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    • 3. 发明授权
    • Method of producing magnetic recording medium
    • 制造磁记录介质的方法
    • US06773745B2
    • 2004-08-10
    • US10219020
    • 2002-08-14
    • Yuichi ArisakaJunichi TachibanaTakuya ItoYoh Iwasaki
    • Yuichi ArisakaJunichi TachibanaTakuya ItoYoh Iwasaki
    • B05D512
    • G11B5/855G11B5/85
    • A method of producing a magnetic recording medium comprising the step of forming a magnetic layer on a non-magnetic base film running at a constant speed by continuous oblique evaporation depositing metal vapor of volatilized metal incident obliquely to a surface of the non-magnetic base film, wherein the evaporation is conducted at a film forming rate, defined as an average deposition rate of the magnetic layer at a part of the non-magnetic base film exposed to the incident metal vapor, of not less than a predetermined rate to form an internal microstructure of the magnetic layer comprising columns each having a diameter of not more than about 15 nm constituted by magnetic particles having a size of not more than about 10 nm connected in chains in a direction substantially perpendicular to the magnetic layer and non-magnetic particles packed between the columns and separating the columns from each other, and a magnetic recording medium produced by the above method.
    • 一种制造磁记录介质的方法,包括以下步骤:在通过连续倾斜蒸发沉积非挥发性金属的非磁性基膜上形成磁性层的步骤,该金属蒸气倾斜地入射到非磁性基膜的表面 其中蒸发以成膜速度进行,其定义为暴露于入射金属蒸气的非磁性基底膜的一部分处的磁性层的平均沉积速率不小于预定速率,以形成内部 磁性层的微观结构包括各自具有不大于约15nm的直径的柱,所述柱由不大于约10nm的尺寸的磁性颗粒构成,所述磁性颗粒在基本上垂直于磁性层的方向上以链状连接,并且包含非磁性颗粒 在列之间和彼此分离列,以及通过上述方法制造的磁记录介质。
    • 4. 发明授权
    • Refrigerating cycle apparatus
    • 制冷循环装置
    • US08806877B2
    • 2014-08-19
    • US13203274
    • 2010-03-26
    • Shogo TamakiKosuke TanakaFumitake UnezakiTakuya ItoKazuhiro Komatsu
    • Shogo TamakiKosuke TanakaFumitake UnezakiTakuya ItoKazuhiro Komatsu
    • F25B45/00
    • F25B49/005F25B13/00F25B45/00F25B2313/0272F25B2313/02741F25B2345/001F25B2345/002F25B2400/13F25B2500/222F25B2700/04F25B2700/133F25B2700/135F25D2500/04
    • A refrigerating cycle apparatus is obtained that can determine excess/shortage of a refrigerant amount in a refrigerating circuit at high precision even if a factor such as a heat exchanger whose refrigerant amount is difficult to calculate exists. The refrigerating cycle apparatus according to the present invention includes one heat source unit or more, one utilization unit or more, a refrigerating circuit constituted by the heat source unit and utilization unit, a storage part which stores an appropriate refrigerant amount of a refrigerant to be charged in the refrigerating circuit and a correction coefficient which corrects a liquid refrigerant amount such that calculation of the refrigerant amount of each constituent element of the refrigerating circuit is equal to the appropriate refrigerant amount, a measurement part which detects an operation state amount in each constituent element of the refrigerating circuit, a calculation part which calculates the refrigerant amount of each constituent element of the refrigerating circuit based on the operation state amount by using the correction coefficient, a comparison part which compares the appropriate refrigerant amount with a calculative refrigerant amount calculated by the calculation part, and a determination part which determines excess/shortage of the refrigerant amount charged in the refrigerating circuit based on a comparison result of the comparison part.
    • 即使存在制冷剂量难以计算的热交换器等因素,也能够高精度地确定制冷回路中的制冷剂量的过剩/不足的制冷循环装置。 根据本发明的制冷循环装置包括一个或多个热源单元,一个利用单元或更多个,由热源单元和利用单元构成的制冷回路,储存适当的制冷剂量的制冷剂的储存部 充电在制冷回路中的校正系数和校正液体制冷剂量的校正​​系数,使得制冷回路的各构成元件的制冷剂量的计算与适当的制冷剂量相等,检测各成分的运转状态量的测定部 制冷回路的元件,计算部,其基于通过使用校正系数的运转状态量计算制冷回路的各构成要素的制冷剂量;比较部,其将适当的制冷剂量与由 cal 基于所述比较部的比较结果,确定部,其确定在所述制冷回路中充入的制冷剂量的过量/不足。
    • 5. 发明申请
    • REFRIGERATING CYCLE APPARATUS
    • 制冷循环装置
    • US20110308267A1
    • 2011-12-22
    • US13203274
    • 2010-03-26
    • Shogo TamakiKosuke TanakaFumitake UnezakiTakuya ItoKazuhiro Komatsu
    • Shogo TamakiKosuke TanakaFumitake UnezakiTakuya ItoKazuhiro Komatsu
    • F25B49/02F25B41/04F25D23/00
    • F25B49/005F25B13/00F25B45/00F25B2313/0272F25B2313/02741F25B2345/001F25B2345/002F25B2400/13F25B2500/222F25B2700/04F25B2700/133F25B2700/135F25D2500/04
    • A refrigerating cycle apparatus is obtained that can determine excess/shortage of a refrigerant amount in a refrigerating circuit at high precision even if a factor such as a heat exchanger whose refrigerant amount is difficult to calculate exists. The refrigerating cycle apparatus according to the present invention includes one heat source unit or more, one utilization unit or more, a refrigerating circuit constituted by the heat source unit and utilization unit, a storage part which stores an appropriate refrigerant amount of a refrigerant to be charged in the refrigerating circuit and a correction coefficient which corrects a liquid refrigerant amount such that calculation of the refrigerant amount of each constituent element of the refrigerating circuit is equal to the appropriate refrigerant amount, a measurement part which detects an operation state amount in each constituent element of the refrigerating circuit, a calculation part which calculates the refrigerant amount of each constituent element of the refrigerating circuit based on the operation state amount by using the correction coefficient, a comparison part which compares the appropriate refrigerant amount with a calculative refrigerant amount calculated by the calculation part, and a determination part which determines excess/shortage of the refrigerant amount charged in the refrigerating circuit based on a comparison result of the comparison part.
    • 即使存在制冷剂量难以计算的热交换器等因素,也能够高精度地确定制冷回路中的制冷剂量的过剩/不足的制冷循环装置。 根据本发明的制冷循环装置包括一个或多个热源单元,一个利用单元或更多个,由热源单元和利用单元构成的制冷回路,储存适当的制冷剂量的制冷剂的储存部 充电在制冷回路中的校正系数和校正液体制冷剂量的校正​​系数,使得制冷回路的各构成元件的制冷剂量的计算与适当的制冷剂量相等,检测各成分的运转状态量的测定部 制冷回路的元件,计算部,其基于通过使用校正系数的运转状态量计算制冷回路的各构成要素的制冷剂量;比较部,其将适当的制冷剂量与由 cal 基于所述比较部的比较结果,确定部,其确定在所述制冷回路中充入的制冷剂量的过量/不足。
    • 7. 发明授权
    • Document transport device and image forming apparatus
    • 文件传送装置和图像形成装置
    • US07821683B2
    • 2010-10-26
    • US11446402
    • 2006-06-05
    • Takuya ItoHiroatsu Kazama
    • Takuya ItoHiroatsu Kazama
    • H04N1/04B65H5/22
    • H04N1/0057H04N1/00644H04N1/00652
    • A document transport device includes a transport unit that transports documents one by one to a position where an image is read by an image reading unit and transports the document at a speed at which the image reading unit can read the image at the image reading position, and a controller that determines, based on an instruction from an image forming apparatus to which the document transport device is mounted, the number of sheets transported per unit time when plural documents are transported by the transport unit, and controls the transport unit to transport the documents at the determined number of sheets transported per unit time.
    • 文件传送装置包括:传送单元,将文档逐一传送到图像读取单元读取的位置,并以图像读取单元能够在图像读取位置读取图像的速度传送文档; 以及控制器,其基于来自安装了所述文件传送装置的图像形成装置的指示,当由所述传送单元传送多个文档时,每单位时间传送的张数,并且控制所述传送单元传送所述传送单元 单位时间内确定的运输单张数量的文件。
    • 8. 发明申请
    • Sheet processing apparatus, automatic document feeder and image forming apparatus
    • 纸张处理设备,自动进纸器和成像设备
    • US20050201786A1
    • 2005-09-15
    • US10995242
    • 2004-11-24
    • Takuya Ito
    • Takuya Ito
    • G03G15/00
    • H04N1/121G03G2215/00683H04N1/00588H04N1/00591H04N1/00602H04N1/193
    • In a sheet processing apparatus that includes an acting portion to exert an action on a sheet, and at least one of first and second carrying devices, the first carrying device is arranged on a downstream side of the acting portion and a lead edge of the sheet enters the first carrying device during the action of the acting portion, the second carrying device is arranged on an upstream side of the acting portion, and the sheet exits from the second carrying device during the action of the acting portion, at least one of the first and second carrying devices has a driving roller and a driven roller, and the sheet is put between the driving roller and the driven roller and is carried, and a Shore hardness Hs of at least a surface portion of the driven roller based on ISO7619 is set in a range of 20 to 50 degree.
    • 在包括在片材上施加作用的作用部分和第一和第二传送装置中的至少一个的片材处理装置中,第一传送装置布置在作用部分的下游侧,片材的引导边缘 在作用部分的作用期间进入第一传送装置,第二传送装置布置在作用部分的上游侧,并且片材在作用部分的作用期间从第二传送装置离开,至少一个 第一和第二承载装置具有驱动辊和从动辊,并且将片材放置在驱动辊和从动辊之间并被承载,并且基于ISO7619的至少从动辊的表面部分的肖氏硬度Hs为 设置在20到50度的范围内。
    • 10. 发明授权
    • Signal extracting apparatus
    • 信号提取装置
    • US08808192B2
    • 2014-08-19
    • US13496586
    • 2010-09-17
    • Yoshitaka KimuraNobuo YaegashiMitsuyuki NakaoTakuya Ito
    • Yoshitaka KimuraNobuo YaegashiMitsuyuki NakaoTakuya Ito
    • A61B5/02
    • A61B5/0444A61B5/02411A61B5/0488A61B5/4362A61B7/00A61B7/04
    • A signal extracting apparatus is provided based on independent component analysis with reference for a single measured signal as a signal processing technique that allows stable and quick extraction of a target signal from single measured signal even in a high-noise environment with a high noise ratio against a target signal to be extracted. The signal extracting apparatus includes: a single-signal measuring unit to measure a measured signal as a single time-series signal containing a target signal obtained by measurement by a single channel; a reference signal creating unit (2) to create a reference signal provided with timing-axis information based on the time-series signal obtained by the single-signal measuring unit; and a main processing unit (5) to perform independent component analysis with reference for a single measured signal by capturing the reference signal obtained by the reference signal creating unit (2) and providing the timing-axis information for an algorithm in a reference system to extract an independent component.
    • 基于独立分量分析提供信号提取装置,作为信号处理技术的单个测量信号的参考,即使在具有高噪声比的高噪声环境中也允许从单个测量信号稳定和快速地提取目标信号 要提取的目标信号。 信号提取装置包括:单个信号测量单元,用于测量测量信号作为包含通过单个信道测量获得的目标信号的单个时间序列信号; 参考信号生成单元,基于由单个信号测量单元获得的时间序列信号,产生具有定时轴信息的参考信号; 以及主处理单元(5),通过捕获由参考信号生成单元(2)获得的参考信号,通过参考单个测量信号来执行独立分量分析,并将参考系统中的算法的定时轴信息提供给 提取独立组件。