Abstract:
A tonneau cover device includes a tonneau cover coupled to a hatchback door. A movable guide arranged on the tonneau cover is guided by a fixed guide arranged in the vehicle to guide the tonneau cover. The movable guide is separated from the fixed guide when the hatchback door opens. A controller moves the tonneau cover to an extension position when the hatchback door closes and a storage position when the hatchback door opens. A detector detects whether movement of the tonneau cover is obstructed due to contact with an object. The controller temporarily interrupts movement of the tonneau cover when the detector detects that the movement of the tonneau cover to the storage position has been obstructed and restarts the movement of the tonneau cover to the storage position when determining that the movable guide has been separated from the fixed guide as the hatchback door opens.
Abstract:
An image processing apparatus according to an aspect of the invention includes a first storage unit, a second storage unit, a control unit, and a construction unit. A program of at least one module including a buffer module among modules of an image processing unit is stored in the first storage unit. An image processing program and a shared library can be additionally stored in the second storage unit. The image processing program is used to perform image processing and a program of a module generation unit is registered in the shared library. The control unit instructs at least one module in the image processing unit to perform image processing during construction of the image processing unit. The construction unit constructs the image processing unit.
Abstract:
A switch device for vehicle outer mirror includes a control board that mounts a control element for electrically controlling an outer mirror driver portion, a driver board that is separated from the control board and mounts a drive element for driving the outer mirror driver portion based on a control signal from the control board, and a housing for housing therein the control board and the driver board that are electrically connected by a coupling means.
Abstract:
When the size output for an image is equal to or smaller than a predetermined value (e.g., index printing), a printing apparatus performs an image expansion/reduction process by using an interpolation method whereby high speed processing is enabled while an inferior image quality is provided, or when the output size is greater than a predetermined value (e.g., the normal printing of a single sheet), employs an interpolation method for a high quality image to perform the expansion/reduction. Further, when the output image size is equal to or smaller than the predetermined value, the printing apparatus 1 skips the noise reduction process and the sharpening process to increase the processing speed.
Abstract:
An image processing device has an image processing section and a processing managing section. The image processing section has one or more image processing modules and one or more buffer modules. Each image processing module has an image processing engine and a control section. The image processing engine carries out a predetermined image processing on image data in units of a unit processing data amount. The control section inputs image data which is acquired from a preceding stage of its own module, in data amount units needed in order for the image processing engine to carry out processing in units of the unit processing data amount. Also, the control section outputs, to a following stage of its own module, image data, which has undergone a predetermined image processing by the image processing engine, or a processing result of the predetermined image processing.
Abstract:
An image processing section of an image processing device is constructed by plural image processing modules being connected in a pipeline form, such that a buffer module is connected at at least one of preceding and following stages of each module. A buffer control section of the buffer module: when image data is outputted from the preceding image processing module, causes the module to write, immediately or after completion of reading, based on weather the following image processing module is reading data from the buffer; and when image data is requested from the following image processing module, causes the module to read, immediately or after completion of writing, based on weather the preceding image processing module is writing data to the buffer.
Abstract:
An image processing apparatus has an image processing section having modules and a storage resource management unit. The storage resource management unit determines whether or not a necessary capacity of a storage resource is equal to or less than a remaining amount of a memory when a module needs to be allocated with the storage resource, allocates the secured memory as the storage resource to the module when the capacity is equal to or less than the remaining amount or, when the capacity is larger than the remaining amount, secures a storage region of an external storage apparatus and allocates the storage region as the storage resource, or writes data written in a memory allocated to another module in the storage region and allocates the memory previously allocated to the other module as the storage resource to the module.
Abstract:
In a pipeline process operation including a branching process unit 25 as one of process modules, this branching process unit 25 is provided with an input management unit 251 for managing an input condition, a branching information management unit 252 for managing information as to branching destinations, a buffer unit 253 whose upper storage limit can be designated, and a branching control unit 254 for controlling an entire branching process unit. The branching process unit 25 may execute an arbitrary number of branching process operations without having such a buffer for an entire image.
Abstract:
An image processing device has an image processing section and a processing managing section. The image processing section has one or more image processing modules and one or more buffer modules. Each image processing module has an image processing engine and a control section. The image processing engine carries out a predetermined image processing on image data in units of a unit processing data amount. The control section inputs image data which is acquired from a preceding stage of its own module, in data amount units needed in order for the image processing engine to carry out processing in units of the unit processing data amount. Also, the control section outputs, to a following stage of its own module, image data, which has undergone a predetermined image processing by the image processing engine, or a processing result of the predetermined image processing.
Abstract:
In a translation processing method, a document is input; characteristic information is extracted from the input document; a translation style is selected according to the characteristic information; and the input document is translated using the selected translation style.