会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Process of producing magnetic recording media
    • 制作磁记录媒体的过程
    • US4548682A
    • 1985-10-22
    • US618512
    • 1984-06-08
    • Koichi YoshidaYoshio HirayamaYasuo OkaTakashi Kajiyama
    • Koichi YoshidaYoshio HirayamaYasuo OkaTakashi Kajiyama
    • C25D11/18G11B5/84C25D11/20
    • C25D11/18G11B5/84Y10S205/917
    • A magnetic recording medium having excellent magnetic properties and a uniform recording envelope suitable for, in particular, high-density recording is obtained by packing a magnetic substance in the micro pores of anodic oxide film formed on an aluminum substrate by subjecting the same to an anodic oxidation treatment to produce an anodic oxide film having a thickness of at least 4 .mu.m. The recording medium can be improved by immersing the anodized aluminum substrate in an acid or alkali bath to chemically dissolve a part of the anodic oxide film, and thereby enlarge the micro pores in the anodic oxide film to a pore diameter in the range of 300 .ANG. to 1,400 .ANG., optionally applying an electric current to the aluminum substrate in the immersion bath if necessary to control the thickness of the barrier layer in the anodic oxide film, before subjecting the treated substrate to an electrolytic treatment in a bath containing ions of a magnetic substance to deposit the magnetic substance in the enlarged micro pores. Thereafter, the surface of the anodic oxide film, and any excess deposited magnetic material thereon, is physically ground to expose the packed magnetic substance at the surface of the film.
    • 通过将形成在铝基板上的阳极氧化膜的微孔中的磁性物质包裹在阳极氧化膜上,获得具有优异的磁特性和适用于特别是高密度记录的均匀记录膜的磁记录介质 进行氧化处理,制作厚度为4μm以上的阳极氧化膜。 可以通过将阳极氧化铝基板浸渍在酸或碱浴中以化学溶解阳极氧化膜的一部分,从而将阳极氧化膜中的微孔扩大到300AG范围内的孔径,可以改善记录介质 如果需要,可以在浸渍浴中的铝基板上施加电流以控制阳极氧化膜中的阻挡层的厚度,然后在经过处理的基板在含有磁性离子的浴中进行电解处理 物质将磁性物质沉积在扩大的微孔中。 此后,阳极氧化膜的表面和其上的任何过量的沉积的磁性材料被物理研磨以在膜的表面露出包装的磁性物质。
    • 5. 发明授权
    • Imaging apparatus including an auto focusing function
    • 成像设备包括自动对焦功能
    • US07777802B2
    • 2010-08-17
    • US11873190
    • 2007-10-16
    • Junichi ShinoharaKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • Junichi ShinoharaKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • H04N5/232
    • H04N5/23212
    • An AF controlling unit (83) starts an outside light AF operation controlled by an outside AF unit (81) by a half-pressing of a shutter release button (61), and a change over between the outside AF operation and a CCDAF operation controlled by a CCDAF unit (82) is controlled corresponding to an elapsed time t (timer 84) from a starting of the operation of the outside light AF operation and a pressing condition (a detection of the half-pressing by a half-pressed detecting unit (62), the detection of a full-pressing by a full-pressed detecting unit (63) or a press-in releasing) of a shutter release button (61) after the starting of the outside light AF operation controlled by the outside AF unit (81) by the half-pressing of the shutter release button (61).
    • AF控制单元(83)通过半按快门释放按钮(61)开始由外部AF单元(81)控制的外部光AF操作,并且外部AF操作和CCDAF操作之间的转换被控制 由CCDAF单元(82)根据外部光AF操作的开始和按压状态(半按压检测单元的半按压检测)对应于经过时间t(定时器84)来控制 (62),在由外部AF控制的外部光AF操作开始之后快门释放按钮(61)的全按压检测单元(63)的全按下检测或压入释放) 单元(81)通过半按快门释放按钮(61)。
    • 6. 发明申请
    • IMAGING APPARATUS
    • 成像设备
    • US20080036901A1
    • 2008-02-14
    • US11873190
    • 2007-10-16
    • Junichi SHINOHARAKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • Junichi SHINOHARAKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • G03B13/36H04N5/232
    • H04N5/23212
    • An AF controlling unit (83) starts an outside light AF operation controlled by an outside AF unit (81) by a half-pressing of a shutter release button (61), and a change over between the outside AF operation and a CCDAF operation controlled by a CCDAF unit (82) is controlled corresponding to an elapsed time t (timer 84) from a starting of the operation of the outside light AF operation and a pressing condition (a detection of the half-pressing by a half-pressed detecting unit (62), the detection of a full-pressing by a full-pressed detecting unit (63) or a press-in releasing) of a shutter release button (61) after the starting of the outside light AF operation controlled by the outside AF unit (81) by the half-pressing of the shutter release button (61).
    • AF控制单元(83)通过半按快门释放按钮(61)开始由外部AF单元(81)控制的外部光AF操作,并且外部AF操作和CCDAF操作之间的转换被控制 由CCDAF单元(82)根据外部光AF操作的开始和按压状态(半按压检测单元的半按压检测)对应于经过时间t(定时器84)来控制 (62),在由外部AF控制的外部光AF操作开始之后快门释放按钮(61)的全按压检测单元(63)的全按下检测或压入释放) 单元(81)通过半按快门释放按钮(61)。
    • 7. 发明授权
    • Transmitter
    • 发射机
    • US08605813B2
    • 2013-12-10
    • US13579387
    • 2011-02-25
    • Hiroyuki AkutagawaTakashi KajiyamaTakehiko Kobayashi
    • Hiroyuki AkutagawaTakashi KajiyamaTakehiko Kobayashi
    • H04L27/00
    • H04L27/2071H04B7/0669H04L1/0643
    • In a transmitter, communication is efficiently performed by a DSTBC scheme.In a transmitter which transmits a signal using the DSTBC scheme, the content of a transmission process is set so that a state where a symbol is not present is realized at the origin of signal arrangement in a DSTBC encoder. As an example, the setting is performed so that an input to the DSTBC encoder is calculated using a predetermined operation in which a state where a symbol is not present is realized at the origin of signal arrangement in the DSTBC encoder. As another example, the setting is performed so that initial values in which a state where a symbol is not present is realized at the origin of signal arrangement in the DSTBC encoder are used in differential encoding of the DSTBC encoder.
    • 在发射机中,通过DSTBC方案有效地进行通信。 在使用DSTBC方案发送信号的发送机中,将发送处理的内容设定为在DSTBC编码器的信号原理的原点实现符号不存在的状态。 作为示例,执行设置,使得使用在DSTBC编码器中的信号排列的原点实现不存在符号的状态的预定操作来计算到DSTBC编码器的输入。 作为另一示例,执行设置,使得在DSTBC编码器中的信号排列的原点处实现其中不存在符号的状态的初始值用于DSTBC编码器的差分编码。
    • 8. 发明申请
    • Imaging device and control method of imaging device
    • 成像装置成像装置及其控制方法
    • US20080211926A1
    • 2008-09-04
    • US12068837
    • 2008-02-12
    • Takashi Kajiyama
    • Takashi Kajiyama
    • H04N5/76
    • H04N5/772G11B27/034G11B27/322G11B2220/61H04N5/765H04N5/907H04N9/8042H04N9/8205
    • An imaging device to which a portable storage medium is attachable, includes: a portable storage medium attachment section which attaches the portable storage medium; an inside storage medium which links image data imaged to information of imaging date and time and stores the data; and a transfer control section which controls a transfer of the image data from the inside storage medium to the portable storage medium, the portable storage medium having a data area which stores the image data transferred and a system area which stores management data generated corresponding to the image data stored in the data area, the transfer control section setting time stamp information of the management data generated in the portable storage medium corresponding to the image data transferred from the inside storage medium to the portable storage medium as the information of imaging date and time linked to the image data transferred.
    • 便携式存储介质可附接到的成像装置包括:便携式存储介质连接部分,其附接便携式存储介质; 内部存储介质,其将成像到成像日期和时间的信息的图像数据链接并存储数据; 以及传送控制部分,其控制从内部存储介质到便携式存储介质的图像数据的传送,所述便携式存储介质具有存储传送的图像数据的数据区域和存储对应于所生成的图像数据生成的管理数据的系统区域 存储在数据区域中的图像数据,传送控制部分将与从内部存储介质传送到便携式存储介质的图像数据相对应的便携式存储介质中生成的管理数据的时间戳信息设置为成像日期和时间的信息 链接到传输的图像数据。
    • 9. 发明授权
    • Imaging apparatus
    • 成像设备
    • US07301579B2
    • 2007-11-27
    • US10636712
    • 2003-08-08
    • Junichi ShinoharaKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • Junichi ShinoharaKohichi SugiuraKenji ShiraishiTakashi Kajiyama
    • H04N5/232
    • H04N5/23212
    • An AF controlling unit (83) starts an outside light AF operation controlled by an outside AF unit (81) by a half-pressing of a shutter release button (61), and a change over between the outside AF operation and a CCDAF operation controlled by a CCDAF unit (82) is controlled corresponding to an elapsed time t (timer 84) from a starting of the operation of the outside light AF operation and a pressing condition (a detection of the half-pressing by a half-pressed detecting unit (62), the detection of a full-pressing by a full-pressed detecting unit (63) or a press-in releasing) of a shutter release button (61) after the starting of the outside light AF operation controlled by the outside AF unit (81) by the half-pressing of the shutter release button (61).
    • AF控制单元(83)通过半按快门释放按钮(61)开始由外部AF单元(81)控制的外部光AF操作,并且外部AF操作和CCDAF操作之间的转换被控制 由CCDAF单元(82)根据外部光AF操作的开始和按压状态(半按压检测单元的半按压检测)对应于经过时间t(定时器84)来控制 (62),在由外部AF控制的外部光AF操作开始之后快门释放按钮(61)的全按压检测单元(63)的全按下检测或压入释放) 单元(81)通过半按快门释放按钮(61)。
    • 10. 发明申请
    • TRANSMITTER
    • 发射机
    • US20120314800A1
    • 2012-12-13
    • US13579387
    • 2011-02-25
    • Hiroyuki AkutagawaTakashi KajiyamaTakehiko Kobayashi
    • Hiroyuki AkutagawaTakashi KajiyamaTakehiko Kobayashi
    • H04L27/00
    • H04L27/2071H04B7/0669H04L1/0643
    • In a transmitter, communication is efficiently performed by a DSTBC scheme.In a transmitter which transmits a signal using the DSTBC scheme, the content of a transmission process is set so that a state where a symbol is not present is realized at the origin of signal arrangement in a DSTBC encoder. As an example, the setting is performed so that an input to the DSTBC encoder is calculated using a predetermined operation in which a state where a symbol is not present is realized at the origin of signal arrangement in the DSTBC encoder. As another example, the setting is performed so that initial values in which a state where a symbol is not present is realized at the origin of signal arrangement in the DSTBC encoder are used in differential encoding of the DSTBC encoder.
    • 在发射机中,通过DSTBC方案有效地进行通信。 在使用DSTBC方案发送信号的发送机中,将发送处理的内容设定为在DSTBC编码器的信号原理的原点实现符号不存在的状态。 作为示例,执行设置,使得使用在DSTBC编码器中的信号排列的原点实现不存在符号的状态的预定操作来计算到DSTBC编码器的输入。 作为另一示例,执行设置,使得在DSTBC编码器中的信号排列的原点处实现其中不存在符号的状态的初始值用于DSTBC编码器的差分编码。