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    • 2. 发明授权
    • CMOS voltage divider
    • CMOS分压器
    • US06429731B2
    • 2002-08-06
    • US09816934
    • 2001-03-23
    • Thomas BöhmRobert EsterlStefan LammersZoltan Manyoki
    • Thomas BöhmRobert EsterlStefan LammersZoltan Manyoki
    • G05F1595
    • G05F3/242
    • A CMOS voltage divider having a first chain containing series-connected MOS transistors of a first conductivity type is described. Each of the MOS transistors have identical geometrical dimensions and, at the same time, each have identical gate-source voltages. The MOS transistors operate in the linear range of their characteristic curve and between opposite ends of the first chain an input voltage to be divided is present and at whose source terminals the voltage fractions can in each case be picked off. Provision is made of a second chain containing series-connected MOS transistors, complementary to the first MOS transistors. The second chain has the same number of transistors as the first MOS transistors and with the same geometrical dimension in each case. The MOS transistors of the first chain are connected to the MOS transistors of the second chain in such a way that each MOS transistor chain generates the gate-source bias voltage for the respective other MOS transistor chain.
    • 描述了具有包含第一导电类型的串联MOS晶体管的第一链的CMOS分压器。 每个MOS晶体管具有相同的几何尺寸,并且同时具有相同的栅源电压。 MOS晶体管在其特性曲线的线性范围内工作,并且在第一链的相对端之间存在待分割的输入电压,并且在每个情况下,其源极端子的电压分数可以被拾取。 提供了包含与第一MOS晶体管互补的串联MOS晶体管的第二链。 第二链具有与第一MOS晶体管相同数量的晶体管,并且在每种情况下具有相同的几何尺寸。 第一链的MOS晶体管以这样的方式连接到第二链的MOS晶体管,使得每个MOS晶体管链为相应的另一个MOS晶体管链产生栅极 - 源极偏置电压。
    • 4. 发明授权
    • Contact spring arrangement for a relay for conducting and switching high
currents
    • 用于继电器的接触弹簧布置,用于导通和切换高电流
    • US5583471A
    • 1996-12-10
    • US335741
    • 1995-05-09
    • Josef WeiserRobert EsterlGerhard FurtwanglerHorst Tamm
    • Josef WeiserRobert EsterlGerhard FurtwanglerHorst Tamm
    • H01H50/54H01H1/54H01H9/38H01H51/22H01H51/24
    • H01H1/54H01H51/2272H01H9/38
    • The contact spring arrangement has an elongated contact spring having a rigid connecting leg which extends approximately parallel to the contact spring and conducts the switching current in a direction opposite to the contact spring. On the side opposite the connecting leg the contact spring has a contact piece which co-operates with an opposite counter-contact element having a contact piece. The repulsive forces between the connecting leg and the contact spring become so long that even in the case of the highest short circuit currents no welding of the contacts results when in the case of contact pieces made from silver or a silver alloy the length of the gap formed between the contact spring and connecting leg is at least 20 times larger than the average spring spacing in the gap.
    • PCT No.PCT / DE93 / 00419 Sec。 371日期1995年5月9日第 102(e)日期1995年5月9日PCT提交1993年5月13日PCT公布。 公开号WO93 / 23863 日期1997年11月25日接触弹簧装置具有细长接触弹簧,其具有刚性连接腿,该刚性连接腿大致平行于接触弹簧延伸并且在与接触弹簧相反的方向上传导开关电流。 在连接腿的相对侧上,接触弹簧具有与具有接触片的相对的反接触元件配合的接触片。 连接脚和接触弹簧之间的排斥力变得如此长,即使在最短的短路电流的情况下,当由银或银合金制成的接触片的情况下,触点的焊接也不会导致间隙的长度 在接触弹簧和连接腿之间形成的间隙比间隙中的平均弹簧间隔至少大20倍。
    • 6. 发明授权
    • Getter body
    • 吸气体
    • US4360444A
    • 1982-11-23
    • US239571
    • 1981-03-02
    • Robert EsterlJosef Weiser
    • Robert EsterlJosef Weiser
    • B01J20/28H01H1/64H01H33/66H01J7/18
    • B01J20/2803B01J20/28033H01H1/645H01H33/6683
    • A getter body for use in encapsulated electrical components is of the type consisting of a powder mixture which has been compressed into tablet form. The powder mixture contains in addition to traditional getter material such as activated carbon, zeolite or the like, aluminum stearate and a binder containing a synthetic such as a polyamide. The getter body is produced in several sequential steps. The getter material is mixed with a polycarbonate or a water glass solution, which is then dried and then pulverized. To this first powder is added the aluminum stearate and the binder containing a synthetic. The resulting powder may then be dried and is then pressed into tablets. The tablets may then be heat-cured and are then surfaced polished. The resulting tablets have good abrasion resistance without a noticeable loss in the getter effectiveness.
    • 用于封装的电气部件的吸气体是由压缩成片剂形式的粉末混合物组成的类型。 除了传统的吸气剂材料如活性炭,沸石等,粉末混合物还包含硬脂酸铝和含有合成物如聚酰胺的粘合剂。 吸气体以几个顺序的步骤生产。 将吸气剂材料与聚碳酸酯或水玻璃溶液混合,然后将其干燥然后粉碎。 向该第一粉末中加入硬脂酸铝和含有合成的粘合剂。 然后将所得粉末干燥,然后压制成片剂。 然后将片剂加热固化,然后进行表面抛光处理。 所得到的片剂具有良好的耐磨性,而在吸气剂有效性方面没有明显的损失。
    • 8. 发明授权
    • Method for operating an integrated memory
    • 操作集成存储器的方法
    • US06445607B2
    • 2002-09-03
    • US09829288
    • 2001-04-09
    • Robert EsterlHeinz HönigschmidHelmut KandolfThomas Röhr
    • Robert EsterlHeinz HönigschmidHelmut KandolfThomas Röhr
    • G11C1122
    • G11C11/22
    • A description is given of a method for operating an integrated memory which has memory cells each having a selection transistor and a storage capacitor with a ferroelectric storage effect. The memory contains a plate line, which is connected to one of the column lines via a series circuit containing a selection transistor and a storage capacitor of respective memory cells. A memory access is carried out according to the “pulsed plate concept”. In this case, the temporal sequence is controlled in such a way that, in an access cycle, the storage capacitor of the memory cell to be selected is in each case charged and discharged by the same amount. An attenuation or destruction of the information stored in the memory cells, which is caused by source-drain leakage currents of unactivated selection transistors, is thus avoided.
    • 给出了一种用于操作具有存储单元的集成存储器的方法,每个存储单元都具有选择晶体管和具有铁电存储效应的存储电容器。 存储器包含板线,其经由包含各个存储器单元的选择晶体管和存储电容器的串联电路连接到列线之一。 根据“脉冲板概念”进行记忆存取。 在这种情况下,以这样的方式控制时间序列,使得在访问周期中,要选择的存储单元的存储电容器在每种情况下都以相同的量被放电。 因此避免了由未激活的选择晶体管的源漏泄漏电流引起的存储在存储单元中的信息的衰减或破坏。