Heating seat ring voltage self-adaption method, electronic equipment and storage medium
A self-adapting, seat-ring technology, used in sanitary equipment, applications, electrical components, etc., to achieve the effect of improving comfort, reducing energy consumption, and shortening heating time
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Embodiment 1
[0045] Such as figure 1 Shown is a working flow chart of a heating seat voltage self-adaptive method of the present invention, including:
[0046] Step S101, determining the actual voltage acting on the seat heater;
[0047] Step S102, according to the actual voltage, determine the heating power coefficient corresponding to the actual voltage;
[0048] Step S103, using the heating power coefficient to control the heating of the seat heater.
[0049] Specifically, the present invention can be applied to a seat heater controller of an intelligent toilet. The present invention uses the same seat heater, preferably a resistance heater, for different voltage countries. The existing seat heaters are designed with the same power for different voltages. However, the seat heater used in the present invention only uses one specification of the seat heater, so its power will be different for different voltages. For example, the specification of the seat heater is set to 100V / 40W. T...
Embodiment 2
[0055] Such as figure 2 Shown is a working flow chart of a heating seat voltage adaptive method in an embodiment of the present invention, including:
[0056] Step S201, acquiring a measurement duty cycle used for actual voltage measurement.
[0057] In one of the embodiments, the acquisition of the measurement duty cycle used for the actual voltage measurement specifically includes:
[0058] In response to the seat heating request, determining that the target temperature of the seat heating request is the target lap temperature of the heated seat;
[0059] Obtain the current temperature of the heating seat as the initial lap temperature;
[0060] Based on the difference between the target lap temperature and the initial lap temperature, the measurement duty cycle used for the actual voltage measurement is determined.
[0061] Step S202, using the measured duty ratio to measure heating.
[0062]Step S203, stop measuring the heating after measuring the preset measurement t...
Embodiment 3
[0096] Such as Figure 5 Shown is a schematic diagram of the hardware structure of an electronic device of the present invention, including:
[0097] at least one processor 501; and,
[0098] A memory 502 communicatively connected to at least one processor 501; wherein,
[0099] The memory 502 stores instructions that can be executed by at least one of the processors, and the instructions are executed by at least one of the processors, so that at least one of the processors can perform the heating seat voltage automatic heating as described above. adaptation method.
[0100] Figure 5 A processor 501 is taken as an example.
[0101] The electronic device may further include: an input device 503 and a display device 504 .
[0102] The processor 501, the memory 502, the input device 503, and the display device 504 may be connected through a bus or in other ways. In the figure, connection through a bus is taken as an example.
[0103] The memory 502, as a non-volatile compu...
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