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    • 1. 发明申请
    • Control method of distributed Bragg reflection semiconductor laser, and image projecting apparatus
    • 分布式布拉格反射半导体激光器的控制方法和图像投影装置
    • US20080002745A1
    • 2008-01-03
    • US11896142
    • 2007-08-30
    • Kazunari FujiiHajime SakataYukio Furukawa
    • Kazunari FujiiHajime SakataYukio Furukawa
    • H01S5/06
    • H04N9/3129H01S5/005H01S5/0092H01S5/06256H01S5/06804
    • A distributed Bragg reflection (DBR) semiconductor laser is controlled in an image projecting apparatus. The image projecting apparatus includes the DBR semiconductor laser which is provided with a phase region and a DBR region, a light wavelength converting device for converting fundamental-wave light emitted from the DBR semiconductor laser into second harmonic wave light, an optical deflector for scanning the second harmonic wave in a one-dimensional or two-dimensional manner, and a modulating portion for modulating the DBR semiconductor laser based on an image signal. In the control method, a coefficient calculating step and a wavelength adjusting step are performed within a non-drawing time during which a drawing signal, which corresponds to the image signal, is absent. In the coefficient calculating step, at least one coefficient in a relationship between a DBR current to be injected into the DBR region and a phase current to be injected into the phase region for continuously shifting the wavelength of the fundamental-wave light is calculated. In the wavelength adjusting step, the DBR current injected into the DBR region and the phase current injected into the phase region are changed based on the relationship such that the second harmonic wave light is adjusted.
    • 在图像投影装置中控制分布式布拉格反射(DBR)半导体激光器。 图像投影装置包括具有相位区域和DBR区域的DBR半导体激光器,用于将从DBR半导体激光器发射的基波光转换为二次谐波光的光波长转换装置,用于扫描 一维或二维二次谐波,以及用于基于图像信号调制DBR半导体激光器的调制部分。 在控制方法中,系数计算步骤和波长调整步骤在不存在对应于图像信号的绘制信号的非绘制时间内执行。 在系数计算步骤中,计算要注入到DBR区域的DBR电流和要注入到用于连续移位基波的波长的相位区域的相电流之间的关系中的至少一个系数。 在波长调整步骤中,根据调整二次谐波光的关系,改变注入DBR区域的DBR电流和注入相位区域的相电流。
    • 4. 发明申请
    • Light wavelength converting apparatus, control method of the same, and image projecting apparatus using the same
    • 光波长变换装置及其控制方法以及使用其的图像投影装置
    • US20050254531A1
    • 2005-11-17
    • US11120950
    • 2005-05-04
    • Yukio FurukawaHajime SakataKazunari Fujii
    • Yukio FurukawaHajime SakataKazunari Fujii
    • G02B26/10G02F1/377H01S3/10H01S5/00H01S5/02H01S5/06H01S5/0625H01S5/0687H01S5/125
    • H01S5/06256H01S5/005H01S5/0092H01S5/02248H01S5/0617H01S5/06804
    • A light wavelength converting apparatus includes a semiconductor laser having a gain region, a phase region, and a distributed Bragg reflection (DBR) region, a nonlinear optical device for receiving fundamental-wave light emitted from the semiconductor laser and outputting second harmonic wave light, a first optical detector for monitoring an output of the fundamental-wave light, a second optical detector for monitoring the second harmonic wave light, and a control portion for controlling at least a drive current for driving the semiconductor laser. The control portion includes a control parameter determiner, and a wavelength controller. The control parameter determiner changes a DBR current supplied to the DBR region and a phase current supplied to the phase region to obtain a changing point that corresponds to a discontinuous change in an electrical signal from the first optical detector, and determines a control parameter for controlling the DBR current and the phase current such that the relationship between the DBR current and the phase current is not located on the changing point. The wavelength controller controls the DBR current and the phase current pursuant to the control parameter such that an oscillation wavelength of the semiconductor laser can be continuously controlled.
    • 光波长转换装置包括具有增益区域,相位区域和分布布拉格反射区域的半导体激光器,用于接收从半导体激光器发射的基波光并输出二次谐波光的非线性光学装置, 用于监视基波输出的第一光检测器,用于监测第二谐波光的第二光检测器,以及用于至少控制用于驱动半导体激光器的驱动电流的控制部分。 控制部分包括控制参数确定器和波长控制器。 控制参数确定器改变提供给DBR区域的DBR电流和提供给相位区域的相电流,以获得对应于来自第一光学检测器的电信号的不连续变化的变化点,并且确定用于控制的控制参数 DBR电流和相电流使得DBR电流和相电流之间的关系不位于变化点上。 波长控制器根据控制参数控制DBR电流和相电流,使得能够连续地控制半导体激光器的振荡波长。
    • 5. 发明授权
    • Control method of distributed Bragg reflection semiconductor laser, and image projecting apparatus
    • 分布式布拉格反射半导体激光器的控制方法和图像投影装置
    • US07809032B2
    • 2010-10-05
    • US12363708
    • 2009-01-30
    • Kazunari FujiiHajime SakataYukio Furukawa
    • Kazunari FujiiHajime SakataYukio Furukawa
    • H01S3/13H01S5/00
    • H04N9/3129H01S5/005H01S5/0092H01S5/06256H01S5/06804
    • A DBR semiconductor laser is controlled in an image projecting apparatus, which includes the DBR laser having a phase and DBR region, a light wavelength converting device for converting fundamental-wave light emitted from the DBR laser into second harmonic wave light, an optical deflector for scanning the second harmonic wave in a one or two-dimensional manner, and a modulating portion for modulating the DBR laser. Coefficient calculating and wavelength adjusting steps are performed within a non-drawing time. The coefficient calculating step calculates at least one coefficient in a relationship between a DBR current to be injected into the DBR region and a phase current to be injected into the phase region for continuously shifting the wavelength of the fundamental-wave light. The wavelength adjusting step changes DBR current injected into the DBR region and phase current injected into the phase region based on the relationship.
    • DBR半导体激光器被控制在包括具有相位和DBR区域的DBR激光器的图像投影装置中,用于将从DBR激光器发射的基波光转换成二次谐波光的光波长转换装置,用于 以一维或二维方式扫描二次谐波,以及用于调制DBR激光的调制部分。 系数计算和波长调整步骤在非绘制时间内执行。 系数计算步骤计算要注入到DBR区域的DBR电流和要注入到相位区域中的相电流之间的关系中的至少一个系数,以连续移位基波光的波长。 基于该关系,波长调整步骤改变注入DBR区域的DBR电流和注入相位区域的相电流。
    • 6. 发明申请
    • CONTROL METHOD OF DISTRIBUTED BRAGG REFLECTION SEMICONDUCTOR LASER, AND IMAGE PROJECTING APPARATUS
    • 分布式布拉格反射半导体激光器和图像投影设备的控制方法
    • US20090213886A1
    • 2009-08-27
    • US12363708
    • 2009-01-30
    • Kazunari FujiiHajime SakataYukio Furukawa
    • Kazunari FujiiHajime SakataYukio Furukawa
    • H01S3/10
    • H04N9/3129H01S5/005H01S5/0092H01S5/06256H01S5/06804
    • A DBR semiconductor laser is controlled in an image projecting apparatus, which includes the DBR laser having a phase and DBR region, a light wavelength converting device for converting fundamental-wave light emitted from the DBR laser into second harmonic wave light, an optical deflector for scanning the second harmonic wave in a one or two-dimensional manner, and a modulating portion for modulating the DBR laser. Coefficient calculating and wavelength adjusting steps are performed within a non-drawing time. The coefficient calculating step calculates at least one coefficient in a relationship between a DBR current to be injected into the DBR region and a phase current to be injected into the phase region for continuously shifting the wavelength of the fundamental-wave light. The wavelength adjusting step changes DBR current injected into the DBR region and phase current injected into the phase region based on the relationship.
    • DBR半导体激光器被控制在包括具有相位和DBR区域的DBR激光器的图像投影装置中,用于将从DBR激光器发射的基波光转换成二次谐波光的光波长转换装置,用于 以一维或二维方式扫描二次谐波,以及用于调制DBR激光的调制部分。 系数计算和波长调整步骤在非绘制时间内执行。 系数计算步骤计算要注入到DBR区域的DBR电流和要注入到相位区域中的相电流之间的关系中的至少一个系数,以连续移位基波光的波长。 基于该关系,波长调整步骤改变注入DBR区域的DBR电流和注入相位区域的相电流。
    • 8. 发明授权
    • Projection display device
    • 投影显示设备
    • US06945652B2
    • 2005-09-20
    • US10180114
    • 2002-06-27
    • Hajime SakataYukio Furukawa
    • Hajime SakataYukio Furukawa
    • G02B26/10G02B27/18H04N5/74H04N9/31G03B21/26G02B26/08G03B21/00G03B21/28H04N3/02
    • G03B21/2033H04N9/3129
    • Light beams having different wavelengths emitted from red and blue semiconductor lasers and a laser diode pumped green solid-state laser are incident on respectively different surfaces of a color combining element and are overlaid on a single light path. Multiple beam interference films of the color combining element allow only the light beams having the oscillating wavelengths corresponding to the respective light sources to pass therethrough or reflect thereon so as to combine the light beams. A collimator collimates the light beams so that the beam waist of the light beams lies around a projection plane. When two-dimensional scanning is performed by radiating the light beams onto a micromechanical mirror and then onto a galvanometer mirror for scanning light in the horizontal and vertical directions, respectively, a color image is displayed on the projection plane by arranging pixels in array, each pixel consisting of overlapping pulses of light of three colors.
    • 从红色和蓝色半导体激光器发射的具有不同波长的光束和激光二极管泵浦绿色固态激光器分别入射到颜色组合元件的不同表面上,并且覆盖在单个光路上。 彩色组合元件的多束干涉膜仅允许具有与各个光源对应的振荡波长的光束通过其中或在其上反射以组合光束。 准直器准直光束,使得光束的光束腰部位于投影平面周围。 当通过将光束照射到微机械镜上并且然后分别到用于在水平和垂直方向上扫描光的电流计镜来执行二维扫描时,通过排列阵列中的像素,在投影平面上显示彩色图像 由三种颜色的重叠脉冲组成的像素。
    • 9. 发明授权
    • Optical wavelength converting apparatus and optical wavelength converting method
    • 光波长转换装置和光波长转换方法
    • US06919985B2
    • 2005-07-19
    • US10364522
    • 2003-02-12
    • Yukio FurukawaHajime Sakata
    • Yukio FurukawaHajime Sakata
    • G02F1/37G02F1/35G02F1/377G02F1/39
    • G02F1/3544G02F1/3534G02F1/3551G02F2001/3548G02F2203/21
    • An optical wavelength converting apparatus comprising first and second light sources and a nonlinear optical material. Beams from the two light sources, incident on the material, generate sum frequency light of these beams. The nonlinear optical material is provided with a periodic structure that matches phases of the beams from the two light sources with a phase of the sum frequency light of these beams. Also, wavelengths of the beams from the two light sources and of the sum frequency light of these beams, polarization directions of these three beams in the material, and propagation directions of these three beams in the material are determined such that an efficiency of conversion into sum frequency light does not change even with a change in one of the defining parameters, thus providing an advantageous pumping light source.
    • 一种光波长转换装置,包括第一和第二光源和非线性光学材料。 来自两个光源的光束,入射到材料上,产生这些光束的和频。 非线性光学材料设置有周期性结构,其使来自两个光源的光束的相位与这些光束的和频光的相位匹配。 此外,来自两个光源的光束的波长以及这些光束的和频光,材料中的这三个光束的偏振方向以及材料中的这三个光束的传播方向被确定为使得转换成 即使在一个定义参数的变化中,和频频率光也不改变,从而提供有利的泵浦光源。
    • 10. 发明授权
    • Light wavelength converting apparatus, control method of the same, and image projecting apparatus using the same
    • 光波长变换装置及其控制方法以及使用其的图像投影装置
    • US07411992B2
    • 2008-08-12
    • US11120950
    • 2005-05-04
    • Yukio FurukawaHajime SakataKazunari Fujii
    • Yukio FurukawaHajime SakataKazunari Fujii
    • H01S3/08
    • H01S5/06256H01S5/005H01S5/0092H01S5/02248H01S5/0617H01S5/06804
    • A light wavelength converting apparatus includes a semiconductor laser having gain, phase, and DBR regions, a nonlinear optical device for receiving fundamental-wave light emitted from the semiconductor laser and outputting second harmonic wave light, a first optical detector for monitoring output of the fundamental-wave light, a second optical detector for monitoring the second harmonic wave light, and a control portion for controlling a drive current for driving the semiconductor laser. The control portion includes a control parameter determiner and wavelength controller. The control parameter determiner changes a DBR current supplied to the DBR region and a phase current supplied to the phase region to obtain a changing point, and determines a control parameter for controlling the DBR and phase currents such that the relationship therebetween is not located on the changing point. The wavelength controller controls the DBR and phase currents pursuant to the control parameter.
    • 光波长转换装置包括具有增益,相位和DBR区域的半导体激光器,用于接收从半导体激光器发射的基波并输出二次谐波光的非线性光学装置,用于监视基波的输出的第一光学检测器 波光,用于监测二次谐波光的第二光检测器,以及用于控制用于驱动半导体激光器的驱动电流的控制部分。 控制部分包括控制参数确定器和波长控制器。 控制参数确定器改变提供给DBR区域的DBR电流和提供给相位区域的相电流以获得改变点,并且确定用于控制DBR和相电流的控制参数,使得它们之间的关系不位于 变化点 波长控制器根据控制参数控制DBR和相电流。