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    • 1. 发明授权
    • Camera
    • 相机
    • US06542701B2
    • 2003-04-01
    • US09840222
    • 2001-04-23
    • Kunio YokoyamaYuji KobayashiHitoshi Yagi
    • Kunio YokoyamaYuji KobayashiHitoshi Yagi
    • G03B1702
    • G03B17/02
    • This camera is a camera having a compartment for loading and storing various members with a predetermined sheet member attached along the inner wall face of the compartment, in which the sheet member is attached at a predetermined position by a very easy and inexpensive means while assuring good operability during the assembly operation and the disassembly operation, comprising a camera main body where an aperture section is formed at a visible position and a sheet member which is attached by elastic deformation without gluing for covering the aperture section, to be attached/removed easily. With such construction, a camera which can contribute to making the manufacturing process efficient and decreasing the manufacturing cost can be provided.
    • 该相机是具有用于装载和存储具有沿着隔室的内壁面附接的预定片材的各种构件的隔间的照相机,其中片状构件通过非常容易和廉价的方式附接在预定位置,同时确保良好 在组装操作和拆卸操作期间的可操作性,包括在可见位置处形成开口部的相机主体和通过弹性变形而附着的片状部件,而不会粘合以覆盖孔部,以便容易地附接/移除。 通过这样的结构,可以提供可以有助于使制造工艺有效并降低制造成本的照相机。
    • 4. 发明授权
    • Apparatus and method for image formation with a liquid developer
    • 用液体显影剂成像的装置和方法
    • US06725006B2
    • 2004-04-20
    • US10460182
    • 2003-06-13
    • Masahiro HosoyaHitoshi YagiYasushi ShinjoHaruhi Oh-Oka
    • Masahiro HosoyaHitoshi YagiYasushi ShinjoHaruhi Oh-Oka
    • G03G1510
    • G03G15/0121
    • Image forming apparatus which form an image on a substrate and uses a liquid developer containing toner particles and a solvent. One embodiment includes a latent image retaining body, a first developing surface facing the latent image retaining body at a first development station, a latent image forming unit, and a second developing surface facing the latent image retaining body at a second development station. The latent image retaining body has a photosensitive layer which has a dielectric constant &egr;P [C2/Nm2] and an average thickness dp [m]. The photosensitive layer retains an image developed by the first developing surface and a latent image comprising image and non-image regions formed by the latent image forming unit. The second developing surface is supplied with a developing electrical potential having an electrical potential difference &Dgr;V from an electrical potential of non-image region of the latent image. The plurality of toner particles of the first liquid developer has a volume density &rgr;m[kg/m3], a surface density mr[kg/m2], a dielectric constant &egr;r [C2/Nm2], an average radius r [m], and a density of electrical charge qr[C/kg], and the image developed on the latent image retaining body by the first developing surface has an average thickness dr [m] at the second development station. The second liquid developer has an average thickness dt [m] at the second development station and a dielectric constant &egr;t [C2/Nm2], wherein following equations are satisfied, 1 × 10 - 11 ⁡ [ N ] ≤ 4 ⁢   ⁢ π ⁢   ⁢ r 3 ⁢ ρ m ⁢ q r 3 ⁢ ( - q r ⁢ m r ϵ r ⁢ d r ⁢ ( d r - 1 A ⁢ d r m r ⁢ ( - Δ ⁢   ⁢ V q r + ( d r 2 ⁢   ⁢ ϵ r + d t ϵ t ) ⁢ m r ) ) ) ≤ 8 × 10 - 9 ⁡ [ N ] , and ⁢   ⁢ A = d p ϵ p + d r ϵ r + d t ϵ t .
    • 在基板上形成图像并使用含有调色剂颗粒和溶剂的液体显影剂的图像形成装置。 一个实施例包括潜像保持体,在第一显影台处面对潜像保持体的第一显影表面,潜像形成单元和在第二显影站处面对潜像保持体的第二显影表面。 潜像保持体具有介电常数εP[C 2 / Nm 2]和平均厚度dp [m]的感光层。 感光层保持由第一显影表面显影的图像和包括由潜像形成单元形成的图像和非图像区域的潜像。 向第二显影表面供给具有与潜像的非图像区域的电势相差电位差ΔVa的显影电位。 第一液体显影剂的多个调色剂颗粒的体积密度rhom [kg / m 3],表面密度mr [kg / m 2],介电常数ε[C 2 / Nm 2 >],平均半径r [m]和电荷密度qr [C / kg],由第一显影面在潜像保持体上显影的图像在第二显影面上具有平均厚度dr [m] 开发站。 第二液体显影剂在第二显影台具有平均厚度dt [m]和介电常数εil[C 2 / Nm 2],其中满足以下等式:
    • 5. 发明授权
    • Nozzle-type analysis apparatus
    • 喷嘴式分析装置
    • US5478526A
    • 1995-12-26
    • US282469
    • 1994-07-29
    • Tadashi SakaiHitoshi Yagi
    • Tadashi SakaiHitoshi Yagi
    • G01N27/00G01N27/28G01N27/414G01N35/10G01N33/00
    • G01N35/1016G01N2035/1023G01N2035/1055G01N2035/1062G01N27/414
    • A nozzle-type analysis apparatus for sucking a sample solution in a sample vessel for analyzing the sample solution. A sample suction nozzle for sucking the sample solution stored in the sample vessel and a solution component sensor having a sensor forming portion formed integrally with a front end portion of the sample suction nozzle to be inserted into the sample vessel are provided. The integral structure of the sample suction nozzle and the solution component sensor has a size capable of being inserted into the sample vessel, the solution component sensor having a sensor output portion effected with a water-resistant insulation layer. A hydrophobic film is further formed on the surface of the sensor a coat treatment. A sample flow shut-out valve is disposed in the sample flow passage at a portion between the front end of the sample suction nozzle and the sensor forming portion of the solution component sensor.
    • 一种用于在样品容器中吸取样品溶液以分析样品溶液的喷嘴型分析装置。 提供了用于吸取存储在样品容器中的样品溶液的样品吸嘴,以及具有与样品吸嘴的前端部一体形成的传感器形成部的溶液成分传感器,插入到样品容器中。 样品吸嘴和溶液成分传感器的整体结构具有能够插入样品容器中的尺寸,溶液成分传感器具有用防水绝缘层实现的传感器输出部分。 在传感器的表面上进一步形成疏水膜,进行涂层处理。 在样品流动通道中,在样品吸嘴的前端和溶液成分传感器的传感器形成部分之间的部分设置有样品流动截止阀。
    • 6. 发明授权
    • Uncooled infrared image sensor
    • 未冷却的红外图像传感器
    • US08338902B2
    • 2012-12-25
    • US13050512
    • 2011-03-17
    • Honam KwonHideyuki FunakiHiroto HondaHitoshi YagiIkuo FujiwaraMasaki AtsutaKazuhiro SuzukiKeita SasakiKoichi Ishii
    • Honam KwonHideyuki FunakiHiroto HondaHitoshi YagiIkuo FujiwaraMasaki AtsutaKazuhiro SuzukiKeita SasakiKoichi Ishii
    • H01L31/024
    • H01L27/14649G01J5/007G01J5/20G01J2005/068
    • An uncooled infrared image sensor according to an embodiments includes: a plurality of pixel cells formed in a first region on a semiconductor substrate; a reference pixel cell formed in a second region on the semiconductor substrate and corresponding to each row or each column of the pixel cells; a supporting unit formed for each of the pixel cell and supporting a corresponding pixel cell; and an interconnect unit formed for each reference pixel cell. Each of the pixel cells includes: a first infrared absorption film and a first heat sensitive element. The reference pixel cell includes: a second infrared absorption film and a second heat sensitive element, the second heat sensitive element having the same characteristics as characteristics of the first heat sensitive element. The third and fourth interconnects of the interconnect unit have the same electrical resistance as electrical resistance of the first and second interconnects of the supporting unit.
    • 根据实施例的非制冷红外图像传感器包括:形成在半导体衬底上的第一区域中的多个像素单元; 形成在所述半导体衬底上的与所述像素单元的每列或每列相对应的所述半导体衬底上的第二区域中的参考像素单元; 为每个像素单元形成的支撑单元,并支撑相应的像素单元; 以及为每个参考像素单元形成的互连单元。 每个像素单元包括:第一红外线吸收膜和第一热敏元件。 参考像素单元包括:第二红外线吸收膜和第二热敏元件,第二热敏元件具有与第一热敏元件的特性相同的特性。 互连单元的第三和第四互连具有与支撑单元的第一和第二互连的电阻相同的电阻。
    • 9. 发明授权
    • Transportable waste collection and treatment toilet system
    • 运输垃圾收集和处理厕所系统
    • US06178566B2
    • 2001-01-30
    • US09203157
    • 1998-12-10
    • Hitoshi Yagi
    • Hitoshi Yagi
    • E03D5016
    • C02F3/1242C02F2103/005E03D7/00Y02W10/15
    • A toilet housing and waste collection and treatment system purify wastewater to a satisfactory level. When solid wastes are conveyed from individual toilets (31)-(33) into an active circulation chamber (16) in a toilet housing (10), the solid wastes are subjected to air exposure treatments in the active circulation chamber (16). The wastewater exposed to air in the active circulation chamber (16) is then purified through a three-phase flowing structure in first and second active water chambers (51) and (52), with the three-phase flowing structure including water, air, and carrier particles containing aerobic microorganisms. The wastewater so treated flows into first and second sediment separation chambers (53) and (54) where solid wastes are settled down and separated from the wastewater. The treated water is then supplied to a water reservoir (56) which in turns supplies the water to the respective toilets (31)-(33). Sediment settled at the bottom of the respective sediment separation chambers is fed and stored in a sediment storage chamber (55).
    • 厕所住房和废物收集处理系统将废水净化至令人满意的水平。 当将固体废物从马桶(31) - (33)输送到马桶壳体(10)中的活动循环室(16)中时,固体废物在活性循环室(16)中进行空气曝光处理。 然后,在主动循环室(16)中暴露于空气中的废水通过第一和第二活性水室(51)和(52)中的三相流动结构进行净化,三相流动结构包括水,空气, 和含有需氧微生物的载体颗粒。 如此处理的废水流入第一和第二沉淀物分离室(53)和(54),其中固体废物沉降并与废水分离。 然后将经处理的水供应到储水器(56),储水器(56)又将水供应到相应的厕所(31) - (33)。 沉积在各沉积物分离室底部的沉积物进料并储存在沉积物储存室(55)中。