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    • 6. 发明授权
    • Explosion-proof tape for cathode-ray tube and explosion-proof structure thereof
    • 用于阴极射线管的防爆胶带及其防爆结构
    • US06404121B1
    • 2002-06-11
    • US09671265
    • 2000-09-28
    • Yoichiro GotoKoichi NakamuraHiroshi YamamotoKazukuni TamakiToshio Nagata
    • Yoichiro GotoKoichi NakamuraHiroshi YamamotoKazukuni TamakiToshio Nagata
    • H01J2987
    • H01J29/87Y10T428/28
    • An explosion-proof tape is wound on an outer circumference of a panel portion of a cathode-ray tube and a metal band is shrink-fitted on the tape. The tape is composed of a support having at least a layer composed of propylene polymer with a propylene content of not less than 40 weight % or styrene polymer with a styrene content of not less than 50 weight % and an adhesive layer formed on one surface of the support in a manner so that a plurality of fibers with a softening point of not lower than 200° C. are buried in the adhesive layer in a lengthwise direction of the tape. An explosion-proof structure of a cathode-ray tube, wherein a metal band is shrink-fitted on an outer circumference of a panel portion of a cathode-ray tube, through a layer which is formed by winding such an explosion-proof tape as mentioned above, through its adhesive layer.
    • 将防爆胶带缠绕在阴极射线管的面板部分的外圆周上,并且将金属带收缩配合在带上。 胶带由具有至少一层由丙烯含量不小于40重量%的丙烯聚合物的层或苯乙烯含量不小于50重量%的苯乙烯聚合物构成的载体和在一个表面上形成的粘合剂层 以使软化点不低于200℃的多根纤维沿带的长度方向埋设在粘合剂层中的方式进行支撑。 一种阴极射线管的防爆结构,其中金属带被收缩配合在阴极射线管的面板部分的外圆周上,该层通过将这种防爆带卷绕成 通过其粘合剂层。
    • 8. 发明申请
    • BEAM IRRADIATION DEVICE
    • 光束辐射器件
    • US20110194098A1
    • 2011-08-11
    • US13012839
    • 2011-01-25
    • Yoichiro Goto
    • Yoichiro Goto
    • G01S17/08
    • G01S7/4812G01S17/08G02B26/0875G02B26/105
    • A beam irradiation device includes a laser light source which emits laser light; an actuator which causes the laser light to scan a targeted area; and a wiring portion which supplies a drive signal to the actuator. The actuator includes a first movable portion which is pivotally movable around a first axis, an optical element which is disposed on the first movable portion, and on which the laser light is entered, and a first coil which is disposed on the first movable portion. The wiring portion includes a wiring member which is electrically connected to the first coil, and has a spring property in a flexing direction. The wiring member is disposed at such a position as to urge the first movable portion toward a first scan start position around the first axis, using the spring property.
    • 光束照射装置包括发射激光的激光光源; 致动器,其使激光扫描目标区域; 以及向驱动器供给驱动信号的配线部。 致动器包括可围绕第一轴线枢转运动的第一可动部分,设置在第一可动部分上并且激光入射的光学元件,以及布置在第一可动部分上的第一线圈。 布线部包括与第一线圈电连接的布线构件,并且具有弯曲方向的弹簧特性。 布线构件设置在使用弹簧特性将第一可移动部分朝向围绕第一轴线的第一扫描开始位置推动的位置。
    • 10. 发明申请
    • INFORMATION ACQUIRING DEVICE, PROJECTION DEVICE AND OBJECT DETECTING DEVICE
    • 信息获取装置,投影装置和物体检测装置
    • US20130010292A1
    • 2013-01-10
    • US13614708
    • 2012-09-13
    • Katsumi UMEDAYoichiro Goto
    • Katsumi UMEDAYoichiro Goto
    • G02B27/32
    • G01V8/12G01S17/48
    • A projection optical system is provided with a diffractive optical element which converts laser light emitted from a laser light source into light having a dot pattern by diffraction and projects laser light onto a target area with a predetermined dot pattern. The diffractive optical element is formed in such a manner that the density of dots in a peripheral portion of a target area is set larger than the density of dots in a center portion of the target area. With this arrangement, in performing a pattern matching operation for a segment area in the vicinity of the outer side of the target area, the number of dots to be included in the segment area increases. This enhances the precision in the pattern matching operation.
    • 投影光学系统设置有衍射光学元件,其将从激光光源发射的激光转换为具有衍射的点阵图案的光,并将激光投射到具有预定点阵图案的目标区域上。 衍射光学元件以目标区域的周边部分中的点的密度被设定为大于目标区域的中心部分中的点的密度的方式形成。 由此,在对目标区域的外侧附近的分割区域进行模式匹配操作时,包含在分割区域中的点数增加。 这提高了模式匹配操作的精度。