Abstract:
Described herein is a film scanner, such as scanner for scanning motion picture film, the film scanner comprising one or more imaging devices configured to collect an image of an imaging area; and a transit system for producing relative motion of the film and the imaging device. Advantageously, at least one of the imaging devices comprises a digital single lens reflex (SLR) camera.
Abstract:
A film scanning method is provided. When the film is judged as a negative film, the scanning device sets the scan exposure time for the film according to the base background color of the film. The negative film is scanned for the scan exposure time, wherein, the film passes through the scanning device at one time so as to complete the above judge of the film type and scanning of the film. The film scanning method automatically completes the recognition of film type, performs accurate scanning based on the scan exposure time, expands the dynamic range and reduces noise impacts, so as to obtain a scanned image with higher accuracy.
Abstract:
A kind of device to transfer film image into digital data includes a body, a frame, a bottom brace and a bottom cover wherein the frame body is assembled to the upper portion of the bottom brace and the while the body is housed in the body then the bottom cover is assembled and sealed below. A camera lens is set above the frame. A back light mechanism is set inside the bottom brace. One long groove each is set to two sides of the body and a film plate clamp is inserted from one side. This film plate clamp can fix the film plate inside and position to the top of the back light mechanism. The camera lens is utilized to access the images of the film and transfer the images into digital data to be sent to another computer for storage. The objects of rapid transfer the images on the film into the digital data for easy modification and permanent storage are thus achieved.
Abstract:
A scanning device includes a first tray, a second tray, a detection module, a scanning module, and an image processing module. The first tray has an identification element. When the scanning device scans the first tray, the detection module detects the identification element so as to generate a first signal. When the scanning device scans the second tray, the detection module does not detect the identification element so as to generate a second signal. The image processing module uses a first group of parameters to process the scanned image when receiving the first signal. The image processing module uses a second group of parameters to process the scanned image when receiving the second signal.
Abstract:
A double-lens optical scanning device and method of using the same. Wherein, a housing of said optical scanning device is provided with a photograph cartridge insertion slot and a negative cartridge insertion slot, that can be inserted photograph-, negative-, or slide-to-be-scanned. Said housing comprises a light source, two optical lenses, and at least an image sensor. Said two optical lenses are provided with different light paths, such that said image sensor is utilized to determine a category of an object-to-be-scanned, in selecting said optical lens to be used and a direction of said light source. A switching circuit is utilized to switch said optical lens to be used, fetch an image of said object-to-be-scanned, and then focus it onto said image sensor to form said image, and convert it into digital data for output.
Abstract:
An image scanning system comprises: an image-capturing device that captures an image of a scan original and outputs image signals; an image processing circuit that executes image processing on the image signals; an image signal output device that outputs the image signals having undergone the image processing; a calculation device that calculates an estimated length of required time to complete image signal output after a scan instruction with regard to the scan original is issued; and a calculation result output device that outputs calculation results obtained at the calculation device.
Abstract:
An imaging apparatus includes an imaging unit operable to capture a subject to generate image data, an extracting unit operable to extract feature quantity information indicative of a feature of the subject from the image data generated by the imaging unit, a storing unit operable to store the feature quantity information extracted by the extracting unit as a registration candidate, a determining unit operable to determine whether a subject indicated by the feature quantity information extracted by the extracting unit is a same face indicated by the feature quantity information stored in the storing unit as the registration candidate, and a display unit operable to display a screen for prompting a user to perform an operation concerning registration in accordance with number of times the determining unit determines that the subject indicated by the feature quantity information extracted by the extracting unit is the same subject indicated by the feature quantity information stored in the storing unit as the registration candidate.
Abstract:
A scheme for obtaining an original image free from any dust or scratches on a film by scanning a film original or the like with visible light and infrared light has been proposed. This scheme suffers problems, i.e., a large memory size and long processing time since original image data obtained by infrared light must be stored.To solve such conventional problems, this invention provides, e.g., an image scanning apparatus which has a light source for emitting visible light and invisible light, scanning means for scanning an original image irradiated with light emitted by the light source, and control means for controlling the scanning means to scan the original image irradiated with the invisible light, and then to scan the original image irradiated with the visible light.
Abstract:
In an image reading apparatus that can read a reflection original and transparent original, a film holder for holding the transparent original is provided to be pivotal to the left or right about a shaft as the center. After the transparent original is set such that its image can be seen correctly, when the film holder is brought down to the right, the film can be set correctly concerning its upper and lower sides. At this time, as the film holder is held by the reading apparatus, its positional shift can also be prevented.
Abstract:
In a method of controlling an image reading apparatus, which has an illumination unit adapted to irradiate an object with first and second light rays in different frequency ranges, and a light-receiving unit adapted to receive light coming from the object, and to output a signal, and reads an image of the object by moving the illumination unit and light-receiving unit relative to the object, the light-receiving unit outputs a first signal in response to irradiation with the first light ray, and outputs a second signal in response to irradiation with the second light ray. Upon reading image information for one line by the image reading apparatus, the second light ray is controlled to be sequentially turned on at a plurality of timings to sandwich the ON timing of the first light ray, and image signals for one line corresponding to the first and second light rays are obtained by averaging or adding respective pieces of image information obtained at the plurality of timings for each of the first and second signals.