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    • 2. 发明授权
    • Lens drive device, image pickup device and lens drive method
    • 镜头驱动装置,图像拾取装置和镜头驱动方法
    • US08089553B2
    • 2012-01-03
    • US12270391
    • 2008-11-13
    • Yohsuke SuzukiTakuroh YasudaKaoru ItoKatsuhiko Nuno
    • Yohsuke SuzukiTakuroh YasudaKaoru ItoKatsuhiko Nuno
    • G03B13/24G03B17/00H04N5/228
    • H04N5/2254G02B7/102G03B17/04G03B17/12G03B2217/002H04N5/2253H04N2101/00
    • A lens drive device in at least one lens barrel holding a lens moveably includes a motor to drive the lens; an acceleration detection section to detect an acceleration; and an output control section to control an output of the motor corresponding to the acceleration detected by the acceleration detection section. The output control section determines whether the acceleration detected by the acceleration detection section falls within a predetermined acceleration range or not. When the acceleration is determined to be within the range, a further determination of whether the lens drive device is in a stationary state is performed. When it is determined not being in the stationary state, the motor is driven by a maximum drive voltage. When it is determined being in the stationary state, a further determination of whether the posture is horizontal or not is performed.
    • 保持透镜的至少一个镜筒中的透镜驱动装置可移动地包括用于驱动透镜的马达; 检测加速度的加速度检测部; 以及输出控制部分,用于控制与加速度检测部分检测到的加速度相对应的马达的输出。 输出控制部判定由加速度检测部检测到的加速度是否在规定的加速范围内。 当确定加速度在该范围内时,进一步确定透镜驱动装置是否处于静止状态。 当确定不处于静止状态时,电机由最大驱动电压驱动。 当确定处于静止状态时,执行姿势是否水平的进一步确定。
    • 5. 发明授权
    • Web feed mechanism for feeding a web from a roll
    • 卷筒纸送料机构
    • US4570870A
    • 1986-02-18
    • US663982
    • 1984-10-23
    • Kaoru Ito
    • Kaoru Ito
    • B41J15/16B41J33/14B65H23/08G11B15/43G11B15/67G11B15/22B65H23/06
    • B41J15/16B65H23/08B65H23/085G11B15/43G11B15/67
    • A web feed mechanism for stepwise or continuously feeding a web, such as a printing medium of a printer, or the like, from a roll of web. In the web feed mechanism, slackness, if any, can be absorbed by applying a drag force to the outermost winding of the web roll through a radially inwardly biased sliding member that slides tangentially of the web roll either in the forward direction, in which the web is to be let off from the web roll, or in the backward direction, in which the web is to be taken up onto the web roll. The sliding member is spring biased to slide backward. Upon the web being let off the web roll, the drag slides the sliding member forward, charges its spring and thereby keeps the web under tension. Upon discontinuance of web unwinding, slackness in the web is absorbed by the spring biasing the sliding member to drag the web roll to roll backward.
    • 用于从卷筒纸逐步或连续地馈送诸如打印机的打印介质等的卷筒纸的卷筒纸进给机构。 在卷筒纸进给机构中,松弛度(如果有的话)可以通过向卷筒纸卷的最外侧卷筒施加拖曳力而被吸收,该径向向内偏移的滑动构件沿卷筒纸卷筒的向前方向切向滑动, 纸幅将从卷筒纸卷筒纸或向后的方向上脱落,纸幅将被卷取到纸卷上。 滑动构件被弹簧偏置以向后滑动。 当纸幅从纸卷上取下时,拖曳滑动构件向前滑动,对其弹簧充电,从而使幅材保持张力。 在纸幅退绕中断时,纸张的松弛被弹簧偏压滑动部件吸收,从而将纸卷向后滚动。
    • 6. 发明授权
    • Stacked film capacitor and method of producing the same
    • 堆叠薄膜电容器及其制造方法
    • US08564929B2
    • 2013-10-22
    • US13177021
    • 2011-07-06
    • Kaoru ItoMasumi Noguchi
    • Kaoru ItoMasumi Noguchi
    • H01G4/30
    • H01G4/30H01G4/224
    • A stacked film capacitor including a resin protective film having excellent durability is provided which can stably secure desired properties. The stacked film capacitor includes a capacitor element including a plurality of dielectric layers, and a plurality of vapor-deposited metal film layers. Each dielectric layer and each vapor-deposited metal film layer are stacked with each other so as to be arranged alternately. The stacked film capacitor further includes a pair of external electrodes provided on opposing side surfaces of the capacitor element, and at least one resin protective film formed on at least one side surfaces other than the side surfaces on which the external electrodes are formed, in which the at least one resin protective film is provided by deposition polymerization.
    • 提供了包括具有优异的耐久性的树脂保护膜的叠层薄膜电容器,其可以稳定地确保期望的性能。 堆叠薄膜电容器包括具有多个电介质层的电容器元件和多个气相沉积金属膜层。 每个电介质层和每个气相沉积的金属膜层彼此堆叠以交替布置。 堆叠薄膜电容器还包括设置在电容器元件的相对侧面上的一对外部电极,以及至少一个树脂保护膜,其形成在除形成有外部电极的侧面以外的至少一个侧面上,其中 通过沉积聚合提供至少一种树脂保护膜。
    • 7. 发明授权
    • Sputtering apparatus and method for forming coating film by sputtering
    • 用溅射法形成涂膜的溅射装置和方法
    • US08101055B2
    • 2012-01-24
    • US12327927
    • 2008-12-04
    • Hirotoshi MatsuiKaoru Ito
    • Hirotoshi MatsuiKaoru Ito
    • C25B9/00C25B11/00C25B13/00C23C14/00C23C16/00
    • C23C14/044C23C14/223C23C14/505Y10T428/24612
    • A sputtering apparatus for forming a coating film made of a metallic film on a coating surface of a substrate by sputtering to have such a film thickness that gradually increases or gradually decreases from its one end side to the other end side. The apparatus comprising at least one supporting means supporting at least one substrate such that a coating surface thereof is opposed to an emission surface of a sputtering target at an angle, and at least one shielding member for preventing part of sputtering particles emitted from the emission surface from reaching the coating surface. The at least one shielding member being disposed in the vacuum chamber so as to be positioned in a space between the coating surface of the at least one substrate and the emission surface of the sputtering target.
    • 一种溅射装置,用于通过溅射在基板的涂层表面上形成由金属膜制成的涂膜,以使其厚度从其一端侧逐渐增加或逐渐减小。 该装置包括至少一个支撑装置,其支撑至少一个基板,使得其涂层表面成一角度地与溅射靶的发射表面相对;以及至少一个屏蔽构件,用于防止从发射表面发射的溅射颗粒的一部分 从到达涂层表面。 所述至少一个屏蔽构件设置在所述真空室中,以便被定位在所述至少一个基板的涂覆表面和所述溅射靶的发射表面之间的空间中。
    • 9. 发明申请
    • SPUTTERING APPARATUS AND METHOD FOR FORMING COATING FILM BY SPUTTERING
    • 溅射装置和通过溅射形成涂膜的方法
    • US20090162618A1
    • 2009-06-25
    • US12327927
    • 2008-12-04
    • Hirotoshi MatsuiKaoru Ito
    • Hirotoshi MatsuiKaoru Ito
    • C23C14/34B32B3/00
    • C23C14/044C23C14/223C23C14/505Y10T428/24612
    • A sputtering apparatus is provided which is capable of forming a coating film made of a metallic film on a coating surface of a substrate by sputtering to have such a film thickness that gradually increases or gradually decreases from its one end side to the other end side. The apparatus comprising: at least one supporting means supporting at least one substrate such that a coating surface thereof is opposed to an emission surface of a sputtering target at an angle; and at least one shielding member for preventing part of sputtering particles emitted from the emission surface from reaching the coating surface, the at least one shielding member being disposed in the vacuum chamber so as to be positioned in a space between the coating surface of the at least one substrate and the emission surface of the sputtering target.
    • 提供一种溅射装置,其能够通过溅射在基板的涂布表面上形成由金属膜制成的涂膜,以使其厚度从其一端侧逐渐增加或逐渐减小。 所述装置包括:至少一个支撑装置,其支撑至少一个基板,使得其涂层表面以一定角度与溅射靶的发射表面相对; 以及至少一个屏蔽构件,用于防止从所述发射表面发射的溅射颗粒的一部分到达所述涂层表面,所述至少一个屏蔽构件设置在所述真空室中,以便位于所述涂覆表面的所述涂覆表面之间的空间中 至少一个衬底和溅射靶的发射表面。
    • 10. 发明申请
    • LENS DRIVE DEVICE, IMAGE PICKUP DEVICE AND LENS DRIVE METHOD
    • 镜头驱动装置,图像拾取装置和镜头驱动方法
    • US20090141135A1
    • 2009-06-04
    • US12270391
    • 2008-11-13
    • Yohsuke SuzukiTakuroh YasudaKaoru ItoKatsuhiko Nuno
    • Yohsuke SuzukiTakuroh YasudaKaoru ItoKatsuhiko Nuno
    • H04N5/228
    • H04N5/2254G02B7/102G03B17/04G03B17/12G03B2217/002H04N5/2253H04N2101/00
    • A lens drive device in at least one lens barrel holding a lens moveably includes a motor to drive the lens; an acceleration detection section to detect an acceleration; and an output control section to control an output of the motor corresponding to the acceleration detected by the acceleration detection section. The output control section determines whether the acceleration detected by the acceleration detection section falls within a predetermined acceleration range or not. When the acceleration is determined to be within the range, a further determination of whether the lens drive device is in a stationary state is performed. When it is determined not being in the stationary state, the motor is driven by a maximum drive voltage. When it is determined being in the stationary state, a further determination of whether the posture is horizontal or not is performed.
    • 保持透镜的至少一个镜筒中的透镜驱动装置可移动地包括用于驱动透镜的马达; 检测加速度的加速度检测部; 以及输出控制部分,用于控制与加速度检测部分检测到的加速度相对应的马达的输出。 输出控制部判定由加速度检测部检测到的加速度是否在规定的加速范围内。 当确定加速度在该范围内时,进一步确定透镜驱动装置是否处于静止状态。 当确定不处于静止状态时,电机由最大驱动电压驱动。 当确定处于静止状态时,执行姿势是否水平的进一步确定。