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    • 3. 发明授权
    • Recorded data reproducing apparatus
    • 记录数据再现装置
    • US4794469A
    • 1988-12-27
    • US75964
    • 1987-07-21
    • Katsuhiko KaidaKenji Asai
    • Katsuhiko KaidaKenji Asai
    • G11B5/596G11B20/10G11B21/08G11B21/10G11B5/09G11B15/14
    • G11B20/10027G11B20/10G11B20/10009
    • A recorded data reproducing apparatus according to this invention comprises a data pulse generation section, a peak detection section and a control section. The data pulse generation section reads out data written on the cylinder of a recording medium on which a magnetic head is currently positioned. According to received gain data, the data pulse generation section amplifies a signal corresponding to the readout data, and selectively generates data pulse sequence based on the amplified signal. When the amplified signal corresponds to servo data, the peak detection section detects the peak value of the amplified signal. The control section determines whether or not the magnitude of the detected peak value is nearly equal to a predetermined value. If the determination is negative, the control section refers to a gain data table to determine a change amount of the gain data, and supplies the gain data updated based on the change amount of the data pulse generation section.
    • 根据本发明的记录数据再现装置包括数据脉冲产生部分,峰值检测部分和控制部分。 数据脉冲发生部分读出写入磁头当前位于其上的记录介质的气缸上的数据。 根据接收到的增益数据,数据脉冲发生部分放大对应于读出数据的信号,并根据放大信号有选择地产生数据脉冲序列。 当放大的信号对应于伺服数据时,峰值检测部分检测放大信号的峰值。 控制部确定检测到的峰值的大小是否几乎等于预定值。 如果确定为否定,则控制部分参考增益数据表来确定增益数据的变化量,并且提供基于数据脉冲发生部分的变化量更新的增益数据。
    • 5. 发明授权
    • LSI device having scan separators provided in number reduced from signal lines of combinatorial circuits
    • 具有从组合电路的信号线减少的扫描分离器的LSI装置
    • US07373570B2
    • 2008-05-13
    • US11305211
    • 2005-12-19
    • Hiroyuki HanamoriKenji AsaiHiroshi YamasakiOsamu Endoh
    • Hiroyuki HanamoriKenji AsaiHiroshi YamasakiOsamu Endoh
    • G01R31/28
    • G01R31/31855
    • A scan separator in a large scale integration device is made more extensive to suppress an increase in the circuit scale of the entire device. In one embodiment, a scan separator is provided for every two signal lines interconnecting two combinatorial circuit blocks. Each scan separator includes a selector and a flip flop for constituting a scan path. Another selector is provided for selecting one of the two signal lines. As an input selector signal for the selector that selects one of the two signal lines, data for switching controlling are used, which are transferred from a test input terminal over the scan path and latched by the flip flop. The data for switching controlling are initially transferred over the scan path to each flip flop. The selector that selects one of the two signal lines is switched in accordance with the switching controlling data stored in the flip flop. The switching controlling data may be interchanged to select the either of the two signal lines.
    • 大规模集成装置中的扫描分离器被更广泛地抑制整个装置的电路规模的增加。 在一个实施例中,为每两个互连两个组合电路块的信号线提供扫描分离器。 每个扫描分离器包括用于构成扫描路径的选择器和触发器。 提供另一选择器用于选择两条信号线之一。 作为用于选择两条信号线之一的选择器的输入选择器信号,使用用于切换控制的数据,其从测试输入端子在扫描路径上传送并由触发器锁存。 用于切换控制的数据最初通过扫描路径传送到每个触发器。 根据存储在触发器中的切换控制数据来切换选择两条信号线之一的选择器。 切换控制数据可以互换以选择两条信号线中的任一条。
    • 8. 发明授权
    • Diphenylalkylamine derivatives useful as opioid receptor agonists
    • 用作阿片类受体激动剂的二苯基烷基胺衍生物
    • US06790854B2
    • 2004-09-14
    • US10221172
    • 2003-03-13
    • Masaki TsushimaKaori TadauchiKenji AsaiNaoko MiikeToshiaki Kudo
    • Masaki TsushimaKaori TadauchiKenji AsaiNaoko MiikeToshiaki Kudo
    • A61K31438
    • C07D211/32
    • A substance having affinity for an opioid &dgr; receptor, which is represented by the following general formula (I): wherein, X represents a group of the general formula: —CO—N(R5)(R6) (II) and the like, n represents 1 to 3, R1 and R2 represent a hydrogen atom, a halogen atom, a lower alkyl group and the like, R3 represents a hydrogen atom, a halogen atom, a lower alkyl group and the like, R4 represents a saturated or unsaturated monocyclic or bicyclic carbocyclic group and the like, R5 to R12 represent a hydrogen atom, a lower alkyl group and the like, and R3 and R4, R5 and R6, R7 or R8 and R9 and R10 may bind to each other to form a cyclic structure, and a medicament useful for preventive and/or therapeutic treatment of central nervous system diseases and peripheral nervous system diseases comprising the substance as an active ingredient.
    • 由以下通式(I)表示的对阿片样物质δ受体有亲和力的物质:其中,X表示通式-CO-N(R 5)(R 6)(R 6) II)等,n表示1〜3,R 1,R 2表示氢原子,卤素原子,低级烷基等,R 3表示氢原子,卤素原子 ,低级烷基等,R 4表示饱和或不饱和的单环或双环碳环基等,R 5至R 12表示氢原子,低级烷基等,和 R 3和R 4,R 5和R 6,R 7或R 8和R 9和R 10可以彼此结合形成环状结构, 以及可用于预防和/或治疗中枢神经系统疾病和包含该物质作为活性成分的周围神经系统疾病的药物。
    • 10. 发明申请
    • LSI device having scan separators provided in number reduced from signal lines of combinatorial circuits
    • 具有从组合电路的信号线减少的扫描分离器的LSI装置
    • US20060136796A1
    • 2006-06-22
    • US11305211
    • 2005-12-19
    • Hiroyuki HanamoriKenji AsaiHiroshi YamasakiOsamu Endoh
    • Hiroyuki HanamoriKenji AsaiHiroshi YamasakiOsamu Endoh
    • G01R31/28
    • G01R31/31855
    • A scan separator in a large scale integration device is made intensive to suppress the circuit scale of the entire device from increasing. A scan separator is provided for every two signal lines interconnecting two combinatorial circuit blocks. Each scan separator includes one selector, a flip flop for constituting a scan path, and another selector for selecting one of the two signal lines. As an input selector signal for the other selector, data for switching controlling are used, which are transferred from a test input terminal over the scan path and latched by the flip flop. The data for switching controlling are initially transferred over the scan path to each flip flop. The other selector is switched in accordance with the switching controlling data stored in the flip flop to select one of the two signal lines. The switching controlling data may be interchanged to select the other signal line.
    • 大规模集成装置中的扫描分离器被强化以抑制整个装置的电路规模增加。 为每两个互连两个组合电路块的信号线提供扫描分离器。 每个扫描分离器包括一个选择器,用于构成扫描路径的触发器,以及用于选择两个信号线之一的另一个选择器。 作为另一个选择器的输入选择器信号,使用用于切换控制的数据,其从测试输入端子在扫描路径上传送并由触发器锁存。 用于切换控制的数据最初通过扫描路径传送到每个触发器。 根据存储在触发器中的切换控制数据来切换另一个选择器,以选择两条信号线之一。 切换控制数据可以互换以选择另一条信号线。