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    • 3. 发明授权
    • Processing device, control method for a processing device, program, processing system and control method for a processing system
    • 处理装置,处理装置的控制方法,程序,处理系统以及处理系统的控制方法
    • US07866666B2
    • 2011-01-11
    • US12181958
    • 2008-07-29
    • Takashi SaikawaHideki Nishimura
    • Takashi SaikawaHideki Nishimura
    • B65H7/02
    • G06K7/08
    • A hybrid processing system improves the reliability of multifeed detection even when plural different types of media are processed together without increasing the cost or size of the hybrid processing device due to increased performance, and without incurring a drop in throughput. In addition to image data captured from the processed media by an internal image reader, the hybrid processing device 1 also sends data for confirming multifeeding to the host computer 30. This multifeed confirmation data includes the result from a first multifeed detection process, the result from a second multifeed detection process, the paper length data detected by a paper length detection means 9, and the paper thickness data detected by a paper thickness detection means 65. The host computer 30 uses the image data and the multifeed confirmation data received from the hybrid processing device 1 to independently detect multifeeding, and thereby enables more reliable multifeed detection.
    • 混合处理系统即使在不增加多种不同类型的介质的情况下也可以提高多页进纸检测的可靠性,而不会由于性能的提高而增加混合处理装置的成本或尺寸,并且不会导致吞吐量的下降。 除了由内部图像读取器从处理的媒体捕获的图像数据之外,混合处理装置1还向主计算机30发送用于确认多重进给的数据。该多页进纸确认数据包括来自第一多页进纸检测处理的结果, 第二多页进纸检测处理,由纸张长度检测装置9检测的纸张长度数据和由纸张厚度检测装置65检测的纸张厚度数据。主计算机30使用从混合物接收的图像数据和多页进纸确认数据 处理装置1独立地检测多重进纸,从而能够进行更可靠的多页进纸检测。
    • 5. 发明申请
    • Processing Device, Control Method for a Processing Device, Program, Processing System, and Control Method for a Processing System
    • 处理装置,处理装置的控制方法,程序,处理系统和处理系统的控制方法
    • US20090037018A1
    • 2009-02-05
    • US12181958
    • 2008-07-29
    • Takashi SaikawaHideki Nishimura
    • Takashi SaikawaHideki Nishimura
    • G06F3/00
    • G06K7/08
    • A hybrid processing system improves the reliability of multifeed detection even when plural different types of media are processed together without increasing the cost or size of the hybrid processing device due to increased performance, and without incurring a drop in throughput. In addition to image data captured from the processed media by an internal image reader, the hybrid processing device 1 also sends data for confirming multifeeding to the host computer 30. This multifeed confirmation data includes the result from a first multifeed detection process, the result from a second multifeed detection process, the paper length data detected by a paper length detection means 9, and the paper thickness data detected by a paper thickness detection means 65. The host computer 30 uses the image data and the multifeed confirmation data received from the hybrid processing device 1 to independently detect multifeeding, and thereby enables more reliable multifeed detection.
    • 混合处理系统即使在不增加多种不同类型的介质的情况下也可以提高多页进纸检测的可靠性,而不会由于性能的提高而增加混合处理装置的成本或尺寸,并且不会导致吞吐量的下降。 除了由内部图像读取器从处理的媒体捕获的图像数据之外,混合处理装置1还向主计算机30发送用于确认多重进给的数据。该多页进纸确认数据包括来自第一多页进纸检测处理的结果, 第二多页进纸检测处理,由纸张长度检测装置9检测的纸张长度数据和由纸张厚度检测装置65检测的纸张厚度数据。主计算机30使用从混合物接收的图像数据和多页进纸确认数据 处理装置1独立地检测多重进纸,从而能够进行更可靠的多页进纸检测。
    • 7. 发明授权
    • Motor including hydrodynamic bearing and disk drive apparatus including same
    • 包括流体动力轴承和包括其的磁盘驱动装置的电动机
    • US08508883B2
    • 2013-08-13
    • US13613106
    • 2012-09-13
    • Takehito TamaokaShuji IwasakiYoichi SekiiHideki Nishimura
    • Takehito TamaokaShuji IwasakiYoichi SekiiHideki Nishimura
    • G11B17/02H02K7/08
    • G11B19/2009F16C17/107F16C33/745F16C2370/12H02K5/1677
    • A motor includes a shaft portion, an upper plate cylindrical portion, a lower plate cylindrical portion, and a sleeve portion disposed between an upper plate portion and a lower plate portion. The sleeve portion includes an inner sleeve cylindrical portion and an outer sleeve cylindrical portion. An upper seal portion is arranged between the outer circumferential surface of the upper plate cylindrical portion and the inner circumferential surface of the outer sleeve cylindrical portion. A lower seal portion is arranged between the outer circumferential surface of the outer sleeve cylindrical portion and the inner circumferential surface of the lower plate cylindrical portion. At least a portion of the upper seal portion and at least a portion of the lower seal portion radially overlap with a radial gap between the outer circumferential surface of the shaft portion and the inner circumferential surface of the inner sleeve cylindrical portion.
    • 电动机包括轴部,上板圆筒部,下板圆筒部和设置在上板部和下板部之间的套筒部。 套筒部分包括内套筒部分和外套筒部分。 在上板圆筒部的外周面与外套筒筒部的内周面之间配置有上密封部。 在外筒筒部的外周面与下板圆筒部的内周面之间配置有下密封部。 上密封部分的至少一部分和下密封部分的至少一部分径向地与轴部的外圆周表面和内套筒圆筒部分的内圆周表面之间的径向间隙重叠。
    • 10. 发明授权
    • Substrate processing method, substrate processing apparatus, and program storage medium
    • 基板处理方法,基板处理装置和程序存储介质
    • US08020315B2
    • 2011-09-20
    • US11896936
    • 2007-09-06
    • Hideki NishimuraMikio Nakashima
    • Hideki NishimuraMikio Nakashima
    • F26B11/00
    • H01L21/67109H01L21/02052H01L21/67034H01L21/67248
    • A substrate processing method which can reduce the number of particles to be left on each substrate is provided. In the substrate processing method, substrates W to be processed are dried, by using a fluid heated by a heating apparatus having one or more heating mechanisms. The substrate processing method comprises a first step of supplying a mixed fluid containing a gas and a processing liquid and heated by the heating apparatus, into a processing chamber in which the substrates to be processed are placed, and a second step of supplying the heated gas into the processing chamber. The output of at least one of the heating mechanisms is kept at a preset constant value for a period of time during which a predetermined time passes after the start of the first step. In the second step, the output of the heating mechanism is determined under a feed back control.
    • 提供了可以减少要留在每个基板上的颗粒数量的基板处理方法。 在基板处理方法中,通过使用由具有一个或多个加热机构的加热装置加热的流体来干燥待加工的基板W. 基板处理方法包括:第一步骤,将含有气体和处理液体的混合流体供给并被加热装置加热到其中放置待处理基板的处理室中;以及第二步骤, 进入处理室。 至少一个加热机构的输出在第一步骤开始之后的预定时间过去的一段时间内保持在预设的恒定值。 在第二步骤中,在反馈控制下确定加热机构的输出。