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
    • 31. 发明授权
    • Laser resonator
    • 激光谐振器
    • US06853670B2
    • 2005-02-08
    • US10329471
    • 2002-12-27
    • Takayuki YanagisawaYoshihito Hirano
    • Takayuki YanagisawaYoshihito Hirano
    • H01S3/08
    • H01S3/08045H01S3/08H01S3/0805H01S3/08059H01S3/08072
    • Heretofore, if the beam size of the resonance mode is made small in a long resonator length, there arises a problem that the operation of the laser resonator becomes easy to be unstable and hence the adjustment thereof becomes difficult. A laser resonance includes: a laser material; a telescope for magnifying a laser beam which has been made incident from the laser material and for reducing a laser beam which has been made incident from the side opposite thereto; a flat reflecting mirror for reflecting the laser beam which has been made incident from said telescope; a telescope for magnifying the laser beam which has been reflected by the flat reflecting mirror to be reduced by the telescope and to be amplified by the laser material to be made incident thereto; and a flat reflecting mirror for reflecting the laser beam which has been made incident from the telescope. The telescope having suitable magnification is selected for the resonator length, whereby the beam size of the resonance mode at the center of the resonator can be arbitrarily adjusted and the stable resonator which has the small beam size with the long resonator length can be constructed.
    • 迄今为止,如果谐振模式的光束尺寸在长的谐振器长度上变小,则出现激光谐振器的操作变得容易不稳定并因此难以进行调整的问题。 激光共振包括:激光材料; 用于放大从激光材料入射的激光束并用于减少从其相对侧入射的激光束的望远镜; 用于反射从所述望远镜入射的激光束的平面反射镜; 用于放大由平面反射镜反射的激光束的望远镜,由望远镜缩小并被要被入射的激光材料放大; 以及用于反射从望远镜入射的激光束的平面反射镜。 对于谐振器长度选择具有合适放大率的望远镜,由此可以任意调整谐振器中心处的谐振模式的波束尺寸,并且可以构造具有长谐振器长度的具有小波束尺寸的稳定谐振器。
    • 35. 发明授权
    • Coherent laser radar device
    • 相干激光雷达装置
    • US06765654B2
    • 2004-07-20
    • US10296043
    • 2002-11-21
    • Kimio AsakaYoshihito HiranoTakayuki Yanagisawa
    • Kimio AsakaYoshihito HiranoTakayuki Yanagisawa
    • G01C308
    • G01S17/58G01S7/497G01S17/10
    • An object of the invention is to obtain a coherent laser radar device that provides one system of a photo detector and eliminates a blind zone, including a pulsed laser that oscillates at a frequency which is identical with or close to an output light of a local light source as a single frequency; a transmission/reception optical system that irradiates a pulsed laser beam from the pulsed laser toward a target as a transmission light and receives a scattered light from the target as a reception light; a light coupling means that couples the output light from the local light source and the reception light; a photo detecting portion that conducts light coherent detection on a coupled light; and a signal processing device that calculates a speed and a distance of a target in accordance with an output of the detection, in which the photo detecting portion comprises: a photo detecting element that conducts the light coherent detection; a microwave switch that changes over a propagation path of an output from the photo detecting element; a microwave amplifier; and a switch control means that changes over the microwave switch so as to transmit a signal before a reference time as a monitor signal and transmit a signal after the reference time as a reception signal with a time at which the pulse light from the pulsed laser has completely passed through the transmission/reception optical system as the reference time.
    • 本发明的目的是获得一种相干激光雷达装置,其提供光检测器的一个系统并消除盲区,包括以与局部光的输出光相同或接近的频率振荡的脉冲激光 源为单频; 发送/接收光学系统,其将来自脉冲激光的脉冲激光束照射到作为透射光的目标,并且接收来自目标的散射光作为接收光; 光耦合装置,其耦合来自本地光源的输出光和接收光; 在耦合光上进行光相干检测的光检测部; 以及信号处理装置,其根据检测的输出来计算目标的速度和距离,其中光检测部分包括:光检测元件,其进行光相干检测; 微波开关,其从所述光检测元件的输出的传播路径改变; 微波放大器; 以及切换控制装置,其转换微波开关,以便在参考时间之前传送信号作为监视信号,并且在参考时间之后将信号作为接收信号发送,其中来自脉冲激光器的脉冲光具有时间 完全通过发送/接收光学系统作为参考时间。
    • 37. 发明授权
    • Solid-state light source apparatus
    • 固态光源装置
    • US06738397B2
    • 2004-05-18
    • US10121705
    • 2002-04-15
    • Shuhei YamamotoYoshihito HiranoIchiro ShojiTakunori TairaSunao Kurimura
    • Shuhei YamamotoYoshihito HiranoIchiro ShojiTakunori TairaSunao Kurimura
    • H01S310
    • G02F1/3534G02F2203/13
    • A solid-state light source apparatus includes a first excitation laser light source for outputting a laser beam of a first wavelength, a second excitation laser light source for outputting a laser beam of a second wavelength, a difference frequency between the laser beam of the first wavelength and the laser beam of the second wavelength being in a terahertz band, and a semiconductor pseudo phase matching device which is disposed at a place where a first optical axis of the laser beam of the first wavelength overlaps with a second optical axis of the laser beam of the second wavelength, and generates a terahertz beam in a direction coaxial with the first and second optical axes on the basis of irradiation of the laser beams of the first and second wavelengths. Thus, high output and high efficiency terahertz wave generation can be easily and certainly realized while a narrow line width characteristic is maintained.
    • 固态光源装置包括:第一激发光源,用于输出第一波长的激光;第二激光激光源,其输出第二波长的激光;第二激光激光源, 并且所述第二波长的激光束处于太赫兹波段,以及半导体伪相位匹配装置,其设置在所述第一波长的所述激光束的第一光轴与所述激光的第二光轴重叠的位置处 并且基于第一和第二波长的激光束的照射,在与第一和第二光轴同轴的方向上产生太赫兹光束。 因此,可以容易且可靠地实现高输出和高效率的太赫兹波生成,同时保持窄的线宽特性。
    • 38. 发明授权
    • Laser illumination device, illumination method, semiconductor element manufacturing method, projection display device, and image display method using the projection display device
    • 激光照明装置,照明方法,半导体元件制造方法,投影显示装置和使用该投影显示装置的图像显示方法
    • US08517542B2
    • 2013-08-27
    • US12996888
    • 2010-04-23
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • G03B21/14
    • H01L21/268G02B6/0008G03B21/2013G03B21/2033G03B21/204G03B21/208G03B21/28G03B21/62H01S5/005H01S5/02284H01S5/4012H01S5/4025
    • A laser illumination device for providing a light intensity distribution of a high-intensity and uniform illumination light flux is obtained. The device includes a plurality of light source modules (20) each including: a plurality of light source units (8), in each of which a semiconductor laser (1), and a laser medium (5) and a nonlinear material (7) which are flat-shaped and have a waveguide structure are arranged on the same plane, for performing continuous oscillation in a waveguide mode of the laser medium (5); and a first optical system (12) for coupling laser oscillation beams from the plurality of light source units (8). The device further includes: a second optical system (15) for coupling laser light beams propagating from the plurality of light source modules (20) through first optical fibers (13) and a second optical fiber array (14); a uniformization element (16) for converting a laser light beam from the second optical system (15) into a uniform laser light beam; and a third optical system (17) for projecting, to a substrate (19) which is an illuminated surface (18), the uniform laser light beam obtained through the uniformization element (16) at a predetermined magnification, to produce an illumination light flux (11).
    • 获得用于提供高强度和均匀照明光通量的光强度分布的激光照明装置。 该装置包括多个光源模块(20),每个光源模块包括:多个光源单元(8),每个光源单元(8)中的每一个都具有半导体激光器(1)和激光介质(5)和非线性材料(7) 平面状的波导结构被布置在同一平面上,用于在激光介质(5)的波导模式中进行连续振荡。 以及用于耦合来自所述多个光源单元(8)的激光振荡光束的第一光学系统(12)。 该装置还包括:第二光学系统(15),用于将从多个光源模块(20)传播的激光束通过第一光纤(13)和第二光纤阵列(14)耦合; 用于将来自第二光学系统(15)的激光束转换成均匀的激光束的均匀化元件(16); 以及第三光学系统(17),用于将以通过所述均匀化元件(16)获得的均匀的激光束以预定的倍率投射到作为照明表面(18)的基板(19),以产生照明光通量 (11)。
    • 39. 发明申请
    • LASER ILLUMINATION DEVICE, ILLUMINATION METHOD, SEMICONDUCTOR ELEMENT MANUFACTURING METHOD, PROJECTION DISPLAY DEVICE, AND IMAGE DISPLAY METHOD USING THE PROJECTION DISPLAY DEVICE
    • 激光照明装置,照明方法,半导体元件制造方法,投影显示装置和使用投影显示装置的图像显示方法
    • US20110090462A1
    • 2011-04-21
    • US12996888
    • 2010-04-23
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • G03B21/26H01L21/26G21K5/00
    • H01L21/268G02B6/0008G03B21/2013G03B21/2033G03B21/204G03B21/208G03B21/28G03B21/62H01S5/005H01S5/02284H01S5/4012H01S5/4025
    • A laser illumination device for providing a light intensity distribution of a high-intensity and uniform illumination light flux is obtained. The device includes a plurality of light source modules (20) each including: a plurality of light source units (8), in each of which a semiconductor laser (1), and a laser medium (5) and a nonlinear material (7) which are flat-shaped and have a waveguide structure are arranged on the same plane, for performing continuous oscillation in a waveguide mode of the laser medium (5); and a first optical system (12) for coupling laser oscillation beams from the plurality of light source units (8). The device further includes: a second optical system (15) for coupling laser light beams propagating from the plurality of light source modules (20) through first optical fibers (13) and a second optical fiber array (14); a uniformization element (16) for converting a laser light beam from the second optical system (15) into a uniform laser light beam; and a third optical system (17) for projecting, to a substrate (19) which is an illuminated surface (18), the uniform laser light beam obtained through the uniformization element (16) at a predetermined magnification, to produce an illumination light flux (11).
    • 获得用于提供高强度和均匀照明光通量的光强度分布的激光照明装置。 该装置包括多个光源模块(20),每个光源模块包括:多个光源单元(8),每个光源单元(8)中的每一个都具有半导体激光器(1)和激光介质(5)和非线性材料(7) 平面状的波导结构被布置在同一平面上,用于在激光介质(5)的波导模式中进行连续振荡。 以及用于耦合来自所述多个光源单元(8)的激光振荡光束的第一光学系统(12)。 该装置还包括:第二光学系统(15),用于将从多个光源模块(20)传播的激光束通过第一光纤(13)和第二光纤阵列(14)耦合; 用于将来自第二光学系统(15)的激光束转换成均匀的激光束的均匀化元件(16); 以及第三光学系统(17),用于将以通过所述均匀化元件(16)获得的均匀的激光束以预定的倍率投射到作为照明表面(18)的基板(19),以产生照明光通量 (11)。
    • 40. 发明授权
    • Solid-state laser oscillator
    • 固态激光振荡器
    • US06567453B1
    • 2003-05-20
    • US09598850
    • 2000-06-21
    • Shuhei YamamotoYasuharu KoyataYoshihito Hirano
    • Shuhei YamamotoYasuharu KoyataYoshihito Hirano
    • H01S314
    • H01S3/08H01S3/08045H01S3/08072H01S3/1312H01S3/16
    • A solid-state laser oscillator comprising solid-state laser rods disposed coaxially in series with each other, radiating light when excited, and amplifying the light through stimulated emission. A solid-state laser rod exciting device excites any number of solid-state laser rods with a 90° optical rotator disposed coaxially and arranged between the rods. The rotator rotates a component of the light generated in the axial direction while heat lens compensating devices are disposed coaxially with the solid-state laser rods. A reflecting device and a partial reflection device are disposed coaxially and arranged, outside of the solid-state laser rods and heat lens compensating devices, for propagating the axially generated component of the light. An exciting source driving device drives the exciting sources included in the solid-state laser rod exciting device.
    • 一种固态激光振荡器,包括彼此同轴地布置的固态激光棒,激发时照射光,并通过受激发射放大光。 固体激光棒激发装置激发任何数量的固态激光棒,其中90°光旋转器同轴布置并布置在棒之间。 旋转体旋转沿轴向产生的光的分量,同时热透镜补偿装置与固态激光棒同轴设置。 反射装置和部分反射装置同轴地布置在固态激光棒和热透镜补偿装置的外部,用于传播轴向产生的光分量。 激励源驱动装置驱动固态激光棒激励装置中包含的激励源。