Internet-of-things intelligent water dispenser
An Internet of Things, water dispenser technology, applied in mechanical equipment, water saving, beverage preparation devices, etc., can solve the problems of single function and difficult to meet people's needs for household appliances.
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Embodiment 1
[0026]Embodiment 1: As shown in the figure, an Internet of Things intelligent water dispenser includes a chassis 1, the upper end of the chassis 1 is provided with a water inlet chamber 10 for placing a drinking bucket, and the front side of the chassis 1 is provided with a cold water outlet 11 and hot water Outlet 12, cold water tank 21 and hot water tank 22 are fixed in the cabinet 1, the inlet of cold water tank 21 is connected with water inlet chamber 10, the outlet of cold water tank 21 is connected with cold water outlet 11, the inlet of hot water tank 22 is connected with The water inlet chamber 10 is connected, and the outlet of the hot water tank 22 is connected with the hot water outlet 12. The smart water dispenser of the Internet of Things also includes an atomizer 23, and a partition 5 is horizontally fixed in the cabinet 1, and the partition 5 connects the inside of the cabinet 1. The space is divided into an upper space 13 and a lower space 14, the cold water tan...
Embodiment 2
[0027] Embodiment two: as shown in the figure, other structure is identical with embodiment one, and its difference is: air purification device 3 comprises purification filter element 31 and fan 32, and the middle part of purification filter element 31 has a center hole 34 that runs through up and down, and fan 32 is fixed in the lower space 14 through the mounting plate 33, the mounting plate 33 is provided with a mounting hole 37 corresponding to the central hole 34, the lower end of the purification filter element 31 is against the bottom of the chassis 1, and the upper end of the purification filter element 31 is against the installation On the board 33, and the central hole 34 and the mounting hole 37 are coaxially distributed. In this structure, the air entering the lower space 14 enters the central hole 34 after being purified and filtered by the purification filter element 31. Since the central hole 34 and the installation hole 37 are coaxially distributed, finally, the...
Embodiment 3
[0029] Embodiment 3: As shown in the figure, other structures are the same as Embodiment 2, the difference is that: the partition 5 is provided with a vent 51, and the partition 5 is also provided with an opening and closing mechanism for opening or closing the vent 51 In the mechanism 4 , a cooling vent 17 is opened on the side wall of the chassis 1 , and the cooling vent 17 communicates with the upper space 13 . In this structure, the setting of the heat dissipation port 17 facilitates heat dissipation in the upper space 13, and the air vent 51 is closed or opened under the control of the opening and closing mechanism 4. In general, the air vent 51 is in a closed state. When the temperature of the upper space 13 is higher When it is high, the opening and closing mechanism 4 works to open the vent 51, so that the lower air in the lower space 14 enters the upper space 13, accelerates the air flow in the upper space 13, and is convenient for heat dissipation.
[0030] The openi...
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