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    • 4. 发明申请
    • Device, kit and method for monitoring a parameter history
    • 用于监视参数历史的设备,套件和方法
    • US20080013595A1
    • 2008-01-17
    • US11806104
    • 2007-05-30
    • Payman TehraniNathaniel RobinsonDavid NilssonMagnus BerggrenPetronella Norberg
    • Payman TehraniNathaniel RobinsonDavid NilssonMagnus BerggrenPetronella Norberg
    • G01K3/00
    • G01K3/04
    • A device for determining a parameter history indication of at least one external parameter, comprises an electrode, termed “first electrode” (2, 2a, 2b, 2c), and another electrode, termed “third electrode” (4, 4a, 4b, 4c). The electrodes (2, 2a, 2b, 2c; 4, 4a, 4b, 4c) are in consuming contact with a respective electrolyte (5, 6, 6a, 6b, 6c). A consumption process of the third electrode is controllable by an amount of consumption of said first electrode. The electrolytes are so arranged that consumption rates of the first and third electrodes (2, 2a, 2b, 2c; 4, 4a, 4b, 4c) present different dependencies on the at least one external parameter. A kit of parts including such a device, and a method for determining a parameter history indication of at least one external parameter are also disclosed.
    • 用于确定至少一个外部参数的参数历史指示的装置包括称为“第一电极”(2,2a,2b,2c)的电极和称为“第三电极”(4,4)的另一个电极 a,4b,4c)。 电极(2,2a,2b,2c; 4,4a,4b,4c)与相应的电解质(5,6,6a,6b,6c)消耗接触。 第三电极的消耗过程由所述第一电极的消耗量控制。 电解质被布置成使得第一和第三电极(2,2a,2b,2c; 4,4a,4b,4c)的消耗速率对至少一个外部参数存在不同的依赖性。 还公开了一种包括这种装置的部件套件以及用于确定至少一个外部参数的参数历史指示的方法。
    • 6. 发明申请
    • Electrically controlled ion transport device
    • 电控离子传输装置
    • US20080023339A1
    • 2008-01-31
    • US11806743
    • 2007-06-04
    • Magnus BerggrenPeter KjallDavid NilssonNathaniel RobinsonAgneta DahlforsJoakim Isaksson
    • Magnus BerggrenPeter KjallDavid NilssonNathaniel RobinsonAgneta DahlforsJoakim Isaksson
    • C25C7/00
    • G01N33/48728
    • A device is disclosed for electrically controlled transport of ions between a source and a target electrolyte, including a source electrode and a target electrode. The electrodes are each capable of conducting ions, and the source electrode is arranged to receive ions from the source electrolyte and the target electrode is arranged to release ions to the target electrolyte. The device further includes an ion-conductive channel, arranged to receive ions from the source electrode and to release ions to the target electrode. Moreover, the ion-conductive channel is arranged to provide an ionic connection between the source and the target electrodes. The electrodes and the ion-conductive channel are formed of solid or semi-solid materials which are directly or indirectly attached to a support. In at least one embodiment, the device also includes a device for limiting an electronic current between the source and the target electrodes, such that at least after a voltage is applied across the channel a potential difference between the source and target electrodes is maintained, which potential difference effects ion transport from said source to the target electrode. An apparatus for transporting ions to or from a cell, use of the device for transporting ions to or from a cell, and methods of operating the device are also disclosed.
    • 公开了用于在源极和目标电解质之间电离转移离子的装置,包括源电极和目标电极。 电极各自能够传导离子,并且源极被布置成接收来自源电解质的离子,并且目标电极被布置成将离子释放到目标电解质。 该装置还包括离子传导通道,其布置成接收来自源电极的离子并将离子释放到目标电极。 此外,离子传导通道布置成在源极和靶电极之间提供离子连接。 电极和离子传导通道由固体或半固体材料形成,其直接或间接附着到支撑体上。 在至少一个实施例中,该装置还包括用于限制源极和目标电极之间的电子电流的装置,使得至少在跨过沟道施加电压之后,维持源电极和目标电极之间的电位差,其中 潜在差异影响从所述源到目标电极的离子传输。 还公开了用于将离子输送到电池或从电池输送离子的装置,使用该装置将离子输送到电池或从电池输送离子的装置,以及操作该装置的方法。
    • 8. 发明授权
    • Timer switch
    • 定时开关
    • US07626893B2
    • 2009-12-01
    • US11415425
    • 2006-05-02
    • Nathaniel RobinsonDavid NilssonMagnus Berggren
    • Nathaniel RobinsonDavid NilssonMagnus Berggren
    • G04F8/00H01G9/00
    • H01H43/32H01L51/0504Y10T307/62
    • The present invention provides an electrochemical timer device (110) having a source (101) and a drain (102) contact. The device further comprises a switch channel (104) and a delay reservoir (103) that are electrochemically interconnected with a gate electrode (105). The switch channel (104) interconnects the source (101) and drain (102) contacts and is arranged to change electrical conductivity upon electrochemistry therein, and an electrochemical reaction is arranged to occur in the gate electrode (105) and delay reservoir (103) upon application of a drive voltage there between. The delay reservoir (103) is arranged such that the electrochemical reaction occurring therein gradually moves towards the switch channel (104) and eventually reaches the switch channel (104) after a delay time thereby changing the electrical conductivity of the switch channel (104).
    • 本发明提供具有源(101)和漏极(102)接触的电化学计时器装置(110)。 该装置还包括与栅电极(105)电化学互连的开关通道(104)和延迟储存器(103)。 开关通道(104)使源极(101)和漏极(102)接触互连,并且被布置成在其中电化学时改变导电性,并且电化学反应被布置成发生在栅电极(105)和延迟储存器(103)中, 在其间施加驱动电压。 延迟储存器(103)布置成使得其中发生的电化学反应在延迟时间之后逐渐移向开关通道(104)并最终到达开关通道(104),由此改变开关通道(104)的电导率。
    • 9. 发明申请
    • Timer switch
    • 定时开关
    • US20060261676A1
    • 2006-11-23
    • US11415425
    • 2006-05-02
    • Nathaniel RobinsonDavid NilssonMagnus Berggren
    • Nathaniel RobinsonDavid NilssonMagnus Berggren
    • H02J7/00
    • H01H43/32H01L51/0504Y10T307/62
    • The present invention provides an electrochemical timer device (110) having a source (101) and a drain (102) contact. The device further comprises a switch channel (104) and a delay reservoir (103) that are electrochemically interconnected with a gate electrode (105). The switch channel (104) interconnects the source (101) and drain (102) contacts and is arranged to change electrical conductivity upon electrochemistry therein, and an electrochemical reaction is arranged to occur in the gate electrode (105) and delay reservoir (103) upon application of a drive voltage there between. The delay reservoir (103) is arranged such that the electrochemical reaction occurring therein gradually moves towards the switch channel (104) and eventually reaches the switch channel (104) after a delay time thereby changing the electrical conductivity of the switch channel (104).
    • 本发明提供具有源(101)和漏极(102)接触的电化学计时器装置(110)。 该装置还包括与栅电极(105)电化学互连的开关通道(104)和延迟储存器(103)。 开关通道(104)使源极(101)和漏极(102)接触互连,并且被布置成在其中电化学时改变导电性,并且电化学反应被布置成发生在栅电极(105)和延迟储存器(103)中, 在其间施加驱动电压。 延迟储存器(103)布置成使得其中发生的电化学反应在延迟时间之后逐渐移向开关通道(104)并最终到达开关通道(104),由此改变开关通道(104)的电导率。