Abstract:
An image processing apparatus includes an acquisition unit and a processing unit. The acquisition unit is configured to acquire an image. The processing unit is configured to select a format of a file corresponding to the image acquired by the acquisition unit, by analyzing a feature of the image. The processing unit is further configured to create a file for each feature of the image in the selected format.
Abstract:
A fastening machine 1 is provided, which prevents the tip member 131 from wear and improve its durability as well as align a material into which a fastener is to be driven. The fastening machine 1 is provided with a housing 2, a handle 2A extended from the housing 2, a nose 3 extended from the housing 2 and comprising an ejecting mouth 6 to fire a fastener 25 and a tip member 131 arranged at the tip of nose 3 in the direction of ejecting the fastener 25. The tip member 131 is characterized by comprising a super-hard material member 19 in the side facing a material into which a fastener is to be driven and in the side opposite to the direction of extending the handle 2A.
Abstract:
A power tool includes a brushless motor, a switching element, a power cable a rectifying device, a heat releasing member. The switching element controls a drive of the brushless motor. The power cable supplies an electric current to the brushless motor from power source. The rectifying device rectifies the electric current from the power cable. The heat releasing member is connected to the switching element and the rectifying device in order to enhance a cooling efficiency for the same.
Abstract:
An image processing apparatus includes a storage that stores, therein, edge position data indicating the position of a first edge image that represents a first edge of a first object image representing an object in a first image, a determination portion that detects a second edge image based on the edge position data and a specific scaling factor, the second edge image representing a second edge of a second object image that represents the object in a second image, the second image being obtained by modifying the size or the resolution of the first image by increasing the number of pixels by α times (α>1) corresponding to the scaling factor, the second edge having a width equal to that of the first edge, and a removal portion that performs a process for deleting an edge of an inner area surrounded by the second edge image.
Abstract:
An image processing apparatus includes a detecting unit that detects pieces of additional information embedded in image data, an analyzing unit that analyzes the detected pieces of additional information, and an embedding unit that (a) updates, when the analyzing unit analyzes that any of the detected pieces of additional information includes predetermined information, the predetermined information included in the piece of additional information, and embeds the updated predetermined information into image data at a location where the predetermined information is originally embedded, or (b) embeds, when the detected pieces of additional information do not include the predetermined information, a new piece of additional information including updated information, into the image data at a location that does not overlap locations where the detected pieces of additional information are embedded, the updated information being equivalent to the predetermined information.
Abstract:
An image forming apparatus includes an apparatus main body and a display unit that is removable from the apparatus main body. A positional relationship between the display unit and the apparatus main body and a direction are detected by a detecting portion. Based on results of the detection and apparatus conditions, content to be displayed on a displaying portion of the display unit is determined.
Abstract:
A precision assembly (210) for positioning a device (226) includes a stage (260) that retains the device (226), a dual mover assembly (228) that moves the stage (260), and the device (226) along a movement axis (266), a measurement system (222) and a control system (224). The dual mover assembly (228) includes a first mover (262) that moves the stage (260) along the movement axis (266) and a second mover (264) that moves the device (226) along the movement axis (266). The second mover (264) is rigidly coupled to the first mover (262) so that movement of the first mover (262) results in movement of the second mover (264). Further, the total output of the dual mover assembly (228) along the movement axis (266) is equal to the sum of the movement of the first mover (262) and the movement of the second mover (264). The measurement system (222) measures a movement position along the movement axis (266). The control system (224) controls the dual mover assembly (228) utilizing the movement position. The control system (224) is designed to effectively decouple the control of the first mover (262) from the control of the second mover (264). Further, the control system (224) includes a quantization feedforward loop.
Abstract:
Disclosed is an access control apparatus controls access to a storage device and includes an access password input device that receives an input of an access password; an access control information acquiring unit that acquires access control information indicating an access password to be inputted for access; an access controller that controls access to a file stored in a file storage region, based on the inputted access password and the access control information, wherein the access controller is operable when different region access passwords are set for accessing a first file storage region and a second file storage region, respectively, to control access after a file stored in the first file storage region has been transported to the second file storage region so that at least one password that could be used to access the file in the first file storage region is inherited after transportation.
Abstract:
In a system where a transmitting apparatus is connected via a network to a receiving apparatus, the receiving apparatus has a storage device for storing destination information which can be registered to a key in an operating device to be operated for transmission in a transmitting apparatus. When data is received from the transmitting apparatus, the destination information including an icon or information on a site wherein the destination information is stored is returned to the transmitting apparatus. Thus, registration of destination information to the key becomes easy at the transmitting apparatus.
Abstract:
An information acquiring unit checks operation command information issued to the multiple information processing apparatuses over the network in order to understand the totality of the operation command information in the network. The state of utilization of each information processing apparatus is analyzed based on the operation command information. Where a utilization state analyzing unit is provided in an information processing apparatus, the utilization state analyzing unit also checks the state of utilization of its own information processing apparatus. Prompt information that prompts the issuance of operation commands to an underutilized information processing apparatus is then issued. Consequently, the level of utilization of that information processing apparatus may be increased.