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    • 32. 发明申请
    • COMMUNICATION APPARATUS AND COMMUNICATION METHOD
    • 通信设备和通信方法
    • US20110176681A1
    • 2011-07-21
    • US13075332
    • 2011-03-30
    • Kenji YamadaTadashige IwaoHidefumi TakaokaSyunsuke Koga
    • Kenji YamadaTadashige IwaoHidefumi TakaokaSyunsuke Koga
    • H04L9/08
    • H04L9/0891
    • A communication apparatus includes an encryption key generation unit that generates encryption key information at constant encryption key generation intervals, a common key generation unit that generates common key information uniquely with respect to a generation time at common key generation intervals set longer than the encryption key generation intervals, a common key application unit that performs encryption or decryption of the encryption key information by using the common key information, and an encryption key distribution unit that makes a request to a data transmitting/receiving unit to distribute the encryption key information to a plurality of communication apparatuses to be communicated simultaneously at encryption key distribution intervals set shorter than the encryption key generation intervals to perform communication with higher security.
    • 一种通信装置,具备以恒定的加密密钥生成间隔生成加密密钥信息的加密密钥生成部,公制密钥生成部,其以相对于加密密钥生成时间长的公共密钥生成间隔,相对于生成时间唯一地生成公共密钥信息 间隔,通过使用公共密钥信息执行加密密钥信息的加密或解密的公共密钥应用单元,以及向数据发送/接收单元请求的加密密钥分发单元,用于将加密密钥信息分发到多个 的通信装置将以比加密密钥生成间隔短的加密密钥分发间隔同时进行通信,以进行更高安全性的通信。
    • 36. 发明授权
    • Method of cleaning and process for producing semiconductor device
    • 用于制造半导体器件的清洁和处理方法
    • US07767585B2
    • 2010-08-03
    • US12066103
    • 2006-09-05
    • Koichiro SagaKenji YamadaTomoyuki AzumaYuji Murata
    • Koichiro SagaKenji YamadaTomoyuki AzumaYuji Murata
    • H01L21/302H01L21/461
    • H01L21/76808H01L21/02063H01L21/76814H01L21/76883Y10S438/906
    • A method of cleaning for removing metal compounds attached to a surface of a substrate, wherein the cleaning is conducted by supplying a supercritical fluid of carbon dioxide comprising at least one of triallylamine and tris(3-aminopropyl)amine to the surface of the substrate and a process for producing a semiconductor device using the method of cleaning are provided. In accordance with the method of cleaning and the method for producing a semiconductor device using the method, etching residues or polishing residues containing metal compounds are efficiently removed selectively from the electroconductive material forming the electroconductive layer. When the electroconductive layer is a wiring, an increase in resistance due to residual metal compounds can be suppressed, and an increase in the leak current due to diffusion of the metal from the metal compounds to the insulating film can be prevented. Therefore, reliability on the wiring is improved, and the yield of the semiconductor device can be increased.
    • 一种用于去除附着在基材表面上的金属化合物的清洗方法,其中通过将包含三烯丙基胺和三(3-氨基丙基)胺中的至少一种的二氧化碳的超临界流体供应到基材的表面进行清洗, 提供了使用清洗方法制造半导体器件的方法。 根据使用该方法的清洗方法和制造半导体器件的方法,从形成导电层的导电材料中选择性地有效地除去含有金属化合物的残留物或抛光残渣。 当导电层是布线时,可以抑制由于残留的金属化合物引起的电阻的增加,并且可以防止由金属从金属化合物扩散到绝缘膜的漏电流的增加。 因此,能够提高布线的可靠性,能够提高半导体装置的收率。
    • 37. 发明授权
    • Abnormality detecting device of electric power converting device and abnormality detecting method
    • 电力转换装置异常检测装置及异常检测方法
    • US07733616B2
    • 2010-06-08
    • US12216164
    • 2008-06-30
    • Kenji Yamada
    • Kenji Yamada
    • H02H7/08
    • G01R31/42B60L3/0023H02P29/0241Y02T10/642
    • Each of three-phase arm of an inverter has first and second switching elements connected in series together at a connection point to the corresponding phase coil of the three-phase motor. Control device turns on the first switching element of the i-th (i is a natural number smaller than four) for a predetermined time period, and determines that the second switching element of the i-th arm has a short fault, when an overcurrent exceeding a predetermined threshold is detected within the predetermined time period. The predetermined time period is shorter than a time period from a time point of turning on the first switching element of the i-th arm to a time point of attaining the predetermined threshold by a current flowing through a path extending from a power supply line through the second switching element of the remaining arm other than the i-th arm to a ground line.
    • 逆变器的三相臂中的每一个都具有在与三相电动机的相应线圈的连接点处串联连接的第一和第二开关元件。 控制装置在预定时间段内接通第i个第一开关元件(i是小于4的自然数),并且当过电流判定为第i个臂的第二开关元件具有短路故障时 在预定时间段内检测到超过预定阈值。 预定时间段比从第i臂的第1开关元件开始的时刻到通过从电源线延伸的路径流过的电流达到规定的阈值的时刻的时间段短 除了第i臂以外的剩余臂的第二开关元件到地线。
    • 38. 发明授权
    • Embroidery data creation apparatus and embroidery data creation program recorded in computer-readable recording medium
    • 记录在计算机可读记录介质中的刺绣数据创建装置和刺绣数据创建程序
    • US07693598B2
    • 2010-04-06
    • US11730490
    • 2007-04-02
    • Kenji Yamada
    • Kenji Yamada
    • D05C5/02
    • D05B19/08
    • To provide an embroidery data creation apparatus, an embroidery data creation program, and a recording medium that records the embroidery data creation program, which create embroidery data for embroidery that is clear and sharp even when the tint or output size of an image is changed. The number of pixels necessary to create embroidery data is determined from thread density, size of the embroidery, and copied color data. Initial angle information is created from angle data and the angle information having necessary pixel configuration is re-computed from the initial angle information. Then, line segment data is created from the re-computed angle information, color data is created from the size adjusted color data and the line segment data, and the embroidery data is created from the line segment data and the color data.
    • 为了提供刺绣数据创建装置,刺绣数据创建程序和记录刺绣数据创建程序的记录介质,即使当图像的色调或输出尺寸改变时,其也创建了清晰锐利的刺绣刺绣数据。 创建刺绣数据所需的像素数是根据线程密度,刺绣大小和复制的颜色数据确定的。 从角度数据创建初始角度信息,并且从初始角度信息重新计算具有必要像素构造的角度信息。 然后,根据重新计算的角度信息创建线段数据,根据调整大小的颜色数据和线段数据创建颜色数据,并从线段数据和颜色数据创建刺绣数据。
    • 39. 发明授权
    • Embroidery data creation apparatus and embroidery data creation program recorded in computer-readable recording medium
    • 记录在计算机可读记录介质中的刺绣数据创建装置和刺绣数据创建程序
    • US07680558B2
    • 2010-03-16
    • US11637716
    • 2006-12-13
    • Kenji Yamada
    • Kenji Yamada
    • D05C5/02
    • D05B19/08
    • The process searches a block that contains a current line segment for any other line segments and, if they are found, calculates a distance between an endpoint of the current line segment and endpoint nodes of all the line segments found in the block. The process sequentially searches for the line segments in the block in accordance with search order determined on the basis of a search ranking table if a search range is not crossed over and calculates the distances between the endpoint of the current line segment and the endpoint nodes of the found line segments. Then, the process compares the distance from the endpoint node of the already line segment found and the distance from the newly found endpoint node and outputs the smaller one as the next line segment.
    • 该进程搜索包含任何其他线段的当前线段的块,并且如果找到它们,则计算当前线段的端点与块中发现的所有线段的端点节点之间的距离。 如果搜索范围没有交叉,则处理依照搜索顺序表确定的搜索顺序依次搜索块中的线段,并且计算当前线段的端点与端点节点之间的距离 找到的线段。 然后,该过程将比较已发现的线段的端点节点与新近找到的端点节点的距离,并将较小的一个作为下一个线段进行比较。