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    • 2. 发明授权
    • Apparatus for controlling automatic stop and restart of engine
    • 用于控制发动机自动停机和重启的装置
    • US08834321B2
    • 2014-09-16
    • US13087938
    • 2011-04-15
    • Tatsuya SaitoTakashi SatohSatoru MizunoYosuke OhmoriMasayoshi Takeda
    • Tatsuya SaitoTakashi SatohSatoru MizunoYosuke OhmoriMasayoshi Takeda
    • B60W10/06B60W10/18B60W30/192B60W30/18F02N11/08B60W10/184
    • B60W10/06B60W10/184B60W30/18072B60W30/18136B60W30/192B60W2510/0671B60W2540/12F02N11/0833F02N11/084F02N2200/0805Y02T10/48Y10T477/81
    • An apparatus for controlling automatic stop/restart of an engine, includes: an automatic-stop/restart-control-unit which stops/restarts the engine; a brake-pressure-detection-unit which detects brake pressure in a brake system and controls the brake pressure to perform anti-skid control; a first-determination-unit which determines whether the brake pressure is not less than a first-threshold; a second-determination-unit which determines whether the brake pressure is not less than a second-threshold larger than the-first threshold; a stop-allowing-unit which allows the automatic-stop/restart-control-unit to stop the engine while the engine operates, when the first-determination-unit determines that the brake pressure is not less than the first-threshold and the second-determination-unit determines that the brake pressure is less than the second-threshold; and a stop-inhibiting-unit which inhibits the automatic-stop/restart-control-unit from stopping the engine while the engine operates, when the-first-determination-unit determines that the brake pressure is less than the first-threshold and the second-determination-unit determines that the brake pressure is not less than the second-threshold.
    • 一种用于控制发动机的自动停止/重启的装置,包括:停止/重启发动机的自动停止/重启控制单元; 制动压力检测单元,其检测制动系统中的制动压力并控制制动压力进行防滑控制; 确定制动压力是否不小于第一阈值的第一确定单元; 确定制动压力是否不小于大于第一阈值的第二阈值的第二确定单元; 一个停止允许单元,当第一确定单元确定制动压力不小于第一阈值时,允许自动停止/重启控制单元在发动机操作时停止发动机,而第二 - 确定单元确定制动压力小于第二阈值; 以及停止抑制单元,其在发动机运转时禁止所述自动停止/重新启动控制单元停止发动机,当所述第一判定单元确定所述制动压力小于所述第一阈值时, 第二确定单元确定制动压力不小于第二阈值。
    • 4. 发明授权
    • Three-dimensional radiation position detector
    • 三维辐射位置检测器
    • US08344328B2
    • 2013-01-01
    • US13213393
    • 2011-08-19
    • Toru DenTatsuya SaitoNobuhiro YasuiRyoko Horie
    • Toru DenTatsuya SaitoNobuhiro YasuiRyoko Horie
    • G01T1/20
    • G01T1/1642A61B6/037G01T1/1644
    • A position detector includes a photodetector having photodetecting elements; and a scintillator crystal having uniaxial optical anisotropy. The scintillator crystal is continuous in a uniaxial direction, is disposed on the photodetector such that the uniaxial direction is not perpendicular to the normal to a photodetecting surface, and has a length at least three times the pitch of the photodetecting elements. The uniaxial anisotropy allows at least 4% of scintillation light emitted from a region farthest above the photodetecting surface to reach the photodetecting elements, and allows from 4% to 35% of scintillation light emitted from a region closest to the photodetecting surface to reach the photodetecting elements.
    • 位置检测器包括具有光电检测元件的光电检测器; 和具有单轴光学各向异性的闪烁体晶体。 闪烁体晶体在单轴方向上是连续的,设置在光电检测器上,使得单轴方向不垂直于光电检测表面的法线,并且具有至少三倍于受光元件的间距的长度。 单轴各向异性允许从远离光电检测表面的区域发射的闪烁光的至少4%到达光检测元件,并且允许从最接近受光面的区域发射的闪烁光的4%至35%到达光电检测 元素。
    • 6. 发明申请
    • OPTICAL COMMUNICATION DEVICE
    • 光通信设备
    • US20110316632A1
    • 2011-12-29
    • US13201212
    • 2009-03-05
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • Takashi TakemotoHiroki YamashitaTatsuya Saito
    • H03F3/16H03F1/22H03G3/20
    • H03F3/087H03F1/223H03F1/34H03F3/082H03F3/3022H03F3/505H03F2200/453H04B10/6933
    • An optical communication device which can be operated at high speed is provided. For example, the optical communication device includes: a pre-amplifier circuit PREAMP1 amplifying a current signal Iin from a photodiode PD, and converting an amplified signal into a voltage signal; and an operating-point controller circuit VTCTL1 controlling an operation of the PREAMP1. The PREAMP1 includes a negative feedback path formed by a feedback resistance Rf1, and includes: a level-shift circuit LS1 level-shifting in accordance with an operating-point control signal Vcon; and an amplifier circuit AMP1 connected to a subsequent stage of the LS1 and performing an amplifying operation with a high gain. The VTCTL1 includes a replica circuit configured by the same circuit and circuit parameter as those of the AMP1 and electrically connected between the input and the output, and generates the Vcon so that an output DC level of this replica circuit is matched with an input DC level of the AMP1.
    • 提供可以高速运转的光通信装置。 例如,光通信装置包括:前置放大器电路PREAMP1,放大来自光电二极管PD的电流信号Iin,将放大后的信号变换为电压信号; 以及控制PREAMP1的操作的操作点控制器电路VTCTL1。 PREAMP1包括由反馈电阻Rf1形成的负反馈路径,并且包括:根据工作点控制信号Vcon的电平移位电路LS1电平移位; 以及连接到LS1的后级并且以高增益进行放大操作的放大器电路AMP1。 VTCTL1包括由与AMP1相同的电路和电路参数配置的电路复用电路,并且电连接在输入和输出端之间,并产生Vcon,使得该复制电路的输出直流电平与输入直流电平相匹配 的AMP1。
    • 7. 发明申请
    • RADIATION-DETECTING DEVICE AND METHOD OF MANUFACTURING SAME
    • 辐射检测装置及其制造方法
    • US20110248366A1
    • 2011-10-13
    • US13072579
    • 2011-03-25
    • Tatsuya SaitoRyoko HorieNobuhiro YasuiToru Den
    • Tatsuya SaitoRyoko HorieNobuhiro YasuiToru Den
    • H01L31/115H01L31/18
    • 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. 发明申请
    • OPERATION MANAGEMENT METHOD OF INFORMATION PROCESSING SYSTEM
    • 信息处理系统的操作管理方法
    • US20110113273A1
    • 2011-05-12
    • US13003687
    • 2009-03-09
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • G06F1/32
    • G06F1/206G06F1/3203G06F9/5027G06F9/5094Y02D10/16Y02D10/22
    • In a computer room including information processing devices and air conditioners, power saving of the computer room by means of optimization of workload allocation to the information processing devices is achieved in a short time. There, a coefficient of air conditioner performance with respect to the information processing device (device-specific COP) is calculated for each air conditioner. Further, a device-associated power consumption expression representing a total of device power and air conditioner power is created for each information processing device. Also, power consumption of the entire computer room is calculated from the device-associated power consumption expression of the information processing devices. Also, workload allocation is determined by using power saving performance evaluation indexes based on the device-associated power consumption expression of the information processing devices. Further, output of the air conditioner is controlled based on a result of the air conditioner power calculation.
    • 在包括信息处理装置和空调的计算机室中,通过优化在信息处理装置中的工作量分配来实现计算机室的省电在短时间内。 在此,针对各空调器计算出相对于信息处理装置(装置专用COP)的空调机性能系数。 此外,为每个信息处理设备创建表示设备功率和空调功率的总和的与设备相关联的功耗表达式。 而且,根据信息处理设备的设备相关功耗表达式计算整个计算机房的功耗。 此外,通过使用基于信息处理装置的与设备相关联的功耗表达式的节电性能评估指标来确定工作负荷分配。 此外,基于空调机功率计算的结果来控制空调的输出。