Cold and hot temperature control cup
A hot and cold technology, applied in the field of hot and cold temperature control cups, can solve the problems of unable to maintain a constant temperature, no cooling function, long cooling time, etc., to avoid heat loss, ensure efficiency, and achieve the effect of rapid transfer
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Embodiment 1
[0037] The hot and cold temperature-controlled cup in Embodiment 1 or Embodiment 2 can communicate with external electronic equipment through the electronic control device to realize the function of remote monitoring and control. There are many communication methods, such as Bluetooth, WIFI, GPRS, etc. Wireless transmission method. The external electronic equipment may be convenient mobile electronic equipment such as a mobile phone, an IPAD, and a bracelet. In addition, a microphone and a speaker can be added to the electronic control device to realize functions similar to Bluetooth speakers, such as: prompting the current water temperature, regularly reminding the user to drink water, scheduling, etc.
[0038] Further, a gravity sensor can be added, which can monitor the remaining water capacity in the cup, obtain the amount of drinking water in each time period, and remind the user how much water to drink next time and the time interval.
[0039] An acceleration sensor or ...
Embodiment 2
[0043] In the second embodiment, when cooling, the first temperature surface 22 of the semiconductor refrigerator 6 is the cooling surface, and the second temperature surface 23 is the heating surface, and the heat of the water in the inner container 1 is directly transferred to the first temperature surface 22 until the inner container The temperature of the water in 1 reaches the preset value, and the heat of the second temperature surface 23 is transferred to the radiator 7 through the third heat conductor 28 and the second heat conductor 30, and the heat insulating sheet 31 thermally isolates the inner tank 1 from the radiator 7 To prevent the heat from the radiator 7 from returning to the water, the turbofan 10 is driven by the second motor to dissipate the heat from the radiator 7 to the surroundings and through the mesh 13 . During heating, the first temperature surface 22 of the semiconductor refrigerator 6 is a heating surface, and the second temperature surface 23 is ...
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