner according to claim 17, wherein, a first fixing portion is provided on the top housing, a second fixing portion is provided on the outer periphery of the electric control box, the first fixing portion and the second fixing portion are a plurality of corresponding ones arranged on the outer periphery of the electric control box, and the first fixing portion and the second fixing portion are connected by fasteners and / or snap connections.

19. The air conditioner according to claim 18, wherein, a support surface for supporting the electric control box is formed on the top of the air outlet housing, and a stop rib is formed on the support surface and abuts against at least part of the edge of the electric control box.