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    • 84. 发明授权
    • Gas sensor
    • 气体传感器
    • US06726819B2
    • 2004-04-27
    • US09769393
    • 2001-01-26
    • Takayoshi AtsumiSatoshi Ishikawa
    • Takayoshi AtsumiSatoshi Ishikawa
    • G01N27407
    • G01N27/4077
    • A gas sensor is provided which comprises a sensor element for detecting a component of a gas and a cup-shaped protector for covering a detecting section of the sensor element. The protector is dual-walled and have cup-shaped inner and outer protector members. The inner and outer protector members are constructed and arranged so that g1>g2 where g1 is the distance between an inner surface of a circumferential wall of the outer protector member and an outer surface of a circumferential wall of the inner protector member and g2 is the distance between an inner surface of a bottom wall of the outer protector member and an outer surface of a bottom wall of the inner protector member. The outer protector member has at the circumferential wall thereof a plurality of first gas holes. The inner protector member has at the circumferential wall thereof a plurality of second gas holes.
    • 提供了一种气体传感器,其包括用于检测气体成分的传感器元件和用于覆盖传感器元件的检测部分的杯形保护器。 保护器是双壁的,并具有杯形内外保护件。 内保护构件和外保护构件被构造和布置成使得g1> g2,其中g1是外保护构件的周壁的内表面与内保护构件的周壁的外表面之间的距离,而g2是 外保护构件的底壁的内表面与内保护构件的底壁的外表面之间的距离。 外保护构件在其周向壁上具有多个第一气孔。 内部保护构件在其周向壁上具有多个第二气体孔。
    • 85. 发明授权
    • Safety device of electric circuit and process for producing the same
    • 电路安全装置及其制造方法
    • US06445277B1
    • 2002-09-03
    • US09598694
    • 2000-06-21
    • Satoshi IshikawaOsamu SodaHisafumi Maruo
    • Satoshi IshikawaOsamu SodaHisafumi Maruo
    • H01H8508
    • H05K1/0201H01C7/12H01C7/13H01H37/761H01H2037/046H05K1/0293H05K1/116H05K3/3447H05K2201/0305H05K2201/09572H05K2201/09663H05K2201/09809H05K2201/10022H05K2201/10151H05K2201/10181H05K2203/045
    • A safety device of an electric circuit is provided, in which a thermal fuse securely prevents an accident from occurring when an overcurrent protector is extraordinarily overheated. The safety device includes: first protective means in an overcurrent protector for protecting the electric circuit from an overcurrent, which generates heat to increase its electrical resistance when an overcurrent flows in the electric circuit, whereby reducing or cutting off the overcurrent; and second protective means including a thermal fuse situated in the vicinity of the overcurrent protector containing: a first electrode having a first conductor pattern connected to the overcurrent protector; a second electrode having a second conductor pattern insulated from the first electrode by a gap; and solder connecting the first and second electrodes and melting by heat from the overcurrent protector so as to split into two parts toward the first and second electrodes. According to the safety device, the thermal fuse can quickly operate when the overcurrent protector is extraordinarily overheated and be easily formed by employing an automatic soldering machine and the like.
    • 提供一种电路的安全装置,其中当过电流保护器过热时,热熔丝可靠地防止发生事故。 该安全装置包括:过电流保护器中的第一保护装置,用于保护电路免受过电流的影响,当过电流流过电路时产生热量以增加其电阻,从而减少或切断过电流; 以及包括位于过电流保护器附近的热熔丝的第二保护装置,包括:具有连接到过电流保护器的第一导体图案的第一电极; 第二电极,具有通过间隙与第一电极绝缘的第二导体图案; 并且焊接连接第一和第二电极并通过来自过电流保护器的热量熔化,以朝着第一和第二电极分成两部分。 根据安全装置,当过电流保护器过度过热并且通过使用自动焊接机等容易地形成时,热熔丝可以快速操作。
    • 86. 发明授权
    • Oxygen sensor
    • 氧传感器
    • US06383353B1
    • 2002-05-07
    • US09599448
    • 2000-06-22
    • Shoji AkatsukaSatoshi IshikawaMasahiro Asai
    • Shoji AkatsukaSatoshi IshikawaMasahiro Asai
    • G01N27407
    • G01N27/407
    • A sensor structure which reduces the resistance of insertion in the course of insertion of a metallic terminal member into the hollow portion of an oxygen detection element so as to enable smooth assembly and such that portions of the metallic terminal member become less susceptible to plastic deformation. An attachment portion 23c of a metallic terminal member 23 is in contact with the inner wall surface of a hollow portion 2a of an oxygen detection element 2, directly or indirectly via another member, at opposite sides thereof located along the direction of contact. Also, a gap is formed between an attachment portion 23c and the inner wall surface at opposite sides of the attachment portion 23c located along the direction of gap formation. Thus, in the course of insertion of the metallic terminal member 23 into the hollow portion 2a of the oxygen detection element 2, the resistance of insertion decreases, whereby assembly can be performed smoothly, and portions of the metallic terminal member 23 become less susceptible to plastic deformation, such as crushing, bending, or buckling.
    • 一种传感器结构,其在将金属端子构件插入氧气检测元件的中空部分的过程中降低插入阻力,以便能够平稳地组装,并且使得金属端子构件的部分变得不易塑性变形。 金属端子构件23的安装部23c与氧检测元件2的中空部2a的内壁面直接或间接地经由另一构件在沿着接触方向的相对侧接触。 此外,在安装部23c与沿着间隙形成方向配置的安装部23c的相对侧的内壁面之间形成间隙。 因此,在将金属端子构件23插入氧检测元件2的中空部2a的过程中,插入阻力降低,能够平稳地进行组装,并且金属端子构件23的部分变得不易受 塑性变形,如破碎,弯曲或屈曲。
    • 89. 发明授权
    • Structure for fixing a flat cable to a cylindrical rotator
    • 将扁平电缆固定到圆柱形旋转体的结构
    • US5607316A
    • 1997-03-04
    • US581835
    • 1996-01-02
    • Satoshi Ishikawa
    • Satoshi Ishikawa
    • B60R16/027B60R16/02H01R35/02H01R35/04H01R39/02
    • B60R16/027H01R35/025
    • Disclosed herein is a contactless electric signal transmitter, which includes a rotator having an outer periphery formed with a space for housing a fold of a flat cable. A cover covers the space and fixes the fold therein. The space has both axial side walls formed with first engaging means, respectively. The cover has an outer cylindrical surface of the same curvature as the rotator periphery. The cover also has second engaging means for engagement with the first means, respectively, of the space. The cover may have a recess, through which the cable can extend out of the space. This structure makes it possible to fit the cable fold to the rotator simply and securely at low costs. One axial wall of the groove may have a recess formed in part of it. The recess has an axial slope extending between the outer periphery and the bottom of groove.
    • 本文公开了一种非接触电信号发射器,其包括具有形成有用于容纳扁平电缆的折叠的空间的外周的旋转器。 盖子覆盖空间并将折叠物固定在其中。 该空间具有分别由第一接合装置形成的轴向侧壁。 盖具有与旋转器周边相同曲率的外圆柱形表面。 盖子还具有用于分别与空间的第一装置接合的第二接合装置。 盖可以具有凹部,电缆可以通过该凹槽延伸出空间。 这种结构使得可以以低成本简单且安全地将电缆折叠装配到转子上。 凹槽的一个轴向壁可以具有形成在其中的一部分的凹部。 凹部具有在凹槽的外周和底部之间延伸的轴向斜面。
    • 90. 发明授权
    • Optical data communication system
    • 光数据通信系统
    • US4644587A
    • 1987-02-17
    • US443719
    • 1982-11-22
    • Yoshifusa TakahashiHiroshi KadonagaSatoshi IshikawaJunichi Kikuchi
    • Yoshifusa TakahashiHiroshi KadonagaSatoshi IshikawaJunichi Kikuchi
    • H04B10/07H04B10/077H04B10/272H04B10/29H04L12/40H04L12/413H04L12/44H04B9/00
    • H04B10/27H04B10/272H04B10/29H04L12/44
    • An optical data communication system using an optical star repeater which converts an optical signal transmitted from a terminal unit into an electric signal, amplifies the electric signal, reconverts the amplified electric signal into an optical signal, and then distributes the optical signal to respective terminal units inclusive of the terminal unit which transmitted the optical signal. The star repeater includes collision detector means for detecting a collision condition in communication, and output control means for interrupting the distribution of the optical signal to the terminal units. The output control means is controlled by an output of collision detector means so that, in response to a collision, it is caused to cut off the signal distribution to the terminal units. Simultaneously with the cut-off of the signal distribution, a collision signal indicating the occurrence of a collision is distributed to the respective terminal units, whereby the terminal units can accurately and immediately detect the collision condition.
    • 一种使用光学星形中继器的光学数据通信系统,其将从终端单元发送的光信号转换为电信号,放大电信号,将放大的电信号重新转换为光信号,然后将光信号分配给各个终端单元 包括发送光信号的终端单元。 星形中继器包括用于检测通信中的碰撞状况的碰撞检测器装置,以及用于中断光信号分配给终端单元的输出控制装置。 输出控制装置由冲突检测装置的输出控制,使得响应于碰撞,使得切断对终端单元的信号分配。 与信号分配截止同时,指示发生碰撞的碰撞信号被分配到各个终端单元,由此终端单元可以准确地并且立即检测到碰撞状况。