System and method for digital color dye film processing
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G03D-005/00
G03D-013/00
출원번호
US-0751473
(2000-12-29)
발명자
/ 주소
Corbin, Douglas E.
Cook, Stacy S.
Young, Jr., Robert S.
Krasnoselski, Alexei L.
출원인 / 주소
Applied Science Fiction, Inc.
대리인 / 주소
Dinsmore & Shohl LLP
인용정보
피인용 횟수 :
3인용 특허 :
120
초록▼
One aspect of the invention is a digital dye color film processing system. In one embodiment, the digital dye color film processing system includes a developer station, a processing station, a scanning system, and a data processing system. The developer station applies a developer solution to a silv
One aspect of the invention is a digital dye color film processing system. In one embodiment, the digital dye color film processing system includes a developer station, a processing station, a scanning system, and a data processing system. The developer station applies a developer solution to a silver halide based film to produce metallic silver grains and at least one dye image within the film. The processing station then applies at least one processing solution to the film to convert the silver halide and/or metallic silver to a substantially transparent silver complex. The scanning system then scans the coated film and produces sensor data that is communicated to a data processing system that processes the sensor data to produce a digital image The digital image can then be output to an output device, such as a printer, display monitor, memory device, and the like.
대표청구항▼
One aspect of the invention is a digital dye color film processing system. In one embodiment, the digital dye color film processing system includes a developer station, a processing station, a scanning system, and a data processing system. The developer station applies a developer solution to a silv
One aspect of the invention is a digital dye color film processing system. In one embodiment, the digital dye color film processing system includes a developer station, a processing station, a scanning system, and a data processing system. The developer station applies a developer solution to a silver halide based film to produce metallic silver grains and at least one dye image within the film. The processing station then applies at least one processing solution to the film to convert the silver halide and/or metallic silver to a substantially transparent silver complex. The scanning system then scans the coated film and produces sensor data that is communicated to a data processing system that processes the sensor data to produce a digital image The digital image can then be output to an output device, such as a printer, display monitor, memory device, and the like. s adapted to be connected to a mating optical connector which contains a photoelectric conversion device, and is mounted on a predetermined mounting board. 7. The optical connector according to claim 6, wherein a partition wall is formed integrally with said housing body portion, and separates said ferrule portions from each other. 8. The optical connector according to claim 1, wherein a side wall of said protective hood portion, which is to be opposed to said mounting board when said optical connector is connected to said mating optical connector, is notched. 9. The optical connector according to claim 1, wherein said optical connector is adapted to be fitted in a mating optical connector, and outwardly-projecting, elongate projections are formed respectively at those portions of said protective hood portion, respectively defining opposite side edges of said notch, and extend in a direction of insertion of said optical connector into said mating optical connector. 10. The optical connector according to claim 6, wherein a side wall of said protective hood portion, which is to be opposed to said mounting board when said optical connector is connected to said mating optical connector, is notched. 11. The optical connector according to claim 6, wherein said optical connector is adapted to be fitted in a mating optical connector, and outwardly-projecting, elongate projections are formed respectively at those portions of said protective hood portion, respectively defining opposite side edges of said notch, and extend in a direction of insertion of said optical connector into said mating optical connector.
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