Airing device and clothes airing machine

By adjusting the brightness, color temperature, and air supply module in the drying device, and combining heating, negative ions, and ultraviolet disinfection to simulate sunlight drying, the problem of clothes being difficult to dry on cloudy or rainy days is solved, achieving rapid drying and sterilization effects and improving the clothes drying effect.

CN223688641UActive Publication Date: 2025-12-19GUANGDONG HOTATA TECH GRP
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Patent Information

Application Number
CN202520123977.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-19
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Clothes are difficult to dry quickly on cloudy or rainy days, and prolonged dampness can easily breed bacteria and mold, affecting the lifespan and comfort of the clothes.

Method used

A clothes drying device is provided, comprising an air supply module, a clock module, a controller, a brightness adjustment module, a color temperature adjustment module, and lamps. The controller generates a signal based on the time information from the clock module to adjust the brightness and color temperature of the lamps, and the air supply module accelerates the drying of clothes. At the same time, it combines heating, negative ion and ultraviolet disinfection modules to simulate real sunlight drying.

Benefits of technology

On cloudy or rainy days, it can effectively simulate sunlight drying, improve the efficiency of drying clothes, reduce airflow loss, increase the airflow range, achieve rapid drying and sterilization, and improve air quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an airing device and a clothes airing machine, which are characterized in that a controller is used for reading time information of a clock module, generating a brightness control signal, a color temperature control signal and an air supply signal according to the time information and outputting the signals to a brightness adjusting module, a color temperature adjusting module and an air supply module, and the brightness adjusting module is used for adjusting the brightness of a lamp. The color temperature adjusting module is used for adjusting the color temperature of the lamp, so that sunlight at different time is simulated, meanwhile, the air supply module is used for accelerating air drying of clothes, airing of real sunlight can be simulated in cloudy days or rainy days, and the clothes airing effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of airing, especially to an airing device and a clothes airing machine. BACKGROUND

[0002] At present, the airing of clothes needs to rely on the irradiation of sunlight, which not only can dry the clothes quickly, but also can kill bacteria and sterilize, so that the clothes can keep fresh and hygienic. However, when it is cloudy or rainy, it is difficult to dry the clothes in a short time, and the clothes are prone to breed bacteria and mildew in a long-term humid state, which affects the service life and wearing comfort of the clothes. SUMMARY

[0003] The utility model aims at overcoming the defects and deficiencies of prior art, and provides an airing device and a clothes airing machine, which can simulate real sunlight to improve the airing effect of clothes in cloudy or rainy weather.

[0004] In a first aspect, the utility model provides an airing device for a clothes airing machine, comprising: an air supply module, a clock module, a controller, a brightness adjustment module, a color temperature adjustment module and a lamp;

[0005] The controller is connected with the clock module, the brightness adjustment module, the color temperature adjustment module and the air supply module respectively; the brightness adjustment module and the color temperature adjustment module are connected with the lamp; the controller is used for generating a brightness control signal, a color temperature control signal and an air supply signal according to the time information of the clock module, outputting the brightness control signal to the brightness adjustment module, outputting the color temperature control signal to the color temperature adjustment module and outputting the air supply signal to the air supply module.

[0006] Optionally, the air supply module comprises a fan and an air duct, the fan is arranged in the air duct, and the air outlet end of the air duct extends downwardly, so that the airflow blows downwardly.

[0007] In the embodiment of the application, the air outlet end of the air duct extends downwardly, so that the airflow can blow downwardly to the airing area, reducing airflow loss and improving the drying efficiency of clothes.

[0008] Optionally, the airing device further comprises a heating module arranged at the air inlet end of the air duct, and the heating module is connected with the controller.

[0009] In the embodiment of the application, the heating module arranged at the air inlet end of the air duct is used to send hot air to the airing area, thereby improving the airing efficiency of clothes.

[0010] Optionally, the airing device further comprises a negative ion module arranged in the air duct, and the negative ion module is connected with the controller.

[0011] In the embodiment of the present application, the controller generates a negative ion starting signal according to time information, sterilizes clothes in the drying area by using the negative ion module in the air duct, and can increase the content of ions in the air and improve air quality.

[0012] Optionally, the air sterilization device further comprises an ultraviolet sterilization module, which is arranged on one side of the air outlet end of the air duct and has an inclined light emitting surface; and the ultraviolet sterilization module is connected to the controller.

[0013] In the embodiment of the present application, the controller generates an ultraviolet sterilization signal according to time information, sterilizes clothes in the drying area by using the ultraviolet sterilization module which can generate ultraviolet light in the same direction as the airflow, thereby more realistically simulating the effect of sunlight drying and improving the drying efficiency.

[0014] Optionally, the air supply module comprises an upper air guide plate and a lower air guide plate, the upper air guide plate and the lower air guide plate form the air duct, and the fan is arranged in parallel along the length direction between the upper air guide plate and the lower air guide plate; the air inlet end of the upper air guide plate and the lower air guide plate is arranged horizontally, and the air outlet end of the upper air guide plate and the lower air guide plate extends obliquely downward, so that the direction of the air outlet airflow and the direction of the air inlet airflow form an included angle less than 90°.

[0015] The arrangement of the upper air guide plate and the lower air guide plate in the embodiment of the present application can make the direction of the air outlet airflow and the direction of the air inlet airflow form a certain angle, realize inclined air outlet, and avoid airflow loss while having a simple structure, thereby improving the air volume of the air supply module.

[0016] Optionally, the air outlet ends of the upper air guide plate and the lower air guide plate are arranged in parallel, and the inclination angle relative to the horizontal plane is 30-60°.

[0017] In the embodiment of the present application, the air outlet ends of the upper air guide plate and the lower air guide plate are arranged obliquely, so that the airflow can be directly applied to the clothes more effectively, the blowing range is increased, and the loss of airflow is reduced.

[0018] Optionally, the clock module comprises an antenna module and a demodulation module.

[0019] The antenna module is configured to receive a time signal.

[0020] The demodulation module is configured to demodulate the time signal to obtain time information.

[0021] In the embodiment of the present application, the antenna module is used to receive a time signal, and the demodulation module is used to demodulate the time signal to obtain time information, thereby improving the accuracy of the obtained time signal and improving the accuracy of the simulation of sunlight by the drying device.

[0022] Optionally, the lamp is configured to generate light of at least one color temperature and at least one brightness.

[0023] By using the lamp configured to generate light of at least one color temperature and at least one brightness, the simulation requirement of sunlight of different brightness and different color temperature is met.

[0024] In a second aspect, the utility model provides a clothes airing machine, including the airing device as any above.

[0025] In the embodiment, the time information of the clock module is read by the controller, the brightness control signal, the color temperature control signal and the air supply signal are generated according to the time information and output to the brightness adjustment module, the color temperature adjustment module and the air supply module, the brightness of the lamp is adjusted by the brightness adjustment module, the color temperature of the lamp is adjusted by the color temperature adjustment module, so that the simulation of sunlight of different time is realized, and the clothes drying is accelerated by the air supply module, the clothes airing of real sunlight can be simulated in cloudy or rainy weather, and the clothes airing effect is improved.

[0026] In order to better understand and implement, the utility model is described in detail below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is the structural schematic diagram of airing device in an embodiment of the utility model;

[0028] Figure 2 It is the structural schematic diagram of clock module in an embodiment of the utility model;

[0029] Figure 3 It is the structural schematic diagram of airing device in another embodiment of the utility model;

[0030] Figure 4 It is the structural schematic diagram of airing device in another embodiment of the utility model;

[0031] Figure 5 It is the structural schematic diagram of airing device in another embodiment of the utility model;

[0032] Figure 6 It is the structural schematic diagram of clothes airing machine in an embodiment of the utility model. DETAILED DESCRIPTION

[0033] In order to make the purpose, technical scheme and advantage of the application clearer, the utility model mode will be further described in detail below with reference to the drawings.

[0034] It should be clear that the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0035] The terms used in the present application are only for the purpose of describing specific embodiments, and are not intended to limit the present application. The singular forms "a", "said" and "the" used in the present application and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the term "and / or" used herein means and includes any or all possible combinations of one or more associated listed items.

[0036] The following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all the embodiments consistent with the present application. Instead, they are only examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims. In the description of the present application, it should be understood that the terms "first", "second", "third" and the like are only used to distinguish similar objects, and do not necessarily describe a specific order or sequence, nor can they be understood as indicating or implying relative importance. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0037] In addition, in the description of the present application, unless otherwise stated, "several" means two or more. "And / or", which describes the relationship between the associated objects, means that there can be three relationships, for example, A and / or B can mean that A exists alone, A and B exist together, and B exists alone. The character " / " generally represents a "or" relationship between the associated objects before and after it.

[0038] As Figure 1 The present application provides an airing control device, comprising: an air supply module 120, a clock module 130, a controller 140, a brightness adjustment module 150, a color temperature adjustment module 160 and a lamp 110; the air supply module 120 is used for air supply in response to the air supply signal;

[0039] The clock module 130 is used for obtaining time information and outputting the time information to the controller 140; the time information can be local time information.

[0040] The controller 140 is configured to generate a brightness control signal, a color temperature control signal and an air supply signal according to the time information of the clock module 130, output the brightness control signal to the brightness adjustment module 150, output the color temperature control signal to the color temperature adjustment module 160, and output the air supply signal to the air supply module 120.

[0041] The brightness adjustment module 150 is configured to adjust the brightness of the lamp 110 in response to the brightness control signal.

[0042] The color temperature adjustment module 160 is configured to adjust the color temperature of the lamp 110 in response to the color temperature control signal.

[0043] The controller 140 is connected with the clock module 130, the brightness adjustment module 150, the color temperature adjustment module 160 and the air supply module 120 respectively, and the brightness adjustment module 150 and the color temperature adjustment module 160 are connected with the lamp 110.

[0044] The lamp 110 can be a lamp such as a light-emitting diode (LED). In the embodiment, the lamp 110 is configured to generate light of at least one color temperature and at least one brightness, so as to meet the simulation requirement of sunlight of different brightness and different color temperature.

[0045] Optionally, the lamp 110 can be a lamp composed of multiple light-emitting diodes of different colors.

[0046] The air supply module 120 can be an air supply device such as a fan. The air outlet of the air supply module 120 can be arranged towards the drying area, so that the air supply module 120 can supply air to the drying area. The controller 140 can pre-store the brightness, color temperature of the lamp and air supply information of the fan corresponding to different time information. The controller 140 determines whether the brightness of the lamp, the color temperature of the lamp and the air supply of the fan are controlled according to the event signal of the clock module 130, so as to generate the brightness control signal, the color temperature control signal and the air supply signal and output them to the brightness adjustment module 150, the color temperature adjustment module 160 and the air supply module 120, thereby realizing the control of the brightness, color temperature and air supply of the lamp.

[0047] The brightness adjustment module 150 is configured to adjust the brightness of the lamp 110. The brightness adjustment module 150 can adjust the brightness of the lamp 110 by adjusting the current or voltage of the lamp 110. The brightness adjustment module 150 can be a PWM control circuit or other circuit that can be used to adjust the brightness.

[0048] The color temperature adjustment module 160 is configured to adjust the color temperature of the lamp 110. The color temperature is a parameter for describing the color characteristics of a light source, and the unit is Kelvin (K). The higher the color temperature, the more the color of the light source is biased towards blue, and the colder it looks. The lower the color temperature, the more the color of the light source is biased towards red, and the warmer it looks.

[0049] The color temperature adjustment module 160 can adjust the color temperature of the luminaire by adjusting the current or voltage output to the luminaire, for example, a PWM control circuit or other circuit that can be used to adjust the color temperature.

[0050] Specifically, the controller 140 can store the brightness, color temperature and air supply information of the fan for different time periods, wherein the time periods can be set according to the control requirements.

[0051] In the embodiment of the application, the controller 140 can store the brightness, color temperature and air supply information of the fan for three time periods of morning, noon and evening. The morning time period can be 8-10 o'clock, the noon time period can be 12-14 o'clock, and the evening time period can be 17-19 o'clock.

[0052] When the controller 140 determines that the current time is within the morning time period (8-10 o'clock), the controller 140 generates a first color temperature control signal, a first brightness signal and a first air supply signal, the color temperature adjustment module 160 adjusts the color temperature of the luminaire to a first color temperature in response to the first color temperature control signal, the brightness adjustment module 150 adjusts the brightness of the luminaire to a first brightness in response to the first brightness signal, and the air supply module 120 performs air supply in response to the first air supply signal.

[0053] When the controller 140 determines that the current time is within the noon time period (12-14 o'clock), the controller 140 generates a second color temperature control signal, a second brightness signal and a second air supply signal, the color temperature adjustment module 160 adjusts the color temperature of the luminaire to a second color temperature in response to the second color temperature control signal, the brightness adjustment module 150 adjusts the brightness of the luminaire to a second brightness in response to the second brightness signal, and the air supply module 120 performs air supply in response to the second air supply signal.

[0054] When the controller 140 determines that the current time is within the evening time period (17-19 o'clock), the controller 140 generates a third color temperature control signal and a third brightness signal, the color temperature adjustment module 160 adjusts the color temperature of the luminaire to a third color temperature in response to the third color temperature control signal, the brightness adjustment module 150 adjusts the brightness of the luminaire to a third brightness in response to the third brightness signal, and at this time, the air supply module 120 is closed and does not supply air to the drying area.

[0055] Wherein, the second brightness is greater than the first brightness and the first brightness is greater than the third brightness, the first color temperature is greater than the second color temperature and the second color temperature is greater than the third color temperature.

[0056] Specifically, the first color temperature can be a cool white light with a higher color temperature, such as 5300K or higher. At the same time, by adjusting the brightness of the lamp to a higher first brightness, the lamp can provide cool white light, thereby more realistically simulating sunlight in the morning.

[0057] The second color temperature can be a neutral white light with a medium color temperature, such as 3300K-5300K. At the same time, by adjusting the brightness of the lamp to the highest second brightness, the lamp can provide bright white light, thus more realistically simulating the sunlight at noon.

[0058] The third color temperature can be a warm white light with a lower color temperature, such as a color temperature in the range of 2700K-3300K, which allows the lamp to provide a low-brightness warm white light, thus more realistically simulating sunlight in the evening.

[0059] The specific values ​​for the first brightness, second brightness, third brightness, first color temperature, second color temperature, and third color temperature can be determined based on the adjustable brightness range, adjustable color temperature range, and display effect of the lamp.

[0060] By using the above methods, the lighting effect of the lamps can be made to more closely resemble the effect of real sunlight, thus more realistically simulating the drying of clothes under the sun and improving the drying effect of clothes.

[0061] In this embodiment, the controller reads the time information from the clock module, generates a brightness control signal, a color temperature control signal, and an air supply signal based on the time information, and outputs them to the brightness adjustment module, the color temperature adjustment module, and the air supply module. The brightness adjustment module adjusts the brightness of the lamps, and the color temperature adjustment module adjusts the color temperature of the lamps, thereby simulating sunlight at different times. At the same time, the air supply module accelerates the drying of clothes, and can simulate the drying of clothes under real sunlight in cloudy or rainy weather, thus improving the drying effect of clothes.

[0062] like Figure 2 As shown, in one embodiment, the clock module 130 includes an antenna module 131 and a demodulation module 132:

[0063] The antenna module 131 is used to receive time signals;

[0064] The demodulation module 132 is used to demodulate the time signal to obtain time information.

[0065] Antenna module 131 can be used to receive various types of time signals, such as longwave signals provided by longwave timing systems, satellite timing signals, WIFI network signals, 4G network signals, or 5G network signals; the time signals may include information representing time.

[0066] The demodulation module 132 obtains time information by demodulating the time signal. The time information can be local time information.

[0067] In this embodiment of the application, by using an antenna module to receive the time signal and using a demodulation module to demodulate the time signal to obtain time information, the accuracy of the obtained time signal is improved, and the accuracy of the drying device in simulating sunlight is improved.

[0068] In an optional embodiment, when the antenna module 131 fails to receive the time signal and cannot obtain time information, the controller can generate a preset brightness control signal, a preset color temperature control signal, and a preset air supply signal according to a preset signal generation method. The preset brightness control signal is used to control the brightness of the lamp to a preset brightness, the preset color temperature control signal is used to control the brightness of the lamp to a preset color temperature, and the preset air supply signal is used to control the air supply module to supply air in a preset mode, so that clothes can still be dried even in the absence of time information.

[0069] like Figures 3-4 As shown, in one embodiment, the air supply module 120 includes a fan 121 and an air duct 122. The fan 121 is disposed in the air duct 122, and the air outlet end of the air duct 122 extends downward at an angle, so that the airflow is blown out at an angle downward.

[0070] Fan 121 is used to generate airflow.

[0071] The air duct 122 is the airflow path, used to guide the airflow in a specified direction. In this embodiment, the air duct 122 is used to guide the airflow to tilt downwards and blow out.

[0072] The drying device of this application can be set above the drying area, and the airflow is guided to tilt downwards and blow outwards, thereby achieving air supply to the clothes in the drying area below.

[0073] In this embodiment, by extending the air outlet of the air duct downwards, the airflow can be directed towards the drying area below, reducing airflow loss and improving the drying efficiency of clothes.

[0074] In one embodiment, the air supply module 120 includes an upper air guide plate 123 and a lower air guide plate 124, which together form the air duct 122. The fan 121 is arranged parallel to the upper air guide plate 123 and the lower air guide plate 124 along its length. The air inlet ends of the upper air guide plate 123 and the lower air guide plate 124 are horizontally arranged, and the air outlet ends of the upper air guide plate 123 and the lower air guide plate 124 extend downward at an angle of less than 90° with the air inlet air direction.

[0075] The upper air deflector 123 and the lower air deflector 124 can be arc panels, and the lower air deflector 124 is arranged below the upper air deflector 123, and the two form the air duct 122.

[0076] Preferably, the air outlet ends of the upper air deflector 123 and the lower air deflector 124 are arranged in parallel to form the air outlet 122a of the air duct, and the inclination angle relative to the horizontal plane is 30-60°.

[0077] By inclining the air outlet ends of the upper air deflector and the lower air deflector, the air flow can be more effectively directly applied to the clothes, increasing the blowing range and reducing air flow loss.

[0078] The arrangement of the upper air deflector and the lower air deflector in the embodiment can make the air outlet flow direction and the air inlet flow direction form a certain angle, realize inclined air outlet, and avoid air flow loss while having a simple structure, thereby improving the air outlet volume of the air supply module.

[0079] As shown in FIG. 1, Figure 5 In one embodiment, a heating module 170 is further arranged at the air inlet end of the air duct 122; and the heating module 170 is connected with the controller 140.

[0080] The heating module 170 is configured to heat the air flow of the air duct 122.

[0081] The heating module 170 is configured to heat in response to the heating signal of the controller 140, thereby blowing hot air.

[0082] The controller 140 can generate the heating signal according to time information, for example, generate the heating signal when the current time is within a set time period.

[0083] The set time period can be set according to actual conditions. In the embodiment, the set time period can be a noon time period when the air temperature is high. In the noon time period, the air flow of the air duct 122 is heated by the heating module 170 to simulate the situation that the clothes are heated when the clothes are exposed to the sun at noon, improve the authenticity of the simulated sunlight exposure, and improve the exposure effect.

[0084] Optionally, the heating module 170 can be a PTC heater. The PTC heater has an automatic constant temperature characteristic. When the temperature reaches a set value, the resistance will increase sharply, thereby reducing the current and power output, avoiding high temperature, and effectively preventing hidden dangers such as scalding and fire, thereby having high safety. At the same time, the PTC heater has small thermal resistance and high heat exchange efficiency, can quickly convert electrical energy into heat energy, has fast heating speed, and can improve the user experience.

[0085] In the embodiments of the present application, the heating module arranged at the air inlet end of the air duct is used to send hot air to the drying area, thereby improving the drying efficiency of the clothes.

[0086] In one embodiment, the drying device further comprises a negative ion module 180 arranged in the air duct 122, and the negative ion module 180 is connected to the controller 140.

[0087] The negative ion module 180 is configured to generate negative ions in response to a negative ion start signal from the controller 140, and the negative ions generated by the negative ion module 180 are blown out from the air duct to the drying area. The negative ion module 180 can be a device capable of generating negative ions, such as a negative ion generator.

[0088] The controller 140 can generate the negative ion start signal according to time information, for example, when the current time is within a set time period, the negative ion start signal is generated.

[0089] The set time period can be set according to actual conditions. In the embodiments of the present application, the set time period can be an early morning time period, so that the negative ion module 180 releases negative ions to purify the air and disinfect and sterilize, more realistically simulating the effect of the sun drying in the early morning time period, and improving the drying effect.

[0090] In the embodiments of the present application, the controller generates the negative ion start signal according to time information, and uses the negative ion module in the air duct to disinfect and sterilize the clothes in the drying area, while increasing the content of ions in the air and improving air quality.

[0091] In one embodiment, the drying device further comprises an ultraviolet disinfection module 190 arranged at one side of the air outlet end of the air duct, and the light emitting surface of the ultraviolet disinfection module 190 is arranged obliquely; the ultraviolet disinfection module 190 is connected to the controller 140.

[0092] The ultraviolet disinfection module 190 is configured to generate ultraviolet rays in response to an ultraviolet disinfection signal from the controller 140, and the irradiation direction of the ultraviolet rays is obliquely the same as the flow direction of the air flow, which can act on the clothes in the drying area below, thereby disinfecting the clothes.

[0093] The ultraviolet disinfection module 190 can be a device capable of generating ultraviolet rays, such as an ultraviolet lamp.

[0094] The controller 140 can generate the ultraviolet disinfection signal according to time information, for example, when the current time is within a set time period, the ultraviolet disinfection signal is generated.

[0095] The setting time period can be set according to actual conditions. In the embodiment of the application, the setting time period can be a morning time period and a noon time period, so that the UV disinfection module 190 generates ultraviolet rays to simulate the ultraviolet disinfection of sunlight, more realistically simulating the effect of sunlight drying, and improving the drying effect.

[0096] In the embodiment of the application, the controller generates a UV disinfection signal according to the time information, and disinfects and sterilizes the clothes in the drying area by using a UV disinfection module that can generate ultraviolet rays that are inclined in the same direction as the airflow direction, so as to more realistically simulate the effect of sunlight drying, and improve the drying efficiency.

[0097] As shown in Figure 6 The embodiment of the application also provides a clothes drying machine 200, which comprises the drying device 210 as described in any one of the above.

[0098] The clothes drying machine of the embodiment of the application can control the brightness, color temperature, working state of the heating module, air supply module, UV disinfection module, and negative ion module of the lamp in the clothes drying machine according to different time periods in a day, so as to more realistically simulate the situation of sunlight drying clothes at different times by cooperation of the modules, and improve the authenticity of sunlight drying simulation; the drying device can dry clothes all day long, and is not affected by the climate and sunlight, and can be applied in bad weather such as overcast days or rainy days to simulate the drying of clothes by sunlight, and improve the drying effect of clothes.

[0099] The utility model is not limited to the above-mentioned implementation, if various changes or deformation of the utility model do not deviate from the spirit and scope of the utility model, if these changes and deformation belong to the right claim and equivalent technical scope of the utility model, the utility model also intends to include these changes and deformation.

Claims

1. A drying device for a clothes drying machine, characterized in that, The air supply module, the clock module, the controller, the brightness adjustment module, the color temperature adjustment module and the lamp; The controller is connected with the clock module, the brightness adjustment module, the color temperature adjustment module and the air supply module respectively; the brightness adjustment module and the color temperature adjustment module are connected with the lamp; the controller is used for generating a brightness control signal, a color temperature control signal and an air supply signal according to time information of the clock module, outputting the brightness control signal to the brightness adjustment module, outputting the color temperature control signal to the color temperature adjustment module and outputting the air supply signal to the air supply module. The air supply module comprises a fan and an air duct, the fan is arranged in the air duct, and the air outlet end of the air duct extends downwardly, so that the airflow blows downwardly.

2. The drying apparatus according to claim 1, characterized in that The air supply module further comprises a heating module arranged at the air inlet end of the air duct, and the heating module is connected with the controller.

3. The drying apparatus of claim 2, wherein The air supply module further comprises a negative ion module arranged in the air duct, and the negative ion module is connected with the controller.

4. The drying apparatus of claim 2, wherein The air supply module further comprises an ultraviolet disinfection module arranged at one side of the air outlet end of the air duct, and the light emitting surface of the ultraviolet disinfection module is arranged obliquely, and the ultraviolet disinfection module is connected with the controller.

5. The drying apparatus of claim 2, wherein The air supply module comprises an upper air guide plate and a lower air guide plate, the upper air guide plate and the lower air guide plate surround to form the air duct, and the fan is arranged parallel to the length direction between the upper air guide plate and the lower air guide plate; the air inlet end of the upper air guide plate and the lower air guide plate is arranged horizontally, and the air outlet end of the upper air guide plate and the lower air guide plate extends downwardly, so that the direction of the air outlet airflow and the direction of the air inlet airflow form an included angle less than 90°.

6. The drying apparatus of claim 2, wherein The air outlet ends of the upper air guide plate and the lower air guide plate are arranged parallel to each other, and the inclination angle relative to the horizontal plane is 30-60°.

7. The drying apparatus of claim 6, wherein: The clock module comprises an antenna module and a demodulation module:

8. The solar drying apparatus of claim 1, wherein, The antenna module is used for receiving a time signal; The demodulation module is used for demodulating the time signal to obtain time information. The lamp is used for generating light of at least one color temperature and at least one brightness.

9. The solar drying apparatus of claim 1, wherein, The drying device comprises the drying device according to any one of claims 1-9.

10. A clothes drying machine characterised in that, ​