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    • 51. 发明申请
    • AGING DEVICE
    • 老化设备
    • US20080079057A1
    • 2008-04-03
    • US11856256
    • 2007-09-17
    • Daisuke HagishimaHiroshi Watanabe
    • Daisuke HagishimaHiroshi Watanabe
    • H01L29/788H01L21/336
    • H01L27/11558H01L27/088H01L27/115H01L27/11521H01L29/66825H01L29/7881
    • An aging device includes a semiconductor substrate, an element isolation insulating layer which is formed in a recessed portion of the semiconductor substrate and which has an upper surface higher than an upper surface of the semiconductor substrate, first and second element regions isolated by the element isolation insulating layer, first and second diffusion layers formed in the semiconductor substrate in the first element region, a first gate insulating film formed on the semiconductor substrate between the first and second diffusion layers, a second gate insulating film formed on the semiconductor substrate in the second element region, and a floating gate electrode formed on the first and second gate insulating films and formed to extend from the first element region to the second element region. The deepest portions of the first and second diffusion layers are isolated from the element isolation insulating layer.
    • 老化装置包括半导体衬底,元件隔离绝缘层,其形成在半导体衬底的凹陷部分中,并且具有比半导体衬底的上表面高的上表面,通过元件隔离隔离的第一和第二元件区域 绝缘层,形成在第一元件区域中的半导体衬底中的第一和第二扩散层,形成在第一和第二扩散层之间的半导体衬底上的第一栅极绝缘膜,形成在第二元件区域中的半导体衬底上的第二栅极绝缘膜 元件区域和形成在第一和第二栅极绝缘膜上并形成为从第一元件区域延伸到第二元件区域的浮栅电极。 第一和第二扩散层的最深部分与元件隔离绝缘层隔离。
    • 52. 发明申请
    • SEMICONDUCTOR INTEGRATED CIRCUIT
    • 半导体集成电路
    • US20080074180A1
    • 2008-03-27
    • US11853415
    • 2007-09-11
    • Hiroshi WatanabeAkira Nishiyama
    • Hiroshi WatanabeAkira Nishiyama
    • H01L29/788
    • H01L21/28273G04F10/10G04F13/00G11C16/0433H01L27/115H01L27/11521H01L27/11524
    • A semiconductor integrated circuit according to an example of the present invention includes a semiconductor substrate, an element isolation insulating layer formed in a surface region of the semiconductor substrate, and first and second MIS type devices isolated from each other by the element isolation insulating layer and formed in adjacent first and second element regions in a second direction orthogonal to a first direction. Each of the first and second MIS type devices has a stack gate structure having a floating gate and a control gate electrode. The first MIS type device functions as an aging device, and the second MIS type device functions as a control device which controls an electric charge retention characteristic of the aging device.
    • 根据本发明的实施例的半导体集成电路包括半导体衬底,形成在半导体衬底的表面区域中的元件隔离绝缘层以及通过元件隔离绝缘层彼此隔离的第一和第二MIS型器件,以及 在与第一方向正交的第二方向上形成在相邻的第一和第二元件区域中。 第一和第二MIS型器件中的每一个具有具有浮置栅极和控制栅极电极的堆叠栅极结构。 第一MIS型装置用作老化装置,第二MIS型装置用作控制老化装置的电荷保持特性的控制装置。
    • 53. 发明授权
    • Optical recording/reproducing apparatus
    • 光记录/重放装置
    • US07345974B2
    • 2008-03-18
    • US10975074
    • 2004-10-28
    • Takanori KishidaTsuyoshi YamamotoKatsumi HattoriMasato FumaHiroshi Watanabe
    • Takanori KishidaTsuyoshi YamamotoKatsumi HattoriMasato FumaHiroshi Watanabe
    • G11B7/00
    • G11B7/1267G11B7/00736G11B7/125
    • An object of the present invention is to provide an optical recording/reproducing apparatus capable of improving medium usability through a laser power adjusting process while keeping compatibility with a read only type medium. The optical recording/reproducing apparatus adjusts laser power using a PCA till the PCA is used up. After the PCA is used up, an additional area is reserved at the outermost circumference position, thereafter when the additional area is used up, a new additional area is reserved at an inner circumference side of the used up additional area to adjust laser power. The additional area is reserved at an outer circumference than a lead-out area, and therefore format compatibility with a read only type optical disc can be maintained. The additional area is reserved only when the PCA is used up, thus capacity compatibility with a read only type optical disc can be maintained while laser power is adjusted with only the PCA.
    • 本发明的目的是提供一种能够通过激光功率调整过程改善介质可用性同时保持与只读型介质的兼容性的光学记录/再现装置。 光学记录/再现装置使用PCA调节激光功率,直到PCA被消耗。 在PCA用完之后,在最外周位置保留另外的区域,此后当附加区域用完时,在用尽的附加区域的内圆周侧保留新的附加区域以调整激光功率。 附加区域在外周保留在引出区域,因此可以保持与只读型光盘的格式兼容性。 仅当PCA用完时,才能保留附加区域,因此只能使用PCA调整激光功率,才能保持与只读型光盘的兼容性。
    • 56. 发明申请
    • Controller of injection molding machine
    • 注塑机控制器
    • US20070196530A1
    • 2007-08-23
    • US11709213
    • 2007-02-22
    • Wataru ShiraishiToshio IshikuroSatoshi TakatsugiTatsuhiro UchiyamaHiroshi WatanabeTatsuya KawasakiJunpei Maruyama
    • Wataru ShiraishiToshio IshikuroSatoshi TakatsugiTatsuhiro UchiyamaHiroshi WatanabeTatsuya KawasakiJunpei Maruyama
    • B29C45/76B29C45/77
    • B29C45/50B29C45/54B29C45/76B29C2045/5096B29C2945/76856
    • A controller for an injection molding machine capable of reducing an extension of a cycle time in a screw retreat process after the end of measurement, obtaining a more accurate and uniform measured resin amount, and determining measurement conditions in a short period of time. After the measurement is finished, the screw is stopped from rotating and retreated at a first speed V1. The screw is reversely rotated at a predetermined speed Rv in a set zone. As this is done, the screw is retreated at a second speed V2 lower than the first speed V1. After the reverse rotation zone is terminated, the screw is stopped from rotating and retreated at a third speed V3 to a set retreat stop position. By doing this, the cycle time can be made shorter than in the case where the retreat and reverse rotation of the screw are performed separately. Since the retreating speed of the screw is low while the screw is being reversely rotated, a sudden pressure change can be suppressed, so that precise measurement can be made. Since conditions for the reverse rotation and retreat of the screw can be regulated independently, they can be adjusted to optimum conditions in a short period of time.
    • 一种用于注射成型机的控制器,其能够在测量结束后减少螺杆后退过程中的循环时间的延长,获得更精确和均匀的测量树脂量,并在短时间内确定测量条件。 测量结束后,以第一速度V 1停止螺杆旋转和退回。 螺钉以设定区域中的预定速度Rv反向旋转。 这样做,螺杆以比第一速度V 1低的第二速度V 2退避。 在反向旋转区域终止之后,螺丝停止旋转并以第三速度V 3退回到设定的退避停止位置。 通过这样做,循环时间可以比在单独进行螺杆的后退和反向旋转的情况下更短。 由于当螺杆反向旋转时螺杆的后退速度低,所以可以抑制突然的压力变化,从而能够进行精确的测量。 由于可以独立地调节螺杆的反转和后退的条件,所以可以在短时间内将其调节到最佳状态。