Abstract:
A display device and a method for controlling same are provided which are capable of suppressing power consumption of an electronic apparatus while supplying a user with various types of information in various display formats. The display device has a first display block including a processor with relatively high processing power and a display section with high display performance and a second display block including a processor with relatively low processing power and a display section with low display performance. The processors mutually collaborate and are controlled to properly use the first display block and the second display block in accordance with an operation mode.
Abstract:
An electronic device includes a memory; a first processor; a second processor for which power consumption is lower than power consumption of the first processor; a communicator that communicates with an external device; and a switch that switches a connection destination of the communicator to the first processor or the second processor. The second processor is configured to, in a case in which a condition for transitioning to a power suppression state that is an operating state in which power consumption is suppressed is satisfied, connect the communicator by the switch. The first processor is configured to, in a case in which a condition for transitioning to a normal state that is a normal operating state is satisfied, connect the communicator by the switch.
Abstract:
An electronic device includes a first display; a second display for which power consumption is lower than that of the first display; a first communicator; a second communicator for which power consumption is lower than that of the first communicator; a memory; a first processor; a second processor for which power consumption is lower than that of the first processor; and an operation acquirer to, when an operation from a user is acquired, send a wake-up signal that causes the first processor to recover from a sleep state in which power consumption is suppressed to a normal state. The first processor is configured to, when a condition for transitioning to a power suppression state is satisfied, send a power suppression notification to the second processor, stop displaying by the first display and communicating by the first communicator, and transition to the sleep state, and to, when the wake-up signal is received from the second processor or the operation acquirer, recover to the normal state from the sleep state, and start displaying by the first display and communicating by the first communicator. The second processor is configured to, when the second processor receives the power suppression notification from the first processor, start displaying by the second display and communicating by the second communicator, and to, when a condition for transitioning to the normal state is satisfied, send the wake-up signal to the first processor, and stop the displaying by the second display and the communicating by the second communicator.
Abstract:
An information processing apparatus includes a first processor, a second processor and a positioning processor. The second processor consumes a reduced amount of power compared to the first processor during an operation. The positioning processor receives radio waves from positioning satellites and converts the radio waves into positioning data. The second processor controls the positioning processor. The second processor stores the positioning data received from the positioning processor. The second processor transfers the stored positioning data to the first processor at a timing determined in accordance with an operating condition of the first processor.
Abstract:
An information processing apparatus includes: a communication unit that performs wireless communication with an external apparatus; a first control unit that switches between a normal state and a low electric power consumption state that suppresses electric power consumption to less than the normal state; and a second control unit that operates at lower electric power consumption than the first control unit, in which the information processing apparatus controls a connection state of the communication unit with the first control unit and the second control unit, based on a state of the information processing apparatus.
Abstract:
A display device includes a display, a touch panel and a controller. The display includes a plurality of display panels laminated on one another. The touch panel is provided on a screen of the display and accepts touch operation. The controller determines with respect to which display panel among the plurality of display panels the touch operation is carried out, and carries out a process corresponding to operation content of the touch operation on the determined display panel.
Abstract:
There is provided a mobile device including: a first communication unit configured to perform contactless communication; a second communication unit configured to perform wireless communication with an external device; a designation control unit configured to make a user designate an own device or the external device as an entity using specific information that is received from outside via contactless communication by the first communication unit; a first specific process unit configured to execute a specific process to use the specific information when the user designates the own device as the entity using the specific information; and a transmitting control unit configured to make the second communication unit transmit the specific information received by the first communication unit to the external device, when the user designates the external device as the entity using the specific information.
Abstract:
An information notification apparatus includes a schedule storage unit which stores schedule data, a special schedule determining unit which determines special schedule data in the schedule data stored in the schedule storage unit, and a special schedule notification unit which notifies a communication terminal of the special schedule data determined by the special schedule determining unit.
Abstract:
An information processing device includes a microphone that acquires a speech signal, and at least one processor. In a case in which the processor determines a wake word is included in first recognition data derived from the speech signal, when the processor determines that control information, that is information related to a control processing, is included in second recognition data derived from the speech signal after the wake word, the processor executes a first control processing corresponding to the control information. When the processor determines that the control information is included in third recognition data derived from the speech signal acquired by the microphone during a first period after a predetermined condition related to an event that occurs after the wake word is satisfied or during execution of the first control processing, the processor executes a second control processing corresponding to the control information included in the third recognition data.
Abstract:
An electronic device includes a biological information acquirer that acquires biological information of a target; an error factor detector that detects a factor that causes an error in the biological information; a display; and at least one processor. The error factor detector includes a motion detection sensor that detects a direction of motion of the electronic device, and the processor is that determines whether the factor is detected, based on the direction of the motion of the electronic device; and to cause, when the processor determines that the factor is detected, the display not to display the biological information acquired by the biological information acquirer, or to cause the biological information acquirer to stop acquisition of the biological information, in a period determined based on a timing when the factor is detected.