Air conditioner
By setting a wiring structure on the outer surface of the air conditioner radar box, the routing path of the radar harness is restricted, solving the problem of easy detachment of the radar harness and achieving more stable and efficient assembly.
Patent Information
- Application Number
- CN202423323587.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing air conditioner radar harnesses are prone to detachment under external tension, and are difficult to assemble and maintain.
A first wiring structure is set on the outer surface of the radar box to restrict the radar wire harness to run along a set wiring path. The included angle is set within the range of 5° to 150°, and the included angle between multiple wiring segments is set within the range of 60° to 120° to disperse external tension and avoid large tension in one direction.
This effectively reduces the possibility of radar wire harnesses being pulled off, simplifies the assembly process, and improves assembly efficiency.
Smart Images

Figure CN223691124U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air conditioning equipment technical field especially is related to a kind of air conditioners. BACKGROUND
[0002] In the related art, a radar module is usually provided on a casing assembly of an air conditioner, and the radar module is located on an inner side of the casing assembly and is used to realize a sensing function of the air conditioner. The radar module cooperates with other components of the air conditioner to realize intelligent control of the air conditioner. The radar module includes a radar box and a radar assembly. The radar assembly is arranged in the radar box and is connected with a radar wire harness. The radar box is provided with a wire outlet to facilitate the radar wire harness to be led out.
[0003] However, the radar wire harness and the radar assembly of the radar module in the related art are limited by the connection mode. For example, when the radar wire harness is subjected to external tension, the radar wire harness is prone to be pulled out of the radar assembly. In the related art, the radar wire harness is usually fixed in the radar box by secondary glue pouring. This increases the assembly process of the radar wire harness in the radar box, resulting in a relatively complex assembly process of the radar wire harness in the radar box. Moreover, the radar wire harness after secondary glue pouring makes it difficult to replace or maintain the radar module in the later stage. Therefore, there is a need to solve the above problems. SUMMARY
[0004] The utility model at least solves one of the technical problems existing in the prior art. To this end, one object of the utility model is to provide an air conditioner. An outer surface of a radar box is provided with a first wire routing structure. The first wire routing structure can limit the radar wire harness to be routed on the outer surface of the radar box according to a set wire routing path. An included angle between at least part of two adjacent wire routing segments is in a range of 5° to 150°. In this way, the force exerted on the radar wire harness by external tension can be dispersed to different directions to reduce or avoid the radar wire harness from bearing excessive tension in a single direction. This can effectively reduce the possibility that the radar wire harness is directly pulled out by external tension.
[0005] According to the air conditioner of the utility model embodiment, a casing assembly is formed with an air inlet and an air outlet. A heat exchange and air supply assembly is arranged in the casing assembly. A functional assembly is arranged in the casing assembly and includes a radar module. The radar module includes a radar box and a radar assembly. The radar assembly is arranged in the radar box. The radar assembly is connected with a radar wire harness. The radar box is formed with a first wire outlet for the radar wire harness to be led out. An outer surface of the radar box includes a first surface. The first surface is provided with a first wire routing structure. The first wire routing structure is used to limit the radar wire harness to be routed on the first surface according to a set wire routing path. The set wire routing path includes a plurality of wire routing segments connected in sequence. An included angle between at least part of two adjacent wire routing segments is in a range of 5° to 150°.
[0006] According to the air conditioner provided by the embodiment of the present application, the first wiring structure is arranged on the outer surface of the radar box, and the first wiring structure can limit the radar wire harness to wire according to the set wiring path on the outer surface of the radar box, the included angle between at least part of the two adjacent wiring sections is 5°-150°, so that the force applied by the external tension to the radar wire harness can be dispersed to different directions, so as to reduce or avoid the radar wire harness from bearing excessive tension in a single direction, so that the possibility of the radar wire harness being directly pulled off by the external tension can be effectively reduced, and the wiring path of the radar wire harness is limited by the first wiring structure, so that the assembly process of the radar wire harness on the radar box is simpler, and the assembly efficiency is improved.
[0007] According to some embodiments of the present application, the included angle between at least part of the two adjacent wiring sections is 60°-120°.
[0008] According to some embodiments of the present application, the included angle between at least part of the two adjacent wiring sections is 80°-100°.
[0009] According to some embodiments of the present application, the outer surface of the radar box comprises a second surface, the first wire outlet is formed on the second surface, the second surface and the first surface are located on different sides of the radar box and are arranged adjacent to each other, the plurality of wiring sections comprises adjacent first and second wiring sections, the first wiring section extends from the connection between the first surface and the second surface in a first direction towards a direction away from the second surface, the second wiring section extends in a second direction, and the second direction has an included angle with the first direction.
[0010] According to some embodiments of the present application, the plurality of wiring sections further comprises third and fourth wiring sections, the third wiring section is connected between the second wiring section and the fourth wiring section, the third wiring section extends in the first direction and towards a direction close to the second surface, and the fourth wiring section extends in the second direction and extends beyond the outer contour of the first surface.
[0011] According to some embodiments of the present application, the first wiring structure comprises a first wiring buckle, a second wiring buckle, a first wiring column, a second wiring column and a third wiring column, the first wiring buckle and the second wiring buckle are arranged along the first direction, the first wiring buckle is closer to the second surface than the second wiring buckle, the first wiring column and the second wiring column are arranged on opposite sides of the second wiring buckle along the second direction and are spaced apart from the second wiring buckle, and the third wiring column is spaced apart from the second wiring column along the second direction; the first wiring segment sequentially passes through the gap between the first wiring buckle and the first wiring column, the second wiring segment passes through the second wiring buckle, the third wiring segment passes through the gap between the second wiring buckle and the second wiring column, and the fourth wiring segment passes through the gap between the second wiring column and the third wiring column.
[0012] According to some embodiments of the present application, the functional assembly comprises a mounting box and a display module, the display module is arranged in the mounting box, the display module comprises a display circuit board, the radar wire harness is connected with the display circuit board, the display circuit board is connected with a display wire harness, the display wire harness is connected with an electric control box component of the air conditioner, a second wire outlet is formed on the mounting box, and the display wire harness is wired out through the second wire outlet.
[0013] According to some embodiments of the present application, the radar module is arranged in the mounting box, the radar wire harness is wired in the mounting box, and at least part of the radar wire harness is wired along one side of the display circuit board in the left-right direction.
[0014] According to some embodiments of the present application, the radar module is arranged in the mounting box, a mounting groove is arranged in the mounting box, the radar module is accommodated in the mounting groove, a plurality of first limiting buckles are arranged on the open side of the mounting groove, the first limiting buckles are arranged along the circumference of the mounting groove, and the first limiting buckles abut against one side of the radar module facing the opening.
[0015] According to some embodiments of the present application, the radar module is arranged in the mounting box, a mounting groove is arranged in the mounting box, the radar module is accommodated in the mounting groove, and the opening of the mounting groove faces forward.
[0016] According to some embodiments of the present application, the shell assembly is provided with a first insertion slot and a first fixing column, the first insertion slot and the first fixing column are respectively located on the upper and lower sides of the mounting box, the upper and lower sides of the mounting box are respectively provided with a first bolt and a first fixing hole, the first bolt is inserted into the first insertion slot upward, and a first fastener is arranged in the first fixing hole and the first fixing column.
[0017] According to some embodiments of the present application, the outer periphery of the first fixing hole is formed with a positioning sleeve arranged around the first fixing hole, and the positioning sleeve is sleeved on the outer periphery of the first fixing column.
[0018] According to some embodiments of the present application, the second outlet is located on the bottom surface of the mounting box, and a terminal block electrically connected with the electric control box component is further arranged in the shell assembly, the terminal block is located above the heat exchange and air supply assembly and above the display module, and the display wire harness is routed upwards from the back surface of the mounting box to be connected with the terminal block.
[0019] According to some embodiments of the present application, the back surface of the mounting box is provided with a plurality of third wire routing buckles arranged in the up-down direction, the openings of at least part of the adjacent two third wire routing buckles in the left-right direction are opposite, and the display wire harness is routed along the plurality of third wire routing buckles.
[0020] According to some embodiments of the present application, the function assembly further comprises a voice component, the voice component comprises at least one of a microphone module and a speaker module, and the voice component is electrically connected with the display circuit board.
[0021] According to some embodiments of the present application, the voice component is located above the display module, and the voice component is connected with the upper end of the display circuit board.
[0022] According to some embodiments of the present application, the voice component comprises a microphone module, a first voice wire harness is connected between the microphone module and the display circuit board, a third outlet is formed in the upper part of the mounting box, the first voice wire harness is routed through the third outlet, and the third outlet is formed on the side wall in the left-right direction of the mounting box.
[0023] According to some embodiments of the present application, the outer surface of the mounting box is provided with a wire blocking protruding rib, and the wire blocking protruding rib is located on the outer periphery of the third outlet.
[0024] According to some embodiments of the present application, the voice component comprises a speaker module, a second voice wire harness is connected between the speaker module and the display circuit board, and the second voice wire harness is routed through the second outlet.
[0025] According to some embodiments of the present application, further comprising a wind guide assembly and a drive motor assembly, the wind guide assembly is arranged in the shell assembly and is used for adjusting the air outlet direction of the air outlet, the drive motor assembly comprises at least one drive motor, the drive motor assembly is used for driving the wind guide assembly to move, the drive motor is connected with a motor wire harness, and the motor wire harness is connected with the display circuit board.
[0026] According to some embodiments of the present application, the motor wire harness has a plug-in end, and the plug-in end is plugged with the display circuit board.
[0027] According to some embodiments of the present application, the motor wire harness is wired out through the second wire outlet.
[0028] According to some embodiments of the present application, the radar module is arranged in the mounting box and below the display module, the second wire outlet is formed in the bottom of the mounting box, the part of the motor wire harness in the mounting box is an in-box wire harness, and at least part of the in-box wire harness is located on the outer circumferential side of the radar module.
[0029] According to some embodiments of the present application, the shell assembly includes a rear shell part and a front shell part, the air outlet is formed in the front shell part, the air outlet is formed in the rear shell part, the front shell part includes an air outlet frame assembly, the air outlet frame assembly includes an air outlet frame and a front panel, the front panel is arranged on the front side of the air outlet frame, the radar module and the display module are arranged on the front panel, and the radar module is below the display module.
[0030] According to some embodiments of the present application, the functional assembly includes a microphone module, the microphone module is arranged on the front panel and above the display module, and the microphone module is detachably connected with the front panel.
[0031] According to some embodiments of the present application, a second fastener is connected between the microphone module and the front panel, a avoiding recess is formed in the top of the front panel, the avoiding recess is adjacent to the second fastener and is used for avoiding an assembly operation space.
[0032] According to some embodiments of the present application, the functional assembly includes a speaker module, and the speaker module is arranged on the upper end of the rear shell part and above the heat exchange and air supply assembly.
[0033] According to some embodiments of the present application, the front panel includes a panel body and a panel support, the panel support is arranged on the rear side of the panel body, a support plate is arranged on the rear side of the panel support, the support plate is located on the top of the panel support, and the support plate is supported above the air outlet frame.
[0034] According to some embodiments of the present application, the rear side of the panel support is further provided with a support protrusion, the support protrusion is one or a plurality of support protrusions arranged in the up-down direction, the support protrusion is located below the support plate, and the rear surface of the support protrusion and the rear side of the support plate are located on the same plane.
[0035] According to some embodiments of the present application, the front panel comprises a panel body and a panel support, the air outlet is two and formed in the air outlet frame, the front panel is located between the two air outlets, the left and right ends of the front panel are respectively provided with sealing rubber strips, the sealing rubber strips are used for sealing the gap between the panel body and the panel support, the rear side of the sealing rubber strip is formed with a sealing protrusion, and the sealing protrusion is used for sealing the gap between the air outlet frame and the panel support.
[0036] Additional aspects and advantages of the present application will be given in part in the following description, become apparent from the following description, or be understood by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0037] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings in which:
[0038] Figure 1 is a schematic view of an air conditioner according to some embodiments of the present application;
[0039] Figure 2 is Figure 1 an exploded view of the air conditioner in
[0040] Figure 3 is Figure 1 a separation schematic view of an air outlet frame assembly, an air guide assembly and a driving motor assembly in the air conditioner in
[0041] Figure 4 is Figure 1 a sectional view of a part of structure of a front shell component in the air conditioner in
[0042] Figure 5 is Figure 4 a schematic view of a part of structure of the front shell component in
[0043] Figure 6 is Figure 1 a separation schematic view of the front shell component and a functional assembly in the casing assembly of the air conditioner in
[0044] Figure 7 is Figure 6 an assembly schematic view of the front shell component and the functional assembly in
[0045] Figure 8 is Figure 7 an enlarged view of A in
[0046] Figure 9 is Figure 7 an enlarged view of B in
[0047] Figure 10 isFigure 7 Enlarged view at C in
[0048] Figure 11 is Figure 7 Partial enlarged view of assembled front housing part and functional assembly in
[0049] Figure 12 is Figure 7 Another angle assembled view of front housing part and functional assembly in
[0050] Figure 13 is Figure 7 Schematic view of front housing part in
[0051] Figure 14 is Figure 13 Sectional view of partial structure of front housing part in
[0052] Figure 15 is Figure 14 Enlarged view at D in
[0053] Figure 16 is Figure 7 Schematic view of functional module in
[0054] Figure 17 is Figure 16 Schematic view of mounting box in functional module in
[0055] Figure 18 is Figure 17 Another angle schematic view of mounting box in
[0056] Figure 19 is Figure 16 Schematic view of radar module in functional module in
[0057] Figure 20 is Figure 19 Another angle schematic view of radar module in
[0058] Reference signs:
[0059] 100, air conditioner;
[0060] 10, housing assembly; 11, rear housing part; 111, air inlet; 12, front housing part; 121, air outlet; 122, air outlet frame assembly; 123, air outlet frame; 1231, front air outlet frame; 1232, rear air outlet frame; 124, front panel; 125, avoiding groove; 126, panel body; 127, panel support; 128, support plate; 129, support block; 130, sealing rubber strip; 131, sealing protrusion; 132, second overflow column; 133, guide slope; 134, second overflow channel; 14, plug-in block; 141, first insertion slot; 15, first fixing column; 16, electric control box part; 17, second limiting press buckle; 19, third limiting press buckle;
[0061] 21, heat exchanger assembly; 22, air duct assembly; 221, air duct volute; 222, air wheel;
[0062] 30, function assembly;
[0063] 31a, radar module; 31, radar box; 311, first wire outlet; 312, first surface; 313, first wire structure; 314, second surface; 315, first wire buckle; 316, second wire buckle; 317, first wire column; 318, second wire column; 319, third wire column; 33, radar assembly; 331, radar wire harness; 332, first wire segment; 333, second wire segment; 334, third wire segment; 335, fourth wire segment;
[0064] 35, mounting box; 351, second wire outlet; 352, mounting slot; 353, first limiting press buckle; 354, first insertion pin; 355, first fixing hole; 356, positioning sleeve; 357, third wire buckle; 358, third wire outlet; 359, wire blocking rib; 360, limiting convex edge; 361, fourth wire buckle;
[0065] 37, display module; 371, display circuit board; 372, display wire harness; 373, first connection area; 374, second connection area; 375, first plug-in seat; 376, second plug-in seat; 377, third plug-in seat; 378, fourth plug-in seat;
[0066] 39, voice assembly; 391, microphone module; 392, first voice wire harness; 393, second fastener; 394, loudspeaker module; 395, second voice wire harness; 396, first convex edge;
[0067] 50, air guide assembly; 51, air guide plate; 52, louver mechanism;
[0068] 60, drive motor assembly; 61, second drive motor; 611, motor wire harness; 612, in-box wire harness; 613, motor cover;
[0069] 70, top cover; 71, first overflow column; 711, first overflow passage;
[0070] 80, base. DETAILED DESCRIPTION
[0071] Embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are intended to explain the present application, and should not be understood as a limitation of the present application.
[0072] Reference will be made to Figures 1-20 The air conditioner 100 according to the embodiments of the present application is described below.
[0073] Reference is made to Figure 1 , Figure 7 , Figure 16 and Figure 19 The air conditioner 100 according to the embodiments of the present application includes a housing assembly 10, a heat exchange and air supply assembly, and a functional assembly 30. The housing assembly 10 is formed with an air inlet 111 and an air outlet 121. The heat exchange and air supply assembly is arranged in the housing assembly 10 and can include a heat exchanger component and a fan component. For example, the air inlet 111 is formed at the rear side of the housing assembly 10, and the air outlet 121 is formed at the left and right sides of the housing assembly 10. The heat exchange and air supply assembly is located between the air inlet 111 and the air outlet 121. When the air conditioner 100 is working, air flows into the housing assembly 10 through the air inlet 111 and flows to the heat exchange and air supply assembly. The air that has been heat exchanged by the heat exchange and air supply assembly can be blown out to the indoor through the air outlet 121 to cool or heat the indoor.
[0074] The functional assembly 30 is arranged in the housing assembly 10 and includes a radar module 31a. The radar module 31a includes a radar box 31 and a radar assembly 33. The radar assembly 33 is arranged in the radar box 31 and is connected with a radar wire harness 331. The radar box 31 is formed with a first outlet 311 for the outlet of the radar wire harness 331. The outer surface of the radar box 31 includes a first surface 312. The first surface 312 is provided with a first wire arrangement structure 313. The first wire arrangement structure 313 is used to limit the radar wire harness 331 to be arranged on the first surface 312 according to a set wire arrangement path. The set wire arrangement path includes a plurality of wire arrangement sections connected in sequence. The included angle between at least part of two adjacent wire arrangement sections ranges from 5° to 150°.
[0075] The radar module 31a can realize the automatic sensing function of the air conditioner 100, facilitate cooperation with other components (such as the air deflector 51) of the air conditioner 100 to realize intelligent control of the air conditioner 100, and the like. The radar box 31 can play a certain supporting and protecting role for the radar assembly 33, so as to avoid damage to the radar assembly 33 due to external impact.
[0076] The radar module 31a can perceive the position of the user, thereby automatically adjusting the wind direction or wind speed of the air blown by the air conditioner 100 or controlling the air conditioner 100 to turn on or off, and the like, so as to save energy and improve the user experience. For example, when the radar module 31a perceives that there is no one in the room, the air conditioner 100 can be controlled to turn off or enter an energy-saving mode; when the radar module 31a perceives that there is someone in the room, the air conditioner 100 can be automatically adjusted to a preset mode according to the perceived position of the user.
[0077] By arranging the first wiring structure 313 on the first surface 312 of the radar box 31, the radar wire harness 331 can be wired according to the set wiring path, so as to effectively avoid the entanglement of the radar wire harness 331 with other wire harnesses, facilitate later maintenance and troubleshooting.
[0078] In addition, the set wiring path includes a plurality of wiring segments connected in sequence, and the included angle between at least part of the adjacent two wiring segments ranges from 5° to 150°, for example, the included angle between at least part of the adjacent two wiring segments can be 5°, 20°, 40°, 70°, 90°, 110°, 120°, 150°, and the like. By setting the included angle between at least part of the adjacent two wiring segments to range from 5° to 150°, the force applied to the radar wire harness 331 by the external pulling force can be dispersed, so as to reduce or avoid the radar wire harness 331 bearing excessive pulling force in a single direction, which can effectively reduce the possibility that the radar wire harness 331 is directly pulled off due to the external pulling force.
[0079] For example, when the included angle between at least part of the adjacent two wiring segments tends to 0°, the radar wire harness 331 is almost pulled on a straight line when subjected to force, which can cause the external pulling force to concentrate on the connection between the radar wire harness 331 and the radar assembly 33, and easily lead to the radar wire harness 331 being directly pulled off from the connection. By setting the included angle between at least part of the adjacent two wiring segments to range from 5° to 150°, the radar wire harness 331 in at least part of the adjacent two wiring segments is at a certain included angle, which can disperse the force applied to the radar wire harness 331 by the external pulling force, so as to reduce or avoid the radar wire harness 331 bearing excessive pulling force in a single direction, which can effectively reduce the possibility that the radar wire harness 331 is directly pulled off due to the external pulling force.
[0080] In addition, by limiting the wiring path of the radar wire harness 331 through the first wiring structure 313, the radar wire harness 331 can be more stably fixed to the radar box 31, and compared with additionally fixing the radar wire harness 331 in the radar box 31 through glue pouring, the assembly process of the radar wire harness 331 on the radar box 31 can be simpler, and assembly efficiency can be improved.
[0081] According to the air conditioner 100 in the embodiment of the present application, the outer surface of the radar box 31 is provided with the first wiring structure 313, the first wiring structure 313 can limit the radar wire harness 331 to wire according to the set wiring path on the outer surface of the radar box 31, and the included angle between at least part of the two adjacent wiring segments is 5°-150°, so that the force applied to the radar wire harness 331 by the external tension can be dispersed in different directions, so as to reduce or avoid the radar wire harness 331 from bearing excessive tension in a single direction, so that the possibility of the radar wire harness 331 being directly pulled off by the external tension can be effectively reduced; and by limiting the wiring path of the radar wire harness 331 through the first wiring structure 313, the assembly process of the radar wire harness 331 on the radar box 31 can be simpler, and assembly efficiency can be improved.
[0082] Reference Figure 16 and Figure 19 According to some embodiments of the present application, the included angle between at least part of the two adjacent wiring segments is 60°-120°. Among them, the included angle between at least part of the two adjacent wiring segments is 60°-120°, which can include the following cases: for example, the included angle between part of the two adjacent wiring segments is 60°-120°; for another example, the included angle between all the two adjacent wiring segments is 60°-120°.
[0083] For example, the included angle between at least part of the two adjacent wiring segments can be 60°, 70°, 90°, 110°, 120°, etc., by the included angle between at least part of the two adjacent wiring segments being not less than 60°, the possibility of the radar wire harness 331 being broken or the surface of the radar wire harness 331 being damaged due to excessive bending stress of the radar wire harness 331 at the bending part of the two adjacent wiring segments can be reduced or avoided; by the included angle between at least part of the two adjacent wiring segments being not more than 120°, the force applied to the radar wire harness 331 by the external tension can be effectively dispersed, so as to reduce or avoid the possibility of the radar wire harness 331 being pulled off in a single direction due to excessive tension.
[0084] The angle between the at least part of the two adjacent wire segments ranges from 60 degrees to 120 degrees, which can effectively reduce or avoid the possibility that the radar wire harness 331 is pulled off by external force, and can avoid the possibility that the bending stress of the bending part of the two adjacent wire segments is too large to cause the radar wire harness 331 to break or the surface of the radar wire harness 331 to be damaged.
[0085] With reference to Figure 16 and Figure 19 According to some embodiments of the present application, the angle between the at least part of the two adjacent wire segments ranges from 80 degrees to 100 degrees. For example, the angle between the at least part of the two adjacent wire segments can be 80 degrees, 85 degrees, 90 degrees, 95 degrees, 100 degrees, etc. By setting the angle between the at least part of the two adjacent wire segments to range from 80 degrees to 100 degrees, the anti-pulling effect of the radar wire harness 331 on the outer surface of the radar box 31 and the bending stress of the bending part of the radar wire harness 331 between the two adjacent wire segments can be better balanced. In addition to reducing the possibility that the radar wire harness 331 is pulled off by external force, the possibility that the radar wire harness 331 is broken or the surface of the radar wire harness 331 is damaged can also be reduced.
[0086] With reference to Figure 16 and Figure 19 According to some embodiments of the present application, the outer surface of the radar box 31 includes a second surface 314, and the first wire outlet 311 is formed on the second surface 314. The second surface 314 is located on a different side of the radar box 31 from the first surface 312, and the second surface 314 is arranged adjacent to the first surface 312. The first wire outlet 311 can facilitate the radar wire harness 331 to exit the radar box 31 from the inside, so as to facilitate electrical connection with other components.
[0087] The plurality of wire segments includes adjacent first and second wire segments 332 and 333. The first wire segment 332 extends from the connection between the first and second surfaces 312 and 314 in a first direction away from the second surface 314. The second wire segment 333 extends in a second direction, and the second direction has an angle with the first direction. Due to the angle between the first and second directions, the first and second wire segments 332 and 333 have an angle therebetween. When the radar wire harness 331 is routed along the first and second wire segments 332 and 333, the first and second wire segments 332 and 333 can have a certain angle therebetween, which can disperse the force applied by external force to the radar wire harness 331, so as to reduce or avoid the radar wire harness 331 being subjected to excessive force in a single direction. This can effectively reduce the possibility that the radar wire harness 331 is directly pulled off by external force.
[0088] With reference to Figure 16 and Figure 19According to some embodiments of the utility model, the multi-segment wiring section further comprises a third wiring segment 334 and a fourth wiring segment 335, the third wiring segment 334 is connected between the second wiring segment 333 and the fourth wiring segment 335, the third wiring segment 334 extends along the first direction and towards the direction close to the second surface 314, and the fourth wiring segment 335 extends along the second direction and beyond the outer contour of the first surface 312. Since there is an included angle between the first direction and the second direction, the third wiring segment 334 extends along the first direction and the fourth wiring segment 335 extends along the second direction, so that there is an included angle between the second wiring segment 333 and the third wiring segment 334, and there is an included angle between the third wiring segment 334 and the fourth wiring segment 335. When the radar harness 331 is wired along the third wiring segment 334 and the fourth wiring segment 335, the radar harness 331 corresponding to the second wiring segment 333 and the third wiring segment 334 can form a certain included angle, and the radar harness 331 corresponding to the third wiring segment 334 and the fourth wiring segment 335 can form a certain included angle. In this way, the force exerted on the radar harness 331 by the external pulling force can be dispersed, so as to reduce or avoid the radar harness 331 from bearing excessive pulling force in a single direction, thereby further reducing the possibility of the radar harness 331 being directly pulled off by the external pulling force.
[0089] In addition, by extending the third wiring segment 334 towards the direction close to the second surface 314 and extending the fourth wiring segment 335 beyond the outer contour of the first surface 312, the radar harness 331 can be wired outwardly, so as to facilitate electrical connection with other components.
[0090] Referring to Figure 16 and Figure 19 According to some embodiments of the utility model, the first wiring structure 313 comprises a first wiring buckle 315, a second wiring buckle 316, a first wiring column 317, a second wiring column 318 and a third wiring column 319. The first wiring buckle 315 and the second wiring buckle 316 are arranged in the first direction. The first wiring buckle 315 is closer to the second surface 314 than the second wiring buckle 316. The first wiring column 317 and the second wiring column 318 are arranged on the opposite sides of the second wiring buckle 316 along the second direction and are spaced apart from the second wiring buckle 316. The third wiring column 319 is spaced apart from the second wiring column 318 along the second direction.
[0091] The first wiring segment 332 is wired in sequence along the gap between the first wiring buckle 315 and the first wiring column 317, the second wiring segment 333 is wired along the second wiring buckle 316, the third wiring segment 334 is wired along the gap between the second wiring buckle 316 and the second wiring column 318, and the fourth wiring segment 335 is wired along the gap between the second wiring column 318 and the third wiring column 319.
[0092] The first routing buckle 315 can limit the radar harness 331 in the first routing segment 332 to ensure that the radar harness 331 is routed along the first routing segment 332. The gap between the second routing buckle 316 and the first routing post 317 can facilitate the routing of the radar harness 331 in the first routing segment 332 towards the second routing segment 333. The first routing post 317 can also limit the radar harness 331 in the first routing segment 332 to prevent the radar harness 331 from being routed towards other areas of the outer surface of the radar box 31.
[0093] The second routing buckle 316 can limit the radar harness 331 in the second routing segment 333 to ensure that the radar harness 331 is routed along the second routing segment 333.
[0094] The gap between the second routing buckle 316 and the second routing post 318 can facilitate the routing of the radar harness 331 in the third routing segment 334. The second routing post 318 can also limit the radar harness 331 in the third routing segment 334 to prevent the radar harness 331 from being routed towards other areas of the outer surface of the radar box 31.
[0095] The gap between the second routing post 318 and the third routing post 319 can facilitate the routing of the radar harness 331 in the fourth routing segment 335 and limit the radar harness 331 in the fourth routing segment 335 to prevent the radar harness 331 from being routed towards other areas of the outer surface of the radar box 31.
[0096] By including the first routing buckle 315, the second routing buckle 316, the first routing post 317, the second routing post 318, and the third routing post 319 in the first routing structure 313 and by cooperating with the gaps between the routing posts and the routing buckles, the radar harness 331 can be limited in multiple directions on the first surface 312 of the radar box 31 to ensure that the radar harness 331 is routed along the set routing path and to avoid the radar harness 331 from swinging or deviating randomly on the first surface 312 of the radar box 31.
[0097] Referring to Figure 6 , Figure 7 and Figure 16According to some embodiments of the utility model, functional assembly 30 includes installation box 35 and display module 37, display module 37 is located in installation box 35, display module 37 includes display circuit board 371, radar wire harness 331 is connected with display circuit board 371, display circuit board 371 is connected with display wire harness 372, display wire harness 372 is connected with the electric control box component 16 of air conditioner 100, second outlet 351 is formed on installation box 35, and display wire harness 372 is wired out through second outlet 351. Display module 37 is used to realize the display function of air conditioner 100, and it is convenient for user to operate and check the working mode, temperature, wind speed and other information of air conditioner 100. Installation box 35 can play the role of supporting and protecting display module 37, avoid damaging display module 37 due to external impact, and installation box 35 can facilitate the assembly of display module 37, so that the overall structure of display module 37 and installation box 35 is compact.
[0098] Second outlet 351 can facilitate display wire harness 372 to be wired out from installation box 35, so as to connect display wire harness 372 with electric control box component 16. By connecting display circuit board 371 with electric control box component 16 through display wire harness 372, the electrical connection between display circuit board 371 and electric control box component 16 can be indirectly realized, so as to realize the power supply and information transmission of electric control box component 16 to display circuit board 371. Moreover, by connecting radar wire harness 331 with display circuit board 371, the electrical connection between radar assembly 33 and electric control box component 16 can be indirectly realized, so as to realize the power supply and information transmission of electric control box component 16 to radar assembly 33.
[0099] Referring to Figure 16 and Figure 19 According to some embodiments of the utility model, radar module 31a is arranged in installation box 35, and at least part of radar wire harness 331 is wired along one side of display circuit board 371 in the left-right direction. For example, at least part of radar wire harness 331 can be wired along one side of display circuit board 371 in the left-right direction. For another example, all of radar wire harness 331 can be wired along one side of display circuit board 371 in the left-right direction.
[0100] By wiring at least part of radar wire harness 331 along one side of display circuit board 371 in the left-right direction, the disorderly distribution of radar wire harness 331 in installation box 35 is avoided, the possibility of interference between radar wire harness 331 and other components (such as display wire harness 372) in installation box 35 is reduced, and the layout optimization in installation box 35 is facilitated.
[0101] Referring to Figure 16 , Figure 17 andFigure 20 According to some embodiments of the present application, the radar module 31a is arranged in the mounting box 35, the mounting box 35 is provided with a mounting groove 352, the radar module 31a is accommodated in the mounting groove 352, and the opening side of the mounting groove 352 is provided with a plurality of first limiting buckles 353. The plurality of first limiting buckles 353 are arranged along the circumference of the mounting groove 352, and the first limiting buckles 353 abut against the side of the radar module 31a facing the opening. The mounting groove 352 can facilitate the assembly of the radar module 31a on the mounting box 35, and can make the structure of the radar module 31a and the mounting box 35 more compact. The first limiting buckles 353 abut against the side of the radar module 31a facing the opening, which can limit the radar module 31a to reduce or avoid the possibility of moving towards the opening side due to external impact or vibration. The plurality of first limiting buckles 353 are arranged along the circumference of the mounting groove 352, which can limit the radar module 31a at multiple positions along the circumference of the mounting groove 352, so that the radar module 31a can be more stably accommodated in the mounting groove 352.
[0102] In addition, compared with fixing the radar module 31a on the mounting box 35 by fasteners, the first limiting buckles 353 abut against the side of the radar module 31a facing the opening, which can reduce the number of parts and reduce the manufacturing cost.
[0103] In the description of the present application, the meaning of "a plurality of" is two or more.
[0104] Referring to Figure 7 , Figure 16 , Figure 17 and Figure 18 According to some embodiments of the present application, the radar module 31a is arranged in the mounting box 35, the mounting box 35 is provided with a mounting groove 352, the radar module 31a is accommodated in the mounting groove 352, and the opening of the mounting groove 352 faces forward. By arranging the opening of the mounting groove 352 to face forward and accommodating the radar module 31a in the mounting groove 352, the radar module 31a can face forward to improve the recognition effect of the radar module 31a on the position of the user located in front of the air conditioner 100.
[0105] Referring to Figure 7 , Figure 10 , Figure 11 and Figure 12According to some embodiments of the present invention, the housing assembly 10 is provided with a first slot 141 and a first fixing post 15. The first slot 141 and the first fixing post 15 are respectively located on the upper and lower sides of the mounting box 35. The upper and lower sides of the mounting box 35 are respectively provided with a first pin 354 and a first fixing hole 355. The first pin 354 is inserted upward into the first slot 141, and a first fastener passes through the first fixing hole 355 and the first fixing post 15. For example, the housing assembly 10 is provided with a plugging protrusion 14, and the first slot 141 is formed in the plugging protrusion 14. The first slot 141 facilitates the insertion of the first pin 354, and the first fixing post 15 guides the assembly of the mounting box 35 on the housing assembly 10, ensuring accurate positioning of the mounting box 35 on the housing assembly 10. The first pin 354 is inserted upward into the first slot 141, and the first fastener passes through the first fixing post 15 and the first fixing hole 355 on the lower side of the mounting box 35. This simplifies the connection between the mounting box 35 and the housing assembly 10 and provides strong stability. It also allows the mounting box 35 to be more stably fixed on the housing assembly 10, reducing or preventing relative movement between the mounting box 35 and the housing assembly 10 in the vertical direction.
[0106] Reference Figure 7 , Figure 10 , Figure 16 and Figure 17 According to some embodiments of the present invention, a positioning sleeve 356 is formed around the outer periphery of the first fixing hole 355. The positioning sleeve 356 is sleeved on the outer periphery of the first fixing post 15, which can further guide the assembly of the mounting box 35 on the housing assembly 10. By sleeved on the outer periphery of the first fixing post 15, the assembly position of the mounting box 35 on the housing assembly 10 can be more accurate.
[0107] Reference Figure 7 , Figure 12 and Figure 18 The housing assembly 10 is provided with multiple second limiting buckles 17, which are distributed on the left and right sides of the mounting box 35. The outer periphery of the mounting box 35 has a limiting protrusion 360, and the second limiting buckles 17 abut against the rear side of the limiting protrusion 360. The limiting protrusion 360 can enhance the overall structural strength of the mounting box 35 to a certain extent, and the second limiting buckles 17 can limit the mounting box 35. By having multiple second limiting buckles 17 abut against the rear side of the limiting protrusion 360, the mounting box 35 can be more stably fixed to the housing assembly 10, reducing or preventing the possibility of relative movement between the mounting box 35 and the housing assembly 10 in the front-back or left-right directions.
[0108] Reference Figure 2 , Figure 7 andFigure 16 According to some embodiments of the present application, the second outlet 351 is located on the bottom surface of the mounting box 35, and the air conditioner 100 further comprises a wiring holder electrically connected to the electric control box component 16, the wiring holder is located above the heat exchange and air supply assembly and above the display module 37, and the display wire harness 372 is routed upwards from the back of the mounting box 35 to the wiring holder. The second outlet 351 is arranged on the bottom surface of the mounting box 35, and the display wire harness 372 is routed upwards from the back of the mounting box 35 to the wiring holder located above the heat exchange and air supply assembly, which makes full use of the space in the air conditioner 100 in the up-down direction, so that the layout of the wiring holder and the heat exchange and air supply assembly is more compact and orderly, and interference between the display wire harness 372 and other components can be prevented.
[0109] With reference to Figure 7 and Figure 18 According to some embodiments of the present application, the back of the mounting box 35 is provided with a plurality of third wire routing buckles 357 arranged in the up-down direction, and the openings of at least some adjacent third wire routing buckles 357 in the left-right direction are opposite, and the display wire harness 372 is routed along the plurality of third wire routing buckles 357. Among them, the openings of at least some adjacent third wire routing buckles 357 in the left-right direction being opposite can include the following cases: for example, the openings of some adjacent third wire routing buckles 357 in the left-right direction can be opposite; for another example, the openings of all adjacent third wire routing buckles 357 in the left-right direction can be opposite.
[0110] The plurality of third wire routing buckles 357 arranged in the up-down direction can limit the display wire harness 372 to ensure that the display wire harness 372 is routed in the up-down direction, and by making the openings of at least some adjacent third wire routing buckles 357 in the left-right direction opposite, the routing of the display wire harness 372 in the left-right direction can be limited, reducing or avoiding the possibility of the display wire harness 372 deviating from the predetermined routing path in the left-right direction, so that the display wire harness 372 can be more stably retained on the back of the mounting box 35.
[0111] With reference to Figure 2 , Figure 6 , Figure 7 and Figure 8 According to some embodiments of the present application, the functional assembly 30 further comprises a voice assembly 39, the voice assembly 39 comprising at least one of a microphone module 391 and a loudspeaker module 394, and the voice assembly 39 is electrically connected to the display circuit board 371.
[0112] For example, the voice assembly 39 comprises a microphone assembly, which can control various instructions of the air conditioner 100 through voice instructions, can improve the intelligence of the air conditioner 100, and is conducive to improving the user experience.
[0113] For example, the voice component 39 comprises a speaker module 394, and the air conditioner 100 can convey relevant information to the user through the speaker, so that the user can more intuitively understand the running state of the air conditioner 100, form a two-way interactive experience, and be beneficial to improving the use experience of the user.
[0114] The voice component 39 is electrically connected with the display circuit board 371, and the display circuit board 371 is connected with the electric control box component 16 of the air conditioner 100, so as to indirectly realize the electrical connection between the voice component 39 and the electric control box component 16, and realize the power supply and information transmission of the electric control box component 16 to the voice component 39.
[0115] With reference to Figure 2 , Figure 7 and Figure 16 , according to some embodiments of the present application, the voice component 39 is located above the display module 37, and the voice component 39 is connected with the upper end of the display circuit board 371. While realizing the power supply and information transmission of the voice component 39, since the voice component 39 is located above the display module 37, for example, the voice component 39 and the display circuit board 371 are connected through the first voice wire harness 392, and the voice component 39 and the upper end of the display circuit board 371 are connected, so that the length of the first voice wire harness 392 between the voice component 39 and the display circuit board 371 can be reduced.
[0116] With reference to Figure 7 , Figure 8 and Figure 16 , according to some embodiments of the present application, the voice component 39 comprises a microphone module 391, the microphone module 391 and the display circuit board 371 are connected with the first voice wire harness 392, the upper part of the mounting box 35 is formed with a third wire outlet 358, the first voice wire harness 392 is wired through the third wire outlet 358, and the third wire outlet 358 is formed on the side wall in the left-right direction of the mounting box 35. The third wire outlet 358 is close to the upper part of the mounting box 35, which can facilitate the wiring of the first voice wire harness 392, and can make the length of the first voice wire harness 392 as short as possible; and if the third wire outlet 358 is formed on the side wall of the top of the mounting box 35, water can enter the inside of the mounting box 35 through the third wire outlet 358, and by forming the third wire outlet 358 on the side wall in the left-right direction of the mounting box 35, the possibility of water directly entering the inside of the mounting box 35 through the third wire outlet 358 due to its own gravity can be reduced or avoided.
[0117] With reference to Figure 7 and Figure 11According to some embodiments of the present application, the outer surface of the mounting box 35 is provided with a wire blocking protrusion 359, and the wire blocking protrusion 359 is located at the outer periphery of the third wire outlet 358. The wire blocking protrusion 359 can enhance the overall structural strength of the mounting box 35 to a certain extent, and the wire blocking protrusion 359 can limit the first voice harness 392, so that the first voice harness 392 is routed according to the predetermined routing path, and the first voice harness 392 can be closely attached to the outer surface of the mounting box 35 to reduce the space occupied by the first voice harness 392 in the left-right direction, and can also reduce or avoid the first voice harness 392 from interfering with other harnesses due to excessive protrusion from the outer surface of the mounting box 35.
[0118] In some embodiments, the wire blocking protrusion 359 is an elastic member. When the diameter of the cross section of the first voice harness 392 is large, at least part of the wire blocking protrusion 359 is elastically deformed to move at least part of the wire blocking protrusion 359 away from the outer surface of the mounting box 35, so that the first voice harness 392 is arranged through the gap between the wire blocking protrusion 359 and the outer surface of the mounting box 35. After the first voice harness 392 is routed through the wire blocking protrusion 359, the wire blocking protrusion 359 can be restored to the direction close to the outer surface of the mounting box 35 by the elastic restoring force, so as to press the first voice harness 392 and make the first voice harness 392 more stably fixed to the outer surface of the mounting box 35.
[0119] Referring to Figure 2 , Figure 7 and Figure 16 According to some embodiments of the present application, the voice assembly 39 comprises a speaker module 394, and the second voice harness 395 is connected between the speaker module 394 and the display circuit board 371, and the second voice harness 395 is routed out through the second wire outlet 351. The second voice harness 395 can indirectly realize the electrical connection between the speaker module 394 and the display circuit board 371 to realize the power supply and information transmission of the display circuit board 371 to the speaker module 394. The second wire outlet 351 can facilitate the second voice harness 395 to be routed out of the mounting box 35 to facilitate connection with the speaker module 394.
[0120] In some embodiments, the second wire outlet 351 is located on the bottom surface of the mounting box 35, and the casing assembly 10 is further provided with a terminal block electrically connected to the electric control box component 16, the terminal block being located above the heat exchange and air supply assembly and above the display module 37, the display wire harness 372 being routed upward from the back of the mounting box 35 to be connected to the terminal block, and the second voice wire harness 395 being routed upward from the back of the mounting box 35 to be connected to the speaker module 394. The second voice wire harness 395 and the display wire harness 372 are both routed from the second wire outlet 351 and upward from the back of the mounting box 35 to be connected to the terminal block or the speaker module 394, which makes full use of the relatively concentrated area on the back of the mounting box 35 for wiring, so that the wiring on the back of the mounting box 35 is more orderly, and the display wire harness 372 and the second voice wire harness 395 do not occupy too much space due to different wiring paths, which is conducive to the layout optimization of the casing assembly 10.
[0121] Further, the back of the mounting box 35 is provided with a plurality of third wire routing buckles 357 spaced in the up-down direction, and the openings of at least some adjacent third wire routing buckles 357 in the left-right direction are opposite. The second voice wire harness 395 is routed along the plurality of third wire routing buckles 357. The third wire routing buckles 357 can simultaneously limit the display wire harness 372 and the second voice wire harness 395 to ensure that the display wire harness 372 and the second voice wire harness 395 are routed in the up-down direction. By making the openings of at least some adjacent third wire routing buckles 357 in the left-right direction opposite, the display wire harness 372 and the second voice wire harness 395 can be limited in the left-right direction, reducing or avoiding the possibility of the display wire harness 372 or the second voice wire harness 395 deviating from the predetermined wiring path in the left-right direction, so that the display wire harness 372 and the second voice wire harness 395 can be more stably maintained on the back of the mounting box 35.
[0122] In addition, when the operator assembles the components of the air conditioner 100, the display wire harness 372 and the second voice wire harness 395 are both routed from the second wire outlet 351 and along the plurality of third wire routing buckles 357 on the back of the mounting box 35, so that different wire outlet positions and wiring paths do not need to be found separately, and the display wire harness 372 and the second voice wire harness 395 can be routed from the second wire outlet 351 and along the third wire routing buckles 357, which can simplify the operation process and improve the assembly efficiency.
[0123] Referring to Figure 2 and Figure 16According to some embodiments of the utility model, still include air -guiding subassembly 50 and drive motor subassembly 60, air -guiding subassembly 50 is located in the shell subassembly 10 and air -guiding subassembly 50 is used for adjusting the air -out direction of air -out 121, drive motor subassembly 60 includes at least one drive motor, drive motor subassembly 60 is used for driving air -guiding subassembly 50 movement, drive motor is connected with motor wire harness 611, and motor wire harness 611 is connected with display circuit board 371. Air -guiding subassembly 50 is arranged in the shell subassembly 10 and air -guiding subassembly 50 is used for adjusting the air -out direction of air -out 121, in combination with the driving effect of drive motor subassembly 60, so that air conditioner 100 can change the air -out direction accurately according to user demand or internal preset program. For example, in different use scenarios, such as refrigeration, can guide the wind to the upper side, avoid the discomfort caused by cold wind straight blow human body, when heating, guide the wind to the lower side, make hot air can better circulate in the room, improve the temperature uniformity of the whole room. Drive motor drives air -guiding subassembly 50 movement, can flexibly adjust the air -out direction of air -out 121, improve the use comfort of user.
[0124] Motor wire harness 611 is connected with display circuit board 371, can indirectly realize the electrical connection between drive motor and display circuit board 371, to realize the control of display circuit board 371 to drive motor. For example, user can set up through display module 37, select specific air -out mode (such as automatic swing, directional air supply etc.) on display module 37, and display circuit board 371 receives corresponding instruction, and passes control signal to drive motor through motor wire harness 611, and drive motor drives air -guiding subassembly 50 to move according to the set requirement, to adjust the air -out direction of air -out 121.
[0125] In some embodiments, air -guiding subassembly 50 can include air -guiding plate 51 and louver mechanism 52, air -guiding plate 51 is arranged at air -out 121 for opening and closing air -out 121, and the rotation axis of air -guiding plate 51 extends along the up-down direction, air -guiding plate 51 can adjust the air -out direction simultaneously, and louver mechanism 52 is arranged in the shell subassembly 10 and adjacent to air -out 121, and louver mechanism 52 can include a plurality of louvers arranged in up-down direction, each louver can swing up-down, drive motor subassembly 60 includes drive motor for driving air -guiding plate 51 rotation and drive motor for driving louver mechanism 52 movement, and the drive motor for driving air -guiding plate 51 rotation is first drive motor, and the drive motor for driving louver mechanism 52 movement is second drive motor 61.
[0126] The air deflector 51 can be opened and closed by rotating along the up-down direction, and when the air outlet 121 is in the open state, the air flow direction of the air outlet 121 can be adjusted along the left-right direction by adjusting the rotation amplitude of the air deflector 51, and the air flow direction can be adjusted along the up-down direction by swinging the louver along the up-down direction. The air deflector 51 is driven to rotate by the first driving motor, and the louver mechanism 52 is driven to rotate by the second driving motor 61, so that the air deflector 51 and the louver mechanism 52 can be controlled respectively, and the flexibility of adjusting the air outlet direction of the air outlet 121 is enhanced.
[0127] For example, the user can separately control the opening and closing and the rotation amplitude of the air deflector 51, separately adjust the angle of the louver in the louver mechanism 52, and also cooperate the air deflector 51 and the louver mechanism 52 according to actual needs, so that more diversified air outlet directions can be realized.
[0128] Referring to Figure 16 According to some embodiments of the present application, the motor wire harness 611 has a plug-in end, and the plug-in end is plugged with the display circuit board 371. The plug-in end of the motor wire harness 611 is directly plugged with the display circuit board 371, which can improve the reliability of the electrical connection between the motor wire harness 611 and the display circuit board 371, reduce the number of additional plug-in terminals, improve the assembly efficiency, and also reduce the reliability of the electrical connection between the motor wire harness 611 and the display circuit board 371 due to the virtual connection of the plug-in terminal.
[0129] Referring to Figure 16 According to some embodiments of the present application, the motor wire harness 611 is wired through the second wire outlet 351, and the second wire outlet 351 can facilitate the wiring of the motor wire harness 611 in the mounting box 35, so as to facilitate electrical connection with the driving motor.
[0130] In some embodiments, the air conditioner 100 includes a voice component 39, the voice component 39 includes a speaker module 394, the speaker module 394 is connected with the display circuit board 371 through a second voice wire harness 395, the second voice wire harness 395 is wired through the second wire outlet 351, the display circuit board 371 is connected with a display wire harness 372, the display wire harness 372 is connected with the electric control box component 16 of the air conditioner 100, and the display wire harness 372 is wired through the second wire outlet 351. For example, when the operator assembles each component of the air conditioner 100, the motor wire harness 611, the display wire harness 372 and the second voice wire harness 395 are wired from the second wire outlet 351, so that different wire outlet positions do not need to be found respectively, and the motor wire harness 611, the display wire harness 372 and the second voice wire harness 395 can be wired from the second wire outlet 351, so that the operation process can be simplified, and the assembly efficiency can be improved.
[0131] Referring toFigure 16 According to some embodiments of the present application, the radar module 31a is arranged in the mounting box 35 and located below the display module 37, the second wire outlet 351 is formed at the bottom of the mounting box 35, and the part of the motor wire harness 611 located in the mounting box 35 is the in-box wire harness 612, and at least part of the in-box wire harness 612 is located at the outer circumferential side of the radar module 31a. Among them, at least part of the in-box wire harness 612 located at the outer circumferential side of the radar module 31a can include the following cases: for example, part of the in-box wire harness 612 can be located at the outer circumferential side of the radar module 31a; for another example, all of the in-box wire harness 612 can also be located at the outer circumferential side of the radar module 31a.
[0132] The radar module 31a is arranged in the mounting box 35 and located below the display module 37, and the second wire outlet 351 is at the bottom of the mounting box 35. This layout makes full use of the space of the mounting box 35 in the up-down direction, realizes the partition arrangement of the radar module 31a and the display module 37, makes the internal structure of the mounting box 35 more compact and orderly, and can also prevent the display module 37 and the radar module 31a from interfering. Moreover, at least part of the in-box wire harness 612 of the motor wire harness 611 is located at the outer circumferential side of the radar module 31a, which further makes full use of the gap between the outer circumferential side of the radar module 31a and the inner wall of the mounting box 35, and improves the utilization rate of the internal space of the mounting box 35.
[0133] Further, the mounting box 35 is provided with a mounting groove 352, and the radar module 31a is accommodated in the mounting groove 352. The open side of the mounting groove 352 is provided with a plurality of first limiting buckles 353, and the plurality of first limiting buckles 353 are arranged at intervals along the circumferential direction of the mounting groove 352. The first limiting buckle 353 abuts against the side of the radar module 31a facing the open side. The side of the open side of the mounting groove 352 away from the radar module 31a is provided with a fourth wire routing buckle 361, and at least part of the in-box wire harness 612 of the motor wire harness 611 is routed along the fourth wire routing buckle 361. The fourth wire routing buckle 361 can limit the in-box wire harness 612 routed along the outer circumferential side of the radar module 31a, so as to ensure that at least part of the in-box wire harness 612 is routed along the outer circumferential side of the radar module 31a, thereby reducing or preventing the in-box wire harness 612 from being entangled with other wire harnesses.
[0134] Referring to Figure 16According to some embodiments of the utility model, first connecting area 373 and second connecting area 374 are arranged on display circuit board 371, first connecting area 373 and second connecting area 374 are located at upper and lower ends of display circuit board 371, first connecting area 373 can be located above second connecting area 374, first connecting area 373 is equipped with first plug-in seat 375 and second plug-in seat 376, radar wire harness 331 is connected with first plug-in seat 375, voice wire harness is connected with second plug-in seat 376, second connecting area 374 is equipped with third plug-in seat 377 and fourth plug-in seat 378, motor wire harness 611 is connected with third plug-in seat 377, display wire harness 372 is connected with fourth plug-in seat 378.
[0135] First connecting area 373 and second connecting area 374 are arranged on display circuit board 371 and located at upper and lower ends respectively, in the assembly process, the plug-in seat corresponding to the wire harness can be quickly and accurately found, the misoperation caused by the disordered connection position is reduced or avoided, the wiring and connection accuracy and assembly efficiency are improved, and the later maintenance and fault troubleshooting can be facilitated.
[0136] By connecting the wire harnesses with different functions to the different plug-in seats located at upper and lower ends respectively, when each wire harness extends outward from display circuit board 371, a relatively regular trend is naturally formed, and the wire harnesses are prevented from gathering and crossing around the circuit board in disorder. For example, the voice wire harness is led out from second plug-in seat 376 in first connecting area 373 located at the upper end, and can be wired along the upper part of mounting box 35, and after display wire harness 372 is led out from second connecting area 374 located at the lower end, it can be wired along the back of mounting box 35 and led out from second wire outlet 351 located at the bottom of mounting box 35, so that the wire harness layout inside the whole mounting box 35 and connected with the outside is more orderly, the space utilization is improved, and the possibility of mutual interference between the wire harnesses is reduced.
[0137] Referring to Figure 2 , Figure 6 and Figure 7According to some embodiments of the utility model, the shell assembly 10 includes a rear shell part 11 and a front shell part 12, the air outlet 121 is formed in the front shell part 12, the air inlet 111 is formed in the rear shell part 11, the front shell part 12 includes an air outlet frame assembly 122, the air outlet frame assembly 122 includes an air outlet frame 123 and a front panel 124, the front panel 124 is arranged on the front side of the air outlet frame 123, the radar module 31a and the display module 37 are both arranged on the front panel 124, and the radar module 31a is located below the display module 37. The radar module 31a and the display module 37 are both mounted on the inner side of the front panel 124, the front panel 124 can play a certain protective role on the radar module 31a and the display module 37, so as to avoid damage to the radar module 31a and the display module 37 due to external impact, and the display module 37 is mounted on the inner side of the front panel 124, so that the display module 37 can directly spread the display content to the outer side of the front panel 124, and the user can conveniently check or operate the display content of the air conditioner 100 from the outer side of the front panel 124.
[0138] It should be explained that the inner side of the front panel 124 refers to the side of the front panel 124 facing the inside of the shell assembly 10.
[0139] For example, the air outlet 121 is located on the left and right sides of the front panel 124, by arranging the radar module 31a and the display module 37 on the front panel 124 and arranging the radar module 31a below the display module 37, the air flow of the air outlet 121 can be ensured to be smooth, the radar module 31a and the display module 37 can be prevented from being located at the air outlet 121 to block the air flow of the air outlet 121, the detection accuracy of the radar module 31a can be ensured, the air deflector 51 at the air outlet 121 can be prevented from affecting the detection accuracy of the radar module 31a, and the radar module 31a can be prevented from misjudging the movement of the air deflector 51 at the air outlet 121 as the movement of a person. By arranging the radar module 31a below the display module 37, the radar module 31a can be prevented from blocking the display effect of the display module 37 or the display module 37 can be prevented from interfering with the signal of the radar module 31a, so that the radar module 31a and the display module 37 can be ensured to normally operate; and by arranging the radar module 31a below the display module 37, the space in the up-down direction can be utilized, the horizontal space can be reduced, and the overall structure of the air outlet 121, the display module 37 and the radar module 31a is compact.
[0140] By arranging the air outlet 121 on the left and right sides of the radar module 31a and arranging the radar module 31a below the display module 37, the space inside the shell assembly 10 can be fully utilized, the overall structure of the air outlet 121, the display module 37 and the radar module 31a is compact, and while the air outlet 121, the display module 37 and the radar module 31a are orderly integrated together, the mutual interference between the air outlet 121, the display module 37 and the radar module 31a can be reduced.
[0141] In some embodiments, the display module 37 and the radar module 31a are both arranged in the mounting box 35, and the mounting box 35 is detachably connected with the front panel 124, so that the display module 37 and the radar module 31a can be conveniently assembled and disassembled on the front panel 124, and the replacement or maintenance of the display module 37 or the radar module 31a is more convenient.
[0142] For example, the assembly process of the functional assembly 30 on the front panel 124 can be that the display module 37 and the radar module 31a are first assembled in the mounting box 35, and then the display module 37, the radar module 31a and the mounting box 35 are assembled as a whole on the front panel 124, so that the radar module 31a and the display module 37 can be assembled as a whole and then assembled on the front panel 124.
[0143] By assembling the display module 37, the radar module 31a and the mounting box 35 as a whole in advance, the mounting box 35 is mounted on the front panel 124 to complete the installation of the display module 37 and the radar module 31a on the front panel 124, so that the operation steps of assembling the display module 37 and the radar module 31a on the front panel 124 are simplified, the assembly time of the display module 37 and the radar module 31a on the front panel 124 is reduced, and the assembly efficiency is improved; and when the display module 37 or the radar module 31a needs to be maintained or replaced, the display module 37 and the radar module 31a can be disassembled from the front panel 124 only by disassembling the mounting box 35, so that the disassembly time is reduced, and the maintenance or replacement of the display module 37 or the radar module 31a is facilitated.
[0144] In some embodiments, the front panel 124 is formed with a light-transmitting portion, the display module 37 and the radar module 31a are both located on the inner side of the front panel 124, the display module 37 comprises a lamp body, a display circuit board 371 and a reflecting cavity, the lamp body is arranged on the display circuit board 371, the reflecting cavity is a light-transmitting member and is arranged on the display circuit board 371, the reflecting cavity is arranged outside the lamp body, the light emitted by the lamp body is adapted to pass through the reflecting cavity and finally propagate to the light-transmitting portion of the front panel 124, so that a user can see the display content from the outside of the front panel 124.
[0145] In some embodiments, the front panel 124 comprises a panel body 126 and a panel support 127, the panel support 127 is arranged on the inner side of the panel body 126, and the mounting box 35 is detachably connected with the panel support 127.
[0146] Referring to Figure 7 , Figure 8 and Figure 12According to some embodiments of the utility model, functional assembly 30 includes microphone module 391, microphone module 391 is located at front panel 124 and microphone module 391 is above display module 37, microphone module 391 is detachably connected with front panel 124, which can facilitate the maintenance or replacement of microphone module 391. For example, air outlet 121 is located on the left and right sides of front panel 124, by microphone module 391 and display module 37 are located at front panel 124 and microphone module 391 is above display module 37, the airflow of air outlet 121 can be ensured, and the airflow of air outlet 121 can be prevented from being blocked by microphone module 391 and display module 37. Microphone module 391 is above display module 37, which can also reduce the obstruction of display module 37 by microphone module 391 or the interference of display module 37 to the sound transmission of microphone module 391, and ensure the normal operation of microphone module 391 and display module 37. In addition, microphone module 391 is above display module 37, which can utilize the space in the up-down direction, reduce the horizontal occupation, and thus make the overall structure of air outlet 121, display module 37 and microphone module 391 compact.
[0147] By locating microphone module 391 above display module 37, the space inside the shell assembly 10 can be fully utilized, making the overall structure of air outlet 121, display module 37 and microphone module 391 compact, and while orderly integrating air outlet 121, display module 37 and microphone module 391, the mutual interference between air outlet 121, display module 37 and microphone module 391 can be reduced.
[0148] In some embodiments, the shell assembly 10 is provided with a second fixing hole and a third limiting press buckle 19, the second fixing hole and the third limiting press buckle 19 are located on the left and right sides of the microphone module 391 respectively, the left and right sides of the microphone module 391 are respectively provided with a third fixing hole and a first convex edge 396, the second fastener 393 is threaded through the third fixing hole and the second fixing hole, and the third limiting press buckle 19 abuts against the back side of the first convex edge 396. The first convex edge 396 can enhance the overall structural strength of the microphone module 391 to some extent, the second fastener 393 is threaded through the third fixing hole and the second fixing hole, which can make the connection between the microphone module 391 and the shell assembly 10 simple and stable. In addition, the third limiting press buckle 19 abuts against the back side of the first convex edge 396, which can limit the microphone module 391, and through the abutment of the third limiting press buckle 19 and the back side of the first convex edge 396, the microphone module 391 can be more stably fixed on the shell assembly 10, reducing or preventing the relative movement of the microphone module 391 and the shell assembly 10 in the front-back direction.
[0149] The third limiting buckle 19 is in abutment with the rear side of the first convex edge 396 by penetrating the third fixing hole and the second fixing hole by the second fastener 393, so that the detachable connection between the microphone module 391 and the front panel 124 can be achieved, and the microphone module 391 can be limited in the left-right direction by the second fixing hole and the third limiting buckle 19 located on the left and right sides of the microphone module 391 respectively, so that the relative movement between the microphone module 391 and the shell assembly 10 in the left-right direction is reduced or prevented.
[0150] With reference to Figure 7 , Figure 8 and Figure 12 According to some embodiments of the present application, the microphone module 391 is connected with the front panel 124 through the second fastener 393, the top of the front panel 124 is formed with an avoiding groove 125, the avoiding groove 125 is adjacent to the second fastener 393, and the avoiding groove 125 is used to avoid the assembly operation space. The avoiding groove 125 can make the assembly space of the operator larger, so that the assembly of the microphone module 391 on the front panel 124 is more smooth, which is beneficial to improve the assembly efficiency.
[0151] For example, during the assembly process, when the operator needs to use the second fastener 393 to fix the microphone module 391 to the front panel 124, the avoiding groove 125 avoids the assembly operation space, so that the surrounding structure can avoid hindering the operation tool, so that the operator can more conveniently and smoothly fasten the second fastener 393, thereby improving the assembly efficiency. For example, if there is no avoiding groove 125, the operation tool may not be able to be used in a narrow space, resulting in prolonged assembly time. By avoiding the assembly operation space through the avoiding groove 125, the operator can quickly and accurately complete the fixing work.
[0152] With reference to Figure 2 According to some embodiments of the present application, the functional assembly 30 includes a loudspeaker module 394, the loudspeaker module 394 is arranged at the upper end of the rear shell part 11, and the loudspeaker module 394 is located above the heat exchange and air supply assembly. The space in the up-down direction can be fully utilized, the horizontal occupation is reduced, the structure of the loudspeaker module 394 and the heat exchange and air supply assembly as a whole is compact, and the mutual interference between the loudspeaker module 394 and the heat exchange and air supply assembly can be reduced while the loudspeaker module 394 and the heat exchange and air supply assembly are orderly integrated together.
[0153] In some embodiments, the rear shell part 11 is formed with an air inlet 111, and the heat exchange air supply assembly is formed with an air duct opposite the air inlet 111. The loudspeaker module 394 is arranged at the upper end of the rear shell part 11 and located above the heat exchange air supply assembly, so as to ensure smooth airflow of the air inlet 111 and avoid the loudspeaker module 394 blocking the airflow of the air inlet 111.
[0154] With reference to Figure 6 、 Figure 14 and Figure 15 , according to some embodiments of the present application, the front panel 124 comprises a panel body 126 and a panel support 127, the panel support 127 is arranged at the rear side of the panel body 126, and the rear side of the panel support 127 is provided with a support plate 128, the support plate 128 is located at the top of the panel support 127 and is supported above the air outlet frame 123. The support plate 128 can enhance the overall structural strength of the front panel 124 to some extent, and the air outlet frame 123 can support the front panel 124 through the support plate 128, so that the front panel 124 can better withstand external impact, thereby effectively reducing or preventing the front panel 124 from shaking.
[0155] With reference to Figure 7 、 Figure 12 and Figure 13 , according to some embodiments of the present application, the rear side of the panel support 127 is further provided with a support protrusion 129, the support protrusion 129 is one or a plurality of support protrusions 129 arranged in the up-down direction, the support protrusion 129 is located below the support plate 128, and the rear surface of the support protrusion 129 and the rear side of the support plate 128 are located on the same plane. The support protrusion 129 can further enhance the overall structural strength of the front panel 124.
[0156] For example, the rear surface of the support protrusion 129 and the rear side of the support plate 128 are located on the same vertical plane. One or a plurality of support protrusions 129 arranged in the up-down direction are arranged at the rear side of the panel support 127, and together with the support plate 128 located above, a multi-point support structure is formed. This multi-point support structure can more evenly distribute various external forces borne by the front panel 124, such as vibrations generated by the operation of the air conditioner 100 itself, external collisions, pressing forces, etc. can be effectively shared through the multi-point support structure, avoiding excessive stress concentration in a certain place, thereby further enhancing the overall structural stability of the front panel 124, making it more firmly fixed in the corresponding position, reducing or avoiding the possibility of shaking, deformation, etc.
[0157] For example, during the assembly process, the front panel 124 is placed on the working surface, which is a horizontal surface, and the rear side of the panel support 127 faces the working surface. A support protrusion 129 is provided on the rear side of the panel support 127, and the rear surface of the support protrusion 129 is in the same plane as the rear side of the support plate 128. At this time, the support protrusion 129 and the support plate 128 can form a multi-point support structure. When the operator is working, this multi-point support structure can effectively share the force applied by the operator and reduce or prevent the possibility of deformation of the front panel 124 due to uneven force.
[0158] With reference to Figure 7 , Figure 12 and Figure 13 , according to some embodiments of the present application, the panel support 127 is provided with a first slot 141 and a first fixing column 15, the first slot 141 and the first fixing column 15 are respectively located on the upper and lower sides of the mounting box 35, the upper and lower sides of the mounting box 35 are respectively provided with a first bolt 354 and a first fixing hole 355, the first bolt 354 is inserted into the first slot 141 upward, and the first fastener is provided in the first fixing hole 355 and the first fixing column 15. The panel support 127 is provided with a plug-in protrusion 14, and the plug-in protrusion 14 is formed with a first slot 141. The rear surface of the plug-in protrusion 14, the rear surface of the support protrusion 129 and the rear side of the support plate 128 are in the same plane, for example, in the same vertical plane.
[0159] The plug-in protrusion 14, the support protrusion 129 and the support plate 128 together form a multi-point support structure, which can more evenly distribute various external forces borne by the front panel 124, thereby reducing or avoiding the possibility of deformation of the front panel 124.
[0160] With reference to Figure 1 , Figure 14 and Figure 15According to some embodiments of the utility model, the front panel 124 includes a panel body 126 and a panel support 127, the air outlet 121 is two and the air outlet 121 is formed in the air outlet frame 123, the front panel 124 is located between the two air outlets 121, the left and right ends of the front panel 124 are respectively provided with sealing rubber strips 130, the sealing rubber strips 130 are used for sealing the gap between the panel body 126 and the panel support 127, the rear side of the sealing rubber strip 130 is formed with a sealing protrusion 131, and the sealing protrusion 131 is used for sealing the gap between the air outlet frame 123 and the panel support 127. The sealing rubber strip 130 can effectively fill the gap between the panel body 126 and the panel support 127, prevent external dust, water and other impurities from entering the area between the panel body 126 and the panel support 127, and the sealing protrusion 131 can seal the gap between the air outlet frame 123 and the panel support 127. Compared with the flat sealing mode, the sealing protrusion 131 can better fit the gap surface between the air outlet frame 123 and the panel support 127, increase the sealing contact area, form a more compact sealing state, make the airflow at the air outlet 121 blow out towards the two sides of the front panel 124, effectively block the possibility of the airflow at the air outlet 121 flowing to the gap between the panel support 127 and the air outlet frame 123, and improve the air outlet efficiency of the air conditioner 100.
[0161] With reference to Figure 4 And Figure 5 According to some embodiments of the utility model, the shell assembly 10 includes a top cover 70, the top cover 70 is arranged on the top of the air outlet frame 123, the top cover 70 is provided with a first overflow column 71, the first overflow column 71 is formed with a first overflow channel 711, the first overflow channel 711 penetrates the first overflow column 71 from top to bottom, the supporting plate 128 is provided with a water receiving area and the water receiving area is provided with a second overflow column 132, the second overflow column 132 is formed with a second overflow channel 134, the second overflow channel 134 penetrates the second overflow column 132 from top to bottom, at least part of the first overflow channel 711 is opposite to the second overflow channel 134, and the left and right sides of the air outlet frame 123 are formed with air outlet channels.
[0162] The top condensate water of the top cover 70 can flow into the panel support 127 through the first overflow column 71, further flow into the inside of the air outlet channel through the second overflow channel 134 on the second overflow column 132 on the panel support 127, and then flow to the bottom of the air outlet channel, and then be drained through the water receiving tray.
[0163] Further, the lower surface of the second overflow column 132 protrudes from the lower surface of the support plate 128, and the lower portion of the second overflow column 132 is formed with a guide inclined surface 133 which is located at the lower portion of the support plate 128 and extends obliquely in a direction from top to bottom towards the direction close to the panel support 127. The guide inclined surface 133 can guide the condensed water flowing into the second overflow channel 134 so that the condensed water flows towards the air outlet channel as much as possible.
[0164] In addition, the louver mechanism 52 is arranged in the air outlet channel, and the louver mechanism 52 includes a plurality of louver blades arranged in an up-down direction, each of which can swing up and down. The drive motor assembly 60 includes a second drive motor 61 for driving the louver mechanism 52 to move, and the outer peripheral side of the second drive motor 61 is covered with a motor cover 613, and the upper portion of the motor cover 613 is provided with a water blocking protrusion. The second drive motor 61 is arranged in the air outlet channel, and the motor cover 613 can protect the second drive motor 61. By covering the outer peripheral side of the second drive motor 61 with the motor cover 613, the influence of external impact on the second drive motor 61 can be reduced. Since the condensed water flows to the water pan through the inner wall of the air outlet channel, the upper portion of the motor cover 613 is provided with a water blocking protrusion, for example, the water blocking protrusion is arranged in the circumferential direction of the motor cover 613. The water blocking protrusion can increase the height of the outer peripheral side of the motor cover 613, for example, the upper edge of the water blocking protrusion can be flush with the lower edge of the second overflow column 132 or the upper edge of the water blocking protrusion can be located above the lower edge of the second overflow column 132. In this way, the condensed water in the second overflow channel 134 can be effectively prevented from overflowing to the motor cover 613, so that the condensed water flowing to the second drive motor 61 can be reduced or avoided, which is beneficial to prolong the service life of the second drive motor 61.
[0165] Hereinafter, the air conditioner 100 according to some embodiments of the present application will be described with reference to the accompanying drawings. Figures 1-20 The air conditioner 100 according to some embodiments of the present application will be described with reference to the accompanying drawings.
[0166] Hereinafter, the air conditioner 100 according to some embodiments of the present application will be described with reference to the accompanying drawings. Figure 1 、 Figure 2 and Figure 16 In this embodiment, the air conditioner 100 is a split floor type air conditioner 100, which includes an air conditioner indoor unit and an air conditioner outdoor unit. The air conditioner indoor unit includes a casing assembly 10, a heat exchange and air supply assembly, an air duct assembly 22, a function assembly 30, an air guide assembly 50, and a drive motor assembly 60.
[0167] The shell assembly 10 comprises a top cover 70, a base 80, a front shell part 12 and a rear shell part 11, the top cover 70 covers the top of the front shell part 12 and the rear shell part 11, the front shell part 12 and the rear shell part 11 are arranged on the base 80 and the front shell part 12 is located in front of the rear shell part 11. The front shell part 12 comprises an air outlet frame assembly 122, the air outlet frame assembly 122 comprises an air outlet frame 123 and a front panel 124, the air outlet frame 123 comprises a front air outlet frame 1231 and a rear air outlet frame 1232, the front panel 124 is arranged at the front side of the front air outlet frame 1231, two air outlets 121 are formed in the front air outlet frame 1231, the front panel 124 is located between the two air outlets 121, the rear air outlet frame 1232 forms air outlet channels, the air outlet channels are two, the air outlet channels are opposite to and communicate with the air outlets 121. The rear shell part 11 forms an air inlet 111, the heat exchange air supply assembly comprises a heat exchanger assembly 21 and an air duct assembly 22, the heat exchanger assembly 21 and the air duct assembly 22 are arranged in the shell assembly 10, and the air duct assembly 22 is arranged between the heat exchanger assembly 21 and the air outlet 121, the air duct assembly 22 comprises an air duct volute 221 and a fan wheel 222, the air duct volute 221 has an air duct therein, at least part of the fan wheel 222 is located in the air duct,
[0168] The air guide assembly 50 is arranged in the shell assembly 10 and is used for adjusting the air outlet direction of the air outlet 121, the drive motor assembly 60 comprises at least one drive motor, the drive motor assembly 60 is used for driving the air guide assembly 50 to move, and the drive motor is connected with a motor wire harness 611.
[0169] The air guide assembly 50 can comprise an air guide plate 51 and a louver mechanism 52, the air guide plate 51 is arranged at the air outlet 121 for opening and closing the air outlet 121, the rotation axis of the air guide plate 51 extends along the up-down direction, and the air guide plate 51 can also adjust the air outlet direction, the louver mechanism 52 is arranged in the shell assembly 10 and is adjacent to the air outlet 121, the louver mechanism 52 can comprise a plurality of louver blades arranged in up-down direction, each louver blade can swing up and down, the drive motor assembly 60 comprises a first drive motor for driving the air guide plate 51 to rotate and a second drive motor 61 for driving the louver mechanism 52 to move.
[0170] The front panel 124 comprises a panel body 126 and a panel support 127, the panel support 127 is arranged at the rear side of the panel body 126, the rear side of the panel support 127 is provided with a support plate 128, the support plate 128 is located at the top of the panel support 127, and the support plate 128 is supported above the air outlet frame 123.
[0171] The rear side of the panel support 127 is further provided with a support protrusion 129, which is one or a plurality of protrusions arranged in the up-down direction, the support protrusion 129 is located below the support plate 128, and the rear surface of the support protrusion 129 is located in the same plane as the rear side of the support plate 128.
[0172] The front panel 124 includes a panel body 126 and a panel support 127, the air outlet 121 is two and is formed in the air outlet frame 123, the front panel 124 is located between the two air outlets 121, the left and right ends of the front panel 124 are respectively provided with a sealing rubber strip 130, the sealing rubber strip 130 is used to seal the gap between the panel body 126 and the panel support 127, and the rear side of the sealing rubber strip 130 is formed with a sealing protrusion 131, which is used to seal the gap between the air outlet frame 123 and the panel support 127.
[0173] The functional assembly 30 is arranged inside the front panel 124 and includes a mounting box 35, a display module 37, a radar module 31a and a voice assembly 39. The voice assembly 39 includes a microphone module 391 and a speaker module 394, the radar module 31a and the display module 37 are arranged in the mounting box 35, the radar module 31a is located below the display module 37, the microphone module 391 is arranged on the front panel 124 and located above the display module 37, the microphone module 391 is detachably connected with the front panel 124, and the speaker module 394 is arranged at the upper end of the rear shell part 11 and located above the heat exchange and air supply assembly.
[0174] The shell assembly 10 is provided with a first slot 141 and a first fixing column 15, the first slot 141 and the first fixing column 15 are respectively located on the upper and lower sides of the mounting box 35, the upper and lower sides of the mounting box 35 are respectively provided with a first latch 354 and a first fixing hole 355, the first latch 354 is inserted into the first slot 141 upwardly, and a first fastener is arranged in the first fixing hole 355 and the first fixing column 15. The outer periphery of the first fixing hole 355 is formed with a positioning sleeve 356 arranged around the first fixing hole 355, and the positioning sleeve 356 is sleeved on the outer periphery side of the first fixing column 15. The mounting box 35 is formed with a second wire outlet 351, and the second wire outlet 351 is located on the bottom surface of the mounting box 35. The shell assembly 10 is further provided with a wiring seat electrically connected with the electric control box part 16, and the wiring seat is located above the heat exchange and air supply assembly and above the display module 37.
[0175] The display module 37 comprises a display circuit board 371, the radar wire harness 331 is connected with the display circuit board 371, the display circuit board 371 is connected with a display wire harness 372, the display wire harness 372 is connected with the electric control box component 16 of the air conditioner 100, the display wire harness 372 is wired out through the second wire outlet 351, and the display wire harness 372 is wired upwards from the back of the mounting box 35 to be connected with a wiring seat. The back of the mounting box 35 is provided with a plurality of third wire routing buckles 357 which are arranged at intervals in the up-down direction, and the openings of at least part of the adjacent two third wire routing buckles 357 in the left-right direction are opposite, and the display wire harness 372 is wired along the plurality of third wire routing buckles 357.
[0176] A first voice wire harness 392 is connected between the microphone module 391 and the display circuit board 371, the upper part of the mounting box 35 is formed with a third wire outlet 358, the first voice wire harness 392 is wired out through the third wire outlet 358, and the third wire outlet 358 is formed on the side wall in the left-right direction of the mounting box 35. The outer surface of the mounting box 35 is provided with a wire blocking rib 359, and the wire blocking rib 359 is located at the outer peripheral edge of the third wire outlet 358.
[0177] A second voice wire harness 395 is connected between the speaker module 394 and the display circuit board 371, and the second voice wire harness 395 is wired out through the second wire outlet 351.
[0178] The radar module 31a comprises a radar box 31 and a radar assembly 33, the radar assembly 33 is arranged in the radar box 31, the radar assembly 33 is connected with the radar wire harness 331, the radar wire harness 331 is wired in the mounting box 35, and at least part of the radar wire harness 331 is wired along one side in the left-right direction of the display circuit board 371. The mounting box 35 is provided with a mounting groove 352, and the opening of the mounting groove 352 faces forward. The radar module 31a is accommodated in the mounting groove 352, and a plurality of first limiting buckles 353 are arranged on the side of the opening of the mounting groove 352, the plurality of first limiting buckles 353 are arranged at intervals in the circumferential direction of the mounting groove 352, and the first limiting buckles 353 abut against the side of the radar module 31a facing the opening.
[0179] The motor wire harness 611 is wired out through the second wire outlet 351, and the motor wire harness 611 has a plug-in end which is plugged with the display circuit board 371, and the part of the motor wire harness 611 located in the mounting box 35 is a box-in wire harness 612, and at least part of the box-in wire harness 612 is located on the outer peripheral side of the radar module 31a.
[0180] The radar box 31 is formed with a first outlet 311 for the radar harness 331 to exit, and an outer surface of the radar box 31 includes a first surface 312, the first surface 312 being provided with a first wiring structure 313 for limiting the radar harness 331 to be wired along a set wiring path on the first surface 312, the set wiring path including a plurality of wiring segments connected in sequence, and an included angle between at least two adjacent wiring segments being in a range of 5°-150°.
[0181] The outer surface of the radar box 31 includes a second surface 314, the first outlet 311 being formed on the second surface 314, and the second surface 314 is located at a different side of the radar box 31 from the first surface 312 and is arranged adjacent to the first surface 312, the plurality of wiring segments including adjacent first and second wiring segments 332 and 333, the first wiring segment 332 extending from a connection between the first and second surfaces 312 and 314 in a first direction towards a direction away from the second surface 314, and the second wiring segment 333 extending in a second direction, the second direction having an included angle with the first direction.
[0182] The plurality of wiring segments further include third and fourth wiring segments 334 and 335, the third wiring segment 334 being connected between the second and fourth wiring segments 333 and 335, the third wiring segment 334 extending in the first direction and towards a direction close to the second surface 314, and the fourth wiring segment 335 extending in the second direction and beyond an outer contour of the first surface 312.
[0183] The first wiring structure 313 includes first and second wiring buckles 315 and 316, first and second wiring posts 317 and 318, and a third wiring post 319, the first and second wiring buckles 315 and 316 being arranged in a spaced apart manner in the first direction, the first wiring buckle 315 being closer to the second surface 314 than the second wiring buckle 316, the first and second wiring posts 317 and 318 being arranged on opposite sides of the second wiring buckle 316 in the second direction and spaced apart from the second wiring buckle 316, and the third wiring post 319 being arranged in the second direction and spaced apart from the second wiring post 318, the first wiring segment 332 being wired along a gap between the first wiring buckle 315 and the first wiring post 317, the second wiring segment 333 being wired along the second wiring buckle 316, the third wiring segment 334 being wired along a gap between the second wiring buckle 316 and the second wiring post 318, and the fourth wiring segment 335 being wired along a gap between the second wiring post 318 and the third wiring post 319.
[0184] The outer surface of the radar box 31 is provided with a first wiring structure 313, which can limit the radar wire harness 331 to follow a set wiring path on the outer surface of the radar box 31, and the included angle between at least part of two adjacent wiring segments is 5-150°, so that the force applied to the radar wire harness 331 by external tension can be dispersed in different directions, so as to reduce or avoid the radar wire harness 331 from bearing excessive tension in a single direction, thereby effectively reducing the possibility that the radar wire harness 331 is directly pulled off by external tension; and the wiring path of the radar wire harness 331 is limited by the first wiring structure 313, so that the assembly process of the radar wire harness 331 on the radar box 31 is simpler, and the assembly efficiency is improved.
[0185] In the description of the present application, it should be understood that 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" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0186] In the description of the present application, "first feature" and "second feature" can include one or more features.
[0187] In the description of the present application, "first feature" above or below "second feature" can include direct contact between the first and second features, or indirect contact between the first and second features through another feature therebetween.
[0188] In the description of the present application, "first feature" above, above and above "second feature" includes the first feature directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height.
[0189] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means 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 application. In the present application, the exemplary description of the above terms does 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.
[0190] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.
Claims
1. An air conditioner characterized by comprising: include: The housing assembly has an air inlet and an air outlet; A heat exchange and air supply assembly is disposed within the housing assembly; A functional component, disposed in the housing assembly, includes a radar module. The radar module includes a radar box and a radar assembly. The radar assembly is disposed inside the radar box and is connected to a radar harness. The radar box forms a first outlet for the radar harness to exit. The outer surface of the radar box includes a first surface. A first wiring structure is provided on the first surface. The first wiring structure is used to restrict the radar harness to run on the first surface according to a set wiring path. The set wiring path includes multiple wiring segments connected in sequence, and the included angle between at least some adjacent wiring segments is in the range of 5° to 150°.
2. The air conditioner of claim 1, wherein The included angle between at least some of the adjacent two segments of the said trace is in the range of 60° to 120°.
3. The air conditioner of claim 2, wherein The included angle between at least some of the adjacent two segments of the said trace is in the range of 80° to 100°.
4. The air conditioner of claim 1, wherein The outer surface of the radar box includes a second surface, the first outlet is formed on the second surface, and the second surface and the first surface are located on different sides of the radar box and are arranged adjacent to each other. The multiple trace segments include adjacent first trace segments and second trace segments. The first trace segment extends from the connection between the first surface and the second surface along a first direction toward a direction away from the second surface. The second trace segment extends along a second direction, and there is an angle between the second direction and the first direction.
5. The air conditioner of claim 4, wherein The multiple routing segments further include a third routing segment and a fourth routing segment. The third routing segment connects the second routing segment and the fourth routing segment. The third routing segment extends along the first direction and toward the direction close to the second surface. The fourth routing segment extends along the second direction and extends beyond the outer contour of the first surface.
6. The air conditioner of claim 5, wherein The first wiring structure includes a first wiring buckle, a second wiring buckle, a first wiring post, a second wiring post, and a third wiring post. The first wiring buckle and the second wiring buckle are arranged at intervals along the first direction. The first wiring buckle is closer to the second surface than the second wiring buckle. The first wiring post and the second wiring post are distributed on opposite sides of the second wiring buckle along the second direction and are spaced apart from the second wiring buckle. The third wiring post is spaced apart from the second wiring post along the second direction. The first wiring segment runs sequentially along the gap between the first wiring buckle and the second wiring buckle and the first wiring post; the second wiring segment runs along the second wiring buckle; the third wiring segment runs along the gap between the second wiring buckle and the second wiring post; and the fourth wiring segment runs along the gap between the second wiring post and the third wiring post.
7. The air conditioner according to any one of claims 1 to 6, wherein The functional assembly comprises a mounting box and a display module, the display module is arranged in the mounting box, the display module comprises a display circuit board, the radar wire harness is connected with the display circuit board, the display circuit board is connected with a display wire harness, the display wire harness is connected with an electric control box component of the air conditioner, a second wire outlet is formed on the mounting box, and the display wire harness is wired out through the second wire outlet.
8. The air conditioner of claim 7, wherein The radar module is arranged in the mounting box, at least part of the radar wire harness is wired along one side of the display circuit board in the left-right direction of the display circuit board.
9. The air conditioner of claim 7, wherein The radar module is arranged in the mounting box, and the mounting box is provided with a mounting groove, the radar module is accommodated in the mounting groove, and a plurality of first limiting buckles are arranged on the side of the opening of the mounting groove in the circumferential direction of the mounting groove.
10. The air conditioner of claim 7, wherein The radar module is arranged in the mounting box, and the mounting groove is arranged in the mounting box, and the radar module is accommodated in the mounting groove.
11. The air conditioner of claim 7, wherein The first insertion slot and the first fixing column are arranged on the shell assembly, and the first insertion slot and the first fixing column are respectively arranged on the upper and lower sides of the mounting box.
12. The air conditioner of claim 11, wherein The outer periphery of the first fixing hole is formed with a positioning sleeve arranged around the first fixing hole, and the positioning sleeve is sleeved on the outer periphery side of the first fixing column.
13. The air conditioner of claim 7, wherein The second wire outlet is located on the bottom surface of the mounting box, and the shell assembly is further provided with a wiring seat electrically connected with the electric control box component, the wiring seat is located above the heat exchange and air supply assembly and above the display module, and the display wire harness is wired upward from the back of the mounting box to be connected with the wiring seat.
14. The air conditioner of claim 13, wherein The back of the mounting box is provided with a plurality of third wire routing buckles arranged in the up-down direction, and the openings of at least part of two adjacent third wire routing buckles in the left-right direction are opposite, and the display wire harness is wired along the plurality of third wire routing buckles.
15. The air conditioner of claim 7, wherein The functional assembly further comprises a voice assembly, the voice assembly comprises at least one of a microphone module and a loudspeaker module, and the voice assembly is electrically connected with the display circuit board.
16. The air conditioner of claim 15, wherein The voice assembly is located above the display module, and the voice assembly is connected with the upper end of the display circuit board.
17. The air conditioner of claim 16, wherein The voice assembly comprises a microphone module, a first voice wire harness is connected between the microphone module and the display circuit board, a third wire outlet is formed on the upper part of the mounting box, the first voice wire harness is wired out through the third wire outlet, and the third wire outlet is formed on the side wall in the left-right direction of the mounting box.
18. The air conditioner of claim 17, wherein The outer surface of the mounting box is provided with a wire blocking protrusion, and the wire blocking protrusion is located on the outer periphery of the third wire outlet.
19. The air conditioner of claim 16, wherein The voice assembly comprises a speaker module, a second voice wire harness is connected between the speaker module and the display circuit board, and the second voice wire harness is led out through the second wire outlet.
20. The air conditioner of claim 7, wherein Further comprising a wind guide assembly and a driving motor assembly, the wind guide assembly is arranged in the shell assembly and is used for adjusting the air outlet direction of the air outlet, the driving motor assembly comprises at least one driving motor, and the driving motor assembly is used for driving the wind guide assembly to move, the driving motor is connected with a motor wire harness, and the motor wire harness is connected with the display circuit board.
21. The air conditioner of claim 20, wherein The motor wire harness has a plug-in end, and the plug-in end is plugged with the display circuit board.
22. The air conditioner of claim 20, wherein The motor wire harness is led out through the second wire outlet.
23. The air conditioner of claim 22, wherein The radar module is arranged in the mounting box and below the display module, the second wire outlet is formed in the bottom of the mounting box, a part of the motor wire harness in the mounting box is an in-box wire harness, and at least a part of the in-box wire harness is located on the outer circumferential side of the radar module.
24. The air conditioner of claim 7, wherein The shell assembly comprises a rear shell part and a front shell part, the air outlet is formed in the front shell part, the air inlet is formed in the rear shell part, the front shell part comprises an air outlet frame assembly, the air outlet frame assembly comprises an air outlet frame and a front panel, the front panel is arranged on the front side of the air outlet frame, the radar module and the display module are arranged on the front panel, and the radar module is below the display module.
25. The air conditioner of claim 24, wherein The function assembly comprises a microphone module, the microphone module is arranged on the front panel and above the display module, and the microphone module is detachably connected with the front panel.
26. The air conditioner of claim 25, wherein A second fastener is connected between the microphone module and the front panel, a avoiding recess is formed in the top of the front panel, the avoiding recess is adjacent to the second fastener and is used for avoiding an assembly operation space.
27. The air conditioner of claim 24, wherein The function assembly comprises a speaker module, the speaker module is arranged on the upper end of the rear shell part and above the heat exchange and air supply assembly.
28. The air conditioner of claim 24, wherein, The front panel comprises a panel body and a panel support, the panel support is arranged on the rear side of the panel body, a support plate is arranged on the rear side of the panel support, the support plate is arranged on the top of the panel support, and the support plate is supported above the air outlet frame.
29. The air conditioner of claim 28, wherein, The rear side of the panel support is further provided with a support protrusion, the support protrusion is one or a plurality of support protrusions arranged in the up-down direction, the support protrusion is arranged below the support plate, and the rear surface of the support protrusion and the rear side of the support plate are located on the same plane.
30. The air conditioner of claim 24, wherein, The front panel comprises a panel body and a panel support, the air outlet is two and is formed in the air outlet frame, the front panel is located between the two air outlets, the left and right ends of the front panel are respectively provided with sealing rubber strips, the sealing rubber strips are used for sealing the gap between the panel body and the panel support, the rear side of the sealing rubber strip is provided with a sealing protrusion, and the sealing protrusion is used for sealing the gap between the air outlet frame and the panel support.