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    • 42. 发明申请
    • NUMERICAL CONTROL APPARATUS AND NUMERICAL CONTROL METHOD
    • 数控装置和数控系统
    • US20090248203A1
    • 2009-10-01
    • US12403085
    • 2009-03-12
    • Naoki NakamuraTomonori Sato
    • Naoki NakamuraTomonori Sato
    • G05B19/19
    • G05B19/4103G05B2219/43162G05B2219/50353
    • In a numerical control apparatus, a rotation-axis filtering processor subjects an angle change amount between interpolation points between rotation angles of a rotation axis to moving average filtering thereby smoothing the angle change amount between the interpolation points. A translation-axis timing synchronization unit subjects a moving amount between interpolation points between tool-tip positions of a translation axis to moving average filtering, to synchronize timing of rotation of the rotation axis being smoothed and timing of movement of the translation axis. A coordinate transformation unit transforms the tool-tip position into coordinates of a machine position of the translation axis according to a configuration of the machine tool, from each tool-tip position after timing synchronization between axes of the translation axis is performed and from each rotation angle of the rotation axis after being filtered.
    • 在数控装置中,旋转轴滤波处理器在旋转轴的旋转角度与移动平均滤波之间的插补点之间进行角度变化量,从而平滑插补点之间的角度变化量。 平移轴定时同步单元将平移轴的刀尖位置之间的插补点之间的移动量对移动平均滤波进行摄像,以使被平滑的旋转轴的旋转定时和平移轴的移动定时同步。 坐标变换单元根据机床的结构,在进行平移轴的轴之间的定时同步之后,从每个刀尖位置,从每个旋转,将刀尖位置变换为平移轴的机械位置的坐标 过滤后旋转轴的角度。
    • 43. 发明申请
    • Method of controlling beam weight detection and receiver
    • 控制光束重量检测和接收机的方法
    • US20080207133A1
    • 2008-08-28
    • US12071656
    • 2008-02-25
    • Tomonori SatoMasafumi Tsutsui
    • Tomonori SatoMasafumi Tsutsui
    • H04B17/00
    • H01Q3/2605H04B7/0617H04B7/0634H04B7/0639H04B17/26Y02D70/164Y02D70/444
    • A receiver in a wireless communication system including a transmitter that multiplies a plurality of transmission signals with a plurality of beam weights to transmit the transmission signal through a plurality of antennas. Also included is a receiver that receives the transmission signals, detects a specific beam weight of which reception state is a specific state among a plurality of to-be-detected beam weights, and notifies the transmitter of the detection of the specific beam weight. The receiver preferably includes a monitoring unit that monitors a state of variation in the beam weight by performing a statistics process on history of previously-detected beam weights. Also included is a control unit that controls the number of the-to-be-detected beam weights or a detection timing of the specific beam weight according to a monitoring result.
    • 一种无线通信系统中的接收机,包括将多个传输信号与多个波束权重进行乘法的发射机,以通过多个天线发射发射信号。 还包括接收发送信号的接收机,检测多个要被检测的波束权重中的接收状态是特定状态的特定波束权重,并且向发送机通知特定波束权重的检测。 接收器优选地包括监视单元,其通过对先前检测到的波束权重的历史进行统计处理来监视波束权重的变化状态。 还包括控制单元,该控制单元根据监视结果来控制待检测的光束权重的数量或特定光束重量的检测定时。
    • 47. 发明授权
    • Method of producing thin resin films
    • 薄树脂薄膜的制造方法
    • US06475571B1
    • 2002-11-05
    • US09830538
    • 2001-07-06
    • Noriyasu EchigoKazuyoshi HondaMasaru OdagiriNobuki SunagareToru MiyakeTomonori Sato
    • Noriyasu EchigoKazuyoshi HondaMasaru OdagiriNobuki SunagareToru MiyakeTomonori Sato
    • B05D104
    • B05D1/60B05B7/0012B05B13/0207B05B13/0228B05B17/0623B05B17/063B29C41/26G11B5/73H01G4/18
    • A method for manufacturing a resin thin film of the present invention includes supplying a liquid resin material and a gas to a two-fluid nozzle by pressure; ejecting the resin material in the form of atomized particles toward a heating member by the two-fluid nozzle, thereby adhering the resin material to the heating member; or mixing a liquid resin material with a gas; ejecting the resin material in form of atomized particles toward a heating member that is provided under reduced pressure, thereby adhering the resin material to the heating member; and evaporating the resin material on the heating member to obtain the evaporated resin material. Thus, the present invention can provide a resin thin film having a uniform thickness stably with simple means at a low cost. The resin thin film obtained by the present invention can be used in a wide range, for example a magnetic recording medium such as a magnetic tape, a wrapping material, and an electronic component.
    • 本发明的树脂薄膜的制造方法包括:通过压力将液体树脂材料和气体供给到双流体喷嘴; 通过双流体喷嘴将雾化颗粒形式的树脂材料喷射到加热构件,从而将树脂材料粘附到加热构件; 或将液体树脂材料与气体混合; 将以雾化颗粒的形式的树脂材料朝向减压设置的加热构件喷射,从而将树脂材料粘附到加热构件; 并蒸发加热部件上的树脂材料,得到蒸发的树脂材料。 因此,本发明可以以简单的方式以低成本稳定地提供具有均匀厚度的树脂薄膜。 通过本发明获得的树脂薄膜可以在宽范围内使用,例如磁记录介质,例如磁带,包装材料和电子部件。
    • 48. 发明授权
    • Automatic gain control circuit
    • 自动增益控制电路
    • US6088583A
    • 2000-07-11
    • US120076
    • 1998-07-21
    • Masahiko ShimizuHideto FurukawaTomonori SatoKoji MatsuyamaMasaaki Fujii
    • Masahiko ShimizuHideto FurukawaTomonori SatoKoji MatsuyamaMasaaki Fujii
    • H03G3/30H04B7/08H04J13/00H04B1/06
    • H03G3/3052H03G3/3068
    • In an automatic gain control (AGC) circuit for controlling a preceding gain control unit and a following gain control unit, the AGC circuit according to the present invention includes at least a comparison unit, a first gain control signal output unit and a second gain control signal output unit. The comparison unit compares a signal level from the following gain control unit with a reference value. The first gain control signal output unit outputs a first gain control signal to the following gain control unit in response to an output signal obtained as a result of comparison in the comparison unit. The second gain control signal output unit outputs a second gain control signal to the preceding gain control unit. Further, the second gain control signal has a time constant longer than that of the first gain control signal output unit, in response to the output signal obtained as the result of comparison in the comparison unit.
    • 在用于控制前一增益控制单元和后续增益控制单元的自动增益控制(AGC)电路中,根据本发明的AGC电路至少包括比较单元,第一增益控制信号输出单元和第二增益控制 信号输出单元。 比较单元将来自以下增益控制单元的信号电平与参考值进行比较。 第一增益控制信号输出单元响应于在比较单元中作为比较结果而获得的输出信号,向第二增益控制单元输出第一增益控制信号。 第二增益控制信号输出单元向前一增益控制单元输出第二增益控制信号。 此外,响应于作为比较结果的比较结果获得的输出信号,第二增益控制信号具有比第一增益控制信号输出单元的时间常数更长的时间常数。