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    • 5. 发明授权
    • Gas generating cell or battery and method of producing same
    • 气体发生电池或电池及其制造方法
    • US07141082B2
    • 2006-11-28
    • US10654993
    • 2003-09-05
    • Hans Sauer
    • Hans Sauer
    • H01M6/00H01M2/08H01M4/42
    • H01M2/0222H01M2/0413H01M12/06Y10T29/4911Y10T29/49112
    • The present disclosure relates to a gas generating cell including a housing having a cover, an anode cup and a sealing ring. The housing accommodates at least one anode, a cathode and a separator. The cover accommodates at least the cathode and the separator and, with the sealing ring, forms a preassembled unit to be inserted into the anode cup. The present disclosure also relates to a method of producing a gas generating cell, the gas generating cell including a housing having a cover, an anode cup, a sealing ring, and at least one anode, a cathode and a separator. The method steps include: placing at least the cathode and separator into the cover, thereby creating a preassembled unit; and, inserting the preassembled unit and a sealing ring into the anode cup.
    • 本公开涉及一种气体发生单元,其包括具有盖,阳极杯和密封环的壳体。 壳体容纳至少一个阳极,阴极和隔板。 盖子至少容纳阴极和隔板,并且与密封环一起形成预先组装的单元以插入阳极杯中。 本公开还涉及一种生产气体发生电池的方法,气体发生电池包括具有盖,阳极杯,密封环和至少一个阳极,阴极和隔板的壳体。 方法步骤包括:将至少阴极和分离器放置到盖中,从而产生预组装的单元; 并将预组装的单元和密封环插入阳极杯中。
    • 8. 发明授权
    • Electromagnetic relay structure
    • 电磁继电器结构
    • US3946347A
    • 1976-03-23
    • US429273
    • 1973-12-28
    • Hans Sauer
    • Hans Sauer
    • H01H50/16H01H50/18H01H50/44H01H51/22H01H50/04
    • H01H51/2227H01H51/2272
    • A structural arrangement is provided for an electromagnetic relay having an armature, coil means, contact means including contact terminals and fixed contacts, and a coil holder body having the armature located therein and being composed of two substantially exactly interfitting and interconnected parts. One part of the coil holder body is formed as a contact holder with the contact terminals and the fixed contacts embedded therein. The other of the two parts of the coil holder body is formed as a cover member configured to at least partly define a contact containing chamber for the relay structure. Alternatively, the two parts of the coil holder body may be formed to essentially consist of two identically constructed contact holders. Additionally, the coil holder body having the armature located therein may be formed in an undivided integral construction with portions adapted to serve as contact holders and containing therein fixed contacts, as well as contact and winding terminals molded to flanges of the integral coil holder.
    • 提供一种用于具有电枢,线圈装置,包括接触端子和固定触点的接触装置的电磁继电器的结构布置,以及具有位于其中的电枢并且由两个基本上完全相互配合和互连的部件组成的线圈架主体。 线圈架体的一部分形成为接触保持器,其中接触端子和固定触点嵌入其中。 线圈架主体的两个部分中的另一个形成为盖构件,其构造成至少部分地限定用于中继结构的接触容纳室。 或者,线圈保持器主体的两个部分可以形成为基本上由两个相同构造的接触保持器组成。 此外,具有位于其中的电枢的线圈架体可以形成为不分开的整体结构,其中适于用作接触保持器的部分并且包含固定触头,以及模制到一体式线圈架的凸缘的接触和绕线端子。
    • 9. 发明授权
    • Linear electrochemical conductor element
    • 线性电化学导体元件
    • US6103075A
    • 2000-08-15
    • US179004
    • 1998-10-26
    • August WinselHans Sauer
    • August WinselHans Sauer
    • G01N27/30C25B11/00
    • G01N27/302
    • The invention pertains to linear electrochemical functional elements which have strip-shaped ion-exchange membranes (IEMs) and/or hydrogen-diffusion electrodes accessible at the ends which are enclosed on all sides in an insulating manner by a jacket of a solid material. The invention describes the structure, production, and use of the functional elements in electrochemical measuring techniques. In one embodiment, a charge state indicator is created by the incorporation of a lead/lead sulfate half-cell into a lead/lead oxide cell. This coupling takes place via a linear functional element in the form of an installed ion-exchanger membrane. It makes it possible to measure three voltage values on the cell and to evaluate them in order to determine the current charge state by conventional methods.
    • 本发明涉及线性电化学功能元件,其具有带状离子交换膜(IEM)和/或氢扩散电极,其端部可通过固体材料的夹套以绝缘方式封闭在所有侧面上。 本发明描述了电化学测量技术中功能元件的结构,生产和使用。 在一个实施例中,通过将铅/铅硫酸盐半电池结合到铅/铅氧化物电池中来产生电荷状态指示器。 该耦合通过安装的离子交换膜形式的线性功能元件进行。 它可以测量电池上的三个电压值并对它们进行评估,以便通过常规方法确定当前的充电状态。