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    • 6. 发明授权
    • Array refracting element and exposure device
    • 阵列折射元件和曝光装置
    • US07196848B2
    • 2007-03-27
    • US10263697
    • 2002-10-04
    • Ichirou Miyagawa
    • Ichirou Miyagawa
    • G02B27/10G02B27/14
    • H04N1/0426G02B6/4249G02B2006/0098H04N1/0402H04N1/0429H04N1/0432H04N1/0435H04N1/0437H04N1/044H04N1/12H04N1/1911
    • An array refracting element for dividing laser beams in a sub-scanning direction, which is formed by linearly disposing a pair of refracting members, each having a unit surface shape for dividing one incident laser beam into two and emitting the divided laser beams, so that directions in which the laser beams are divided are coincident with each other and so that the refracting members locate along the division direction, is disposed on an optical path of the laser beams emitted from plural semiconductor lasers, and between a laser-beam outgoing opening of a fiber array section and a recording film. As a result, an array refracting element and an exposure device, which can improve quality of a recording image at an exposure recording apparatus at a low cost, can be obtained.
    • 一种用于沿副扫描方向分割激光束的阵列折射元件,其通过线性地布置一对折射构件而形成,所述折射构件具有用于将一个入射激光束分成两个并且发射分割的激光束的单位表面形状,使得 激光束被分割的方向彼此一致,使得折射构件沿着分割方向定位,设置在从多个半导体激光器发射的激光束的光路上,并且在激光束的激光束出射开口 光纤阵列部分和记录膜。 结果,可以获得能够以低成本提高曝光记录装置的记录图像质量的阵列折射元件和曝光装置。
    • 7. 发明授权
    • Method and apparatus for employing a light source and heterodyne
interferometer for obtaining information representing the
microstructure of a medium at various depths therein
    • 用于采用光源和外差干涉仪来获得表示其中各种深度的介质的微结构的信息的方法和装置
    • US5555087A
    • 1996-09-10
    • US260223
    • 1994-06-14
    • Ichirou MiyagawaMasahiro Toida
    • Ichirou MiyagawaMasahiro Toida
    • G01N21/27G01N21/17G01N21/47G01B9/02G01B11/02
    • G01J3/453G01N21/4795
    • A low coherence light beam is split into first and second light beams, and the frequency of the first light beam is shifted. The first and second light beams are then combined with each other at a position at which the optical path difference between the two light beams is larger than the coherence length of the low coherence light beam. The combined light beam is guided to a position in the vicinity of a medium having light scattering properties and split into a third light beam, which travels reversely to the direction of travel of the combined light beam, and a fourth light beam, which is irradiated to the medium. A light beam scattered backwardly from a predetermined depth in the medium is caused to interfere with the third light beam, and the intensity of the resulting interference light beam is detected. Optical heterodyne detection of the intensity of the backward scattered light beam is carried out in accordance with the detected intensity of the interference light beam, and information representing the microstructure of the predetermined deed portion in the medium is thereby obtained.
    • 低相干光束被分割成第一和第二光束,并且第一光束的频率偏移。 然后,第一和第二光束在两个光束之间的光程差大于低相干光束的相干长度的位置彼此组合。 组合的光束被引导到具有光散射特性的介质附近的位置,并分裂成与组合光束的行进方向相反行进的第三光束和被照射的第四光束 到中等 导致从介质中的预定深度向后散射的光束与第三光束干涉,并且检测所得到的干涉光束的强度。 根据检测到的干涉光束的强度进行反向散射光束的强度的光外差检测,从而获得表示介质中的规定部位的微观结构的信息。
    • 8. 发明授权
    • Composite light source unit and scanning device
    • 复合光源单元和扫描装置
    • US5083023A
    • 1992-01-21
    • US408005
    • 1989-09-15
    • Ichirou Miyagawa
    • Ichirou Miyagawa
    • G02B3/00G21K1/16H04N1/053H04N1/113
    • G02B27/0905G21K1/16H04N1/053G02B3/0062G02B3/0075H04N1/1135H04N2201/0471
    • A composite light source unit including a plurality of semiconductor lasers disposed in a housing, a plurality of collimator optical systems for converting the laser beams to parallel laser beams, respectively, and a combining optical system for combining all the laser beams except one as a group of laser beams having close, parallel optical axes, respectively, extending in a direction different from the direction of said one laser beam, whereby said one laser beam and the group of laser beams are emitted from the housing in different directions. Alternatively, the combining optical system combines the laser beams as a group of laser beams having close, parallel optical axes, respectively, and emits the group of laser beams out of the housing, one of the laser beams emitted out of the housing having a different optical property than that of the other laser beams. Said one laser beam can easily be separated from the other laser beams, and will be used as a synchronizing beam in a scanning device.
    • 一种复合光源单元,包括设置在壳体中的多个半导体激光器,分别将激光束转换为平行激光束的多个准直器光学系统和用于将除了一个组之外的所有激光束组合的组合光学系统 分别具有沿与所述一个激光束的方向不同的方向延伸的近似的平行光轴的激光束,由此所述一个激光束和一组激光束从壳体沿不同的方向发射。 或者,组合光学系统将激光束组合为具有近似平行光轴的一组激光束,并将该组激光束发射出壳体,从外壳中发射的激光束之一具有不同的 光学性能优于其他激光束。 所述一个激光束可以容易地与其他激光束分离,并且将在扫描装置中用作同步光束。
    • 9. 发明授权
    • Radiation image recording and read-out apparatus
    • 辐射图像记录和读出装置
    • US5081355A
    • 1992-01-14
    • US599164
    • 1990-10-17
    • Ichirou MiyagawaToshitaka Agano
    • Ichirou MiyagawaToshitaka Agano
    • A61B6/00G01T1/29G03B42/02H04N5/30H04N5/32
    • G03B42/02G01T1/2012
    • A radiation image recording and read-out apparatus comprises a belt feed device for positioning and moving a flexible, endless stimulable phosphor belt in its longitudinal direction, so that two desired portions of the stimulable phosphor belt, which have support sides that face each other, may be positioned for exposure to radiation in such a way that the support sides are in close, face-to-face contact with each other or are approximately parallel to and slightly spaced apart from each other. In an image recording section, radiation carrying image information is irradiated onto two portions of the stimulable phosphor belt, which have support sides that face each other and which have been positioned so as to be exposed to the radiation, and radiation images are thereby stored on the two portions. In a single image read-out section, the radiation images are read out from the two portions. The two portions are then erased in an erasing section. In an operating section, two image signals detected from the two portions in the image read-out section are added together or subtracted from each other.
    • 辐射图像记录和读出装置包括一个用于在其纵向方向上定位和移动柔性的,无限可激励的磷光体带的带馈送装置,使得具有相互面对的支撑侧的可刺激的磷光体带的两个期望部分, 可以被定位成以这样的方式暴露于辐射,使得支撑侧彼此紧密地面对面地接触或者彼此大致平行并且彼此间隔开。 在图像记录部分中,将辐射携带图像信息照射到可刺激的磷光体带的两个部分上,该两个部分具有彼此相对的并且被定位成暴露于辐射的支撑侧,并且由此将辐射图像存储在 两部分。 在单个图像读出部分中,从两个部分读出辐射图像。 然后在擦除部分中擦除两个部分。 在操作部分中,将从图像读出部分中的两个部分检测到的两个图像信号相加或相减。
    • 10. 发明授权
    • Beam-combining laser beam source device
    • 光束组合激光束源装置
    • US4976527A
    • 1990-12-11
    • US397814
    • 1989-08-24
    • Kazuo HorikawaKouichi OkadaIchirou Miyagawa
    • Kazuo HorikawaKouichi OkadaIchirou Miyagawa
    • H01S3/10G02B27/14H01S3/00H01S3/101H01S3/23H01S5/00H01S5/40
    • G02B19/0057G02B19/0028G02B27/0977G02B27/143H01S3/005H01S5/4025H01S5/005H01S5/4012
    • A beam-combining laser beam source device comprising an airtight housing and a laser beam source unit housed in the housing. The laser beam source unit comprises laser beam sources and collimator optical systems respectiely positioned in optical paths of laser beams, which are radiated from the laser beam sources, in order to collimate the laser beams. Optical path adjusting elements are respectively positioned in the optical paths of the laser beams in order to radiate the laser beams along optical paths parallel and close to one another. The laser beam sources, the collimator optical systems, and the optical path adjusting elements are supported on a single support. The housing is provided with a temperature sensor, which detects the temperature in the housing, and temperature adjusting elements which heat or chill the housing on the basis of control of the temperature sensor so that the temperature in the housing is kept constant.
    • 一种束组合激光束源装置,包括一个气密的壳体和一个容纳在壳体中的激光束源单元。 激光束源单元包括激光束源和准直器光学系统,其被定位在从激光束源辐射的激光束的光路中,以便准直激光束。 光路调整元件分别位于激光束的光路中,以沿着光路平行并彼此靠近地辐射激光束。 激光束源,准直器光学系统和光路调节元件被支撑在单个支撑件上。 壳体设置有温度传感器,其检测壳体中的温度,以及温度调节元件,其基于温度传感器的控制来加热或冷却壳体,使得壳体中的温度保持恒定。