Abstract:
An apparatus, system, and method of remotely monitoring receives, from an operation terminal, identification information and location information of a location of one or more lamps, stores, in a memory, the received identification information and the received location information in association with each other for the one or more lamps, updates log information regarding a log of a lighting condition of the one or more lamps, in response to an indication that an electric circuit of the one or more lamps is energized for the one or more lamps, and sends monitoring information corresponding to the log information of the electric circuit of the one or more lamps for display.
Abstract:
A service providing system is for providing a service that is in cooperation with a printing service that is provided by an external printing system. The service providing system includes a job obtaining unit configured, when receiving from the printing system a notification representing that a print job is created by the printing service, to obtain the print job from the printing system; a job managing unit configured to store, in a job storage unit, the print job obtained by the job obtaining unit; and a job transmitting unit configured to transmit the print job stored in the job storage unit in response to a print job request from an image forming apparatus that is coupled to the service providing system via a network.
Abstract:
An apparatus, system, and method of remotely monitoring receives, from an operation terminal, identification information and location information of a location of one or more lamps, stores, in a memory, the received identification information and the received location information in association with each other for the one or more lamps, updates log information regarding a log of a lighting condition of the one or more lamps, in response to an indication that an electric circuit of the one or more lamps is energized for the one or more lamps, and sends monitoring information corresponding to the log information of the electric circuit of the one or more lamps for display.
Abstract:
A novel print controlling apparatus that facilitates providing easy services that use printer drivers. The print controlling apparatus that executes a print job on a printing apparatus, and includes an additional feature driver 130 that acquires image to be printed and print settings set by a user by working as a printer driver and generates a print data in a format with open specifications by processing the acquired image, an individual driver 150 as a printer driver that generates a print job to be sent to a printer 2 designated in the print settings, and a reprint controlling unit 140 that has the individual driver 150 generate the print job based on the generated print data.
Abstract:
A printer driver includes an assigning unit that assigns a setting value based on storage location information specifying a storage location for each setting value; a compressing unit that converts each of the setting values thus assigned to have a format identifying each storage location, and generates compressed data therefrom; a storage unit that stores each piece of the compressed data compressed by the compressing unit in a storage location specified by the storage location information; a first decompressing unit and a second decompressing unit that decompress the compressed data stored in the storage location; a setting window displaying unit that displays a print setting window using each of the setting values obtained by decompression performed by the first decompressing unit; and a print data generating unit that generates print data using each of the setting values obtained by decompression performed by the second decompressing unit.
Abstract:
A fabric, a fabric manufacturing method and a vehicle seat are provided. The fabric has one surface and an opposite surface, and includes a constituent yarn having at least an elastic yarn; and a chenille yarn having a core yarn and a pile yarn. At least one kind of yarn of the constituent yarn is shaped in a waveform as seen from a sectional direction of the fabric. The core yarn is located closer to the opposite surface than an imaginary line, the imaginary line being formed by connecting each of peaks of mountain portions of the waveform in the one surface.
Abstract:
A semiconductor device including a buried cell array transistor and an electronic device including the same are provided. The device includes a field region in a substrate and the filed region defines an active region. A first source/drain region and a second source/drain region are in the active region. A gate trench is between the first and second source/drain regions, and in the active region and the field region. A gate structure is within the gate trench. The gate structure includes a gate electrode, an insulating gate capping pattern on the gate electrode, a gate dielectric between the gate electrode and the active region, and an insulating metal-containing material layer between the insulating gate capping pattern and the active region.
Abstract:
A charged particle beam extraction method according to the present invention is featured in that, in a circular accelerator which accelerates a charged particle beam, a pulse voltage is applied to a part of the accelerated charged particle beam to generate a momentum deviation only in the part of the charged particle beam, in that the charged particles of a part of the charged particle beam, the charged particles having a large momentum deviation, are located in a non-stable region and in an extraction region in a horizontal phase space with respect to the traveling direction of the charged particle beam, and in that a group of the charged particles located in the non-stable region and in the extraction region are largely deviated in the horizontal direction so as to be extracted.
Abstract:
A printer driver includes an assigning unit that assigns a setting value based on storage location information specifying a storage location for each setting value; a compressing unit that converts each of the setting values thus assigned to have a format identifying each storage location, and generates compressed data therefrom; a storage unit that stores each piece of the compressed data compressed by the compressing unit in a storage location specified by the storage location information; a first decompressing unit and a second decompressing unit that decompress the compressed data stored in the storage location; a setting window displaying unit that displays a print setting window using each of the setting values obtained by decompression performed by the first decompressing unit; and a print data generating unit that generates print data using each of the setting values obtained by decompression performed by the second decompressing unit.
Abstract:
An electroconductive member excellent in durability even when applying direct current voltage over a long period of time is provided. Disclosed is an electroconductive member including an electroconductive mandrel and an electroconductive layer, wherein: the electroconductive layer includes a binder resin and an electroconductive metal oxide particle dispersed in the electroconductive layer; the metal oxide particle has a group represented by the following structural formula (1) on the surface of the metal oxide particle; and the group represented by the following structural formula (1) is introduced by substituting a hydrogen atom of a hydroxyl group as a functional group originating from the metal oxide particle, with the group represented by the following structural formula (1): —R—SO3H.