摘要:
A method for automatically configuring an electronic toilet device includes detecting usage of the electronic toilet device throughout a first time period. The first time period is divided into a plurality of discrete time units. The method further includes recording a usage state for each of the plurality of time units in the first time period based on the detecting and using the recorded usage states to configure an operating schedule for the electronic toilet device for a next time period. The method further includes operating the electronic toilet device throughout the next time period according to the operating schedule while detecting and recording a usage state for each of the plurality of time units in the next time period and periodically configuring an operating schedule for each subsequent time period using the recorded usage states associated with a preceding time period.
摘要:
A heating seat ring voltage self-adaption method includes: determining a voltage acting on a seat ring heater of a heating seat ring; determining a heating power coefficient based on the voltage; and performing a heating control on the seat ring heater by using the heating power coefficient. An electronic device includes a seat ring heater and a processor communicably coupled to the seat ring heater. The processor configured to: determine a voltage acting on the seat ring heater; determine a heating power coefficient based on the voltage; and perform a heating control on the seat ring heater by using the heating power coefficient. A non-transitory storage medium configured to store computer instructions executed by the processor.
摘要:
A method for automatically configuring an electronic toilet device includes detecting usage of the electronic toilet device throughout a first time period. The first time period is divided into a plurality of discrete time units. The method further includes recording a usage state for each of the plurality of time units in the first time period based on the detecting and using the recorded usage states to configure an operating schedule for the electronic toilet device for a next time period. The method further includes operating the electronic toilet device throughout the next time period according to the operating schedule while detecting and recording a usage state for each of the plurality of time units in the next time period and periodically configuring an operating schedule for each subsequent time period using the recorded usage states associated with a preceding time period.
摘要:
A power supply system for a toilet includes a controller power supply circuit, including an input end electrically connected to an external power supply and an output end. The system includes an assembly driving power supply circuit, including an input end electrically connected to the external power supply and an output end. The power supply system also includes a controller circuit, including a power supply end electrically connected to the output end of the controller power supply circuit and an output end communicably connected to a control end of a switch control circuit of the assembly driving power supply circuit. The system also includes a driving component circuit, including a power supply end electrically connected to the output end of the assembly driving power supply circuit. An output power of the controller power supply circuit is lower than an output power of the assembly driving power supply circuit.
摘要:
The application discloses a power supply system for an smart toilet, which comprises: a controller power supply circuit, an assembly driving power supply circuit, a controller circuit and a driving component circuit, an input end of the controller power supply circuit is electrically connected with an external power supply, an input end of the assembly driving power supply circuit is electrically connected with the external power supply, an output end of the assembly driving power supply circuit is electrically connected with a power supply end of the driving component circuit, an output end of the controller power supply circuit is electrically connected with a power supply end of the controller circuit, an output end of the controller circuit is in communication connection with a control end of a switch control circuit of the assembly driving power supply circuit, and an output power of the controller power supply circuit is lower than that of the assembly driving power supply circuit. According to the application, when the smart toilet is not in use or is in a standby state, the output of the assembly driving power supply circuit is turned off, and only a controller power supply is retained to supply power, thus achieving an effect of energy consumption reduction and prolonging a service life of an assembly driving power supply.
摘要:
A power supply system for a toilet includes a controller power supply circuit, including an input end electrically connected to an external power supply and an output end. The system also includes an assembly driving power supply circuit, including an input end electrically connected to the external power supply and an output end. The power supply system also includes a controller circuit, including a power supply end electrically connected to the output end of the controller power supply circuit and an output end communicably connected to a control end of a switch control circuit of the assembly driving power supply circuit. The system also includes a driving component circuit, including a power supply end electrically connected to the output end of the assembly driving power supply circuit. An output power of the controller power supply circuit is lower than an output power of the assembly driving power supply circuit.
摘要:
The present disclosure relates to a silicon-controlled rectifier water-cooling heat dissipation device, including: a water-cooling cavity body; a silicon-controlled rectifier; and a heat dissipation plate. The heat dissipation plate includes: a first heat dissipation part configured to contact the water-cooling cavity body; and a second heat dissipation part connected to the first heat dissipation part and configured to contact the silicon-controlled rectifier. A preset included angle is formed between a plane where the first heat dissipation part is located and a plane where the second heat dissipation part is located. The heat of the silicon-controlled rectifier is transferred to the water-cooling cavity body through the heat dissipation plate. An occupied volume can be effectively reduced because the first heat dissipation part and the second heat dissipation part form the included angle. The cooling water takes away the heat by the flowability of the water to improve heat dissipation efficiency.
摘要:
A method for automatically configuring an electronic toilet device includes detecting usage of the electronic toilet device throughout a first time period. The first time period is divided into a plurality of discrete time units. The method further includes recording a usage state for each of the plurality of time units in the first time period based on the detecting and using the recorded usage states to configure an operating schedule for the electronic toilet device for a next time period. The method further includes operating the electronic toilet device throughout the next time period according to the operating schedule while detecting and recording a usage state for each of the plurality of time units in the next time period and periodically configuring an operating schedule for each subsequent time period using the recorded usage states associated with a preceding time period.
摘要:
A method for automatically configuring an electronic toilet device includes detecting usage of the electronic toilet device throughout a first time period. The first time period is divided into a plurality of discrete time units. The method further includes recording a usage state for each of the plurality of time units in the first time period based on the detecting and using the recorded usage states to configure an operating schedule for the electronic toilet device for a next time period. The method further includes operating the electronic toilet device throughout the next time period according to the operating schedule while detecting and recording a usage state for each of the plurality of time units in the next time period and periodically configuring an operating schedule for each subsequent time period using the recorded usage states associated with a preceding time period.