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    • 1. 发明申请
    • OPTICAL COMMUNICATION DEVICE
    • 光通信设备
    • US20110316632A1
    • 2011-12-29
    • US13201212
    • 2009-03-05
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • H03F3/16H03F1/22H03G3/20
    • H03F3/087H03F1/223H03F1/34H03F3/082H03F3/3022H03F3/505H03F2200/453H04B10/6933
    • An optical communication device which can be operated at high speed is provided. For example, the optical communication device includes: a pre-amplifier circuit PREAMP1 amplifying a current signal Iin from a photodiode PD, and converting an amplified signal into a voltage signal; and an operating-point controller circuit VTCTL1 controlling an operation of the PREAMP1. The PREAMP1 includes a negative feedback path formed by a feedback resistance Rf1, and includes: a level-shift circuit LS1 level-shifting in accordance with an operating-point control signal Vcon; and an amplifier circuit AMP1 connected to a subsequent stage of the LS1 and performing an amplifying operation with a high gain. The VTCTL1 includes a replica circuit configured by the same circuit and circuit parameter as those of the AMP1 and electrically connected between the input and the output, and generates the Vcon so that an output DC level of this replica circuit is matched with an input DC level of the AMP1.
    • 提供可以高速运转的光通信装置。 例如,光通信装置包括:前置放大器电路PREAMP1,放大来自光电二极管PD的电流信号Iin,将放大后的信号变换为电压信号; 以及控制PREAMP1的操作的操作点控制器电路VTCTL1。 PREAMP1包括由反馈电阻Rf1形成的负反馈路径,并且包括:根据工作点控制信号Vcon的电平移位电路LS1电平移位; 以及连接到LS1的后级并且以高增益进行放大操作的放大器电路AMP1。 VTCTL1包括由与AMP1相同的电路和电路参数配置的电路复用电路,并且电连接在输入和输出端之间,并产生Vcon,使得该复制电路的输出直流电平与输入直流电平相匹配 的AMP1。
    • 2. 发明授权
    • Optical communication device
    • 光通信设备
    • US08445832B2
    • 2013-05-21
    • US13201212
    • 2009-03-05
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • H03F3/08H01J43/00H01J40/14G01R19/00
    • H03F3/087H03F1/223H03F1/34H03F3/082H03F3/3022H03F3/505H03F2200/453H04B10/6933
    • An optical communication device which can be operated at high speed is provided. For example, the optical communication device includes: a pre-amplifier circuit PREAMP1 amplifying a current signal Iin from a photodiode PD, and converting an amplified signal into a voltage signal; and an operating-point controller circuit VTCTL1 controlling an operation of the PREAMP1. The PREAMP1 includes a negative feedback path formed by a feedback resistance Rf1, and includes: a level-shift circuit LS1 level-shifting in accordance with an operating-point control signal Vcon; and an amplifier circuit AMP1 connected to a subsequent stage of the LS1 and performing an amplifying operation with a high gain. The VTCTL1 includes a replica circuit configured by the same circuit and circuit parameter as those of the AMP1 and electrically connected between the input and the output, and generates the Vcon so that an output DC level of this replica circuit is matched with an input DC level of the AMP1.
    • 提供可以高速运转的光通信装置。 例如,光通信装置包括:前置放大器电路PREAMP1,放大来自光电二极管PD的电流信号Iin,将放大后的信号变换为电压信号; 以及控制PREAMP1的操作的操作点控制器电路VTCTL1。 PREAMP1包括由反馈电阻Rf1形成的负反馈路径,并且包括:根据工作点控制信号Vcon的电平移位电路LS1电平移位; 以及连接到LS1的后级并且以高增益进行放大操作的放大器电路AMP1。 VTCTL1包括由与AMP1相同的电路和电路参数配置的电路复用电路,并且电连接在输入和输出端之间,并产生Vcon,使得该复制电路的输出直流电平与输入直流电平相匹配 的AMP1。
    • 3. 发明授权
    • Amplifier circuit
    • 放大器电路
    • US07714644B2
    • 2010-05-11
    • US12166666
    • 2008-07-02
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • H03F1/02
    • H03F3/45475H03F1/26H03F1/34H03F3/45085H03F3/45183H03F3/45968H03F2200/372H03F2200/375H03F2203/45534
    • An amplifier circuit block and a compensation circuit block are provided. The amplifier circuit block includes an analog adder for subtracting an output signal of the compensation circuit block from an input signal and an amplifier circuit operating in a wide band. The compensation circuit block includes an amplifier circuit with a low offset voltage and a low noise in a low frequency region, an analog adder block for subtracting an output signal of the amplifier circuit from an output signal of the amplifier circuit and generating a differential signal thereof, and a feedback circuit block for negatively feeding back the differential signal to the analog adder. The amplifier circuit block can reduce the offset voltage and the low-band noise by the negative feedback of the differential signal, and at the same time, the operation band of the entire amplifier circuit can be decided by the characteristic of the amplifier circuit.
    • 提供放大器电路块和补偿电路块。 放大器电路块包括用于从输入信号中减去补偿电路块的输出信号的模拟加法器和在宽带中工作的放大器电路。 补偿电路块包括在低频区域具有低失调电压和低噪声的放大器电路,用于从放大器电路的输出信号中减去放大器电路的输出信号并产生其差分信号的模拟加法器块 以及用于将差分信号负反馈给模拟加法器的反馈电路块。 放大器电路块可以通过差分信号的负反馈来减小偏移电压和低带噪声,同时整个放大器电路的工作频带可以由放大器电路的特性决定。
    • 4. 发明申请
    • Amplifier Circuit
    • 放大器电路
    • US20090009240A1
    • 2009-01-08
    • US12166666
    • 2008-07-02
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • H03F1/36
    • H03F3/45475H03F1/26H03F1/34H03F3/45085H03F3/45183H03F3/45968H03F2200/372H03F2200/375H03F2203/45534
    • An amplifier circuit block and a compensation circuit block are provided. The amplifier circuit block includes an analog adder for subtracting an output signal of the compensation circuit block from an input signal and an amplifier circuit operating in a wide band. The compensation circuit block includes an amplifier circuit with a low offset voltage and a low noise in a low frequency region, an analog adder block for subtracting an output signal of the amplifier circuit from an output signal of the amplifier circuit and generating a differential signal thereof, and a feedback circuit block for negatively feeding back the differential signal to the analog adder. The amplifier circuit block can reduce the offset voltage and the low-band noise by the negative feedback of the differential signal, and at the same time, the operation band of the entire amplifier circuit can be decided by the characteristic of the amplifier circuit.
    • 提供放大器电路块和补偿电路块。 放大器电路块包括用于从输入信号中减去补偿电路块的输出信号的模拟加法器和在宽带中工作的放大器电路。 补偿电路块包括在低频区域具有低失调电压和低噪声的放大器电路,用于从放大器电路的输出信号中减去放大器电路的输出信号并产生其差分信号的模拟加法器块 以及用于将差分信号负反馈给模拟加法器的反馈电路块。 放大器电路块可以通过差分信号的负反馈来减小偏移电压和低带噪声,同时整个放大器电路的工作频带可以由放大器电路的特性决定。
    • 9. 发明授权
    • Low-offset input circuit including amplifier circuit to correct circuit characteristics to cancel offset of the input circuit
    • 低失调输入电路包括放大器电路,用于校正电路特性以消除输入电路的偏移
    • US07795944B2
    • 2010-09-14
    • US12183080
    • 2008-07-31
    • Masayoshi YagyuHiroki YamashitaTakashi Takemoto
    • Masayoshi YagyuHiroki YamashitaTakashi Takemoto
    • H03L5/00
    • H03F3/45475H03F3/45183H03F3/45744H03F3/45968H03F2203/45212H03F2203/45702
    • In a signal transmission system where an influence of the circuit characteristic variation of an input circuit on signal receiving operation cannot be ignored, there is provided a method of realizing a low-offset input circuit which is capable of conducting high-speed operation and always continuing signal receiving operation without increasing the number of terminals of a semiconductor integrated circuit and without the necessity of providing additional signal observing means and variation adjustment amount calculating means to the external of the semiconductor integrated circuit. In a signal receiver circuit having an input circuit, an automatic zero amplifier, an analog/digital converter circuit, an encoder circuit, and a signal holding circuit, an output error signal of the input circuit is amplified by the automatic zero amplifier, and the signal is digitalized or the digitalized signal is encoded as the occasion demands, and held by the holding circuit, and the circuit characteristic variation of the input circuit is adjusted by the held signal.
    • 在输入电路对信号接收操作的电路特性变化的影响不能忽略的信号传输系统中,提供了一种实现低偏移输入电路的方法,该低失调输入电路能够进行高速操作并且总是继续 信号接收操作而不增加半导体集成电路的端子数量,而不需要向半导体集成电路的外部提供额外的信号观测装置和变化调整量计算装置。 在具有输入电路,自动零放大器,模拟/数字转换器电路,编码器电路和信号保持电路的信号接收器电路中,输入电路的输出误差信号由自动零放大器放大, 信号被数字化或数字化信号根据场合需要编码并由保持电路保持,并且通过保持信号调整输入电路的电路特性变化。