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    • 81. 发明授权
    • Power consumption analyzing method and computer-readable storage medium
    • 功耗分析方法和计算机可读存储介质
    • US07882458B2
    • 2011-02-01
    • US11907822
    • 2007-10-17
    • Kazuhide TamakiRyuji FujitaJunichi NiitsumaTakayuki Sasaki
    • Kazuhide TamakiRyuji FujitaJunichi NiitsumaTakayuki Sasaki
    • G06F17/50
    • G06F17/5036G06F2217/78
    • A power consumption analyzing method, to be implemented by a computer, is for a circuit developing procedure that makes a logic design of the circuit in an RTL design stage and inserts a gated clock with respect to the circuit in a subsequent logic synthesis stage. The method comprises an extraction step, implemented by the computer, extracting a signal which is judged that it will be transformed into a gated clock in the logic synthesis stage, and storing the signal in a memory part, a measuring step, implemented by the computer, measuring an valid time of the signal stored in the memory part by a logic simulation, and storing the valid time in the memory part, and a post-simulation step, implemented by the computer, computing a power consumption analysis result of the circuit from the valid time stored in the memory part, a number of registers for each of modules that are function units forming the circuit, and a memory capacity coefficient indicating an extent to which a memory capacity within the circuit affects the power consumption of the circuit, and outputting the power consumption analysis result.
    • 由计算机实现的功耗分析方法是用于在RTL设计阶段中进行电路的逻辑设计的电路开发过程,并且在随后的逻辑合成阶段中插入关于电路的门控时钟。 该方法包括由计算机实现的提取步骤,提取在逻辑合成级中判断为将其变换为门控时钟的信号,并将该信号存储在由计算机实现的存储器部分中的测量步骤 ,通过逻辑模拟测量存储在存储器部分中的信号的有效时间,并将有效时间存储在存储器部分中,以及由计算机实现的后仿真步骤,计算电路的功耗分析结果 存储在存储器部分中的有效时间,作为形成电路的功能单元的每个模块的寄存器数量以及指示电路内的存储器容量影响电路的功耗的程度的存储器容量系数,以及 输出功耗分析结果。
    • 82. 发明授权
    • Shape evaluation method, shape evaluation device, and device having the shape evaluation device
    • 形状评价方法,形状评价装置以及具有形状评价装置的装置
    • US07733504B2
    • 2010-06-08
    • US11794718
    • 2005-12-06
    • Takashi MaekawaYoh NishimuraTakayuki SasakiYuu Nishiyama
    • Takashi MaekawaYoh NishimuraTakayuki SasakiYuu Nishiyama
    • G01B11/24
    • G01B11/24Y02T10/82
    • A shape evaluation device performs simulation by using an annular light source or concentric light source instead of a rectilinear light source and calculates a characteristic line for performing shape evaluation. The shape evaluation device includes a calculation device (2) having: a distance vector calculation unit (2a) for acquiring a distance vector representing a distance between the circle and the vector, a distance function unit (2b) for acquiring a distance function from the distance vector, and a distance function calculation unit (2c) for acquiring a point on a curved surface where the value of the distance function is a predetermined value. By performing simulation using the annular or concentric light source, it is possible to obtain a characteristic line capable of observing distortion in all the directions by one calculation. The present invention reduces the number of calculations required for calculating the characteristic line for performing shape evaluation and reduce the time required for calculation, thereby enabling evaluation by a dynamic shape.
    • 形状评估装置通过使用环形光源或同心光源代替直线光源进行模拟,并计算用于进行形状评估的特性线。 形状评估装置包括:计算装置(2),具有:距离矢量计算部(2a),用于获取表示圆与矢量之间的距离的距离矢量;距离函数单元(2b),用于从 距离矢量和用于获取距离函数的值为预定值的曲面上的点的距离函数计算单元(2c)。 通过使用环形或同心光源进行模拟,可以通过一次计算获得能够观察所有方向的变形的特征线。 本发明减少了用于计算用于进行形状评估的特征线所需的计算次数,并且减少了计算所需的时间,从而使得能够通过动态形状进行评估。
    • 83. 发明申请
    • Novel Shuttle Vector
    • 小号班车矢量
    • US20100129323A1
    • 2010-05-27
    • US11718680
    • 2005-11-24
    • Yasunobu KanoYoshinori HamajiMinoru FujimoriTakayuki SasakiKyoko KohnoJun AmanoShun'ichiro Taniguchi
    • Yasunobu KanoYoshinori HamajiMinoru FujimoriTakayuki SasakiKyoko KohnoJun AmanoShun'ichiro Taniguchi
    • A61K35/00A61P43/00C12N1/20C12N15/00
    • C12N15/70A61K38/00C12N15/746
    • The present invention provides a shuttle vector for a microorganism of the genus Bifidobacterium (BM) and Escherichia coli having a wide host range and a large copy number in BM and capable of highly expressing a desired protein when used as an expression vector; an expression vector capable of expressing a desired gene in BM by use of the shuttle vector; BM transformed with the expression vector; and an antitumor agent comprising the BM as an active ingredient. It comprises a pTB6-derived region portion comprising a replication origin (oriV)-repB region of pTB6 but not comprising MembB, MobA, OrfI, and oriT regions of pTB6 and an Escherichia coli-derived plasmid portion comprising a replication origin (oriC) region of Escherichia coli but having deleted DNA encoding an N-terminal region of an ampicillin resistance gene (ampR) expression product β-lactamase, and constitute a shuttle vector for Escherichia coli with a BM having an average copy number of 6 to 30.
    • 本发明提供了一种用于双歧杆菌(BM)和微生物的穿梭载体,其具有宽的宿主范围,并且在BM中具有大的拷贝数,并且当用作表达载体时能够高度表达所需的蛋白质。 能够通过穿梭载体在BM中表达所需基因的表达载体; BM用表达载体转化; 以及含有BM作为活性成分的抗肿瘤剂。 其包含pTB6衍生的区域部分,其包含pTB6的复制起点(oriV)-repB区,但不包含pBB6的MembB,MobA,OrfI和oriT区以及包含复制起点(oriC)区的大肠杆菌来源的质粒部分 的大肠杆菌,但是具有编码氨苄青霉素抗性基因(ampR)表达产物和β-内酰胺酶的N末端区域的缺失的DNA,并且构建具有平均拷贝数为6至30的BM的大肠杆菌的穿梭载体。
    • 84. 发明申请
    • VIRTUAL MACHINE OPERATION SYSTEM, VIRTUAL MACHINE OPERATION METHOD AND PROGRAM
    • 虚拟机操作系统,虚拟机操作方法和程序
    • US20100088699A1
    • 2010-04-08
    • US12532181
    • 2007-12-14
    • Takayuki Sasaki
    • Takayuki Sasaki
    • G06F9/455G06F21/22G06F9/46G06F9/445G06F15/16
    • G06F8/63
    • It makes possible to accomplish by distributing only a partial disk image to be substituted among three areas in the disk image area of a virtual machine image, i.e., the OS area, the application area, and the user data area. A virtual machine image generation means 102 generates a virtual machine image by combining a device configuration file, a virtual device configuration file, and three disk images (OS disk image, provisioning disk image, and user data disk image) stored in a virtual machine component storage means 101. A virtual machine image distribution means 103 distributes a virtual machine image generated by the virtual machine image generation means 102. A disk map generation means 106 generates a map of a write protection area and a map of an area where collection is carried out.
    • 通过在虚拟机图像的磁盘映像区域即OS区域,应用区域和用户数据区域中的三个区域中仅分配要替换的部分磁盘映像来实现。 虚拟机图像产生装置102通过组合存储在虚拟机组件中的设备配置文件,虚拟设备配置文件和三个磁盘映像(OS磁盘映像,配置磁盘映像和用户数据磁盘映像)来生成虚拟机映像 存储装置101.虚拟机图像分发装置103分配由虚拟机图像生成装置102生成的虚拟机图像。磁盘映射生成装置106生成写入保护区域和收集的区域的映射的映射 出来
    • 86. 发明申请
    • Shape Evaluation Method, Shape Evaluation Device, And Device Having The Shape Evaluation Device
    • 形状评估方法,形状评估装置和具有形状评估装置的装置
    • US20080088855A1
    • 2008-04-17
    • US11794718
    • 2005-12-06
    • Takashi MaekawaYoh NishimuraTakayuki SasakiYuu Nishiyama
    • Takashi MaekawaYoh NishimuraTakayuki SasakiYuu Nishiyama
    • G01B11/24
    • G01B11/24Y02T10/82
    • A shape evaluation device performs simulation by using an annular light source or concentric light source instead of a rectilinear light source and calculates a characteristic line for performing shape evaluation. The shape evaluation device includes a calculation device (2) having: a distance vector calculation unit (2a) for acquiring a distance vector representing a distance between the circle and the vector, a distance function unit (2b) for acquiring a distance function from the distance vector, and a distance function calculation unit (2c) for acquiring a point on a curved surface where the value of the distance function is a predetermined value. By performing simulation using the annular or concentric light source, it is possible to obtain a characteristic line capable of observing distortion in all the directions by one calculation. The present invention reduces the number of calculations required for calculating the characteristic line for performing shape evaluation and reduce the time required for calculation, thereby enabling evaluation by a dynamic shape.
    • 形状评估装置通过使用环形光源或同心光源代替直线光源进行模拟,并计算用于进行形状评估的特性线。 形状评价装置具备:计算装置(2),具有:距离矢量计算部(2a),用于获取表示所述圆与矢量之间的距离的距离矢量;距离函数单元(2b),用于获取距离函数 和距离函数计算单元(2c),用于获取距离函数的值为预定值的曲面上的点。 通过使用环形或同心光源进行模拟,可以通过一次计算获得能够观察所有方向的变形的特征线。 本发明减少了用于计算用于进行形状评估的特征线所需的计算次数,并且减少了计算所需的时间,从而使得能够通过动态形状进行评估。
    • 87. 发明申请
    • Power consumption peak estimation program for LSI and device therefor
    • LSI的功耗峰值估计程序及其设备
    • US20080077380A1
    • 2008-03-27
    • US11896943
    • 2007-09-06
    • Kazuhide TamakiRyuji FujitaJunichi NitsumaTakayuki Sasaki
    • Kazuhide TamakiRyuji FujitaJunichi NitsumaTakayuki Sasaki
    • G06F17/50
    • G06F17/5022G06F17/5036
    • As a program tool of the embodiment estimating the peak of power consumption, primary processing is performed in which logic simulation is executed in a first time period to extract operation data of a gated clock for every predetermined section within the first time period, e.g. operation waveform data or data on the number of operations. Then, a narrowed section, which is composed of one or more sections and in which the switching activity per unit time is higher compared to other sections, is discovered, the switching activity being obtained from the operation data, and this narrowed section is taken as a second time period. Then, secondary processing is performed in which logic simulation is executed in the second time period to extract signal waveform data for every clock cycle and obtain power consumption data corresponding to the clock cycles from the extracted signal waveform data.
    • 作为估计功耗峰值的实施例的程序工具,执行在第一时间段内执行逻辑模拟的第一处理,以在第一时间段内提取每个预定部分的门控时钟的操作数据,例如, 操作波形数据或操作次数的数据。 然后,发现由一个或多个部分组成并且其中每单位时间的切换活动与其他部分相比更高的变窄部分,从操作数据获得切换活动,并将该缩小部分视为 第二个时期。 然后,进行二次处理,其中在第二时间段中执行逻辑模拟以提取每个时钟周期的信号波形数据,并从所提取的信号波形数据中获得与时钟周期对应的功耗数据。
    • 89. 发明申请
    • Method of forming piezoelectric resin film
    • 形成压电树脂薄膜的方法
    • US20080008825A1
    • 2008-01-10
    • US11823906
    • 2007-06-29
    • Takeshi HabuTakayuki Sasaki
    • Takeshi HabuTakayuki Sasaki
    • B05D5/12
    • C08G73/1064C08G18/3243C08G18/7657H01L41/257H01L41/45
    • An objective is to provide a method of forming a piezoelectric resin film produced at low cost, and specifically to provide the method in which a large-area piezoelectric resin film is produced at low cost, and at reduced investment in facilities. Disclosed is a method of forming a piezoelectric resin film possessing the steps of polymerizing a monomer at a temperature of 5-60° C. to obtain a resin having a polymerization degree of 4-300, and a polarity group possessing one bond selected from a urea bond, an ester bond, an amide bond and an imide bond, coating the resin onto a substrate; and further polymerizing the resin at 70-250° C. while conducting a poling treatment.
    • 目的是提供一种形成低成本制造的压电树脂膜的方法,具体地提供了以低成本生产大面积压电树脂膜并且在设备中投资减少的方法。 公开了一种形成压电树脂膜的方法,所述压电树脂膜具有在5-60℃的温度下使单体聚合以获得聚合度为4-300的树脂和具有一个键的极性基团的步骤,所述极性基团选自 脲键,酯键,酰胺键和酰亚胺键,将树脂涂布到基底上; 并进一步在70-250℃聚合树脂,同时进行极化处理。
    • 90. 发明申请
    • Electronic Apparatus and Peak Power-Controlling Method Related Thereto
    • 电子设备与峰值功率控制方法相关
    • US20070266269A1
    • 2007-11-15
    • US11792719
    • 2005-12-05
    • Ryuji FuchikamiToshihiro IshikawaTakashi NishitobaTakayuki Sasaki
    • Ryuji FuchikamiToshihiro IshikawaTakashi NishitobaTakayuki Sasaki
    • G06F1/00
    • G06F9/5011G06F1/3203G06F1/329G06F9/5094Y02D10/22Y02D10/24
    • An electronic apparatus (200) comprises processors (20)-(22), devices (30)-(33), and a peak power-managing unit (10). The peak power-managing unit (10) includes a power information storage unit (11) operable to store a total power consumption value, and a suspended request storage unit (12) operable to store suspended use requests. Each of the processors (20)-(22) addresses, to the peak power-managing unit (10), a use request for the use of a target device among the devices (30)-(33). The peak power-managing unit (10) issues a device use permit notification to the processor when determining that the operation of the target device still maintains an added total power consumption value within a specified value. Upon receipt of the device use permit notification, the processor sets up a course of action to be provided by the target device. As a result, controlled peak power is provided, and the devices can be run according to updated information.
    • 电子设备(200)包括处理器(20) - (22),设备(30) - (33)和峰值功率管理单元(10)。 峰值功率管理单元(10)包括可操作以存储总功耗值的功率信息存储单元(11)和可操作以存储暂停的使用请求的暂停请求存储单元(12)。 处理器(20) - (22)中的每个处理器(22)向峰值功率管理单元(10)寻址在设备(30) - (33)中使用目标设备的使用请求。 峰值功率管理单元(10)在确定目标设备的操作仍然保持规定值内的附加总功耗值时,向处理器发出设备使用许可通知。 在接收到设备使用许可通知之后,处理器建立由目标设备提供的动作过程。 结果,提供受控的峰值功率,并且可以根据更新的信息来运行设备。