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    • 2. 发明授权
    • Fluid pressure sensor package
    • 流体压力传感器包装
    • US08022806B2
    • 2011-09-20
    • US12194385
    • 2008-08-19
    • Kazuaki NishimuraNaoki Yahata
    • Kazuaki NishimuraNaoki Yahata
    • H01C10/10
    • G01L19/0038G01L19/143
    • A fluid pressure sensor package can be easily assembled to have different types of probe tubes depending upon different application environments. The sensor package includes a sealed casing accommodating a sensor chip for sensing a pressure of a fluid introduced into the casing. A probe tube extends from the casing for introducing the fluid into contact with the sensor chip. The casing has a top opening, and has a side wall formed on its interior surface with a stepped shoulder for bearing a flange at the lower end of the probe tube. The flange is sealingly bonded to the sidewall of the casing by a sealer. Since the probe tube is prepared as a separate member from the casing, the casing can be a common base for various probe tubes having fluid channels of different lengths or diameters.
    • 根据不同的应用环境,流体压力传感器封装可以容易地组装成具有不同类型的探针管。 传感器封装包括容纳用于感测引入到壳体中的流体的压力的传感器芯片的密封壳体。 探针管从壳体延伸,用于引导流体与传感器芯片接触。 壳体具有顶部开口,并且在其内表面上具有侧壁,所述侧壁具有阶梯状肩部,用于在探针管的下端轴承凸缘。 凸缘通过密封件密封地结合到壳体的侧壁。 由于探针管作为与壳体分离的部件制备,所以壳体可以是具有不同长度或直径的流体通道的各种探针管的公共基座。
    • 4. 发明授权
    • Electromagnetic relay
    • 电磁继电器
    • US6014068A
    • 2000-01-11
    • US225567
    • 1999-01-05
    • Kazuhiro NobutokiHiroyuki KitaKazuaki Nishimura
    • Kazuhiro NobutokiHiroyuki KitaKazuaki Nishimura
    • H01H50/36H01H50/44H01H51/22
    • H01H50/44H01H50/36H01H51/229
    • A miniature electromagnetic relay is capable of increasing the coil packing density, yet assuring electrical insulation of the coil from a core of the electromagnet. The relay includes a pair of movable and fixed contacts, an armature carrying the movable contact, and an electromagnet block having an excitation coil which moves the armature for closing and opening the contacts upon being energized. The electromagnet block includes a generally U-shaped core with a center core and a pair of yokes extending from opposite ends of the center core, flanges of dielectric material molded respectively around portions of the yokes, and a dielectric tape fitted around the center core over substantially the entire length of the center core to receive therearound the excitation coil in an electrically insulating relation from the core. Each of the flanges is formed integrally with an inward sleeve which extends over a limited length along the center core in such a relation that the dielectric tape overlaps the inward sleeves at opposite width ends of the tape. Thus, the coil can be wound over the substantially full length of the core and be successfully insulated from the core over the full length thereof without requiring additional separate member.
    • 微型电磁继电器能够增加线圈堆积密度,同时确保线圈与电磁铁的铁心电绝缘。 继电器包括一对可移动和固定触点,承载可动触头的电枢以及具有励磁线圈的电磁体块,该励磁线圈在通电时使衔铁移动以闭合和断开触点。 电磁体块包括大致U形的芯,其具有中心芯和从中心芯的相对端延伸的一对磁轭,分别围绕磁轭的部分模制的介电材料的凸缘以及围绕中心芯安装的介电带 基本上整个长度的中心铁心以与电芯绝缘的方式接纳在激励线圈周围。 每个凸缘与向内的套筒一体地形成,该套筒沿着中心芯线以有限的长度延伸,使得介质带与带的相对的宽度端的向内的套筒重叠。 因此,线圈可以卷绕在芯的基本上全长上,并且在其整个长度上成功地与芯绝缘,而不需要额外的分离构件。
    • 6. 发明授权
    • Engine cooling structure
    • 发动机冷却结构
    • US4741293A
    • 1988-05-03
    • US917076
    • 1986-10-08
    • Toshinobu ItohHiroichi TakuboKazuaki Nishimura
    • Toshinobu ItohHiroichi TakuboKazuaki Nishimura
    • F01P3/02F01P7/16F02F1/14F01P5/10
    • F01P7/16F01P3/02F02F1/14F01P2060/00
    • In an engine cooling structure in which a water pump for causing a cooling water or coolant to flow in a watercool engine is located at or near one end portion of a cylinder block in the direction of the cylinder alignment, coolant passages include a main coolant passage disposed in a cylinder head and the cylinder block, a radiator circulating passage leading the cooling water from the water pump through an engine body to a radiator core, a by-pass passage by-passing the radiator core, and a heater circulating passage leading the cooling water from the engine body to an air-conditioning heater. The radiator circulating passage and the by-pass passage are arranged so as to switch by a thermostat valve. The by-pass passage and/or the heater circulating passage are or is constructed so as to have a coolant return passage disposed in the cylinder block extending in the direction of the cylinder alignment.
    • 在用于使冷却水或冷却剂在水冷发动机中流动的水泵位于气缸体对准的气缸体的一端或其附近的发动机冷却结构中,冷却剂通道包括主冷却剂通道 设置在气缸盖和气缸体中,散热器循环通道,其将来自水泵的冷却水通过发动机主体引导到散热器芯,旁路通过散热器芯,以及加热器循环通道, 冷却水从发动机体到空调加热器。 散热器循环通道和旁路通道被布置成通过恒温阀切换。 旁路通道和/或加热器循环通道被构造成具有设置在气缸体中沿着气缸对准方向延伸的冷却剂返回通道。
    • 9. 发明申请
    • FLUID PRESSURE SENSOR PACKAGE
    • 流体压力传感器包装
    • US20090051479A1
    • 2009-02-26
    • US12194385
    • 2008-08-19
    • Kazuaki NishimuraNaoki Yahata
    • Kazuaki NishimuraNaoki Yahata
    • H01C10/10G01L7/08
    • G01L19/0038G01L19/143
    • A fluid pressure sensor package can be easily assembled to have different types of probe tubes depending upon different application environments. The sensor package includes a sealed casing accommodating a sensor chip for sensing a pressure of a fluid introduced into the casing. A probe tube extends from the casing for introducing the fluid into contact with the sensor chip. The casing has a top opening, and has a side wall formed on its interior surface with a stepped shoulder for bearing a flange at the lower end of the probe tube. The flange is sealingly bonded to the sidewall of the casing by a sealer. Since the probe tube is prepared as a separate member from the casing, the casing can be a common base for various probe tubes having fluid channels of different lengths or diameters.
    • 根据不同的应用环境,流体压力传感器封装可以容易地组装成具有不同类型的探针管。 传感器封装包括容纳用于感测引入到壳体中的流体的压力的传感器芯片的密封壳体。 探针管从壳体延伸,用于引导流体与传感器芯片接触。 壳体具有顶部开口,并且在其内表面上具有侧壁,所述侧壁具有阶梯状肩部,用于在探针管的下端轴承凸缘。 凸缘通过密封件密封地结合到壳体的侧壁。 由于探针管作为与壳体分离的部件制备,所以壳体可以是具有不同长度或直径的流体通道的各种探针管的公共基座。
    • 10. 发明授权
    • Engine cylinder block reinforcing structure
    • 发动机缸体加固结构
    • US4793299A
    • 1988-12-27
    • US70780
    • 1987-07-07
    • Fuminori IshimuraHiroshi KagayaKazuaki NishimuraTakafumi Teramoto
    • Fuminori IshimuraHiroshi KagayaKazuaki NishimuraTakafumi Teramoto
    • F01M11/00F02F7/00F16M1/02F16M1/026
    • F16M1/02F02F7/008F01M2011/002F01M2011/0033
    • An engine cylinder block structure includes: a cylinder block integrally formed to include skirts projecting downwardly from both sides of the lower surface of the cylinder block; an oil pan attached to lower surfaces of both skirts of the cylinder block, the oil pan having a deep first portion on a front side and a shallow second portion on a rear side, the first and second portions being connected to each other; flanges integrally formed on lower ends of the skirts for having the oil pan attached thereto; and reinforcing mechanism for reinforcing the strength of both skirts. The reinforcing mechanism includes: a plate-shaped reinforcing member for reinforcing the strength of both skirts, the plate-shaped reinforcing member spanning and interconnecting portions corresponding to a range extending between the first portion of the oil pan and a portion excluding the rear end of the second portion of the oil pan; and stiffening mechanism for providing portions of the flanges corresponding to the second portion of the oil pan with a rigidity higher than that of portions of the flanges corresponding to the first portion of the oil pan.
    • 发动机气缸体结构包括:气缸体,整体形成为包括从气缸体的下表面的两侧向下突出的裙部; 安装在所述气缸体的两个裙部的下表面的油盘,所述油盘在前侧具有深的第一部分,在后侧具有浅的第二部分,所述第一和第二部分彼此连接; 一体形成在裙板下端的凸缘,用于安装油盘; 以及加强两个裙子强度的增强机制。 加强机构包括:加强两个裙部的强度的板状加强构件,板状加强构件跨越并且与在油底壳的第一部分之间延伸的范围与除了油底壳的后端之外的部分相对应的互连部分 油盘的第二部分; 以及加强机构,用于提供与油盘的第二部分相对应的凸缘的刚性,其刚性比对应于油盘的第一部分的凸缘的部分高。