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    • 1. 发明授权
    • Positioning control system which generates a servo-error signal in
accordance with a difference between detection currents
    • 定位控制系统,根据检测电流之差产生伺服误差信号
    • US5909415A
    • 1999-06-01
    • US947058
    • 1997-10-08
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • G11B7/09G11B11/105H03G3/30G11B7/095
    • H03G3/3084G11B11/10576G11B7/0941G11B7/0943
    • A positioning control system for performing recording/reproducing operations by irradiating an optical beam to a predetermined position on an optical recording medium, e.g., magneto-optical disk. The control system includes a photo-detector constituted by at least two-divisional units, and a servo-error signal generating circuit which can generate at least one servo-error signal in accordance with a difference between the detection currents. Preferably, the servo-error signal generating circuit includes at least one division circuit that has two pairs of transistors, two emitters in each pair of transistors being connected together into a common emitter, bias voltages of a direct current type being applied to the respective bases of transistors on one side, and the respective collectors of the transistors on one side being connected to a common connecting portion via resistors. The common connecting portion is connected to a power supply, and the respective bases of transistors on the other side are connected together into a common base. An integrating capacitor which integrates a difference between the current flowing through the common connecting portion and the reference current, is connected to the common base of the transistors on the other side.
    • 一种定位控制系统,用于通过将光束照射到诸如磁光盘的光学记录介质上的预定位置来进行记录/再现操作。 控制系统包括由至少两分之一单元构成的光检测器,以及可根据检测电流之间的差产生至少一个伺服误差信号的伺服误差信号发生电路。 优选地,伺服误差信号发生电路包括具有两对晶体管的至少一个分频电路,每对晶体管中的两个发射极连接在一起成为公共发射极,直流型偏置电压施加到各个基极 的晶体管的一侧,并且一侧的晶体管的各个集电极通过电阻器连接到公共连接部分。 公共连接部分连接到电源,另一侧的晶体管的各个基极连接在一起成共同的基座。 将流过公共连接部分的电流与参考电流之间的差积分的积分电容器连接到另一侧的晶体管的公共基极。
    • 3. 发明授权
    • Positioning control system utilizing optical beam
    • 光束定位控制系统
    • US5566143A
    • 1996-10-15
    • US96491
    • 1993-07-22
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • G11B7/09G11B11/105H03G3/30
    • H03G3/3084G11B11/10576G11B7/0941G11B7/0943
    • A positioning control system for performing recording/reproducing operations by irradiating an optical beam to predetermined position on an optically recording medium, e,g., magneto-optical disk, includes a photo-detector constituted by at least two-divisional units; and a servo-error signal generating circuit which can generate at least one servo-error signal in accordance with a difference between the detection currents. Preferably, servo-error signal generating circuit includes at least one division circuit that has two pairs of transistors, two emitters in each pair of transistors being connected together into a common emitter, bias voltages of direct current type being applied to the respective bases of transistors on one side, the respective collectors of the transistors on one side being connected to a common connecting portion via resistors, the common connecting portion being connected to a power supply, the respective bases of transistors on the other side being connected together into a common base; and an integrating capacitor which is connected to the common base of transistors on the other side, and which integrates a difference between the current flowing through the common connecting portion and the reference current, to apply the thus integrated difference to the common base of transistors on the other side. Further, preferably, the photo-detector is connected to the common emitters in the respective pairs of transistors, so that the detection currents can flow through the common emitters.
    • 用于通过将光束照射到光学记录介质(例如,磁光盘)上的预定位置来执行记录/再现操作的定位控制系统包括由至少两分割单元构成的光检测器; 以及可以根据检测电流之间的差产生至少一个伺服误差信号的伺服误差信号发生电路。 优选地,伺服误差信号发生电路包括至少一个具有两对晶体管的分频电路,每对晶体管中的两个发射极连接在一起成为共发射极,直流型偏置电压施加到晶体管的各个基极 一方面,一侧的晶体管的集电极通过电阻器连接到公共连接部分,公共连接部分连接到电源,另一侧的晶体管的各个基极连接在一起成共同的基极 ; 以及积分电容器,其连接到另一侧的晶体管的公共基极,并且将流过公共连接部分的电流与参考电流之间的差积分,以将这样的积分差施加到晶体管的公共基极上 另一边。 此外,优选地,光检测器连接到各对晶体管中的公共发射极,使得检测电流可以流过公共发射器。
    • 4. 发明授权
    • Positioning control system including a servo-error signal generating
circuit
    • 定位控制系统包括伺服误差信号发生电路
    • US5930212A
    • 1999-07-27
    • US946681
    • 1997-10-08
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • G11B7/09G11B11/105H03G3/30G11B7/095
    • H03G3/3084G11B11/10576G11B7/0941G11B7/0943
    • A positioning control system for performing recording/reproducing operations by irradiating an optical beam to a predetermined position on an optical recording medium, includes a photo-detector and a servo-error signal generating circuit which can generate at least one servo-error signal in accordance with a difference between the detection currents. Preferably, the servo-error signal generating circuit includes at least one division circuit having two pairs of transistors, two emitters in each pair of transistors being connected together into a common emitter, bias voltages of direct current type being applied to the respective bases of transistors on one side, the respective collectors of the transistors on one side being connected to a common connecting portion via resistors, the common connecting portion being connected to a power supply, the respective bases of transistors on the other side being connected together into a common base; and an integrating capacitor which is connected to the common base of transistors on the other side, and which integrates a difference between the current flowing through the common connecting portion and the reference current, to apply the thus integrated difference to the common base of transistors on the other side.
    • 一种用于通过将光束照射到光学记录介质上的预定位置来执行记录/再现操作的定位控制系统包括光电检测器和伺服误差信号发生电路,该电路可以根据产生至少一个伺服误差信号 检测电流之间有差异。 优选地,伺服误差信号发生电路包括至少一个具有两对晶体管的分频电路,每对晶体管中的两个发射极连接在一起成共同的发射极,直流型偏置电压施加到晶体管的各个基极 一方面,一侧的晶体管的集电极通过电阻器连接到公共连接部分,公共连接部分连接到电源,另一侧的晶体管的各个基极连接在一起成共同的基极 ; 以及积分电容器,其连接到另一侧的晶体管的公共基极,并且将流过公共连接部分的电流与参考电流之间的差积分,以将这样的积分差施加到晶体管的公共基极上 另一边。
    • 5. 发明授权
    • Positioning control system utilizing optical beam having servo-error
signal generating circuit
    • 利用具有伺服误差信号发生电路的光束的定位控制系统
    • US5636191A
    • 1997-06-03
    • US421226
    • 1995-04-13
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • Akira MinamiShigeyoshi TanakaMichio MatsuuraHiromichi KuwanoKazuyuki Tamanoi
    • G11B7/09G11B11/105H03G3/30
    • H03G3/3084G11B11/10576G11B7/0941G11B7/0943
    • A positioning control system for performing recording/reproducing operations by irradiating an optical beam to predertermined position on an optically recording medium, e.g., magneto-optical disk, includes a photo-detector constituted by at least two-divisional units; and a servo-error signal generating circuit which can generate at least one servo-error signal in accordance with a difference between the detection currents. Preferably, servo-error signal generating circuit includes at least one division circuit that has two pairs of transistors, two emitters in each pair of transistors being connected together into a common emitter, bias voltages of direct current type being applied to the respective bases of transistors on one side, the respective collectors of the transistors on one side being connected to a common connecting portion via resistors, the common connecting portion being connected to a power supply, the respective bases of transistors on the other side being connected together into a common base; and an integrating capacitor which is connected to the common base of transistors on the other side, and which integrates a difference between the current flowing through the common connecting portion and the reference current, to apply the thus integrated difference to the common base of transistors on the other side. Further, preferably, the photo-detector is connected to the common emitters in the respective pairs of transistors, so that the detection currents can flow through the common emitters.
    • 用于通过将光束照射到光学记录介质例如磁光盘上的预先定位的位置进行记录/再现操作的定位控制系统包括由至少两分割单元构成的光检测器; 以及可以根据检测电流之间的差产生至少一个伺服误差信号的伺服误差信号发生电路。 优选地,伺服误差信号发生电路包括至少一个具有两对晶体管的分频电路,每对晶体管中的两个发射极连接在一起成为共发射极,直流型偏置电压施加到晶体管的各个基极 一方面,一侧的晶体管的集电极通过电阻器连接到公共连接部分,公共连接部分连接到电源,另一侧的晶体管的各个基极连接在一起成共同的基极 ; 以及积分电容器,其连接到另一侧的晶体管的公共基极,并且将流过公共连接部分的电流与参考电流之间的差积分,以将这样的积分差施加到晶体管的公共基极上 另一边。 此外,优选地,光检测器连接到各对晶体管中的公共发射极,使得检测电流可以流过公共发射器。
    • 9. 发明授权
    • Control apparatus of laser diode
    • 激光二极管控制装置
    • US5276671A
    • 1994-01-04
    • US881501
    • 1992-05-11
    • Akira MinamiShigeyoshi Tanaka
    • Akira MinamiShigeyoshi Tanaka
    • G11B7/00G11B7/0045G11B7/005G11B7/125H01S5/042
    • G11B7/126
    • A laser diode having a cathode connected to the ground side of a positive power source and an anode connected to the plus voltage side of the power source through a control circuit. A maximum current to drive the laser diode is supplied to the laser diode by a disgorging type constant current source. In a reading mode operated at a frequency one or more digit higher than a frequency for writing data, a differential current between the write current and a read current is sucked from the disgorging type constant current source by a sucking type constant current source, thereby allowing the read current to flow into the diode. In a writing mode, a current switch connects the sucking type current source according to write data. The disgorging type current source and the sucking type current source are connected to a photodiode by a current switch. An APC responds to the photodiode which detects a read power, thereby reducing a laser fluctuation created from temperature change.
    • 激光二极管,其具有连接到正电源的接地侧的阴极和通过控制电路连接到电源的正电压侧的阳极。 驱动激光二极管的最大电流通过散射型恒流源提供给激光二极管。 在以比写入数据的频率高一个或多个数字的频率下操作的读取模式中,通过吸取式恒流源从分离型恒流源吸取写入电流和读取电流之间的差分电流,从而允许 读取电流流入二极管。 在写入模式下,电流开关根据写入数据连接吸引型电流源。 散流型电流源和吸引型电流源通过电流开关连接到光电二极管。 APC响应于检测读取功率的光电二极管,从而减少由温度变化引起的激光波动。