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    • 3. 发明授权
    • Radiation detector
    • 辐射检测器
    • US09360566B2
    • 2016-06-07
    • US13552074
    • 2012-07-18
    • Tatsuya SaitoTatsuya IwasakiNobuhiro YasuiToru Den
    • Tatsuya SaitoTatsuya IwasakiNobuhiro YasuiToru Den
    • G01T1/20G01T1/202G21K4/00
    • G01T1/202G01T1/2008G21K4/00G21K2004/04G21K2004/06
    • Provided is a radiation detector, including: a two-dimensional light receiving element including a plurality of pixels; and a scintillator layer having multiple scintillator crystals two-dimensionally arranged on a light receiving surface of the two-dimensional light receiving element, in which: the scintillator crystal includes two crystal phases, which are a first crystal phase including a material including a plurality of columnar crystals extending in a direction perpendicular to the light receiving surface of the two-dimensional light receiving element and having a refractive index n1, and a second crystal phase including a material existing between the plurality of columnar crystals and having a refractive index n2; and a material having a refractive index n3 is placed between adjacent scintillator crystals, the refractive index n3 satisfying a relationship of one of n1≦n3≦n2 and n2≦n3≦n1.
    • 提供一种辐射检测器,包括:包括多个像素的二维光接收元件; 以及具有二维配置在二维光接收元件的受光面上的多个闪烁器晶体的闪烁器层,其中:所述闪烁体晶体包括两个晶相,所述晶体相是包括包含多个 柱状晶体在垂直于二维光接收元件的光接收表面的方向上延伸并具有折射率n1,第二晶相包括存在于多个柱状晶体之间并具有折射率n2的材料; 折射率n3的材料被放置在相邻的闪烁体晶体之间,折射率n3满足n1和n1E之间的关系; n3和n1E; n2和n2和n1E之间的关系; n3和n1E; n1。
    • 4. 发明授权
    • Engine control apparatus
    • 发动机控制装置
    • US08672809B2
    • 2014-03-18
    • US13242423
    • 2011-09-23
    • Tatsuya SaitoNobuhiko ShimaTetsuo Morita
    • Tatsuya SaitoNobuhiko ShimaTetsuo Morita
    • B60W10/04B60W10/18
    • F02N11/0822F02D17/02F02N2200/0801F02N2200/102Y02T10/48
    • An engine control apparatus capable of performing engine automatic stop includes an engine automatic stop inhibition means configured to inhibit the engine automatic stop after engine restart conditions are satisfied and the engine is restarted until a vehicle speed exceeds a predetermined speed, a brake operation detection means configured to detect a presence of increase of the amount of a brake operation in a state of the brake operation being performed after the vehicle has been stopped, and an engine stop control means configured to release inhibition of the engine automatic stop to allow the engine to be automatically stopped, if the brake operation detection means detects presence of increase of the amount of the brake operation while the engine automatic stop is inhibited by the engine automatic stop inhibition means.
    • 能够执行发动机自动停止的发动机控制装置包括:发动机自动停止禁止装置,其被配置为在发动机重起状态满足之后禁止发动机自动停止,并且发动机重新启动直到车速超过预定速度;制动操作检测装置构造 检测在车辆停止后进行的制动操作的状态下是否存在制动器操作量的增加;以及发动机停止控制装置,其被配置为释放禁止发动机自动停止以允许发动机为 如果发动机自动停止禁止装置禁止发动机自动停止,则制动操作检测装置检测到制动操作量增加的存在。
    • 7. 发明授权
    • Radiation-detecting device and method of manufacturing same
    • 辐射检测装置及其制造方法
    • US08138011B2
    • 2012-03-20
    • US13072579
    • 2011-03-25
    • Tatsuya SaitoRyoko HorieNobuhiro YasuiToru Den
    • Tatsuya SaitoRyoko HorieNobuhiro YasuiToru Den
    • H01L21/00
    • H01L31/115G01T1/202H01L31/18
    • A method of manufacturing a radiation-detecting device including spaced first columnar scintillators, second columnar scintillators which are located between the neighboring first columnar scintillators and which are spaced from the first columnar scintillators, and photodetecting elements overlapping with the first columnar scintillators includes a step of preparing the substrate such that the substrate has a surface having an uneven section having protruding portions and a plurality of spaced flat sections surrounded by the uneven section and also includes a step of forming the first columnar scintillators and the second columnar scintillators on the flat sections and the protruding portions, respectively, by depositing a scintillator material on the substrate having the uneven section and the flat sections. The uneven section has recessed portions and satisfies the following inequality: h/d≧1 where h is the depth of each recessed portion and d is the distance between the protruding portions.
    • 一种制造包括间隔开的第一柱状闪烁体的放射线检测装置的方法,位于相邻的第一柱状闪烁体之间并与第一柱状闪烁体间隔开的第二柱状闪烁体和与第一柱状闪烁体重叠的光检测元件包括以下步骤: 制备所述基板,使得所述基板具有具有突出部分的不平坦部分的表面和由所述不平坦部分包围的多个间隔开的平坦部分,并且还包括在所述平坦部分上形成所述第一柱状闪烁体和所述第二柱状闪烁体的步骤,以及 分别通过在具有不平坦部分的基底和平坦部分上沉积闪烁体材料而形成突出部分。 凹凸部具有凹部,满足以下不等式:h /d≥1其中h为每个凹部的深度,d为突出部之间的距离。
    • 10. 发明授权
    • Rack and pinion type power steering apparatus
    • 齿条式动力转向装置
    • US07926378B2
    • 2011-04-19
    • US11082299
    • 2005-03-17
    • Tatsuya SaitoYukio TajimaYoshio Onoguchi
    • Tatsuya SaitoYukio TajimaYoshio Onoguchi
    • F16H1/04
    • B62D3/12F16C29/02Y10T74/18776Y10T74/19623Y10T74/1967
    • A rack shaft is supported in an inner peripheral portion of a tubular housing of a gear housing via a rack bush. An inner peripheral portion of the rack bush is formed as a peripheral surface approximately similar to a circle in which a peripheral surface constituted by a large circular arc and a peripheral surface constituted by a small circular arc are continuously provided. The rack shaft is not in contact with the peripheral surface constituted by the large circular arc, and the peripheral surface constituted by the small circular arc is formed as a support portion of the rack shaft. The support of the rack shaft by the peripheral surface constituted by the small circular arc is not accomplished when a load applied to the rack shaft is nothing or low, but is accomplished when the load is high. Further, an engaging convex portion acting as a positioning and rotation prevention for the bush is provided in an outer peripheral portion of the rack bush.
    • 齿条轴通过齿条衬套支撑在齿轮壳体的管状壳体的内周部分中。 齿条衬套的内周部形成为与由大圆弧构成的周面和由小圆弧构成的周面连续地设置的圆的大致相似的圆周面。 齿条轴不与由大圆弧构成的圆周面接触,由小圆弧构成的周面形成为齿条轴的支撑部。 当施加到齿条轴的负载没有或低的时候,由小圆弧构成的圆周表面的齿条轴的支撑不能实现,而是在负载高时实现的。 此外,在齿条衬套的外周部设置有用作衬套的定位和旋转防止的接合凸部。