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    • 1. 发明授权
    • Advanced instruction execution system for assigning different indexes to
instructions capable of parallel execution and same indexes to
instructions incapable of parallel execution
    • 高级指令执行系统,用于将不同的索引分配给能够并行执行的指令和与不能并行执行的指令相同的索引
    • US5333281A
    • 1994-07-26
    • US727937
    • 1991-07-10
    • Takeshi NishikawaToshihiko Nakamura
    • Takeshi NishikawaToshihiko Nakamura
    • G06F9/38
    • G06F9/3836G06F9/3828
    • In an instruction processing unit of an information processing system in which operable instructions are executed as executing instructions on operands held by operand registers to store results of execution in result registers and in which a bypass arrangement is controlled by an enable signal to bypass the operand and the result registers when an instruction is one of inoperable instructions and should use, as a particular operand, a particular result of execution of a particular one of the executing instructions, an instruction managing section (52) manages the execution instructions by entry numbers related individually to the executing instructions to successively produce the entry numbers as managed entry numbers at predetermined time instants. An execution waiting instruction buffer (56) holds, as a held entry number, one of the entry numbers that is related to the particular instruction when one of the inoperable instructions indicates an operand register equal to one of the result registers that is indicated by the particular instruction. A coincidence finding section (58) finds coincidence between the held entry number with each of the managed entry numbers to produce a coincidence signal as the enable signal whenever the coincidence is found.
    • 在信息处理系统的指令处理单元中,其中可操作指令被执行作为操作数寄存器保存的操作数的执行指令,以将执行结果存储在结果寄存器中,并且旁路装置由使能信号控制以绕过操作数, 当指令是不可操作的指令之一时,结果将被注册,并且应该使用执行指令的特定执行指令的特定执行结果作为特定的操作数,指令管理部分(52)通过与个别相关的入口号来管理执行指令 到执行指令,以在预定的时刻连续地产生作为被管理的条目号的条目号码。 执行等待指令缓冲器(56)当其中一个不可操作指令指示等于由所指示的结果寄存器中的一个指定的操作数寄存器时,将与特定指令相关的条目号中的一个保持为保持的条目号 具体说明。 符合查找部分(58)发现所保持的条目号码与每个被管理的条目号码之间的一致,以便在发现符合时产生符合信号作为使能信号。
    • 5. 发明授权
    • Internal combustion engine of ignition timing controllable type
    • 内燃机点火正时可控型
    • US4009698A
    • 1977-03-01
    • US622903
    • 1975-10-16
    • Takashi KatoEishi OonoToshihiko Nakamura
    • Takashi KatoEishi OonoToshihiko Nakamura
    • F02P5/10
    • F02P5/103
    • Herein disclosed is an internal combustion engine of ignition timing controllable type for use with an automotive vehicle. The internal combustion engine includes, as customary, an intake system including a carburetor having a throttle valve, a distributor, and an ignition timing regulating device connected to the distributor and having a diaphragm chamber to which a control vacuum is supplied. The internal combustion engine further includes a first port from which a carburetor vacuum having relationship to the opening of the throttle valve is taken out, a second port from which an intake vacuum is taken out, and a first direction control valve operable in relationship to the speed of rotation of the internal combustion engine or to the running speed of the automotive vehicle. The first and second ports are selectively connected to the diaphragm chamber of the ignition timing regulating device by way of the first direction control valve, so that during a low speed driving condition of the engine the intake vacuum taken out from the second port may be supplied to the diaphragm chamber to retard the ignition timing, so that during a high speed driving condition of the internal combustion engine a low carburetor vacuum taken out from the first-named port may be supplied to said diaphragm chamber to advance the ignition timing, and so that upon deceleration from a high speed driving condition a high carburetor vacuum taken out from the first port may be supplied to the diaphragm chamber to retard the ignition timing.
    • 这里公开了一种用于机动车辆的点火正时可控型内燃机。 内燃机通常包括具有节流阀,分配器以及点火正时调节装置的化油器的进气系统,其连接到分配器并且具有供给控制真空的隔膜室。 所述内燃机还包括第一端口,从所述第一端口取出与所述节流阀的开度有关的化油器真空,从所述第二端口取出进气真空;以及第一方向控制阀, 内燃机的转速或机动车辆的行驶速度。 第一和第二端口通过第一方向控制阀选择性地连接到点火正时调节装置的隔膜室,使得在发动机的低速行驶状态期间,可以提供从第二端口取出的进气真空 到隔膜室以延迟点火正时,使得在内燃机的高速行驶状态期间,可以将从第一命名端口取出的低化油器真空度供给到所述隔膜室以提高点火正时,因此 在从高速行驶状态减速时,可以将从第一端口取出的高化油器真空供给到隔膜室以延迟点火正时。
    • 6. 发明申请
    • Shoe Sole Having Outsole and Midsole
    • 鞋底有鞋底和中底
    • US20150082668A1
    • 2015-03-26
    • US14398429
    • 2012-05-10
    • Mai NonogawaKenji SakamotoSeigo NakayaRena FuruishiToshihiko Nakamura
    • Mai NonogawaKenji SakamotoSeigo NakayaRena FuruishiToshihiko Nakamura
    • A43B13/14A43B5/00
    • A43B13/14A43B5/10A43B7/142A43B7/1425A43B7/143A43B7/144A43B13/127A43B13/16A43B13/188
    • A shoe sole including an outsole 2 and a midsole 1, wherein: the midsole 1 includes a lower midsole 4 of a lower layer formed by a foamed body of a resin, and an upper midsole 3 of an upper layer formed by a foamed body of a resin and arranged on the lower midsole 4; a lateral roll-up portion 42 for supporting a lateral side of a foot from a side of the foot is formed integrally with the lower midsole 4; a hardness of a lateral portion 40 of the lower midsole 4 including the lateral roll-up portion 42 is a first hardness; a hardness of a medial portion 41 of the lower midsole 4 is a second hardness lower than the first hardness; a hardness of a lateral portion 30 of the upper midsole 3 is a third hardness lower than the first hardness; and a part or a whole of the high-hardness lateral roll-up portion 42 is protruding in an upward direction past the upper midsole 3 on a lateral side of the upper midsole 3 so that the lateral side of the foot is supported by the lateral roll-up portion 42 from the side of the foot without being supported by the upper midsole 3 from the side of the foot.
    • 一种鞋底,其包括鞋外底2和中底1,其中:鞋底夹层1包括由树脂的发泡体形成的下层的下底中间层4和由上层的泡沫体形成的上层中层3, 树脂并布置在下中底4上; 用于从脚的一侧支撑脚的侧面的横向卷起部42与下中底4一体地形成; 包括侧向卷起部分42的下中底4的侧部40的硬度是第一硬度; 下中底4的中间部分41的硬度是比第一硬度低的第二硬度; 上鞋底夹层3的侧面部分30的硬度是比第一硬度低的第三硬度; 并且高硬度侧向卷起部42的一部分或全部在向上方向上突出,穿过上中底3的上鞋底3的侧面,使得脚的侧面由侧面 卷起部分42从脚的侧面不被上鞋底夹层3从脚的侧面支撑。
    • 10. 发明授权
    • Automatic humidity step control thermal analysis apparatus
    • 自动湿度步进控制热分析仪
    • US06616330B2
    • 2003-09-09
    • US10001335
    • 2001-10-26
    • Nobutaka NakamuraToshihiko NakamuraNoriyuki Takata
    • Nobutaka NakamuraToshihiko NakamuraNoriyuki Takata
    • G01N2500
    • G01N25/4866G01N5/045G01N2035/00455
    • An automatic humidity step control thermal analysis apparatus has a detector for detecting and measuring a physical property of a sample and for generating a physical property signal corresponding to the physical property of the sample. The sample is housed in a sample chamber which is capable of controlling the temperature and humidity of the sample. A water chamber generates water vapor at a preselected temperature and is capable of controlling the temperature of water in the water chamber in a stepwise manner. A heat insulating pipe directs water vapor from the water chamber to the sample chamber and includes a heater for preventing dew condensation. A signal stability determination circuit receives a physical property signal from the detector and generates a trigger signal when a rate of change of the physical property signal drops below a preselected reference value. A control device controls the temperature of water in the water chamber in a stepwise manner in accordance with the trigger signal generated by the signal stability determination circuit to thereby adjust the humidity of the sample chamber in a stepwise manner.
    • 自动湿度步进控制热分析装置具有用于检测和测量样品的物理性质并用于产生与样品的物理性质相对应的物理特性信号的检测器。 将样品容纳在能够控制样品的温度和湿度的样品室中。 水室在预选温度下产生水蒸气,并且能够以逐步的方式控制水室中的水的温度。 绝热管将水蒸气从水室引导到样品室,并且包括用于防止结露的加热器。 当信号稳定性确定电路接收来自检测器的物理特性信号,并且当物理特性信号的变化率下降到低于预选参考值时产生触发信号。 控制装置根据信号稳定判定电路产生的触发信号,逐步地控制水室内的水温,从而逐步调节样品室的湿度。