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    • 45. 发明申请
    • MULTI-STAGE RECONFIGURATION DEVICE AND RECONFIGURATION METHOD, LOGIC CIRCUIT CORRECTION DEVICE, AND RECONFIGURABLE MULTI-STAGE LOGIC CIRCUIT
    • 多阶段重新配置设备和重新配置方法,逻辑电路校正设备和可重新配置的多级逻辑电路
    • US20110153980A1
    • 2011-06-23
    • US12294763
    • 2007-03-02
    • Tsutomu SasaoKazuto Ishida
    • Tsutomu SasaoKazuto Ishida
    • G06F15/76G06F9/30
    • H03K19/1733
    • To provide a device to reconfigure multi-level logic networks, which enable logic modification and reconfiguration of a multi-level logic network with small circuit area and low-power dissipation in a simple manner. For example, in the case of reconfiguring a multi-level logic network following logic modification for deleting an output vector F(b) of an objective logic function F(X) corresponding to an input vector b, unmodified pq elements are selected one by one from the nearest pq element EG to an output side. At this time, among output values of pq elements closer to an input side than selected pq elements, output values corresponding to the input vector, which equal an output value corresponding to any input variable X other than the input vector b are considered modified and thus not selected. Then, a selected output value corresponding to the input vector b is rewritten to an “invalid value”.
    • 提供一种重新配置多级逻辑网络的设备,其以简单的方式实现具有小电路面积和低功耗的多级逻辑网络的逻辑修改和重新配置。 例如,在用于删除对应于输入向量b的对象逻辑函数F(X)的输出向量F(b)的逻辑修改之后重新配置多级逻辑网络的情况下,逐个选择未修改的pq元素 从最近的pq元素EG到输出侧。 此时,在比选择的pq元素更接近输入侧的pq元件的输出值之中,对应于与输入矢量b以外的任何输入变量X相对应的输出值的输入矢量的输出值被认为是修改的,因此 未选中的。 然后,将与输入向量b对应的选择的输出值重写为“无效值”。
    • 46. 发明申请
    • ACOUSTIC CHARACTERISTIC CONTROL APPARATUS
    • 声学特性控制装置
    • US20110140770A1
    • 2011-06-16
    • US13057896
    • 2009-08-03
    • Yasushi SatoAtsuko Ryu
    • Yasushi SatoAtsuko Ryu
    • H03K5/00
    • G10L25/48G10H1/0008G10H2210/061G10L25/09
    • An acoustic characteristic control apparatus supplies music signal, for example, to input terminal connected to a band-pass filter and a peaking filter. In a zero-cross detection circuit, a pulse signal corresponding to a period while a signal is positive is formed. A pulse-width measuring circuit output a signal corresponding to a pulse width. Next, the output of the pulse-width measuring circuit is inputted to one comparator and another comparator. The one comparator discriminates a time when the pulse width is equal to or larger than a first setting value, and the another comparator discriminates a time when the pulse width is equal to or smaller than a second setting value. The comparator is connected to the up terminal and the down terminal of an up/down counter. The output of the up/down counter is connected to the peaking filter through the subtractor, and acoustic characteristics of the peaking filter is controlled according to the count value of the up/down counter.
    • 声学特性控制装置例如将音乐信号提供给连接到带通滤波器和峰值滤波器的输入端子。 在零交叉检测电路中,形成与信号为正的周期相对应的脉冲信号。 脉冲宽度测量电路输出与脉冲宽度对应的信号。 接下来,将脉冲宽度测量电路的输出输入到一个比较器和另一个比较器。 一个比较器鉴别脉冲宽度等于或大于第一设定值的时间,另一个比较器鉴别脉冲宽度等于或小于第二设定值的时间。 比较器连接到上/下计数器的上端和下端。 上/下计数器的输出通过减法器连接到峰化滤波器,根据升/降计数器的计数值控制峰值滤波器的声学特性。
    • 47. 发明授权
    • Diagnostic device, diagnostic method, program, and recording medium
    • 诊断设备,诊断方法,程序和记录介质
    • US07913144B2
    • 2011-03-22
    • US12513401
    • 2007-10-24
    • Xiaoqing WenSeiji KajiharaKohei MiyaseYoshihiro MinamotoHiroshi Date
    • Xiaoqing WenSeiji KajiharaKohei MiyaseYoshihiro MinamotoHiroshi Date
    • G06F11/00
    • G01R31/31705G01R31/318307G01R31/318342G01R31/318392
    • Provided are a diagnostic device and the like providing a favorable diagnosis result by further improving the diagnosis resolution. A diagnostic device 1 has a symbol injection part 3, which is composed of a symbol injection part for an active element 5 and a symbol injection part for a passive element 7, an occurrence probability providing part 9, an equal occurrence probability providing part 11, and a switching part 13. A per-test X-fault diagnosis flow by the diagnostic device 1 consists of a stage for collecting diagnostic information and a stage for drawing diagnostic conclusion. The layout of a deep-submicron LSI circuit usually needs to involve multiple layers, which means that vias are extensively used. Since via information is utilized by the symbol injection part for a passive element 7, it becomes possible to locate defects to the via level, greatly improving the diagnostic resolution. Since, by the occurrence probability providing part 9, a new diagnosis value is used and, the occurrence probabilities of possible faulty logic combinations are taken into consideration, the reality in a deep-submicron LSI circuit is better reflected, which contributes to the improvement of diagnostic resolution.
    • 通过进一步提高诊断分辨率,提供诊断装置等提供有利的诊断结果。 诊断装置1具有符号注入部3,其由有源元件5的符号注入部和无源元7的符号注入部,发生概率提供部9,等发生概率提供部11, 以及切换部13.诊断装置1的每个测试X故障诊断流程包括用于收集诊断信息的阶段和用于绘制诊断结论的阶段。 深亚微米LSI电路的布局通常需要涉及多层,这意味着通孔被广泛使用。 由于无源元件7的符号注入部使用通孔信息,因此可以将缺陷定位到通孔电平,大大提高诊断分辨率。 由于通过发生概率提供部9使用新的诊断值,并且考虑了可能的故障逻辑组合的发生概率,所以更好地反映了深亚微米LSI电路中的现实,这有助于改善 诊断分辨率。
    • 48. 发明授权
    • Water-soluble elastin, process for producing same, and food and medicine containing same
    • 水溶性弹性蛋白,其制造方法以及含有它们的食品和药物
    • US07851441B2
    • 2010-12-14
    • US11666443
    • 2005-10-27
    • Kouji OkamotoHiroshi YamadaIori Maeda
    • Kouji OkamotoHiroshi YamadaIori Maeda
    • A61K38/39C07K14/78C07K1/14
    • C07K14/78A61K38/00
    • A low-molecular-weight water-soluble elastin having a molecular weight of about 10,000 to 30,000 and a high-molecular-weight water-soluble elastin having a molecular weight of about 30,000 to 300,000 are provided, 79% to 84% of the constituent amino acids of the elastin comprising proline, glycine, alanine, and valine, 2% to 3% comprising aspartic acid and glutamic acid, 0.7% to 1.3% comprising lysine, histidine, and arginine, and 0.2% to 0.4% comprising desmosine and isodesmosine. The low-molecular-weight water-soluble elastin that is obtained may be used in a functional food or a medicine. Such a high-purity water-soluble elastin may be produced by obtaining pure insoluble elastin by subjecting animal body tissue to a collagen removal treatment and then fragmenting the insoluble elastin by means of a solubilizing liquid. It may be produced simply, merely by adjusting the concentration of an alkaline solution and the reaction time without recovering insoluble elastin from the animal body tissue.
    • 提供分子量约为10,000至30,000的低分子量水溶性弹性蛋白和分子量为约30,000至300,000的高分子量水溶性弹性蛋白,79%至84%的成分 包含脯氨酸,甘氨酸,丙氨酸和缬氨酸的弹性蛋白的氨基酸,包含天冬氨酸和谷氨酸的2%至3%,包含赖氨酸,组氨酸和精氨酸的0.7%至1.3%的氨基酸,以及包含去肌氨酸和异丝氨酸的0.2%至0.4% 。 获得的低分子量水溶性弹性蛋白可以用于功能性食品或药物中。 这样的高纯度水溶性弹性蛋白可以通过使动物体组织进行胶原去除处理,然后利用增溶液使不溶性弹性蛋白破碎而获得纯不溶性弹性蛋白来制造。 仅通过调节碱性溶液的浓度和反应时间就可以简单地制备,而不从动物体组织中回收不溶性弹性蛋白。
    • 49. 发明授权
    • Partial discharge charge quantity measuring method and device
    • 局部放电电荷量测量方法及装置
    • US07782063B2
    • 2010-08-24
    • US11997215
    • 2006-10-13
    • Shinya OhtsukaMasayuki HikitaTakashi TeshimaYuji Hayashi
    • Shinya OhtsukaMasayuki HikitaTakashi TeshimaYuji Hayashi
    • G01R31/08
    • G01R31/1272G01R29/0871
    • The present invention includes an antenna for measuring an electromagnetic wave radiated from a device to be measured stemming from partial discharge and having sensitivity at least in the UHF band; a filter for extracting a TEM mode component from a measured time waveform; and a measurement device body including a processing section adapted to obtain a second order integral value of the time waveform having undergone the filter processing and obtain a discharge charge quantity from the value. The present invention also comprises an electromagnetic wave radiation simulating apparatus for inputting a pseudo discharge signal to the device to be measured and previously obtaining the relation between the second order integral value and the discharge charge quantity, the processing section obtains the discharge charge quantity from the second order integral value with reference to the previously obtained relation between the second order integral value and the discharge charge quantity.
    • 本发明包括一个天线,用于测量从部分放电产生的测量装置辐射的电磁波,并至少具有UHF频带的灵敏度; 用于从测量的时间波形中提取TEM模式分量的滤波器; 以及测量装置本体,其包括处理部,其适于获得经过过滤处理的时间波形的二阶积分值,并从该值获得放电电荷量。 本发明还包括电磁波辐射模拟装置,用于向待测装置输入伪放电信号,并预先获得二次积分值与放电电荷量之间的关系,处理部从第 参考先前获得的二阶积分值与放电电荷量之间的关系的二阶积分值。
    • 50. 发明申请
    • LOGIC VALUE DETERMINATION METHOD AND LOGIC VALUE DETERMINATION PROGRAM
    • 逻辑价值确定方法和逻辑价值确定方案
    • US20100205491A1
    • 2010-08-12
    • US12761654
    • 2010-04-16
    • Kohei MiyaseXiaoqing WenSeiji Kajihara
    • Kohei MiyaseXiaoqing WenSeiji Kajihara
    • G01R31/3177G06F11/25
    • H03K19/23G01R31/318371
    • The provided are logic value determination method and program for identifying unspecified bits and determining their logic values shortly. The method enables to control the total number of logic value differences between corresponding input and output lines of combinational circuit. The method includes the first step for determining, when output has a logic value and input has an unspecified value, that the unspecified bit has the logic value of output, the second step for determining, when output has an unspecified value and input has a logic value, the logic value of the unspecified bit by justification, and the third step for calculating, when input and output both have unspecified values, probabilities of output to have 0 and 1, and determining the logic value of the unspecified bit based on the difference between the probabilities. The third step is repeated until the total number reaches a target value.
    • 提供的是用于识别未指定位并且很快确定其逻辑值的逻辑值确定方法和程序。 该方法能够控制组合电路的相应输入和输出线之间的逻辑值差的总数。 该方法包括用于当输出具有逻辑值且输入具有未指定值时确定未指定位具有输出逻辑值的第一步骤,用于当输出具有未指定值并且输入具有逻辑时确定的第二步骤 值,未指定位的逻辑值,以及当输入和输出都具有未指定值时计算的第三步骤,输出的概率为0和1,以及基于差异来确定未指定位的逻辑值 概率之间。 重复第三步,直到总数达到目标值。