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    • 1. 发明授权
    • Phase equalizing active filter
    • 相位均衡有源滤波器
    • US4841179A
    • 1989-06-20
    • US136968
    • 1987-12-23
    • Hideyuki HaginoTakahiro Kusano
    • Hideyuki HaginoTakahiro Kusano
    • H03H11/16H03B11/00H03G5/16H03H11/00H03H11/12H03H11/18H03H11/54
    • H03G5/165H03H11/1217
    • A first operational amplifier (OP AMP) is connected at the positive input terminal to a signal input terminal. The positive output terminal of the first OP AMP is connected to a ground through a first capacitor, and to the positive input terminal of a second OP AMP. The positive output terminal of the second OP AMP is connected to positive input terminal of the first OP AMP via a second capacitor, and to the input terminal of a buffer. The output terminal of the buffer is connected to the negative input terminal of the first OP AMP, and to the positive input terminal of the first OP AMP via the connected series of the first and second resistors. The connection point of these resistors is connected to the negative input terminal of the second OP AMP. The output terminal of the buffer is connected to a signal output terminal. When the resistances of these resistors are equal, the circuit has a phase equalizer characteristic.
    • 第一运算放大器(OP AMP)在正输入端连接到信号输入端。 第一OP AMP的正输出端子通过第一电容器连接到地,并连接到第二OP AMP的正输入端子。 第二OP AMP的正输出端子通过第二电容器连接到第一OP AMP的正输入端子,并连接到缓冲器的输入端子。 缓冲器的输出端通过第一和第二电阻的连接系列连接到第一OP AMP的负输入端,并连接到第一OP AMP的正输入端。 这些电阻的连接点连接到第二个OP AMP的负极输入端。 缓冲器的输出端子连接到信号输出端子。 当这些电阻的电阻相等时,电路具有相位均衡器特性。
    • 3. 发明授权
    • Active filter type signal adjusting circuit
    • 有源滤波器类型信号调节电路
    • US4851718A
    • 1989-07-25
    • US239656
    • 1988-09-02
    • Hideyuki HaginoTakahiro Kusano
    • Hideyuki HaginoTakahiro Kusano
    • H03H11/04H03H11/12
    • H03H11/0472H03H2210/017
    • A first operational amplifier differentially operates a signal to be adjusted input by an input unit and an adjusted signal output by an output unit. A second operational amplifier differentially operates a first output from the first operational amplifier and the adjusted signal. A buffer supplies a second output from the second operational amplifier to the output unit as the adjusted signal. A first adder obtains a sum component of a first signal obtained by multiplying a first variable m with the signal to be adjusted and a second signal obtained by multiplying a second variable 1-n with the adjusted signal. A first capacitor superposes the sum component of the first and second signals on the first output to supply a superposed signal to the second operational amplifier. A second adder obtains the signal to be adjusted or a component obtained by multiplying the first variable m with the signal to be adjusted as a third signal. A second capacitor superposes the third signal on the second output to supply a superposed signal to the buffer. The first and second variables m and 1-n are selected as desirable values in an adjusting mode and are respectively set to be m=n=1 (where 0.ltoreq.n and m.ltoreq.1) in a non-adjusting mode.
    • 第一运算放大器差分地操作由输入单元输入的信号和由输出单元输出的经调整的信号。 第二运算放大器差分地操作来自第一运算放大器的第一输出和经调整的信号。 缓冲器将第二运算放大器的第二输出提供给输出单元作为调整信号。 第一加法器获得通过将第一变量m与要调整的信号相乘而获得的第一信号的和分量和通过将第二变量1-n与调整后的信号相乘而获得的第二信号。 第一电容器将第一和第二信号的和分量叠加在第一输出端上,以向第二运算放大器提供叠加信号。 第二加法器获得要调整的信号或通过将第一变量m与要调整的信号相乘而获得的分量作为第三信号。 第二电容器将第三信号叠加在第二输出端上,以向缓冲器提供叠加的信号。 第一和第二变量m和1-n在调整模式中被选择为期望值,并且在非调整模式中分别被设置为m = n = 1(其中0 <= n和m
    • 4. 发明授权
    • Luminance signal/color signal separator circuit
    • 亮度信号/彩色信号分离电路
    • US5640211A
    • 1997-06-17
    • US186527
    • 1994-01-26
    • Mitsumo KawanoTakahiro Kusano
    • Mitsumo KawanoTakahiro Kusano
    • H04N9/78
    • H04N9/78
    • A luminance signal/color signal separator circuit having an input terminal and luminance and color output terminals includes a comb filter connected between the input terminal and the color output terminal; an amplitude detector having an input connected to the color output terminal; a filter having a first input connected to the input terminal and a second input connected to an output of the amplitude detector; and a combiner having an output connected to the luminance output terminal, a first input connected to the input terminal and a second input connected to an output of the filter. The separator circuit processes a composite signal which includes an original luminance signal and an original color signal. The filter passes a gain controlled color band signal. A signal at the luminance output terminal includes a signal component characterized by an amplitude in a color band frequency range, and the combiner outputs the signal having a signal component amplitude as (1) a first amplitude when the original color amplitude is small, and (2) a second amplitude when the original color amplitude is large, the first amplitude being greater than the second amplitude.
    • 具有输入端子和亮度和颜色输出端子的亮度信号/颜色信号分离器电路包括连接在输入端子和彩色输出端子之间的梳状滤波器; 振幅检测器,具有连接到所述彩色输出端子的输入; 滤波器,其具有连接到所述输入端子的第一输入端和连接到所述幅度检测器的输出端的第二输入端; 以及具有连接到亮度输出端子的输出的组合器,连接到输入端子的第一输入端和连接到滤波器的输出端的第二输入端。 分离器电路处理包括原始亮度信号和原始颜色信号的复合信号。 滤波器通过增益受控的色带信号。 在亮度输出端子处的信号包括以色带频率范围为特征的信号分量,并且组合器在原始色彩幅度较小时将具有信号分量幅度的信号输出为(1)第一幅度,以及( 2)当原始色彩幅度较大时的第二幅度,第一幅度大于第二幅度。
    • 5. 发明申请
    • BREEDING SUPPORT SYSTEM
    • 育种支持系统
    • US20080147458A1
    • 2008-06-19
    • US11874363
    • 2007-10-18
    • Akihiro YamazakiShuzo GotohKenji NishiiTakahiro KusanoHirokazu HayashiKouichi Suzuki
    • Akihiro YamazakiShuzo GotohKenji NishiiTakahiro KusanoHirokazu HayashiKouichi Suzuki
    • G06F19/00
    • A01K29/005A01K11/008A01K29/00G06Q10/063
    • A breeding support system including at least one information terminal for processing breeding information associated with breeding work of at least one individual breeding object, the system comprising: individual information collecting means for collecting individual information indicating a time-variable change of an individual condition of the individual breeding object; specified breeding work requirement determination means for determining a requirement for a specified breeding work from among all breeding work in accordance with a profile of the time-variable change of the individual condition; breeding guidance generation means for generating at least one breeding guidance announcing a requirement of the specified breeding work determined; and breeding guidance supply means for supplying the generated breeding guidance as the breeding information to the information terminal.
    • 一种育种支持系统,包括至少一个信息终端,用于处理与至少一个个体育种对象的育种工作相关的育种信息,所述系统包括:个人信息收集装置,用于收集指示个体信息的个体状况的时间变化的个体信息 个体育种对象; 指定育种工作要求确定装置,用于根据个体状况的时间变化的轮廓,从所有育种工作中确定特定育种工作的要求; 育种指导生成装置,用于生成至少一个育种指导,宣布确定的指定育种工作的要求; 以及用于将生成的育种指导作为育种信息提供给信息终端的育种指导提供装置。
    • 6. 发明授权
    • Filter circuit
    • 滤波电路
    • US5703523A
    • 1997-12-30
    • US641076
    • 1996-04-26
    • Takahiro Kusano
    • Takahiro Kusano
    • H03H11/04H03H11/12H03K5/01H03K5/125
    • H03H11/0422
    • A filter circuit having a signal input terminal and a signal output terminal includes a first and a second buffer. The first buffer has an input end connected to a first resistor and to a first capacitor. A second capacitor having one end is connected to an output end of the first buffer. A second resistor having one end is connected to the signal input terminal. The second buffer has an input end connected to the other end of the second resistor and to the other end of the second capacitor, and an output end connected to the signal output terminal. The filter circuit also includes a first signal supply circuit and a second signal supply circuit. The first signal supply circuit supplies a signal proportional to a difference between an output signal of the second buffer and a signal inputted from the signal input terminal, to the input end of the first buffer through the first resistor. The second signal supply circuit supplies a signal proportional to the signal inputted from the signal input terminal, to the input end of the first buffer through the first capacitor.
    • 具有信号输入端子和信号输出端子的滤波器电路包括第一和第二缓冲器。 第一缓冲器具有连接到第一电阻器和第一电容器的输入端。 具有一端的第二电容器连接到第一缓冲器的输出端。 具有一端的第二电阻器连接到信号输入端子。 第二缓冲器具有连接到第二电阻器的另一端和第二电容器的另一端的输入端,以及连接到信号输出端子的输出端。 滤波电路还包括第一信号供给电路和第二信号供给电路。 第一信号供给电路将与第二缓冲器的输出信号和从信号输入端子输入的信号之间的差成比例的信号通过第一电阻器提供给第一缓冲器的输入端。 第二信号供给电路通过第一电容器将与从信号输入端子输入的信号成比例的信号提供给第一缓冲器的输入端。