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    • 151. 发明授权
    • Phosphonamides, process for producing the same, and use thereof
    • 膦酰胺,其制备方法及其用途
    • US07829044B2
    • 2010-11-09
    • US10506424
    • 2003-03-03
    • Yoshikazu MakiokaTeruyuki HayashiMasato TanakaLi-Biao Han
    • Yoshikazu MakiokaTeruyuki HayashiMasato TanakaLi-Biao Han
    • C01F17/00C07D233/02
    • C22B59/00C07F9/4407C07F9/4419C07F9/65848C22B3/0052C22B3/0072Y02P10/234
    • The invention provides a process by which rare earth metal ions can be efficiently extracted by easy operation, and effective extracting reagents for the process. Specifically, phosphonamides represented by the general formula [1]; a process for producing the same; reagents for extracting rare earth metal ions, containing the phosphonamides; and a process for extraction of rare earth metal ions with the phosphonamides: [1] wherein R1 is alkyl, cycloalkyl, alkenyl, cycloalkenyl, alkynyl, aryl, aralkyl, or a heterocyclic group, with the proviso that each group may be substituted; R2 is hydrogen, alkyl, cycloalkyl, alkenyl, cycloalkenyl, aryl, aralkyl, or a heterocyclic group, with the proviso that each group may be substituted; R3 is hydrogen, alkyl, cycloalkyl, alkenyl, cycloalkenyl, aryl, aralkyl, or a heterocyclic group, with the proviso that each group may be substituted, or the two R3s may be united to form alkylene, cycloalkylene, or arylene.
    • 本发明提供了一种易于操作可有效提取稀土金属离子的方法,并为该方法提供了有效的提取试剂。 具体地,由通式[1]表示的膦酰胺; 其制造方法; 含有膦酰胺的稀土金属离子萃取试剂; 和用膦酰胺萃取稀土金属离子的方法:[1]其中R1是烷基,环烷基,烯基,环烯基,炔基,芳基,芳烷基或杂环基,条件是每个基团可以被取代; R2是氢,烷基,环烷基,烯基,环烯基,芳基,芳烷基或杂环基,条件是每个基团可以被取代; R 3是氢,烷基,环烷基,烯基,环烯基,芳基,芳烷基或杂环基,条件是每个基团可以被取代,或者两个R 3可以一起形成亚烷基,亚环烷基或亚芳基。
    • 152. 发明申请
    • SUBSTRATE CLEANING APPARATUS
    • 基板清洁装置
    • US20100108106A1
    • 2010-05-06
    • US12529875
    • 2008-02-27
    • Norikazu HoshiMasato Tanaka
    • Norikazu HoshiMasato Tanaka
    • B08B3/00
    • B08B3/04B08B3/048G02F1/1303G02F2001/133302
    • A chemical solution is mixed to deionized water from a chemical cartridge 29 via a chemical supply unit 27 to produce a treating liquid. Then, the treating liquid is supplied to a treating tank via a supply pipe. The chemical cartridge 29 is not supplemented with the chemical solution through a supplementing line etc., and the chemical solution is not contaminated. As a result, cleanliness of the chemical solution can be kept high, and substrates can be cleaned at a high clean level. Moreover, the chemical cartridge 29 also has a residual quantity display portion 39. Thus a residual quantity of the chemical solution in the chemical cartridge 29 can easily be recognized, and periodic replacement timing of the chemical cartridge 29 can be recognized easily. Furthermore, the chemical cartridge 29 can control the flow rate by a nozzle portion 47. Consequently, the chemical cartridge 29 can directly be attached to the supply pipe, which can simplify the construction and thus can reduce apparatus cost.
    • 化学溶液通过化学品供应单元27从药物盒29混合到去离子水中以产生处理液。 然后,经由供给管将处理液供给到处理槽。 化学药剂盒29不通过补充线等补充化学溶液,并且化学溶液不被污染。 结果,化学溶液的清洁度可以保持较高,并且可以以高清洁水平清洁基底。 此外,化学药盒29也具有残留量显示部39.因此,可以容易地识别化学药剂盒29中的化学溶液的残留量,并且可以容易地识别化学药品盒29的定期更换定时。 此外,化学药剂盒29可以通过喷嘴部47来控制流量。因此,药剂盒29可以直接附接到供给管,这可以简化结构,从而可以降低设备成本。
    • 153. 发明授权
    • Control object model generation device and generation method
    • 控制对象模型生成装置及其生成方法
    • US07664556B2
    • 2010-02-16
    • US11666040
    • 2005-10-27
    • Masato TanakaMayumi Miura
    • Masato TanakaMayumi Miura
    • G05B13/04G05B13/02
    • G05B17/02
    • A control object model generation device of this invention includes a simulation computing unit (5) which executes simulation of a control system including a controlled system represented by a mathematical model and a controller represented by a controller algorithm, a model control feature amount computing unit (8) which computes a model control feature amount from the simulation result, an evaluation function computing unit (9) which computes an evaluation function value indicating the similarity between a real control feature amount obtained from a control result on an actual controlled system and a model control feature amount, and a controlled system model parameter search computing unit (10) which executes simulation while sequentially changing the values of controlled system model parameters set in the mathematical model, and obtains controlled system model parameters which optimize the evaluation function value.
    • 本发明的控制对象模型生成装置包括:模拟计算部(5),其对由数学模型表示的受控系统和由控制器算法表示的控制器,模型控制特征量运算部( 8),其从所述模拟结果计算模型控制特征量;评估函数计算单元(9),其计算指示从实际受控系统的控制结果获得的实际控制特征量与模型之间的相似性的评估函数值 控制特征量,以及受控系统模型参数搜索计算单元(10),其在顺序改变数学模型中设定的受控系统模型参数的值的同时执行模拟,并获得优化评估函数值的受控系统模型参数。
    • 154. 发明授权
    • Optical signal noise suppressor and optical signal noise suppressing method
    • 光信号噪声抑制器和光信号噪声抑制方法
    • US07551808B2
    • 2009-06-23
    • US11987755
    • 2007-12-04
    • Masato Tanaka
    • Masato Tanaka
    • G02F1/01G02B6/00
    • H04B10/2537
    • The present invention provides an optical signal noise suppressor and an optical signal noise suppressing method that can decrease noise components to be superimposed on signal light. The optical signal noise suppressor is a device for suppressing noise caused by SBS which is generated when a signal light propagates from a first end side to a second end side of an optical fiber, and comprises a light source section, an optical attenuator, an optical circulator and an optical isolator. A counter light, outputted from the light source section and passing through the optical attenuator, is guided into the optical fiber via the optical circulator. The counter light guided into the optical fiber is interrupted by the optical isolator, and does not reach the signal light source section. The counter light has the same optical frequency components as the SBS light generated by the propagation of the signal light, and propagates in the optical fiber in an opposite direction of the propagation direction of the signal light.
    • 本发明提供一种可以减少叠加在信号光上的噪声分量的光信号噪声抑制器和光信号噪声抑制方法。 光信号噪声抑制器是用于抑制当信号光从光纤的第一端侧传播到第二端侧时产生的SBS引起的噪声的装置,包括光源部,光衰减器,光 循环器和光隔离器。 从光源部输出并通过光衰减器的对向光通过光循环器被引导到光纤中。 引导入光纤的反光被光隔离器中断,不会到达信号光源部分。 反射光具有与由信号光的传播产生的SBS光相同的光频率分量,并且在光纤中沿与信号光的传播方向相反的方向传播。
    • 155. 发明申请
    • RESIN COMPOSITION
    • 树脂组合物
    • US20090137771A1
    • 2009-05-28
    • US12063469
    • 2006-08-11
    • Satoshi MoriyamaIwao HottaMasato TanakaYoshikazu Makioka
    • Satoshi MoriyamaIwao HottaMasato TanakaYoshikazu Makioka
    • C08G75/06C08G79/04
    • C08F2/50A61K6/0023A61K6/083C08F222/1006C08F226/10C08L33/00
    • The present invention provides a resin composition which can be cured by visible light and whose cured product is not colored or little colored, said composition comprising a phosphine oxide compound represented by the following general formula (1) (wherein R1 represents alkyl, alkenyl, alkynyl, cycloalkyl, cycloalkenyl, substituted or unsubstituted aryl, substituted or unsubstituted heteroaryl, substituted or unsubstituted aralkyl, or substituted or unsubstituted aralkenyl; and R2, R3, R4, R5, R6, R7, R8 and R9, which may be the same or different, each represent a hydrogen atom, a halogen atom, alkyl, alkenyl, substituted or unsubstituted aralkyl, or substituted or unsubstituted aralkenyl, and two adjacent groups among R2, R3, R4, R5, R6, R7, R8 and R9 may form a hydrocarbon ring together with the two carbon atoms adjacent thereto) and an unsaturated compound.
    • 本发明提供一种树脂组合物,其可以通过可见光固化,其固化产物不着色或少着色,所述组合物包含由以下通式(1)表示的氧化膦化合物(其中R 1表示烷基,烯基,炔基 取代或未取代的杂芳基,取代或未取代的芳烷基或取代或未取代的芳烯基;以及R2,R3,R4,R5,R6,R7,R8和R9可以相同或不同 各自表示氢原子,卤素原子,烷基,烯基,取代或未取代的芳烷基或取代或未取代的芳烯基,R2,R3,R4,R5,R6,R7,R8和R9中的两个相邻基团可以形成烃 与其相邻的两个碳原子一起环)和不饱和化合物。
    • 156. 发明申请
    • Scattered pilot location detector
    • 分散导频位置检测器
    • US20080095255A1
    • 2008-04-24
    • US11905007
    • 2007-09-27
    • Masato TanakaHiroji Akahori
    • Masato TanakaHiroji Akahori
    • H04B7/10
    • H04L27/2647H04H40/27H04L5/0007H04L5/0048H04L27/2613
    • The present invention provides a scattered pilot (SP) location detector capable of detecting patterns of SP symbols promptly without using a TMCC signal. The SP location detector comprises a multiplier which multiplies received signals generated by demodulating OFDM modulation signals in which pilot symbols are dispersively disposed in accordance with four types of patterns and which are transmitted periodically, by a pseudo-random number bit sequence, four arithmetic circuits which are respectively provided corresponding to the four types of patterns and which respectively extract pilot symbols corresponding to respective patterns from results of multiplication by the multiplier and calculate sums of phase differences between the extracted pilot symbols, followed by outputting absolute values thereof, and a pattern detection circuit which detects the corresponding arithmetic circuit maximum in the calculated absolute value from within the four arithmetic circuits.
    • 本发明提供一种能够在不使用TMCC信号的情况下迅速地检测SP符号的图案的散射导频(SP)位置检测器。 SP位置检测器包括乘法器,其乘以通过解调OFDM调制信号而产生的接收信号,其中导频符号根据四种类型的模式被分散布置,并且通过伪随机数比特序列周期性地传输,四个运算电路 分别对应于四种类型的图案提供,并且分别从由乘法器的乘法结果分别提取对应于各个图案的导频符号,并且计算提取的导频符号之间的相位差的和,随后输出其绝对值,以及模式检测 电路,其在四个运算电路内检测计算出的绝对值中相应的算术电路最大值。
    • 159. 发明申请
    • Pid parameter adjustment device
    • Pid参数调整装置
    • US20060224255A1
    • 2006-10-05
    • US10569035
    • 2004-08-02
    • Masato TanakaSeiji Kato
    • Masato TanakaSeiji Kato
    • G05B13/02
    • G05B11/42G05B13/042
    • A PID parameter adjustment device includes a model storage unit (1) which stores a mathematical model of a controlled system, a PID controller storage unit (2) which stores a controller algorithm, a constraint condition storage unit (3) which stores constraint conditions on operation, a simulation computation unit (5) which executes a simulation to simulate a control system on the basis of the constraint conditions, an ideal control result storage unit (6) which stores an ideal control response characteristic, an evaluation function computation unit (7) which computes an evaluation function value representing the proximity between a simulation result and the ideal control response characteristic, and a PID parameter search computation unit (8) which searches for PID parameters which makes an evaluation function value optimal by executing a simulation while changing the PID parameters.
    • PID参数调整装置包括存储受控系统的数学模型的模型存储单元(1),存储控制器算法的PID控制器存储单元(2),存储约束条件的约束条件存储单元(3) 操作,基于约束条件执行仿真以模拟控制系统的仿真计算单元(5),存储理想控制响应特性的理想控制结果存储单元(6),评估函数计算单元(7) ),其计算表示模拟结果与理想控制响应特性之间的接近度的评价函数值;以及PID参数搜索计算单元(8),其通过在改变所述PID参数搜索计算单元(8)中搜索使评估函数值最优化的PID参数 PID参数。