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    • 12. 发明授权
    • Deteriorated state evaluation device of exhaust emission control equipment
    • 废气排放控制设备劣化状态评估装置
    • US06935099B2
    • 2005-08-30
    • US10484817
    • 2002-08-23
    • Yasuyuki MiyaharaMasahiro SatoMasaki UenoKenichi Ohmori
    • Yasuyuki MiyaharaMasahiro SatoMasaki UenoKenichi Ohmori
    • F01N3/08F01N11/00F01N3/00
    • F01N3/0835F01N3/0807F01N11/00F01N2550/03F01N2560/028F01N2570/12Y02T10/20Y02T10/47
    • After an engine 1 has started to operate, a state in which a humidity represented by an output of a humidity sensor 19 downstream of a hydrocarbon adsorbent 7 takes a minimum value is sequentially searched for, and a timing at which the humidity changes from the minimum value to a monotonously increasing state is grasped as a timing at which the adsorption of moisture and hydrocarbons by the hydrocarbon adsorbent 7 is saturated. After the engine has started to operate, a parameter representing an integrated amount of moisture given to the hydrocarbon adsorbent 7 by the exhaust gas is sequentially generated, and a deteriorated state of the hydrocarbon adsorbent 7 is evaluated based on the value of the parameter at the timing at which the adsorption is saturated. The deteriorated state of the hydrocarbon absorbent can thus accurately be evaluated by an inexpensive arrangement which employs the humidity sensor 19 disposed downstream of the hydrocarbon adsorbent 7.
    • 在发动机1开始运行之后,依次搜索由碳氢化合物吸附剂7下游的湿度传感器19的输出表示的湿度为最小值的状态,以及湿度从最小值变化的时刻 将作为单一增加状态的值作为将烃类吸附剂7吸收水分和烃类饱和的时刻进行掌握。 在发动机开始运转之后,依次产生表示通过废气赋予烃类吸附剂7的一体化的水分量的参数,根据该吸附剂7的参数值,评价烃吸附剂7的劣化状态 吸附饱和的时间。 因此,可以通过使用设置在烃吸附剂7的下游的湿度传感器19的廉价的装置来精确地评价烃类吸收剂的劣化状态。
    • 15. 发明授权
    • Power steering and limited slip differential system
    • 动力转向和限滑差速系统
    • US5301766A
    • 1994-04-12
    • US694359
    • 1991-05-01
    • Fujio MomiyamaNoriaki TokudaKenichi OhmoriKohji HaradaShinichi Oku
    • Fujio MomiyamaNoriaki TokudaKenichi OhmoriKohji HaradaShinichi Oku
    • B62D6/00B60K23/04B60W10/00B60W10/02B60W10/10B60W10/12B60W10/20B62D5/07B62D6/04B62D7/15B62D101/00B62D105/00B62D113/00F16H48/08F16H48/22F16H48/32F16H48/38F16H48/40
    • B60K23/04B62D6/04B62D7/159
    • A power steering and limited slip differential system is provided with a main booster generating a steering effort for front wheels, a directional control valve having a pair of reaction chambers and a friction clutch disposed between a differential gear mechanism and a driving wheel axle for rear wheels and is further added with an auxiliary booster generating a compensation steering effort for the front wheels and a clutch control air cylinder for coupling and decoupling the friction clutch. In the system, an injection pressure control valve injects compensating pressure oil into the auxiliary booster and the reaction chambers of the directional control valve in response to a vehicle speed and steering effort at the beginning of steering and steering back and concurrently controls the pressure of the injected compensating pressure oil, and a pressure air control valve charges and discharges operating compressed air to and from the clutch control air cylinder in response to the vehicle speed and the steering angle of the front wheels, and further in response to the slipping at one side and the both sides of the rear wheels and thereby controls the air pressure of the clutch control air cylinder.
    • 动力转向和限滑差速系统设有主发动机,其产生用于前轮的转向力,具有一对反作用室的方向控制阀和设置在差速齿轮机构和用于后轮的驱动轮轴之间的摩擦离合器 并且进一步添加有为前轮产生补偿转向力的辅助助力器和用于联接和解耦摩擦离合器的离合器控制气缸。 在该系统中,喷射压力控制阀响应于在转向和转向回程开始时的车辆速度和转向力而将补偿压力油喷射到辅助增压器和方向控制阀的反作用室中,同时控制方向控制阀的压力 喷射补偿压力油,并且压力空气控制阀响应于前轮的车速和转向角度,并且进一步响应于一侧的滑动而对来自离合器控制气缸的操作压缩空气进行充气和排出 和后轮的两侧,从而控制离合器控制气缸的空气压力。
    • 19. 发明授权
    • Fluxgate sensor and electronic compass making use thereof
    • 磁通门传感器和电子罗盘使用
    • US08713809B2
    • 2014-05-06
    • US13300036
    • 2011-11-18
    • Kenichi OhmoriTakuya AizawaOsamu Nakao
    • Kenichi OhmoriTakuya AizawaOsamu Nakao
    • G01R33/05G01R33/02G01C17/30
    • G01R33/05G01C17/30G01R33/04
    • Provided is a flux gate sensor comprising the following: a magnetic core having a first wiring layer formed on a board, a first insulating layer formed in such a way as to cover the aforementioned first wiring layer, and a magnetic core which is formed on the aforementioned first insulating layer and which has a central portion and an end portion that continues to the aforementioned central portion, that has a width larger than the width of the aforementioned central portion, and that is located on either side of the aforementioned central portion; a second insulating layer which covers the aforementioned magnetic core and which is formed on the aforementioned first insulating layer; and a second wiring layer formed on the aforementioned second insulating layer.
    • 提供了一种磁通门传感器,其包括:具有形成在基板上的第一布线层的磁芯,以覆盖上述第一布线层的方式形成的第一绝缘层和形成在该第一布线层上的磁芯 上述第一绝缘层,其中央部分和端部连续到上述中心部分,其宽度大于上述中心部分的宽度,并且位于上述中心部分的两侧; 覆盖上述磁芯并形成在上述第一绝缘层上的第二绝缘层; 以及形成在上述第二绝缘层上的第二布线层。