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    • 1. 发明授权
    • Cell based integrated circuit and unit cell architecture therefor
    • 基于单元的集成电路和单元单元架构
    • US07422945B2
    • 2008-09-09
    • US11073764
    • 2005-03-08
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • H01L21/82H01L21/336H01L21/8238G06F17/50
    • H01L27/11807H01L27/0207
    • In a unit cell, a first conductive type active region and a second conductive type active region are provided. Those two active regions extend in a first direction. Each of the active regions have first and second ends thereof. The first end of the second conductive type active region opposes the second end of the first conductive type active region. A conductive pattern is provided to extend in the first direction across the first conductive type active region and the second conductive type active region. A first contact region is arranged adjacent the first end of the first conductive type active region in the first direction. A second contact region is arranged adjacent the second end of the second conductive type active region in the first direction.
    • 在单元电池中,提供第一导电型有源区和第二导电型有源区。 这两个有源区域沿第一方向延伸。 每个有源区具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 提供导电图案以跨过第一导电类型有源区和第二导电类型有源区在第一方向上延伸。 第一接触区域沿第一方向布置成与第一导电类型有源区域的第一端相邻。 第二接触区域沿着第一方向布置成与第二导电类型有源区域的第二端相邻。
    • 2. 发明申请
    • CELL BASED INTEGRATED CIRCUIT AND UNIT CELL ARCHITECTURE THEREFOR
    • 基于电池的集成电路及其单元架构
    • US20080315258A1
    • 2008-12-25
    • US12187474
    • 2008-08-07
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • H01L27/10
    • H01L27/11807H01L27/0207
    • A unit cell for an integrated circuit includes a first conductive type active region and a second conductive type active region which extend in a first direction. Each of the active regions has first and second ends. The first end of the second conductive type active region opposes the second end of the first conductive type active region. A poly-silicon pattern extends in the first direction across the first conductive type active region and second conductive type active region. A first contact region is adjacent the first end of the first conductive type active region in the first direction. A second contact region is adjacent the second end of the second conductive type active region in the first direction.
    • 用于集成电路的单元电池包括沿第一方向延伸的第一导电型有源区和第二导电型有源区。 每个活动区域具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 多晶硅图案沿第一方向跨越第一导电型有源区和第二导电型有源区延伸。 第一接触区域在第一方向上与第一导电类型有源区域的第一端相邻。 第二接触区域在第一方向上与第二导电类型有源区域的第二端相邻。
    • 3. 发明申请
    • Cell based integrated circuit and unit cell architecture therefor
    • 基于单元的集成电路和单元单元架构
    • US20050155009A1
    • 2005-07-14
    • US11073764
    • 2005-03-08
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • G06F17/50H01L21/336H01L21/8238H01L27/02H01L27/10H01L27/118
    • H01L27/11807H01L27/0207
    • In a method for designing a unit cell, a first conductive type active region and a second conductive type active region are provided. Those two active regions extend in a first direction. Each of the active regions has first and second ends thereof. The first end of the second conductive type active regions is opposing to the second end of the first conductive type active region. In the method, a poly-silicon pattern is provided to extend in the first direction across the first conductive type active region and second conductive type active region. A first contact region is arranged adjacent the first end of the first conductive type active region in the first direction. A second contact region is arranged adjacent the second end of the second conductive type active region in the first direction.
    • 在设计单位电池的方法中,提供第一导电型有源区和第二导电型有源区。 这两个有源区域沿第一方向延伸。 每个有源区具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 在该方法中,提供多晶硅图案以跨过第一导电型有源区和第二导电型有源区在第一方向上延伸。 第一接触区域沿第一方向布置成与第一导电类型有源区域的第一端相邻。 第二接触区域沿着第一方向布置成与第二导电类型有源区域的第二端相邻。
    • 4. 发明授权
    • Cell based integrated circuit and unit cell architecture therefor
    • 基于单元的集成电路和单元单元架构
    • US07704837B2
    • 2010-04-27
    • US12187474
    • 2008-08-07
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • H01L21/82H01L21/336H01L21/8238G06F17/50
    • H01L27/11807H01L27/0207
    • A unit cell for an integrated circuit includes a first conductive type active region and a second conductive type active region which extend in a first direction. Each of the active regions has first and second ends. The first end of the second conductive type active region opposes the second end of the first conductive type active region. A poly-silicon pattern extends in the first direction across the first conductive type active region and second conductive type active region. A first contact region is adjacent the first end of the first conductive type active region in the first direction. A second contact region is adjacent the second end of the second conductive type active region in the first direction.
    • 用于集成电路的单元电池包括沿第一方向延伸的第一导电型有源区和第二导电型有源区。 每个活动区域具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 多晶硅图案沿第一方向跨越第一导电型有源区和第二导电型有源区延伸。 第一接触区域在第一方向上与第一导电类型有源区域的第一端相邻。 第二接触区域在第一方向上与第二导电类型有源区域的第二端相邻。
    • 5. 发明授权
    • Cell based integrated circuit and unit cell architecture therefor
    • 基于单元的集成电路和单元单元架构
    • US06399972B1
    • 2002-06-04
    • US09525330
    • 2000-03-13
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • H01L2710
    • H01L27/11807H01L27/0207
    • In a unit cell, a first conductive type active region and a second conductive type active region are provided. Those two active regions extend in a first direction. Each of the active regions have first and second ends thereof. The first end of the second conductive type active region opposes the second end of the first conductive type active region. A conductive pattern is provided to extend in the first direction across the first conductive type active region and the second conductive type active region. A first contact region is arranged adjacent the first end of the first conductive type active region in the first direction. A second contact region is arranged adjacent the second end of the second conductive type active region in the first direction.
    • 在单元电池中,提供第一导电型有源区和第二导电型有源区。 这两个有源区域沿第一方向延伸。 每个有源区具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 提供导电图案以跨过第一导电类型有源区和第二导电类型有源区在第一方向上延伸。 第一接触区域沿第一方向布置成与第一导电类型有源区域的第一端相邻。 第二接触区域沿着第一方向布置成与第二导电类型有源区域的第二端相邻。
    • 6. 发明授权
    • Cell based integrated circuit and unit cell architecture therefor
    • 基于单元的集成电路和单元单元架构
    • US06905931B2
    • 2005-06-14
    • US10109694
    • 2002-04-01
    • Hirohisa MasudaHirokazu Ishikawa
    • Hirohisa MasudaHirokazu Ishikawa
    • G06F17/50H01L21/336H01L21/8238H01L27/02H01L27/10H01L27/118
    • H01L27/11807H01L27/0207
    • In a unit cell, a first conductive type active region and a second conductive type active region are provided. Those two active regions extend in a first direction. Each of the active regions has first and second ends thereof. The first end of the second conductive type active region opposes the second end of the first conductive type active region. A poly-silicon pattern is provided to extend in the first direction across the first conductive type active region and second conductive type active region. A first contact region is arranged adjacent the first end of the first conductive type active region in the first direction. A second contact region is arranged adjacent the second end of the second conductive type active region in the first direction.
    • 在单元电池中,提供第一导电型有源区和第二导电型有源区。 这两个有源区域沿第一方向延伸。 每个有源区具有第一和第二端。 第二导电型有源区的第一端与第一导电型有源区的第二端相对。 提供多晶硅图案以跨越第一导电型有源区和第二导电型有源区在第一方向上延伸。 第一接触区域沿第一方向布置成与第一导电类型有源区域的第一端相邻。 第二接触区域沿着第一方向布置成与第二导电类型有源区域的第二端相邻。
    • 7. 发明申请
    • PROGRAMMABLE CONTROLLER
    • 可编程控制器
    • US20130145025A1
    • 2013-06-06
    • US13817191
    • 2011-10-17
    • Hirokazu IshikawaTomoaki Takagi
    • Hirokazu IshikawaTomoaki Takagi
    • H04L12/26
    • H04L43/10G05B19/05
    • The present invention includes a connection unit that performs reception of a request from an upper-level device and transmission of a response thereto via the established connection for each application; a communication buffer that temporarily stores requests received by the connection unit for each connection; a system main unit that reads a requested device value from the input/output memory area; a priority storage area that stores setting of a priority level for each connection; and a communication scheduling unit that successively obtains requests from the communication buffer, transfers the obtained request to the system main unit, and transfers the device value read by the system main unit to the connection unit as a response, wherein the communication scheduling unit obtains requests with a higher frequency for a connection for which a higher priority is set in the priority storage area.
    • 本发明包括一个连接单元,其经由建立的每个应用的连接来执行来自上级设备的请求的接收和对其的响应的发送; 通信缓冲器,其临时存储由连接单元为每个连接接收的请求; 系统主单元,从输入/输出存储区读取所请求的设备值; 存储每个连接的优先级的设置的优先级存储区域; 以及通信调度单元,其连续地从通信缓冲器获得请求,将获得的请求传送到系统主单元,并将由系统主单元读取的设备值作为响应传送到连接单元,其中通信调度单元获得请求 对于在优先级存储区域中设置较高优先级的连接的频率较高。
    • 8. 发明授权
    • Guide apparatus
    • 导向装置
    • US07290647B2
    • 2007-11-06
    • US11076036
    • 2005-03-10
    • Hirokazu IshikawaKaoru HoshideTakashi OgataShunji Matsutomi
    • Hirokazu IshikawaKaoru HoshideTakashi OgataShunji Matsutomi
    • F16C29/06
    • F16C29/0647B65G37/00F16C19/502F16C29/005F16C2300/14
    • A guide apparatus has a standard end plate split into a pair of split parts that can be positioned with respect to each other with high accuracy and firmly secured to each axial end of a moving block body without fear of displacement during use. The guide apparatus has a moving block relatively movably attached to a track rail. The moving block body has in a section perpendicular to the axial direction a geometry that allows the moving block body to be assembled to the track rail at an intermediate part of the track rail. The end plate consists essentially of a pair of split parts that are splittable to right and left in the width direction of the end plate. One split part has a positioning pin projecting from a parting surface thereof. A positioning hole fittable with the positioning pin is provided in a parting surface of the other split part. The positioning pin is fitted into the positioning hole to form an end plate assembly. The end plate assembly is secured to one end of the moving block body in the direction of relative movement by using securing screws passed through securing screw holes provided in the split parts, respectively.
    • 引导装置具有分成一对分割部分的标准端板,该对分割部分可以相对于彼此高精度地定位并且牢固地固定到移动块体的每个轴向端部,而不用担心使用期间的位移。 引导装置具有相对可移动地附接到轨道轨的移动块。 移动块体具有垂直于轴向方向的部分,允许移动块体在轨道轨道的中间部分处组装到轨道轨道上的几何形状。 端板基本上由在端板的宽度方向上左右分开的一对分割部件组成。 一个分割部分具有从其分离表面突出的定位销。 在另一个分割部分的分离表面上设置有可与定位销配合的定位孔。 定位销装配到定位孔中以形成端板组件。 端板组件通过分别穿过设置在分割部分中的固定螺钉孔的固定螺钉分别固定在移动块体的相对运动方向上的一端。
    • 9. 发明授权
    • Angle adjusting device
    • 角度调节装置
    • US07201073B2
    • 2007-04-10
    • US10377668
    • 2003-03-04
    • Hirokazu IshikawaYoichi Nakazato
    • Hirokazu IshikawaYoichi Nakazato
    • F16C29/00
    • B23Q1/32Y10T74/18576
    • An angle adjusting device includes a pedestal, a pair of guide members having an arcuate track, an oscillation body moved along the track of the guide members, and a moving member for moving the oscillation body to adjust the angular position of the oscillation body around an oscillation axis. The moving member has a motor provided in the pedestal, a linkage shaft provided in the oscillation body, and a linkage mechanism interposed between the motor and the linkage shaft. A principal linkage member of the linkage mechanism is linked to a top end portion of an output shaft rotatably around an axis parallel to the oscillation axis, and linked to the linkage shaft to be linearly movable in its axial direction. The guide members have two flat reference planes, and fixed in a state where those reference planes are contact with two flat setting planes of the pedestal.
    • 一种角度调节装置,包括基座,具有弓形轨道的一对引导构件,沿着引导构件的轨道移动的振动体,以及用于使振动体移动以将振动体的角位置调整为围绕 摆动轴。 移动构件具有设置在基座中的电动机,设置在振动体中的联动轴以及插入在电动机和连接轴之间的联动机构。 联动机构的主要连接构件以可平行于摆动轴线的轴线可旋转的方式与输出轴的顶端部连接,并且能够与连杆轴连结,以能够在其轴向上线性移动。 引导构件具有两个平坦的参考平面,并且在这些基准平面与基座的两个平坦设置平面接触的状态下被固定。