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    • 84. 发明公开
    • Discharge lamp driving apparatus
    • Vorrichtung zum Betreiben einer Entladungslampe
    • EP1566991A1
    • 2005-08-24
    • EP05250886.8
    • 2005-02-16
    • Minebea Co. Ltd.
    • Matsushima, Mitsuo, c/o Minebea Co., Ltd.Nishibori Kohei, c/o Minebea Co., Ltd.
    • H05B41/24
    • H05B41/2827Y10S315/07
    • A discharge lamp driving apparatus comprises a DC power supply, a control circuit, switching elements, a step-up transformer, and a lamp current controlling circuit. In the discharge lamp driving apparatus, the secondary side of the step-up transformer is connected to multiple discharge lamps respectively via variable inductance elements, a series resonant circuit is constituted by a capacitor provided between the variable inductance element and the discharge lamp, leakage inductance of the step-up transformer, and inductance of the variable inductance element, and an output of the lamp current controlling circuit is connected to the variable inductance element, wherein the inductance of the variable inductance element is varied thereby controlling the lamp current of the discharge lamp.
    • 放电灯驱动装置包括直流电源,控制电路,开关元件,升压变压器和灯电流控制电路。 在放电灯驱动装置中,升压变压器的次级侧通过可变电感元件分别连接到多个放电灯,串联谐振电路由设置在可变电感元件和放电灯之间的电容器构成,漏电感 升压变压器的电感和可变电感元件的电感,并且灯电流控制电路的输出连接到可变电感元件,其中可变电感元件的电感变化,从而控制放电的灯电流 灯。
    • 89. 发明公开
    • CATHEPSIN-ASSOCIAGED GENETICALLY MODIFIED NONHUMAN MAMMAL
    • 麻省理工学院药剂师,遗传学家,维生素SÄUGETIERNICHTMENSCHLICHESSÄUGETIER
    • EP1532861A1
    • 2005-05-25
    • EP03723398.8
    • 2003-05-26
    • Kyushu TLO Company, Limited
    • Yamamoto, KenjiNakayama, Keiichi
    • A01K67/027C12N9/64C12N15/12C12N15/63
    • C12N15/8509A01K67/0276A01K2217/075A01K2227/105A01K2267/03C12N9/6472C12N9/6478
    • Disclosed are a cathepsin E gene and a non-human mammalian animal with the cathepsin E-associated gene altered. The cathepsin E-associated gene and the DNA fragment thereof have each a base sequence or a partial amino acid sequence as identified by SEQ ID #1. The cathepsin E-associated gene-altered non-human mammalian animal according to the present invention, such as a cathepsin E-associated gene-altered mouse or the like, has the functions of the cathepsin E-associated gene by performing homologous recombination with a targeting vector having two homologous recombination regions, the first homologous recombination region being composed of a DNA fragment of approximately 1.2 kbp present on the 5'-upstream side of exon 1 and the second homologous recombination region being composed of a DNA fragment of approximately 7.0 kbp present on the 3'-downstream side of exon 4. The cathepsin E-associated gene-altered non-human mammalian animals according to the present invention can be used effectively for clarification of allergic diseases such as atopic dermatitis and so on as well as their disease conditions, and they are expected to be utilized as an experimental animal model for use with experiments on learning disabilities or memory impairments or acceleration of fighting episodes. Moreover, the cathepsin E-associated gene-altered non-human mammalian animal of the present invention is expected to be useful for the elucidation of the physiological functions about stress because it has a very high sensitiveness against stress.
    • 披露了组织蛋白酶E基因和组织蛋白酶E相关基因改变的非人哺乳动物。 组织蛋白酶E相关基因及其DNA片段各具有由SEQ ID#1鉴定的碱基序列或部分氨基酸序列。 根据本发明的组织蛋白酶E相关基因改变的非人哺乳动物,例如组织蛋白酶E相关基因改变的小鼠等,通过与组织蛋白酶E相关基因改变的小鼠等进行同源重组,具有组织蛋白酶E相关基因的功能 具有两个同源重组区的靶向载体,第一同源重组区由存在于外显子1的5'-上游侧的约1.2kbp的DNA片段组成,第二同源重组区由约7.0kbp的DNA片段组成 存在于外显子4的3'-下游侧。根据本发明的组织蛋白酶E相关基因改变的非人哺乳动物可以有效地用于澄清过敏性疾病如特应性皮炎等,以及它们 疾病状况,预计将被用作实验动物模型,用于学习障碍或记忆障碍的实验 或加剧战斗情节。 此外,预期本发明的组织蛋白酶E相关基因改变的非人哺乳动物对于解释应激的生理功能是有用的,因为它对应激具有非常高的敏感性。
    • 90. 发明公开
    • Tandem rotation detector
    • 串联Umdrehungsdetektor
    • EP1524510A1
    • 2005-04-20
    • EP04256172.0
    • 2004-10-06
    • MINEBEA CO., LTD.
    • Matsuura, Mutsumi c/o Minebea Co., Ltd
    • G01L3/10B62D6/10G01L5/22
    • B62D6/10G01L3/105G01L3/109
    • A tandem rotation detector capable of reducing the influence of leakage flux between rotation angle detection mechanisms so that high-precision detection can be always done under normal magnetic field environments includes a first rotation detection mechanism 2A configured to generate a magnetic flux through a coil 11A of a first outer core 10A mounted inside a cylindrical housing 1 for detecting the rotation angle of a rotary shaft 4A arranged in the central portion of the housing 1, and a second rotation detection mechanism 2B, placed side by side with the first rotation detection mechanism 2A, configured to generate a magnetic flux through a coil 11B of a second outer core 10B mounted inside the housing 1 for detecting the rotation angle of a rotary shaft 4B arranged in the central portion of the housing in series with the rotary shaft 4A, in which the housing 1 is formed from a nonmagnetic material.
    • 一种能够减小旋转角度检测机构之间的漏磁通的影响的串联旋转检测器,使得在正常磁场环境下可以始终进行高精度检测,包括:第一旋转检测机构2A,其被配置为产生通过线圈11A的磁通量 安装在圆柱形壳体1内用于检测设置在壳体1的中心部分的旋转轴4A的旋转角度的第一外芯10A和与第一旋转检测机构2A并排放置的第二旋转检测机构2B 被配置为通过安装在壳体1内的第二外芯10B的线圈11B产生磁通量,用于检测与旋转轴4A串联布置在壳体的中心部分中的旋转轴4B的旋转角度,其中 壳体1由非​​磁性材料形成。