Abstract:
A driving unit successively selects one drive line from among a plurality of drive lines of a touch inputting device and applies a driving voltage to the selected drive line. A voltage detection unit successively selects one sensing line from among a plurality of sensing lines and detects an output voltage of the selected sensing line. An arithmetic operation unit determines a resistance value of a pressure-sensitive resistive element provided at the location at which the selected drive line and the selected sensing line cross with each other based on the driving voltage and the output voltage. The driving unit applies 0 volts or a bias voltage equal to or lower than the driving voltage to the other drive lines than the selected drive line.
Abstract:
A video acquirer acquires video obtained by imaging, by an imaging element that moves in association with motion of a head of a user, an area including reflected light of each of light beams irradiated to either one eyeball of the user from two light sources of a first light source that moves in association with the motion of the head of the user and a second light source whose relative position is invariable with respect to a video presenter as an observation target for the user. A head movement estimator estimates the motion of the head of the user based on a relative position of the reflected light of the second light source with respect to the reflected light of the first light source in the video acquired by the video acquirer.
Abstract:
An information processing device includes: a metadata retaining section retaining metadata of a file formed by a plurality of data blocks; a correspondence file retaining section retaining a correspondence file associating information identifying a recording location of a data block with information identifying the metadata retaining section retaining the metadata of the data block; a change processing section changing the recording location of the data block; and an update processing section updating the metadata retained by the metadata retaining section. The update processing section refers to the correspondence file, identifies the metadata retaining section retaining the metadata of the data block whose recording location is changed by the change processing section, and updates the metadata.
Abstract:
An information processing device processes game data including a startup file and a program file, the game data being formed by adding, to an image file of game data including a plurality of files that are each assigned one or a plurality of blocks and including metadata of each file, metadata including a signature attached to each of the plurality of blocks constituting the image file. The information processing device includes: a first mount processing section mounting the image file to which the metadata including the signature is added at a first mount point, and recognizing the image file; and a second mount processing section mounting the recognized image file at a second mount point, and recognizing the plurality of files included in the image file.
Abstract:
A capture execution/non-execution control device includes a display controller that carries out control to cause an image generated through execution of a program to be displayed on a display unit, and a capture level value acquirer that acquires a capture level value indicating the degree of permission or prohibition of capture of an image displayed on the display unit. The capture execution/non-execution control device further includes a reference value acquirer that acquires a reference value serving as a criterion as to whether or not capture of an image is permitted, and a capture execution/non-execution controller that controls whether or not to execute capture of the image displayed on the display unit according to a result of comparison between the capture level value acquired and the reference value acquired.
Abstract:
The disclosure provides methods and systems for warning a user of a head mounted display during gameplay of a video game. A game is executed causing interactive scenes of the game to be rendered on a display portion of a head mounted display (HMD) worn by a user. A change in position of the HMD worn by the user, while the user is interacting with the game, is detected. The change in position is evaluated, the evaluation causing a signal to be generated when the change exceeds a pre-defined threshold value. When the signal is generated, content is sent to interrupt the interactive scenes being rendered on the display portion of the HMD. The data sent provides descriptive context for the signal.
Abstract:
Electronic apparatus includes a housing configured to have an inner layer portion forming an inner surface and an outer layer portion forming an outer surface. The inner layer portion and the outer layer portion are formed by two-color molding. The electronic apparatus includes one of a region in which the inner layer portion is not formed and a region in which the inner layer portion is thin. The one region is set in the inner surface of the housing. The electronic apparatus further includes a component configured to be housed in the housing and is disposed in the one region.
Abstract:
An image acquisition unit acquires an image captured by a first imaging device provided in a HMD for presenting an image observed when a three-dimensional image in a virtual three-dimensional space is projected onto a real-world setting, the first imaging device being configured to visualize an area including a field of view of a user wearing the HMD. A marker detection unit detects a marker included in the image captured by the first imaging device and acquired by the image acquisition unit. The image acquisition unit acquires an image captured by a second imaging device having an angle of view that at least partially overlaps an angle of view of the first imaging device. If the marker is not captured in the image captured by the first imaging device, the marker detection unit detects the marker in an image captured by the second imaging device.
Abstract:
Provided is an optical disk drive including a carrying roller for carrying an optical disk in a first direction. The carrying roller includes a first roller portion and a second roller portion which are aligned in a second direction along the optical disk and orthogonal to the first direction and which are so disposed as to make contact with a surface on one side of the optical disk. An axis of the first roller portion is so inclined that a distance between the axis of the first roller portion and the one-side surface of the optical disk gradually increases toward a central portion of the carrying roller. An axis of the second roller portion is so inclined that a distance between the axis of the second roller portion and the one-side surface of the optical disk gradually increases toward the central portion.