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    • 2. 发明专利
    • System for simultaneously storing image data and photographing data
    • 同时存储图像数据和摄影数据的系统
    • JP2005160001A
    • 2005-06-16
    • JP2003431316
    • 2003-11-21
    • Masanori FukugamiShin Masuda愼 増田正憲 福神
    • MASUDA SHINFUKUGAMI MASANORI
    • H04N5/225H04N5/91H04N101/00
    • PROBLEM TO BE SOLVED: To solve a problem that arrangement of photographs after photographing is difficult if similar objects continue in digital photographing, and accurate sorting is important particularly in photographing for an investigation.
      SOLUTION: In the case of photographing, photograph data and photographing data which are inputted using a computer and to be linked therewith beforehand are simultaneously stored in a digital camera. In printing, it is selected whether both data are simultaneously printed out or only the photograph data are printed out as in the conventional practice, so that, when simultaneously printing both data, arrangement can be accurately and speedily performed.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了解决如果类似物体在数码照相中继续进行,拍摄后的照片布置困难的问题,并且准确的分类尤其在拍摄调查中是重要的。

      解决方案:在拍摄的情况下,使用计算机输入并预先链接的照片数据和拍摄数据被同时存储在数码相机中。 在打印时,如常规实践中所选择的数据是同时打印还是只打印照片数据,从而当同时打印数据时,可以准确且快速地进行布置。 版权所有(C)2005,JPO&NCIPI

    • 5. 发明申请
    • PULSE LASER, OPTICAL FREQUENCY STABILIZED LASER, MEASUREMENT METHOD, AND MEASUREMENT APPARATUS
    • 脉冲激光,光学频率稳定激光,测量方法和测量装置
    • US20110274127A1
    • 2011-11-10
    • US13018114
    • 2011-01-31
    • Shin MASUDAHajime INABA
    • Shin MASUDAHajime INABA
    • H01S3/10H01S3/00
    • H01S3/137G01J11/00G02F1/37H01S3/0014H01S3/1106H01S3/1307
    • The object is to measure the carrier envelope offset frequency of a mode-locked laser. Provided is a pulse laser that measures a carrier envelope offset frequency of a mode-locked laser, pulse laser comprising a mode-locked laser that generates an optical pulse; a band expanding section that expands an oscillated frequency range of the mode-locked laser; a harmonic generating section that generates a harmonic component of the mode-locked laser; a light transmitting section that inputs light to the harmonic generating section without changing relative timings of a predetermined frequency component of the mode-locked laser output from the band expanding section and a frequency component that is at least double the predetermined frequency component; a detecting section that detects a beat signal of the harmonic component and the component passed through the harmonic generating section by the mode-locked laser; and a calculating section that calculates a carrier envelope offset frequency and a repeating frequency based on the beat signal.
    • 目的是测量锁模激光器的载波包络偏移频率。 提供了一种测量锁模激光器的载波包络偏移频率的脉冲激光器,包括产生光脉冲的锁模激光器的脉冲激光器; 扩展所述锁模激光器的振荡频率范围的带扩展部; 产生模式锁定激光器的谐波分量的谐波发生部分; 光传输部分,其向所述谐波发生部分输入光,而不改变从所述带扩展部分输出的锁模激光器的预定频率分量的相对定时和至少为所述预定频率分量的两倍的频率分量; 检测部分,其通过所述锁模激光器检测所述谐波分量的搏动信号和通过所述谐波发生部分的分量; 以及计算部,其基于所述拍子信号来计算载波包络偏移频率和重复频率。
    • 6. 发明申请
    • MANUFACTURING EQUIPMENT AND MANUFACTURING METHOD
    • 制造设备和制造方法
    • US20110081137A1
    • 2011-04-07
    • US12574635
    • 2009-10-06
    • Shin Masuda
    • Shin Masuda
    • A21B1/02
    • C23C18/1216C23C18/1254C23C18/1279H01L41/318Y10T29/49002
    • There are provided a manufacturing apparatus and a manufacturing method for manufacturing a substrate having a dielectric film, including a heat treatment apparatus that subjects a substrate on which a raw material containing composite oxide is applied, to heat treatment and crystallization in an atmosphere containing oxygen in a volume ratio of 20% or above under pressure of an atmospheric pressure or above. The manufacturing apparatus may manufacture a substrate having a ferroelectric film used as an optical control device. The heat treatment apparatus may include: a chamber that keeps, in the atmosphere, the substrate on which the raw material is applied; and a pressure adjusting section that adjusts a pressure of the atmosphere in the chamber to a predetermined value for a predetermined time period during heat treatment.
    • 提供一种用于制造具有电介质膜的基板的制造装置和制造方法,所述制造装置和制造方法包括使包含复合氧化物的原料的基板经受热处理装置,以在含氧气氛中进行热处理和结晶 在大气压以上的压力下体积比为20%以上。 制造装置可以制造具有用作光学控制装置的铁电体膜的基板。 热处理装置可以包括:在大气中保持施加有原料的基板的室; 以及压力调节部,其在热处理期间将预定时间段内的室内气氛的压力调整为规定值。
    • 7. 发明授权
    • Laser oscillator
    • 激光振荡器
    • US07602546B2
    • 2009-10-13
    • US11657410
    • 2007-01-24
    • Kazunori ShiotaShin MasudaMasataka NakazawaMasato Yoshida
    • Kazunori ShiotaShin MasudaMasataka NakazawaMasato Yoshida
    • H04B10/17H01S3/00
    • H01S3/06791H01S3/0675H01S3/08H01S3/094042H01S3/1109H01S3/1118
    • To extend the temperature range for a stable operation without mode hopping and obtain a stable laser oscillation, a laser oscillator is provided. The laser oscillator includes: an optical circulator in which light incident on a first port is exited from the second port, light incident on the second port is exited from a third port, and light incident on a fourth port is exited from the first port; a first optical amplification fiber that amplifies the light exited from the third port because of being excited by an exciting light and injects the same into the first port; a reflective optical filter that reflects light with a predetermined wavelength among the light exited from the second port and injects the same into the second port again; and an pump light source that generates an exciting light to excite the first optical amplification fiber. The reflective optical filter transmits light oscillated by laser in a ring resonator including the first optical amplification fiber, the optical circulator and the reflective optical filter and outputs the same. The pump light source injects the exciting light from the fourth port into a ring resonator.
    • 为了延长稳定运行的温度范围而不跳频,获得稳定的激光振荡,提供激光振荡器。 激光振荡器包括:入射到第一端口的光从第二端口退出的光循环器,从第三端口退出入射在第二端口上的光,并且从第一端口退出入射到第四端口的光; 第一光放大光纤,其由于被激发光激发而放大从第三端口退出的光并将其注入第一端口; 反射光学滤光器,其反射从第二端口退出的光中具有预定波长的光,并再次将其注入第二端口; 以及产生激发光以激发第一光放大光纤的泵浦光源。 反射型滤光器在由包括第一光放大光纤,光循环器和反射滤光器的环形谐振器中透射由激光振荡的光,并输出。 泵浦光源将来自第四端口的激发光注入环形谐振器。
    • 8. 发明授权
    • Wavelength determining device, wavelength meter equipped with the device, wavelength determining method, program, and recording medium
    • 波长确定装置,配备该装置的波长计,波长确定方法,程序和记录介质
    • US07423759B2
    • 2008-09-09
    • US11388983
    • 2006-03-27
    • Shin MasudaShoji Niki
    • Shin MasudaShoji Niki
    • G01B9/02
    • G01J9/0246
    • There is provided a wavelength determining device including a reference wavelength measuring section 42 that, based upon a number A of interference fringes generated by an optical path difference of first reference wavelength light (wavelength: λ1) and a number C of interference fringes generated by the optical path difference of second reference wavelength light (wavelength: λ2), measures the wavelength of the second reference wavelength light, an input light wavelength measuring section 44, based upon the number A of the interference fringes generated by the optical path difference of the first reference wavelength light (wavelength: λ1) and a number B of interference fringes generated by the optical path difference of input light (wavelength: λx), measures the wavelength of the input light, a correction coefficient determining section 46 that determines a second correction coefficient k based upon the measured wavelength λc of the second reference wavelength light and the measured wavelength λm of the input light, and an input light wavelength correcting section 48 that corrects the measured wavelength of the input light by multiplying the measured wavelength λm of the input light by the second correction coefficient k, in order to correctly measure the wavelength λx(=k·λm) of the input light.
    • 提供了一种波长确定装置,其包括参考波长测量部分42,其基于由第一参考波长光(波长:λ1)的光程差产生的干涉条纹的数量A和由第一参考波长光(波长:λ1)产生的干涉条纹数量C 基于由光程差产生的干涉条纹的数量A,第二参考波长光(波长:λ2)的光程差测量第二参考波长光的波长,输入光波长测量部分44 第一参考波长光(波长:λ1)和由输入光(波长:兰德克)的光程差产生的干涉条纹数B,测量输入光的波长;校正系数确定部分46,其确定 第二校正系数k基于第二参考wav的测量波长lambdac 长度光和输入光的测量波长λamb,以及输入光波长校正部分48,通过将输入光的测量波长λ乘以第二校正系数k来校正输入光的测量波长,以便正确地 测量输入光的波长lambdax(= k.lambdam)。
    • 9. 发明申请
    • Laser oscillator
    • 激光振荡器
    • US20070242346A1
    • 2007-10-18
    • US11657410
    • 2007-01-24
    • Kazunori ShiotaShin MasudaMasataka NakazawaMasato Yoshida
    • Kazunori ShiotaShin MasudaMasataka NakazawaMasato Yoshida
    • H01S3/00
    • H01S3/06791H01S3/0675H01S3/08H01S3/094042H01S3/1109H01S3/1118
    • To extend the temperature range for a stable operation without mode hopping and obtain a stable laser oscillation, a laser oscillator is provided. The laser oscillator includes: an optical circulator in which light incident on a first port is exited from the second port, light incident on the second port is exited from a third port, and light incident on a fourth port is exited from the first port; a first optical amplification fiber that amplifies the light exited from the third port because of being excited by an exciting light and injects the same into the first port; a reflective optical filter that reflects light with a predetermined wavelength among the light exited from the second port and injects the same into the second port again; and an pump light source that generates an exciting light to excite the first optical amplification fiber. The reflective optical filter transmits light oscillated by laser in a ring resonator including the first optical amplification fiber, the optical circulator and the reflective optical filter and outputs the same. The pump light source injects the exciting light from the fourth port into a ring resonator.
    • 为了延长稳定运行的温度范围而不跳频,获得稳定的激光振荡,提供激光振荡器。 激光振荡器包括:入射到第一端口的光从第二端口退出的光循环器,从第三端口退出入射在第二端口上的光,并且从第一端口退出入射到第四端口的光; 第一光放大光纤,其由于被激发光激发而放大从第三端口退出的光并将其注入第一端口; 反射光学滤光器,其反射从第二端口退出的光中具有预定波长的光,并再次将其注入第二端口; 以及产生激发光以激发第一光放大光纤的泵浦光源。 反射型滤光器在由包括第一光放大光纤,光循环器和反射滤光器的环形谐振器中透射由激光振荡的光,并输出。 泵浦光源将来自第四端口的激发光注入环形谐振器。
    • 10. 发明申请
    • Wavelength determining device, wavelength meter equipped with the device, wavelength determining method, program, and recording medium
    • 波长确定装置,配备该装置的波长计,波长确定方法,程序和记录介质
    • US20060221344A1
    • 2006-10-05
    • US11388983
    • 2006-03-27
    • Shin MasudaShoji Niki
    • Shin MasudaShoji Niki
    • G01B9/02G01J3/45
    • G01J9/0246
    • There is provided a wavelength determining device including a reference wavelength measuring section 42 that, based upon a number A of interference fringes generated by an optical path difference of first reference wavelength light (wavelength: λ1) and a number C of interference fringes generated by the optical path difference of second reference wavelength light (wavelength: λ2), measures the wavelength of the second reference wavelength light, an input light wavelength measuring section 44, based upon the number A of the interference fringes generated by the optical path difference of the first reference wavelength light (wavelength: λ1) and a number B of interference fringes generated by the optical path difference of input light (wavelength: λx), measures the wavelength of the input light, a correction coefficient determining section 46 that determines a second correction coefficient k based upon the measured wavelength λc of the second reference wavelength light and the measured wavelength λm of the input light, and an input light wavelength correcting section 48 that corrects the measured wavelength of the input light by multiplying the measured wavelength λm of the input light by the second correction coefficient k, in order to correctly measure the wavelength λx(=k·λm) of the input light.
    • 提供了一种波长确定装置,其包括参考波长测量部分42,其基于由第一参考波长光(波长:λ1)的光程差产生的干涉条纹的数量A和由第一参考波长光(波长:λ1)产生的干涉条纹数量C 基于由光程差产生的干涉条纹的数量A,第二参考波长光(波长:λ2)的光程差测量第二参考波长光的波长,输入光波长测量部分44 第一参考波长光(波长:λ1)和由输入光(波长:兰德克)的光程差产生的干涉条纹数B,测量输入光的波长;校正系数确定部分46,其确定 第二校正系数k基于第二参考wav的测量波长lambdac 长度光和输入光的测量波长λamb,以及输入光波长校正部分48,通过将输入光的测量波长λ乘以第二校正系数k来校正输入光的测量波长,以便正确地 测量输入光的波长lambdax(= k.lambdam)。