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    • 2. 发明申请
    • RETAINER FOR RADIAL ROLLER BEARING
    • 径向滚子轴承保持器
    • US20130266249A1
    • 2013-10-10
    • US13392975
    • 2011-09-13
    • Yutaka IshibashiMakoto WatanabeTetsuya Takahashi
    • Yutaka IshibashiMakoto WatanabeTetsuya Takahashi
    • F16C33/46F16C33/66
    • F16C33/467F16C33/4635F16C33/4676F16C33/4694F16C33/516F16C33/66F16C33/6681
    • A pair of rim portions 4a and 4b is formed in the shape of a discontinuous segmental circular ring, which includes cutout portions 8a and 8b, respectively, at one position. The cutout portions of the respective rim portions are concentrically disposed so as to face each other with a predetermined interval therebetween in an axial direction while having the same phase in a circumferential direction. A plurality of pillar portions 6 form pockets 10 where rollers 14 are retained. An expandable elastic connecting portion 12, which connects one end portion 84a of one rim portion in the circumferential direction to the other end portion 82b of the other rim portion in the circumferential direction, is provided at the pair of rim portions. A convex portion 86a, which protrudes toward one end portion, is formed at the other end portion 82a of one rim portion in the circumferential direction, and a concave portion 88a, which is recessed so as to correspond to the convex portion formed at the other end portion, is formed at the one end portion. A convex portion 86b, which protrudes toward the other end portion, is formed at one end portion 84b of the other rim portion in the circumferential direction, and a concave portion 88b, which is recessed so as to correspond to the convex portion formed at the one end portion, is formed at the other end portion.
    • 一对边缘部分4a和4b分别形成在一个位置处包括切口部分8a和8b的不连续节段圆环形状。 各个边缘部分的切口部分在轴向方向上以预定的间隔彼此相对地同心地设置,同时在圆周方向上具有相同的相位。 多个支柱部分6形成保持滚子14的凹槽10。 在一对轮辋部分设置有一个在圆周方向上将一个轮辋部分的一个端部部分84a与另一个轮辋部分的圆周方向上的另一个端部部分82b连接的可膨胀弹性连接部分12。 在圆周方向上的一个边缘部分的另一端部82a处形成有朝向一个端部突出的凸部86a,并且凹部88a与形成在另一个的凸部相对应地凹陷 端部形成在一个端部。 在另一个边缘部分的圆周方向的一个端部部分84b处形成有朝向另一个端部突出的凸部86b,并且凹部88b被凹入以对应于形成在 一端部形成在另一端部。
    • 5. 发明授权
    • Semiconductor memory apparatus for a dynamic RAM and method for
manufacturing the same
    • 用于动态RAM的半导体存储装置及其制造方法
    • US5672891A
    • 1997-09-30
    • US638216
    • 1996-04-26
    • Takeshi HamamotoTakashi YamadaYutaka Ishibashi
    • Takeshi HamamotoTakashi YamadaYutaka Ishibashi
    • H01L27/108H01L29/76H01L29/94H01L31/119
    • H01L27/108H01L27/10829
    • A semiconductor memory device comprises a semiconductor substrate having memory cell area, a plurality of trenches selectively formed in the memory cell area aligning in certain intervals and a plurality of memory cell arrays provided in the memory cell area, wherein each of the memory cell arrays comprises a plurality of MOS transistors connected in a serial array and a plurality of capacitors each formed in a corresponding one of the trenches. Each of the transistors has a gate electrode above the substrate with a gate insulating film formed therebetween and source and drain regions formed in the substrate on both sides of the gate electrode. Each of the capacitors includes a charge storage layer formed on an inner wall of each of the trenches and connected integrally to one of the source and drain regions of each of the transistors, a capacitor insulating film formed on the charge storage layer and a capacitor electrode formed on the capacitor insulating film so as to bury each of the trenches and extending to the surface of the substrate, which is formed on the surface of the substrate except for at least formation areas of the transistors.
    • 一种半导体存储器件包括具有存储单元区域的半导体衬底,选择性地形成在存储单元区域中以一定间隔对准的多个沟槽和设置在存储单元区域中的多个存储单元阵列,其中每个存储单元阵列包括 以串联阵列连接的多个MOS晶体管和分别形成在对应的一个沟槽中的多个电容器。 每个晶体管在衬底之上具有栅极电极,栅极绝缘膜形成在其间,源极和漏极区域形成在栅电极两侧的衬底中。 每个电容器包括形成在每个沟槽的内壁上并且与每个晶体管的源极和漏极区中的一个一体连接的电荷存储层,形成在电荷存储层上的电容器绝缘膜和电容器电极 形成在电容器绝缘膜上,以埋入每个沟槽并且延伸到形成在基板的表面上的基板的表面,除了晶体管的至少形成区域之外。
    • 7. 发明授权
    • Single-split cage
    • 单分割笼
    • US09004775B2
    • 2015-04-14
    • US13392761
    • 2011-09-13
    • Yutaka Ishibashi
    • Yutaka Ishibashi
    • F16C33/46
    • F16C33/4694F16C19/463F16C33/4635F16C2226/70
    • The present invention provides a single-split cage capable of continuously holding a plurality of rolling elements stably for a long time by eliminating the difference in the strength between split regions, by maintaining the strength of the entire cage uniform in the circumferential direction and by maintaining the dimensional accuracy between the split regions constant at the time of molding and also capable of improving load capacity and achieving low cost for assembly. A split section 10 for splitting at one portion in the circumferential direction is formed at regions (split regions 10a and 10b) extending between pockets 2p adjacent to each other in the circumferential direction, engagement sections being engageable with each other are provided at the circumferential central position between the pockets and on a one-side split face Sa and the other-side split face Sb formed by splitting the regions, and in a state in which both the engagement sections are engaged with each other, predetermined clearances are formed between the one-side split face and the other-side split face and between the engagement sections.
    • 本发明提供一种能够通过将保持整个保持架的强度在圆周方向上均匀并且通过维持在一起的长度保持多个滚动元件而能够通过消除分割区域之间的强度的差异而连续保持多个滚动元件的单分离式保持架 分割区域之间的尺寸精度在成型时恒定,并且还能够提高负载能力并且实现低的组装成本。 在圆周方向上彼此相邻的凹穴2p之间延伸的区域(分割区域10a和10b)处形成有用于在圆周方向上的一个部分处分开的分割部分10,在周向中心 在一个侧面分开面Sa和另一侧分割面Sb之间形成凹槽之间的位置,并且在两个接合部彼此接合的状态下,在一个侧面之间形成预定的间隙 并且在接合部之间。
    • 8. 发明申请
    • SINGLE-SPLIT CAGE
    • 单分割笼
    • US20120275741A1
    • 2012-11-01
    • US13392761
    • 2011-09-13
    • Yutaka Ishibashi
    • Yutaka Ishibashi
    • F16C33/46
    • F16C33/4694F16C19/463F16C33/4635F16C2226/70
    • The present invention provides a single-split cage capable of continuously holding a plurality of rolling elements stably for a long time by eliminating the difference in the strength between split regions, by maintaining the strength of the entire cage uniform in the circumferential direction and by maintaining the dimensional accuracy between the split regions constant at the time of molding and also capable of improving load capacity and achieving low cost for assembly. A split section 10 for splitting at one portion in the circumferential direction is formed at regions (split regions 10a and 10b) extending between pockets 2p adjacent to each other in the circumferential direction, engagement sections being engageable with each other are provided at the circumferential central position between the pockets and on a one-side split face Sa and the other-side split face Sb formed by splitting the regions, and in a state in which both the engagement sections are engaged with each other, predetermined clearances are formed between the one-side split face and the other-side split face and between the engagement sections.
    • 本发明提供一种能够通过将保持整个保持架的强度在圆周方向上均匀并且通过维持在一起的长度保持多个滚动元件而能够通过消除分割区域之间的强度的差异而连续保持多个滚动元件的单分离式保持架 分割区域之间的尺寸精度在成型时恒定,并且还能够提高负载能力并且实现低的组装成本。 在圆周方向上彼此相邻的凹穴2p之间延伸的区域(分割区域10a和10b)处形成有用于在圆周方向上的一个部分处分开的分割部分10,在周向中心 在一个侧面分开面Sa和另一侧分割面Sb之间形成凹槽之间的位置,并且在两个接合部彼此接合的状态下,在一个侧面之间形成预定的间隙 并且在接合部之间。
    • 9. 发明授权
    • Semiconductor storage device
    • 半导体存储设备
    • US08274809B2
    • 2012-09-25
    • US12855151
    • 2010-08-12
    • Takeshi MurataYutaka IshibashiHiroyuki Nitta
    • Takeshi MurataYutaka IshibashiHiroyuki Nitta
    • G11C5/02
    • G11C5/063G11C11/22G11C13/0007G11C17/16G11C17/165G11C2213/71G11C2213/72H01L27/101H01L27/1021
    • According to one embodiment, a semiconductor storage device includes a plurality of parallel first interconnects extending in a first direction, a plurality of parallel second interconnects which extend in a second direction perpendicular to the first direction and which make a two-level crossing with respect to the first interconnects, and memory cell structures provided in regions where the first interconnects and the second interconnects make two-level crossings, the memory cell structures being connected on one end to the first interconnects and connected on the other end to the second interconnects, the memory cell structure including a variable resistive element and a non-ohmic element which are connected in series, wherein the endmost first interconnect is disconnected in at least one portion.
    • 根据一个实施例,半导体存储装置包括在第一方向上延伸的多个平行的第一互连件,多个平行的第二互连件,其沿与第一方向垂直的第二方向延伸,并且相对于 所述第一互连和存储单元结构设置在所述第一互连和所述第二互连构成两级交叉的区域中,所述存储单元结构的一端连接到所述第一互连并在另一端连接到所述第二互连, 存储单元结构包括串联连接的可变电阻元件和非欧姆元件,其中最末端的第一互连件在至少一部分中断开。