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    • 32. 发明授权
    • Image pickup apparatus, interchangeable lens unit, camera body, and ultrasonic motor driving apparatus
    • 图像拾取装置,可互换镜头单元,照相机主体和超声波马达驱动装置
    • US08228389B2
    • 2012-07-24
    • US12338216
    • 2008-12-18
    • Kenji KawazoeYasuhiro ShinguNorikazu KatsuyamaHiroyuki Kawahara
    • Kenji KawazoeYasuhiro ShinguNorikazu KatsuyamaHiroyuki Kawahara
    • H04N5/225H02N2/00
    • H04N5/23212G02B7/08G03B3/00H04N5/2254
    • An image pickup apparatus of the present invention is an image pickup apparatus including an ultrasonic motor 35 that moves a focus lens 24, and further including a correction control part 100 that operates the ultrasonic motor 35 under a predetermined condition. The correction control part 100 is capable of executing a correction process by measuring a frequency characteristic of an applied voltage at the time of operating the ultrasonic motor 35 at a predetermined rotation speed, comparing the frequency characteristic with a preset reference frequency characteristic, and correcting the frequency characteristics on the basis of a difference between the frequency characteristic and the reference frequency characteristic so as to calculate a correction frequency characteristic. Accordingly, even when the frequency characteristic of the ultrasonic motor varies due to wear of the ultrasonic motor and mechanical components coupled thereto, a stable drive can be maintained over a long time.
    • 本发明的图像拾取装置是包括移动聚焦透镜24的超声波马达35的图像拾取装置,并且还包括在预定条件下操作超声波马达35的校正控制部100。 校正控制部100能够通过以预定的转速测量超声波马达35的运转时的施加电压的频率特性,将频率特性与预先设定的基准频率特性进行比较来进行校正处理, 基于频率特性和参考频率特性之间的差异来计算校正频率特性。 因此,即使当超声波马达的频率特性由于超声波马达的磨损和与其耦合的机械部件而变化时,可以长时间保持稳定的驱动。
    • 33. 发明申请
    • EJECTION DEVICE AND DROPLET DISPOSITION METHOD
    • 喷射装置和喷射处理方法
    • US20110274848A1
    • 2011-11-10
    • US13143497
    • 2009-10-09
    • Kenji Kawazoe
    • Kenji Kawazoe
    • B05D1/02H01L21/334B05C13/00B05B1/00B05C11/00
    • G02F1/13394G02F1/1303G02F1/1339G02F1/13392
    • An ejection device in which a multi-nozzle mechanism including failure nozzles ejects droplets such that variation in amounts of droplets (spacers) is prevented and droplets are disposed on spacer regions of a substrate. An ejection device includes a multi-nozzle mechanism including a pair of nozzle row units prepared by equally dividing a nozzle row including a plurality of nozzles ejecting a spacer dispersion liquid, a moving mechanism relatively moving the multi-nozzle mechanism and a substrate in the longitudinal direction and the align direction of spacer regions, and a control mechanism controlling the nozzles and the moving mechanism. When one nozzle row unit includes a failure nozzle, the control mechanism gives a command to the failure nozzle not to eject the liquid and a command to a corresponding nozzle of the other unit to halve cycles of forward and backward paths.
    • 其中包括故障喷嘴的多喷嘴机构喷射液滴以防止液滴(间隔物)的量的变化并且液滴设置在基板的间隔区域上的喷射装置。 喷射装置包括多喷嘴机构,该多喷嘴机构包括一对喷嘴行单元,其通过均匀分割包括喷射间隔分散液的多个喷嘴的喷嘴列,使多喷嘴机构相对移动的移动机构和纵向 方向和间隔区域的排列方向,以及控制喷嘴和移动机构的控制机构。 当一个喷嘴排单元包括故障喷嘴时,控制机构向故障喷嘴提供不将液体喷射的命令,并且向另一单元的相应喷嘴发出命令以使前进和后退路径的周期减半。
    • 37. 发明授权
    • Recording apparatus
    • 记录装置
    • US07325898B2
    • 2008-02-05
    • US10607341
    • 2003-06-27
    • Kenji KawazoeKazuhiko Takahashi
    • Kenji KawazoeKazuhiko Takahashi
    • B41J29/393
    • B41J11/008B41J3/4071B41J11/0095B41J19/202
    • A recording apparatus for recording on a recording material with a recording unit includes a carriage unit having a carriage that moves relative to the recording material. The carriage mounts the recording unit, which records an image on the recording material, and an adjustment head that includes an adjustment sensor, and a detection sensor is provided on the carriage to detect a position of the recording material. An offset amount is determined between a detected position detected by the detection sensor and a correct position by reading a common mark with the adjustment sensor of the adjustment head and the detection sensor. The recording unit records an image at a corrected position on the recording material based on the determined offset amount.
    • 用于用记录单元记录在记录材料上的记录装置包括具有相对于记录材料移动的滑架的滑架单元。 滑架将记录在记录材料上的图像的记录单元和包括调节传感器的调节头安装在滑架上,以检测记录材料的位置。 通过利用调节头和检测传感器的调节传感器读取公共标记,在检测传感器检测到的检测位置和正确位置之间确定偏移量。 记录单元基于所确定的偏移量将记录材料上的校正位置处的图像记录在记录材料上。
    • 38. 发明授权
    • Ejection device and droplet disposition method
    • 喷射装置和液滴配置方法
    • US08794180B2
    • 2014-08-05
    • US13143497
    • 2009-10-09
    • Kenji Kawazoe
    • Kenji Kawazoe
    • B05C11/00B05D1/02B05D1/00B05B1/14B05B1/00G02F1/1339
    • G02F1/13394G02F1/1303G02F1/1339G02F1/13392
    • An ejection device in which a multi-nozzle mechanism including failure nozzles ejects droplets such that variation in amounts of droplets (spacers) is prevented and droplets are disposed on spacer regions of a substrate. An ejection device includes a multi-nozzle mechanism including a pair of nozzle row units prepared by equally dividing a nozzle row including a plurality of nozzles ejecting a spacer dispersion liquid, a moving mechanism relatively moving the multi-nozzle mechanism and a substrate in the longitudinal direction and the align direction of spacer regions, and a control mechanism controlling the nozzles and the moving mechanism. When one nozzle row unit includes a failure nozzle, the control mechanism gives a command to the failure nozzle not to eject the liquid and a command to a corresponding nozzle of the other unit to halve cycles of forward and backward paths.
    • 其中包括故障喷嘴的多喷嘴机构喷射液滴以防止液滴(间隔物)的量的变化并且液滴设置在基板的间隔区域上的喷射装置。 喷射装置包括多喷嘴机构,该多喷嘴机构包括一对喷嘴行单元,其通过均匀分割包括喷射间隔分散液的多个喷嘴的喷嘴列,使多喷嘴机构相对移动的移动机构和纵向 方向和间隔区域的排列方向,以及控制喷嘴和移动机构的控制机构。 当一个喷嘴排单元包括故障喷嘴时,控制机构向故障喷嘴提供不将液体喷射的命令,并且向另一单元的相应喷嘴发出命令以使前进和后退路径的周期减半。
    • 40. 发明申请
    • CAMERA SYSTEM
    • 相机系统
    • US20110063472A1
    • 2011-03-17
    • US12992790
    • 2009-05-15
    • Naotake KitahiraMitsuyoshi OkamotoKenji KawazoeKoji Shibuno
    • Naotake KitahiraMitsuyoshi OkamotoKenji KawazoeKoji Shibuno
    • H04N5/232H04N5/228
    • G03B17/14G03B13/36G03B2205/0007H04N5/23209H04N5/23212
    • A camera system includes a camera body (100) and an interchangeable lens (200). The camera body includes an imaging unit that captures a subject image formed by the interchangeable lens in a predetermined capturing cycle to generate image data, a body controller that generates a synchronizing signal having a first cycle correlated with the capturing cycle, and a sending unit that sends the generated synchronizing signal to the interchangeable lens. The body controller further sends information indicating a second cycle different from the first cycle to the interchangeable lens. The interchangeable lens includes a focus lens (230), a drive unit (233) that drives the focus lens along an optical axis, a receiving unit (250) that receives the synchronizing signal and the information indicating the second cycle sent from the camera body, and a lens controller (240) that controls an operation of the interchangeable lens. The lens controller controls the drive unit to perform, in the second cycle, a minute back and forth driving which minutely moves the focus lens back and forth along the optical axis, and performs other control in the first cycle in the interchangeable lens than the control of the minute back and forth driving.
    • 相机系统包括照相机主体(100)和可互换镜头(200)。 相机主体包括成像单元,其以预定的拍摄周期拍摄由可互换镜头形成的被摄体图像以产生图像数据;身体控制器,其生成具有与拍摄周期相关的第一周期的同步信号;发送单元, 将产生的同步信号发送到可互换镜头。 身体控制器还向可互换镜头发送指示与第一周期不同的第二循环的信息。 可互换镜头包括聚焦透镜(230),沿着光轴驱动聚焦透镜的驱动单元(233),接收单元(250),其接收同步信号和指示从相机机体发送的第二周期的信息 以及控制可更换镜头的操作的镜头控制器(240)。 透镜控制器控制驱动单元在第二周期中执行沿光轴微小地移动聚焦透镜的微小的前后驱动,并且在可互换镜头中的第一周期中执行与控制相对应的其他控制 的分钟来回驾驶。