Abstract:
Exemplary systems and methods for monitoring a current state of a spatially extensive supply network having at least one control station that monitors and controls the supply network and a plurality of sensors that transmit measurement values relating to operating behavior to the at least one control station. Current measurement values are measured at positions on the supply network corresponding to each sensor. Each sensor analyzes measured signal variations and signal trends of the measured current values via an evaluating unit. The measurement values of each respective sensor are transmitted to the at least one control station in data packets at a defined time. At each respective sensor, when the analysis detects an abnormal measurement signal variation, a frequency of transmission of the respective sensor and each adjacent sensor is increased, the respective sensor transmitting the measurement values to the at least one control station or to adjacent sensors to which the respective sensor is connected to through a common supply line and which measure an identical or physically similar quantity.
Abstract:
A remote control system can comprise a first remote control having a front side, a backside, and a first battery configured to provide a first electrical power to the first remote control. The front side can comprise at least a first button configured to wirelessly control a first device. The backside can comprise a battery access opening configured to enable replacing the first battery. As well, the remote control system can include a second battery cover that can block the battery access opening. The second battery cover can include a second remote control having a second battery configured to provide a second electrical power to the second remote control. The second remote control can be configured to wirelessly control a second device.
Abstract:
A remote control system can comprise a first remote control having a front side, a backside, and a first battery configured to provide a first electrical power to the first remote control. The front side can comprise at least a first button configured to wirelessly control a first device. The backside can comprise a battery access opening configured to enable replacing the first battery. As well, the remote control system can include a second battery cover that can block the battery access opening. The second battery cover can include a second remote control having a second battery configured to provide a second electrical power to the second remote control. The second remote control can be configured to wirelessly control a second device.
Abstract:
Provided is an electronic device. The electronic device includes a communicator that wirelessly connects the electronic device to an external device, and a controller that controls the communicator and transmits a wake-up signal to the external device, in response to an input to turn on the power of the electric device, to instruct the external device in a standby state to initiate an audio output preparing operation. The standby state corresponds to a state in which the external device attempts to establish a connection.
Abstract:
One or more embodiments of providing a content driven interface are provided herein. A storage component may house one or more programming data portions. Respective programming data portions may be associated with programming data for one or more time intervals, program names, and corresponding source content provider information. A display component may render one or more program suggestions based on a current time and one or more of the programming data portions. Respective program suggestions may be rendered based such that corresponding source content provider information is hidden. A management component may determine the current time and receive a user selection of a program suggestion of the one or more program suggestions. A communication component may transmit one or more signals based on the user selection of the program suggestion and corresponding source content provider information.
Abstract:
A universal remote control device and methods for controlling multiple devices with a universal remote control device are provided. The method includes receiving a boot completed notification from a control unit of the universal remote control device and displaying a troubleshooting icon on a display of the universal remote control device. Upon receiving a user input selecting the troubleshooting icon, the method includes generating a power user interface menu enabling discrete control of power for each device controlled by the universal remote control device. The power user interface menu is displayed on a least a portion of the display of the universal remote control device.
Abstract:
A method and system for applying over the air updates to a universal remote control device. The method and system include determining a group associated with the universal remote control based on a remote profile stored on at least one of: a memory of the universal remote control device, and a universal remote database hosted on an external server infrastructure. The method and system also include determining an over the air update that is applicable to the universal remote control device based on the group that is associated with the universal remote control device. The method and system additionally include determining a power level of a battery of the universal remote control device. The method and system further include applying the over the air update that is applicable to the universal remote control device based on the power level of the battery of the universal remote control device.
Abstract:
Presented is a control system for augmenting a portable touch screen device having integral processing capability. The control system includes an enclosure configured for encasing the portable touch screen device, an internal docking connector configured for communicatively mating with the portable touch screen device, and hard buttons. At least one of the hard buttons is functionally configured for use with an application program running on the portable touch screen device. The control system includes further includes a processor configured for converting button actuations into a digital format, and a first facility for communicating the digital format to the portable touch screen device via the internal docking connector. The application program is configured such that, during operation, the application program communicates the status of the one hard button to at least one external device.
Abstract:
Presented is a control system for augmenting a portable touch screen device having integral processing capability. The control system includes an enclosure configured for encasing the portable touch screen device, an internal docking connector configured for communicatively mating with the portable touch screen device, and hard buttons. At least one of the hard buttons is functionally configured for use with an application program running on the portable touch screen device. The control system includes further includes a processor configured for converting button actuations into a digital format, and a first facility for communicating the digital format to the portable touch screen device via the internal docking connector. The application program is configured such that, during operation, the application program communicates the status of the one hard button to at least one external device.
Abstract:
An electronic apparatus and a control method are provided that are capable of reducing power consumption. The electronic apparatus having a normal mode in which first electric power is consumed and a power-saving mode in which second electric power lower than the first electric power is consumed includes a first sensor and a second sensor whose power consumption is lower than that of the first sensor. In the power-saving mode, supply of power to the first sensor is restricted, the second sensor is set to the power-saving mode, a trigger for restoring the power-saving mode to the normal mode is detected by using the second sensor set to the power-saving mode, and the power-saving mode is restored to the normal mode based on the detected trigger.