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    • 2. 发明公开
    • IMAGING DEVICE
    • 成像设备
    • EP2618556A1
    • 2013-07-24
    • EP11848259.5
    • 2011-12-14
    • Olympus Medical Systems Corp.
    • ONO, WataruHASHIMOTO, HidenoriMATSUZAWA, Hirohiko
    • H04N5/225A61B1/00A61B1/04G02B23/24H04N5/238
    • A61B1/00009A61B1/00006A61B1/128H04N5/2251H04N5/374H04N2005/2255
    • Provided is an imaging apparatus that is able to stably acquire a captured image. An endoscope system 100 according to the present invention includes: a CMOS imaging element 80; a timing generator 34 and an AFE unit 36 that are provided on a board connected to a light receiving unit 28 and reads pixel information by causing the pixel information to be output from a pixel designated as a target to be read in the CMOS imaging element 80; a control circuit 35 that is provided on the board and controls a pixel information output process by a light receiving unit 28 and a pixel information reading process by the timing generator 34 and the AFE unit 36; and an abnormality determining unit 57 that determines whether there is an abnormality in the pixel information read by the timing generator 34 and the AFE unit 36 and outputs, to the control circuit 35, a notification signal for causing the control circuit 35 to execute control on an occurrence of the abnormality.
    • 提供一种能够稳定地获取拍摄图像的成像设备。 根据本发明的内窥镜系统100包括:CMOS成像元件80; 设置在与光接收单元28连接的基板上的定时发生器34和AFE单元36,并且通过使得从在CMOS成像元件80中读取的指定为目标的像素输出像素信息来读取像素信息 ; 控制电路35,其设置在基板上,并且控制由光接收单元28进行的像素信息输出处理和由定时发生器34和AFE单元36进行的像素信息读取处理; 以及异常判定部57,判定定时发生器34和AFE部36读出的像素信息是否存在异常,并将用于使控制电路35执行控制的通知信号输出到控制电路35 发生异常。
    • 3. 发明公开
    • ENDOSCOPE AND ENDOSCOPIC DEVICE
    • 内窥镜和内窥镜装置
    • EP2570071A1
    • 2013-03-20
    • EP11824848.3
    • 2011-06-15
    • OLYMPUS MEDICAL SYSTEMS CORP.
    • HASHIMOTO, Hidenori
    • A61B1/04G02B23/24
    • A61B1/0002A61B1/00006A61B1/00018G02B23/2476
    • An endoscope 2 includes: a CCD 11 that picks up an image of a subject; an FPGA 13 that is controlled by a main body portion 3 to output a drive signal for driving the CCD 11 and transmits an image pickup signal outputted from the CCD 11 to the main body portion 3; rewritable flash memory 14 in which at least one of program data and setting data that relate to an operation of the FPGA 13 is stored; and a switch group 15 that, based on a rewriting instruction signal SW to the data in the flash memory, switches so that the data received by using all or a part of signal lines for the CCD 11, the lines being associated with observation of the subject, is inputted to the flash memory 14.
    • 内窥镜2包括:拾取对象的图像的CCD 11; 由主体部分3控制以输出用于驱动CCD 11的驱动信号并将从CCD 11输出的图像拾取信号发送到主体部分3的FPGA 13; 可重写闪存14,其中存储有与FPGA 13的操作相关的程序数据和设置数据中的至少一个; 以及开关组15,其基于对闪存中的数据的重写指令信号SW进行切换,以使得通过使用用于CCD 11的全部或部分信号线接收到的数据,所述行与观察 被摄体被输入到闪存14。
    • 5. 发明公开
    • SIGNAL OUTPUT SUBSTRATE AND ENDOSCOPE
    • SIGNALAUSGABEPLATINE UND ENDOSKOP
    • EP2351517A1
    • 2011-08-03
    • EP10797082.4
    • 2010-07-02
    • Olympus Medical Systems Corp.
    • TANAKA, YasuhiroOKAWA, FumiyukiHASHIMOTO, Hidenori
    • A61B1/04A61B18/12H04N5/225
    • A61B1/045A61B1/00006A61B1/00114A61B1/05H04N5/372H04N2005/2255
    • A signal output board 20 includes: a drive signal generation section 21 configured to generate a drive signal for a CCD 35; an inverse signal generation section 23 configured to generate an inverse signal by inverting a phase of the drive signal from the drive signal generation section 21; a first signal transmission line portion 24 configured to transmit the drive signal from the drive signal generation section 21; a second signal transmission line portion 25 configured to transmit the inverse signal from the inverse signal generation section 23, at least part of the second signal transmission line portion being arranged in parallel to and adjacent to the first signal transmission line portion 24; and an output end portion 26 configured to output the drive signal transmitted by the first signal transmission line portion 24, to the outside.
    • 信号输出板20包括:驱动信号生成部21,被配置为产生CCD35的驱动信号; 逆信号生成部23,通过使来自驱动信号生成部21的驱动信号的相位反相来生成反相信号; 配置为从驱动信号生成部21发送驱动信号的第一信号传输线部24; 第二信号传输线路部分25,被配置为从反向信号产生部分23发送反向信号;第二信号传输线部分的至少一部分平行布置成与第一信号传输线部分24相邻; 以及输出端部26,被配置为将由第一信号传输线部分24发送的驱动信号输出到外部。
    • 6. 发明公开
    • IMAGING SYSTEM
    • 成像系统
    • EP2687147A1
    • 2014-01-22
    • EP12869983.2
    • 2012-12-25
    • OLYMPUS MEDICAL SYSTEMS CORP.
    • HASHIMOTO, Hidenori
    • A61B1/04
    • H04N7/183A61B1/00006A61B1/045F04C2270/041H04N5/06H04N2005/2255
    • An image pickup system includes an image pickup device (CIS) provided with a TG which generates a first reference synchronization signal and includes a synchronization signal self-generating counter, and a processor provided with a TG that generates a second reference synchronization signal and a reference synchronization signal comparing section that compares the first reference synchronization signal superimposed on a video signal with the second reference synchronization signal, in which when a shift occurs between the first reference synchronization signal and the second reference synchronization signal, the processor transmits the second reference synchronization signal or phase correction amount information to the CIS, and the TG changes a timing of the first reference synchronization signal according to the second reference synchronization signal or the phase correction amount information.
    • 一种图像拾取系统包括:图像拾取装置(CIS),其设置有生成第一基准同步信号并包括同步信号自生成计数器的TG;以及处理器,其设置有生成第二基准同步信号和基准的基准同步信号 同步信号比较部分,其将叠加在视频信号上的第一基准同步信号与第二基准同步信号进行比较,其中当第一基准同步信号和第二基准同步信号之间发生移位时,处理器发送第二基准同步信号 或相位校正量信息提供给CIS,并且TG根据第二基准同步信号或相位校正量信息改变第一基准同步信号的定时。
    • 7. 发明公开
    • IMAGING DEVICE
    • 成像设备
    • EP2604176A1
    • 2013-06-19
    • EP11829324.0
    • 2011-09-29
    • Olympus Medical Systems Corp.
    • ONO, WataruHASHIMOTO, Hidenori
    • A61B1/06A61B1/04H04N9/04
    • H04N5/2256A61B1/045A61B1/05A61B1/0661H04N5/2354H04N5/353H04N9/045H04N2005/2255H04N2209/044
    • An endoscope system 100 according to the present invention includes a white light source 61, a special light source 62 that emits the special light that has a wavelength band different from the white illumination light, a CMOS image pickup element 80, a read address setting unit 53 that can arbitrarily set a pixel as a read target and a read order in the CMOS image pickup element 80, a control unit 55 that controls an irradiation process in each light source and changes a pixel as a read target and a read order set by the read address setting unit 53 according to a type of a light source that emits light, a timing generator 34 and an AFE unit 36 that read pixel information by causing pixel information to be output from a pixel set as a read target in the CMOS image pickup element 80, and an image processing unit 42 that generates an image from read pixel information.
    • 根据本发明的内窥镜系统100包括白光源61,发射具有与白色照明光不同的波长带的特殊光的特殊光源62,CMOS图像拾取元件80,读取地址设置单元 53,其可以在CMOS图像拾取元件80中任意地设定作为读取目标和读取顺序的像素;控制单元55,其控制每个光源中的照射处理并且将作为读取目标的像素和由 根据发光的光源的类型的读取地址设置单元53,定时发生器34和AFE单元36,其通过使像素信息从在CMOS图像中设置为读取目标的像素输出来读取像素信息 拾取元件80以及从读取的像素信息产生图像的图像处理单元42。