Abstract: A smart watch includes a main CPU, a sub CPU, a first display unit, and a second display unit. While the main CPU and the sub CPU cooperate with each other and perform a display operation including a time display, time display processing is performed to at least either of the first display unit or the second display unit according to an operation state.
Abstract: A map display device includes a display and a processor. The display displays a predetermined map information group including first map information in a first display mode correlated to a first area and second map information in a second display mode correlated to a second area. The processor conducts the functions of acquiring current position information. When a current position indicated by the current position information is included in the first area, the processor causes the display to perform a display of the first map information in the first display mode correlated to the first area without guiding a user to a destination. When the current position is included in the second area, the processor causes the display to perform a display of the second map information in the second display mode correlated to the second area without guiding the user to the destination.
Abstract: A work support system of an embodiment of the present invention includes a task information display control unit to display a list display screen to display a list of a plurality of task indices including contents of a task to be processed using an application, a first icon for causing transition to a head screen or initial screen of the application, and a second icon for causing transition to an operation screen of the application corresponding to the contents of the task and a screen control unit to cause transition from the list display screen of the task indices to the head screen or initial screen of the application upon selection of the first icon and to cause transition from the list display screen of the task indices to the operation screen of the application corresponding to the contents of the task upon selection of the second icon.
Abstract: An information processing device acquires acceleration generated by movement of a user, and estimates that the movement of the user is walking or running based on this acquired acceleration. In addition, traveling direction estimation methods for estimating the traveling direction of the user are switched between, based on the estimation results for the movement of the user, and the traveling direction of the user is estimated by way of this selected traveling direction estimation method.
Abstract: A wireless communication device includes: a wireless communication module configured to receive a plurality of notification signals that are successively transmitted from another wireless communication device; and a processor that is connected to the wireless communication module, the processor calculating a clock error between a clock in the wireless communication device and a clock in the other wireless communication device based on one or more of the notification signals that are received, and determining a timing at which to make the wireless communication module ready to receive a next notification signal from the other wireless communication device in accordance with the calculated clock error and a time interval at which the next notification signal will be transmitted from the other wireless communication device, the time interval being a predetermined fixed time interval or contained in the notification signal that has been received immediately prior to the next notification signal.
Abstract: A projection apparatus includes a projection unit configured to display an image based on an input signal by a display element, to form an optical image from light provided from a light source passed or reflected by the display element, and to project the formed optical image on a projection target, a photographing unit configured to photograph a region including an image range which is projected by the projection unit, an image recognition unit configured to recognize a person from the image obtained by the photographing at the photographing unit, and a projection control unit configured to change and set an aspect of the image projected by the projection unit based on a result of the recognition at the image recognition unit.
Abstract: An imaging apparatus for tracking a subject is provided. The An imaging apparatus has an imaging unit which images a subject to obtain an image, an area detecting unit which detects in the image obtained by the imaging unit a light changing area, in which light changes in a time-series manner, a position detecting unit which detects a position of the light changing area detected by the area detecting unit in the image obtained by the imaging unit, a local area searching unit which searches for a local area within a prescribed region defined on the basis of the position of the light changing area detected by the position detecting unit, wherein the local area shows a large feature value in an image processing, and a tracking unit which tracks movement of the local area found by the local area searching unit.
Abstract: An image processing device includes an acquirer which acquires a face image and a controller. The controller generates an image depicted by at least one of multiple kinds of parameter making up a color space on a basis of the face image acquired by the acquirer, detects a particular image region in the generated image by setting multiple sizes, and sets the detected image region as a region on which a designated processing is to be performed.
Abstract: According to one embodiment, there is provided an input apparatus comprising a key that is displaceable along a direction; a first detecting circuit that comprises an electrostatic capacitance sensor that detects a variation of an electrostatic capacitance caused by a contact or a proximity of a pressing body with the key; and a second detecting circuit that comprises a first electrode, the second detecting circuit detecting an electric connection of the first electrode to a second electrode that is displaced along the direction as the key is displaced, wherein the input apparatus switches a detecting status thereof exclusively between a first detecting status and a second detecting status to each other in accordance with a displacement variation of the key.
Abstract: In the case where a phenomenon called brightness saturation occurs due to high brightness of light output from a transmission apparatus and high lightness in a portion of a transmitter (light source) within a frame obtained by imaging in a reception apparatus, a decoder in a reception apparatus performs first image processing of shifting the focus by moving a lens in an imager or a filtering process (gradation filtering process) of an image for replacing the color of a brightness saturation area with the color surrounding the brightness saturation area, before determination of a change area, determination of the color of the change area, and decoding of bit string data.
Abstract: A processor of a satellite radio wave receiving device processes radio waves received by a receiver to identify a bit value in each of divided unit time segments that are obtained by dividing a time period of one bit into a plurality of unit time segments of equal duration; creates a bit array having the identified bit values in respective divided unit time segments by sequentially arranging the identified bit values in an order of receipt, the one or more processors creating said bit array in a plurality by successively shifting a time at which the bit array starts by one unit time segment; and performs a bit edge detection operation by detecting a head timing of the bit data at which a bit value changes in the received radio waves based on said plurality of bit value arrays.
Abstract: An imaging apparatus 1 includes an image acquisition unit 51 and an image processing unit 53. The image acquisition unit 51 acquires a face image. The image processing unit 53 acquires a face image which has been acquired by the acquisition unit 51 and has been adjusted by at least one type of adjustment and synthesizes a plurality of face images including the adjusted face image, using map data in which a predetermined region of a face has been set as a transparent region on the basis of a three-dimensional shape of the face.
Abstract: An antenna device including a case main body made of synthetic resin, an antenna made of metal and provided on an upper portion of the case main body so as to receive radio waves, an electronic component provided on a side portion of the case main body, and a protective connection member which includes a protection section which protects the electronic component and a connection section which is connected to the antenna.
Abstract: A satellite radiowave receiving device includes a receiver receiving radiowaves transmitted from a positioning satellite; and a processor performing a positioning operation using the radiowaves received by the receiver. If the receiver starts receiving radiowaves for the positioning operation, the processor obtains date and time information based on radiowaves received from a single positioning satellite after the receiver starts receiving radiowaves. The processor preforms a positioning calculation using the obtained date and time information and preliminarily retained positional information on the positioning satellite.
Abstract: An insert molding component includes a primary molding section with a concave portion formed on one surface thereof, an insert component disposed on a bottom side of the concave portion of the primary molding section, a heat-insulating component disposed in the concave portion of the primary molding section and disposed on a top of the insert component, and a secondary molding section disposed in contact with the one surface of the primary molding section.
Abstract: An insert molding includes a lithium-ion battery, temperature measurement element and a pressure measurement element disposed close to the lithium-ion battery to sense temperature and pressure around the lithium-ion battery during insert molding; and a molding resin that covers the lithium-ion battery, the temperature measurement element, the pressure measurement element and a cover member.
Abstract: An imaging apparatus 1 includes an image acquisition unit 51, an image processing unit 53, a mask image creation processing unit 54, and a processed image creation processing unit 55. The image acquisition unit 51 acquires a face image. The image processing unit 53 adjusts the brightness of the face image acquired by the image acquisition unit 51. The image processing unit 53 combines the face image acquired by the image acquisition unit 51 with the processed face image, using map data in which a predetermined region of a face is set as a transparent region on the basis of the reflection state of light emitted to the face.
Abstract: An imaging apparatus 1 includes an image acquisition unit 51 and an image processing unit 53. The image acquisition unit 51 acquires a face image. The image processing unit 53 adjusts the brightness of the face image acquired by the image acquisition unit 51. The image processing unit 53 combines the face image acquired by the image acquisition unit 51 with the adjusted image, using map data (map) in which a predetermined region of the face is set as a transparent region on the basis of a three dimensional shape of the face.
Abstract: There is provided a light source unit comprising a sealing member, a holding member on which an abutment surface is formed, which has an engaging portion and which holds a part, a case on which an abutted surface is formed which is brought into abutment with the abutment surface via the sealing member, which has an engaged portion which is brought into engagement with the engaging portion and which holds the holding member, wherein the abutment surface of the holding member and the abutted surface of the case face each other and are inclined relative to a holding surface which holds the part, and the abutted surface of the case is inclined so as to face a side where the holding member is inserted.
Abstract: A receiver sets a storage capacity to be assigned for each connected digital camera based on the number of connected digital cameras, and allocates these storage capacities in a buffer. Also, the receiver sends a request for a through image for each frame to each of the connected digital cameras, receives through images transmitted in response to the requests, and stores the through images in areas of the buffer assigned for each of the digital cameras. Furthermore, after receiving the through image for one frame from each digital camera, the receiver performs image processing on each through image and causes these images to be displayed in a list form on one screen of the display section.