Temperature adjusting device

By setting up a separate accommodating cavity and a fan wheel inside the portable temperature control device, and using a drive motor to drive two fan wheels, the problems of high device size and power consumption are solved, achieving a more compact and low-power portability.

CN223469444UActive Publication Date: 2025-10-24深圳市好奇探索科技有限公司
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Patent Information

Application Number
CN202423000608.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-24
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Portable temperature control devices suffer from problems such as large size and high power consumption due to the two independent motors driving the fan.

Method used

A first accommodating chamber and a second accommodating chamber separated from each other are formed in the shell, and a first wind wheel and a second wind wheel are respectively provided. The first wind wheel and the second wind wheel are connected to the transmission shaft through a driving motor to achieve simultaneous blowing of the temperature regulating component and the heat dissipating component.

Benefits of technology

The size of the portable thermostat is reduced, the power consumption is reduced, and the portability and user experience are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a portable temperature adjusting device which comprises a shell, a first containing cavity and a second containing cavity which are separated from each other are formed in the shell, the first containing cavity is provided with a first air inlet and a first air outlet, and the second containing cavity is provided with a second air inlet and a second air outlet; the temperature adjusting assembly comprises a refrigerating end and a heating end, and the refrigerating end is exposed out of the first containing cavity; one part of the heat dissipation assembly is in heat conduction connection with the heating end, and the other part of the heat dissipation assembly is located in the second containing cavity and transmits heat from the heating end to the second containing cavity; the transmission shaft is arranged in the first accommodating cavity and the second accommodating cavity in a penetrating manner; the first wind wheel is arranged in the first containing cavity and arranged on the transmission shaft in a sleeving mode. The second wind wheel is arranged in the second containing cavity and arranged on the transmission shaft in a sleeving mode. And the driving motor is arranged in the shell, and the driving motor is in transmission connection with the transmission shaft so as to drive the first wind wheel and the second wind wheel to rotate.
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Description

TECHNICAL FIELD

[0001] The utility model relates to temperature regulating technical field especially relates to a temperature regulating device. BACKGROUND

[0002] The temperature regulating device is portable handheld fan, portable desktop fan etc., portable temperature regulating device has the advantages of small size, can be carried along, thus is widely used in daily life. In order to realize the refrigeration effect of portable temperature regulating device, generally needs to use semiconductor refrigeration piece to refrigerate, simultaneously uses water cooling assembly (for example, water cooling head, water cooling row etc.) to the heat end of semiconductor refrigeration piece carries out heat dissipation, and sets up two wind wheels and carries out blowing and heat dissipation respectively. However, two wind wheels need an independent motor drive respectively, thereby leading to the size of portable temperature regulating device is larger, also can improve power. SUMMARY

[0003] In order to improve at least part of the above shortcomings or deficiencies, the embodiment of the utility model provides a kind of portable temperature regulating device.

[0004] Specifically, the utility model embodiment provides a kind of portable temperature regulating device, comprising: shell, the first accommodating cavity and the second accommodating cavity are formed with each other in the shell, the first accommodating cavity is equipped with first air inlet and first air outlet, the second accommodating cavity is equipped with second air inlet and second air outlet;Temperature regulating assembly, including refrigeration end and heating end, the refrigeration end is exposed to the first accommodating cavity;Heat dissipation assembly, a part is in thermal conduction connection with the heating end, another part is located in the second accommodating cavity and heat is transferred from the heating end to the second accommodating cavity;Transmission shaft, is arranged in the first accommodating cavity and the second accommodating cavity;First wind wheel, is set in the first accommodating cavity and is set on the transmission shaft, and the first wind wheel is used to drive airflow from first air inlet and carry out the cold quantity generated by the refrigeration end from the first air outlet;Second wind wheel, is set in the second accommodating cavity and is set on the transmission shaft, and the second wind wheel is used to drive airflow from second air inlet and carry out the heat of the heat dissipation assembly from the second air outlet;And drive motor, is arranged on the shell, the drive motor is in transmission with the transmission shaft to drive the first wind wheel and the second wind wheel rotation.

[0005] In an embodiment of the utility model, the shell includes: main shell;And heat insulation baffle, the heat insulation baffle is connected to the main shell, and the first accommodating cavity and the second accommodating cavity are formed on the both sides of the heat insulation baffle, and the transmission shaft is connected the first wind wheel and the second wind wheel by being arranged in the through hole on the heat insulation baffle.

[0006] In an embodiment of the utility model, the first wind wheel and the second wind wheel are arranged at intervals on the transmission shaft, an interval is formed between the first wind wheel and the second wind wheel, and the heat insulation baffle extends to the interval.

[0007] In an embodiment of the utility model, a first air duct part is arranged in the first accommodating cavity, the first air duct part comprises a first arc-shaped wall, the first arc-shaped wall is arranged around the first wind wheel to form a first wind wheel accommodating cavity, the first wind wheel is arranged in the first wind wheel accommodating cavity, one end of the first wind wheel accommodating cavity is provided with a third air inlet corresponding to the first air inlet, the other end is provided with a third air outlet corresponding to the temperature adjusting assembly, the third air outlet and the first air outlet are communicated, and the temperature adjusting assembly is arranged between the first air outlet and the third air outlet.

[0008] In an embodiment of the utility model, a second air duct part is arranged in the second accommodating cavity, the second air duct part comprises a second arc-shaped wall, the second arc-shaped wall is arranged around the second wind wheel to form a second wind wheel accommodating cavity, the second wind wheel is arranged in the second wind wheel accommodating cavity, one end of the second wind wheel accommodating cavity is provided with a fourth air outlet corresponding to the second air outlet, the other end is provided with a fourth air inlet corresponding to the heat dissipation assembly, and the second air inlet and the fourth air inlet are communicated.

[0009] In an embodiment of the utility model, the heat dissipation assembly comprises: a cooling medium container arranged on the shell, a first cooling part arranged in the first accommodating cavity, and the first cooling part is in thermal conduction connection with the temperature adjusting assembly, a drive pump arranged in the second accommodating cavity, one end of the drive pump is connected with the cooling medium container, the other end is connected with the first cooling part, a second cooling part arranged in the second accommodating cavity, and the second cooling part is connected with the first cooling part and the cooling medium container, and the second cooling part is arranged corresponding to the fourth air inlet.

[0010] In an embodiment of the utility model, the second cooling part divides the second accommodating cavity into a first air inlet space and a second air inlet space, the second cooling part has oppositely arranged air inlet faces and air outlet faces, the air inlet faces are located in the first air inlet space, the air outlet faces are located in the second air inlet space, the first air inlet space and the second air inlet space are communicated through the gap on the second cooling part, the first air inlet space is communicated with the second air inlet, and the second air inlet space is communicated with the second air outlet.

[0011] In an embodiment of the utility model, the drive pump is located in the second air inlet space.

[0012] In one embodiment of the present invention, the first air outlet and the second air outlet are located in different directions of the shell, and the first air inlet and the second air outlet are located in different directions of the shell.

[0013] In one embodiment of the present invention, the temperature control component includes a temperature control component and a temperature conducting component, the temperature control component is located between the temperature conducting component and the first cold component, the temperature control component includes the cooling end and the heating end, the heating end is thermally connected to the first cold component, and the cooling end is thermally connected to the temperature conducting component.

[0014] It can be seen from the above that the above technical features of the present invention can have one or more of the following beneficial effects: the portable temperature control device provided in this embodiment forms a first accommodating chamber and a second accommodating chamber separated from each other in the shell, and the first wind wheel and the second wind wheel are respectively arranged in the first accommodating chamber and the second accommodating chamber, the first wind wheel and the second wind wheel are respectively mounted on the transmission shaft, and a driving motor is set to connect the transmission shaft, so that the first wind wheel and the second wind wheel can be driven simultaneously by a driving motor, thereby achieving separate blowing of the temperature control component and the heat dissipation component, and the setting of a motor can reduce the size of the portable temperature control device, further improve the portability, and also reduce the power of the portable temperature control device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0016] Figure 1 and Figure 2 Schematic diagrams of the structure of a portable temperature control device provided by an embodiment of the present invention at different angles.

[0017] Figure 3 for Figure 1 A schematic diagram of a longitudinal cross-section of a portable temperature control device.

[0018] Figure 4 for Figure 1 Schematic diagram of the exploded structure of a portable thermostat.

[0019] Figure 5 for Figure 4 Schematic diagram of the structure of the middle separator.

[0020] Figure 6 for Figure 4 Schematic diagram of the structure of the fourth side shell.

[0021] Figure 7 For Figure 1 A schematic view of a transverse cross-sectional structure of the portable temperature regulating device.

[0022] Figure 8 For Figure 1 A schematic view of another transverse cross-sectional structure of the portable temperature regulating device.

[0023] Figure 9 For Figure 1 A schematic view of another longitudinal cross-sectional structure of the portable temperature regulating device.

[0024] Figure 10 For Figure 1 A schematic view of another longitudinal cross-sectional structure of the portable temperature regulating device.

[0025] Main element number:

[0026] 10, portable temperature regulating device; 20, temperature regulating assembly; 30, heat dissipation assembly; 100, shell; 11, first side shell; 12, second side shell; 13, third side shell; 14, fourth side shell; 15, partition; 16, cover; 17, base; 101, first air inlet; 102, first air outlet; 1021, air deflector; 103, second air inlet; 104, second air outlet; 110, first accommodating cavity; 120, second accommodating cavity; 122, first air inlet space; 121, second air inlet space; 130, heat insulation baffle; 151, first air duct part; 1511, first fan accommodating cavity; 1512, third air inlet; 1513, third air outlet; 152, sub-accommodating cavity; 160, second air duct part; 161, second fan accommodating cavity; 1611, fourth air inlet; 1612, fourth air outlet; 210, first fan; 220, second fan; 300, driving motor; 410, temperature regulating part; 420, temperature guiding part; 510, cooling medium container; 520, first cooling part; 530, driving pump; 540, second cooling part; 550, connecting pipe. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] Referring to Figures 1 to 4The utility model embodiment provides a kind of portable temperature regulating device 10, specifically can for example include: shell 100, temperature regulating component 20, heat dissipation component 30, transmission shaft, first wind wheel 210 and second wind wheel 220 and drive motor 300.

[0029] Specifically, as Figure 3 Indicated, shell 100 can be formed with mutually separated first accommodating cavity 110 and second accommodating cavity 120, for example.In one embodiment of the embodiment, first accommodating cavity 110 and second accommodating cavity 120 can be mutually separated along the height direction of shell 100, first accommodating cavity 110 is equipped with first air inlet 101 and first air outlet 102, and second accommodating cavity 120 is equipped with second air inlet 103 and second air outlet 104.Temperature regulating component 20 can be arranged in first accommodating cavity 110, for example.Temperature regulating component 20 can be used to regulate temperature, i.e.cooling or heating, and temperature regulating component 20 includes refrigeration end and heating end, and the refrigeration end is exposed to first accommodating cavity 110.Heat dissipation component 30 can be arranged in shell 100, for example.Heat dissipation component 30 can be water cooling component, for example, and a part of heat dissipation component 30 is in conductive connection with the heating end, and another part is located in second accommodating cavity 120 and transfers heat to second accommodating cavity 120.Transmission shaft is arranged in first accommodating cavity 110 and second accommodating cavity 120.First wind wheel 210 is arranged in first accommodating cavity 110 and is sleeved on transmission shaft, and first wind wheel 210 is arranged corresponding to temperature regulating component 20, and first wind wheel 210 is used to drive airflow to flow from first air inlet 101 and carry out the cold quantity generated by the refrigeration end from first air outlet 102.Second wind wheel 220 is arranged in second accommodating cavity 120 and is sleeved on transmission shaft, and second wind wheel 220 is arranged corresponding to heat dissipation component 30, and second wind wheel 220 is used to drive airflow to flow from second air inlet 103 and carry out the heat of heat dissipation component 30 from second air outlet 104.In one embodiment of the embodiment, first wind wheel 210 and second wind wheel 220 can be cross-flow wind wheels, for example.First wind wheel 210 and second wind wheel 220 are arranged adjacent to and are spaced apart, and first wind wheel 210 and second wind wheel 220 are drivingly connected by transmission shaft.Drive motor 300 is also arranged in shell 100, and drive motor 300 is connected with transmission shaft to drive first wind wheel 210 and second wind wheel 220 to rotate.Drive motor 300 can drive first wind wheel 210 and second wind wheel 220 to rotate simultaneously when working, realize the effect of cooling or heating to first wind wheel 210 to temperature regulating component 20, and realize the effect of cooling or heating to second wind wheel 220 to heat dissipation component 30.

[0030] The portable temperature adjusting device 10 provided by the embodiment forms the first accommodating cavity 110 and the second accommodating cavity 120 which are separated from each other in the shell 100, and sets the first fan wheel 210 and the second fan wheel 220 in the first accommodating cavity 110 and the second accommodating cavity 120 respectively, the first fan wheel 210 and the second fan wheel 220 are sleeved on the transmission shaft, and the driving motor 300 is connected to the transmission shaft, so that the first fan wheel 210 and the second fan wheel 220 can be simultaneously driven by one driving motor 300, thereby realizing air blowing to the temperature adjusting assembly 20 and the heat dissipation assembly 30 respectively, and the size of the portable temperature adjusting device 10 can be reduced by setting one motor, thereby further improving portability and reducing the power of the portable temperature adjusting device 10.

[0031] In one embodiment of the embodiment, the shell 100 may, for example, include a main shell and a heat insulation baffle 130 connected to the main shell, and the first accommodating cavity 110 and the second accommodating cavity 120 are formed on both sides of the heat insulation baffle 130, that is, the first accommodating cavity 110 and the second accommodating cavity 120 are formed in the shell 100 in the height direction by setting the heat insulation baffle 130. The heat insulation baffle 130 may, for example, also be provided with a through hole, and the transmission shaft is arranged in the through hole to connect the first fan wheel 210 and the second fan wheel 220 on both sides of the heat insulation baffle 130. In one embodiment of the embodiment, the through hole may, for example, also be provided with a bearing and a bearing sleeve, of course, the embodiment is not limited thereto.

[0032] Referring to Figure 4 In one embodiment of the embodiment, the shell 100 is also provided with a motor mounting portion 140, the motor mounting portion 140 is located on the side of the first accommodating cavity 110 away from the second accommodating cavity 120, and the driving motor 300 is located in the motor mounting portion 140. The driving motor 300 is located on the upper side of the first fan wheel 210, and is convenient for connecting the first fan wheel 210. In other embodiments of the embodiment, the driving motor 300 may, for example, be connected to the second fan wheel 220, and the driving motor 300 can be located on the lower side of the second fan wheel 220, so that the driving motor 300 drives the second fan wheel 220 to simultaneously drive the first fan wheel 210.

[0033] Further, referring to Figure 4 and Figure 5The first accommodating cavity 110 is provided with a first air duct member 151, which may be, for example, an arc-shaped structure. The first air duct member 151 forms a first air wheel accommodating cavity 1511, and the first air wheel 210 is arranged in the first air wheel accommodating cavity 1511. One end of the first air wheel accommodating cavity 1511 is provided with a third air inlet 1512 corresponding to the first air inlet 101, and the other end has a third air outlet 1513 corresponding to the temperature adjusting assembly 20. The third air outlet 1513 is in communication with the first air inlet 101, and the temperature adjusting assembly 20 is arranged between the first air outlet 102 and the third air outlet 1513. Through the arrangement of the first air duct member 151, the airflow enters the first air wheel 210 through the first air inlet 101, the third air inlet 1512, and the first air wheel accommodating cavity 1511. After passing through the first air wheel 210, the airflow blows towards the temperature adjusting assembly 20 through the third air outlet 1513, and then blows out through the first air outlet 102 after passing through the temperature adjusting assembly 20. The cold air or hot air is gathered and blown towards the user, improving the air efficiency and further improving the cooling or heating effect.

[0034] Referring to Figure 7 In one embodiment of the present embodiment, the first air inlet 101 and the first air outlet 102 are located in different directions of the shell 100, so as to avoid the cold air being sucked into the air inlet again when blowing out, and to ensure that the cold air is blown out completely. Specifically, the first air outlet 102 and the first air wheel 210 are located on opposite sides of the temperature adjusting assembly 20, and the first air inlet 101 is arranged opposite to the first air duct member 151. Referring to Figure 4 and Figure 5, the shell 100 may, for example, comprise a first side shell 11, a second side shell 12, a third side shell 13, a fourth side shell 14 and a partition 15, the first side shell 11 and the third side shell 13 are arranged oppositely, the second side shell 12 and the fourth side shell 14 are arranged oppositely, the first side shell 11, the second side shell 12, the third side shell 13 and the fourth side shell 14 are connected to enclose, the partition 15 is arranged in the shell 100, and may, for example, be arranged close to the third side shell 13. The heat insulation baffle 130 may, for example, be located on the partition 15, the first air duct piece 151 is also located on the partition 15, and the partition 15 further forms a sub- containing cavity 152, the sub-containing cavity 152 and the first fan wheel containing cavity 1511 may, for example, be communicated, and the temperature adjusting assembly 20 is arranged in the sub-containing cavity 152. In the embodiment, the first air inlet 101 may, for example, be arranged on the first side shell 11, and the first air outlet 102 may, for example, be located on the second side shell 12. Air flows from the first air inlet 101 on the first side shell 11 into the first fan wheel containing cavity 1511, is blown by the first fan wheel 210 to the temperature adjusting assembly 20 in the sub-containing cavity 152, and then is blown out through the first air outlet 102 on the second side shell 12. The first air outlet 102 may, for example, further be provided with an air deflector 1021, the air deflector 1021 may, for example, be a plurality of and be rotationally connected to the shell 100, so that the air outlet direction and the air outlet angle can be adjusted by rotation of the air deflector 1021, further improving user experience.

[0035] Referring to Figure 6 , the second containing cavity 120 is also provided with a second air duct piece 160, the second air duct piece 160 is also, for example, an arc-shaped structure, the second air duct piece 160 forms a second fan wheel containing cavity 161, and the second fan wheel 220 is arranged in the second fan wheel containing cavity 161. One end of the second fan wheel containing cavity 161 has a fourth air outlet 1612 corresponding to the second air outlet 104, the other end has a fourth air inlet 1611 corresponding to the heat dissipation assembly 30, and the second air inlet 103 is communicated with the fourth air inlet 1611. Referring to Figure 4 and Figure 8 , the shell 100 may, for example, further comprise a base 17, the second air inlet 103 may, for example, be arranged on the side wall of the base 17, and the second air outlet 104 may, for example, be located on the third side shell 13. Through the arrangement of the second air duct piece 160, air flows from the second air inlet 103 to the heat dissipation assembly 30 through the fourth air inlet 1611 and the second fan wheel containing cavity 161, the second fan wheel 220 inhales the air flow to the second fan wheel 220 through the heat dissipation assembly 30, and blows out through the second air outlet 104 through the fourth air outlet 1612, so as to take out the heat from the shell 100 to achieve heat dissipation.

[0036] In the embodiment, the first air outlet 102 and the second air outlet 104 are located at different directions of the shell 100. The first air outlet 102 is a refrigeration or heating effect air outlet, and the second air outlet 104 is a heat dissipation air outlet. By locating the first air outlet 102 and the second air outlet 104 at different directions of the shell 100, the heat dissipation wind can be avoided from blowing to the user, and the refrigeration or heating effect can be further ensured, and the user experience can be improved. Specifically, in the embodiment, the first air outlet 102 can be arranged on the second side shell 12, and the second air outlet 104 can be arranged on the third side shell 13. In an embodiment of the embodiment, the first air outlet 102 and the second air outlet 104 can also be located at different heights. By staggered arrangement of the first air inlet 101, the second air inlet 103, the first air outlet 102 and the second air outlet 104, the heat dissipation hot wind can be avoided from blowing to the human body, and the heat dissipation hot wind can also be avoided from being sucked into the air inlet to affect the cold wind blowing effect.

[0037] Referring again to Figure 4The temperature adjusting assembly 20 may, for example, include a temperature adjusting piece 410 and a temperature conducting piece 420. The temperature adjusting piece 410 may, for example, be a semiconductor refrigeration piece, and the temperature adjusting piece 410 is used for refrigeration or heating. The temperature adjusting piece 410 may, for example, include a refrigeration end and a heating end. The temperature conducting piece 420 may, for example, be a heat conducting fin, and the temperature conducting piece 420 is arranged close to one side of the first air outlet 102. The refrigeration end of the temperature adjusting piece 410 may, for example, be in thermal conduction connection with the temperature conducting piece 420 to perform refrigeration and conduction. The heat dissipation assembly 30 may, for example, include a cooling medium container 510, a first cooling piece 520, a driving pump 530 and a second cooling piece 540. The cooling medium container 510 may, for example, be used for storing liquid cooling medium such as water or cooling liquid. The cooling medium container 510 may, for example, be a water tank. The shell 100 is further provided with a cover 16 which may, for example, be detachably connected to the water inlet of the cooling medium container 510 to facilitate the replenishment of the cooling medium. The first cooling piece 520 may, for example, be a water cooling head, and the second cooling piece 540 may, for example, be a water cooling row. The cooling medium container 510 may, for example, be arranged in the shell 100. The first cooling piece 520 may, for example, be arranged in the first accommodating cavity 110 and in thermal conduction connection with the temperature adjusting assembly 20. The temperature conducting piece 420 and the first cooling piece 520 may, for example, be located on both sides of the temperature adjusting piece 410. The first cooling piece 520 may, for example, be in thermal conduction connection with the heating end of the temperature adjusting piece 410. In this embodiment, the temperature adjusting assembly 20 may, for example, be two groups, and the two groups of temperature adjusting assemblies 20 are respectively located on both sides of the first cooling piece 520. The driving pump 530 is arranged in the second accommodating cavity 120, and the second cooling piece 540 is connected with the first cooling piece 520 and the cooling medium container 510. The first cooling piece 520, the second cooling piece 540 and the driving pump 530 may, for example, be communicated through a connecting pipe 550. The cooling medium in the cooling medium container 510 is delivered to the first cooling piece 520 by the driving pump 530. The first cooling piece 520 is used for conducting the heat generated by the hot end of the temperature conducting piece 420 to the cooling medium in the first cooling piece 520. The cooled cooling medium flows into the second cooling piece 540. The heat on the second cooling piece 540 is taken away by the second fan 220 to achieve heat dissipation.

[0038] In one embodiment of this embodiment, the second cooling piece 540 may, for example, be arranged corresponding to the second air inlet 103 or the fourth air inlet 1611. Through such arrangement, the air enters the second accommodating cavity 120 through the second air inlet 103 and passes through the second cooling piece 540. The second fan 220 blows the air out through the second air outlet 104 by suction. If the second cooling piece 540 is arranged on the air outlet side of the second fan 220, when the air outlet side of the second fan 220 is blocked, the air cannot completely pass through the second cooling piece 540, and the heat dissipation efficiency by blowing is low. The second cooling piece 540 is arranged on the air inlet side of the second fan 220 in this scheme, and the heat is taken away by the suction of the second fan 220, so that enough air passes through the second cooling piece 540 to cool down, thereby improving the heat dissipation effect.

[0039] Further, referring to Figure 9 The second cold member 540 divides the second accommodating cavity 120 into a first air inlet space 122 and a second air inlet space 121, and has an air inlet face and an air outlet face arranged oppositely, the air inlet face is located in the first air inlet space 122, and the air outlet face is located in the second air inlet space 121, and the first air inlet space 122 and the second air inlet space 121 are communicated through a gap on the second cold member 540. The first air inlet space 122 and the second air inlet space 121 can be separated along the height direction of the shell 100, for example, and the first air inlet space 122 is communicated with the second air inlet 103, and the second air inlet space 121 is communicated with the second air outlet 104. The air enters the first air inlet space 122 through the second air inlet 103, and the second air wheel 220 carries away the heat in the first air inlet space 122 through the second cold member 540 by air suction, and blows out from the second air outlet 104 through the second air inlet space 121, so as to dissipate heat. After the air enters the first air inlet space 122 through the second air inlet 103, it enters the second air inlet space 121 through the air inlet face of the second cold member 540, so that the air can blow through a larger area of the second cold member 540, further improving the heat dissipation effect. Through the arrangement of the first air inlet space 122, the air can have enough space to enter the second cold member 540 and dissipate heat, and through the arrangement of the second air inlet space 121, the air can have enough space to enter the second air wheel 220, improve the air efficiency, and further improve the heat dissipation effect.

[0040] Referring to Figure 10 In one embodiment of the present embodiment, the driving pump 530 is located in the second air inlet space 121, so that the second air wheel 220 can carry away the heat generated by the driving pump 530 when sucking air, so as to further dissipate heat.

[0041] In addition, it can be understood that the foregoing various embodiments are only exemplary descriptions of the present application, and under the premise that the technical features do not conflict, the structures are not contradictory, and the purpose of the application is not violated, the technical solutions of the various embodiments can be arbitrarily combined and used.

[0042] In the several embodiments provided in the present application, it should be understood that the disclosed system, device and method can be implemented in other ways. For example, the device embodiments described above are only schematic. The division of the units is only a logical function division. There can be another division manner for actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed mutual couplings or direct couplings or communication connections between the units can be indirect couplings or communication connections through some interfaces, devices or units, and can be electrical, mechanical or other forms.

[0043] The units described as separate components can or can not be physically separate, and the components displayed as units can or can not be physical units, that is, can be located in one place, or can be distributed to multiple network units. Part or all of the units can be selected to achieve the purpose of the embodiment scheme according to actual needs.

[0044] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A temperature regulating device, characterized in that, include: A housing having a first accommodating chamber and a second accommodating chamber formed therein, wherein the first accommodating chamber is provided with a first air inlet and a first air outlet, and the second accommodating chamber is provided with a second air inlet and a second air outlet; a temperature regulating component, comprising a cooling end and a heating end, wherein the cooling end is exposed to the first accommodating cavity; a heat dissipation assembly, a portion of which is thermally connected to the heating end, and another portion of which is located in the second accommodating chamber and transfers heat from the heating end to the second accommodating chamber; a transmission shaft passing through the first accommodating cavity and the second accommodating cavity; a first wind wheel, disposed in the first accommodating cavity and sleeved on the transmission shaft, the first wind wheel being used to drive airflow into the first air inlet and to carry the cooling energy generated by the cooling end out of the first air outlet; a second wind wheel, disposed in the second accommodating cavity and sleeved on the transmission shaft, the second wind wheel being used to drive airflow into the second air inlet and to carry heat from the heat dissipation component out of the second air outlet; as well as A drive motor is provided on the housing, and the drive motor is in driving connection with the transmission shaft to drive the first wind wheel and the second wind wheel to rotate.

2. The temperature regulating device of claim 1, wherein, The housing comprises: a main housing; and The heat insulation baffle is connected to the main shell, and the first accommodating cavity and the second accommodating cavity are formed on both sides of the heat insulation baffle. A through hole is also provided on the heat insulation baffle, and the transmission shaft is passed through the through hole to connect the first wind wheel and the second wind wheel.

3. The temperature regulating device of claim 2, wherein, The first wind wheel and the second wind wheel are spaced apart from each other on the transmission shaft, a space is formed between the first wind wheel and the second wind wheel, and the heat insulation baffle extends to the space.

4. The temperature regulating device of claim 1, wherein, A first air duct member is provided in the first accommodating cavity, and the first air duct member includes a first curved wall. The first curved wall is arranged around the first wind wheel to form a first wind wheel accommodating cavity. The first wind wheel is arranged in the first wind wheel accommodating cavity. One end of the first wind wheel accommodating cavity has a third air inlet corresponding to the first air inlet, and the other end has a third air outlet corresponding to the temperature control component. The third air outlet is connected to the first air outlet, and the temperature control component is arranged between the first air outlet and the third air outlet.

5. The temperature regulating device of claim 1, wherein, A second air duct member is provided in the second accommodating cavity, and the second air duct member includes a second curved wall. The second curved wall is arranged around the second wind wheel to form a second wind wheel accommodating cavity. The second wind wheel is arranged in the second wind wheel accommodating cavity. One end of the second wind wheel accommodating cavity has a fourth air outlet corresponding to the second air outlet, and the other end has a fourth air inlet corresponding to the heat dissipation component. The second air inlet is connected to the fourth air inlet.

6. The temperature regulating device of claim 5, wherein, The heat dissipation component includes: A cooling medium container is provided on the shell; A first cooling element is disposed in the first accommodating cavity and is thermally connected to the temperature regulating component; a driving pump, disposed in the second accommodating cavity, with one end of the driving pump connected to the cooling medium container and the other end connected to the first cooling element; A second cold member is arranged in the second accommodating cavity, and the second cold member is connected with the first cold member and the cooling medium container, and the second cold member corresponds to the fourth air inlet.

7. The temperature regulating device of claim 6, wherein, The second cold member divides the second accommodating cavity into a first air inlet space and a second air inlet space, and the second cold member has oppositely arranged air inlet surfaces and air outlet surfaces, the air inlet surfaces are located in the first air inlet space, the air outlet surfaces are located in the second air inlet space, the first air inlet space and the second air inlet space are communicated through a gap on the second cold member, the first air inlet space is communicated with the second air inlet, and the second air inlet space is communicated with the second air outlet.

8. The temperature regulating device of claim 7, wherein, The driving pump is located in the second air inlet space.

9. The temperature regulating device of claim 1, wherein, The first air outlet and the second air outlet are located in different directions of the shell, and the first air inlet and the second air outlet are located in different directions of the shell.

10. The temperature regulating device of claim 6, wherein, The temperature adjusting assembly comprises a temperature adjusting member and a temperature guiding member, the temperature adjusting member is located between the temperature guiding member and the first cold member, the temperature adjusting member comprises the refrigeration end and the heating end, the heating end is in thermal conduction connection with the first cold member, and the refrigeration end is in thermal conduction connection with the temperature guiding member.