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    • 1. 发明授权
    • Encoder device for detecting movement
    • 用于检测运动的编码器装置
    • US07511260B2
    • 2009-03-31
    • US11393077
    • 2006-03-30
    • Hideaki SannomiyaNaosumi WakiYuko KimuraJunichiro Tanaka
    • Hideaki SannomiyaNaosumi WakiYuko KimuraJunichiro Tanaka
    • G01D5/34
    • G01D5/34746G01D5/34707G01D5/34715
    • An encoder device includes first through fourth photodiodes each having a rhombus shape and a length of X1 in an X direction, the photodiodes being disposed adjacent to each other in the X direction such that a line passing through a pair of opposing vertices of the rhombus shape of each of the photodiodes is parallel to an X axis; a slit member that includes light transmitting sections and light shielding sections alternately arranged, and is movable in the X direction, each of the light transmitting and shielding sections having a length of 2×X1 in the X direction; and a logic circuit that generates first and second detection signals from output signals of the photodiodes that have received lights passing through the light transmitting sections, a phase of the second detection signal being shifted by a ¼ period of the first detection signal relative to the first detection signal.
    • 编码器装置包括:第一至第四光电二极管,每个具有菱形和X1方向上的长度,光电二极管在X方向上彼此相邻设置,使得穿过一对相对于菱形的顶点的线 每个光电二极管平行于X轴; 狭缝部件,其包括交替布置的透光部和遮光部,并且能够沿X方向移动,各透光部和遮光部的X方向的长度为2x×1; 以及逻辑电路,其从已经接收到通过光发射部的光的光电二极管的输出信号产生第一和第二检测信号,第二检测信号的相位相对于第一检测信号的1/4周期移位 检测信号。
    • 2. 发明申请
    • Encoder device
    • 编码器装置
    • US20070001107A1
    • 2007-01-04
    • US11393077
    • 2006-03-30
    • Hideaki SannomiyaNaosumi WakiYuko KimuraJunichiro Tanaka
    • Hideaki SannomiyaNaosumi WakiYuko KimuraJunichiro Tanaka
    • G01D5/34
    • G01D5/34746G01D5/34707G01D5/34715
    • An encoder device includes first through fourth photodiodes each having a rhombus shape and a length of X1 in an X direction, the photodiodes being disposed adjacent to each other in the X direction such that a line passing through a pair of opposing vertices of the rhombus shape of each of the photodiodes is parallel to an X axis; a slit member that includes light transmitting sections and light shielding sections alternately arranged, and is movable in the X direction, each of the light transmitting and shielding sections having a length of 2×X1 in the X direction; and a logic circuit that generates first and second detection signals from output signals of the photodiodes that have received lights passing through the light transmitting sections, a phase of the second detection signal being shifted by a ¼ period of the first detection signal relative to the first detection signal.
    • 编码器装置包括:第一至第四光电二极管,每个具有菱形和X方向的长度,光电二极管沿X方向彼此相邻设置,使得穿过一对相对的菱形顶点的线 每个光电二极管的形状与X轴平行; 狭缝部件,其包括交替布置的透光部和遮光部,并且能够沿X方向移动,各透光部和遮光部的X方向的长度为2x×1; 以及逻辑电路,其从已经接收到通过光发射部的光的光电二极管的输出信号产生第一和第二检测信号,第二检测信号的相位相对于第一检测信号的1/4周期移位 检测信号。
    • 5. 发明申请
    • Encoder device
    • 编码器装置
    • US20070001108A1
    • 2007-01-04
    • US11393106
    • 2006-03-30
    • Hideaki SannomiyaNaosumi WakiJunichiro Tanaka
    • Hideaki SannomiyaNaosumi WakiJunichiro Tanaka
    • G01D5/34
    • G01D5/34746G01D5/36
    • An encoder device includes a first array that includes first through fourth photodiodes adjacent to each other in an X direction, each having a length of X1; a second array that includes fifth through eighth photodiodes adjacent to each other in the X direction, each having a length of X1, and is adjacent to the first array in a Y direction but displaced by X1/2 in the X direction relative to the first array; a slit member that includes light transmitting sections and light shielding section arranged alternately, each having a length 2×X1, and is movable in the X direction; and a logic circuit that generates first and second detection signals from output signals of the first through fourth photodiodes and output signals of the fifth through eighth photodiodes, respectively, a phase of the second detection signal being shifted by a ¼ period of the first detection signal relative to the first detection signal.
    • 编码器装置包括:第一阵列,其包括在X方向上彼此相邻的第一至第四光电二极管,每个具有X 1的长度; 第二阵列,其包括在X方向上彼此相邻的第五至第八光电二极管,每个具有X 1的长度,并且在Y方向上与第一阵列相邻,但相对于X方向在X方向上偏移X 1/2 第一个阵列; 狭缝部件,其包括交替布置的光透射部分和遮光部分,每个具有长度2xX1,并且可沿X方向移动; 以及逻辑电路,分别从第一至第四光电二极管的输出信号和第五至第八光电二极管的输出信号产生第一和第二检测信号,第二检测信号的相位偏移第一检测信号的1/4周期 相对于第一检测信号。
    • 6. 发明授权
    • Encoder device
    • 编码器装置
    • US07227125B2
    • 2007-06-05
    • US11393106
    • 2006-03-30
    • Hideaki SannomiyaNaosumi WakiJunichiro Tanaka
    • Hideaki SannomiyaNaosumi WakiJunichiro Tanaka
    • G01D5/34
    • G01D5/34746G01D5/36
    • An encoder device includes a first array that includes first through fourth photodiodes adjacent to each other in an X direction, each having a length of X1; a second array that includes fifth through eighth photodiodes adjacent to each other in the X direction, each having a length of X1, and is adjacent to the first array in a Y direction but displaced by X1/2 in the X direction relative to the first array; a slit member that includes light transmitting sections and light shielding section arranged alternately, each having a length 2×X1, and is movable in the X direction; and a logic circuit that generates first and second detection signals from output signals of the first through fourth photodiodes and output signals of the fifth through eighth photodiodes, respectively, a phase of the second detection signal being shifted by a ¼ period of the first detection signal relative to the first detection signal.
    • 编码器装置包括:第一阵列,其包括在X方向上彼此相邻的第一至第四光电二极管,每个具有X 1的长度; 第二阵列,其包括在X方向上彼此相邻的第五至第八光电二极管,每个具有X 1的长度,并且在Y方向上与第一阵列相邻,但相对于X方向在X方向上偏移X 1/2 第一个阵列; 狭缝部件,其包括交替布置的光透射部分和遮光部分,每个具有长度2xX1,并且可沿X方向移动; 以及逻辑电路,分别从第一至第四光电二极管的输出信号和第五至第八光电二极管的输出信号产生第一和第二检测信号,第二检测信号的相位偏移第一检测信号的1/4周期 相对于第一检测信号。
    • 8. 发明授权
    • Bioelectric impedance measuring circuit
    • 生物电阻抗测量电路
    • US08004291B2
    • 2011-08-23
    • US11831000
    • 2007-07-31
    • Naosumi Waki
    • Naosumi Waki
    • G01R27/08
    • A61B5/0537A61B5/4872
    • A bioelectric impedance measuring circuit for applying a current to an organism and measuring a bioelectric impedance of the organism is disclosed that includes a pseudo-sine wave generating circuit for generating a pseudo-sine wave based on an input square wave, a voltage/current converting circuit for outputting current to the organism in correspondence with the pseudo-sine wave generated by the pseudo-sine wave generating circuit, and a processing circuit for generating the square wave and supplying the square wave to the pseudo-sine wave generating circuit and measuring the bioelectric impedance based on a voltage output from the voltage/current converting circuit. The pseudo-sine wave generating circuit is included in a semiconductor integrated circuit.
    • 公开了一种用于向生物体施加电流并测量生物体的生物电阻抗的生物电阻抗测量电路,其包括用于基于输入方波产生伪正弦波的伪正弦波产生电路,电压/电流转换 对应于由伪正弦波产生电路产生的伪正弦波向生物体输出电流的电路,以及用于产生方波并将正弦波提供给伪正弦波发生电路并且测量 基于电压/电流转换电路的电压输出的生物电阻抗。 伪正弦波产生电路包括在半导体集成电路中。