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    • 1. 发明申请
    • PACKING BOX
    • 包装盒
    • US20110068159A1
    • 2011-03-24
    • US12856062
    • 2010-08-13
    • Naoto YamadaJunichi AokiSeiji Ogawa
    • Naoto YamadaJunichi AokiSeiji Ogawa
    • B65D5/08
    • B65D5/0263B65D5/103
    • A packing box includes a plurality of side plates, an outer cover and an inner cover. The plurality of side plates is provided mutually and continuously through a first bending portion. The outer cover is linked to at least one of the side plates through a second bending portion crossing the first bending portion, and serves to block a packed product port formed by the side plates. The inner cover is linked to the outer cover through a third bending portion on an extension of the first bending portion, and is linked to any of the side plates being adjacent to the side plate provided with the outer cover through a fourth bending portion in the same direction as the second bending portion. The inner cover is bent inward through a fifth bending portion extended from a crossing position of the third bending portion and the fourth bending portion.
    • 包装箱包括多个侧板,外盖和内盖。 多个侧板通过第一弯曲部分相互连续地设置。 外盖通过与第一弯曲部交叉的第二弯曲部连接到至少一个侧板,并且用于阻挡由侧板形成的包装产品端口。 内盖通过第一弯曲部分的延伸部上的第​​三弯曲部分与外盖连接,并且通过第四弯曲部分连接到与设置有外盖的侧板相邻的任何侧板 与第二弯曲部分相同的方向。 内盖通过从第三弯曲部和第四弯曲部的交叉位置延伸的第五弯曲部向内弯曲。
    • 3. 发明授权
    • Image processing apparatus, image processing method, and program
    • 图像处理装置,图像处理方法和程序
    • US07876369B2
    • 2011-01-25
    • US11866717
    • 2007-10-03
    • Junichi Aoki
    • Junichi Aoki
    • H04N9/64
    • H04N5/367
    • In an image processing apparatus, a defect detection unit detects a defective pixel and a defect level thereof by comparing a maximum pixel value detected at each pixel position of a plurality of images captured via an image taking operation performed a plurality of times by an image sensor with a threshold value for detecting white defective pixels, and/or by comparing a minimum pixel value detected at each pixel position of the plurality of images with a threshold value for detecting black defective pixels. A defective pixel selection unit selects a predetermined plurality of defective pixels with high defect degrees, and registers defect data associated with the predetermined plurality of selected defective pixels in the defect data table. A defect correction unit corrects pixel values of pixels of the image output from the image sensor, in accordance with the defect data registered in the defect data table.
    • 在图像处理装置中,缺陷检测单元通过将通过图像传感器多次执行的图像拍摄操作捕获的多个图像的每个像素位置处检测到的最大像素值进行比较来检测缺陷像素及其缺陷水平 具有用于检测白色缺陷像素的阈值和/或通过将在多个图像中的每个像素位置处检测到的最小像素值与用于检测黑色缺陷像素的阈值进行比较。 缺陷像素选择单元选择具有高缺陷度的预定的多个缺陷像素,并且在缺陷数据表中登记与预定的多个选择的缺陷像素相关联的缺陷数据。 缺陷校正单元根据登记在缺陷数据表中的缺陷数据来校正从图像传感器输出的图像的像素的像素值。
    • 4. 发明授权
    • Level shelter, semiconductor integrated circuit and information processing system
    • 水平避难所,半导体集成电路和信息处理系统
    • US06937065B2
    • 2005-08-30
    • US10454633
    • 2003-06-05
    • Junichi Aoki
    • Junichi Aoki
    • H03K19/0185H03K3/012H03K3/356H03K19/0175
    • H03K3/356113H03K3/012
    • A level shifter normally operates with low power consumption at a high operating frequency. The level shifter, including a first level shifter, which has transistors MP3 and MP4, which have a supply voltage VDD applied to respective sources and respective gates connected to the other's drain, and transistors MN3 and MN4, which have signals SIN and SINB applied to respective gates, respective drains connected to the transistors MP3 and MP4 drains, and respective sources grounded; and a second level shifter, which has transistors MN5 and MN6, which have respective sources grounded and respective drains connected to the other's gate, and transistors MP5 and MP6, which have a supply voltage VDD applied to respective sources, signals SIN and SINB applied to respective gates, and respective drains connected to the transistors MP5 and MP6 drains; wherein the drains of the transistors MP3 and MN5 are connected to each other, and the drains of the transistors MP4 and MN6 are connected to each other.
    • 电平移位器通常在高工作频率下以低功耗工作。 电平移位器包括具有晶体管MP3和MP4的第一电平移位器,其具有施加到相应源极的电源电压VDD和连接到另一个漏极的相应栅极,以及具有信号SIN的晶体管MN 3和MN 4 并且SINB施加到各个门,连接到晶体管MP 3和MP 4漏极的相应的漏极,并且各个源接地; 和具有晶体管MN5和MN6的第二电平移位器,其具有接地的各个源极和连接到另一个栅极的相应的漏极,以及施加到相应源的电源电压VDD的晶体管MP 5和MP 6,信号SIN 并且SINB施加到各个栅极,并且连接到晶体管MP 5和MP 6漏极的相应的漏极; 其中晶体管MP3和MN5的漏极彼此连接,并且晶体管MP4和MN6的漏极相互连接。
    • 6. 发明申请
    • INTER-PHASE INSULATION SHEET FOR ROTATING ELECTRIC MACHINE
    • 旋转电机的相间绝缘片
    • US20130307368A1
    • 2013-11-21
    • US13880548
    • 2011-10-17
    • Takeshi SuwazonoJunichi Aoki
    • Takeshi SuwazonoJunichi Aoki
    • H02K3/34
    • H02K3/34H02K3/345H02K3/38
    • The purpose of the present invention is to provide an inter-phase insulation sheet for a rotating electric machine, wherein it is possible to produce the effects of exerting excellent insertion workability between coil ends of different phases, of preventing the positional misalignment of the inter-phase insulation sheet during production work when forming the coils or when lacing, of preventing the inter-phase insulation sheet from tearing when lacing, and of being able to reliably ensure that the coil ends are insulated from one another even when the shape of the coil ends are not the same. In order to achieve the aforementioned purpose, an inter-phase insulation sheet (11) has a fixed section (13) and a movable section (14). The movable section (14) has a base section (14A) on one side and a flanged section (14B) on the other side. The fixed section and the base section are placed so to completely overlap with one another and are inserted between coil ends (23b) of different phases. Meanwhile, the flanged section passes the inner side (23c) of one of the coil ends of different phases and is drawn from the insulation sheet insertion side of the coil end out to the side opposite that of the insulation sheet insertion side. Moreover, in order to facilitate the flanged section to be drawn out, a slit is formed between the fixed section and the base section and between the center and the side of the base section.
    • 本发明的目的是提供一种用于旋转电机的相间绝缘片,其中可以产生在不同相的线圈端之间施加优异的插入加工性的效果, 在制造线圈时或制鞋时的生产作业中的相位绝缘片,防止相互隔离片在鞋带时撕裂,并且即使线圈的形状也能够可靠地确保线圈端部彼此绝缘 两端不一样。 为了实现上述目的,相间绝缘片(11)具有固定部(13)和可动部(14)。 可移动部分(14)在一侧具有基部(14A),另一侧具有凸缘部(14B)。 固定部分和基部部分被放置成彼此完全重叠并插入到不同相的线圈端部(23b)之间。 同时,凸缘部通过不同相的线圈端部之一的内侧(23c),从线圈端部的绝缘片插入侧向与绝缘片插入侧相反的一侧拉出。 此外,为了便于引出凸缘部,在固定部与基部之间以及基部的中心侧形成狭缝。
    • 9. 发明申请
    • HEAT SINK
    • 散热器
    • US20120097381A1
    • 2012-04-26
    • US13379905
    • 2010-06-21
    • Junichi AokiSatoru Hirano
    • Junichi AokiSatoru Hirano
    • F28F1/00
    • H01L23/473H01L2924/0002H05K7/20254H05K7/2089H01L2924/00
    • [Task] To improve the cooling efficiency of a heat sink without increasing the size of the heat sink.[Means for solution] A heat sink 1 includes a plurality of coolant passage 2, 3, and a connecting passage 4 connecting the coolant passages 2, 3 nonlinearly. A height of a fluid passage of the connecting passage 4 on an inflow side to which the coolant flows in is made greater than a height of the coolant passage 2 connected with the fluid passage on the inflow side. On the other hand, the height of the fluid passage of the connecting passage 4 is decreased to an end portion of the connecting passage 4 on an outflow side from which a cooling water flows out. In increasing the height of the fluid passage of the connecting passage 4 on the inflow side to which the cooling water flows in, gradually, the height of the connecting passage 4 is increased so as to equalize the height of a widthwise direction of the fluid passage of the coolant passage 2.
    • [任务]提高散热器的散热效率,而不会增加散热片的尺寸。 [解决方案]散热器1包括多个冷却剂通道2,3和连接冷却剂通道2,3非线性的连接通道4。 连接通道4在冷却剂流入的流入侧的流体通道的高度大于与流入侧的流体通道连接的冷却剂通道2的高度。 另一方面,连接通道4的流体通道的高度在冷却水流出的流出侧下降到连接通道4的端部。 在逐渐增加连接通道4在流入冷却水流入侧的流体通道的高度的同时,增加连接通道4的高度,以使流体通道的宽度方向的高度相等 的冷却剂通道2。
    • 10. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND PROGRAM
    • 图像处理设备,图像处理方法和程序
    • US20080117318A1
    • 2008-05-22
    • US11866717
    • 2007-10-03
    • Junichi Aoki
    • Junichi Aoki
    • G06K9/36
    • H04N5/367
    • In an image processing apparatus, a defect detection unit detects a defective pixel and a defect level thereof by comparing a maximum pixel value detected at each pixel position of a plurality of images captured via an image taking operation performed a plurality of times by an image sensor with a threshold value for detecting white defective pixels, and/or by comparing a minimum pixel value detected at each pixel position of the plurality of images with a threshold value for detecting black defective pixels. A defective pixel selection unit selects a predetermined plurality of defective pixels with high defect degrees, and registers defect data associated with the predetermined plurality of selected defective pixels in the defect data table. A defect correction unit corrects pixel values of pixels of the image output from the image sensor, in accordance with the defect data registered in the defect data table.
    • 在图像处理装置中,缺陷检测单元通过将通过图像传感器多次执行的图像拍摄操作捕获的多个图像的每个像素位置处检测到的最大像素值进行比较来检测缺陷像素及其缺陷水平 具有用于检测白色缺陷像素的阈值和/或通过将在多个图像中的每个像素位置处检测到的最小像素值与用于检测黑色缺陷像素的阈值进行比较。 缺陷像素选择单元选择具有高缺陷度的预定的多个缺陷像素,并且在缺陷数据表中登记与预定的多个选择的缺陷像素相关联的缺陷数据。 缺陷校正单元根据登记在缺陷数据表中的缺陷数据来校正从图像传感器输出的图像的像素的像素值。