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    • 11. 发明授权
    • Microscope apparatus
    • 显微镜装置
    • US5969855A
    • 1999-10-19
    • US729410
    • 1996-10-11
    • Hiroshi IshiwataToyohiko YatagaiMasahide Itoh
    • Hiroshi IshiwataToyohiko YatagaiMasahide Itoh
    • G02B21/14G02B21/36G02B21/06
    • G02B21/367G02B21/14
    • A microscope apparatus that has an electronic image pickup device arranged on an image surface of an imaging optical system, a component for separating light from a light source into two portions, a device for changing a phase difference between the two portions of light, a device for storing information on the images picked up by the image pickup device, and information processor for processing the information of images. The images are picked up by the electronic image pickup device as the phase difference is changed, and the information on the images is multiplied by a periodic function, as a weight function, which is given the phase difference as variable, and a resultant product is integrated so that a differential interference microscope apparatus capable of accurately obtaining a phase distribution of the object or a phase-contrast microscope apparatus capable of effectively enhancing a resolving power without lowering an image contrast is obtained.
    • 一种具有配置在摄像光学系统的图像表面上的电子摄像装置的显微镜装置,将光源从光源分离成两部分的部件,用于改变两部分光之间的相位差的装置, 用于存储由图像拾取装置拾取的图像的信息,以及用于处理图像信息的信息处理器。 当相位差改变时,由电子摄像装置拾取图像,并将关于图像的信息乘以周期函数作为加权函数,其给出相位差作为可变,并且得到的乘积为 可以获得能够精确地获得物体的相位分布的微分干涉显微镜装置,或能够有效地提高分辨能力而不降低图像对比度的相位差显微镜装置。
    • 12. 发明授权
    • Distributor type fuel injection pump
    • 分配器型燃油喷射泵
    • US5642715A
    • 1997-07-01
    • US623955
    • 1996-03-29
    • Toru YamakawaKen'ichi KuboHiroshi IshiwataJun Matsubara
    • Toru YamakawaKen'ichi KuboHiroshi IshiwataJun Matsubara
    • F02M41/12F02M41/14F02M45/06F02M41/00
    • F02M41/1411F02M45/06
    • Inflow/outflow ports are provided in either one of a distribution member for distributing compressed fuel or a control sleeve which is externally fitted around the distribution member. Each of the ports includes a slit extending therefrom. At the other one of the distribution member and the control sleeve, an intake-cutoff hole that communicates sequentially with the inflow/outflow ports and a pilot port which communicates with the slits during part of the force feed period are provided. Since the fuel flows out through the slits during part of the force feed period, pilot injection can be more easily achieved prior to the main injection during low speed rotation and fuel is less likely to be diverted through the slits due to the constricting effect during high speed rotation so that only the main injection is performed. As a result, a distributor type fuel injection pump which achieves pilot injection in the idling range and in the no-load range, and cancels the pilot injection in the full-load range is provided.
    • 在分配压缩燃料的分配构件或分配构件外部安装的控制套筒中的任一个中设置有流入/流出端口。 每个端口包括从其延伸的狭缝。 在分配构件和控制套筒的另一个处,设置有与流入口和流出口顺序连通的进气切断孔,以及在部分加力期间与狭缝连通的先导口。 由于在部分力供给期间燃料通过狭缝流出,因此在低速旋转期间的主喷射之前可以更容易地实现先导喷射,并且由于高压期间的收缩效应,燃料不太可能转移通过狭缝 速度旋转,从而仅进行主喷射。 结果,提供一种分配式燃料喷射泵,其在怠速范围和空载范围内实现先导喷射,并且在满载范围内抵消先导喷射。
    • 14. 发明申请
    • METHOD AND APPARATUS FOR VISUALIZING PHASE OBJECT
    • 用于可视化相位对象的方法和装置
    • US20120057013A1
    • 2012-03-08
    • US13221581
    • 2011-08-30
    • Hiroshi Ishiwata
    • Hiroshi Ishiwata
    • H04N7/18
    • G02B21/367
    • A visualization apparatus includes a light source, an illumination optical system configured to guide light from the light source to an observation target object, an image forming optical system configured to form an optical image of the observation target object on an image plane, an image pickup element arranged on the image plane, a calculation device configured to calculate a plurality of first electronic images of the observation target object obtained from the image pickup element to generate a second electronic image, and an oblique illumination control section configured to control an illumination direction of oblique illumination provided by the illumination optical system. The plurality of first electronic images include first electronic images of the observation target object illuminated from different illumination directions by the oblique illumination control section.
    • 一种可视化装置,包括光源,被配置为将来自光源的光引导到观察对象物体的照明光学系统,被构造成在像面上形成观察对象物的光学图像的图像形成用光学系统, 所述计算装置被配置为计算从所述图像拾取元件获得的所述观察对象物体的多个第一电子图像,以生成第二电子图像;以及倾斜照明控制部,被配置为控制所述第一电子图像的照明方向 由照明光学系统提供的倾斜照明。 多个第一电子图像包括通过倾斜照明控制部分从不同照明方向照射的观察对象物体的第一电子图像。
    • 15. 发明授权
    • Methods for implement microscopy and microscopic measurement as well as microscope and apparatus for implementing them
    • 实现显微镜和显微镜测量的方法以及用于实现它们的显微镜和装置
    • US07564622B2
    • 2009-07-21
    • US11003728
    • 2004-12-06
    • Hiroshi Ishiwata
    • Hiroshi Ishiwata
    • G02B21/06G02B21/00
    • G02B21/361G02B21/14
    • A microscope is provided that enables a phase object or surface pits and projections to be observed at a relatively low image-formation magnification of 4 or lower over a wide viewing range yet in a relatively narrow spatial frequency distribution range. The microscope comprises a light source, an illumination optical system, a partial aperture located at the pupil position of the illumination optical system, an image-formation optical system, and an eyepiece optical system or an image pickup optical system, wherein the diameter of the image of a partial aperture at the pupil position of the image-formation optical system is set smaller than the pupil diameter of the image-formation optical system, and at the pupil position of the image-formation optical system there is located an element for introducing in the pupil position of the image-formation optical system a wavefront varying in size with the pupil diameter.
    • 提供了一种显微镜,其能够在相对窄的空间频率分布范围内在宽的观察范围内以相对较低的4或更低的图像形成倍率观察相位物体或表面凹坑和投影。 显微镜包括光源,照明光学系统,位于照明光学系统的光瞳位置处的部分光圈,成像光学系统和目镜光学系统或图像拾取光学系统,其中, 在图像形成光学系统的光瞳位置处的部分孔径的图像被设定为小于成像光学系统的光瞳直径,并且在成像光学系统的光瞳位置处设置有用于引入 在图像形成光学系统的光瞳位置中,具有瞳孔直径的尺寸变化的波前。
    • 19. 发明授权
    • Fuel injection system
    • 燃油喷射系统
    • US5443047A
    • 1995-08-22
    • US224782
    • 1994-04-08
    • Hiroshi IshiwataTakashi OhishiAtsushi UedaNaotake Ohi
    • Hiroshi IshiwataTakashi OhishiAtsushi UedaNaotake Ohi
    • F02B3/06F02D41/40F02M45/06F02M57/02F02M59/36F02M59/46F02M41/14
    • F02M45/066F02D41/403F02M57/02F02M57/023F02M59/366F02M59/466F02B3/06F02D41/402Y02T10/44
    • A solenoid valve unit is provided in the middle of fuel supply path that leads to a compression space in an injection pump main body, and the fuel injection quantity is adjusted through the open and close control of the solenoid valve unit. In this fuel injection system, the plug valve is moved until it is seated on the valve seat during the preliminary injection that is performed prior to the main injection. An arrangement for leaking the fuel from within the compression space is provided in the injection pump main body and the time period during which the fuel in the compression space is leaked via the arrangement for leaking and the time period during which the fuel supply path is restricted with the plug valve being seated on the valve seat are combined to stabilize the movement of the plug valve. Consequently, an optimal small quantity is achieved for the preliminary injection that is nearly constant regardless of the rate of rotation of the engine. Also, if a drive pulse that closes the fuel supply path over the period during which the fuel is leaked is supplied to the solenoid valve unit, the solenoid valve unit needs to be operated only once and stable injection characteristics are achieved from the pilot injection through the main injection.
    • 在燃料供给路径的中间设置有电磁阀单元,其通向喷射泵主体中的压缩空间,并且通过电磁阀单元的打开和关闭控制来调节燃料喷射量。 在该燃料喷射系统中,在主喷射之前执行的预喷射期间,旋塞阀被移动直到其被安置在阀座上。 在喷射泵主体中设置有用于从压缩空间泄漏燃料的装置,以及经由泄漏装置和压缩空间中的燃料泄漏燃料供给路径被限制的时间段 将旋塞阀置于阀座上的组合以稳定旋塞阀的运动。 因此,无论发动机的旋转速度如何,初始喷射的最佳量都是几乎恒定的。 此外,如果在燃料泄漏期间关闭燃料供给路径的驱动脉冲被供给到电磁阀单元,则电磁阀单元仅需要操作一次,并且从先导喷射通过 主要注射。