CN212322078U - Intelligent wardrobe control system based on Internet of things - Google Patents

Intelligent wardrobe control system based on Internet of things Download PDF

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Publication number
CN212322078U
CN212322078U CN202021405260.4U CN202021405260U CN212322078U CN 212322078 U CN212322078 U CN 212322078U CN 202021405260 U CN202021405260 U CN 202021405260U CN 212322078 U CN212322078 U CN 212322078U
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cabinet
control assembly
function
control
drying
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林铭
林上奥
刘红连
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Kuzhijia Guangzhou Intelligent Technology Development Co ltd
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Kuzhijia Guangzhou Intelligent Technology Development Co ltd
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Abstract

The utility model discloses an intelligence wardrobe control system based on thing networking, including main engine cleaning cabinet, dry clothing sterilizer, dry cabinet, dry cleaning cabinet, fresh cooling cabinet, cold heating installation lift cabinet, the clean thing of lift top cabinet, lift password top cabinet and wardrobe TV door, install host computer function control assembly on the host computer cleaning cabinet, install dry clothing function control assembly on the dry clothing sterilizer, dry sterilizing installs the function control assembly that disinfects on the cabinet, install the control assembly that keeps a public place clean on the dry cleaning cabinet, fresh cooling installs fresh function control assembly on the cabinet. Has the advantages that: the utility model discloses realize the product with higher speed and get into family, hotel, will change the extravagant reuse of air conditioner energy, reduce the air conditioner to environmental pollution, to getting into indoor air treatment after the wardrobe circulation, emit fresh air, solve the unable difficult problem of drying after living hotel's clothing washing to the difference crowd that appears.

Description

Intelligent wardrobe control system based on Internet of things
Technical Field
The utility model relates to an intelligence field of furniture especially relates to an intelligence wardrobe control system based on thing networking.
Background
In furniture in the fields of home furnishing and hotels, a wardrobe is an important necessary living article, and an intelligent wardrobe product appears in the recent market, wherein electric energy heating or dehumidifying needs to be additionally added for high-temperature and low-temperature energy sources for drying clothes, and energy conservation is also an extremely needed deblocking subject due to shortage of electric energy sources in the current society; the air conditioner product is a standard configuration product for the current social life no matter in the fields of home furnishing and hotels, but no matter in the air conditioner, the air conditioner is cold or hot, the host machine is arranged outdoors, and one end of the air conditioner always wastes energy when in use; the heat effect of a main machine during refrigeration is also pollution to natural air, how to reduce the environmental pollution of an air conditioner and how to recycle energy waste is also an extremely-needed problem, although patent numbers ZL201610981719.7 and 201621205006.3 intelligent air-conditioning wardrobe products solve the problems, the control system still has the optimization and upgrading problems, namely how to better realize fusion in an Internet of things intelligent home, how to better introduce an artificial intelligence technology upgrading control system, and the optimization and upgrading of intelligent wardrobe product control are very necessary.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an intelligence wardrobe control system based on thing networking just for solving above-mentioned problem.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
an intelligent wardrobe control system based on the Internet of things comprises a main machine cleaning cabinet, a clothes drying disinfection cabinet, a drying cleaning cabinet, a refreshing cooling cabinet, a cooling and heating lifting cabinet, a lifting cleaning object top cabinet, a lifting password top cabinet and a wardrobe television door, wherein a main machine function control assembly is installed on the main machine cleaning cabinet, a clothes drying function control assembly is installed on the clothes drying disinfection cabinet, a sterilizing function control assembly is installed on the drying disinfection cabinet, a cleaning control assembly is installed on the drying cleaning cabinet, a refreshing function control assembly is installed on the refreshing cooling cabinet, a cooling and heating function control assembly and a gateway are installed on the cooling and heating lifting cabinet, a cleaning object function control assembly is installed on the lifting cleaning object top cabinet, a password function control assembly is installed on the lifting password top cabinet, and a television door function control assembly is installed on the wardrobe television door, the main machine function control assembly, the clothes drying function control assembly, the sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the object cleaning function control assembly, the password function control assembly and the television door function control assembly are in communication connection, and the main machine function control assembly, the clothes drying function control assembly, the sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the object cleaning function control assembly, the password function control assembly and the television door function control assembly are further in communication connection with a mobile control terminal through the gateway.
Further, host computer function control assembly is in by host computer control box and setting direct current power supply module, wireless relay, control function circuit board, wireless temperature and humidity sensor, host computer axial fan in the host computer control box constitute, install touch-sensitive switch and door switch on the bounding wall in front of the host computer control box, still install compressor motor, electromagnetism cross valve, alternating current power supply socket, current protector, positive fan assembly motor that just reverses under the cabinet body is inside to the host computer environmental protection cabinet.
Further, dry clothing function control assembly including install in dry clothing control box on the dry clothing sterilizer is in with the setting dry clothing wireless relay, dry clothing control circuit board, dry clothing power module, the fan control assembly who installs in dry clothing control box right side board of dry clothing control box intracavity, install dry clothing touch-sensitive switch, dry clothing door switch on the front panel of dry clothing control box, the shake of dry clothing sterilizer cabinet body side board removes dust clothing pole control assembly, dry clothing sterilizer is internal still to be installed drawer control assembly down, install the cabinet door lamp below the dry clothing control box bottom plate.
Further, the function control assembly that disinfects by the package install in top function box in the dry cabinet that disinfects, install touch inductive switch that disinfects on the top function box front panel and the gate switch that disinfects, install the big air exhauster of top function box left side board and temperature probe NTC, the beneath response clothing pole lamp of top function box, the bottom of dry cabinet that disinfects is provided with electric push rod, the dry cabinet that disinfects still installs the automatically controlled glass of dry liquid crystal that disinfects, install PTC heater block, ozone generator, wireless temperature sensor, wireless relay, DC power supply module, the dry control function circuit board that disinfects in the function box of top.
Further, the cleaning control assembly consists of a drying cleaning control box arranged on the drying cleaning cabinet, a drying temperature sensor, a drying wireless relay circuit board, a drying control function circuit board, a drying direct current power supply module, a drying axial flow fan arranged on a side plate of the drying cleaning control box, an induction clothes rod lamp arranged outside a bottom plate of the drying cleaning control box, a drying cleaning door control switch arranged on a front plate of the drying cleaning control box, a drying cleaning liquid crystal electric control glass arranged on a composite cabinet door of the drying cleaning cabinet and an electric laminate clothes hanging exchange mechanism arranged in the cabinet body of the drying cleaning cabinet.
Further, the fresh function control assembly is composed of a cooling and disinfecting assembly arranged at an air inlet of a left side plate of the upper fresh cooling cabinet, an anion assembly arranged at an air outlet of a right side plate of the upper fresh cooling cabinet, a fresh wireless relay arranged at a groove of a top plate of the upper fresh cooling cabinet, a cooling control circuit board and a cooling direct-current power supply module.
Furthermore, the cooling and heating function control assembly comprises a cooling and heating control circuit board, a cooling and heating power supply module, a cooling and heating wireless relay, an alternating current power supply, a motor driving circuit board, a cooling and heating air assembly and a wireless temperature controller, wherein the cooling and heating control circuit board is installed at the rear end of the bottom plate in the cooling and heating lifting cabinet, and the cooling and heating air assembly and the wireless temperature controller are installed at the front end of the bottom plate in the cooling and heating.
Further, clean thing function control assembly is including installing clean thing lifting unit of lift clean thing top cabinet backplate clean thing flexible subassembly, clean thing control panel, clean thing power module and clean thing ultrasonic ranging module on the lift clean thing top cabinet roof, password function control assembly is including installing the password lifting unit of lift password top cabinet backplate, the flexible subassembly of password on the lift password top cabinet roof, password control panel, password power module and password ranging module.
Furthermore, the television door function control assembly comprises a function master control circuit board, a master door control switch, a master touch inductive switch, a wireless infrared converter, a door power module, a door wireless relay, a television module arranged behind the function master control liquid crystal glass, and a power touch end plug arranged at the lower end of the back of the door panel of the composite wardrobe cabinet.
Has the advantages that: the utility model discloses realize the product with higher speed and get into family, hotel, will change the extravagant reuse of air conditioner energy, reduce the air conditioner to environmental pollution, to getting into indoor air treatment after the wardrobe circulation, emit fresh air, solve the unable difficult problem of drying after living hotel's clothing washing to the difference crowd that appears.
Drawings
Fig. 1 is a schematic diagram of a control system principle of an intelligent wardrobe control system based on the internet of things according to the present invention;
FIG. 2 is a working schematic diagram of a host clean-keeping wardrobe function control assembly system of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 3 is a working schematic diagram of a clothes drying and sterilizing wardrobe function control assembly system of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 4 is a working schematic diagram of a drying and sterilizing wardrobe function control assembly system of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 5 is a schematic diagram of the operation of the drying and cleaning wardrobe function control assembly system of the Internet of things-based intelligent wardrobe control system of the present invention;
FIG. 6 is a functional control assembly system working schematic diagram of a refreshing cooling wardrobe based on an Internet of things intelligent wardrobe control system of the present invention;
FIG. 7 is a functional control assembly system working schematic diagram of the cooling and heating air lifting cabinet of the intelligent wardrobe control system based on the Internet of things;
FIG. 8 is a working schematic diagram of a lifting top cabinet function control assembly system of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 9 is a working schematic diagram of a lifting password top cabinet function control assembly system of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 10 is a schematic diagram of the operation of the television function wardrobe door function control assembly of the intelligent wardrobe control system based on the Internet of things of the present invention;
FIG. 11 is an intelligence air conditioner wardrobe 3D schematic diagram of intelligence wardrobe control system based on thing networking.
The reference numerals are explained below:
1. the system comprises a host machine cleaning cabinet 11, a host machine control box 12, a host machine axial flow fan 13, a direct current power supply module 14, a wireless relay 15, a control function circuit board 16, a touch sensing switch 17, a door switch 18, a wireless temperature and humidity sensor 19 and a host machine assembly; 2. a clothes drying and sterilizing cabinet 21, a clothes drying control box 22, a clothes drying wireless relay 23, a clothes drying control circuit board 24, a cabinet door lamp 25, a shaking and dedusting clothes rod control assembly 26, a drawer control assembly 27, a fan control assembly 28 and a clothes drying power supply module; 3. A drying and sterilizing cabinet 31, an induction clothes rod lamp 32, an electric push rod 33, a top functional box assembly 34, a drying control box 35 and sterilizing and drying liquid crystal electric control glass; 4. a drying and cleaning cabinet 41, a drying and cleaning liquid crystal electric control glass 42, a drying and cleaning control box 43, an electric laminate clothes hanging exchange mechanism 44, a drying and cleaning door control switch 45 and a drying touch induction switch; 5. a fresh cooling cabinet 51, a cooling and disinfection assembly 52, an anion assembly 53, a cooling wireless relay 54 and a cooling control circuit board; 6. a cooling and heating lifting cabinet 61, a cooling and heating control circuit board 62, a cooling and heating power supply module 63, a gateway 64, a cooling and heating wireless relay 65, a wireless temperature controller 66, an alternating current power supply 67, a motor driving circuit board 68 and a cooling and heating air assembly; 7. the device comprises a lifting clean object top cabinet, a 71 clean object lifting assembly, a 72 clean object telescopic assembly, a 73 clean object control panel, a 74 clean object power module, a 75 clean object ultrasonic distance measuring module; 8. the password distance measuring system comprises a lifting password top cabinet 81, a password lifting assembly 82, a password telescopic assembly 83, a password control board 84, a password power supply module 85 and a password distance measuring module; 9. wardrobe television door 91, function total electric control liquid crystal glass 92, function total control circuit board 93, door wireless relay 94, door power module 95, television module 96 and power touch terminal plug.
Detailed Description
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are used merely for convenience of description and for simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art through specific situations.
The present invention will be further explained with reference to the accompanying drawings:
as shown in fig. 1-10, an intelligent wardrobe control system based on the internet of things is composed of a host cleaning cabinet 1, a clothes drying and sterilizing cabinet 2, a drying and sterilizing cabinet 3, a drying and cleaning cabinet 4, a refreshing cooling cabinet 5, a cold and warm air lifting cabinet 6, a lifting cleaning top cabinet 7, a lifting password top cabinet 8 and a wardrobe television door 9;
a main machine function control assembly is installed on a main machine cleaning cabinet 1, a clothes drying function control assembly is installed on a clothes drying disinfection cabinet 2, a sterilization function control assembly is installed on a drying disinfection cabinet 3, a cleaning control assembly is installed on a drying cleaning cabinet 4, a refreshing cooling cabinet 5 is provided with a refreshing function control assembly, a cooling and heating function control assembly and a gateway 63 are installed on a cooling and heating air lifting cabinet 6, a cleaning object function control assembly is installed on a lifting cleaning object top cabinet 7, a password function control assembly is installed on a lifting password top cabinet 8, and a television door function control assembly is installed on a wardrobe television door 9;
the main machine function control assembly, the clothes drying function control assembly, the sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the object cleaning function control assembly, the password function control assembly and the television door function control assembly are in communication connection, and the main machine function control assembly, the clothes drying function control assembly, the sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the object cleaning function control assembly, the password function control assembly and the television door function control assembly are further in communication connection with a mobile control terminal through a gateway 63.
In this embodiment, the host function control assembly is composed of a host control box 11, and a dc power supply module 13, a wireless relay 14, a control function circuit board 15, a wireless temperature and humidity sensor 18, and a host axial flow fan 12 which are arranged in the host control box 11, a touch induction switch 16 and a door switch 17 are installed on a front side wall plate of the host control box 11, and a compressor motor, an electromagnetic four-way valve, an ac power supply socket, a current protector, and a forward and reverse rotation fan assembly motor are also installed inside a lower cabinet body of the host sanitation cabinet 11;
a plurality of signal input ends on the control function circuit board 15 are also electrically connected with the touch sensing switch 16 and the door switch 17, the door switch 17 is connected with the power supply ends of the main machine axial flow fan 12, the compressor motor, the forward and reverse rotation fan assembly motor and the electromagnetic four-way valve in series, and each output public end of the wireless relay 14 is respectively electrically connected with the power supply ends of the main machine axial flow fan 12, the compressor motor, the forward and reverse rotation fan assembly motor and the electromagnetic four-way valve.
Preferably, the APP software control keys of the terminal devices such as the mobile phone and the like are designed with a plurality of function keys: when the corresponding components start to work, such as cold air/start, warm air/start, clothes shaking, auxiliary heating, dehumidifying and perspective/switching; the above functions can be set to be started jointly, when an APP software start key of terminal equipment such as a mobile phone is operated, a start air conditioner instruction is transmitted to the wireless relay 14, the compressor motor, the electromagnetic four-way valve and the forward and reverse fan assembly motor through the AP P gateway 63 to start working after being powered on, if the APP software closes an air conditioner control key, the compressor motor, the electromagnetic four-way valve and the forward and reverse fan assembly motor stop working successively, when the APP software sets the maximum humidity value of the cleaning cabinet, when the wireless temperature and humidity sensor 18 detects that the humidity in the cleaning cabinet is greater than the humidity set value, the APP gateway 63 sends an instruction to the wireless relay 14 to switch on the main axial flow fan 12 to work, hot air is pumped into the main cleaning cabinet 1 to be cleaned, otherwise, when the APP software sets the maximum temperature value of the cleaning cabinet, when the wireless temperature and humidity sensor 18 detects that the temperature in the cleaning cabinet is greater than a temperature set value, the APP gateway 63 sends an instruction to the wireless relay 14, the main machine axial flow fan 12 stops working, hot air is stopped being pumped into the main machine cleaning cabinet 10 to be loaded on the cleaning cabinet, otherwise, the axial flow fan is conducted to work, if a person touches the inductive switch 16, meanwhile, the cabinet door of the cleaning cabinet is closed, and when the inductive switch 16 touches a high or low level signal, the output end of the control function circuit board 15 is triggered to be conducted or closed, so that the compressor motor, the forward and reverse fan assembly motor and the electromagnetic four-way valve are controlled to be started or closed to work, if the cabinet door of the cleaning cabinet is not closed or the cabinet door is opened during working, the door switch 17 is disconnected, and the power supply cannot be connected with the main machine axial flow fan 12, the compressor.
In this embodiment, the clothes drying function control assembly comprises a clothes drying control box 21 installed on the clothes drying disinfection cabinet 2, a clothes drying wireless relay 22, a clothes drying control circuit board 23, a clothes drying power supply module 28 and a fan control assembly 27 installed on the right side plate of the clothes drying control box 21, which are arranged in the cavity of the clothes drying control box 21, a clothes drying touch sensing switch and a clothes drying door switch are installed on the front panel of the clothes drying control box 21, a shaking dust removal clothes rod control assembly 25 on the side plate of the cabinet body of the clothes drying disinfection cabinet 2, a drawer control assembly 26 is also installed in the lower cabinet body of the clothes drying disinfection cabinet 2, a cabinet door lamp 24 is installed under the bottom plate of the clothes drying control box 21, the clothes drying touch sensing switch is electrically connected with one input end of the clothes drying control circuit board 23, the clothes drying door switch is also connected in series with one power input end of the shaking dust removal clothes rod control assembly 25, the clothes drying switch is also connected in series with one power input end of the cabinet door, a wireless temperature sensor and a wireless humidity sensor are also arranged in the clothes drying and sterilizing cabinet 2, the clothes drying wireless relay 22 and the wireless temperature sensor are connected with a gateway 63 in a grid-connected mode;
the dust removal clothes rod control assembly 25 comprises a time relay circuit board, an electromagnetic valve, a normally closed travel switch and a PTC electric heating component, wherein the power end of the electromagnetic valve is connected with the public end of the time relay circuit board, the normally opened end of the time relay circuit board is connected with the power end of a clothes drying power module 28, one path of output end of the function making circuit board 23 is connected with the trigger end of the time relay circuit board, the PTC heating component is connected with one path of output end of the function making circuit board 23, the output end of a clothes drying wireless relay 22 is connected with the trigger end of the time relay circuit board 251, the normally closed travel switch is connected with the power end of the electromagnetic valve in series, and the drawer control assembly 26 is characterized by consisting of an electric push rod, a wireless temperature sensor, a wireless humidity sensor, a, the electric push rod and the liquid crystal electric control glass are connected with 2 output ends of the functional circuit board, and the electric push rod and the liquid crystal electric control glass are connected with 2 output ends of the wireless relay circuit board;
preferably, when an APP software compressor of a gateway of terminal equipment such as a mobile phone is operated to start control work, a clothes drying wireless relay and a wireless relay work in a linkage mode to drive a fan to work and lead hot air to the upper portion of the clothes drying disinfection cabinet; the fan control assembly is characterized by comprising a fan, a temperature sensor and a relay circuit board, wherein the temperature sensor and the relay circuit board are arranged at an air inlet of the fan, a signal trigger end of the temperature sensor is connected with an input trigger end of the relay circuit board, a common end of the relay circuit board is connected with a power end of the fan, a normally open end of the relay circuit board is connected with a power end of a clothes drying power module 28, the components are grounded, and when the temperature sensor detects that a clothes drying disinfection cabinet is lower than a temperature set value, the fan stops working; when the temperature sensor detects that the clothes drying and sterilizing cabinet is higher than a temperature set value, the fan starts to work and guides hot air into the next drying and sterilizing cabinet cavity, when the temperature or the humidity in the double-layer clothes drying drawer reaches the set value, the wireless temperature sensor and the wireless humidity sensor feed back the information to the gateway 63, the APP software sets parameters to send an instruction to the wireless relay 14, so that the compressor motor stops working, and the fan assembly motor still works to output normal-temperature air; on the contrary, when the temperature or the humidity in the double-layer clothes drying drawer is lower than a set value, the temperature or the humidity information is fed back to the gateway 63, the gateway 63 sends an instruction to the wireless relay 14 to force the compressor motor to continuously work, the fan assembly motor continuously outputs high-temperature hot air, APP software for operating the gateway 63 of terminal equipment such as a mobile phone and the like can also control whether the electric push rod 2 stretches out and draws back or recovers and the liquid crystal electric control glass is electrified or not through controlling a circuit board of the wireless relay, if a person hands dry clothes and touches the inductive switch and simultaneously closes the door of the clothes drying and sterilizing cabinet, the touch inductive switch triggers the conduction or the closing of the output end in the clothes drying control circuit board 23 when a high or low level signal is touched, so as to control the starting or closing work of the dust removing clothes rod control assembly 25, if the door of the clothes drying and sterilizing cabinet is not closed or the cabinet door is opened during the work, the, if a human hand touches the inductive switch, the touch inductive switch sends a low level signal to trigger the closing of the output end in the clothes drying control circuit board, so that the electric push rod is controlled to retract to work, and meanwhile, the double-layer clothes drying drawer door plate is closed, the door switch is closed, the liquid crystal electric control glass can be started to work, if the clothes drying disinfection cabinet door is not closed or the cabinet door is opened during the working period, the door switch is opened, the power supply cannot be connected with the liquid crystal electric control glass, and the liquid crystal electric control glass cannot be started to work; when a human hand touches the induction switch, the high level signal is sent out by the touch induction switch to trigger the conduction of the output end in the clothes drying control circuit board 23, the electric push rod is controlled to start stretching work, the double-layer clothes drying drawer is opened, when APP software of terminal equipment such as a mobile phone is operated to shake a clothes key, instruction information reaches the clothes drying wireless relay 22 through the gateway 63, the output end trigger time relay circuit board is conducted, the electromagnetic valve 252 is electrified to work and drives the connecting mechanism to move in a transverse linear mode, the electromagnetic valve is powered off and stops working after the mechanism touches a normally closed travel switch, the electromagnetic valve drives the connecting mechanism to move back and forth in a transverse direction under the action of the spring force of the electromagnetic valve, the electromagnetic valve of the dust removal clothes hanging rod mechanism is powered on and sucked back and forth, if the human hand touches the induction switch, the low level signal is sent out to trigger the conduction of the output end in the, when the power-on time of the time relay circuit board reaches a set value, the power end of the electromagnetic valve is disconnected, and the electromagnetic valve of the dust removal clothes hanging rod mechanism stops reciprocating motion.
In this embodiment, the sterilization function control assembly comprises a top function box 33, a sterilization touch sensing switch and a sterilization gate control switch 339, a large exhaust fan and a temperature probe NTC, the top function box 33 is mounted in the drying and sterilizing cabinet 3 in a wrapping manner, the sterilization touch sensing switch and the sterilization gate control switch 339 are mounted on the front panel of the top function box 33, the large exhaust fan and the temperature probe NTC are mounted on the left side panel of the top function box 33, an induction clothes rod lamp 31 is arranged below the top function box 33, an electric push rod 32 is arranged at the bottom of the drying and sterilizing cabinet 3, a sterilization drying liquid crystal electric control glass 35 is further mounted on the drying and sterilizing cabinet 3, a PTC heating component, an ozone generator, a wireless temperature sensor, a wireless relay, a direct current power supply module and a sterilization drying control function circuit board are mounted in the top function box 33, 2 paths of common output ends of the sterilization drying control function circuit board are respectively, The other ends of the PTC heating component 331 and the sterilization and drying liquid crystal electric control glass 35 are connected with a power supply, the PTC heating component, the ozone generator, the large exhaust fan, the electric push rod and the sterilization and drying liquid crystal electric control glass 35 are all alternating current power supply working components and are connected with one output end of the sterilization and drying control function circuit board, the common end of the two output ends is connected with L, N end of the alternating current power supply, the two power supply ends of the ozone generator 332 are connected with the normally open end of the two output ends, one end of the large exhaust fan and one end of the electric push rod 32 are connected with the normally closed end L, N of the two output ends, the other ends of the large exhaust fan and the electric push rod are respectively connected with the alternating current power supply N, L end of the common end of the two output ends of the sterilization and drying control function circuit board correspondingly, the temperature probe, the NTC touch induction switch and one input end of the sterilization and, The input alternating current power ends of the ozone generator are connected in series, the induction clothes rod lamp 31 is composed of an LED lamp with a built-in human body infrared induction device, and the common end of the output ends of 2 paths of relays of the wireless relay is respectively connected with one end of a power supply of the sterilization drying liquid crystal electric control glass and the PTC heating component;
the ozone generator is linked with the large exhaust fan and the electric push rod 32 to reversely work in a delayed mode, namely when the ozone generator 332 is operated or stops working within 10 seconds, the large exhaust fan and the electric push rod 32 cannot be started to operate; conversely, when the big exhaust fan or the electric push rod 32 works, the ozone generator can not be started to operate, for example: the common end of 2 of the output lines of the circuit board with the sterilization and drying control functions is respectively connected with an alternating current power supply L, N end, two power supply ends of an ozone generator are respectively connected with the two output lines of the circuit board with the sterilization and drying control functions, one end of a power supply of a large exhaust fan and an electric push rod 32 is respectively connected with the two output lines of the circuit board with the normally closed end, the other power supply ends of the large exhaust fan and the electric push rod 32 are respectively connected with an alternating current power supply L, N end, the wireless relay and the wireless temperature sensor are connected with the gateway, the APP software installed on the gateway 63 is used for operating terminal equipment such as a mobile phone and the like to set parameters and a linkage mode for a wireless temperature sensor and a wireless relay respectively, so that the remote and near control of the PTC heating part, the ozone generator, the large exhaust fan, the electric push rod 32 and the sterilization and drying liquid crystal electric control glass 35 is realized;
preferably, when a human hand touches the inductive switch, one trigger end of the sterilization and drying control function circuit board is conducted under the action of a low-level signal and is connected with the output end of the sterilization and drying control function circuit board to be connected with the electric push rod 32, and the motor is electrified in the positive direction to work, and is stretched to push out the whole inner cabinet; the electric push rod 32 is electrified and retracted in the reverse direction to work once again by touch and press, and the whole inner cabinet retracts to close the cabinet door; similarly, when the induction switch is touched by a hand, the sterilization and drying control function circuit board with the trigger end under the action of the low-level signal is conducted to the large exhaust fan connected with the output end of the sterilization and drying control function circuit board to be electrified for exhausting air, the sterilization and drying liquid crystal electric control glass 35 is electrified to be transparent, and the PTC heating component is electrified to emit hot air; when a human hand is linked with the touch induction switch, the relay is switched on corresponding to the relay, the two power supply ends of the oxygen generator are connected with the normal open end of the sterilization drying control function circuit board, corresponding to the relay and the relay, the oxygen generator is electrified at regular time, the oxygen generator carries out sterilization at regular time, if the electric push rod 32 is in a stretching state during touch, the electric push rod retracts to close the cabinet door at first, and if the large exhaust fan is in an air exhaust state, the electric push rod stops working.
In this embodiment, the cleaning control assembly is composed of a dry cleaning control box 42 installed on the dry cleaning cabinet 4, a dry temperature sensor inside the dry cleaning control box 42, a dry wireless relay circuit board, a dry control function circuit board, a dry direct current power supply module, a dry axial flow fan installed on a side plate of the dry cleaning control box 42, an induction clothes rod lamp installed outside a bottom plate of the dry cleaning control box 42, a dry cleaning door control switch 44 installed on a front plate of the dry cleaning control box 42, a dry cleaning liquid crystal electric control glass 41 installed on a composite cabinet door of the dry cleaning cabinet 4, and an electric laminate clothes hanging exchange mechanism 43 installed inside the cabinet body of the dry cleaning cabinet 4;
the electric laminate clothes hanging exchange mechanism 43 is provided with a left variable speed motor and a right variable speed motor, the multipath output end of the drying control function circuit board is electrically connected with the drying axial flow fan, the drying cleaning liquid crystal electric control glass, the left variable speed motor and the right variable speed motor respectively, the multipath trigger input end of the drying control function circuit board is electrically connected with the touch sensing switch and the drying temperature sensor respectively, the sensing clothes rod lamp is composed of a built-in human body infrared sensing device LED lamp and is electrically connected with the output of the drying direct current power supply module, the drying cleaning gate control switch 44 is connected with the input alternating current power end of the drying cleaning liquid crystal electric control glass 41 in series, the common end of the drying wireless relay circuit board multipath output is connected with the drying axial flow fan, the drying cleaning liquid crystal electric control glass 41, the left variable speed motor and the right variable speed motor respectively, and the drying wireless relay circuit board multipath output common end is connected with the drying direct And the dry wireless relay circuit board is connected with the gateway 63 in a grid mode, and the APP software of the gateway 63 is installed on the dry wireless relay circuit board to be operated by terminal equipment such as a mobile phone and the like to set parameters respectively, so that the remote and near control is realized.
Preferably, when a hand touches the inductive switch, the trigger end switches on the drying control function circuit board under the action of a high level signal to conduct the drying axial flow fan connected with the output end to be electrified and drafted, the drying cleaning liquid crystal electric control glass 41 is electrified and transparent, when the hand touches the inductive switch, the trigger end switches on the drying control function circuit board under the action of the high level signal to conduct the laminate clothes hanging interchange mechanism 43 connected with the output end, the laminate moves upwards to a set interval under the action of the electrification of the left speed change motor and the right speed change motor, the laminate moves downwards to the bottom to be stacked, when the drying temperature sensor detects that the cleaning cabinet is lower than a temperature set value, the trigger end stops the fan under the action of a low level signal, when the drying temperature sensor detects that the cleaning cabinet is higher than the temperature set value, the fan starts to work, hot air is guided to the cooling plate in the cavity, when a 'layer/hanging key' is arranged on APP software of terminal equipment such as a mobile phone and the like, instruction information reaches a dry cleaning wireless relay through a gateway 63, a wireless transmission module arranged on the dry cleaning wireless relay receives the gateway 63 information to drive the output end of the dry cleaning wireless relay to be conducted corresponding to the relay, the work of the laminated plate clothes hanging exchange mechanism 43 is realized, the laminated plate is moved up to a set distance and is moved down to the bottom for stacking, when a 'perspective key' is operated, the instruction information reaches the dry cleaning wireless relay through the gateway 63, a wireless transmission module arranged on the dry cleaning wireless relay receives the gateway 63 information to drive the output end of a wireless relay 423 to be conducted corresponding to the relay, and the dry cleaning liquid crystal electric control glass 41 is electrified and.
In this embodiment, the refreshing function control assembly is composed of a cooling and disinfecting assembly 51 arranged at an air inlet of a left side plate of an upper cabinet of the refreshing cooling cabinet 5, an anion assembly 52 arranged at an air outlet of a right side plate of the upper cabinet of the refreshing cooling cabinet 5, a refreshing wireless relay 53 arranged at a groove of a top plate of the upper cabinet of the refreshing cooling cabinet 5, a cooling control circuit board 54 and a cooling direct-current power supply module;
the negative ion assembly 54 is characterized by comprising a shell, a negative ion axial flow fan, a negative ion generator, an air quality sensor, a negative ion humidity sensor and a negative ion wireless humidity sensor, wherein the negative ion axial flow fan, the negative ion generator, the air quality sensor, the negative ion humidity sensor and the negative ion wireless humidity sensor are arranged on the shell, the cooling and disinfecting assembly 51 comprises water, a sterilizing lamp, a lamp holder and a water level switch which are arranged on the inner side of an air inlet top plate, and the water level switch is connected with a water pump in series and is arranged on the wall of; the water level switch is electrically connected with an input trigger end of a refreshing wireless relay 53, a multi-path output end of the cooling control circuit board 54 is electrically connected with an anion axial flow fan, an anion generator, a water pump and a bactericidal lamp respectively, a multi-path trigger input trigger end of the cooling control circuit board 54 is electrically connected with an air quality sensor, an anion humidity sensor and the water level switch respectively, a multi-path output common end of the wireless relay circuit board 53 is connected with power ends of the anion axial flow fan, the anion generator, the water pump and the bactericidal lamp respectively, a multi-path output common end of the wireless relay circuit board 53 is connected with power ends of a cooling direct current power supply module respectively, the refreshing wireless relay 53 and the anion humidity sensor are connected with a gateway 63 in a grid mode, and AP P software of the gateway 63 is installed on a mobile phone and other terminal equipment to operate the refreshing wireless relay 53, the anion wireless humidity sensor sets parameters to realize distance and near control;
preferably, when the air quality sensor detects that the air quality at the air outlet of the right side plate of the upper cabinet of the fresh cooling cabinet 5 is lower than a set value, the negative ion generator, the germicidal lamp and the fan work under the action of a high level signal at the trigger end of the cooling control circuit board 54, when the air quality sensor detects that the air quality at the air outlet of the right side plate of the upper cabinet of the fresh cooling cabinet 5 is higher than the set value at the trigger end of the cooling control circuit board 54, the negative ion generator stops working under the action of a low level signal at the trigger end of the cooling control circuit board 54, when the negative ion humidity sensor detects that the humidity at the air outlet of the right side plate of the upper cabinet of the fresh cleaning cabinet 5 is higher than the set value, the fan stops working under the action of a low level signal at the trigger end of the cooling control circuit board 54, when the negative ion humidity sensor detects that the humidity at the air outlet of the right side plate, when a 'fresh key' on APP software of terminal equipment such as a mobile phone is operated, instruction information reaches a fresh wireless relay 53 through a gateway 63, a wireless transmission module 53 arranged on the fresh wireless relay 53 receives the information of the gateway 63 to drive the output end of the fresh wireless relay 53 to be conducted corresponding to the relay, the anion generator, the germicidal lamp and the fan are operated, the water pump stops operating, fresh air is guided out from an air outlet of a right side plate of an upper cabinet, when a 'moisture key' on the APP software of the terminal equipment such as the mobile phone is operated, the instruction information reaches the fresh wireless relay 53 through the gateway 63, the wireless transmission module 53 arranged on the fresh wireless relay 53 drives the output end of the fresh wireless relay 53 to be conducted corresponding to the relay after receiving the information of the gateway 63, the air conditioner comprises a water pump, an anion generator and a fan, wherein the air outlet of the right side plate of an upper cabinet is used for discharging wet air, when a warm dry key is arranged on APP software of terminal equipment such as a mobile phone, instruction information reaches a fresh wireless relay 53 through a gateway 63, a wireless transmission module 53 arranged on the fresh wireless relay 53 receives the information of the gateway 63 and drives the output end of the fresh wireless relay 53 to be connected with a relay, so that the water pump stops working, a sterilizing lamp and the fan 541 work, the dry air is discharged through the air outlet of the right side plate of the new upper cabinet, when the water level of a water tank reaches a set value, a water level switch is connected, the information received by the wireless transmission module arranged on the fresh wireless relay 53 is fed back to the gateway 63, the gateway 63 drives the output end of a wireless relay 14 to be connected with the relay, the air conditioner.
In this embodiment, the cooling and heating function control assembly includes a cooling and heating control circuit board 61 installed at the rear end of the bottom plate in the cooling and heating lifting cabinet 6, a cooling and heating power supply module 62, a cooling and heating wireless relay 64, an ac power supply 66, a motor driving circuit board 67, a cooling and heating assembly 68 installed at the front end of the bottom plate in the cooling and heating lifting cabinet 6, and a wireless temperature controller 65;
the cooling and heating air assembly 68 comprises a condenser, a heating plate arranged at the front end of the condenser, a temperature controller, a wind wheel motor arranged at the rear end of the condenser and an air outlet switching mechanism arranged at the front end of the heating plate, wherein the heating plate at least comprises one of a PTC heating element, a far infrared nanometer heating element and an electromagnetic induction coil heating element, the temperature controller is connected with the heating plate in series, a lifting motor and a lifting motor are arranged on the air outlet switching mechanism and are electrically connected with a driving circuit board 67, the multipath output ends of the cooling and heating control circuit board 61 are respectively and electrically connected with the heating plate, the wind wheel motor and the driving circuit board 67, the multipath trigger input end of the cooling and heating control circuit board 61 is respectively and electrically connected with a cooling and heating wireless relay 64, and the wireless temperature controller and the multipath common output end of the wireless relay circuit, the multi-path output normally open end of the wireless relay circuit board 64 is connected with a power supply end of an alternating current power supply 66, the cooling and heating power supply module 62 outputs different voltages and respectively supplies power to the cooling and heating wireless relay 64, the gateway 63, the motor, the driving circuit board 67 and the cooling and heating control circuit board 61, the cooling and heating wireless relay 64, the wireless temperature controller 65 and the gateway 63 are connected in a grid mode, APP software installed on a mobile phone and other terminal equipment is used for operating the cooling and heating wireless relay 64 and the wireless temperature controller 65 through the gateway 63 to set parameters, remote and near control is achieved, the cooling and heating wireless relay 64 and the wireless relay 14 are set to be in linkage control through the APP software of the gateway 63, and when the wireless relay 14 starts the compressor to work, the cooling and heating wireless relay 64 starts the driving circuit board 67 to;
preferably, when an APP cold air start/close key of terminal equipment such as a mobile phone is operated, an air conditioner cold air start instruction is transmitted to the cold and warm wireless relay 64 through the APP gateway 63, the multi-output end of the cold and warm wireless relay 64 is conducted, the driving circuit board 67 is electrified, the wind wheel motor and the motor work, the air outlet switch mechanism is started, cold (warm) air is output, when the cold air start/close key is operated, the multi-output end of the cold and warm wireless relay 64/wireless relay 14 is closed, the driving circuit board 67 is powered off, the wind wheel motor and the motor stop working, when an APP hot air start/close key of the terminal equipment such as the mobile phone is operated, the air conditioner start instruction is transmitted to the cold and warm wireless relay 64/wireless relay 14 through the APP gateway 63, the multi-output end of the wireless relay/64 wireless relay 14 is conducted, the electromagnetic four-way valve is switched on, the driving circuit board 67 is powered on, the heating plate is powered on, the wind wheel motor and the motor work, the air outlet opening and closing mechanism 683 is lifted and opened, and the hot air is output, so that cold air is converted into hot air and the hot air is output; during operation, when a cold air start/stop key is operated, the multi-path output ends of the cold and warm wireless relay 64 and the wireless relay 14 are closed, the driving circuit board 67 is powered off, the heating plate is powered off, the wind wheel motor and the motor stop working, when the wireless temperature controller 65 detects that the temperature at the position of the output port is higher than a set value, the trigger end acts on the output end of the cold and warm control circuit board 61 to be closed under the action of a high-level signal, the heating plate is powered off, when the mobile phone APP software is operated to close the key, the wind wheel motor stops working, the motor output port switch mechanism descends, and the cold (warm) air outlet port is closed.
In this embodiment, the cleaning function control assembly comprises a cleaning lifting component 71 installed on the back plate of the lifting cleaning top cabinet 7, a cleaning telescopic component 72 installed on the top plate of the lifting cleaning top cabinet 7, a cleaning control plate 73, a cleaning power module 74 and a cleaning ultrasonic ranging module 75, and the password function control assembly comprises a password lifting component 81 installed on the back plate of the lifting password top cabinet 8, a password telescopic component 82 installed on the top plate of the lifting password top cabinet 8, a password control plate 83, a password power module 84 and a password ranging module 85;
the lifting and descending top cabinet 7 for cleaning articles and the lifting and descending password top cabinet 8 are respectively provided with a lifting touch pad and a password touch pad, the cleaning article lifting assembly 71 is composed of a lifting electric push rod, a lifting lead screw and a lifting direct-current speed reducing motor, the cleaning article telescopic assembly 72 is composed of a cleaning article electric push rod, a cleaning article lead screw and a cleaning article direct-current speed reducing motor, the control function circuit board 73 is provided with a group of 2 paths of output end relays, the common pin of each group of relays is respectively and electrically connected with the lifting electric push rod, the telescopic electric push rod and the positive and negative ends of the power supply input of the telescopic electric push rod, the control function circuit board 73 is provided with a group of 2 paths of output end relays, each group of normally open pins is respectively connected with the positive end of the power supply of the direct-current power supply module 74, the control function circuit board 73 is provided with a
Preferably, when a touch-sensitive switch of the cleaning door plate is operated, the trigger end of the control function circuit board 73 is acted by a high-level signal, the output end is conducted, the telescopic electric push rod arranged on the top plate of the outer cabinet of the lifting cleaning top cabinet 7 is extended by N, the output end of the control function circuit board 73 is conducted, the lifting electric push rod arranged on the back plate of the inner cabinet of the lifting cleaning top cabinet 7 is extended, the inner cabinet of the lifting cleaning top cabinet 7 is descended by N, when the touch-sensitive switch of the password door plate is controlled, the trigger end of the control function circuit board 73 is acted by a high-level signal, the output end is conducted, the telescopic electric push rod arranged on the top plate of the outer cabinet of the lifting password top cabinet 8 is extended by N, the output end of the control function circuit board 73 is conducted, the lifting electric push rod arranged on the back plate of the inner cabinet of the lifting password top cabinet 8 is extended, the inner cabinet of the lifting password top cabinet 8 is descended, an ascending/descending instruction is transmitted to the wireless relay 74 through the APP gateway 63, multiple output ends of the wireless relay 74 are conducted, a telescopic electric push rod arranged on the top plate of the outer cabinet of the lifting top cabinet 7 is extended by N distance to stop, multiple output ends of the wireless relay 74 are conducted and conducted, a lifting electric push rod arranged on the back plate of the inner cabinet of the lifting top cabinet 7 is extended, the inner cabinet of the lifting top cabinet 7 is lowered by N distance to stop, when an APP secret key of terminal equipment such as a mobile phone is operated, the ascending/descending instruction is transmitted to the wireless relay 74 through the APP gateway 63, the multiple output ends 743 of the wireless relay 74 are conducted, the telescopic electric push rod arranged on the top plate of the outer cabinet of the lifting top cabinet 8 is extended by N distance to stop, the multiple output ends of the wireless relay 74 are conducted, the lifting electric push rod arranged on the back plate of the inner cabinet of the lifting top cabinet 8 is extended, the inner cabinet of the lifting top cabinet 8 is lowered, when the inner cabinet of the lifting top cabinet 7 descends for N-1 distance, a bottom plate ultrasonic ranging module feeler mounted on the lifting top cabinet 7 triggers the output end of the control function circuit board 73 to close by a high level signal of the ultrasonic ranging module, the lifting electric push rod stops descending, when the inner cabinet of the lifting password top cabinet 8 descends for N-1 distance, a bottom plate ultrasonic ranging module feeler mounted on the lifting password top cabinet 8 triggers the output end of the control function circuit board 73 to close by a high level signal of the ultrasonic ranging module, the lifting electric push rod stops descending, when an APP password of terminal equipment such as a mobile phone is operated to be on/critical, an on/off command is transmitted to the wireless communication module through the APP, password information transmitted by the gateway 63 is transmitted to the wireless communication module through a password main board chip to switch on or off the forward rotation or reverse rotation of the motor to realize the opening or closing of the door, and the password information is switched on or off, and then transmits the APP to the gateway 63 on the intelligent terminal device through the wireless communication module transmission gateway 63.
In this embodiment, the television door function control assembly comprises a function main electric control liquid crystal glass 91 installed on a wardrobe television door 9 frame, a function main control circuit board 92 installed on different grooves of a back plate of the wardrobe television door 9 frame, a main door control switch, a main touch induction switch, a wireless infrared converter, a door power module 94, a door wireless relay 93, a television module 95 installed behind the function main electric control liquid crystal glass 91, and a power supply touch end plug 96 installed at the rear lower end of the back of a composite wardrobe door 90 plate;
the television module 95 comprises a liquid crystal display panel, a driving electronic board, a main board electronic board, a power supply electronic board, an inverter electronic board, a key electronic board and a wireless receiving electronic board, and also comprises the integrated electronic boards, wherein a power supply touch end plug 96 is correspondingly connected with a touch power supply output seat at the outer panel of the lower cabinet body of the host cleaning cabinet, the door power supply module comprises a rechargeable battery pack and is electrically connected with a function master control circuit board 92, a wireless infrared converter and a door wireless relay 93 for power supply, the function master control circuit board 92 is provided with a group of 2-path output end relays, each group of normally open pins is connected with a power supply positive end of the door power supply module 94, each group of the function master control circuit board 92 is provided with a group of, one common pin of one path of relay of the function master control circuit board 92 multi-path output end relay is electrically connected with a power end of a function master electric control liquid crystal glass 91, a normally open pin of the relay is electrically connected with a power end of a power touch plug 96, the other end of the power of the function master electric control liquid crystal glass 91 is electrically connected with the other end of the power touch plug 96, a multi-path input trigger end of the function master control circuit board 92 multi-path input trigger end of the relay is electrically connected with a master door control switch 93 and a master touch induction switch respectively, one set of 2 paths of multi-path output end relays of the wireless relay 9 are connected with a power positive end of a door power module 94, one set of 2 paths of multi-path output end relays of the wireless relay 9 are connected with a power negative end of the door power module 94 respectively, the wireless infrared converter 85, the door wireless relay 93 and the gateway 63 are installed on terminal equipment such as a mobile phone through APP software, The door wireless relay 93 sets parameters to realize the remote and near control of the television module 96;
preferably, when the television function composite cabinet door is closed, the touch sensing switch is turned on, the trigger end 821 of the function master control circuit board 92 is acted by a high-level signal, the output end 821 is conducted, the electric push rod 88 arranged between the upper cabinet body door plate and the composite cabinet door 9 frame back plate of the main machine cleaning cabinet 1 is electrified in the forward direction to extend, the television function composite cabinet door is opened, the power supply touch end arranged at the rear lower end of the back of the composite cabinet door 9 plate of the wardrobe leaves through the plug 96, the television function composite cabinet door is not electrified, when the touch sensing switch 93 is turned on, the trigger end of the function master control circuit board 92 is conducted at the high-level signal action output end, the electric push rod arranged between the upper cabinet body door plate and the composite cabinet door 9 frame back plate of the main machine cleaning cabinet 1 is electrified to retract, the television function composite cabinet door is closed, the power supply touch end arranged at the rear lower end of the composite cabinet, when the television function composite cabinet door is closed, when a key on the key electronic board of the television module 96 is touched, the touch television module 96 and the function total electric control liquid crystal glass 91 are electrified, the television screen is electrified and opened, and the liquid crystal glass is also electrified and the voltage is adjusted to the limit, so that the light transmittance is highest; also accessible wireless infrared converter 85 control TV set when TV module 96 uses, when terminal equipment APP TV such as operation cell-phone opens/when key, give door wireless relay 93 through gateway 63 will transmit, touch TV module 96 and the circular telegram of function total electronic control liquid crystal glazing 91, the TV screen circular telegram is opened, liquid crystal glazing is also electrified voltage and is transferred to the light transmittance after the limit highest, when through operation APP go up the TV interface instruction, will transmit for the wireless receiving electronic plate through gateway 63 and implement control TV set function, when operation cell-phone terminal equipment APP goes up the circular telegram liquid crystal glazing, light transmittance instruction will transmit for door wireless relay 93 through gateway 63 on the operation APP, implement the electrified voltage regulation and control through function total control circuit board 92, control liquid crystal glazing dimming rate.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (9)

1. The utility model provides an intelligence wardrobe control system based on thing networking which characterized in that: the clothes drying and cleaning device comprises a main machine cleaning cabinet, a clothes drying and sterilizing cabinet, a drying and cleaning cabinet, a refreshing cooling cabinet, a cooling and heating lifting cabinet, a lifting cleaning top cabinet, a lifting password top cabinet and a wardrobe television door, wherein a main machine function control assembly is installed on the main machine cleaning cabinet, a clothes drying function control assembly is installed on the clothes drying and sterilizing cabinet, a sterilizing function control assembly is installed on the drying and sterilizing cabinet, a cleaning control assembly is installed on the drying cleaning cabinet, a refreshing function control assembly is installed on the refreshing cooling cabinet, a cooling and heating function control assembly and a gateway are installed on the cooling and heating lifting cabinet, a cleaning function control assembly is installed on the lifting cleaning top cabinet, a password function control assembly is installed on the lifting password top cabinet, a television door function control assembly is installed on the wardrobe television door, and the main machine function control assembly, the clothes drying function control assembly, The sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the cleaning function control assembly, the password function control assembly and the television door function control assembly are in communication connection, and the host function control assembly, the clothes drying function control assembly, the sterilization function control assembly, the cleaning control assembly, the refreshing function control assembly, the cold and hot air function control assembly, the cleaning function control assembly, the password function control assembly and the television door function control assembly are also in communication connection with a mobile control terminal through the gateway.
2. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: host computer function control assembly is in by host computer control box and setting direct current power supply module, wireless relay, control function circuit board, wireless temperature and humidity sensor, host computer axial fan in the host computer control box constitute, install touch-sensitive switch and door switch on the bounding wall in the front of the host computer control box, compressor motor, electromagnetism cross valve, alternating current power supply socket, current protector, positive reverse fan assembly motor are still installed to cabinet body inside under the host computer cleaning cabinet.
3. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: the clothes drying function control assembly comprises a clothes drying control box arranged on the clothes drying disinfection cabinet, a clothes drying wireless relay, a clothes drying control circuit board, a clothes drying power module and a fan control assembly arranged on the right side plate of the clothes drying control box, wherein the clothes drying wireless relay, the clothes drying control circuit board, the clothes drying power module and the fan control assembly are arranged in the cavity of the clothes drying control box, a clothes drying touch induction switch and a clothes drying door switch are arranged on the front panel of the clothes drying control box, the shaking and dust removing clothes rod control assembly of the side plate of the body of the clothes drying disinfection cabinet is arranged, a drawer control assembly is further arranged in the lower body of the clothes drying disinfection cabinet, and a cabinet door lamp is arranged below the.
4. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: function control assembly disinfects by the package install in top function box in the dry cabinet that disinfects, install touch-sensitive switch and the gate control switch that disinfects, install of disinfecting on the top function box front panel the big air exhauster of top function box left side board and temperature probe NTC, the beneath response clothing pole lamp of top function box, the bottom of dry cabinet that disinfects is provided with electric putter, dry cabinet is last still to install the automatically controlled glass of dry liquid crystal that disinfects, install PTC heater block, ozone generator, wireless temperature sensor, wireless relay, DC power supply module, the dry control function circuit board that disinfects in the function box of top.
5. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: the cleaning control assembly consists of a drying cleaning control box arranged on the drying cleaning cabinet, a drying temperature sensor, a drying wireless relay circuit board, a drying control function circuit board, a drying direct current power supply module, a drying axial flow fan arranged on a side plate of the drying cleaning control box, an induction clothes rod lamp arranged outside a bottom plate of the drying cleaning control box, a drying cleaning door control switch arranged on a front plate of the drying cleaning control box, a drying cleaning liquid crystal electric control glass arranged on a composite cabinet door of the drying cleaning cabinet, and an electric type laminate clothes hanging exchange mechanism arranged in the drying cleaning cabinet.
6. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: the fresh function control assembly is composed of a cooling and disinfecting assembly arranged at an air inlet of a left side plate of an upper cabinet of the fresh cooling cabinet, an anion assembly arranged at an air outlet of a right side plate of the upper cabinet of the fresh cooling cabinet, a fresh wireless relay arranged at a groove of a top plate of the upper cabinet of the fresh cooling cabinet, a cooling control circuit board and a cooling direct-current power supply module.
7. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: the cooling and heating function control assembly comprises a cooling and heating control circuit board, a cooling and heating power supply module, a cooling and heating wireless relay, an alternating current power supply, a motor driving circuit board, a cooling and heating air assembly and a wireless temperature controller, wherein the cooling and heating control circuit board is installed at the rear end of a bottom plate in the cooling and heating lifting cabinet, and the cooling and heating air assembly and the wireless temperature controller are installed at the front end of the bottom plate in the cooling.
8. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: clean thing function control assembly including install clean thing lifting unit of lift clean thing top cabinet backplate clean thing flexible subassembly, clean thing control panel, clean thing power module and clean thing ultrasonic ranging module on the lift clean thing top cabinet roof, password function control assembly including installing the password lifting unit of lift password top cabinet backplate password flexible subassembly, password control panel, password power module and password ranging module on the lift password top cabinet roof.
9. The intelligent wardrobe control system based on the Internet of things of claim 1, wherein: the television door function control assembly comprises a function total electric control liquid crystal glass arranged on the wardrobe television door frame, a function total control circuit board, a total door control switch, a total touch induction switch, a wireless infrared converter, a door power module, a door wireless relay, a television module arranged behind the function total electric control liquid crystal glass and a power supply touch end plug arranged at the lower end of the back of the wardrobe composite cabinet door plate, wherein the function total electric control liquid crystal glass is arranged on different grooves of a back plate of the wardrobe television door frame.
CN202021405260.4U 2020-07-16 2020-07-16 Intelligent wardrobe control system based on Internet of things Active CN212322078U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021405260.4U CN212322078U (en) 2020-07-16 2020-07-16 Intelligent wardrobe control system based on Internet of things

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021405260.4U CN212322078U (en) 2020-07-16 2020-07-16 Intelligent wardrobe control system based on Internet of things

Publications (1)

Publication Number Publication Date
CN212322078U true CN212322078U (en) 2021-01-08

Family

ID=74034603

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021405260.4U Active CN212322078U (en) 2020-07-16 2020-07-16 Intelligent wardrobe control system based on Internet of things

Country Status (1)

Country Link
CN (1) CN212322078U (en)

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