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
    • 1. 发明授权
    • Method for measuring ash content of food stuff
    • 测量食物灰分含量的方法
    • US5976882A
    • 1999-11-02
    • US249167
    • 1999-02-12
    • Satoru SatakeTakaharu KameokaYukio HosakaTakeshi ImaiShinji Saito
    • Satoru SatakeTakaharu KameokaYukio HosakaTakeshi ImaiShinji Saito
    • G01N21/27G01N21/33G01N21/35G01N21/3563G01N21/359G01N33/02
    • G01N21/33G01N21/274G01N21/3563G01N21/359G01N33/02Y10T436/10
    • A method for measuring ash content of food stuff is carried out by 1) preparing, with respect to food stuff samples whose ash content values are known, a calibration curve by a non-linear analysis of absorbance values and the known ash content of each sample, the absorbance values being obtained by irradiating light having particular wavelengths containing at least an ultraviolet ray band wavelength, the particular wavelength being specific to organic ingredients well coupled to inorganic ingredients which result in the ash content, and 2) deriving, with respect to a sample whose ash content value is unknown, an ash content value of the sample from absorbance values obtained by irradiating, on the sample, light having the particular wavelengths containing at least the ultraviolet ray band wavelength and from the calibration curve prepared in advance by the non-linear analysis. An apparatus for carrying out the method includes a light source section, a photo detecting section, a storing section for storing the calibration curve, and a calculation section for calculating, with respect to a sample whose ash content value is unknown, the ash content value based on the absorbance values and the calibration curve stored in the storing section. It is possible to speed up the measuring operation and to improve the measuring precision.
    • 通过以下方式进行食品灰分含量测定的方法:1)对于灰分含量已知的食品样品,通过吸光度值的非线性分析和每个样品的已知灰分含量制备校准曲线 通过照射具有至少具有紫外线波长的特定波长的光获得的吸光度值,该特定波长特异于有机成分,其与无机成分良好耦合,导致灰分含量,以及2)相对于 灰分含量未知的样品,样品的灰分含量值,其通过在样品上照射具有至少包含紫外线波段波长的特定波长的光和由非预定制备的校准曲线获得的吸光度值, 线性分析。 用于执行该方法的装置包括光源部分,光检测部分,用于存储校准曲线的存储部分,以及计算部分,用于相对于灰分含量值未知的样本计算灰分含量值 基于存储部分中存储的吸光度值和校准曲线。 可以加快测量操作,提高测量精度。
    • 2. 发明授权
    • Apparatus for measuring ash content of food stuff by ultraviolet
radiation
    • 用于通过紫外线辐射测量食物的灰分含量的装置
    • US5952234A
    • 1999-09-14
    • US942300
    • 1997-10-01
    • Satoru SatakeTakaharu KameokaYukio HosakaTakeshi ImaiShinji Saito
    • Satoru SatakeTakaharu KameokaYukio HosakaTakeshi ImaiShinji Saito
    • G01N21/27G01N21/33G01N21/35G01N21/3563G01N21/359G01N33/02
    • G01N21/33G01N21/274G01N21/3563G01N21/359G01N33/02Y10T436/10
    • A method for measuring ash content of food stuff is carried out by 1) preparing, with respect to food stuff samples whose ash content values are known, a calibration curve by a non-linear analysis of absorbance values and the known ash content of each sample, the absorbance values being obtained by irradiating light having particular wavelengths containing at least an ultraviolet ray band wavelength, the particular wavelength being specific to organic ingredients well coupled to inorganic ingredients which result in the ash content, and 2) deriving, with respect to a sample whose ash content value is unknown, an ash content value of the sample from absorbance values obtained by irradiating, on the sample, light having the particular wavelengths containing at least the ultraviolet ray band wavelength and from the calibration curve prepared in advance by the non-linear analysis. An apparatus for carrying out the method includes a light source section, a photo detecting section, a storing section for storing the calibration curve, and a calculation section for calculating, with respect to a sample whose ash content value is unknown, the ash content value based on the absorbance values and the calibration curve stored in the storing section. It is possible to speed up the measuring operation and to improve the measuring precision.
    • 通过以下方式进行食品灰分含量测定的方法:1)对于灰分含量已知的食品样品,通过吸光度值的非线性分析和每个样品的已知灰分含量制备校准曲线 通过照射具有至少具有紫外线波长的特定波长的光获得的吸光度值,该特定波长特异于有机成分,其与无机成分良好耦合,导致灰分含量,以及2)相对于 灰分含量未知的样品,样品的灰分含量值,其通过在样品上照射具有至少包含紫外线波段波长的特定波长的光和由非预定制备的校准曲线获得的吸光度值, 线性分析。 用于执行该方法的装置包括光源部分,光检测部分,用于存储校准曲线的存储部分,以及计算部分,用于相对于灰分含量值未知的样本计算灰分含量值 基于存储部分中存储的吸光度值和校准曲线。 可以加快测量操作,提高测量精度。
    • 9. 发明申请
    • SEMICONDUCTOR LIGHT EMITTING DEVICE
    • 半导体发光器件
    • US20120007113A1
    • 2012-01-12
    • US13032907
    • 2011-02-23
    • Jongil HwangShinji SaitoMaki SugaiRei HashimotoYasushi HattoriMasaki TohyamaShinya Nunoue
    • Jongil HwangShinji SaitoMaki SugaiRei HashimotoYasushi HattoriMasaki TohyamaShinya Nunoue
    • H01L33/26
    • H01L33/06H01L33/32
    • According to one embodiment, a semiconductor light emitting device includes an n-type semiconductor layer, a p-type semiconductor layer, a well layer, a barrier layer, an Al-containing layer, and an intermediate layer. The p-type semiconductor layer is provided on a side of [0001] direction of the n-type semiconductor layer. The well layer, the barrier layer, the Al-containing layer and the intermediate layer are disposed between the n-type semiconductor layer and the p-type semiconductor layer subsequently. The Al-containing layer has a larger band gap energy than the barrier layer, a smaller lattice constant than the n-type semiconductor layer, and a composition of Alx1Ga1-x1-y1Iny1N. The intermediate layer has a larger band gap energy than the well layer, and has a first portion and a second portion provided between the first portion and the p-type semiconductor layer. A band gap energy of the first portion is smaller than that of the second portion.
    • 根据一个实施例,半导体发光器件包括n型半导体层,p型半导体层,阱层,阻挡层,含Al层和中间层。 p型半导体层设置在n型半导体层的[0001]方向的一侧。 阱层,阻挡层,含Al层和中间层随后设置在n型半导体层和p型半导体层之间。 含Al层具有比阻挡层更大的带隙能量,比n型半导体层更小的晶格常数以及Al x Ga 1-x 1-y 1 In y N 1的组成。 中间层具有比阱层更大的带隙能量,并且具有设置在第一部分和p型半导体层之间的第一部分和第二部分。 第一部分的带隙能量小于第二部分的带隙能量。