Abstract:
The disclosed subject matter provides a main device and at least one secondary device. The at least one secondary device and the main device may operate in cooperation with one another and other networked components to provide improved performance, such as improved speech and other signal recognition operations. Using the improved recognition results, a higher probability of generating the proper commands to a controllable device is provided.
Abstract:
To conserve power in a controlling device having a processing device in communication with an input element and a transmitting device the processing device is caused to be placed into a low-power state for at least a portion of a transmission inactive interval intermediate the transmission of at least a pair of command frames. The command frames are caused to be transmitted by the transmitting device in response to an activation of the input element sensed via the processing device to thereby command a functional operation of an intended target device.
Abstract:
A control unit (13) controls a remote operation function unit (12) to allow accepting a remote operation on a mobile phone device (1) from an external on the condition that a telephone call using a telephone function unit (11) included in the mobile phone device (1) is initiated with a predetermined counterparty that is permitted for the remote operation. Further, the control unit (13) stops accepting the remote operation by the remote operation function unit (12) on the condition that the telephone call with the predetermined counterparty is terminated. Thus, for example, it is possible to appropriately start and stop the remote operation on the mobile phone device without excessively troubling a user.
Abstract:
A transmission method is described between components belonging to a wireless network or system for home automation adapted to operate e.g. sliding or hinged gates, doors or garage doors, shutters, blinds, curtains or blinds in general. The components are network-configured and communicate with a wireless device. To improve quality communication a component according to prefixed criteria selects from a list of at least two predefined channels the communication channel to transmit on.
Abstract:
An acceleration sensor detects an acceleration. A timer measures elapsed time. A calculation means calculates jerk J of a remote controller on the basis of an acceleration detected by the acceleration sensor. A factor determination means determines whether a user is holding the remote controller in his/her hand on the basis of the change of the jerk J that is obtained from an index value calculated by the calculation means and an amount of time measured by the timer. A sleep control means turns on display of a display if the factor determination means determines that the user is holding the remote controller in his/her hand.
Abstract:
Systems, methods, apparatus and computer-readable medium for controlling battery-powered devices are provided. In some embodiments, a control device can include radio frequency (RF) circuitry and be configured to: receive one or more RF signals from a controller; and control one or more operations of a battery-powered device located proximate to the control device based, at least, on the one or more RF signals. The one or more operations can include de-activating an operation of the battery-powered device, activating an operation of the battery-powered device or the like. In various embodiments, a system can include a control device that controls a battery-powered device and a controller that is communicatively coupled to the Internet and configured to output information associated with the state of the battery-powered device to social media networking sites.
Abstract:
A wireless apparatus having a non-electric power-type wake-up function that operates a wake-up circuit waking-up a microprocessor for communications without power. There is provided a wireless apparatus having a wake-up function, including: a wake-up unit that has a rectifying circuit having elements configured as passive elements and rectifies preset first wireless signals to transmit wake-up signals; and a wireless communications unit that is woken-up by the wake-up signals from the wake-up unit to perform communications using preset second wireless signals, in a sleep mode.
Abstract:
The disclosed embodiments relate to an electronic device configured to receive infra red (IR) signals. The electronic device comprises a first IR decoder configured to decode the IR signals when the electronic device is operating in a first power mode, and a second IR decoder configured to decode the IR signals when the video unit is operating in a second power mode.
Abstract:
A communication system includes: a remote controller having an input unit inputting user operations and a communication unit performing bidirectional communication, transmitting a remote control code in accordance with the user operation with respect to the input unit from the communication unit; and a host device having a communication unit performing bidirectional communication and a host function unit executing processing corresponding to the remote control code received in the communication unit, wherein the host device transmits a status response from the communication unit in response to a status inquiry transmitted from the communication unit of the remote controller, the remote controller repeatedly executes a status check communication procedure including the transmission of the status inquiry and waiting for receiving the status response after transmitting the remote control code at given time intervals during which the communication unit is in a dormant state.
Abstract:
Disclosed herein is a remote control apparatus for communicating with an electric apparatus by radio communication, including: a plurality of operation keys; a transmission/reception section for transferring a signal to and from the electric apparatus by the radio communication; and a control section having at least a power control function for controlling the power of the remote control apparatus; the control section controlling the transmission/reception section to a normal power state until a predetermined period of time elapses after a signal is inputted thereto by an input of any of the operation keys to enable transfer of a signal from the electric apparatus by the transmission/reception section, the control section controlling the transmission/reception section to a low power consumption state after the predetermined period of time elapses.