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    • 1. 发明授权
    • Thin film magnetic head
    • 薄膜磁头
    • US5157569A
    • 1992-10-20
    • US704226
    • 1991-05-22
    • Noriyuki KumasakaKenkichi InadaIkuo ShintaSigeo ImaiSouzou Sasajima
    • Noriyuki KumasakaKenkichi InadaIkuo ShintaSigeo ImaiSouzou Sasajima
    • G11B5/127G11B5/187
    • G11B5/1871
    • A magnetic head having a pair of nonmagnetic core base bodies coupled to each other in such a manner that amorphous magnetic alloy films are applied to their abutment surfaces and a gap layer is interposed in a magnetic gap of the head, the films applied to the bodies being made abut against each other at their end edge surfaces each of which has a width larger than its film thickness, and at least one of the bodies having a coil winding groove formed at a portion at which the bodies are coupled to each other. Surface layer portions of each of the bodies, with which a magnetic tape comes into contact, are removed along a direction in which the magnetic tape moves, to a depth which is substantially the same as the depth of the gap while leaving a widthwise portion, which is the same as the track width defined by the width of contact between the two end edge surfaces of the films, at the widthwise center of the bodies, two recesses which are formed by removing the surface layer portions being filled with 2MgO--SiO.sub.2 or MgO--SiO.sub.2, and another amorphous magnetic alloy film is applied to the inner surface of the coil winding groove which defines a coil winding aperture and the latter film is integrally continued to the former films.
    • 一种具有一对非磁性芯基体的磁头,其以非磁性合金膜施加到其邻接表面并且将间隙层插入到磁头的磁隙中的方式彼此连接,所述膜施加到主体 在它们的端部边缘表面彼此抵接,每个端部边缘具有大于其膜厚度的宽度,并且至少一个主体具有形成在主体彼此连接的部分处的线圈缠绕槽。 磁带接触的每个主体的表面层部分沿着磁带移动的方向被移除到与间隙的深度基本相同的深度,同时留下宽度方向部分, 其与由膜的两个端边缘表面之间的接触宽度限定的轨道宽度相同,在主体的宽度方向中心处,通过去除填充有2MgO-SiO 2的表面层部分形成的两个凹部 MgO-SiO 2和另一种非晶磁性合金膜施加到限定线圈卷绕孔的线圈卷绕槽的内表面,并且后者的膜与前一个膜一体地连续。
    • 3. 发明授权
    • Drive device, image acquisition device, and electronic apparatus
    • 驱动装置,图像采集装置和电子装置
    • US09083870B2
    • 2015-07-14
    • US13055571
    • 2009-07-22
    • Hitoshi KawamuraManabu TaniTakashi HasudaIkuo ShintaSusumu AokiKeisuke Taguchi
    • Hitoshi KawamuraManabu TaniTakashi HasudaIkuo ShintaSusumu AokiKeisuke Taguchi
    • H04N5/225G02B7/08H02N2/02H04N1/00
    • H04N5/2254G02B7/08H02N2/025H04N1/00307H04N5/2257
    • A drive device in which the frequency of a drive waveform applied to a piezoelectric element is easily settable with less obligation to consider resonance in a stationary member. The device includes a piezo element that expands and contracts according to a drive voltage, a transmission shaft that receives vibration produced by the piezo element, a stationary member that holds the transmission shaft in a slidable state along the longitudinal direction of the transmission shaft, and a lens holder that is displaced together with the piezo element and transmission shaft relative to the stationary member according to drive of the piezo element. The piezo element and the transmission shaft move in the moving direction of the lens holder in synchronization with the lens holder according to drive of the piezo element in the state where the piezo element is spaced from the stationary member. By employing this structure, the frequency of the drive waveform applied to the piezo element can be set easily without considering resonance in the stationary member.
    • 一种驱动装置,其中施加到压电元件的驱动波形的频率可以容易地设置,而在固定构件中考虑共振的义务较少。 该装置包括根据驱动电压而膨胀和收缩的压电元件,接收由压电元件产生的振动的传动轴;沿着传动轴的纵向保持传动轴处于滑动状态的固定部件;以及 根据压电元件的驱动,与压电元件和传动轴相对于固定部件一起移动的透镜保持器。 压电元件和传动轴在压电元件与固定构件间隔开的状态下,根据压电元件的驱动与透镜保持器同步地在透镜保持器的移动方向上移动。 通过采用这种结构,可以容易地设置施加到压电元件的驱动波形的频率,而不考虑固定构件的共振。
    • 4. 发明申请
    • Imaging apparatus and optical axis correction method of imaging apparatus
    • 成像设备的成像设备和光轴校正方法
    • US20100141734A1
    • 2010-06-10
    • US12588761
    • 2009-10-27
    • Manabu TaniKeisuke TaguchiIkuo Shinta
    • Manabu TaniKeisuke TaguchiIkuo Shinta
    • H04N7/00
    • H04N5/232H04N5/23238H04N5/23296
    • An imaging apparatus includes a plurality of imaging units each having a lens and an image pickup device. At least one of the imaging units is a wide-angle imaging unit having a lens with a wider angle of view, and at least another one is a zoom imaging unit having a lens with a narrower angle of view and a higher magnification and mounted rotatably to the imaging apparatus. The imaging apparatus includes a driving unit that rotates the zoom imaging unit to change an imaging range of the zoom imaging unit, an image comparison unit that compares a partial image of a wide-angle image captured by the wide-angle imaging unit and a magnified image captured by the zoom imaging unit, and an optical axis information update unit that updates optical axis information of the zoom imaging unit based on a comparison result of the image comparison unit.
    • 一种成像装置包括多个具有透镜和图像拾取装置的成像单元。 成像单元中的至少一个是具有宽视角的透镜的广角成像单元,并且至少另一个是具有较窄视角和更高倍率的透镜的变焦成像单元,并且可旋转地安装 到成像装置。 成像装置包括:驱动单元,其使变焦成像单元旋转以改变变焦成像单元的成像范围;图像比较单元,其将由广角成像单元拍摄的广角图像的部分图像与放大图像 由缩放成像单元拍摄的图像,以及光轴信息更新单元,其基于图像比较单元的比较结果来更新缩放成像单元的光轴信息。
    • 5. 发明申请
    • DRIVE DEVICE, IMAGE ACQUISITION DEVICE, AND ELECTRONIC APPARATUS
    • 驱动装置,图像获取装置和电子装置
    • US20110242403A1
    • 2011-10-06
    • US13055571
    • 2009-07-22
    • Hitoshi KawamuraManabu TaniTakashi HasudaIkuo ShintaSusumu AokiKeisuke Taguchi
    • Hitoshi KawamuraManabu TaniTakashi HasudaIkuo ShintaSusumu AokiKeisuke Taguchi
    • H04N5/225H02N2/04G02B7/04
    • H04N5/2254G02B7/08H02N2/025H04N1/00307H04N5/2257
    • A drive device in which the frequency of a drive waveform applied to a piezoelectric element is easily settable with less obligation to consider resonance in a stationary member. The device includes a piezo element that expands and contracts according to a drive voltage, a transmission shaft that receives vibration produced by the element, a stationary member that holds the transmission shaft in a slidable state along the longitudinal direction of the transmission shaft, and a lens holder that is displaced together with the piezo element and transmission shaft relative to the stationary member according to drive of the piezo element. The piezo element and the transmission shaft move in the moving direction of the lens holder in synchronization with the lens holder according to drive of the piezo element in the state where the piezo element is spaced from the stationary member. By employing this structure, the frequency of the drive waveform applied to the piezo element can be set easily without considering resonance in the stationary member.
    • 一种驱动装置,其中施加到压电元件的驱动波形的频率可以容易地设置,而在固定构件中考虑共振的义务较少。 该装置包括根据驱动电压而膨胀和收缩的压电元件,接收由该元件产生的振动的传动轴;沿着传动轴的纵向保持传动轴处于滑动状态的固定部件;以及 透镜架,其与压电元件和传动轴一起相对于静止构件与压电元件的驱动一起移位。 压电元件和传动轴在压电元件与固定构件间隔开的状态下,根据压电元件的驱动与透镜保持器同步地在透镜保持器的移动方向上移动。 通过采用这种结构,可以容易地设置施加到压电元件的驱动波形的频率,而不考虑固定构件的共振。
    • 6. 发明授权
    • Camera module and imaging apparatus
    • 相机模块和成像设备
    • US07980773B2
    • 2011-07-19
    • US11984979
    • 2007-11-26
    • Susumu AokiIkuo Shinta
    • Susumu AokiIkuo Shinta
    • G03B17/00G02B17/02
    • G03B17/48H04N5/2251H04N5/2257
    • A camera module includes a sensor for converting incident light incident thereto into an electric signal and outputting the electric signal therefrom, a glass cover for transmitting therethrough light to the sensor, the light being the incident light; a flexible printed circuit for receiving as an input thereto the electric signal outputted from the sensor, a lens unit for focusing the incident light onto the sensor, and a pedestal for holding the lens unit, the pedestal including a sidewall section which includes a lower end surface being fixed onto the flexible printed circuit by use of adhesive. A depression is formed along the sidewall section of the mount to discard the adhesive therein.
    • 相机模块包括用于将入射到其中的入射光转换成电信号并从其输出电信号的传感器,用于将光透射到传感器的玻璃盖,作为入射光的光; 用于接收从传感器输出的电信号作为输入的柔性印刷电路,用于将入射光聚焦到传感器上的透镜单元和用于保持透镜单元的基座,该基座包括侧壁部分,该侧壁部分包括下端 表面通过使用粘合剂固定在柔性印刷电路上。 沿着安装件的侧壁部分形成凹陷部,以将粘合剂丢弃在其中。