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    • 42. 发明申请
    • WAVELENGTH CONVERTING DEVICES
    • 波长转换器件
    • US20100226002A1
    • 2010-09-09
    • US12713770
    • 2010-02-26
    • Takashi Yoshino
    • Takashi Yoshino
    • G02F1/37
    • G02F1/3775G02F2001/3548G02F2203/60
    • A harmonic wave oscillating device 1 has a supporting body 2, a wavelength converting layer 3, an upper side adhesive layer 8 adhering the wavelength converting layer 3 and the supporting body 2, an upper side substrate 5 provided on the side of an upper face of the wavelength converting layer 3, and an upper side adhesive layer 7 adhering the wavelength converting layer 3 and the upper side substrate 5. The wavelength converting layer 3 is made of a ferroelectric single crystal and has a channel type optical waveguide 10 with a periodic polarization inversion structure 11 formed therein. The wavelength converting layer 3 has a width “w” of 1.5 mm or smaller viewed in the direction “A” perpendicular to light propagating in the optical waveguide. At least one of the supporting body 2 and the upper side substrate 5 has a volume resistivity lower than that of the ferroelectric single crystal.
    • 谐波振荡装置1具有支撑体2,波长转换层3,粘附有波长转换层3和支撑体2的上侧粘合层8,设置在上侧面的上侧基板5 波长转换层3和粘合波长转换层3和上侧基板5的上侧粘合层7.波长转换层3由铁电单晶制成,具有周期性极化的通道型光波导10 其中形成反转结构11。 从垂直于在光波导中传播的光的方向“A”看,波长转换层3具有1.5mm或更小的宽度“w”。 支撑体2和上侧基板5中的至少一个具有低于铁电单晶的体积电阻率的体积电阻率。
    • 43. 发明授权
    • Wavelength conversion devices
    • 波长转换器件
    • US07710638B2
    • 2010-05-04
    • US12034820
    • 2008-02-21
    • Takashi Yoshino
    • Takashi Yoshino
    • G02F2/02G02F1/35G02B6/10
    • G02F1/353G02F2201/063G02F2202/28G02F2203/21
    • A wavelength conversion device has a supporting substrate, and a wavelength conversion element provided on the supporting substrate, with separate portions provided on both sides of the wavelength conversion element. The separate portions are separated from the wavelength conversion element by an adhesive layer that bonds the supporting substrate and the wavelength conversion element while also bonding the supporting substrate with the separate portions. The element and separate portions are made of ferroelectric materials, respectively. The wavelength conversion element has a ridge optical waveguide, with grooves provided on each or both sides of the ridge optical waveguide and extended portions provided on the outside of each of the grooves.
    • 波长转换装置具有支撑基板和设置在支撑基板上的波长转换元件,其中分离部分设置在波长转换元件的两侧。 分离的部分通过粘合层与波长转换元件分离,所述粘合剂层将支撑衬底和波长转换元件接合,同时还将支撑衬底与分离部分接合。 元件和分离部分分别由铁电材料制成。 波长转换元件具有棱脊光波导,在棱脊光波导的每一侧或两侧设置有槽,并且设置在每个槽的外侧的延伸部。
    • 47. 发明授权
    • Bonding structures for optical members
    • 光学元件的结合结构
    • US06640032B2
    • 2003-10-28
    • US09961786
    • 2001-09-24
    • Jungo KondoTetsuya EjiriTakashi Yoshino
    • Jungo KondoTetsuya EjiriTakashi Yoshino
    • G02B626
    • G02B6/4239G02B6/30G02B6/423G02B6/4234H01L2224/26175H01L2224/45144H01L2924/00
    • An optical member-bonding structure includes a first optical component, a second optical component, and an integral substrate having a mounting face on which the first and second optical components are mounted, at least the first optical member being bonded to the integral substrate, wherein a bonding face of the first optical member is bonded to the mounting face of the integral substrate with a cured and shrunk optical adhesive in such a state that an optical axis of the first optical member is aligned with that of the second optical member at a precision of not more than 1 &mgr;m, a groove is formed in a such bonding region of that mounting face of the integral substrate as being bonded with the first optical member, and at least part of the optical adhesive is filled into the groove.
    • 光学构件接合结构包括第一光学部件,第二光学部件和具有安装有第一和第二光学部件的安装面的一体基板,至少第一光学部件被接合到一体基板,其中, 在第一光学构件的光轴以与第二光学构件的光轴精度对准的状态下,第一光学构件的接合面用固化和收缩的光学粘合剂粘合到整体衬底的安装面 在不超过1um的情况下,在与第一光学构件接合的一体基板的该安装面的接合区域中形成凹槽,并且至少一部分光学粘合剂被填充到凹槽中。
    • 48. 发明授权
    • Masking film roll for use in painting, method for producing it, and
tubular film roll from which it is produced
    • 用于涂装的掩模膜卷,其制造方法和从其制备的管状膜卷
    • US6124018A
    • 2000-09-26
    • US955492
    • 1997-10-22
    • Takashi Yoshino
    • Takashi Yoshino
    • B05B15/04B05D1/32B32B1/08B32B3/04
    • B05B15/0456Y10S206/813Y10S428/906Y10T156/1008Y10T156/1026Y10T156/1067Y10T428/2419Y10T428/24198Y10T428/24777Y10T428/24793
    • The invention provides an on-line continuous method for producing a masking film roll to be used in painting, comprising corona-discharging the inner surface of a tubular film of a polyolefinic resin, cutting the tubular film open, folding the film in the lengthwise direction in a particular manner, partly attaching an adhesive tape to the film along its lengthwise one edge in such a manner that the adhesive surface of the tape is made to face the corona-discharged surface of the film and that the thus-attached tape is left to have a non-attached part in its lengthwise direction, and winding up the film around a tubular core to be a roll, provides the masking film roll as produced by the method in which the adhesive surface of the adhesive tape attached to thereto faces opposite to the non-corona-discharged surface of the uppermost layer of the folded film, and provides a tubular film of a polyolefinic resin from which the masking film of the invention is produced and of which the inner surface has been corona-discharged.
    • 本发明提供一种用于制造用于涂装的掩模膜卷的在线连续方法,包括使聚烯烃树脂的管状膜的内表面电晕放电,切割管状膜,将膜沿长度方向折叠 以特定方式,沿着其纵向一个边缘部分地将粘合带附着到膜上,使得带的粘合剂表面面向电晕放电的膜的表面,并且这样附着的带被留下 在其长度方向上具有非附着部分,并且将膜围绕管状芯卷绕成卷,提供掩模膜卷,其通过其中附接到其上的粘合剂表面相对的方法产生 到折叠膜的最上层的非电晕放电表面,并且提供一种聚烯烃树脂的管状膜,从该薄膜制备本发明的掩模膜,并且其中的内层 r表面已经电晕放电。