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    • 21. 发明申请
    • Container, container producing method, substrate processing device, and semiconductor device producing method
    • 容器,容器制造方法,基板处理装置以及半导体装置的制造方法
    • US20070170088A1
    • 2007-07-26
    • US10548877
    • 2004-03-04
    • Kazuhiro Shimura
    • Kazuhiro Shimura
    • B65D85/00B65D81/28C23C14/00C23C16/00
    • H01L21/67757C23C16/54H01L21/67109Y10S206/832
    • A pressure resistant case (22) is constructed in a rectangular parallelepiped box shape by assembling a bottom plate (61) and ceiling plate (62) and first side plate (63) and second side plate (64) and third side plate (65) and a fourth side plate (66) formed of thick aluminum plate and by welding on four sides by the TIG welding method. In the TIG welding of the ceiling plate (62) and the first side plate (63), the end surface on the side where a hollow section (72) of the ceiling plate (62) is formed, abuts against the main surface on the side where the locating section (71) of the first side plate (63) is formed. The edge near the hollow section (72) of the ceiling plate (62) is abutted against the locating section (71), and a fillet weld section (75) is formed by TIG welding on the corner section formed by the ceiling plate (62) and the locating section (71). The heat capacity of the hollow section of the ceiling plate and the locating section for TIG welding is small so that the fillet weld section can be formed even in aluminum plate possessing a high thermal conductivity. The vacuum performance, etc. of the pressure resistant case can be maintained since the slit formed between the contact surfaces is blocked by the fillet weld section.
    • 通过组装底板(61)和顶板(62)以及第一侧板(63)和第二侧板(64)和第三侧板(65),将耐压外壳(22)构造成矩形平行六面体箱形, 以及由厚铝板形成的第四侧板(66),并且通过TIG焊接方法在四边焊接。 在天花板(62)和第一侧板(63)的TIG焊接中,形成有顶板(62)的中空部(72)一侧的端面抵接在顶板 形成第一侧板(63)的定位部(71)的一侧。 靠近顶板(62)的中空部分(72)的边缘抵靠定位部分(71),并且通过TIG焊接在由顶板(62)形成的角部上形成角焊部分(75) )和定位部(71)。 天花板的中空部分和TIG焊接的定位部分的热容量小,即使在具有高导热性的铝板中也可以形成角焊缝部分。 由于形成在接触面之间的狭缝被角焊部分阻挡,因此可以保持耐压壳体的真空性能等。
    • 22. 发明申请
    • Sensor device for tire
    • 轮胎传感器装置
    • US20060144132A1
    • 2006-07-06
    • US10544996
    • 2004-03-24
    • Kazuhiro Shimura
    • Kazuhiro Shimura
    • G01M17/02
    • H01Q1/2241B60C23/0408B60C23/0498
    • A sensor device for a tire, having enhanced transmission capability without disturbing the assembly of a rim to the tire. With itself installed in the tire, the sensor device detects information inside the tire and transmits the result to the outside. The sensor device has a case for receiving an electronic component and an antenna electrically connected to the electronic component and extended to the outside of the case. The fore-end portion of the antenna is made to be displaceable outwardly in the tire radial direction by centrifugal force generated in the rotation of the tire.
    • 一种用于轮胎的传感器装置,具有增强的传动能力,而不会干扰轮胎与轮胎的组合。 传感器装置本身安装在轮胎中,检测轮胎内的信息,并将结果传送到外部。 传感器装置具有用于接收电子部件的壳体和与电子部件电连接并延伸到壳体外部的天线。 通过在轮胎旋转中产生的离心力使天线的前端部分在轮胎径向向外移动。
    • 27. 发明授权
    • Pneumatic tire with transponder and indicator of transponder position
    • 带应答器的气动轮胎和转发器位置指示器
    • US08004408B2
    • 2011-08-23
    • US11632919
    • 2005-08-22
    • Kazuhiro Shimura
    • Kazuhiro Shimura
    • G08B13/14B60C5/00
    • B60C23/0493B60C13/001Y10T152/10495
    • Provided is a pneumatic tire with which a search time for a transponder can be reduced, and with which, for a passive transponder functioning with energy transmitted from the outside, efficiency of energy transmission can be enhanced. The pneumatic tire of the present invention provided with a transponder has an identification tag, which indicates a position of the transponder, and which is disposed to an outer surface of a portion of the tire, the portion being where the transponder is disposed. Furthermore, for a pneumatic tire having a transponder on a sidewall part thereof, an identification tag, which indicates the position of the transponder, is provided to an outer surface of a portion of the tire, the portion being where the transponder is disposed, and another identification tag, which indicates at least the position of the transponder in the circumferential direction of the tire, is provided to an outer surface of the other sidewall part of the tire, which is on the opposite side of the sidewall part where the transponder is disposed.
    • 提供了一种充气轮胎,通过该充气轮胎可以减少应答器的搜索时间,并且对于从外部传输的能量起作用的无源应答器,可以提高能量传输的效率。 设置有应答器的本发明的充气轮胎具有指示应答器的位置的识别标签,并且设置在轮胎的一部分的外表面上,该部分是应答器所在的部分。 此外,对于在其侧壁部具有应答器的充气轮胎,在轮胎的一部分的外表面设置有表示应答器的位置的识别标签,该部分是应答器的配置位置, 在轮胎的另一侧壁部分的外表面上,至少表示应答器在轮胎周向上的位置的另一识别标签被设置在轮胎的另一侧壁部分的外表面上,该侧壁部分位于与应答器 处置。
    • 28. 发明授权
    • Container, container producing method, substrate processing device, and semiconductor device producing method
    • 容器,容器制造方法,基板处理装置以及半导体装置的制造方法
    • US07824496B2
    • 2010-11-02
    • US10548877
    • 2004-03-04
    • Kazuhiro Shimura
    • Kazuhiro Shimura
    • B65D85/00B65D81/28C23C14/00C23C16/00
    • H01L21/67757C23C16/54H01L21/67109Y10S206/832
    • A pressure resistant case (22) is constructed in a rectangular parallelepiped box shape by assembling a bottom plate (61) and ceiling plate (62) and first side plate (63) and second side plate (64) and third side plate (65) and a fourth side plate (66) formed of thick aluminum plate and by welding on four sides by the TIG welding method. In the TIG welding of the ceiling plate (62) and the first side plate (63), the end surface on the side where a hollow section (72) of the ceiling plate (62) is formed, abuts against the main surface on the side where the locating section (71) of the first side plate (63) is formed. The edge near the hollow section (72) of the ceiling plate (62) is abutted against the locating section (71), and a fillet weld section (75) is formed by TIG welding on the corner section formed by the ceiling plate (62) and the locating section (71). The heat capacity of the hollow section of the ceiling plate and the locating section for TIG welding is small so that the fillet weld section can be formed even in aluminum plate possessing a high thermal conductivity. The vacuum performance, etc. of the pressure resistant case can be maintained since the slit formed between the contact surfaces is blocked by the fillet weld section.
    • 通过组装底板(61)和顶板(62)以及第一侧板(63)和第二侧板(64)和第三侧板(65),将耐压外壳(22)构造成矩形平行六面体箱形, 以及由厚铝板形成的第四侧板(66),并且通过TIG焊接方法在四边焊接。 在天花板(62)和第一侧板(63)的TIG焊接中,形成有顶板(62)的中空部(72)一侧的端面抵接在顶板 形成第一侧板(63)的定位部(71)的一侧。 靠近顶板(62)的中空部分(72)的边缘抵靠定位部分(71),并且通过TIG焊接在由顶板(62)形成的角部上形成角焊部分(75) )和定位部(71)。 天花板的中空部分和TIG焊接的定位部分的热容量小,即使在具有高导热性的铝板中也可以形成角焊缝部分。 由于形成在接触面之间的狭缝被角焊部分阻挡,因此可以保持耐压壳体的真空性能等。
    • 30. 发明申请
    • Pneumatic Tire
    • 气动轮胎
    • US20080246588A1
    • 2008-10-09
    • US11632919
    • 2005-08-22
    • Kazuhiro Shimura
    • Kazuhiro Shimura
    • H04Q5/22B60C5/00
    • B60C23/0493B60C13/001Y10T152/10495
    • Provided is a pneumatic tire with which a search time for a transponder can be reduced, and with which, for a passive transponder functioning with energy transmitted from the outside, efficiency of energy transmission can be enhanced. The pneumatic tire of the present invention provided with a transponder has an identification tag, which indicates a position of the transponder, and which is disposed to an outer surface of a portion of the tire, the portion being where the transponder is disposed. Furthermore, for a pneumatic tire having a transponder on a sidewall part thereof, an identification tag, which indicates the position of the transponder, is provided to an outer surface of a portion of the tire, the portion being where the transponder is disposed, and another identification tag, which indicates at least the position of the transponder in the circumferential direction of the tire, is provided to an outer surface of the other sidewall part of the tire, which is on the opposite side of the sidewall part where the transponder is disposed.
    • 提供了一种充气轮胎,通过该充气轮胎可以减少应答器的搜索时间,并且对于从外部传输的能量起作用的无源应答器,可以提高能量传输的效率。 设置有应答器的本发明的充气轮胎具有指示应答器的位置的识别标签,并且设置在轮胎的一部分的外表面上,该部分是应答器所在的部分。 此外,对于在其侧壁部具有应答器的充气轮胎,在轮胎的一部分的外表面设置有表示应答器的位置的识别标签,该部分是应答器的配置位置, 在轮胎的另一侧壁部分的外表面上,至少表示应答器在轮胎周向上的位置的另一识别标签被设置在轮胎的另一侧壁部分的外表面上,该侧壁部分位于与应答器 处置。