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    • 11. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20140270827A1
    • 2014-09-18
    • US14203847
    • 2014-03-11
    • Tetsuya MUTOShuji HiraiShinichi AkatsuShingo SuzukiSatoshi KanekoKeita GotohYuuichiroh Uematsu
    • Tetsuya MUTOShuji HiraiShinichi AkatsuShingo SuzukiSatoshi KanekoKeita GotohYuuichiroh Uematsu
    • G03G15/00
    • G03G15/5058G03G2215/0116G03G2215/0129G03G2215/0141G03G2215/0161G03G2215/0164
    • An image forming apparatus includes an image carrier, a rotation-position detector, a development device, a transfer unit, a density sensor, and an image-forming-condition determination unit. The density sensor senses a density of a toner image on a transfer body. The image-forming-condition determination unit forms an image pattern, acquires periodical density variation information sensed by the density sensor and detection information of the rotation-position detector, and determines an image forming condition based on the periodical density variation information and the detection information acquired. The image carrier and the transfer body are different in linear velocity in an image formation in which the toner image is transferred to a recording medium. The image carrier and the transfer body are controlled to be equal in linear velocity in an information acquisition in which the image-forming-condition determination unit acquires the periodical density variation information and the detection information.
    • 图像形成装置包括图像载体,旋转位置检测器,显影装置,转印单元,密度传感器和图像形成条件确定单元。 密度传感器感测转印体上的调色剂图像的浓度。 图像形成条件确定单元形成图像图案,获取由密度传感器感测的周期密度变化信息和旋转位置检测器的检测信息,并且基于周期密度变化信息和检测信息确定图像形成条件 获得了 在将调色剂图像转印到记录介质的图像形成中,图像载体和转印体的线速度不同。 在图像形成条件确定单元获取周期密度变化信息和检测信息的信息获取中,图像载体和转印体被控制为线性速度相等。
    • 12. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US09141059B2
    • 2015-09-22
    • US14203847
    • 2014-03-11
    • Tetsuya MutoShuji HiraiShinichi AkatsuShingo SuzukiSatoshi KanekoKeita GotohYuuichiroh Uematsu
    • Tetsuya MutoShuji HiraiShinichi AkatsuShingo SuzukiSatoshi KanekoKeita GotohYuuichiroh Uematsu
    • G03G15/00
    • G03G15/5058G03G2215/0116G03G2215/0129G03G2215/0141G03G2215/0161G03G2215/0164
    • An image forming apparatus includes an image carrier, a rotation-position detector, a development device, a transfer unit, a density sensor, and an image-forming-condition determination unit. The density sensor senses a density of a toner image on a transfer body. The image-forming-condition determination unit forms an image pattern, acquires periodical density variation information sensed by the density sensor and detection information of the rotation-position detector, and determines an image forming condition based on the periodical density variation information and the detection information acquired. The image carrier and the transfer body are different in linear velocity in an image formation in which the toner image is transferred to a recording medium. The image carrier and the transfer body are controlled to be equal in linear velocity in an information acquisition in which the image-forming-condition determination unit acquires the periodical density variation information and the detection information.
    • 图像形成装置包括图像载体,旋转位置检测器,显影装置,转印单元,密度传感器和图像形成条件确定单元。 密度传感器感测转印体上的调色剂图像的浓度。 图像形成条件确定单元形成图像图案,获取由密度传感器感测的周期密度变化信息和旋转位置检测器的检测信息,并且基于周期密度变化信息和检测信息确定图像形成条件 获得了 在将调色剂图像转印到记录介质的图像形成中,图像载体和转印体的线速度不同。 在图像形成条件确定单元获取周期密度变化信息和检测信息的信息获取中,图像载体和转印体被控制为线性速度相等。
    • 14. 发明授权
    • ESD protection device
    • ESD保护装置
    • US09380687B2
    • 2016-06-28
    • US14364825
    • 2012-09-13
    • Kensaku AsakuraShingo SuzukiTakahiro Fujimori
    • Kensaku AsakuraShingo SuzukiTakahiro Fujimori
    • H02H9/04H02H3/02H05F3/04H01T4/12
    • H05F3/04H01T4/12
    • An ESD protection device is provided which has a low electrostatic capacitance, a low short-circuiting rate and an excellent durability. Also, in the ESD protection device, the damage derived from short-circuiting or the peak voltage can be inhibited. The ESD protection device includes an insulating substrate, electrodes separately and oppositely disposed on the insulating substrate and a discharge inducing section arranged between the electrodes. The discharge inducing section consists of porous structure with microscopic voids discontinuously dispersed therein and has a hollow structure in which at least one hollow space is contained. Further, the plane where the hollow structure is formed has a dense structure.
    • 提供了具有低静电电容,低短路速率和优异的耐久性的ESD保护装置。 此外,在ESD保护装置中,可以抑制由短路引起的损坏或峰值电压。 ESD保护装置包括绝缘基板,分别且相对设置在绝缘基板上的电极和布置在电极之间的放电感应部分。 放电诱导部分由具有不连续分散在其中的微小空隙的多孔结构组成,并且具有中空结构,其中包含至少一个中空空间。 此外,形成中空结构的平面具有致密的结构。
    • 15. 发明授权
    • Microscope device
    • 显微镜装置
    • US09122070B2
    • 2015-09-01
    • US12942211
    • 2010-11-09
    • Shingo Suzuki
    • Shingo Suzuki
    • G02B21/00G02B21/06G02B21/36G02B21/18
    • G02B21/365G02B21/002G02B21/18
    • Reacquisition of an image is avoided, thus improving working efficiency. Provided is a microscope device including a plurality of confocal observation units or image capturing units that are capable of acquiring images of the same sample S, a region specifying unit that specifies, on a reference image acquired by a confocal observation unit or image capturing unit, an ROI of an observation image to be acquired by another image capturing unit or confocal observation unit, and a field-of-view displaying unit that displays, superimposed on the reference image, a maximum-limit indication indicating a maximum field of view of the other image capturing unit or confocal observation unit.
    • 避免重新拍摄图像,从而提高工作效率。 提供了一种显微镜装置,包括能够获取相同样本S的图像的多个共焦观察单元或图像捕获单元,区域指定单元,其在由共聚焦观察单元或图像捕获单元获取的参考图像上指定, 由另一图像拍摄单元或共焦观察单元获取的观察图像的ROI和视场显示单元,其在参考图像上显示表示最大视场的最大极限指示, 其他图像捕获单元或共焦观察单元。
    • 19. 发明申请
    • Multi-Path Power Switch Scheme for Functional Block Wakeup
    • 功能块唤醒的多路径电源开关方案
    • US20130111254A1
    • 2013-05-02
    • US13285294
    • 2011-10-31
    • Toshinari TakayanagiShingo Suzuki
    • Toshinari TakayanagiShingo Suzuki
    • G06F1/12
    • G06F1/189G06F1/26
    • A multi-path power switch scheme for functional block wakeup is disclosed. The scheme may be applied to functional blocks of an integrated circuit. When a power on procedure is initiated within a given functional block, a first group of power switches in a functional block may be powered on, while a second group of power switches is inhibited from powering on. After a predetermined time has elapsed, activation of the second group of power switches is initiated. After initiation of a power up procedure for a given functional block, the powering up of a second functional block to be powered on may initially be inhibited. After a predetermined time has elapsed, the powering on of the second functional block may be initiated. Overlap between times when the first and second groups of switches are active may depend on process, voltage, and temperature variations.
    • 公开了用于功能块唤醒的多路径功率开关方案。 该方案可以应用于集成电路的功能块。 当在给定功能块内启动通电过程时,功能块中的第一组电源开关可以被接通,而第二组电源开关被禁止上电。 在经过预定时间之后,启动第二组电源开关。 在对给定的功能块启动加电程序之后,可以初始地禁止上电的第二功能块的上电。 在经过预定时间之后,可启动第二功能块的上电。 当第一组和第二组开关处于活动状态时,重叠可能取决于过程,电压和温度变化。
    • 20. 发明申请
    • Power Switch Acceleration Scheme for Fast Wakeup
    • 用于快速唤醒的电源开关加速方案
    • US20130106494A1
    • 2013-05-02
    • US13285269
    • 2011-10-31
    • Toshinari TakayanagiShingo Suzuki
    • Toshinari TakayanagiShingo Suzuki
    • H03K17/687
    • H03K17/284H03K17/0412H03K17/04206H03K17/164H03K19/0016H03K19/00361Y10T307/858
    • A method an apparatus for a power switch acceleration scheme during wakeup is disclosed. In one embodiment, an integrated circuit includes at least one power gated circuit block. The power gated circuit block includes a virtual voltage node from which a voltage is provided to the circuitry of the block when active. Power switches are coupled between the virtual voltage node and a corresponding global voltage node. When the power gated circuit block is powered on, power switches are activated sequentially. The rate at which power switches are activated is increased as the voltage on the virtual voltage node increases. Sequentially activating the power switches may prevent an excess of current inrush into the power gated circuit block. The increase in the rate at which power switches are activated when the voltage on the virtual voltage node is at least at a certain level may allow for a faster wakeup.
    • 公开了一种在唤醒期间用于电源开关加速方案的装置。 在一个实施例中,集成电路包括至少一个电源门控电路块。 电源门控电路块包括一个虚拟电压节点,当有效时,电压被提供给块的电路。 电源开关耦合在虚拟电压节点和相应的全局电压节点之间。 当电源门控电路块通电时,电源开关被顺序激活。 电源开关激活的速率随着虚拟电压节点上的电压的增加而增加。 顺序地激活功率开关可以防止电流涌入电源门控电路块中的过多电流。 当虚拟电压节点上的电压至少处于一定水平时,功率开关被激活的速率的增加可以允许更快的唤醒。