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    • 2. 发明授权
    • Gas sensor
    • 气体传感器
    • US08857241B2
    • 2014-10-14
    • US13288896
    • 2011-11-03
    • Takashi Nakashima
    • Takashi Nakashima
    • G01N7/10G01N27/407
    • G01N27/4077
    • A protector (100) of a gas sensor (1) includes an inner protector (120) and an outer protector (110). The inner protector accommodates a gas sensor element (10) and has a tubular side wall (122) having inner gas introduction holes (130), and a bottom wall (124). The outer protector has a tubular side wall (112) having outer gas introduction holes (115), a frustum-like taper wall (117) tapering frontward and an outer gas discharge hole (170) formed inside a front end edge (117s) of the taper wall. When SL represents an area defined by the front end edge of the taper wall, the area S of the opening of the outer gas discharge hole satisfies the relational expression ½×SL≦S≦SL. A cover portion (127) and a bottom wall (124) are partially away from each other along the axial direction, thereby forming side openings (162).
    • 气体传感器(1)的保护器(100)包括内部保护器(120)和外部保护器(110)。 内部保护器容纳气体传感器元件(10),并且具有具有内部气体引入孔(130)和底壁(124)的管状侧壁(122)。 外部保护器具有管状侧壁(112),其具有外部气体引入孔(115),向前渐缩的截头锥形锥形壁(117)和形成在前端边缘(117s)内部的外部气体排出孔 锥形壁。 当SL表示由锥形壁的前端边缘限定的区域时,外部气体排出孔的开口面积S满足关系式½×SL≦̸ S≦̸ SL。 盖部分(127)和底壁(124)沿着轴向方向彼此部分地远离,由此形成侧开口(162)。
    • 3. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20120325661A1
    • 2012-12-27
    • US13491078
    • 2012-06-07
    • Makoto KUMENobuhiro INOUETakashi NAKASHIMA
    • Makoto KUMENobuhiro INOUETakashi NAKASHIMA
    • G01N27/26G01M15/10
    • G01N27/4074
    • A gas sensor includes a plate-like gas sensor element, a tubular metallic shell which holds the gas sensor element, and a seal member disposed between the inner surface of the metallic shell and outer surface of the gas sensor element. The gas sensor further includes a metal packing having a through-hole of substantially rectangular cross section through which the gas sensor element extends, and pressing forward the seal member with a flat surface thereof in direct contact with the rearward oriented surface of the seal member. The flat surface of the metal packing has an outside diameter equal to or greater than that of the rearward oriented surface of the seal member. A clearance between an inner edge of the flat surface of the metal packing and the surface of the gas sensor element is one-half or less the thickness of the gas sensor element.
    • 气体传感器包括板状气体传感器元件,保持气体传感器元件的管状金属壳体和设置在金属壳体的内表面和气体传感器元件的外表面之间的密封构件。 气体传感器还包括具有大致矩形横截面的通孔的金属密封件,气体传感器元件通过该通孔延伸,并且将其密封构件的平坦表面向前压向与密封构件的向后定向表面直接接触。 金属衬垫的平坦表面的外径等于或大于密封构件的向后定向表面的外径。 金属填料的平坦表面的内边缘和气体传感器元件的表面之间的间隙是气体传感器元件的厚度的一半或更小。
    • 6. 发明申请
    • SCREEN DATA TRANSMITTING TERMINAL, SCREEN DATA RECEIVING TERMINAL, SCREEN DATA TRANSMISSION SYSTEM, SCREEN DATA TRANSMITTING PROGRAM, SCREEN DATA RECEIVING PROGRAM, SCREEN DATA TRANSMITTING METHOD AND SCREEN DATA RECEIVING METHOD
    • 屏幕数据传输终端,屏幕数据接收终端,屏幕数据传输系统,屏幕数据传输程序,屏幕数据接收程序,屏幕数据传输方法和屏幕数据接收方法
    • US20100315430A1
    • 2010-12-16
    • US12778602
    • 2010-05-12
    • Takashi NAKASHIMAOsamu SaitohKeiji Fukumoto
    • Takashi NAKASHIMAOsamu SaitohKeiji Fukumoto
    • G09G5/02G06F3/01G06F15/16
    • G06F3/1454G09G5/14G09G2320/0242
    • To provide a screen data transmitting terminal, screen data receiving terminal, screen data transmission system, screen data transmitting program, screen data receiving program, screen data transmitting method and screen data receiving method for enabling a screen displayed in a terminal on the transmission side to be reproduced in a terminal on the reception side without undergoing effects of unnecessary information such as the panel state, etc., a screen data transmitting terminal 100 for transmitting data of a display screen has a transmission-side image tone reflecting section that reflects user setting information set by a user 150 in an image tone of received original image data, a transmission-side display section that displays a screen in which the user setting information is reflected, and a transmission-side screen data managing section that acquires the user setting information, where the transmission-side screen data managing section transmits the original image data and the acquired user setting information so as to enable a terminal 200 of a transmission destination to reproduce the display screen using the transmitted data.
    • 提供一种屏幕数据发送终端,屏幕数据接收终端,屏幕数据发送系统,屏幕数据发送程序,屏幕数据接收程序,屏幕数据发送方法以及用于使显示在发送侧的终端中的屏幕的屏幕数据接收方法 在接收侧的终端中进行再现,而不会受到诸如面板状态等的不必要的信息的影响,用于发送显示屏的数据的屏幕数据发送终端100具有反映用户设置的发送侧图像色调反应部 由用户150以接收的原始图像数据的图像色调设置的信息,显示其中反映用户设置信息的屏幕的发送侧显示部分和获取用户设置信息的发送侧屏幕数据管理部分 ,其中发送侧屏幕数据管理部分发送原始图像数据和th e获取用户设置信息,以使得发送目的地的终端200能够使用所发送的数据再现显示屏幕。
    • 8. 发明授权
    • Cold finished seamless steel tubes
    • 冷成品无缝钢管
    • US07371293B2
    • 2008-05-13
    • US11039954
    • 2005-01-24
    • Takashi NakashimaKouichi KurodaKenichi Beppu
    • Takashi NakashimaKouichi KurodaKenichi Beppu
    • C22C38/18C22C38/00C21D8/10
    • C21D9/08B21D3/04Y10T428/12458
    • Cold finished seamless steel tubes are made such that the residual stress F to be generated at the stage of the correction process after cold working is controlled to be 30 MPa or more and the scattering thereof is 30 MPa or less, when measured by Crampton method. Further, by adjusting the average grain size of spheroidized carbides, the dimensional change which emerges in lathe turning of the outside and inside diameter of relevant steel tubes due to the residual strain can be suppressed, and the strict roundness as well as the excellent machinability can be secured at the final processing stage of the work pieces for bearing parts. Consequently, steel tubes with high dimensional accuracy and less dimensional change at the final steps such as lathe turning, heat treatment and the like, can be made for use as bearing parts.
    • 制成冷成品无缝钢管,使得在通过Crampton法测量时,在冷加工后的校正处理阶段中产生的残余应力F被控制为30MPa以上,散射为30MPa以下。 此外,通过调整球状碳化物的平均粒径,可以抑制由于残留应变而导致的相关钢管的外径和内径的车削转弯引起的尺寸变化,严格的圆度以及优异的机械加工性 在轴承零件的工件的最终加工阶段被固定。 因此,可以在诸如车床车削,热处理等的最终步骤中具有高尺寸精度和较小尺寸变化的钢管用作轴承部件。
    • 9. 发明授权
    • Flexible wiring board and electrical device using the same
    • 柔性接线板和电器使用相同
    • US07348492B1
    • 2008-03-25
    • US09712227
    • 2000-11-15
    • Noriko KawaiTakashi NakashimaHirokazu Yoshida
    • Noriko KawaiTakashi NakashimaHirokazu Yoshida
    • H05K1/00
    • H05K3/361G02F1/13452H01L2924/0002H05K3/243H05K3/281H05K2201/0191H05K2201/0989H05K2201/10136H01L2924/00
    • A flexible wiring board is obtained as follows. A copper foil pattern is formed on the both surfaces of a base polymer film made of polyimide, etc. The copper foil pattern of the both sides, except for an end portion of the copper foil pattern of one surface, is covered entirely with an insulative protecting film made of polyimide, etc., for protecting the copper foil pattern, and the insulative protecting film and the copper foil pattern are bonded with each other by an insulative protecting film adhesive layer. On the exposed end portion of the copper foil pattern on one surface is formed a plated layer to be connected to an electrical component. The thickness of the insulative protecting film which is bonded with the surface on which the plated layer is formed is set to be thinner than the base polymer film. As a result, it is ensured that insulation failure of the insulative protecting film is prevented, and wire breakage of wiring when bent can easily be prevented.
    • 如下获得柔性布线板。 在由聚酰亚胺等制成的基础聚合物膜的两面形成铜箔图案。除了一个表面的铜箔图案的端部之外,两面的铜箔图案全部被绝缘覆盖 保护由聚酰亚胺制成的膜等,用于保护铜箔图案,并且绝缘保护膜和铜箔图案通过绝缘保护膜粘合剂层彼此接合。 在一个表面上的铜箔图案的露出端部形成有与电气部件连接的镀层。 与形成有镀层的表面接合的绝缘保护膜的厚度设定为比基体聚合物膜薄。 其结果,能够防止绝缘保护膜的绝缘破坏,能够容易地防止弯曲时的布线断线。
    • 10. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20080028831A1
    • 2008-02-07
    • US11832855
    • 2007-08-02
    • Takashi NAKASHIMAYuichi Yamada
    • Takashi NAKASHIMAYuichi Yamada
    • G01N7/10
    • G01N27/4077
    • In a protector (100) for protecting a detecting portion (11) of a sensor element (10) of a gas sensor (1), the opening area of individual inner introduction holes (130) and (140) formed in an inner protector (120) is 3.5 mm2 or less. In this manner, the amount and size of water droplets able to pass through the inner introduction holes (130) and (140) and to adhere to the sensor element (10) is restricted. In order to ensure good gas replaceability between the interior and the exterior of the inner protector (120) so as to attain quick gas response, the total opening area of the inner introduction holes (130) and (140) is 10 mm2 or more.
    • 在用于保护气体传感器(1)的传感器元件(10)的检测部分(11)的保护器(100)中,形成在内部保护器(1)中的各个内部引入孔(130)和(140) 120)为3.5mm 2以下。 以这种方式,可以限制能够穿过内部引入孔(130)和(140)并粘附到传感器元件(10)的水滴的量和尺寸。 为了确保内部保护器(120)的内部和外部之间的良好的气体可更换性,以便获得快速的气体响应,内部引入孔(130)和(140)的总开口面积为10mm, 2以上。