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    • 5. 发明申请
    • Head gimbal assembly
    • 头万向节装配
    • US20100085664A1
    • 2010-04-08
    • US12586796
    • 2009-09-28
    • Masakazu HirataManabu OumiMajung ParkMizuaki Suzuki
    • Masakazu HirataManabu OumiMajung ParkMizuaki Suzuki
    • G11B21/16
    • G11B5/4833G11B5/486G11B5/4866
    • [Problem] To provide a head gimbal assembly with a light guide structure and an information recording/reproducing apparatus which make it possible to reduce a cost of manufacture.[Means for Resolution] A head gimbal assembly 12 with a light guide structure that is included in a rotary member borne to be turnable on a pivot shaft disposed outside magnetic recording media which are rotated in a certain direction. The head gimbal assembly includes a support 40 borne by the rotary member, a slider 2 attached to the distal end of the support so that the slider will be opposed to the surface of a magnetic recording medium, an optical waveguide 32 that is coupled to the slider in order to introduce light, with which the magnetic recording medium is heated, into the slider, a light source 20 that routes a light beam to the optical waveguide, and an electric wiring 31 over which power is fed to the light source and slider, and the light source is disposed on the support.
    • [问题]提供一种具有导光结构和信息记录/再现装置的头万向节组件,其可以降低制造成本。 [分辨装置]具有导光结构的头万向架组件12,其包括在旋转构件中,该旋转构件被承载成可在设置在磁记录介质外部的枢转轴上转动,该旋转构件沿特定方向旋转。 头万向节组件包括由旋转构件承载的支撑件40,附接到支撑件的远端的滑块2,使得滑块将与磁记录介质的表面相对;光波导32,其耦合到 滑动器,以便将磁记录介质被加热的光引入到滑块中,将光束路由到光波导的光源20以及将电力馈送到光源和滑块的电线31 并且光源设置在支撑件上。
    • 9. 发明申请
    • Blood viscosity measurement device
    • 血液粘度测量装置
    • US20060184026A1
    • 2006-08-17
    • US11341757
    • 2006-01-27
    • Takahiko NakamuraMasatake ShinogiFumio KimuraMizuaki Suzuki
    • Takahiko NakamuraMasatake ShinogiFumio KimuraMizuaki Suzuki
    • A61B8/00
    • A61B8/06
    • There is disclosed a blood viscosity measurement device which measures a flow rate of blood and a thickness of a blood vessel to determine a viscosity of the blood. The device substitutes the flow rate of the blood, the thickness of the blood vessel, and a blood pressure into a predetermined calculation formula to calculate the viscosity of the blood. The flow rate of the blood is obtained from a change amount of frequency of a continuous ultrasonic wave transmitted to a blood flow and reflected by the blood flow. As to the thickness of the blood vessel, an inner diameter of the blood vessel is obtained from a pulse ultrasonic wave transmitted to the blood vessel and reflected by an inner wall of the blood vessel. On the other hand, a value measured with a general blood pressure gauge is utilized in the blood pressure. The blood viscosity measurement device substitutes the maximum flow rate, the maximum inner diameter, and the maximum blood pressure among the values acquired as described above into the calculation formula to calculate the viscosity of the blood.
    • 公开了一种测量血流量和血管厚度以测定血液粘度的血液粘度测量装置。 该装置将血液的流量,血管的厚度和血压代入预定的计算式,以计算血液的粘度。 血液的流量从发送到血流并由血流反射的连续超声波的频率的变化量获得。 关于血管的厚度,血管的内径是从发送到血管的脉波超声波获得并被血管的内壁反射的。 另一方面,在血压中使用用普通血压计测量的值。 血液粘度测定装置将上述取得的值中的最大流量,最大内径和最大血压代入计算公式,计算出血液的粘度。
    • 10. 发明授权
    • Piezoelectric actuator
    • 压电执行器
    • US06201339B1
    • 2001-03-13
    • US09050792
    • 1998-03-30
    • Kazuo TaniMizuaki SuzukiHidetaka MaedaYouko Suzuki
    • Kazuo TaniMizuaki SuzukiHidetaka MaedaYouko Suzuki
    • H01L4108
    • H02N2/0055H01L41/094H02N2/0015H02N2/103
    • A piezoelectric actuator has a vibrating member having a generally central portion and a vibratable cantilever extending from the central portion. The cantilever has a first major surface, a second major surface opposite the first major surface, a first end integrally connected to the central portion, and a second free end. A piezoelectric element is connected to the second major surface of the cantilever and is driven by a voltage signal applied thereto to undergo expansion and contraction to vibrationally drive the cantilever. A moving member is in contact with the first major surface of the cantilever to be frictionally driven by vibration of the cantilevers in response to expansion and contraction of the piezoelectric element.
    • 压电致动器具有振动构件,该振动构件具有从中心部分延伸的大致中心部分和可振动悬臂。 悬臂具有第一主表面,与第一主表面相对的第二主表面,与中心部分一体连接的第一端和第二自由端。 压电元件连接到悬臂的第二主表面,并被施加到其上的电压信号驱动以进行膨胀和收缩以振动地驱动悬臂。 移动构件与悬臂的第一主表面接触,以响应于压电元件的膨胀和收缩而被悬臂的振动摩擦驱动。