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    • 32. 发明申请
    • Image-capturing apparatus
    • 图像捕获设备
    • US20080252753A1
    • 2008-10-16
    • US12213090
    • 2008-06-13
    • Satoshi EjimaToshiaki KobayashiTomoaki KawamuraKazuya UmeyamaYoji Uchiyama
    • Satoshi EjimaToshiaki KobayashiTomoaki KawamuraKazuya UmeyamaYoji Uchiyama
    • H04N5/76
    • H04N5/23293
    • An image-capturing apparatus includes: an image-capturing element that captures an image of a subject through a photographic lens and outputs the captured image of the subject as image data; a display device that displays the image of the subject; a recording device that records the image data at a recording medium; a display control device that displays a first image prepared based upon the image data output by the image-capturing element and a second image prepared based upon the image data recorded at the recording medium on the display device; and an instruction device that issues an instruction to the display control device to display the first image and the second image in response to a user instruction operation when the first image is on display at the display device.
    • 摄像装置包括:摄像元件,其通过拍摄镜头拍摄被摄体的图像,并将被摄体的拍摄图像作为图像数据输出; 显示对象的图像的显示装置; 在记录介质上记录图像数据的记录装置; 显示控制装置,其显示基于由图像拍摄元件输出的图像数据准备的第一图像和基于记录在记录介质上的图像数据准备在显示装置上的第二图像; 以及指示装置,当在显示装置上显示第一图像时,响应于用户指令操作向显示控制装置发出指示以显示第一图像和第二图像。
    • 36. 发明授权
    • Finder optical system and electronic image pickup apparatus using the
same
    • Finder光学系统和使用其的电子摄像装置
    • US5848308A
    • 1998-12-08
    • US863067
    • 1997-05-23
    • Tomoaki Kawamura
    • Tomoaki Kawamura
    • G03B13/06G02B23/14G03B17/20G03B19/02H04N5/225G03B13/08
    • G02B23/14H04N5/2251H04N5/23293
    • A finder optical system includes a photographing lens, an eyepiece having an optical axis substantially collinear with an optical axis of the photographing lens, and a relay optical system, including a relay lens system, disposed between the photographing lens and the eyepiece for optically connecting a primary focal plane of the photographing lens to a secondary focal plane disposed to be observed through the eyepiece. The relay lens system has an optical axis that is parallel with the optical axes of the photographing lens and the eyepiece, and the relay optical system includes a first pair of reflecting mirrors that relay the optical axis of the photographing lens to the optical axis of the relay lens system, and a second pair of reflecting mirrors that relay the optical axis of the relay lens system to the optical axis of the eyepiece.
    • 取景器光学系统包括拍摄镜头,具有与拍摄镜头的光轴基本共线的光轴的目镜,以及设置在拍摄镜头和目镜之间的中继透镜系统的中继光学系统,用于光学连接 将拍摄镜头的主焦平面设置成通过目镜被观察的二次焦平面。 中继透镜系统具有与拍摄镜头和目镜的光轴平行的光轴,并且中继光学系统包括第一对反射镜,其将拍摄镜头的光轴中继到拍摄镜头的光轴 中继透镜系统和将中继透镜系统的光轴中继到目镜的光轴的第二对反射镜。
    • 37. 发明授权
    • Lens device and method
    • 镜头装置和方法
    • US5630187A
    • 1997-05-13
    • US493497
    • 1995-06-22
    • Tomoaki Kawamura
    • Tomoaki Kawamura
    • G02B7/08G03B7/26
    • G02B7/08
    • A lens device that is not affected by changes in environmental conditions and is capable of manual and automatic focussing of the lens. Specifically, the lens device generates an appropriate operational load during manual operations of the lens using a simple structure. The lens device includes a lens barrel containing a lens holding barrel holding the lens. The operation ring has the ability to rotate and is fitted around the outer periphery of the lens barrel. The lens drive device includes a motor, a deceleration device, a motor drive circuit, and a variable resistor. The motor has the ability to generate electricity. The selection switch selectively connects the motor to either the motor drive circuit or the variable resistor. During automatic operation, the motor is connected to the motor drive circuit. The motor drive circuit is the power source of and drives the motor. The driven motor rotates the operation ring to adjust the focus through the deceleration device. During manual lens operation, the motor is connected to the variable resistor. Through the deceleration device, electricity is generated because of operation ring rotation. The generated electric power is consumed by the variable resistor and the motor, thereby generating an appropriate operational load. The resistance of the variable resistor can be set through an adjustment knob.
    • 一种不受环境条件变化影响的透镜装置,能够手动和自动地对透镜进行聚焦。 具体地,透镜装置使用简单的结构在透镜的手动操作期间产生适当的操作负载。 透镜装置包括容纳保持透镜的透镜保持筒的镜筒。 操作环具有旋转的能力并围绕镜筒的外周安装。 镜头驱动装置包括马达,减速装置,马达驱动电路和可变电阻器。 电机有发电的能力。 选择开关选择性地将电动机连接到电机驱动电路或可变电阻器。 在自动运行过程中,电机连接到电机驱动电路。 电机驱动电路是驱动电机的电源。 从动电机旋转操作环,通过减速装置调节焦点。 在手动镜头操作期间,电机连接到可变电阻。 通过减速装置,由于操作环旋转而产生电力。 所产生的电力被可变电阻器和电动机消耗,从而产生适当的操作负载。 可变电阻器的电阻可以通过调节旋钮来设定。
    • 39. 发明授权
    • Electronic camera
    • 电子相机
    • US07606477B2
    • 2009-10-20
    • US11355963
    • 2006-02-17
    • Tomoaki Kawamura
    • Tomoaki Kawamura
    • G03B17/00
    • G03B5/00G02B27/646G03B17/20G03B2205/0038G03B2207/005G03B2217/005G03B2217/007H04N5/23248H04N5/23287
    • An electronic camera includes: an image-capturing unit including an image-capturing device and an image-capturing optical system; a blur detecting unit; a moving unit moving part or all of the image-capturing unit to eliminate the blur according to the detection result; a reading unit reading the image from the image-capturing device; a viewfinder displaying unit continuously displaying the image read; an operating unit accepting a user instruction; and a controlling unit performing, when the start of photographing is not instructed, electronic blur correction by controlling the reading unit to continuously change an image-capturing range of the image-capturing device or continuously changing a range of the image read to be displayed on the viewfinder displaying unit, and ends, when it is instructed, the electronic blur correction and performs optical blur correction by controlling the moving unit. Accordingly, appropriate blur correction is feasible with an increase in power consumption suppressed.
    • 电子照相机包括:图像捕获单元,包括图像捕获装置和图像捕获光学系统; 模糊检测单元; 移动单元移动部分或全部图像捕获单元以根据检测结果消除模糊; 读取单元,从所述图像捕获装置读取图像; 取景器显示单元连续地显示所读取的图像; 接受用户指令的操作单元; 以及控制单元,当没有指示拍摄开始时,通过控制所述读取单元连续地改变所述图像捕获设备的图像捕获范围或者连续地改变要被显示的图像的范围,执行电子模糊校正 取景器显示单元,并且当其被指示时结束电子模糊校正,并且通过控制移动单元执行光学模糊校正。 因此,抑制功耗的增加,适当的模糊校正是可行的。