TARGET SYSTEM TRANSMITTING FEEDBACK TO SHOOTER
    11.
    发明申请
    TARGET SYSTEM TRANSMITTING FEEDBACK TO SHOOTER 有权
    目标系统发送反馈到拍摄

    公开(公告)号:US20160238352A1

    公开(公告)日:2016-08-18

    申请号:US14994086

    申请日:2016-01-12

    CPC classification number: F41J5/041

    Abstract: An active target has a target face that is backlit by LEDs, where a detection layer behind the target face detects a new projectile hole in the target, such as from a gun or an arrow. The detection layer may be formed of one or more resistive layers, and the detected increase in resistance due to a new projectile hole being created is sensed and correlated to an XY position of the hole. The location of the new hole is transmitted via an RF signal to the shooter's portable device, such as a smartphone, and the shooter sees the location of the hit relative to the target face in real time. The LEDs may be dynamically controlled. The target is disposable and is supported by a support base containing the control electronics and transmitter.

    Abstract translation: 主动目标具有由LED背光的目标面,其中目标面后面的检测层检测到目标中的新的射弹孔,例如从枪或箭头。 检测层可以由一个或多个电阻层形成,并且检测到由于所产生的新的抛射孔引起的检测到的电阻增加,并与孔的XY位置相关联。 新孔的位置通过RF信号传送到射手的便携式设备,例如智能手机,并且射手实时看到相对于目标脸部的命中位置。 LED可以动态控制。 目标是一次性的,并由包含控制电子设备和发射器的支撑基座支撑。

    Printable Composition for an Ionic Gel Separation Layer For Energy Storage Devices
    15.
    发明申请
    Printable Composition for an Ionic Gel Separation Layer For Energy Storage Devices 有权
    用于储能装置的离子凝胶分离层的可印刷组合物

    公开(公告)号:US20150357677A1

    公开(公告)日:2015-12-10

    申请号:US14831659

    申请日:2015-08-20

    Abstract: Representative embodiments provide a composition for printing a liquid or gel separator utilized to separate and space apart first and second conductors or electrodes of an energy storage device, such as a battery or a supercapacitor. A representative composition comprises a plurality of particles, typically having a size (in any dimension) between about 0.5 to about 50 microns; a first, ionic liquid electrolyte; and a polymer or polymeric precursor. In another representative embodiment, the plurality of particles comprise diatoms, diatomaceous frustules, and/or diatomaceous fragments or remains. Another representative embodiment further comprises a second electrolyte different from the first electrolyte; the plurality of particles are comprised of silicate glass; the first and second electrolytes comprise zinc tetrafluoroborate salt in 1-ethyl-3-methylimidalzolium tetrafluoroborate ionic liquid; and the polymer comprises polyvinyl alcohol (“PVA”) or polyvinylidene fluoride (“PVFD”). Additional components, such as additional electrolytes and solvents, may also be included.

    Abstract translation: 代表性的实施方案提供了用于印刷液体或凝胶分离器的组合物,其用于分离和分开能量存储装置(例如电池或超级电容器)的第一和第二导体或电极。 代表性组合物包含多个颗粒,通常具有约0.5至约50微米的尺寸(任何尺寸); 第一种离子液体电解质; 和聚合物或聚合物前体。 在另一个代表性的实施方案中,多个颗粒包括硅藻,硅藻土锥形体和/或硅藻质碎片或残留物。 另一个代表性的实施方案还包括不同于第一电解质的第二电解质; 多个颗粒由硅酸盐玻璃组成; 第一和第二电解质包括在1-乙基-3-甲基咪唑鎓四氟硼酸盐离子液体中的四氟硼酸锌盐; 聚合物包括聚乙烯醇(“PVA”)或聚偏二氟乙烯(“PVFD”)。 还可以包括另外的组分,例如附加的电解质和溶剂。

    Printable Ionic Gel Separation Layer For Energy Storage Devices
    17.
    发明申请
    Printable Ionic Gel Separation Layer For Energy Storage Devices 审中-公开
    用于储能设备的可打印离子凝胶分离层

    公开(公告)号:US20150357125A1

    公开(公告)日:2015-12-10

    申请号:US14829243

    申请日:2015-08-18

    Abstract: Representative embodiments provide a liquid or gel separator utilized to separate and space apart first and second conductors or electrodes of an energy storage device, such as a battery or a supercapacitor. A representative liquid or gel separator comprises a plurality of particles, typically having a size (in any dimension) between about 0.5 to about 50 microns; a first, ionic liquid electrolyte; and a polymer. In another representative embodiment, the plurality of particles comprise diatoms, diatomaceous frustules, and/or diatomaceous fragments or remains. Another representative embodiment further comprises a second electrolyte different from the first electrolyte; the plurality of particles are comprised of silicate glass; the first and second electrolytes comprise zinc tetrafluoroborate salt in 1-ethyl-3-methylimidalzolium tetrafluoroborate ionic liquid; and the polymer comprises polyvinyl alcohol (“PVA”) or polyvinylidene fluoride (“PVFD”). Additional components, such as additional electrolytes and solvents, may also be included.

    Abstract translation: 代表性的实施例提供了用于分离和分开能量存储装置(例如电池或超级电容器)的第一和第二导体或电极的液体或凝胶分离器。 代表性的液体或凝胶分离器包括多个颗粒,通常具有在约0.5至约50微米之间的尺寸(任何尺寸); 第一种离子液体电解质; 和聚合物。 在另一个代表性的实施方案中,多个颗粒包括硅藻,硅藻土锥形体和/或硅藻质碎片或残留物。 另一个代表性的实施方案还包括不同于第一电解质的第二电解质; 多个颗粒由硅酸盐玻璃组成; 第一和第二电解质包括在1-乙基-3-甲基咪唑鎓四氟硼酸盐离子液体中的四氟硼酸锌盐; 聚合物包括聚乙烯醇(“PVA”)或聚偏二氟乙烯(“PVFD”)。 还可以包括另外的组分,例如附加的电解质和溶剂。

    Conductive Ink Composition
    19.
    发明申请
    Conductive Ink Composition 审中-公开
    导电油墨组合物

    公开(公告)号:US20150299481A1

    公开(公告)日:2015-10-22

    申请号:US14751829

    申请日:2015-06-26

    CPC classification number: C09D11/033 C09D11/52 H01B13/0036

    Abstract: A representative printable composition comprises a liquid or gel suspension of a plurality of conductive particles; a first solvent comprising a polyol or mixtures thereof, such as glycerin, and a second solvent comprising a carboxylic or dicarboxylic acid or mixtures thereof, such as glutaric acid. In various embodiments, the conductive particles are comprised of a metal, a semiconductor, an alloy of a metal and a semiconductor, or mixtures thereof, and may have sizes between about 5 nm to about 1.5 microns in any dimension. A representative conductive particle ink can be printed and annealed to produce a conductor.

    Abstract translation: 代表性的可印刷组合物包含多个导电颗粒的液体或凝胶悬浮液; 包含多元醇或其混合物如甘油的第一溶剂和包含羧酸或二羧酸或其混合物如戊二酸的第二溶剂。 在各种实施例中,导电颗粒由金属,半导体,金属和半导体的合金或其混合物组成,并且可以具有在任何尺寸约5nm至约1.5微米之间的尺寸。 可以印刷和退火代表性的导电颗粒油墨以产生导体。

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