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    • 5. 发明授权
    • Sodium bicarbonate cotransporter protein
    • 碳酸氢钠协同转运蛋白
    • US06723522B1
    • 2004-04-20
    • US09868572
    • 2001-06-20
    • Hiroyuki KimuraTomohiro KawamotoHidekazu Sawada
    • Hiroyuki KimuraTomohiro KawamotoHidekazu Sawada
    • C07N1400
    • C07K14/47A61K38/00
    • The present invention relates to a protein having a Na+—HCO3− cotransporter activity and a DNA encoding it. The present protein and the present DNA can be used as or for [1] obtaining an antibody and antiserum, [2] constructing an expression system for the present protein, [3] development of a system for measuring the activity of a Na+—HCO3− cotransporter and screening of a drug candidate compound using the same expression system, [4] performing drug design based on the steric structure of a Na+—HCO3− cotransporter protein, [5] a reagent for making a probe or a PCR primer in gene diagnosis, [6] making a transgenic animal, or [7] a composition for gene prevention and/or treatment.
    • 本发明涉及具有Na + HCO 3 - 共转运蛋白活性的蛋白质和编码其的DNA。本发明的蛋白质和本发明的DNA可用作[1]获得抗体和抗血清[2 ]构建本发明蛋白质的表达系统,[3]开发用于测量Na + -HCO 3 - 共转运蛋白活性的系统,并使用相同的表达系统筛选候选药物[4] 基于Na + - HCO 3 - 共转运蛋白的空间结构的药物设计,[5]用于在基因诊断中制备探针或PCR引物的试剂,[6]制备转基因动物,或[7] 用于基因预防和/或治疗的组合物。
    • 6. 发明授权
    • Multilayer piezoelectric element and injector using the same
    • 多层压电元件和注射器使用相同
    • US08441174B2
    • 2013-05-14
    • US11917747
    • 2006-06-15
    • Takeshi OkamuraMasaki TerazonoTomohiro KawamotoTakafumi TsurumaruShigenobu NakamuraKen Yamamoto
    • Takeshi OkamuraMasaki TerazonoTomohiro KawamotoTakafumi TsurumaruShigenobu NakamuraKen Yamamoto
    • H01L41/083
    • H01L41/0838B05B17/0653F02M51/0603H01L41/0471H01L41/0477
    • In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers are stacked alternately, the plurality of metal layers include a plurality of low-filled metal layers having a lower filling rate of metal composing the metal layers than oppositely disposed metal layers adjacent to each other in a stacking direction. In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers are stacked alternately, the plurality of metal layers include a plurality of thin metal layers having a smaller thickness than oppositely disposed metal layers adjacent to each other in a stacking direction. In a multilayer piezoelectric element in which a plurality of piezoelectric layers and a plurality of metal layers composed mainly of an alloy are stacked alternately, the plurality of metal layers include a plurality of high-ratio metal layers having a higher ratio of a component constituting the alloy than oppositely disposed metal layers adjacent to each other in a stacking direction.
    • 在其中多个压电层和多个金属层交替堆叠的多层压电元件中,多个金属层包括多个低填充金属层,其中构成金属层的金属填充率低于相对设置的金属层 在层叠方向上彼此相邻的金属层。 在其中多个压电层和多个金属层交替堆叠的多层压电元件中,多个金属层包括多个薄金属层,其厚度相对于彼此相邻布置的金属层的厚度小于堆叠 方向。 在其中多个压电层和主要由合金构成的多个金属层交替堆叠的多层压电元件中,多个金属层包括多个高比例的金属层,其中构成 合金比层叠方向上彼此相邻的相对设置的金属层。
    • 8. 发明授权
    • Piezoelectric ceramic composition
    • 压电陶瓷组合物
    • US5648012A
    • 1997-07-15
    • US577204
    • 1995-12-21
    • Makoto HigashibeppuTomohiro KawamotoTomonori EguchiKenichi YoshimuraKatsuhiko OnitsukaHarumi Hayashi
    • Makoto HigashibeppuTomohiro KawamotoTomonori EguchiKenichi YoshimuraKatsuhiko OnitsukaHarumi Hayashi
    • C04B35/491H01L41/187C04B35/49
    • C04B35/491H01L41/187
    • A piezoelectric ceramic composition comprising a perovskite compound which contains, as metal components, Pb, Sr, Zr, Ti, Nb, Cr, Y, Co and at least one element selected from La, Gd, Nd, Sm and Pr, and may further contain Sb or Na, wherein when the composition formula is expressed as,(Pb.sub.1-x-.alpha.-y Sr.sub.x Na.sub..alpha. M.sub.y).sub.a [(Nb.sub.b Y.sub.c Cr.sub.d Co.sub.e Sb.sub..beta.).sub.f Ti.sub.g Zr.sub.1-f-g ]O.sub.3,wherein M is at least one element selected from La, Gd, Nd, Sm and Pr, then, x, y, a, b, c, d, e, f, g, .alpha. and .beta. satisfy the following relationships, 0.005.ltoreq.x.ltoreq.0.08, 0.002.ltoreq.y.ltoreq.0.05, 0.95.ltoreq.a.ltoreq.1.05, 0.47.ltoreq.b.ltoreq.0.70, 0.02.ltoreq.c.ltoreq.0.31, 0.11.ltoreq.d.ltoreq.0.42, 0.01.ltoreq.e.ltoreq.0.12, 0.02.ltoreq.f.ltoreq.0.15, 0.46.ltoreq.g.ltoreq.0.52, 0.ltoreq..alpha..ltoreq.0.005, 0.ltoreq..beta..ltoreq.0.13, and b+c+d+e+.beta.=1.00. The piezoelectric ceramic composition of the present invention exhibits a high electromechanical coupling coefficient Kp, a low mechanical quality factor Qm, a low dielectric constant .epsilon.r, excellent heat resistance, and can be preferably used as a piezoelectric part for being mounted on the surface and, particularly, as a digital piezoelectric.
    • 一种包含钙钛矿化合物的压电陶瓷组合物,其包含Pb,Sr,Zr,Ti,Nb,Cr,Y,Co和选自La,Gd,Nd,Sm和Pr中的至少一种元素作为金属成分,并且还可以进一步 含有Sb或Na,其中当组成式表示为(Pb1-x-α-ySrxNaαMy)a [(NbbYcCrdCoeBb)fTigZr1-fg] O3时,其中M为选自La,Gd, Nd,Sm和Pr,则x,y,a,b,c,d,e,f,g,α和β满足以下关系:0.005≤x≤0.08,0.002< /=0.05,0.95
    • 9. 发明授权
    • Exposure apparatus, control method thereof, and image forming apparatus
    • 曝光装置及其控制方法和图像形成装置
    • US08520042B2
    • 2013-08-27
    • US13014284
    • 2011-01-26
    • Tomohiro Kawamoto
    • Tomohiro Kawamoto
    • B41J2/435B41J2/47
    • G03G15/043G03G2215/0404
    • The invention provides an exposure apparatus having a configuration such that, when a single laser light source having a plurality of light-emitting points is driven by a plurality of laser control apparatuses, mutual monitoring of the control state of the respective laser control apparatuses is possible, thus reducing malfunctions due to the effects of noise, and also provides a method to control this exposure apparatus, and an image forming apparatus. To accomplish this, the exposure apparatus does not execute light amount control of the light source to be driven when the determination unit has determined that another driving unit is causing the light source to be driven to emit light, and executes the light amount control of the light source to be driven when the determination unit has determined that another driving unit is not causing the light source to be driven to emit light.
    • 本发明提供一种曝光装置,其具有以下结构:当具有多个发光点的单个激光光源被多个激光控制装置驱动时,可以相互监视各激光控制装置的控制状态 ,从而减少由噪声的影响引起的故障,并且还提供了一种控制该曝光装置的方法和图像形成装置。 为了实现这一点,当确定单元确定另一个驱动单元正在使光源被驱动发光时,曝光设备不执行要驱动的光源的光量控制,并且执行 当确定单元确定另一驱动单元不使光源被驱动以发光时,要驱动的光源。
    • 10. 发明申请
    • EXPOSURE APPARATUS, CONTROL METHOD THEREOF, AND IMAGE FORMING APPARATUS
    • 曝光装置,其控制方法和图像形成装置
    • US20110182603A1
    • 2011-07-28
    • US13014284
    • 2011-01-26
    • Tomohiro Kawamoto
    • Tomohiro Kawamoto
    • G03G15/043
    • G03G15/043G03G2215/0404
    • The invention provides an exposure apparatus having a configuration such that, when a single laser light source having a plurality of light-emitting points is driven by a plurality of laser control apparatuses, mutual monitoring of the control state of the respective laser control apparatuses is possible, thus reducing malfunctions due to the effects of noise, and also provides a method to control this exposure apparatus, and an image forming apparatus. To accomplish this, the exposure apparatus does not execute light amount control of the light source to be driven when the determination unit has determined that another driving unit is causing the light source to be driven to emit light, and executes the light amount control of the light source to be driven when the determination unit has determined that another driving unit is not causing the light source to be driven to emit light.
    • 本发明提供一种曝光装置,其具有以下结构:当具有多个发光点的单个激光光源被多个激光控制装置驱动时,可以相互监视各激光控制装置的控制状态 ,从而减少由噪声的影响引起的故障,并且还提供了一种控制该曝光装置的方法和图像形成装置。 为了实现这一点,当确定单元确定另一驱动单元正在使光源被驱动发光时,曝光设备不执行要驱动的光源的光量控制,并且执行 当确定单元确定另一个驱动单元不使光源被驱动以发光时,要驱动的光源。