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    • 1. 发明授权
    • Mercury switch
    • 梅尔开关
    • US3831118A
    • 1974-08-20
    • US25281072
    • 1972-05-12
    • FIFTH DIMENSION INC
    • BITKO S
    • H01H1/08H01H36/00H01H51/28
    • H01H51/284H01H1/08H01H36/00
    • An attitude insensitive mercury relay including a hermetically sealed non-magnetic enclosure composed of a header and header cap, welded together in a high pressure hydrogen atmosphere, including one or more stationary contacts extending insulatedly into the enclosure and a magnetic diaphragm as armature, in the form of a single planar tight spiral having physically separated turns. In one form of the device, the interior of the enclosure and the diaphragm may be mercury wettable, excluding only an insulating feedthrough button as provided for a stationary contact, and also excluding a portion of the face of the contact which is intended to sustain impact by the armature, the mercury wettable portion of that face being indented with respect to the impact area, and the quantity of mercury in the enclosure being sufficient, but only sufficient, to sustain a thin layer of mercury on the mercury wettable surfaces. In other forms the enclosure may be non-metallic, e.g., ceramic, provided with mercury wettable screen surfaces or fabricated of non-mercury wettable material, e.g., magnetic material.
    • 一种不敏感的不连续的汞继电器,包括由集管和集管帽组成的密封的非磁性外壳,其在高压氢气氛中焊接在一起,包括一个或多个固定触头,绝缘地延伸到外壳中,并且磁膜作为电枢,在 具有物理分离的匝的单个平面紧密螺旋形式。 在装置的一种形式中,外壳和隔膜的内部可以是水银可湿润的,不包括仅为固定接触提供的绝缘馈通按钮,并且还排除旨在维持冲击的接触面的一部分 通过电枢,该表面的汞可湿性部分相对于冲击区域是凹陷的,并且外壳中的汞的量足够,但足够的是在汞可湿性表面上维持薄的汞层。 在其它形式中,外壳可以是非金属的,例如具有汞可湿性筛网表面的陶瓷,或由非汞可湿性材料(例如磁性材料)制成。
    • 4. 发明授权
    • Glass-to-metal seal
    • 玻璃 - 金属密封
    • US5227250A
    • 1993-07-13
    • US763237
    • 1991-09-20
    • Thomas A. BobalJeffrey M. ArouhSheldon S. Bitko
    • Thomas A. BobalJeffrey M. ArouhSheldon S. Bitko
    • C03C27/02H01L23/10
    • H01L23/10C03C27/02H01L2924/0002H01L2924/01079Y10T428/12597Y10T428/12625Y10T428/12875
    • A glass-to-metal seal including a metal member such as Pd or a Pd-Ru alloy and a glass member wherein the glass member is in contact with the metal member and forms a glass-to-metal seal therewith. The seal can include an outer body surrounding the glass member and forming a seal therewith. The outer body has a coefficient of thermal expansion greater than that of the glass member and the seals between the outer body, the glass member and metal member are compression seals. The glass-to-metal seal is made by directly glassing onto the metal member in a furnace having an atmosphere which prevents outgassing of hydrogen from the metal member into the interface between the glass member and metal member. After the glass-to-metal seal forming step, the outer body can be metallurgically bonded to another component without chemically cleaning the outer body and the metal member can be metallurgically bonded to another member such as a gold wire without plating the metal member prior to the bonding step.
    • 包括诸如Pd或Pd-Ru合金的金属构件的玻璃 - 金属密封件和玻璃构件,其中玻璃构件与金属构件接触并与其形成玻璃 - 金属密封。 密封件可以包括围绕玻璃构件并与其形成密封的外部主体。 外体的热膨胀系数大于玻璃构件的热膨胀系数,外体,玻璃构件和金属构件之间的密封是压缩密封。 玻璃 - 金属密封件通过在具有防止氢从金属部件逸出到玻璃构件和金属构件之间的界面的气氛的炉子中直接玻璃化到金属构件上而制成。 在玻璃 - 金属密封形成步骤之后,外部体可以冶金地结合到另一个部件上,而不用化学地清洁外部本体,并且金属部件可以冶金地结合到诸如金线的其它部件上,而不会在金属部件之前镀覆金属部件 接合步骤。
    • 6. 发明授权
    • Mercury switch
    • 梅尔开关
    • US3697906A
    • 1972-10-10
    • US3697906D
    • 1970-04-19
    • FIFTH DIMENSION INC
    • BITKO SHELDON S
    • H01H1/08H01H51/28
    • H01H51/284H01H1/08
    • An attitude insensitive mercury relay including a hermetically sealed non-magnetic enclosure composed of a header and header cap, welded together in a high pressure hydrogen atmosphere, including one or more stationary contacts extending insulatedly into the enclosure and a magnetic diaphragm as armature, in the form of a single planar tight spiral having physically separated turns. In one form of the device, the interior of the enclosure and the diaphragm may be mercury wettable, excluding only an insulating feedthrough button as provided for a stationary contact, and also excluding a portion of the face of the contact which is intended to sustain impact by the armature, the mercury wettable portion of that face being indented with respect to the impact area, and the quantity of mercury in the enclosure being sufficient, but only sufficient, to sustain a thin layer of mercury on the mercury wettable surfaces. In other forms the enclosure may be non-metallic, e.g., ceramic, provided with mercury wettable screen surfaces or fabricated of non-mercury wettable material, e.g., magnetic material.
    • 一种不敏感的不连续的汞继电器,包括由集管和集管帽组成的密封的非磁性外壳,其在高压氢气氛中焊接在一起,包括一个或多个固定触头,绝缘地延伸到外壳中,并且磁膜作为电枢,在 具有物理分离的匝的单个平面紧密螺旋形式。 在装置的一种形式中,外壳和隔膜的内部可以是水银可湿润的,不包括仅为固定接触提供的绝缘馈通按钮,并且还排除旨在维持冲击的接触面的一部分 通过电枢,该表面的汞可湿性部分相对于冲击区域是凹陷的,并且外壳中的汞的量足够,但足够的是在汞可湿性表面上维持薄的汞层。 在其它形式中,外壳可以是非金属的,例如具有汞可湿性筛网表面的陶瓷,或由非汞可湿性材料(例如磁性材料)制成。
    • 7. 发明授权
    • Welding head for producing uniform and repeatable resistance welds
    • 焊接头用于生产均匀和可重复耐受的焊丝
    • US3674976A
    • 1972-07-04
    • US3674976D
    • 1970-11-13
    • FIFTH DIMENSION INC
    • BITKO SHELDON S
    • B23K11/11B23K9/28
    • B23K11/115
    • In a welding head, the weight of a substantially free-falling body is applied to a welding electrode via a lever, the mechanical advantage introduced by the lever being selected to achieve a predetermined movement of said electrode into a body to be welded during a predetermined time interval, irrespective of the magnitude of the weight, the weight being selected to apply a predetermined weld pressure at the electrode via the mechanical advantage of the lever. Timing operation depends solely on a falling weight and hence is perfectly reproducible for a variety of weld pressures.
    • 在焊接头中,通过杠杆将基本上自由落体的重量施加到焊接电极,由杠杆引入的机械优点被选择为在预定的时间段内实现所述电极预定的待焊接的主体的运动 时间间隔,不管重量的大小,选择的重量是通过杠杆的机械优点在电极处施加预定的焊接压力。 定时操作仅取决于重量,因此对于各种焊接压力是完全可重现的。
    • 8. 发明授权
    • Mercury switch
    • 梅尔开关
    • US3646490A
    • 1972-02-29
    • US3646490D
    • 1970-08-24
    • FIFTH DIMENSION INC
    • BITKO SHELDON S
    • H01H1/08H01H36/00H01H51/28
    • H01H51/284H01H1/08H01H36/00H01H51/28H01H51/285
    • An attitude insensitive mercury relay included in a hermetically sealed nonmagnetic enclosure composed of a header and header cap, welded together in a high-pressure hydrogen atmosphere, including one or more stationary contacts extending insulatedly into the enclosure and a magnetic diaphragm as armature, in the form of a single planartight spiral having physically separated turns. In one form of the device, the interior of the enclosure and the diaphragm may be mercury wettable, excluding only an insulating feedthrough button for a stationary contact, and also excluding a portion of the face of the contact which is intended to sustain impact by the armature, the mercury wettable portion of that face being indented with respect to the impact area, and the quantity of mercury in the enclosure being sufficient, but only sufficient, to sustain a thin layer of mercury on the mercury wettable surfaces. In other forms the enclosure may be nonmetallic, e.g., ceramic, provided with mercury wettable screen surfaces.
    • 10. 发明授权
    • Shock sensor switch having a liquid conductor
    • 具有液体导体的震动传感器开关
    • US5359162A
    • 1994-10-25
    • US176685
    • 1994-01-03
    • Sheldon S. Bitko
    • Sheldon S. Bitko
    • H01H29/00H01H35/14
    • H01H29/002
    • A shock sensor comprises a housing defining an interior space. The space includes a cylindrical side surface and an end surface, the surfaces being formed of an electrically conductive material. An insert is positioned in the space and includes an electrically conductive support surface which defines a recess facing the conductive end surface. A volume of mercury is contained in the recess. The support surface is wetted to the liquid, and the end and side surfaces are not wetted to the liquid, so that the liquid moves into electrical contact with the end surface and/or side surface in response to shocks and is thereafter restored.
    • 冲击传感器包括限定内部空间的壳体。 所述空间包括圆柱形侧表面和端表面,所述表面由导电材料形成。 插入件定位在该空间中并且包括导电支撑表面,其限定面向导电端表面的凹部。 凹槽中含有一定量的汞。 支撑表面被润湿到液体,并且端面和侧表面没有被润湿到液体,使得液体响应于冲击而与端表面和/或侧表面电接触,然后恢复。