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    • 2. 发明申请
    • CONDUCTIVE TERMINAL WELDING METHOD AND CONDUCTIVE TERMINAL STRUCTURE
    • 导电终端焊接方法和导电终端结构
    • US20080102716A1
    • 2008-05-01
    • US11927027
    • 2007-10-29
    • Akihiko NishiokaTakeshi Yasuda
    • Akihiko NishiokaTakeshi Yasuda
    • H01R4/02B23K11/18
    • H01R43/0214H05K3/202H05K3/328
    • The invention provides a welding method by resistance welding capable of adequately increasing a welding strength between two conductive terminals each made of copper, and a conductive terminal structure obtained by the method. A first conductive terminal made of a tinned flat copper plate is molded such that a step portion is formed at a position spaced away from a tip end position of the first conductive terminal and a projection is formed at a tip end portion ranging from the tip end position to the step portion. A second conductive terminal made of the aforementioned copper plate and the first conductive terminal are molded such that a weld surface of the second conductive terminal has a size to cover an entire weld surface of the projection of the first conductive terminal. Simultaneously, the respective conductive terminals are molded such that the tip end portion of the first conductive terminal becomes substantially equal in sectional area to a weld portion of the second conductive terminal. These conductive terminals are brought into contact under pressure with electrodes equal in electrical characteristic to each other, and then electric current is fed to the electrodes. Thus, the projection of the first conductive terminal is melted into and is welded to the weld surface of the second conductive terminal.
    • 本发明提供一种能够充分提高由铜构成的两个导电端子之间的焊接强度的电阻焊接方法和通过该方法获得的导电端子结构的焊接方法。 由镀锡扁平铜板制成的第一导电端子被模制成在与第一导电端子的末端位置隔开的位置上形成台阶部分,并且在尖端部分形成突出部, 位置到台阶部分。 由上述铜板和第一导电端子制成的第二导电端子被模制成使得第二导电端子的焊接表面具有覆盖第一导电端子的突起的整个焊接表面的尺寸。 同时,各导电端子被模制成使得第一导电端子的末端部分与第二导电端子的焊接部分的截面面积基本相等。 这些导电端子在压力下与彼此具有电特性相等的电极接触,然后将电流馈送到电极。 因此,第一导电端子的突起熔化并焊接到第二导电端子的焊接表面。
    • 5. 发明授权
    • Optical disk drive apparatus capable of searching an optimum target position
    • 能够搜索最佳目标位置的光盘驱动装置
    • US06430119B1
    • 2002-08-06
    • US09568186
    • 2000-05-09
    • Yuu OkadaKatsuya WatanabeTetsuya ShiharaAkihiko NishiokaKoujiro Okamoto
    • Yuu OkadaKatsuya WatanabeTetsuya ShiharaAkihiko NishiokaKoujiro Okamoto
    • G11B2108
    • G11B21/083G11B7/00718G11B7/0908G11B7/094G11B7/0945
    • An optical disk apparatus includes a converging section for converging a light beam toward an information carrier; a moving section for moving the light beam converged by the converging section in a direction perpendicular to a surface of the information carrier; a light detector for detecting the light beam reflected by the information carrier; a convergence state detecting section for generating a convergence state signal representing a convergence state of the light beam at a convergence point on the information carrier and outputting a reproduction signal from the information carrier, based on the output from the light detector; a focus controller for driving the moving section to make the convergence state constant based on the convergence state signal and a prescribed target position; a reproduction quality signal detector for detecting a reproduction quality signal representing a quality of the reproduction signal based on the reproduction signal; a reproduction quality signal measuring section for changing the target position and measuring a value of the reproduction quality signal corresponding to each of the changed target positions; a reproduction quality signal characteristic determining section for determining a characteristic of the reproduction quality signal based on the value of the reproduction quality signal corresponding to each of the changed target positions; and a target position searching section for searching for an optimum target position of the focus controller for optimizing the value of the reproduction quality signal based on a determination result of the reproduction quality signal characteristic determining section.
    • 光盘装置包括会聚光束朝向信息载体的会聚部分; 移动部分,用于沿着垂直于信息载体表面的方向移动由会聚部分会聚的光束; 用于检测由信息载体反射的光束的光检测器; 会聚状态检测部分,用于产生表示信息载体上的会聚点处的光束的会聚状态的会聚状态信号,并根据光检测器的输出从信息载体输出再现信号; 聚焦控制器,用于驱动所述移动部分,以使所述会聚状态基于所述会聚状态信号和规定的目标位置而恒定; 再现质量信号检测器,用于基于再现信号检测表示再现信号的质量的再现质量信号; 再现质量信号测量部分,用于改变目标位置并测量与每个改变的目标位置对应的再现质量信号的值; 再现质量信号特征确定部分,用于基于与每个改变的目标位置对应的再现质量信号的值来确定再现质量信号的特性; 以及目标位置搜索部分,用于基于再现质量信号特性确定部分的确定结果,搜索用于优化再现质量信号的值的焦点控制器的最佳目标位置。
    • 6. 发明申请
    • OPTICAL DISC DEVICE AND LENS CLEANER
    • 光盘设备和镜头清洁器
    • US20140189717A1
    • 2014-07-03
    • US13817936
    • 2011-11-18
    • Asayuki MatsumuraTomio YamamotoAkihiko NishiokaMasahiro Inagaki
    • Asayuki MatsumuraTomio YamamotoAkihiko NishiokaMasahiro Inagaki
    • G11B7/121
    • G11B7/121G11B23/0021G11B23/0327
    • An optical disc device of the present invention comprises an insertion detection optical sensor which detects insertion of an optical disc based on light emitted from a first light emitting element to a first light receiving element being blocked, and an ejection detection optical sensor provided on the downstream side in the carry-in direction to the insertion detection optical sensor to detect ejection of the optical disc based on light emitted from a second light emitting element to a second light receiving element being blocked. The optical disc device is structured such that, in a state that the optical disc is attached onto the turntable, when the light of the first light emitting element is blocked and the light of the second light emitting element is not blocked, the optical disc device recognizes that a lens cleaner is attached onto the turntable as the optical disc, and the optical disc device performs a cleaning operation.
    • 本发明的光盘装置包括:插入检测光学传感器,其基于从第一发光元件发射的光到被阻挡的第一受光元件检测光盘的插入;以及喷射检测光学传感器,设置在下游 一侧到插入检测光学传感器的携带方向,以基于从第二发光元件发射到被阻挡的第二光接收元件的光来检测光盘的喷射。 光盘装置的结构使得在光盘安装在转盘上的状态下,当第一发光元件的光被遮挡并且第二发光元件的光不被阻挡时,光盘装置 认识到透镜清洁器作为光盘附接到转台上,并且光盘装置执行清洁操作。
    • 8. 发明授权
    • Conductive terminal welding method and conductive terminal structure
    • 导电端子焊接方法和导电端子结构
    • US07858880B2
    • 2010-12-28
    • US11927027
    • 2007-10-29
    • Akihiko NishiokaTakeshi Yasuda
    • Akihiko NishiokaTakeshi Yasuda
    • H02G5/00H01R4/02B23K11/18
    • H01R43/0214H05K3/202H05K3/328
    • The invention provides a welding method by resistance welding capable of adequately increasing a welding strength between two conductive terminals each made of copper, and a conductive terminal structure obtained by the method. A first conductive terminal made of a tinned flat copper plate is molded such that a step portion is formed at a position spaced away from a tip end position of the first conductive terminal and a projection is formed at a tip end portion ranging from the tip end position to the step portion. A second conductive terminal made of the aforementioned copper plate and the first conductive terminal are molded such that a weld surface of the second conductive terminal has a size to cover an entire weld surface of the projection of the first conductive terminal. Simultaneously, the respective conductive terminals are molded such that the tip end portion of the first conductive terminal becomes substantially equal in sectional area to a weld portion of the second conductive terminal. These conductive terminals are brought into contact under pressure with electrodes equal in electrical characteristic to each other, and then electric current is fed to the electrodes. Thus, the projection of the first conductive terminal is melted into and is welded to the weld surface of the second conductive terminal.
    • 本发明提供一种能够充分提高由铜构成的两个导电端子之间的焊接强度的电阻焊接方法和通过该方法获得的导电端子结构的焊接方法。 由镀锡扁平铜板制成的第一导电端子被模制成在与第一导电端子的末端位置隔开的位置上形成台阶部分,并且在尖端部分形成突出部, 位置到台阶部分。 由上述铜板和第一导电端子制成的第二导电端子被模制成使得第二导电端子的焊接表面具有覆盖第一导电端子的突起的整个焊接表面的尺寸。 同时,各导电端子被模制成使得第一导电端子的末端部分与第二导电端子的焊接部分的截面面积基本相等。 这些导电端子在压力下与彼此具有电特性相等的电极接触,然后将电流馈送到电极。 因此,第一导电端子的突起熔化并焊接到第二导电端子的焊接表面。
    • 10. 发明授权
    • Optical disc device and lens cleaner
    • 光盘设备和镜头清洁剂
    • US08887183B2
    • 2014-11-11
    • US13817936
    • 2011-11-18
    • Asayuki MatsumuraTomio YamamotoAkihiko NishiokaMasahiro Inagaki
    • Asayuki MatsumuraTomio YamamotoAkihiko NishiokaMasahiro Inagaki
    • G11B17/04G11B23/03G11B7/121
    • G11B7/121G11B23/0021G11B23/0327
    • An optical disc device of the present invention comprises an insertion detection optical sensor which detects insertion of an optical disc based on light emitted from a first light emitting element to a first light receiving element being blocked, and an ejection detection optical sensor provided on the downstream side in the carry-in direction to the insertion detection optical sensor to detect ejection of the optical disc based on light emitted from a second light emitting element to a second light receiving element being blocked. The optical disc device is structured such that, in a state that the optical disc is attached onto the turntable, when the light of the first light emitting element is blocked and the light of the second light emitting element is not blocked, the optical disc device recognizes that a lens cleaner is attached onto the turntable as the optical disc, and the optical disc device performs a cleaning operation.
    • 本发明的光盘装置包括:插入检测光学传感器,其基于从第一发光元件发射的光到被阻挡的第一受光元件检测光盘的插入;以及喷射检测光学传感器,设置在下游 一侧到插入检测光学传感器的携带方向,以基于从第二发光元件发射到被阻挡的第二光接收元件的光来检测光盘的喷射。 光盘装置被构造成使得在将光盘安装到转台上的状态下,当第一发光元件的光被遮挡并且第二发光元件的光未被阻挡时,光盘装置 认识到透镜清洁器作为光盘附接到转台上,并且光盘装置执行清洁操作。