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    • 4. 发明申请
    • VAPORIZATION LIGHTER
    • 蒸气灯
    • US20160186996A1
    • 2016-06-30
    • US14960831
    • 2015-12-07
    • James WeaverCarter Howe
    • James WeaverCarter Howe
    • F23Q2/16
    • F23Q2/16F23Q2/50
    • A vaporization lighter device includes a heat source for producing a flame and directing the same in a horizontal direction. The heat source is perpendicularly aligned with a flame filter via a main body. The flame filter includes an elongated chamber having an open front end, an open second end, and an aperture along the central portion. A non-combustible filter material is positioned within the elongated chamber and spans the central aperture. Ambient air is drawn through the open first end, across the filter material where it absorbs heat, and leaves the second end as super-heated air.
    • 蒸发打火装置包括用于产生火焰并在水平方向上引导火焰的热源。 热源通过主体与火焰过滤器垂直对准。 火焰过滤器包括细长室,其具有敞开的前端,开口的第二端和沿着中心部分的孔。 不可燃的过滤材料定位在细长室内,并跨过中心孔。 环境空气通过开放的第一端,穿过过滤材料吸收热量,并将第二端作为超热空气。
    • 7. 发明申请
    • Electrodes, devices, and methods for electro-incapacitation
    • 电极,器件和电生产方法
    • US20080007887A1
    • 2008-01-10
    • US11811758
    • 2007-06-11
    • James Weaver
    • James Weaver
    • F41B15/04H01S4/00
    • A01K15/04F41B15/04F41H13/0018H05C1/04Y10T29/49002
    • Electrodes, methods, and devices are provided for incapacitating or immobilizing a target. More particularly, the electrodes, methods, and devices disclosed provide for a reduced spacing between equipotentials near an electrode and reduced localized cellular damage created by an electrical exposure from an electrode. In one exemplary embodiment, an electrode is configured to be approximately flat, which in turn, at least, creates a greater surface area and thus reduces spacing between equipotentials. In another exemplary embodiment, an electrode is configured to include a curvature, which in turn, at least, allows the electrode to intent or dimple the skin less than in current conventional designs. Devices incorporating these electrodes are also provided, as are various techniques both for manufacturing such devices and for incapacitating a target.
    • 提供电极,方法和装置用于使目标物体失能或固定。 更具体地,所公开的电极,方法和装置提供了在电极附近的等电位之间减小的间隔,并且减少了由电极的电暴露产生的局部细胞损伤。 在一个示例性实施例中,电极被配置为近似平坦,这又至少产生更大的表面积,从而减小等电位之间的间隔。 在另一个示例性实施例中,电极被配置为包括曲率,所述曲率又至少允许电极相对于现有常规设计而意图或凹陷皮肤。 还提供了结合这些电极的装置,以及用于制造这种装置和使能力丧失能力的各种技术。
    • 10. 发明申请
    • Power supply for LED airfield lighting
    • LED机场照明电源
    • US20050030192A1
    • 2005-02-10
    • US10636835
    • 2003-08-08
    • James WeaverDaniel ThatKenneth Kayser
    • James WeaverDaniel ThatKenneth Kayser
    • G09F9/33H05B33/08H05B37/03G08B5/22
    • H05B37/038G09F9/33H05B33/0851H05B33/0854
    • A power supply for LED airfield lighting includes a regulated power supply having a power input, an LED control signal input, and a power output. The power input is configured to be connected to a power source, the LED control signal input is configured to receive an LED control signal, the power output is configured to supply an LED drive current to one or more of the LEDs, and the regulated power supply configured to adjust the LED drive current based upon the LED control signal. The regulated power supply also includes a processor having a current sense input and an LED control signal output connected to the LED control signal input of the regulated power supply. The current sense input is configured to receive a signal corresponding to an airfield current step. The processor is programmed to determine the LED control signal based upon the current sense input signal. The LED control signal is determined so as to enable the LEDs to have a relative intensity approximately equal to relative intensity of an incandescent light source driven at the airfield current step.
    • 用于LED机场照明的电源包括具有电源输入,LED控制信号输入和功率输出的稳压电源。 电源输入被配置为连接到电源,LED控制信号输入被配置为接收LED控制信号,电源输出被配置为向一个或多个LED提供LED驱动电流,并且调节功率 电源被配置为基于LED控制信号来调节LED驱动电流。 调节电源还包括具有电流检测输入和连接到调节电源的LED控制信号输入的LED控制信号输出的处理器。 电流检测输入被配置为接收对应于机场电流步长的信号。 处理器被编程以基于电流检测输入信号来确定LED控制信号。 LED控制信号被确定为使得LED能够具有近似等于在机场电流步骤驱动的白炽光源的相对强度的相对强度。