Abstract:
A method of controlling a remote controlled system includes the steps: A. measuring a specific physical quantity with a detector; B. transmitting a signal to the relay apparatus; C. receiving the signal by the relay apparatus, and transmitting the detector ID code corresponding to the detector at the near end and the home appliance ID codes corresponding to the home appliances at the near end to the electronic device; D. obtaining an interactive link information by matching the corresponding relations in the database based on the received detector ID code and the received home appliance ID codes; E. sending the interactive link information to the relay apparatus; and F. transmitting a control command to the relevant home appliances base on the received interactive link information, whereby the relevant home appliances are controlled to perform a corresponding operation.
Abstract:
A circuit structure of a gas valve controls a first driver and a second driver, which respectively drive a main valve and a safety valve. The circuit structure includes a power switching circuit, a control circuit, a protection circuit, an abnormal voltage detection circuit, a first valve switching circuit, a second valve switching circuit, and a processor which is electrically connected to the aforementioned circuits. The processor receives abnormal signals outputted by the abnormal voltage detection circuit, and outputs signals to control the power switching circuit, the control circuit, the protection circuit, the first valve switching circuit, and the second valve switching circuit to control the first driver and the second driver. The main valve and the safety valve can be opened or closed in this way.
Abstract:
A method of setting a user interface of a remote control system includes the following steps: A. set a first region on a screen of an electronic device; B. arrange at least a device icon at a predetermined position of the first region, wherein the device icon represents one of electric appliances to be controlled; and C. select the device icon in the first region to generate a control window for a user to operate to control the corresponding electric appliance. Using space compatibility and virtual reality, the user may be easy to recognize the electric appliance for control.
Abstract:
A Wi-Fi/radio frequency (RF) converting device includes a Wi-Fi transceiver, a multiplexing converting module, and a RF transceiver. The Wi-Fi transceiver receives a Wi-Fi control signal from a control signal generator. The multiplexing converting module receives the Wi-Fi control signal from the Wi-Fi transceiver and converts the Wi-Fi control signal into a RF control signal. The RF transceiver receives the RF control signal from the multiplexing converting module and sends the RF control signal to a plurality of electric elements. An RF extension device may be provided to share the signal transmission between the electric elements and the Wi-Fi/RF converting device
Abstract:
An adjustable gas electromagnetic valve includes a valve body having an inlet, an outlet, and two gas passage, which are a first gas passageway and a second gas passageway between the inlet and the outlet. In the first gas passageway, a gate member and an actuator are provided. The actuator is activated by electrical signals to move the gate member so as to open or close the first gas passageway. As a result, a gas flow provided by the gas electromagnetic valve is adjustable by controlling the actuator.
Abstract:
A gas fireplace includes a gas valve, a combustor, and a gas controlling device between the gas valve and the combustor. The gas controlling device has a body, a solenoid valve, and a main controller. The body has a first port, a second port, a first passage, and a second passage, wherein the first passage and the second passage respectively connect the first port to the second port. The solenoid valve is provided in the first passage to be controlled to open and close the first passage. The main controller alternately turns the solenoid valve on and off so as to repeatedly open and close the first passage. Therefore, the gas controlling device provides a variable gas flow to the combustor to reduce the total gas consumption and the user will not be aware of the change of the flames.
Abstract:
A combustion assembly includes a gas adjusting device, a mixing pipe, and a burner. The gas adjusting device includes a gas adjusting valve, a nozzle, a connecting base, and an ignition unit. The gas adjusting valve includes a valve body for being detachably connected to a gas tank, an adjusting member located in a gas passage of the valve body, and a knob connected to the adjusting member and for adjusting a gas flow. The nozzle is disposed on the valve body. The connecting base is connected between the valve body and the burner and has a mixing chamber and an inlet. The nozzle extends into the mixing chamber. The inlet is located on a side of the nozzle. The ignition unit is disposed in the connecting base. An ignition electrode of the ignition unit extends to a position next to the burner.
Abstract:
A gas oven includes a casing, an inner oven body, a blower, a branched member, a gas supply pipe, and a combustion device. The casing has a feed opening and the inner oven body is disposed in the casing. An airflow passage is located around at least a part of the periphery of the inner oven body between the inner oven body and the casing. The blower has a blower outlet communicating with an inlet of the airflow passage. The branched member includes a branched passage communicating with the blower outlet. The gas supply pipe has a gas outlet. The combustion device is disposed in the inner oven body and communicates with the branched outlet and the gas outlet. The amount of the combustion air can be increased and the temperature of the casing can be reduced.
Abstract:
A kiln includes a stage, a stove, a gas supply assembly, and a combustion device wherein, the stage includes a stage body and a carrier member. The stage body has a first chamber, while the carrier member is detachably disposed at the stage body. The stove is joined to the stage body and has an entry and a second chamber. The gas supply assembly is disposed at the stage body, and part of the gas supply assembly is located in the first chamber. The combustion device is located in the second chamber. The carrier member can be detached from the stage body and be moved out of the stove from the entry so that the first chamber communicates with the second chamber. In this way, the working space inside the kiln can be increased, which is convenient for users to repair and maintain the gas supply assembly or the combustion device.
Abstract:
A load control system includes a power switching device and a control device, wherein the power switching device includes a first power input port, a second power input port and a power output port. The first power input port and the second power input port are electrically connected to a first battery and a second battery respectively, and the power output port is electrically connected to the control device. The power output port receives the power which is input to the first power input port or the second power input port so as to supply the power to the control device. The control device is adapted to control a load to switch and to control the power switching device to utilize the power from the first power input port and the second power input port alternatively, thereby extending the respective usage time of the first battery and the second battery.