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    • 2. 发明授权
    • Phase adjustment circuit
    • 相位调整电路
    • US08013650B2
    • 2011-09-06
    • US11514151
    • 2006-09-01
    • Shiro DoshoShiro SakiyamaYusuke TokunagaSeiji WatanabeHiroshi Koshida
    • Shiro DoshoShiro SakiyamaYusuke TokunagaSeiji WatanabeHiroshi Koshida
    • H03H11/16
    • H03K5/13H03K5/15013H03K2005/00052H03K2005/00273
    • A phase adjustment circuit includes first to nth two-phase adjustment circuits. Each two-phase adjustment circuit includes a first logic circuit for performing logical sum of two input signals, a second logic circuit for performing logical product of the two input signals, a first delay circuit having a signal delay equal to that of the second logic circuit and configured to delay a signal output from the first logic circuit, and a second delay circuit having a signal delay equal to that of the first logic circuit and configured to delay a signal output from the second logic circuit. Two signals output from two of the two-phase adjustment circuits in a certain stage are input into one of the two-phase adjustment circuits in the next stage.
    • 相位调整电路包括第一至第二相位调整电路。 每个两相调节电路包括用于执行两个输入信号的逻辑和的第一逻辑电路,用于执行两个输入信号的逻辑积的第二逻辑电路,具有等于第二逻辑电路的信号延迟的信号延迟的第一延迟电路 并且被配置为延迟从第一逻辑电路输出的信号;以及第二延迟电路,其具有等于第一逻辑电路的信号延迟的信号延迟,并且被配置为延迟从第二逻辑电路输出的信号。 在一定阶段从两相调节电路中输出的两个信号在下一级输入到两相调节电路之一。
    • 6. 发明授权
    • A/D converter
    • A / D转换器
    • US07633421B2
    • 2009-12-15
    • US12093252
    • 2007-07-30
    • Shiro DoshoTakashi MorieYusuke TokunagaShiro Sakiyama
    • Shiro DoshoTakashi MorieYusuke TokunagaShiro Sakiyama
    • H03M1/12
    • H03M1/123H03M1/1215H03M1/56
    • An A/D converter includes: a plurality of A/D conversion circuits (10 a, 10b); an input selection section (20) for selecting the A/D conversion circuit that is not executing A/D conversion to supply analog amounts obtained by sample-holding an input signal; and an output selection section (30) for selecting the A/D conversion circuit that is not executing A/D conversion to output digital amounts obtained from the selected one. Each A/D conversion circuit includes: an input memory portion (11) for sequentially storing the supplied analog amounts in a plurality of analog memory elements (111); an A/D conversion portion (12) having a plurality of A/D conversion elements (121) for converting the analog amounts stored in the analog memory elements to digital amounts; and a shift output portion (13), having a plurality of registers (131) receiving the digital amounts from the A/D conversion elements to hold the digital amounts, for shifting and outputting the digital amounts held in the registers.
    • A / D转换器包括:多个A / D转换电路(10a,10b); 输入选择部分(20),用于选择不执行A / D转换的A / D转换电路以提供通过采样保持输入信号获得的模拟量; 以及用于选择不执行A / D转换的A / D转换电路以输出从所选择的数字量获得的数字量的输出选择部分(30)。 每个A / D转换电路包括:用于在多个模拟存储器元件(111)中顺序地存储所提供的模拟量的输入存储器部分(11)。 具有用于将存储在模拟存储器元件中的模拟量转换为数字量的多个A / D转换元件的A / D转换部分(12) 以及移位输出部分(13),具有从A / D转换元件接收数字量以保持数字量的多个寄存器(131),用于移位和输出保存在寄存器中的数字量。
    • 7. 发明授权
    • Charge pumping circuit
    • 充电泵电路
    • US07453313B2
    • 2008-11-18
    • US11637687
    • 2006-12-13
    • Shiro SakiyamaYusuke TokunagaShiro DoshoToru IwataTakashi Hirata
    • Shiro SakiyamaYusuke TokunagaShiro DoshoToru IwataTakashi Hirata
    • G06F3/02
    • H02M3/07H03L7/0895H03L7/0896
    • A charge pumping circuit includes a first switch for controlling one of push and pull operations in accordance with a first control signal; a current mirror circuit constructed from transistors each having a different polarity from the first switch; a second switch for controlling current input to the current mirror circuit in accordance with a second control signal, the second switch being constructed from a transistor having the same characteristic as a transistor used for constructing the first switch; a first MOS capacitor one end of which is connected to an input side of the current mirror circuit; a second MOS capacitor receiving, at one end thereof, a current concerned with the push and pull operations; and a voltage buffer connected to the first and second MOS capacitors. The other of the push and pull operations is performed with an output current of the current mirror circuit.
    • 电荷泵浦电路包括:第一开关,用于根据第一控制信号控制推挽操作中的一个; 由与所述第一开关具有不同极性的晶体管构成的电流镜电路; 第二开关,用于根据第二控制信号控制到电流镜电路的电流输入,第二开关由具有与用于构造第一开关的晶体管相同的特性的晶体管构成; 第一MOS电容器,其一端连接到电流镜电路的输入侧; 在其一端接收与推挽操作有关的电流的第二MOS电容器; 以及连接到第一和第二MOS电容器的电压缓冲器。 推挽操作中的另一个用电流镜电路的输出电流进行。