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    • 1. 发明专利
    • X-ray collimator device
    • X-RAY COLLIMATOR设备
    • JP2007117677A
    • 2007-05-17
    • JP2005317670
    • 2005-10-31
    • Toshiba CorpToshiba Medical Systems Corp東芝メディカルシステムズ株式会社株式会社東芝
    • KITAMURA MASARUSAKUTA SHIGERUKISHI TSUGIOSAITO YASUOIGARASHI KENJIWAKABAYASHI AKIJITSUJITA KAZUHIKO
    • A61B6/06A61B6/03G01T7/00
    • PROBLEM TO BE SOLVED: To provide an X-ray collimator device which prevents a collimator single plate from deforming even if the collimator single plate is elongated in a slice direction to hold collimator precision.
      SOLUTION: The X-ray collimator device includes collimator supports 21 and 22 provided in the slice direction in parallel to extend it in a channel direction C, the back side support plate 25 arranged on an X-ray emitting side relative to the collimator supports 21 and 22, the front support plate 26 arranged on an X-ray incident side relative to the collimator supports 21 and 22, the collimator single plate 30 arranged between the collimator supports 21 and 22, and the groove parts 21a, 23a and 25a provided on the collimator supports 21 and 22 and the back side support plate 25 to hold the collimator single plate 30.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:即使准直器单板在切片方向上伸长以保持准直仪精度,也提供一种防止准直器单板变形的X射线准直器装置。 解决方案:X射线准直器装置包括平行地设置在切片方向上的准直器支撑件21和22,以在通道方向C上延伸,后侧支撑板25布置在X射线发射侧相对于 准直器支撑件21和22,相对于准直器支撑件21和22布置在X射线入射侧的前支撑板26,布置在准直器支撑件21和22之间的准直器单板30以及槽部21a,23a和 设置在准直器支撑件21和22以及后侧支撑板25上以保持准直器单板30.版权所有:(C)2007,JPO&INPIT
    • 7. 发明专利
    • PICKUP MOVING MECHANISM FOR DISK REPRODUCING DEVICE
    • JPS6386166A
    • 1988-04-16
    • JP23179486
    • 1986-09-30
    • TOSHIBA CORP
    • KISHI TSUGIOFUKUMITSU AKIRA
    • G11B21/02G11B7/085
    • PURPOSE:To smoothly move a pickup and to miniaturize a device by providing a rotation driving body on a supporting body and providing a driving receiving body receiving a rotational force of the rotation driving body on a guide body. CONSTITUTION:In a guide driving part 31, a gear 33 of a large diameter, a roughly recessed guide part 34, and a gear 35 of a small diameter are formed coaxially and as one body. In this driving part 31, the guide part 34 is opposed to the side face of the guide body 36 which is installed to a main chassis 28 in parallel with a guide body 29, and brought into contact with a cover 37 made of a synthetic resin which is attached to the side face. Therefore, as for a supporting body 24, guide rollers 25, 26 are supported by a guide body 29, and the guide part 34 of the guide driving part 31 is supported by the guide body 36. In this way, it is freely slidable in the direction as indicated with arrows C, D. To the cover 37 of the guide body 36, a rack 38 is attached along the longitudinal direction of the guide body 36, and the rack 38 is engaged to a gear 35 of the guide driving part 31. Also, the gear 33 of the guide driving part 31 is engaged to a gear 39 which is supported so as to be freely rotatable by the supporting body 24 and connected so as to be rotatable to a ;pickup feeding motor 42.
    • 9. 发明专利
    • Electron beam exposure device
    • 电子束曝光装置
    • JPS59124131A
    • 1984-07-18
    • JP23456682
    • 1982-12-28
    • Toshiba Corp
    • KISHI TSUGIO
    • H01L21/30H01J37/34H01L21/027
    • H01J37/3435
    • PURPOSE:To contrive to enhance precision of a fixing position for exposure by a method wherein a cassette is pressed against a stopper on a base according to elasticity of an elastic member. CONSTITUTION:When a lever 29 is pushed out, pressing of the protrusions 36a of a pair of pawls 36a against pins is released, the rollers 39 of the pawls are positioned in the recesses 38b of cams 38, and a cassette 4 is advanced being held. The cassette 4 is conveyed from an acceptor 27 to a base 6, and the tip comes in contact with a stopper 7. The lever 29 advances moreover, the rollers 39 are spread resisting against a spring 41 at the slant parts of the cams 38 making the rollers 40 of the pawls 36 to come in contact with the rear edge of the cassette 4 as it is, and the rollers 40 approach mutually. The cassette 4 is pressed against the stopper 7 by the prescribed pressure determined according to the spring 41 and inclinations of the slant parts of the cams 38. Accordingly, the tip side of the cassette 4 comes in contact with the stopper 7 uniformly, and when the cassette is clamped 8 on the base 6 in this condition, the cassette can be fixed with extremely high precision. When the lever 29 is advanced further, the recesses 38c of the cams and the rollers 39 are engaged together, and the rollers 40 approach to separate from the pawls 4a of the cassette.
    • 目的:通过根据弹性构件的弹性将盒子按压在基座上的止动件的方法来提高曝光固定位置的精度。 构成:当杆29被推出时,一对棘爪36a的突起36a抵靠销被释放,棘爪的辊39定位在凸轮38的凹部38b中,并且盒4被推进而保持 。 盒4从受体27输送到基座6,并且尖端与止动件7接触。此外,杠杆29进一步前进,辊39在凸轮38的倾斜部分处抵抗弹簧41展开,从而使 棘爪36的辊40原样与盒4的后边缘接触,并且辊40相互接近。 盒4按照弹簧41确定的规定压力和凸轮38的倾斜部分的倾斜度被压靠在止动器7上。因此,盒4的前端侧与挡块7均匀地接触,并且当 在这种情况下,盒子8被夹在基座6上,盒子可以以非常高的精度固定。 当杆29进一步前进时,凸轮的凹部38c和辊39接合在一起,并且辊40接近与盒的爪4a分开。
    • 10. 发明专利
    • MOUNTING DEVICE
    • JPH1140614A
    • 1999-02-12
    • JP19404597
    • 1997-07-18
    • TOSHIBA CORP
    • KISHI TSUGIO
    • H01L21/60
    • PROBLEM TO BE SOLVED: To prevent the occurrence of air fluctuation at an image pick-up region without supplying cooling air to the image pick-up region with the use of a pick-up means, by providing a heat intercepting member between a predetermined region including a recognition region of at least one of a first and a second pick-up means, and bonding tools. SOLUTION: An IC chip 6 having a set position is picked up by a chip pick-up camera 21 serving as a first pick-up means. Further, a tape camera 26 serving as a second pick-up means for picking up a carrier tape 1 is arranged. The chip pick-up camera 21 is provided with a first heat intercepting member 31 so as to cover a portion thereof which faces bonding tools 25a, 25b. More specifically, at least a recognition region picked up by the chip pick-up camera 21 and the bonding tools 25a, 25b, are, thereby, thermally intercepted from each other. The tape camera 26 is covered with a second heat intercepting member 33. Thereby, at least a recognition region picked up by the tape camera 26 and the bonding tools 25a, 25b are thermally intercepted from each other.