会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Wavelength conversion apparatus
    • 波长转换装置
    • US20050068998A1
    • 2005-03-31
    • US10940817
    • 2004-09-15
    • Tomotaka KatsuraSusumu KonnoTetsuo KojimaJunichi Nishimae
    • Tomotaka KatsuraSusumu KonnoTetsuo KojimaJunichi Nishimae
    • G02F1/37G02F1/015G02F2/02H01L21/02H01S3/00H01S3/10H01S3/109H01S3/16
    • H01S3/109G02F2001/3503G02F2001/3505G02F2001/354H01S3/005H01S3/1611H01S3/1643
    • A wavelength conversion apparatus in which output direction of a wavelength-converted laser beam, having a wavelength converted by a nonlinear optical crystal and emitted through an output-window, can be brought close to the direction of optical axis of the laser beam passing through the nonlinear optical crystal. In addition, axial deviation of the wavelength-converted laser beam converted by the nonlinear optical crystal and emitted through an output-window, can be reduced when the position of the nonlinear optical crystal is moved. The output facet of the nonlinear optical crystal is inclined at Brewster's angle with respect to the wavelength-converted laser beam. An output-window of a case containing the nonlinear optical crystal has a prism form in which the distance between a laser beam input facet and a laser beam output facet of the output-window is reduced along a direction in which the wavelength-converted laser beam, emitted from the nonlinear optical crystal, inclines.
    • 一种波长转换装置,其中具有由非线性光学晶体转换并通过输出窗口发射的波长的波长转换激光束的输出方向可以靠近通过该激光束的激光束的光轴方向 非线性光学晶体。 此外,当非线性光学晶体的位置移动时,可以减少由非线性光学晶体转换并通过输出窗口发射的波长转换的激光束的轴向偏移。 非线性光学晶体的输出面相对于波长转换的激光束以布鲁斯特角倾斜。 包含非线性光学晶体的壳体的输出窗口具有棱镜形式,其中激光束输入面与输出窗口的激光束输出面之间的距离沿着波长转换激光束 ,从非线性光学晶体发射,倾斜。
    • 4. 发明授权
    • Wavelength conversion apparatus
    • 波长转换装置
    • US07170911B2
    • 2007-01-30
    • US10940817
    • 2004-09-15
    • Tomotaka KatsuraSusumu KonnoTetsuo KojimaJunichi Nishimae
    • Tomotaka KatsuraSusumu KonnoTetsuo KojimaJunichi Nishimae
    • H01S3/109
    • H01S3/109G02F2001/3503G02F2001/3505G02F2001/354H01S3/005H01S3/1611H01S3/1643
    • A wavelength conversion apparatus in which output direction of a wavelength-converted laser beam, having a wavelength converted by a nonlinear optical crystal and emitted through an output-window, can be brought close to the direction of optical axis of the laser beam passing through the nonlinear optical crystal. In addition, axial deviation of the wavelength-converted laser beam converted by the nonlinear optical crystal and emitted through an output-window, can be reduced when the position of the nonlinear optical crystal is moved. The output facet of the nonlinear optical crystal is inclined at Brewster's angle with respect to the wavelength-converted laser beam. An output-window of a case containing the nonlinear optical crystal has a prism form in which the distance between a laser beam input facet and a laser beam output facet of the output-window is reduced along a direction in which the wavelength-converted laser beam, emitted from the nonlinear optical crystal, inclines.
    • 一种波长转换装置,其中具有由非线性光学晶体转换并通过输出窗口发射的波长的波长转换激光束的输出方向可以靠近通过该激光束的激光束的光轴方向 非线性光学晶体。 此外,当非线性光学晶体的位置移动时,可以减少由非线性光学晶体转换并通过输出窗口发射的波长转换的激光束的轴向偏移。 非线性光学晶体的输出面相对于波长转换的激光束以布鲁斯特角倾斜。 包含非线性光学晶体的壳体的输出窗口具有棱镜形式,其中激光束输入面与输出窗口的激光束输出面之间的距离沿着波长转换激光束 ,从非线性光学晶体发射,倾斜。
    • 5. 发明授权
    • Image-scanning device
    • 图像扫描装置
    • US08482813B2
    • 2013-07-09
    • US12668908
    • 2008-03-26
    • Hiroyuki KawanoTatsuki OkamotoTomotaka KatsuraJunichi Nishimae
    • Hiroyuki KawanoTatsuki OkamotoTomotaka KatsuraJunichi Nishimae
    • H04N1/04
    • G03B27/50G02B3/005G02B5/10H04N1/02845H04N1/03H04N1/0305H04N1/0306H04N1/193H04N1/1934H04N1/1935
    • An image-scanning device wherein plural images of an object are picked up inverted and reduced in size by image-forming optical systems arranged to be adjacent to each other, and then restored by an image processing system. Each optical system includes a first optical element having a first focal length; an aperture member located at a focus position in a rear side of the first optical element; and a second optical element provided in a rear side of the aperture member and having a second focal length shorter than the first focal length, respectively disposed from a side of the object being picked up to a side of the image pickup device. In between optical systems, corresponding image pick up devices thereof are arranged to be adjacent to each other, the image pickup devices including a region in which the images picked up by the image pickup devices are overlapped.
    • 一种图像扫描装置,其中通过被布置为彼此相邻的图像形成光学系统来拾取物体的多个图像被反转并减小尺寸,然后由图像处理系统恢复。 每个光学系统包括具有第一焦距的第一光学元件; 位于所述第一光学元件的后侧的聚焦位置处的光阑元件; 以及第二光学元件,设置在所述光圈构件的后侧,并且具有比所述第一焦距短的第二焦距,所述第二焦距分别从被拾取的物体的一侧被提取到所述图像拾取装置的一侧。 在光学系统之间,其相应的图像拾取装置被布置为彼此相邻,图像拾取装置包括由图像拾取装置拾取的图像重叠的区域。
    • 7. 发明授权
    • Solid state laser and wavelength conversion laser
    • 固体激光和波长转换激光
    • US07936804B2
    • 2011-05-03
    • US12513176
    • 2007-12-06
    • Kuniaki IwashiroHiroyuki SuzukiTetsuo KojimaTomotaka Katsura
    • Kuniaki IwashiroHiroyuki SuzukiTetsuo KojimaTomotaka Katsura
    • H01S3/08
    • H01S3/08045G02F1/353G02F1/37G02F2001/3503G02F2001/3507G02F2001/354H01S3/08H01S3/08072
    • Two convex lenses (61, 62), each of which has a focal length “f”, and a 90 degree polarization rotator (5) are interposed between solid-state laser elements (21, 22) of a symmetrical resonator having the two solid-state laser elements (21, 22); a space between the two lenses (61, 62) is made shorter than 2f; and distances between the respective lenses (61, 62) and centers of their adjacent solid-state laser elements (21, 22) are set substantially to “f”, to thus achieve a solid-state laser capable of stably performing high power transverse single mode oscillation desirably having power of 100 W or more. There is acquired a wavelength conversion laser that is further provided with a Q switch (3) and a polarization element (4) and that causes an output fundamental wave laser beam to enter nonlinear elements (91, 92) so as to undergo wavelength conversion, thereby producing a high power harmonic laser beam having a high frequency of; desirably, about 100 kHz.
    • 在具有两个固体的对称共振器的固体激光元件(21,22)之间插入两个具有焦距“f”的凸透镜(61,62)和90度偏振旋转器(5) 状态激光元件(21,22); 使两个透镜(61,62)之间的空间短于2f; 并且各透镜(61,62)与其相邻的固体激光元件(21,22)的中心之间的距离设定为大致为“f”,从而实现能够稳定地执行大功率横向单 期望具有100W或更大的功率的模式振荡。 获得进一步设置有Q开关(3)和偏振元件(4)的波长转换激光器,并且使得输出基波激光束进入非线性元件(91,92)以进行波长转换, 从而产生具有高频率的高功率谐波激光束; 理想地,约100kHz。
    • 8. 发明申请
    • SOLID STATE LASER AND WAVELENGTH CONVERSION LASER
    • 固态激光和波长转换激光
    • US20100074296A1
    • 2010-03-25
    • US12513176
    • 2007-12-06
    • Kuniaki IwashiroHiroyuki SuzukiTetsuo KojimaTomotaka Katsura
    • Kuniaki IwashiroHiroyuki SuzukiTetsuo KojimaTomotaka Katsura
    • H01S3/08
    • H01S3/08045G02F1/353G02F1/37G02F2001/3503G02F2001/3507G02F2001/354H01S3/08H01S3/08072
    • Two convex lenses (61, 62), each of which has a focal length “f”, and a 90 degree polarization rotator (5) are interposed between solid-state laser elements (21, 22) of a symmetrical resonator having the two solid-state laser elements (21, 22); a space between the two lenses (61, 62) is made shorter than 2f; and distances between the respective lenses (61, 62) and centers of their adjacent solid-state laser elements (21, 22) are set substantially to “f”, to thus achieve a solid-state laser capable of stably performing high power transverse single mode oscillation desirably having power of 100 W or more. There is acquired a wavelength conversion laser that is further provided with a Q switch (3) and a polarization element (4) and that causes an output fundamental wave laser beam to enter nonlinear elements (91, 92) so as to undergo wavelength conversion, thereby producing a high power harmonic laser beam having a high frequency of; desirably, about 100 kHz.
    • 在具有两个固体的对称共振器的固体激光元件(21,22)之间插入两个具有焦距“f”的凸透镜(61,62)和90度偏振旋转器(5) 状态激光元件(21,22); 使两个透镜(61,62)之间的空间短于2f; 并且各透镜(61,62)与其相邻的固体激光元件(21,22)的中心之间的距离设定为大致为“f”,从而实现能够稳定地执行大功率横向单 期望具有100W或更大的功率的模式振荡。 获得进一步设置有Q开关(3)和偏振元件(4)的波长转换激光器,并且使得输出基波激光束进入非线性元件(91,92)以进行波长转换, 从而产生具有高频率的高功率谐波激光束; 理想地,约100kHz。
    • 9. 发明授权
    • Laser processing apparatus, laser processing method, and manufacturing method of photovoltaic device
    • 激光加工设备,激光加工方法以及光伏器件的制造方法
    • US08767786B2
    • 2014-07-01
    • US13140073
    • 2009-04-21
    • Tomotaka KatsuraTatsuki OkamotoKunihiko Nishimura
    • Tomotaka KatsuraTatsuki OkamotoKunihiko Nishimura
    • H01S3/04
    • B23K26/40B23K26/0853B23K26/355B23K2101/40B23K2103/50
    • To provide a conveying unit that holds a workpiece and conveys the workpiece at a constant rate in one direction, a laser oscillator that emits a pulsed laser beam, a splitter that splits a pulsed laser beam into a pattern having a predetermined geometric pitch, a first deflector that scans the split pulsed laser beam in the other direction substantially orthogonal to the one direction, a second deflector that adjusts and deflects the split pulsed laser beam deflected by the first deflector on the surface to be processed in the one direction so as to scan the resultant pulsed laser beam onto the surface to be processed at a constant rate equal to a rate at which the workpiece is conveyed, and a condenser that condenses the split pulsed laser beam deflected by the second deflector onto the surface to be processed.
    • 为了提供保持工件并以一个方向以恒定速率输送工件的输送单元,发射脉冲激光束的激光振荡器,将脉冲激光束分成具有预定几何间距的图案的分离器,第一 偏转器,其沿着与该一个方向大致正交的另一个方向扫描分离的脉冲激光束;第二偏转器,其在一个方向上调整和偏转被第一偏转器偏转的待分割脉冲激光束,以在待处理的表面上扫描 所产生的脉冲激光束以等于工件输送速率的恒定速率被加工到要处理的表面上,以及冷凝器,其将由第二偏转器偏转的分裂脉冲激光束冷凝到待处理的表面上。