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    • 31. 发明申请
    • LIGHT BEAM SCANNING DEVICE
    • 光束扫描装置
    • US20120008185A1
    • 2012-01-12
    • US13147500
    • 2010-02-15
    • Jaehyuk ParkJun Akedo
    • Jaehyuk ParkJun Akedo
    • G02B26/10
    • G02B26/101G02B26/0841
    • An optical scanning device, having: a substrate main body; two cantilever beams protruded from the respective side portion of one side of the main body; a mirror supported by torsion bars from the respective side, between the beams; a drive source to causes the main body to vibrate; and a light source to project light onto the mirror, wherein a fixed end of the main body is fixed to a supporting member, on the opposite side from the mirror side, wherein the drive source is provided on a part of the main body, and wherein the mirror resonantly vibrates according to vibration applied to the substrate by the drive source, thereby to change a direction of reflection light of the light projected onto the mirror according to the vibration of the mirror, characterized in that a plurality of holes are provided in the main body and the beams.
    • 一种光学扫描装置,具有:基板主体; 两个悬臂梁从主体一侧的相应侧部突出; 梁之间的相对侧的扭杆支撑的反射镜; 使主体振动的驱动源; 以及用于将光投射到反射镜上的光源,其中主体的固定端在与反射镜侧相反的一侧固定到支撑构件,其中驱动源设置在主体的一部分上,以及 其中所述反射镜根据通过所述驱动源施加到所述基板的振动而共振地振动,从而根据所述反射镜的振动改变投影到所述反射镜上的光的反射光的方向,其特征在于,设置多个孔 主体和梁。
    • 32. 发明申请
    • METHOD OF ADJUSTING A RESONANCE FREQUENCY OF AN OPTICAL SCANNING DEVICE
    • 调整光学扫描装置的谐振频率的方法
    • US20110002022A1
    • 2011-01-06
    • US12827849
    • 2010-06-30
    • Jaehyuk PARKJun Akedo
    • Jaehyuk PARKJun Akedo
    • G02B26/10
    • G02B26/105G02B26/0858
    • A method of adjusting a resonance frequency in an optical scanning device, containing: providing the optical scanning device, having: a substrate composed of a substrate main body and two cantilever beam portions; a drive source; a mirror portion; and a supporting component for fixing the substrate main body at a fixed end; and reducing an area of the substrate which protrudes from the fixed end to an outside of the supporting component, thereby to increase the resonance frequency; or alternatively, increasing the area of the substrate which protrudes from the fixed end to the outside of the supporting component, thereby to reduce the resonance frequency.
    • 一种调整光学扫描装置中的共振频率的方法,包括:提供所述光学扫描装置,其具有:由基板主体和两个悬臂梁部分构成的基板; 驱动源 镜子部分; 以及用于将基板主体固定在固定端的支撑部件; 并且减小从固定端突出到支撑部件的外部的基板的面积,从而增加共振频率; 或者替代地,增加从固定端突出到支撑部件的外部的基板的面积,从而降低谐振频率。
    • 35. 发明申请
    • OPTICAL SCANNING DEVICE
    • 光学扫描装置
    • US20100014142A1
    • 2010-01-21
    • US12443221
    • 2007-09-26
    • Jun AkedoJaehyuk ParkHarumichi Sato
    • Jun AkedoJaehyuk ParkHarumichi Sato
    • G02B26/10
    • B81B3/0072B81B2201/042G02B26/0841G02B26/105
    • An optical scanning device of the invention includes: a substrate; a torsion bar portion which is connected to the substrate; a mirror portion which is supported by the torsion bar portion; a drive source which causes the substrate to oscillate; and a light source which projects light onto the mirror portion, where the mirror portion resonates and vibrates in accordance with a vibration imparted to the substrate by the drive source, a direction of reflection light from the light projected onto the mirror portion from the light source changes in accordance with the vibration of the mirror portion, the drive source is provided on a portion of the substrate at a distance from a connected portion where the substrate is connected to the torsion bar portion, and a substrate shape control device which controls the shape of the substrate itself is provided on the substrate.
    • 本发明的光学扫描装置包括:基板; 与所述基板连接的扭杆部; 由所述扭杆部支撑的镜部; 使基板振荡的驱动源; 以及光源,其将光投射到反射镜部分上,其中反射镜部分根据由驱动源施加到基板的振动而谐振和振动,从光源投射到反射镜部分的光的反射光的方向 根据镜部的振动而发生变化,驱动源设置在与基板连接到扭杆部的连接部分一定距离的基板的一部分上,以及基板形状控制装置,其控制形状 基板本身设置在基板上。
    • 37. 发明授权
    • Apparatus for forming a composite structure body
    • 用于形成复合结构体的装置
    • US07632353B2
    • 2009-12-15
    • US11311738
    • 2005-12-19
    • Hironori HatonoMasakatsu KiyoharaKatsuhiko MoriTatsuro YokoyamaAtsushi YoshidaTomokazu ItoJun Akedo
    • Hironori HatonoMasakatsu KiyoharaKatsuhiko MoriTatsuro YokoyamaAtsushi YoshidaTomokazu ItoJun Akedo
    • B05B7/14
    • C23C30/00C23C24/04Y10T428/249967Y10T428/25Y10T428/26Y10T428/265
    • An apparatus for manufacturing a composite structure body is provided which forms structure body having the constitution in which the crystals of more than one type of brittle material are dispersed and having novel properties without involving a heating/sintering process. The apparatus includes an aerosol generator configured to generate an aerosol. The aerosol is generated through dispersing fine particles of more than one type of brittle material, or dispersing composite fine particles, in a gas. The apparatus also includes a nozzle configured to spray the aerosol, a classifier configured to classify the brittle material fine particles in the aerosol, and a disintegrating machine for disintegrating agglomerations of the brittle material fine particles in the aerosol. The composite structure body is manufactured in reduced pressure conditions by bombarding a substrate with the aerosol at a high velocity, whereby at least one of crystals and microstructures of said brittle materials are dispersed.
    • 提供了一种复合结构体的制造装置,其形成具有分散了多于一种类型的脆性材料的晶体并且具有新特性而不涉及加热/烧结工艺的结构的结构体。 该装置包括配置成产生气溶胶的气溶胶发生器。 通过将多种类型的脆性材料的细颗粒分散在气体中,或将复合细颗粒分散在气体中而产生气溶胶。 该装置还包括喷雾器,其被配置为喷射气溶胶,分级器,其被配置为将脆性材料细颗粒分类在气溶胶中;以及分解机,用于分解气溶胶中脆性材料微粒的附聚物。 复合结构体通过用气溶胶以高速轰击基材而在减压条件下制造,由此所述脆性材料的晶体和微结构中的至少一种分散。