Patents by Inventor Tetsuya Fujikawa

Tetsuya Fujikawa has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220094852
    Abstract: A shake correction control device includes a processor that acquires imaging information for selecting mechanical correction of mechanically performing shake correction of a subject image or electronic correction of electronically performing the shake correction of the subject image. The processor performs a switching control from either of the mechanical correction or the electronic correction to the other of the mechanical correction or the electronic correction, and synchronizes shake correction operations of the mechanical correction and the electronic correction during the switching control, and changes an operation ratio of the mechanical correction and the electrical correction in accordance with passage of time during the switching control.
    Type: Application
    Filed: December 1, 2021
    Publication date: March 24, 2022
    Applicant: FUJIFILM Corporation
    Inventors: Tomonori MASUDA, Masahiko SUGIMOTO, Yi PAN, Takashi HASHIMOTO, Tetsuya FUJIKAWA, Yasunobu KISHINE
  • Publication number: 20220094935
    Abstract: Provided are an image processing device capable of performing compression processing on a video captured in each video capturing mode according to a first video capturing mode and a second video capturing mode with different capturing conditions. A possible range of a quantization parameter applied in a case where the video is compressed is made different in the first video capturing mode and the second video capturing mode with different capturing conditions. The quantization parameter is determined within a first range in a case of the first video capturing mode, and the quantization parameter is determined within a second range narrower than the first range in a case of the second video capturing mode. In particular, a second upper limit value of the second range is smaller than a first upper limit value of the first range, and a second lower limit value of the second range is larger than a first lower limit value of the first range.
    Type: Application
    Filed: December 6, 2021
    Publication date: March 24, 2022
    Applicant: FUJIFILM Corporation
    Inventors: Yukinori NISHIYAMA, Tetsu WADA, Koichi TANAKA, Tetsuya FUJIKAWA, Kenkichi HAYASHI
  • Patent number: 11233949
    Abstract: A CPU performs an amount-of-exposure control process to thereby function as a first control unit that controls the exposure time of pixels to control the amount of exposure of the pixels for each of a plurality of division regions obtained by dividing a captured image and as a second control unit that controls the light transmittance of an ND filter to adjust the difference in amount of exposure between the plurality of division regions for each of which the amount of exposure is controlled by controlling the exposure time. On a touch panel display, the captured image obtained with the amount of exposure controlled by the CPU in accordance with a combination of the exposure time and the light transmittance of the ND filter is displayed.
    Type: Grant
    Filed: December 30, 2019
    Date of Patent: January 25, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Tetsuya Fujikawa, Mototada Otsuru
  • Patent number: 11228711
    Abstract: A shake correction control device includes an acquisition unit that acquires imaging information for selecting mechanical correction of mechanically performing shake correction of a subject image or electronic correction of electronically performing the shake correction of the subject image, and a shake correction control unit. The shake correction control unit performs a first control for performing a switching control from the mechanical correction to the electronic correction by synchronizing shake correction operations of the mechanical correction and the electronic correction and a second control, different from the first control, for performing a switching control from the electronic correction to the mechanical correction based on the imaging information acquired by the acquisition unit.
    Type: Grant
    Filed: May 25, 2021
    Date of Patent: January 18, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Tomonori Masuda, Masahiko Sugimoto, Yi Pan, Takashi Hashimoto, Tetsuya Fujikawa, Yasunobu Kishine
  • Patent number: 11223826
    Abstract: Provided are an image processing device capable of performing compression processing on a video captured in each video capturing mode according to a first video capturing mode and a second video capturing mode with different capturing conditions. A possible range of a quantization parameter applied in a case where the video is compressed is made different in the first video capturing mode and the second video capturing mode with different capturing conditions. The quantization parameter is determined within a first range in a case of the first video capturing mode, and the quantization parameter is determined within a second range narrower than the first range in a case of the second video capturing mode. In particular, a second upper limit value of the second range is smaller than a first upper limit value of the first range, and a second lower limit value of the second range is larger than a first lower limit value of the first range.
    Type: Grant
    Filed: February 23, 2021
    Date of Patent: January 11, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Yukinori Nishiyama, Tetsu Wada, Koichi Tanaka, Tetsuya Fujikawa, Kenkichi Hayashi
  • Patent number: 11212448
    Abstract: A shake correction control device includes an acquisition unit and an operation control unit. The acquisition unit acquires, for each predetermined time, a related amount related to an operation recommendation condition under which an operation of a mechanical correction unit which corrects a shake of a subject image by mechanically moving at least one of a correction optical system or an imaging element is recommended. The operation control unit controls the operation of the mechanical correction unit and an operation of an electronic correction unit which corrects the shake by performing image processing on an image obtained by imaging performed by the imaging element.
    Type: Grant
    Filed: May 18, 2021
    Date of Patent: December 28, 2021
    Assignee: FUJIFILM Corporation
    Inventors: Yi Pan, Masahiko Sugimoto, Tomonori Masuda, Takashi Hashimoto, Tetsuya Fujikawa, Yasunobu Kishine
  • Patent number: 11202009
    Abstract: A shake correction control device includes an acquisition unit and an operation control unit. The acquisition unit acquires, for each predetermined time, a related amount related to each of a first operation recommendation condition under which an operation of a mechanical correction unit that corrects a shake of a subject image by mechanically moving at least one of a correction optical system or an imaging element is recommended, and a second operation recommendation condition under which an operation of an electronic correction unit that corrects the shake by performing image processing on an image obtained by imaging performed by the imaging element is recommended.
    Type: Grant
    Filed: May 18, 2021
    Date of Patent: December 14, 2021
    Assignee: FUJIFILM Corporation
    Inventors: Masahiko Sugimoto, Tomonori Masuda, Yi Pan, Takashi Hashimoto, Tetsuya Fujikawa, Yasunobu Kishine
  • Publication number: 20210377446
    Abstract: A blur correction device includes: an acquisition unit that acquires an amount of blur correction used to correct blurring of an image obtained through imaging of an imaging element during exposure for one frame in the imaging element; and a correction unit that corrects the blurring by performing image processing on a correction target image, which is an image for one frame included in a moving image obtained through imaging of the imaging element, based on the amount of blur correction acquired by the acquisition unit during exposure necessary to obtain the correction target image.
    Type: Application
    Filed: August 15, 2021
    Publication date: December 2, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Tomonori MASUDA, Masahiko SUGIMOTO, Yi PAN, Takashi HASHIMOTO, Tetsuya FUJIKAWA, Yasunobu KISHINE
  • Publication number: 20210377445
    Abstract: A blur correction device includes: a sensor; a mechanical blur correction device; an electronic blur correction circuit that corrects the blurring by performing image processing on an image obtained through imaging of the imaging apparatus, based on the amount of blurring and operation state information about an operation state of the optical element during exposure in the imaging apparatus; and a supplementary blur correction circuit that, in a case where the mechanical blur correction device and the electronic blur correction circuit are shared and operated at a predetermined ratio during the exposure, corrects the blurring by applying, to the image, a filter determined depending on the operation state information, the predetermined ratio, the amount of blurring, and an exposure period in the imaging apparatus.
    Type: Application
    Filed: August 17, 2021
    Publication date: December 2, 2021
    Applicant: FUJIFILM Corporation
    Inventor: Tetsuya FUJIKAWA
  • Publication number: 20210344839
    Abstract: Provided are an image processing device, an image capturing device, and an image processing method. Included are a video acquisition section that acquires a video with a variable image capturing frame rate during image capturing, an image capturing mode selection section that selects a first video capturing mode or a second video capturing mode in which an exposure time per frame is set to be shorter than that in the first video capturing mode, a compression processing selection section that selects first compression processing that prioritizes a capacity in a case where the first video capturing mode is selected or selects second compression processing that prioritizes image quality in a case where the second video capturing mode is selected, and a compression processing section that compresses the video acquired by the video acquisition section and performs the first compression processing or second compression processing selected by the compression processing selection section.
    Type: Application
    Filed: July 14, 2021
    Publication date: November 4, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Yukinori NISHIYAMA, Koichi TANAKA, Tetsuya FUJIKAWA, Kensuke MASUI
  • Publication number: 20210329161
    Abstract: An image capturing device includes an image capturing section that captures first video data having a frame cycle of a first frame cycle and an exposure time for one frame shorter than the first frame cycle, an image acquisition section that acquires the first video data captured by the image capturing section, a detection section that detects a flicker of a light source in the first video data, and an image capturing frame cycle control section that controls the frame cycle of the image capturing in the image capturing section. The image capturing frame cycle control section changes the frame cycle of the first video data captured by the image capturing section from the first frame cycle to a second frame cycle, which is a frame cycle shorter than the first frame cycle, in a case where the detection section detects the flicker.
    Type: Application
    Filed: June 29, 2021
    Publication date: October 21, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Tetsuya Fujikawa, Yukinori Nishiyama, Koichi Tanaka, Tetsu Wada, Kenkichi Hayashi
  • Publication number: 20210313024
    Abstract: A target hemoglobin level of a patient; a current hemoglobin level of the patient; a specific decrease amount per unit period indicating an amount of decrease of a hemoglobin level of the patient when an erythropoiesis stimulating agent is not administered during the unit period; and a specific increase amount per unit period being an amount of increase of the hemoglobin level of the patient when an erythropoiesis stimulating agent at a maximum allowable unit amount per unit period is administered during the unit period and indicating a relative amount of increase in which the hemoglobin level when the erythropoiesis stimulating agent is not administered during the unit period is used as a reference are acquired. Furthermore, an amount of erythropoiesis stimulating agent to be administered to the patient per unit period is calculated on the basis of these pieces of information.
    Type: Application
    Filed: August 23, 2019
    Publication date: October 7, 2021
    Inventor: Tetsuya FUJIKAWA
  • Publication number: 20210281758
    Abstract: A shake correction control device includes an acquisition unit that acquires imaging information for selecting mechanical correction of mechanically performing shake correction of a subject image or electronic correction of electronically performing the shake correction of the subject image, and a shake correction control unit. The shake correction control unit performs a first control for performing a switching control from the mechanical correction to the electronic correction by synchronizing shake correction operations of the mechanical correction and the electronic correction and a second control, different from the first control, for performing a switching control from the electronic correction to the mechanical correction based on the imaging information acquired by the acquisition unit.
    Type: Application
    Filed: May 25, 2021
    Publication date: September 9, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Tomonori MASUDA, Masahiko SUGIMOTO, Yi PAN, Takashi HASHIMOTO, Tetsuya FUJIKAWA, Yasunobu KISHINE
  • Publication number: 20210274099
    Abstract: A shake correction control device includes an acquisition unit and an operation control unit. The acquisition unit acquires, for each predetermined time, a related amount related to an operation recommendation condition under which an operation of a mechanical correction unit which corrects a shake of a subject image by mechanically moving at least one of a correction optical system or an imaging element is recommended. The operation control unit controls the operation of the mechanical correction unit and an operation of an electronic correction unit which corrects the shake by performing image processing on an image obtained by imaging performed by the imaging element.
    Type: Application
    Filed: May 18, 2021
    Publication date: September 2, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Yi PAN, Masahiko SUGIMOTO, Tomonori MASUDA, Takashi HASHIMOTO, Tetsuya FUJIKAWA, Yasunobu KISHINE
  • Publication number: 20210274098
    Abstract: A shake correction control device includes an acquisition unit and an operation control unit. The acquisition unit acquires, for each predetermined time, a related amount related to each of a first operation recommendation condition under which an operation of a mechanical correction unit that corrects a shake of a subject image by mechanically moving at least one of a correction optical system or an imaging element is recommended, and a second operation recommendation condition under which an operation of an electronic correction unit that corrects the shake by performing image processing on an image obtained by imaging performed by the imaging element is recommended.
    Type: Application
    Filed: May 18, 2021
    Publication date: September 2, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Masahiko SUGIMOTO, Tomonori MASUDA, Yi PAN, Takashi HASHIMOTO, Tetsuya FUJIKAWA, Yasunobu KISHINE
  • Publication number: 20210185228
    Abstract: An imaging device according to a first aspect of the present invention includes an imaging section that captures a video, a static image file generation section that extracts a first frame from a plurality of frames constituting the video and generates a static image file, a video file generation section that divides the video in accordance with the generation of the static image file to generate a plurality of video files, and a storage section that stores the static image file in association with a first video file that includes the first frame among the plurality of video files.
    Type: Application
    Filed: February 26, 2021
    Publication date: June 17, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Tetsu WADA, Kenkichi HAYASHI, Koichi TANAKA, Yukinori NISHIYAMA, Tetsuya FUJIKAWA
  • Publication number: 20210174090
    Abstract: An imaging device including an image sensor that captures a video; and a processor configured to extract a first frame from a plurality of frames constituting the video captured by the image sensor to generate a first static image file, generate a video file constituted of a plurality of frames including the first frame from the video, and store the video file, the first static image file, and additional information indicating a position of the first frame in the video file.
    Type: Application
    Filed: February 23, 2021
    Publication date: June 10, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Tetsuya FUJIKAWA, Yukinori NISHIYAMA, Koichi TANAKA, Tetsu WADA, Kenkichi HAYASHI
  • Publication number: 20210176470
    Abstract: Provided are an image processing device capable of performing compression processing on a video captured in each video capturing mode according to a first video capturing mode and a second video capturing mode with different capturing conditions. A possible range of a quantization parameter applied in a case where the video is compressed is made different in the first video capturing mode and the second video capturing mode with different capturing conditions. The quantization parameter is determined within a first range in a case of the first video capturing mode, and the quantization parameter is determined within a second range narrower than the first range in a case of the second video capturing mode. In particular, a second upper limit value of the second range is smaller than a first upper limit value of the first range, and a second lower limit value of the second range is larger than a first lower limit value of the first range.
    Type: Application
    Filed: February 23, 2021
    Publication date: June 10, 2021
    Applicant: FUJIFILM Corporation
    Inventors: Yukinori NISHIYAMA, Tetsu WADA, Koichi TANAKA, Tetsuya FUJIKAWA, Kenkichi HAYASHI
  • Patent number: 10771673
    Abstract: The focusing position detecting device includes contrast evaluation value calculating unit configured to calculate contrast evaluation values from a plurality of image data items obtained by imaging a subject a multiple number of times at a set exposure time while moving a focus lens in an optical axis direction within a search range, focusing position calculating unit configured to calculate a focusing position from focus positions at the time of imaging the subject a multiple number of times and the contrast evaluation values calculated by the contrast evaluation value calculating unit, detection unit configured to detect atmospheric fluctuation, and exposure time setting unit configured to set an exposure time in a case where the detection unit detects the atmospheric fluctuation so as to be longer than an exposure time in a case where the detection unit does not detect the atmospheric fluctuation.
    Type: Grant
    Filed: August 30, 2018
    Date of Patent: September 8, 2020
    Assignee: FUJIFILM CORPORATION
    Inventors: Koichi Tanaka, Yitong Zhang, Tetsuya Fujikawa
  • Publication number: 20200175582
    Abstract: Provided are an information terminal, an information processing method, a non-transitory computer readable recording medium storing an information processing program, and an information processing system capable of reducing time and effort of a user related to rental of an imaging-equipment.
    Type: Application
    Filed: February 7, 2020
    Publication date: June 4, 2020
    Applicant: FUJIFILM Corporation
    Inventors: Tetsuya FUJIKAWA, Masahiko SUGIMOTO, Takeshi KAMIYA