Abstract:
A high-resolution, electronic camera with storage capability. The image at the focal plane of a lens (5) is scanned in one direction by a linear photodiode array (1), and in the orthogonal direction by relative motion of the linear array with respect to the lens. This relative motion is translated into comparable relative motion of a recording head (19) with respect to a recording media (21) by mechanical or electronic linkage so that the pixel information is recorded for later use simultaneously with its generation. A method for encoding the gray-scale information for recording is described.
Abstract:
PURPOSE: An information processing apparatus for connecting an external memory apparatus with a memory unit is provided to prevent problem generation by protecting the external memory apparatus which includes backup files. CONSTITUTION: A detection unit(4002) detects an external memory apparatus(502) connected to a connection unit. A first selecting unit(4005) selects a backup file which includes the data of an inner memory apparatus(162). When a first selecting unit selects the backup file, a control unit(4001) refuses access about the external memory apparatus. When the first selecting unit does not select the backup file, the control unit accepts the access about the external memory apparatus.
Abstract:
간단한 기본 기능을 저비용으로 실현하고, 옵션 유닛의 추가로 순차적으로 복합 기능으로 확장할 수 있는 화상 재생 장치, 특히 부정 화소 검출, 흑줄무늬 보정, 및 백지 원고 검출이 가능한 화상 재생 장치, 화상 재생 방법 및 이 방법을 컴퓨터에 실행시키기 위한 프로그램을 제공하는 것을 목적으로 한다. CPU 버스(103)를 통하여 접속된 프로세스 제어기(104), 작업용 RAM(105), 동작 지시를 저장하는 ROM(106), 화상 데이터 처리나 흐름 제어를 수행하는 영상 제어부(107), 각 구동계나 센서 등의 입출력(I/O)을 감시제어하는 I/O 제어부(108)가 설치된 기본 엔진&화상 데이터 제어 유닛(101)을 포함하여 구성되는 화상 재생 장치에 의해 실현된다. 또, 이 화상 재생 장치는 병렬 버스(120)를 통하여 제어 보드(130)와 접속됨으로써 디지털 복합기로서의 기능을 구비하게 된다. CPU 버스, 프로세스 제어기, I/O 제어부, 병렬 버스, 화상 재생 장치
Abstract:
PURPOSE: A digital camera is provided to comprise a USB drive as a storage device of image data obtained from a camera body, thereby directly transmitting the stored image data to a computer body. CONSTITUTION: A USB drive(200) comprises as follows. A micro controller inputs data through a D-plus port in connection with a camera body(100), and transmits the data through a D-minus port. An ROM stores firmware. A decoder inputs an address from the micro controller, and decodes the address into a flash memory selection signal. Plural flash memories store data in connection with the decoder. To connect the USB drive(200) with the camera body(100), the camera body(100) has a USB port in one side portion, and the USB drive(200) comprises a USB plug detachably coupled with the USB port.
Abstract:
An image forming apparatus is provided with USB sockets on front and back sides, and includes a determining unit for determining whether or not a USB device inserted to a front side USB socket is a function enhancement device, and a control unit making, when it is determined by the determining unit that a function enhancement device is inserted to the front side USB socket, the USB device unusable and making, when it is determined that a USB device other than the function enhancement device is inserted, the USB device usable. Thus, it is possible to prevent a USB wireless LAN adapter or the like from being used constantly connected to the front side USB socket and thereby to reduce possibility of USB wireless LAN adapter of being damaged or removed.
Abstract:
An image forming system including plural image forming apparatuses, being tandemly-arranged, and forming an image while assigning an area of a recording sheet, wherein each individual image forming apparatus including a display section which is configured to display various information and a control section which is configured to detect connecting positions of each individual image forming apparatus in the image forming system, and to control each individual display section to display a typical information based on detected results.
Abstract:
An imaging system includes a housing, circuitry within the housing, and a connector coupled to the circuitry and extending from the housing for electrical and mechanical connection with a personal electronic device. The connector can be secured to the housing using a connector support that is resilient and flexible. The connector can be electrically coupled to a main printed circuit board assembly using a flexible circuit. The resilient connector support can be configured to allow movement of the connector relative to the housing. The flexible circuit is configured to maintain electrical connection to the main printed circuit board assembly when the connector moves relative to the housing. The imaging system can be a thermal imaging system and may include an infrared camera core.
Abstract:
A cellular transmission device includes an image capture device, a display, a selection mechanism, and a processor. The device also includes a memory in which at least one still image captured by the image capture device is stores; and a cellular transceiver coupled to an antenna; wherein the processor is configured to cause the display of at least one still image stored in the memory on the display; cause the display of a transmission selection menu on the display in response to operation of the selection mechanism; thereby enabling selection of a plurality of receiver units from the selection menu to receive the at least one displayed still image; and cause the transmission of the at least one display still image by the cellular transceiver for receipt by each selected receiver unit.
Abstract:
An image forming apparatus includes: a connector unit to which an external memory device is connected; a detecting unit configured to detect whether the external memory device is connected to the connector unit or not and output a detection result indicating that the connector unit is in a connected state or an unconnected state; a printing unit configured to execute a printing according to data from the external memory device connected to the connector unit; and a suspending unit configured to suspend operation of the printing unit according to a predetermined timing in response to a change in the detection result from the connected state to the unconnected state.