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    • 2. 发明专利
    • Turbine building integrated with condenser made of steel plate concrete, and its construction method
    • 与钢板混凝土冷凝器一体化的涡轮建筑及其施工方法
    • JP2008196716A
    • 2008-08-28
    • JP2007029463
    • 2007-02-08
    • Toshiba Corp株式会社東芝
    • TAGUCHI KEISUKEMARUYAMA TORUHIRAI HIDEO
    • F28B1/02E04H5/02F01K13/00F28F9/00
    • PROBLEM TO BE SOLVED: To reduce a size of a turbine building, to reduce concrete quantity, and to shorten a construction process by simplifying a building structure through reduction of posts and beams constituting the turbine building existing around a conventional turbine generator foundation base.
      SOLUTION: This turbine building integrated with the condenser made of steel plate concrete has: a turbine building mat 1; a condenser main body 4 made of steel plate concrete and disposed on the turbine building mat 1; and a turbine building main body 13 constructed by assembling at least a part of the condenser main body 4 made of steel plate concrete as a part of the building structure.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了减少涡轮机建筑物的尺寸,减少混凝土量,并通过简化建筑结构来缩短施工过程,通过减少构成现有涡轮发电机基座周围的涡轮机建筑物的柱和梁 基础。 解决方案:与钢板混凝土制成的冷凝器相结合的这种涡轮机建筑具有:一个涡轮建筑垫1; 冷凝器主体4,由钢板混凝土制成并设置在涡轮建筑垫1上; 以及通过组装由钢板混凝土制成的冷凝器主体4的至少一部分构成的涡轮机建筑物主体13作为建筑结构的一部分。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Building structure
    • 建筑结构
    • JP2007297854A
    • 2007-11-15
    • JP2006127335
    • 2006-05-01
    • Toshiba Corp株式会社東芝
    • MARUYAMA TORUTAGUCHI KEISUKEUKAI MAKOTO
    • E04H9/02E04B1/32F16F15/023F16F15/04G21C13/00G21C13/024
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To provide a building structure capable of suppressing any shake during an earthquake by using its structural body such as a roof as a mass damper and also withstanding against any impact by flying objects. SOLUTION: A building structure 3 comprises a roof 1 made of a steel plate or a steel plate plus a concrete slab having a shape capable of resisting against any flying objects by using a dead load of the structure; a building body 10 built to a lower portion of the structure 3; a laminated rubber portion 4 built between the roof 1 and the building body 10; and a damping device 6 containing a vibration control damper 5 using a viscous flow resistance of a viscous body which can be obtained by connecting together both the roof 1 and the building body 10. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够通过使用诸如屋顶的结构体作为质量阻尼器来抵抗地震期间的任何震动并且还抵抗飞行物体的任何撞击的建筑结构。 解决方案:建筑结构3包括由钢板或钢板加上具有能够通过使用结构的静载抵抗任何飞行物体的形状的混凝土板制成的屋顶1; 构造在结构3的下部的建筑物体10; 建筑在屋顶1和建筑物体10之间的层压橡胶部分4; 以及阻尼装置6,其包含使用能够通过将屋顶1和建筑物体10连接在一起而获得的粘性体的粘性流动阻力的振动控制阻尼器5.版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Building construction method and building
    • 建筑施工方法与建筑
    • JP2003041661A
    • 2003-02-13
    • JP2001232040
    • 2001-07-31
    • Toshiba Corp株式会社東芝
    • SHIMODA TSUYOSHIMARUYAMA TORUHIRAI HIDEOSAITO TADASHI
    • E04B1/35G21C13/00
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To provide a building construction method capable of further shortening the term of works up to the completion of the whole of a building by reducing as much as possible the concrete placement or the like related to the piling up of the modules.
      SOLUTION: A base portion 1 of a building having a wall construction with vertical walls as the main body is constructed by applying a reinforced concrete construction, a steel plate concrete construction, a ship hull construction or at least two or more constructions described above, at a stage when the walls of the base of the building for certain stories are constructed, a compound module 5 having a building frames 10 comprising floors 7 and columns 8 or walls 9 prefabricated at a place different from the base portion of the building together with building equipment 11 built as one unit in each building frame are carried in the spaces divided by the walls, thereafter the base of the building and the compound module are jointed together to one complete building in this method, and steel plate 12 for steel plate concrete or steel plate 15 of ship hull construction is used at least to one portion of the building frame comprising a floor and columns or walls of the compound module.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种建筑施工方法,其能够通过尽可能减少与堆叠堆放相关的具体布置等来进一步缩短整个建筑物的完工期限。 解决方案:具有垂直壁面的壁结构作为主体的建筑物的基部1通过将钢筋混凝土结构,钢板混凝土结构,船体结构或上述至少两个或多个结构施加在 在建筑物的基部的墙壁被构造用于某些故事的阶段,具有建筑物框架10的复合模块5,该建筑框架10包括在不同于建筑物的基部的地方与建筑物一起预制的地板7和柱8或墙壁9 在每个建筑框架内构建的设备11在由墙壁分隔开的空间中承载,此后,建筑物的基座和复合模块通过该方法连接在一个完整的建筑物上,钢板12用于钢板混凝土或 使用船体结构的钢板15至少包括建筑物框架的一部分,该建筑框架包括地板和复合模块的柱或壁。
    • 6. 发明专利
    • Nonvolatile semiconductor storage device
    • 非易失性半导体存储器件
    • JP2010152989A
    • 2010-07-08
    • JP2008330851
    • 2008-12-25
    • Toshiba Corp株式会社東芝
    • WATANABE SHINICHIMARUYAMA TORU
    • G11C29/42G11C16/02G11C16/04G11C16/06
    • PROBLEM TO BE SOLVED: To relieve more bit errors of a WL end cell being adjacent to a block selection gate transistor in a NAND type flash memory. SOLUTION: For example, an ECC code storage area 11b is divided into memory regions 11b-1, 11b-3 and a memory region 11b-2 in a memory cell array 11. The memory regions 11b-1, 11b-3 are made larger than the memory region 11b-2, an ECC code for enabling higher error detection correcting capability for normal data of page P0, P31 being assembly of cells MC0, MC31 being adjacent to a block gate selection transistor is stored in the memory regions 11b-1, 11b-3. The ECC code for relieving normal data of pages P1 to P30 being assembly of cells MC1 to MC30 being cells other than the above by lower error detection correcting capability than normal data of pages P0, P31 is stored in the memory region 11b-2. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了减轻与NAND型闪速存储器中的块选择栅极晶体管相邻的WL端单元的更多位错误。 解决方案:例如,ECC码存储区域11b被划分为存储单元阵列11中的存储区域11b-1,11b-3和存储区域11b-2。存储区域11b-1,11b-3 被制成大于存储区域11b-2,用于对页P0的正常数据进行更高的错误检测校正能力的ECC代码,P31是与块选择晶体管相邻的单元MC0,MC31的组合被存储在存储区域 11b-1,11b-3。 存储在存储区域11b-2中,存储了通过低于页P0,P31的正常数据的较低错误检测校正能力而将单元MC1至MC30组合为单元MC1至MC30的单元MC1至MC30的正常数据的ECC代码。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Semiconductor storage device and its fabrication method
    • 半导体存储器件及其制造方法
    • JP2006024969A
    • 2006-01-26
    • JP2005290291
    • 2005-10-03
    • Toshiba Corp株式会社東芝
    • MARUYAMA TORUGERTJAN HEMINKWATABE HIROSHIARITOME SEIICHI
    • H01L21/8247H01L27/115H01L29/788H01L29/792
    • PROBLEM TO BE SOLVED: To provide a semiconductor storage device including finely separated electrodes which does not impart a change to operational characteristics of an element.
      SOLUTION: A trench 12 is formed in a semiconductor substrate 1. An isolation region 16 has a first part in which the side wall part of the trench is caused to be flush with the upper part of the trench, and a second part which protrudes from said trench at the rest part of the trench and formed with the same material as the first part. A part of an electron charge storage layer 7 on a first gate insulating film 22 is partially overlapped on said first part in the isolation region to be formed in a self-aligning manner to the second part, and has a flat top surface flush with the top surface of the second part. A second gate insulating film 8 is formed on top surfaces of the electronic charge storage layer and the second part, and a control gate 9 is formed on the second gate insulating film 8.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种半导体存储装置,其包括不会改变元件的操作特性的精细分离的电极。 解决方案:在半导体衬底1中形成沟槽12.隔离区16具有第一部分,其中沟槽的侧壁部分与沟槽的上部齐平,第二部分 其在沟槽的其余部分处从所述沟槽突出并且形成有与第一部分相同的材料。 第一栅极绝缘膜22上的电子电荷存储层7的一部分部分地重叠在隔离区域的所述第一部分上,以与第二部分自对准的方式形成,并且具有平坦的顶表面 第二部分的顶面。 第二栅极绝缘膜8形成在电子电荷存储层和第二部分的顶表面上,并且在第二栅极绝缘膜8上形成控制栅极9.版权所有(C)2006,JPO&NCIPI