Abstract:
A solid-state imaging device including a plurality of pixel units configured and disposed in an imaging area in such a way that a plurality of pixels corresponding to different colors are treated as one unit, the amount of shift of a position of each of the pixels in the pixel unit being set as to differ depending on distance from a center of the imaging area to the pixel unit and a color.
Abstract:
Disclosed herein is a solid-state imaging device including: a pixel part configured to include a plurality of light receiving regions corresponding to different wavelengths; and an element isolator configured to separate the plurality of light receiving regions from each other in such a way that each of the light receiving regions in the pixel part has a size suited to an energy profile of light irradiation with a wavelength handled by the light receiving region.
Abstract:
A computer determines whether destination information is included in permission target information. The destination information indicates a destination to which a file stored in a storage device is transferred. The permission target information includes information indicating a target permitted to access the file. The computer prompts before the file is transferred, upon determining that the destination information is not included in the permission target information, a user to input whether to permit the transfer. The computer adds the destination information to the permission target information upon receiving, via an input device, a permission input for permitting the transfer. The computer transfers the file upon receiving the permission input.
Abstract:
An image processing apparatus determines whether to execute an image processing function indicated by an execution instruction based on a state of a web browser when the received execution instruction indicates a local use, and executes the image processing function indicated by the execution instruction irrespective of the state of the web browser when the received execution instruction indicates a remote use.
Abstract:
A solid-state image pickup apparatus includes a substrate, a wiring layer, and a waveguide. The substrate is provided with a pixel array portion constituted of a plurality of pixels each having a photoelectric converter that converts incident light into an electrical signal. The wiring layer includes a plurality of wirings and an insulating layer that covers the plurality of wirings that are laminated above the substrate. The waveguide guides light to each of the photoelectric converters of the plurality of pixels, the waveguide being formed in the wiring layer. The waveguide is formed to have a waveguide exit end from which light exits the waveguide so that a distance between the waveguide exit end and a surface of the photoelectric converter that receives light from the waveguide become shorter, as wavelengths of light guided by the waveguide are longer.
Abstract:
Disclosed herein is a solid-state imaging device including a plurality of pixel units configured to be disposed in an imaging area in such a way that a plurality of pixels corresponding to different colors are treated as one unit, wherein the amount of shift of a position of each of the pixels in the pixel unit is so set as to differ depending on distance from a center of the imaging area to the pixel unit and a color.
Abstract:
A print control program, which is executed by an information processing apparatus so as to transmit print data to an image-forming device and record an image, causes the information processing apparatus to re-spool as a second spool file print data that has already been spooled once as a first spool file by an operating system. A portion of the print data that is re-spooled as the second spool file is transmitted to the image-forming device during re-spooling. As result, spooling of the second spool file linked to the first spool file, and transmission to the image-forming device, is more efficient.
Abstract:
To solve such a problem that it takes time to display a print setting display screen of a virtual printer to which functions of member printer drivers having different characteristics have been reflected, in an information processing apparatus for making job control of the virtual printer constructed by a plurality of member printers, a conflicting process based on each function of the plurality of member printers is executed, a construction of the member printers is examined in association with display control for reflecting a conflict result to a setting display screen of the virtual printer, and control is made to as to visualize an advance situation of the conflicting process on the basis of an examination result.
Abstract:
An information processing apparatus for generating a template in which is arranged a plurality of areas where content data can be inserted, includes a setting unit configured to associate the areas with one another, a determination unit configured to determine based on the content data whether the areas are to be arranged in a vertical direction or in a horizontal direction as an arrangement direction, a layout unit configured to arrange the areas in the arrangement direction determined by the determination unit, an input unit configured to input the content data into the areas arranged by the layout unit, and an output unit configured to output the areas where the content data is inserted by the input unit.
Abstract:
A management apparatus including a storing portion for storing information relating to utilization sites of a plurality of terminals and driver with information of the plurality of peripheral devices in association with one another, and a control portion for specifying any of the peripheral devices from among the plurality of peripheral devices on the basis of the information regarding the utilization site of the terminal and the information of the storage means, and reading out the driver and driver setting information of the peripheral device specified from the storage portion and transmitting the driver and driver setting information to an information processing unit communicating with the terminal. The information processing unit includes a reception portion for receiving the driver and driver setting information of the peripheral device and a processing portion for executing installation of the driver received by the reception portion and setting of the driver setting information.