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    • 1. 发明申请
    • IMAGE STABILIZATION CONTROL CIRCUIT AND IMAGING DEVICE HAVING IMAGE STABILIZATION CONTROL CIRCUIT
    • 具有图像稳定控制电路的图像稳定控制电路和成像装置
    • US20090160958A1
    • 2009-06-25
    • US12327293
    • 2008-12-03
    • Yasuhisa YamadaYuuki Tashita
    • Yasuhisa YamadaYuuki Tashita
    • H04N5/228
    • G03B5/00
    • A image stabilization control circuit is provided that comprises at least one analog-to-digital converter circuit that converts an output signal of a vibration detection element which detects vibration of an imaging device, and an output signal of a position detection element which detects a position of an optical component or an imaging element, into digital signals, and a logic circuit that generates a control signal which drives the optical component or the imaging element, based on the output signal of the vibration detection element which is digitized by the analog-to-digital converter circuit and the output signal of the position detection element which is digitized by the analog-to-digital converter circuit, wherein an offset value and an amplitude for the output signal of the position detection element are adjusted.
    • 提供一种图像稳定控制电路,其包括至少一个模数转换器电路,其转换检测成像装置的振动的振动检测元件的输出信号,以及检测位置的位置检测元件的输出信号 光学部件或成像元件的输出信号转换为数字信号;以及逻辑电路,其基于振动检测元件的输出信号生成驱动光学部件或成像元件的控制信号,该输出信号被模拟到 数字转换器电路和由模数转换器电路数字化的位置检测元件的输出信号,其中调整位置检测元件的输出信号的偏移值和振幅。
    • 2. 发明申请
    • Image stabilization control circuit
    • 图像稳定控制电路
    • US20090161237A1
    • 2009-06-25
    • US12314306
    • 2008-12-08
    • Yasunori NagataYasuhisa YamadaYuuki Tashita
    • Yasunori NagataYasuhisa YamadaYuuki Tashita
    • G02B7/02G05B5/01
    • G03B5/00
    • A image stabilization control circuit for an image capturing device, wherein a gyro-equalizer (24) integrates an angular velocity signal from a gyro-sensor (12) in an integration circuit (46). The integration circuit (46) is composed of a low-boost filter (LBF), and a phase delay in a target compensation region is set to a value appropriate for an integration process. Furthermore, a characteristic whereby the LBF reduces the phase delay at higher frequencies is used, compensation is applied to the excess phase delay of the angular signal in the high-frequency region brought about by the effect of the phase delay generated in the high-frequency region by the output signal of the gyro-sensor (12), and the phase delay in the high-frequency region is brought nearer to 90 degrees. This allows the accuracy of the process for determining the required displacement magnitude of a lens to be increased.
    • 一种用于图像捕获装置的图像稳定控制电路,其中陀螺均衡器(24)将来自陀螺仪传感器(12)的角速度信号积分在积分电路(46)中。 积分电路(46)由低升压滤波器(LBF)构成,目标补偿区域的相位延迟被设定为适合于积分处理的值。 此外,使用LBF在较高频率下降低相位延迟的特性,对由高频中产生的相位延迟的影响引起的高频区域的角度信号的超相位延迟进行补偿 区域,由陀螺仪传感器(12)的输出信号,使高频区域的相位延迟更靠近90度。 这允许用于确定要增加的透镜的所需位移幅度的处理的精度。
    • 3. 发明授权
    • Image stabilization control circuit and imaging device having image stabilization control circuit
    • 图像稳定控制电路和具有图像稳定控制电路的成像装置
    • US08570385B2
    • 2013-10-29
    • US12327235
    • 2008-12-03
    • Yasuhisa YamadaYuuki Tashita
    • Yasuhisa YamadaYuuki Tashita
    • H04N5/228
    • G03B5/00
    • A image stabilization control circuit is provided which comprises at least one analog-to-digital converter circuit which converts an output signal of a vibration detection element which detects vibration of an imaging device and an output signal of a position detection element which detects a position of an optical component, into digital signals, and a logic circuit which generates a control signal which drives the optical component based on the output signal of the vibration detection element which is digitized by the analog-to-digital converter circuit and the output signal of the position detection element which is digitized by the analog-to-digital converter circuit, wherein an abnormality of the vibration detection element is judged based on an amplitude of the output signal from the vibration detection element which is converted into the digital signal by the analog-to-digital converter circuit.
    • 提供了一种图像稳定控制电路,其包括至少一个模拟 - 数字转换器电路,其转换检测成像装置的振动的振动检测元件的输出信号和检测成像装置的位置的位置检测元件的输出信号 光学部件转换为数字信号,以及逻辑电路,该逻辑电路基于由模数转换器电路数字化的振动检测元件的输出信号和该数字信号的输出信号,生成驱动光学部件的控制信号 位置检测元件,其由模数转换器电路数字化,其中基于来自振动检测元件的输出信号的振幅来判断振动检测元件的异常,该振动检测元件通过模拟 - 数字转换器电路被转换成数字信号, 数字转换器电路。
    • 4. 发明授权
    • Image stabilization control circuit and imaging device having image stabilization control circuit
    • 图像稳定控制电路和具有图像稳定控制电路的成像装置
    • US08400516B2
    • 2013-03-19
    • US12327293
    • 2008-12-03
    • Yasuhisa YamadaYuuki Tashita
    • Yasuhisa YamadaYuuki Tashita
    • H04N5/228G03B17/00
    • G03B5/00
    • A image stabilization control circuit is provided that comprises at least one analog-to-digital converter circuit that converts an output signal of a vibration detection element which detects vibration of an imaging device, and an output signal of a position detection element which detects a position of an optical component or an imaging element, into digital signals, and a logic circuit that generates a control signal which drives the optical component or the imaging element, based on the output signal of the vibration detection element which is digitized by the analog-to-digital converter circuit and the output signal of the position detection element which is digitized by the analog-to-digital converter circuit, wherein an offset value and an amplitude for the output signal of the position detection element are adjusted.
    • 提供一种图像稳定控制电路,其包括至少一个模数转换器电路,其转换检测成像装置的振动的振动检测元件的输出信号,以及检测位置的位置检测元件的输出信号 光学部件或成像元件的输出信号转换为数字信号;以及逻辑电路,其基于振动检测元件的输出信号生成驱动光学部件或成像元件的控制信号,该输出信号被模拟到 数字转换器电路和由模数转换器电路数字化的位置检测元件的输出信号,其中调整位置检测元件的输出信号的偏移值和振幅。
    • 5. 发明授权
    • Image stabilization control circuit
    • 图像稳定控制电路
    • US07760448B2
    • 2010-07-20
    • US12314306
    • 2008-12-08
    • Yasunori NagataYasuhisa YamadaYuuki Tashita
    • Yasunori NagataYasuhisa YamadaYuuki Tashita
    • G02B7/02G02B3/00G03B17/00
    • G03B5/00
    • A image stabilization control circuit for an image capturing device, wherein a gyro-equalizer (24) integrates an angular velocity signal from a gyro-sensor (12) in an integration circuit (46). The integration circuit (46) is composed of a low-boost filter (LBF), and a phase delay in a target compensation region is set to a value appropriate for an integration process. Furthermore, a characteristic whereby the LBF reduces the phase delay at higher frequencies is used, compensation is applied to the excess phase delay of the angular signal in the high-frequency region brought about by the effect of the phase delay generated in the high-frequency region by the output signal of the gyro-sensor (12), and the phase delay in the high-frequency region is brought nearer to 90 degrees. This allows the accuracy of the process for determining the required displacement magnitude of a lens to be increased.
    • 一种用于图像捕获装置的图像稳定控制电路,其中陀螺均衡器(24)将来自陀螺仪传感器(12)的角速度信号积分在积分电路(46)中。 积分电路(46)由低升压滤波器(LBF)构成,目标补偿区域的相位延迟被设定为适合于积分处理的值。 此外,使用LBF在较高频率下降低相位延迟的特性,对由高频中产生的相位延迟的影响引起的高频区域的角度信号的超相位延迟进行补偿 区域,由陀螺仪传感器(12)的输出信号,使高频区域的相位延迟更靠近90度。 这允许用于确定要增加的透镜的所需位移幅度的处理的精度。
    • 6. 发明申请
    • STEERING APPARATUS
    • 转向装置
    • US20120125708A1
    • 2012-05-24
    • US13058890
    • 2010-09-10
    • Yasuhisa Yamada
    • Yasuhisa Yamada
    • B62D1/187B62D5/04
    • B60R21/045B60R2021/0051
    • Low cost construction of a steering apparatus is provided that is capable of protecting an operator's knees 28 during an automobile collision. A tilted plate 30 is arranged below and behind a bottom end section of a housing 21 which is a component of an electric power assist mechanism 20 connected to a front end section of a steering column 9. In case that the automobile is in a collision, automobile equipment 29 that moves forward under pressure from the driver's knees hits against a bottom surface of the tilted plate. This allows the impact energy to be absorbed by the elasticity or deformation of the tilted plate 30 during impact, and after impact as well, the automobile equipment 29 to move in a direction along the bottom surface of the tilted plate.
    • 提供了一种转向装置的廉价构造,其能够在汽车碰撞期间保护操作者的膝盖28。 在作为与转向柱9的前端部连接的电动辅助机构20的部件的壳体21的下端部的下方配置有倾斜板30.在汽车碰撞的情况下, 在驾驶员膝盖的压力下向前移动的汽车设备29碰到倾斜板的底面。 这样就可以使撞击能量在冲击期间被倾斜板30的弹性或变形所吸收,并且在冲击之后,汽车设备29沿着倾斜板的底面的方向移动。
    • 9. 发明申请
    • Telescopic shaft for motor vehicle steering
    • 伸缩轴用于机动车辆转向
    • US20060252559A1
    • 2006-11-09
    • US10563324
    • 2004-06-11
    • Yasuhisa Yamada
    • Yasuhisa Yamada
    • F16D3/06
    • B62D1/185F16C3/035F16C29/005F16C29/007F16C29/123F16C33/60F16C2326/24F16D3/065F16D3/64
    • A telescopic shaft for motor vehicle steering assembled in a steering shaft of a motor vehicle and constructed by non-rotatably and slidably fitting a male shaft and a female shaft has a first torque transmission member and a second torque transmission member. The first torque transmission member is interposed, with an elastic body in between, between axial grooves formed in one line in an outer peripheral surface of the male shaft and an inner peripheral surface of the female shaft, respectively. The second torque transmission member is interposed between axial grooves formed in the other one line in the outer peripheral surface of the male shaft and in the inner peripheral surface of the female shaft, respectively. The elastic body has transmission member-side contact portions in contact with the first torque transmission member, groove surface-side contact portions separated in the circumferential direction with predetermined intervals and in contact with groove surfaces of the axial groove of the male shaft or the female shaft, and an urging portion for elastically urging a transmission member-side contact portion and a groove surface-side contact portion in the direction to separate them from each other. Rigidity of the transmission member-side contact portion and that of the groove surface-side contact portions are made different from each other.
    • 组装在机动车辆的转向轴上并且通过不可旋转地和可滑动地配合阳轴和阴轴构成的用于机动车辆转向的伸缩轴具有第一转矩传递部件和第二转矩传递部件。 第一扭矩传递构件分别在弹性体之间插入在阳轴的外周面中形成为一条直线的轴向槽和母轴的内周面之间。 第二扭矩传递构件分别插入在阳轴的外周面和母轴的内周面中的另一条线中形成的轴向槽之间。 弹性体具有与第一扭矩传递部件接触的传递部件侧接触部,以规定间隔沿周向隔开的槽面侧接触部,与阳轴或母体的轴向槽的槽面接触 轴和用于沿着使它们彼此分离的方向弹性地推动传动构件侧接触部分和槽表面侧接触部分的施力部分。 使传动构件侧接触部和槽表面侧接触部的刚性彼此不同。