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    • 1. 发明专利
    • Spectrum measuring apparatus and spectrum measuring method
    • 光谱测量装置和光谱测量方法
    • JP2012181086A
    • 2012-09-20
    • JP2011043757
    • 2011-03-01
    • 21 Aomori Sangyo Sogo Shien Center財団法人21あおもり産業総合支援センター
    • SEKIYA KAZUOMURAI HIROSHIWAKAO KAZUHIRO
    • G01J3/447G01J3/36
    • PROBLEM TO BE SOLVED: To provide a spectrum measuring apparatus capable of preventing degradation of S/N ratio by delivering a sufficient light volume to imaging means such as an imaging camera, an imaging element, etc.SOLUTION: A spectrum measuring apparatus 1 comprises: a liquid crystal device 2 as a Fourier transform element; a voltage controller 5 for controlling voltage applied to the liquid crystal device 2; and an imaging device 3 for imaging a transmittance waveform of a measuring object 7 passing through the liquid crystal device 2. A computer 4 executes: a step for storing data about images taken while controlling the voltage applied to the liquid crystal device 2 so that a wave number included in the transmittance waveform after passage through the liquid crystal device 2 has a non-integral multiple relationship; a step for calculating a Fourier component of integral multiple frequency for each pixel in a measurement interval by solving a simultaneous equation based on the multiple pieces of image data which differ in the wave number; and a step for calculating an optical spectrum for each pixel by applying inverse Fourier transform to the calculated Fourier component of integral multiple frequency in each pixel.
    • 解决方案:提供一种能够通过将诸如成像照相机,成像元件等的成像装置输送足够的光量来防止S / N比降低的光谱测量装置。解决方案:A 光谱测量装置1包括:作为傅立叶变换元件的液晶装置2; 用于控制施加到液晶装置2的电压的电压控制器5; 以及成像装置3,用于对通过液晶装置2的测量对象7的透射波形进行成像。计算机4执行:在控制施加到液晶装置2的电压的同时存储关于图像的数据的步骤, 通过液晶装置2的透射波形中包含的波数具有非积分多重关系; 通过求解基于波数不同的多个图像数据的联立方程来计算测量间隔中的每个像素的积分多频的傅立叶分量的步骤; 以及通过对每个像素中的积分多频率的计算的傅立叶分量进行逆傅立叶变换来计算每个像素的光谱的步骤。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Microscope apparatus
    • MICROSCOPE设备
    • JP2011186182A
    • 2011-09-22
    • JP2010051282
    • 2010-03-09
    • 21 Aomori Sangyo Sogo Shien CenterClaro IncHirosaki Univ国立大学法人弘前大学株式会社クラーロ財団法人21あおもり産業総合支援センター
    • TAKAMATSU TERUMASASATO TATSUSHIMIURA TOMITOMONOSAKA HIROYOSHIZHONGXI ZHENGWAKAO KAZUHIROKISHIMOTO TADASHINAKANO SHIGERU
    • G02B21/00G01N21/64G02F1/13
    • PROBLEM TO BE SOLVED: To provide a microscope apparatus configured to photograph fluorescence generated by a sample of a pathology tissue or the like with exciting light. SOLUTION: The microscope apparatus includes: a fluorescent photographing light source 2 that generates the exciting light of fluorescent pigments; a liquid crystal wavelength variable filter unit 6 that can selectively transmit/shield light of various wavelengths; a dichroic mirror 8 that reflects the exciting light, and also, transmits the fluorescence having longer wavelength; an objective lens 9; a liquid crystal wavelength variable filter unit 12 disposed between an object to be photographed and a fluorescent photographic photographing unit 13 so as to selectively transmit/shield the light of various wavelengths; the fluorescent photographic photographing unit 13; and a personal computer 18 as a controller for applying a desired voltage to the liquid crystal variable filter units. Simultaneous fluorescent photographing using the plurality of fluorescent pigments can be automatically and highly accurately performed at a high speed. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用激发光拍摄病理组织等样品产生的荧光的显微镜装置。 解决方案:显微镜装置包括:荧光摄影光源2,其产生荧光颜料的激发光; 可以选择性地透射/屏蔽各种波长的光的液晶波长可变滤波器单元6; 反射激发光的分色镜8,并且透射具有较长波长的荧光; 物镜9; 设置在待拍摄物体和荧光摄影摄影单元13之间的液晶波长可变滤波器单元12,以选择性地透射/屏蔽各种波长的光; 荧光摄影摄影单元13; 以及个人计算机18作为用于向液晶可变滤波器单元施加期望电压的控制器。 可以高速自动且高精度地进行使用多种荧光颜料的同时荧光照相。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Led driving circuit and power saving method thereof
    • LED驱动电路及其节能方法
    • JP2005116738A
    • 2005-04-28
    • JP2003348258
    • 2003-10-07
    • 21 Aomori Sangyo Sogo Shien Center財団法人21あおもり産業総合支援センター
    • SEKIYA KAZUO
    • H01L33/00
    • PROBLEM TO BE SOLVED: To achieve power saving in a driving circuit for controlling the luminescence of an LED. SOLUTION: A monitor circuit is provided for controlling a voltage of a variable voltage power supply employing the power supply of an LED driving circuit as the variable voltage power supply, and a gate voltage impressed on an FET as an input. In the monitor circuit, the minimum value of a gate voltage coping with the part of voltage lowering caused by the FET is obtained previously from the total voltage value of the maximum forward direction voltage value permitted in the standard of a plurality of LEDs, is stored while corresponding to a controlling current value and the voltage value of the gate voltage, and monitored in the monitor circuit to be compared with the minimum value of the gate voltage in accordance with a control current value. When the voltage value of the gate voltage is smaller than the minimum value of the gate voltage, the value of a power supply voltage set in the variable voltage power supply is controlled to be reduced. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了实现用于控制LED的发光的驱动电路中的功率节省。 解决方案:提供一种监控电路,用于控制采用LED驱动电路的电源作为可变电压电源的可变电压电源的电压,以及施加在FET作为输入的栅极电压。 在监视电路中,由多个LED的标准中允许的最大正向电压值的总电压值预先获得由FET引起的部分电压降低的栅极电压的最小值, 同时对应于控制电流值和栅极电压的电压值,并且在监控电路中监控,以根据控制电流值与栅极电压的最小值进行比较。 当栅极电压的电压值小于栅极电压的最小值时,设定在可变电压电源中的电源电压的值被控制为减小。 版权所有(C)2005,JPO&NCIPI