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    • 26. 发明授权
    • Arteriosclerosis diagnostic device
    • 动脉硬化诊断装置
    • US08414500B2
    • 2013-04-09
    • US12784103
    • 2010-05-20
    • Mami MatsukawaYoshiaki WatanabeMasashi SaitoTakaaki AsadaMio Furuya
    • Mami MatsukawaYoshiaki WatanabeMasashi SaitoTakaaki AsadaMio Furuya
    • A61B5/0402
    • A61B7/04A61B5/02007A61B5/0285
    • An arteriosclerosis diagnostic device according to various embodiments is a simple device, resistant to an external factor, such as an error resulting from a skin surface, and capable of measuring the degree of hardness of an artery. The arteriosclerosis diagnostic device detects a heart sound and a pulse wave at least one location of a living body, the pulse wave propagating through an artery in relation to the heart sound, converts detected signals thereof into respective frequency signals, specifies the peak frequency of each of the frequency signals, and determines the degree of arteriosclerosis on the basis of the difference between the peak frequency of the heart sound and the peak frequency of the pulse wave. Accordingly, the degree of arteriosclerosis can be determined by comparison between the frequency signals.
    • 根据各种实施方式的动脉硬化症诊断装置是能够抵抗外部因素的简单装置,例如由皮肤表面产生的误差,并且能够测量动脉的硬度。 动脉硬化诊断装置通过与心脏声音相关的动脉传播的脉搏波将检测到的信号转换成各自的频率信号,来确定生物体的至少一个位置的心脏声音和脉搏波,将各个频率信号的峰值频率 的频率信号,并且基于心音的峰值频率与脉搏波的峰值频率之间的差来确定动脉硬化的程度。 因此,可以通过频率信号之间的比较来确定动脉硬化的程度。
    • 27. 发明授权
    • Method for producing wafer lens assembly and method for producing wafer lens
    • 晶片透镜组件的制造方法及晶片透镜的制造方法
    • US08194323B2
    • 2012-06-05
    • US12682460
    • 2009-04-08
    • Naoko OkazakiShigeru HosoeMasashi Saito
    • Naoko OkazakiShigeru HosoeMasashi Saito
    • G02B27/10
    • G02B3/0012B29C31/006B29D11/00365G02B3/0062
    • There is provided a method for producing a wafer lens assembly capable of adhering a wafer lens and a spacer surely. The wafer lens assembly includes a first substrate including plural optical members formed of a curable resin on at least one surface, a second substrate joined to the first substrate, and a stop member arranged between the first and second substrates. The first and second substrates are adhered with an adhesive made of a photo-curable resin. The method includes an adhesive applying step of applying the adhesive made of a photo-curable resin on a joining area, a stop-member forming step, and a photo-curing step of irradiating and hardening the adhesive applied in the adhesive applying step with light after the stop-member forming step. The stop member is formed so as not to prevent the light irradiated in the photo-curing step from reaching the adhesive.
    • 提供了一种用于制造能够确实地粘附晶片透镜和间隔件的晶片透镜组件的方法。 晶片透镜组件包括:第一基板,包括在至少一个表面上由可固化树脂形成的多个光学部件;与第一基板接合的第二基板;以及设置在第一和第二基板之间的止动部件。 用由光固化树脂制成的粘合剂粘合第一和第二基片。 该方法包括将由光固化树脂制成的粘合剂施加到接合区域上的粘合剂施加步骤,停止构件形成步骤和光固化步骤,用光照射和硬化涂布在粘合剂施加步骤中的粘合剂 在停止部件形成步骤之后。 止挡构件形成为不防止光固化步骤中照射的光到达粘合剂。
    • 28. 发明授权
    • Control module for seat belt retractor and seat belt retractor
    • 安全带卷收器和安全带卷收器的控制模块
    • US08131428B2
    • 2012-03-06
    • US12262858
    • 2008-10-31
    • Masashi SaitoHiroshi Ito
    • Masashi SaitoHiroshi Ito
    • B60R22/46
    • B60R22/34B60R2022/4473
    • A control module for seat belt retractor capable of controlling a winding torque of a seat belt within a predetermined range, and such a seat belt retractor are provided. The seat belt retractor includes a spool 300 around which a seat belt for vehicle is wound, a motor 200 that causes the spool 300 to rotate, and a motor power transmission mechanism unit that couples the motor 200 and the spool 300. A microcomputer 400 uses a preset control parameter value to control a motor current that flows through the motor 200. The microcomputer 400 changes, based on the motor current and an output torque value of the spool, the control parameter value. The control parameter value is an apparent torque constant for each seat belt retractor product.
    • 提供一种能够将安全带的卷绕扭矩控制在预定范围内的安全带卷收器的控制模块和这种安全带卷收器。 安全带卷收器包括卷绕在车轮用安全带上的卷轴300,使卷轴300旋转的马达200以及马达200与卷轴300相连接的马达动力传递机构部。微型计算机400使用 用于控制流过电动机200的电动机电流的预设控制参数值。微型计算机400基于电动机电流和线轴的输出转矩值来改变控制参数值。 控制参数值是每个安全带卷收器产品的表观扭矩常数。
    • 30. 发明申请
    • Method of Manufacturing Wafer Lens
    • 制造晶圆透镜的方法
    • US20110204531A1
    • 2011-08-25
    • US13119755
    • 2009-04-24
    • Akiko HaraMasashi SaitoToshiyuki Imai
    • Akiko HaraMasashi SaitoToshiyuki Imai
    • B29D11/00B29C71/02B29C71/04
    • G02B3/0031B29C41/36B29D11/00307B29L2011/00B29L2011/0016G02B13/0085
    • Provided is a method of manufacturing a wafer lens in which the surface configuration of the lens section can be transferred with high precision. The method possesses a step of preparing a molding die having plural molding surfaces corresponding to an optical surface configuration of the optical member; a filling step of filling the photo-curable resin in between the surface of the substrate and the molding surface of the molding die; a photo-curing step of exposing the photo-curable resin to light to accelerate curing; a heating step of conducting a heat treatment for the photo-curable resin having been cured in the photo-curing step; and a releasing step of releasing the molding die from the photo-curable resin after conducting the heating step, and further comprises a step of conducting a post-cure treatment for the optical member.
    • 提供一种可以高精度地转印透镜部的表面形状的晶片透镜的制造方法。 该方法具有制备具有与光学构件的光学表面形状对应的多个成型面的成型模具的工序; 将光固化树脂填充在基板的表面和成形模的成形面之间的填充工序; 将光固化树脂曝光以加速固化的光固化步骤; 对在光固化步骤中固化的光固化树脂进行热处理的加热步骤; 以及在进行加热工序之后,从光固化树脂上脱模成型模具的释放工序,还包括对光学部件进行后固化处理的工序。