Abstract:
A remote control device includes: a vibration power generator configured to convert externally applied vibrations to electric power; a storage section charged with the electric power obtained by the vibration power generator; a switch provided between the vibration power generator and the storage section; and a control circuit configured to output a vibration instruction signal and turn the switch on when the remaining power of the storage section becomes smaller than a predetermined amount. The electronic apparatus instructs the user to vibrate the remote control device in response to the vibration instruction signal.
Abstract:
A facility comprising systems, methods, and techniques for collecting data indicative of energy consumption and/or energy production by energy systems and devices and providing the data to interested users and devices in real-time is described. The facility may comprise an energy gateway device coupled to one or more monitored devices, one or more energy data extraction servers, and one or more client computers. The energy gateway devices and energy data extraction servers are coupled to a network and are configured to collect energy consumption and/or energy production data from one or more devices and provide an indication of the collected data in real-time or near real-time. The facility may collect current energy consumption or production rates, predicted energy consumption or production levels over a future period of time, and/or amounts of energy that has been consumed or produced by the device over a previous period of time.
Abstract:
A remote control device includes: a vibration power generator configured to convert externally applied vibrations to electric power; a storage section charged with the electric power obtained by the vibration power generator; a switch provided between the vibration power generator and the storage section; and a control circuit configured to output a vibration instruction signal and turn the switch on when the remaining power of the storage section becomes smaller than a predetermined amount. The electronic apparatus instructs the user to vibrate the remote control device in response to the vibration instruction signal.
Abstract:
Dispositif de commande à distance comprenant un générateur (PVU) destiné à convertir une énergie lumineuse ou mécanique en énergie électrique, un émetteur sans fil (RF) pouvant envoyer des messages à un récepteur distant, un premier élément (C1) de stockage d'énergie électrique connecté au générateur d'énergie (PVU) et destiné à être chargé à partir de l'énergie électrique générée par le générateur (PVU), pour alimenter l'émetteur sans fil (RF) dans un premier mode de fonctionnement du dispositif de commande et un deuxième élément (C2) de stockage d'énergie électrique destiné à alimenter l'émetteur sans fil (RF) dans un deuxième mode de fonctionnement, le dispositif de commande étant caractérisé en ce que le deuxième élément de stockage d'énergie électrique est connecté au générateur (PVU) via un montage parallèle d'une première résistance (R1) et d'une première diode (D1), la cathode de la première diode étant reliée à la borne positive du générateur (PVU).
Abstract translation:通信系统2包括终端装置60,服务器30和PC 10。 PC 10的控制单元18经由服务器30从终端装置60获取目标数据。 PC 10的控制单元18生成包括与目标数据的通信有关的信息的终端相关显示数据,并且将由终端相关显示数据表示的终端相关屏幕显示在PC 10的显示单元14上。 PC 10的控制单元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卡的用户充电所需的信息。 PC 10的控制单元18使用SIM相关信息生成SIM相关显示数据,并且使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。 p>
Abstract:
PURPOSE: An apparatus for supplying a remote controller power is provided to increase a plurality of gear parts and a rotator of a generator at high speed, store a generated DC in an electric double layer condenser, and use the stored DC as a main power of the remote controller by simply rotate a handle of a remote controller installed in a ratchet gear. CONSTITUTION: A ratchet gear(135) includes a gear body composed as a rim having a plurality of cogs, a rotation member inserted into an internal surface of the gear body to be capable of being rotated with the gear body at a same axis, and a rotation control member installed between the gear body and the rotation member. The ratchet gear(135) rotates the gear body in only one direction in a rotation control groove by the rotation of the rotation member. A positive(+) terminal of a generator(137) connects to an anode terminal of a diode, and a positive(+) remote controller power supply terminal connects to a cathode terminal of the diode and a negative(-) terminal of the generator(137) connects to a negative(-) remote controller power supply terminal. An electric double layer condenser(133) connects to the positive(+) and negative(-) remote power supply terminals in parallel, and is charged by the generation of the generator(137). A Zener diode connects to the diode in an inverse direction and connects to the positive(+) and negative(-) remote power supply terminals in parallel. A rotatable dial handle is installed on an upper portion of the ratchet gear(135). The gear body of the ratchet gear(135) meshes with at least one gear part, and at least one gear part meshes with the rotator of the generator(137).
Abstract:
Disclosed are devices, systems, apparatus, methods, products, and other implementations, including a control system that includes a receiving structure to receive a plurality of modular devices, with one or more of the plurality of modular devices being coupled into respective locations on the receiving structure and with each of the one or more of the plurality of modular devices configured to transmit a short-range communication in response to receiving a respective stimulus by the each of the one or more of the plurality of modular devices. The control system further includes a communication module to communicate with the one or more of the plurality of modular devices coupled to the receiving structure, and a controller configured to perform a respective operation in response to receiving a short-range message from a respective one of the one or more of the plurality of modular devices.
Abstract:
Embodiments include an implant and a method of operating the implant. The implant includes a receiver that receives first ultrasound signals emitted by an external transmitting unit of a further apparatus. The receiver includes a piezoelement, which is excited by the first ultrasound signals at a first resonance frequency (f1) and therefrom converts the mechanical energy transferred with the first ultrasound signals into electrical energy. In embodiments of the invention, the piezoelement is additionally excited at a second resonance frequency (f2), which differs from the first resonance frequency (f1), and at the second resonance frequency (f2) operates as a transmitter to transmit second ultrasound signals.
Abstract:
According to one embodiment, a remote control device for a toilet device includes an operation button and a power generator. The operation button is capable of a push operation and is configured to operate an equipment in response to the push operation. The power generator is configured to generate a power by being pressed in response to the push operation. A direction of the pressing is parallel to a wall surface on which the remote control device is placed.