Abstract:
Remote control device comprising a generator (PVU) intended to convert light or mechanical energy to electrical energy, a wireless transmitter (RF) able to send messages to a remote receiver, a first electrical energy storage element (C1) connected to the energy generator (PVU) and intended to be charged with the electrical energy generated by the generator (PVU) in order to supply power to the wireless transmitter (RF) in a first operating mode of the control device, and a second electrical energy storage element (C2) intended to supply power to the wireless transmitter (RF) in a second operating mode. The second electrical energy storage element is connected to the generator (PVU) via parallel connection of a first resistor (R1) and a first diode (D1), the cathode of the first diode being connected to the positive terminal of the generator (PVU).
Abstract:
An operating control method of a motorized driving device of a home automation installation comprises at least one step for entering a configuration mode of the device, a step for pairing a control point with an electronic control unit of the device, a step for activating at least one selection element of the control point during a predetermined time period beginning after the pairing step and a step for entering a second standby state of a control order receiving module of the electronic control unit. The second standby state of the control order receiving module has a wake-up frequency of the control order receiving module lower than the wake-up frequency of the control order receiving module in a first standby state.
Abstract:
The present disclosure is a method for controlling an information apparatus having a third display and being used in an information management system, the method causing a computer of the information apparatus to: display a display screen representing at least one floor plan of a building on the third display; display device icons representing target devices including a first target device and a second target device on the display screen, the device icons being movable by dragging the device icons; and when it is sensed that a device icon representing the second target device is dropped on a device icon representing the first target device, output to the information management system a first control command for displaying a confirmation screen on a first display of the first target device, the confirmation screen being for confirmation of a state of the second target device.
Abstract:
사용자에 착용되는 적어도 하나의 센서, 무선 통신 장치 및 코디네이터(coordinator)를 포함하는 통신 시스템의 제어 방법이 개시된다. 통신 시스템의 제어 방법은 코디네이터에서, 무선 통신 장치로부터 적어도 하나의 센서 및 코디네이터와의 프록시(proxy)를 위한 프록시 권한을 요청을 받아, 프록시 권한을 무선 통신 장치에 부여하는 단계, 무선 통신 장치에서, 사용자에 대응하는 사용자 식별자를 생성하는 단계, 무선 통신 장치에서, 사용자가 착용하는 적어도 하나의 센서를 탐색하여, 적어도 하나의 탐색된 센서와 페어링을 형성하는 단계, 무선 통신 장치에서, 적어도 하나의 탐색된 센서에 코디네이터 및 센서와의 연계를 위한 연계 정보를 요청하여, 연계 정보를 수신하는 단계, 무선 통신 장치에서, 코디네이터에 적어도 하나의 탐색된 센서 및 코디네이터 사이의 연계를 위한 연계 프록시를 요청하며, 요청에 대응하여 연계 프록시를 수신하는 단계 및 코디네이터에서, 적어도 하나의 탐색된 센서와 연계를 형성하여 데이터를 요청하며, 데이터 요청에 대응하여 데이터를 수신하는 단계를 포함할 수 있다.
Abstract:
Disclosed is a near-infrared meter reading device, configured to communicatively couple with an infrared communicator in an electric meter, comprising a main body, on one end of which being disposed with a data port. Also disclosed is an electric meter connected between a power grid line and a utility user's load, comprising said near-infrared reading device and a meter housing fitted with the near-infrared reading device, in which is disposed with a processor and an infrared communicator electrically connected thereto; in the meter housing a plurality of iron cylinders are set, and in the near-infrared reading device a plurality of magnetic cylinders are set accordingly, the orientations of said iron cylinders and magnetic cylinders are aligned with each other and may be attracted together. The present invention employs a central symmetry design without request of aligning the infrared emitter with a receiver of the meter for near-infrared communication, thus availing of communication in any emitting angle. The circuitry of the invention can compatibly meets any requirement of near-infrared communication in both IEC standard and ANSI standard.
Abstract:
An electric device remote controller that uses little energy and solar power as source of energy. The present invention includes solar cells adopted to convert a solar energy into the electric energy, and the condenser which is connected to said solar cells to reserve converted solar energy and supply electric energy whenever needed. The present invention also includes a controller provided to controls the electric device, a data line supplies the specific data the controller, a plurality of buttons including a first terminal connected to the condenser of said electric supply system, a second terminal connected to the controller, a third terminal designated as specific datum by said data line, a fourth terminal transmit specific data transmitted from said data line, a first switching line connecting first and second terminal and a second switching line connecting third and fourth terminal. Whenever one of said remote controller buttons is pressed, then the first switching line supplies electric energy to the controller by connecting the first terminal and the second terminal and simultaneously the second switching line transmits specific data to the data line by connecting said third terminal and the fourth terminal and when the buttons are not pressed then the first switching line disconnects the first terminal and the second terminal and the second switching line disconnects the third terminal and the fourth terminal.
Abstract:
A communication system 2 includes a terminal device 60, a server 30, and a PC 10. A controller 18 of the PC 10 acquires target data via the server 30 from the terminal device 60. The controller 18 of the PC 10 creates terminal-related display data including information related to a communication of the target data, and to make a display unit 14 of the PC 10 display a terminal-related screen represented by the terminal-related display data. The controller 18 of the PC 10 acquires SIM-related information related to a SIM card from the server 30. The SIM-related information includes information necessary to bill a SIM card user. The controller 18 of the PC 10 creates SIM-related display data by using the SIM-related information, and make the display unit 14 of the PC 10 display a SIM-related screen represented by the SIM-related display data.
Abstract translation:通信系统2包括终端装置60,服务器30和PC 10.PC 10的控制器18经由服务器30从终端装置60获取目标数据.PC 10的控制器18创建与终端相关的 显示包括与目标数据的通信有关的信息的数据,并且使得PC 10的显示单元14显示由终端相关显示数据表示的终端相关屏幕。 PC 10的控制器18从服务器30获取与SIM卡有关的SIM相关信息.SIM相关信息包括为SIM卡用户开账单所需的信息。 PC 10的控制器18通过使用SIM相关信息来创建SIM相关显示数据,并且使得PC 10的显示单元14显示由SIM相关显示数据表示的SIM相关屏幕。
Abstract:
A communication system 2 includes a terminal device 60, a server 30, and a PC 10. A controller 18 of the PC 10 acquires target data via the server 30 from the terminal device 60. The controller 18 of the PC 10 creates terminal-related display data including information related to a communication of the target data, and to make a display unit 14 of the PC 10 display a terminal-related screen represented by the terminal-related display data. The controller 18 of the PC 10 acquires SIM-related information related to a SIM card from the server 30. The SIM-related information includes information necessary to bill a SIM card user. The controller 18 of the PC 10 creates SIM-related display data by using the SIM-related information, and make the display unit 14 of the PC 10 display a SIM-related screen represented by the SIM-related display data.