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    • 1. 发明申请
    • Temperature measuring method and apparatus
    • 温度测量方法和仪器
    • US20050002438A1
    • 2005-01-06
    • US10910375
    • 2004-08-04
    • Miyuki HashimotoKenji YanoMisao IwataKuniyuki KitagawaNorio AraiSatoshi Arai
    • Miyuki HashimotoKenji YanoMisao IwataKuniyuki KitagawaNorio AraiSatoshi Arai
    • G01J5/00G01J5/60G01N21/00
    • G01J5/06G01J5/0044G01J5/602G01J2005/0048G01J2005/0077
    • A method of measuring a temperature of an object body in an electric furnace, based on an intensity of a radiant energy emitted from the object body, the electric furnace being provided with an electric heater operable by application of a drive voltage thereto to heat the object body, the method comprising: a radiant-energy detecting step of detecting an intensity of a radiant energy emitted from the object body; a stray-light noise eliminating step of determining as a noise an intensity of a radiant energy of a stray light which is emitted from an inner wall surface of the electric furnace toward the object body and reflected by a surface of the object body, according to a predetermined relationship between the intensity of the radiant energy of the stray light and the drive voltage applied to the electric heater and based on an actually applied value of the drive voltage, and subtracting the intensity of the radiant energy of the stray light determined as the noise, from the detected intensity of the radiant energy emitted from the object body; and a temperature calculating step of calculating a temperature of the object body, based on the intensity of the radiant energy emitted from the object body from which the noise has been removed in the stray-light noise eliminating step. Also disclosed is an apparatus for practicing the method, which may include a shielding device disposed between the furnace walls and the object body.
    • 一种基于从物体发射的辐射能的强度来测量电炉中的物体的温度的方法,电炉设有可通过施加驱动电压而对其进行加热的电加热器 所述方法包括:辐射能量检测步骤,其检测从所述物体发射的辐射能的强度; 根据权利要求1所述的杂散光噪声消除步骤,其中,所述杂散光噪声消除步骤将从所述电炉的内壁表面朝向所述物体并从所述物体的表面反射的杂散光的辐射能强度确定为噪声, 杂散光的辐射能的强度与施加到电加热器的驱动电压之间的预定关系,并且基于实际施加的驱动电压值,并且减去被确定为所述驱动电压的杂散光的辐射能的强度 从被检体发出的辐射能的检测强度; 以及温度计算步骤,基于从杂散光噪声消除步骤中已经从中去除噪声的物体发出的辐射能的强度来计算物体的温度。 还公开了一种用于实施该方法的装置,其可以包括设置在炉壁和物体之间的屏蔽装置。
    • 4. 发明授权
    • Thermally-assisted magnetic recording head
    • 热辅助磁记录头
    • US08300503B2
    • 2012-10-30
    • US12997201
    • 2009-06-03
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • G11B11/10
    • G11B5/314G11B5/4833G11B5/4866G11B2005/0005G11B2005/0021
    • In a thermally assisted magnetic recording head having a light source and a waveguide to lead a laser beam radiated from the light source to a front end of the magnetic head, while blocking an adverse effect of heat generated in the light source and securing a good floating characteristic, the light source and the magnetic head are optically coupled with high efficiency and the magnetic head itself is reduced in size. This invention provides a reflection mirror that is formed of a part or whole of one inclined end surface of the semiconductor laser mounted on the first submount. Near one end surface of the slider is provided the optical waveguide that pierces through the slider in a direction of the thickness thereof. The slider is mounted on the second submount and the positions of the first submount and the second submount are adjusted to practically align the light axis of the beam emitted from the mirror with the light axis of the optical waveguide, thereby realizing a novel thermally assisted magnetic recording head.
    • 在具有光源和波导的热辅助磁记录头中,将从光源辐射的激光束引导到磁头的前端,同时阻挡在光源中产生的热的不利影响并确保良好的浮动 特性,光源和磁头的光学耦合效率高,磁头本身尺寸减小。 本发明提供一种由安装在第一基座上的半导体激光器的一个倾斜端面的一部分或全部形成的反射镜。 在滑块的一个端面附近设置有穿过滑块的厚度方向的光波导。 滑块安装在第二基座上,并且调整第一基座和第二基座的位置以实际地将从反射镜发射的光束的光轴与光波导的光轴对准,从而实现新颖的热辅助磁 录音头。
    • 6. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08068133B2
    • 2011-11-29
    • US12380137
    • 2009-02-24
    • Satoshi AraiTokiya AbeMasahiro Yamaguchi
    • Satoshi AraiTokiya AbeMasahiro Yamaguchi
    • H04N7/18
    • A61K49/006G01N21/31G06T7/90G06T11/001G06T2207/10024G06T2207/30024
    • An image processing apparatus includes a first spectrum estimating unit for reading the image information from a storage unit and estimating a spectrum of an object based on the read image information; a dye amount estimating unit for estimating dye amounts included in the object using the estimated spectrum; a second spectrum estimating unit for synthesizing a first spectrum using the estimated dye amounts; a spectrum subtractor for calculating a difference spectrum by subtracting the first spectrum from the spectrum; a dye amount correcting unit for correcting at least a part of the estimated dye amounts; a third spectrum estimating unit for synthesizing a second spectrum using the corrected dye amount; a spectrum adder for synthesizing a third spectrum by adding the second spectrum and the difference spectrum; and an image synthesizer for synthesizing a display image from the third spectrum.
    • 一种图像处理装置,包括:第一频谱估计单元,用于从存储单元读取图像信息,并基于所读取的图像信息估计对象的频谱; 染料量估计单元,用于使用估计的光谱估计包含在物体中的染料量; 第二光谱估计单元,用于使用估计的染料量合成第一光谱; 频谱减法器,用于通过从频谱中减去第一频谱来计算差分频谱; 染色量校正单元,用于校正所估计的染料量的至少一部分; 第三光谱估计单元,用于使用校正的染料量合成第二光谱; 频谱加法器,用于通过将第二频谱和差谱相加来合成第三频谱; 以及用于从第三光谱合成显示图像的图像合成器。
    • 8. 发明授权
    • Electronic apparatus and navigation image display method
    • 电子仪器和导航图像显示方法
    • US07818119B2
    • 2010-10-19
    • US12615091
    • 2009-11-09
    • Satoshi AraiYoshiyasu ItohRikiya Kubo
    • Satoshi AraiYoshiyasu ItohRikiya Kubo
    • G01C21/00
    • G01C21/3635G01C21/3632G09B29/106
    • According to one embodiment, an electronic apparatus comprises a storage module, a location measuring module, a communication module, and a navigation image generating module. The storage module stores image data corresponding to respective symbols, and data of simplified diagram templates in each of which positions are set on an image showing a shape of a road, symbols being placed at the respective positions. The location measuring module measures a current location. The communication module transmits the current location to an external communication apparatus and receives navigation information on a navigation point corresponding to the current location, the navigation information including a simplified diagram template identification number, symbol identification numbers, and position specification numbers. The navigation image generating module generates the navigation image by reading the simplified diagram template and the image data of the symbols, and placing the image data at positions on the simplified diagram template.
    • 根据一个实施例,电子设备包括存储模块,位置测量模块,通信模块和导航图像生成模块。 存储模块存储对应于各个符号的图像数据,并且将每个位置中的简化图形模板的数据设置在示出道路形状的图像上,将符号放置在各个位置。 位置测量模块测量当前位置。 通信模块将当前位置发送到外部通信装置,并且在与当前位置对应的导航点上接收导航信息,导航信息包括简化图表模板识别号码,符号识别号码和位置指定号码。 导航图像生成模块通过读取简化图形模板和符号的图像数据,并将图像数据放置在简化图形模板上的位置来生成导航图像。
    • 9. 发明授权
    • Optical pickup device and optical disc drive
    • 光学拾取装置和光盘驱动器
    • US07739703B2
    • 2010-06-15
    • US11670047
    • 2007-02-01
    • Satoshi AraiHiroaki FuruichiYoshio OozekiRika NomuraKazumi Takahashi
    • Satoshi AraiHiroaki FuruichiYoshio OozekiRika NomuraKazumi Takahashi
    • G11B7/08
    • G11B7/12B29C65/1406B29C65/4835B29C65/4845B29C65/52B29C65/54B29C2035/0827B29K2081/04G11B7/22G11B33/1406
    • An optical pickup device having an optical module provided with an optical element and bonded and fixed to an optical pickup case, wherein the optical module is fixed to the optical pickup case by a first ultraviolet curing adhesive at at least two positions with an optical axis between the positions, the optical axis extending from the optical element to the optical pickup case, and at least a part of an exposed surface of the first ultraviolet curing adhesive is covered with a second ultraviolet curing adhesive higher in hardness or elastic modulus than the first ultraviolet curing adhesive to diminish an optical axis offset of the optical pickup device, further, a heat dissipating material higher in thermal conductivity than the first and second ultraviolet curing adhesives is brought into contact with both optical module and optical pickup case to improve the heat dissipating performance of the optical pickup device.
    • 一种光学拾取装置,具有设置有光学元件并被固定到光学拾取器壳体上的光学模块,其中所述光学模块通过第一紫外线固化粘合剂在至少两个位置处固定到所述光学拾取器壳体上, 位置,从光学元件延伸到光学拾取器壳体的光轴以及第一紫外线固化粘合剂的暴露表面的至少一部分被第二紫外线固化粘合剂覆盖,硬度或弹性模量比第一紫外线 固化粘合剂以减少光学拾取装置的光轴偏移,此外,与第一和第二紫外线固化粘合剂相比,导热性高的散热材料与光学模块和光学拾取器壳体接触以提高散热性能 的光拾取装置。
    • 10. 发明授权
    • Method for image processing and image processing apparatus
    • 图像处理方法及图像处理装置
    • US07728860B2
    • 2010-06-01
    • US11502853
    • 2006-08-10
    • Shinya KawaharaYoshihiko HottaSatoshi Arai
    • Shinya KawaharaYoshihiko HottaSatoshi Arai
    • B41J2/435
    • B41J2/471B41J2/315B41J2/4753
    • It is an object of the present invention to provide a method for image processing and an image processing apparatus which are capable of performing repetitive forming and erasing of high-contrast images at high speeds by forming high-density, uniform images and uniformly erasing images in a short period of time, and in addition, suppressing the degradation of the thermoreversible recording medium due to repetitive forming and erasing is possible. The method for image processing of the present invention contains at least any one of image forming step wherein an image is formed on a thermoreversible recording medium in which any one of transparency and color tone is changed reversibly depending on temperatures by heating due to laser beam irradiation, and image erasing step wherein an image formed on the thermoreversible recording medium is erased by heating due to laser beam irradiation to the thermoreversible recording medium, and a light irradiation intensity of the center is equal to or less than the light irradiation intensity of the periphery in the light intensity distribution of cross-section in a direction approximately perpendicular to the traveling direction of the laser beam irradiated at least in any one of the image forming step and the image erasing step.
    • 本发明的目的是提供一种用于图像处理的方法和图像处理装置,其能够通过形成高密度均匀的图像并均匀地擦除图像中的图像,从而高速重复地形成和擦除高对比度图像 并且另外抑制由于重复形成和擦除导致的热可逆记录介质的劣化是可能的。 本发明的图像处理方法至少包括图像形成步骤中的任何一个,其中在热可逆记录介质上形成图像,其中透明度和色调中的任何一个根据激光束照射由加热引起的温度可逆地改变 以及图像擦除步骤,其中通过激光束照射到热可逆记录介质上而通过加热擦除形成在热可逆记录介质上的图像,并且中心的光照射强度等于或小于外围的光照射强度 在与至少在图像形成步骤和图像擦除步骤中的任一个中照射的激光束的行进方向大致垂直的方向上的横截面的光强度分布。