METHOD FOR MAKING ELECTROMAGNETIC WAVE SHIELDING MATERIAL
    161.
    发明申请
    METHOD FOR MAKING ELECTROMAGNETIC WAVE SHIELDING MATERIAL 审中-公开
    制造电磁波屏蔽材料的方法

    公开(公告)号:US20160165766A1

    公开(公告)日:2016-06-09

    申请号:US14558847

    申请日:2014-12-03

    Abstract: A method for making an electromagnetic wave shielding material comprises the steps of (a) mixing ternary Fe—Al—Si alloy powders and a solvent to prepare a Fe—Al—Si solution; (b) adding an acid in the Fe—Al—Si solution to release Fe ions through a dissolution reaction; (c) adding copper chloride powders in the Fe—Al—Si solution; (d) adding a lye in the Fe—Al—Si solution to induce a displacement reaction; (e) adding a silane coupling agent in the Fe—Al—Si solution; (f) placing the Fe—Al—Si solution in a microwave reactor to accelerate the displacement reaction; (g) producing a quaternary Cu—Fe—Al—Si alloy after the displacement reaction of the Fe—Al—Si solution, thereby forming a quaternary Cu—Fe—Al—Si alloy solution, which proceeding with a solid-liquid separation and a drying treatment to obtain an electromagnetic wave shielding material composed of quaternary Cu—Fe—Al—Si alloy in solid powders.

    Abstract translation: 制造电磁波屏蔽材料的方法包括以下步骤:(a)将三元Fe-Al-Si合金粉末和溶剂混合以制备Fe-Al-Si溶液; (b)在Fe-Al-Si溶液中加入酸以通过溶解反应释放Fe离子; (c)在Fe-Al-Si溶液中加入氯化铜粉末; (d)在Fe-Al-Si溶液中加入碱液以引起置换反应; (e)在Fe-Al-Si溶液中加入硅烷偶联剂; (f)将Fe-Al-Si溶液置于微波反应器中以加速置换反应; (g)在Fe-Al-Si溶液置换反应之后生成四价Cu-Fe-Al-Si合金,从而形成一种进行固液分离的四元Cu-Fe-Al-Si合金溶液, 进行干燥处理,得到固体粉末中由四元Cu-Fe-Al-Si合金构成的电磁波屏蔽材料。

    COOLING DEVICE FOR ELECTRONIC COMPONENTS
    162.
    发明申请
    COOLING DEVICE FOR ELECTRONIC COMPONENTS 审中-公开
    电子元件冷却装置

    公开(公告)号:US20160148917A1

    公开(公告)日:2016-05-26

    申请号:US15011515

    申请日:2016-01-30

    Abstract: A cooling device for electronic components is a combination of substrate (aluminum nitride substrate—thermoelectric elements—aluminum nitride substrate) and utilizing the temperature difference generated by two top and bottom ends of the cooling device to effectively remove the heat generated by the electronic components. This cooling device not only can effectively reduce temperature of the electronic components, but also store the power generated through its thermoelectric effect.

    Abstract translation: 电子部件的冷却装置是基板(氮化铝基板 - 热电元件 - 氮化铝基板)的组合,并且利用由冷却装置的两个顶端和底端产生的温差来有效地去除由电子部件产生的热量。 该冷却装置不仅能够有效地降低电子部件的温度,还可以存储通过其热电效应产生的电力。

    Motion detection method and device
    164.
    发明授权
    Motion detection method and device 有权
    运动检测方法和装置

    公开(公告)号:US09159213B1

    公开(公告)日:2015-10-13

    申请号:US14333596

    申请日:2014-07-17

    CPC classification number: G08B21/0446 G08B21/043

    Abstract: A motion detection method and device are introduced. The motion detection method is adapted to detect accelerations of an intended target along the x-axis, y-axis, and y-axis, respectively, and determine whether the intended target is in a fallen state or is undergoing a falling motion according to a signal strength algorithm and an average force field algorithm. The motion detection device includes an acceleration sensing unit for detecting acceleration along the x-axis, y-axis, and y-axis; a computing unit for determining a falling motion according to the acceleration along the x-axis, y-axis, and y-axis; and a transmitting unit for sending a message pertaining to the falling motion.

    Abstract translation: 引入运动检测方法和装置。 运动检测方法适用于分别检测预期目标沿着x轴,y轴和y轴的加速度,并且根据a轴确定预期目标是处于下降状态还是正在经历下降运动 信号强度算法和平均力场算法。 运动检测装置包括用于检测沿着x轴,y轴和y轴的加速度的加速度感测单元; 计算单元,用于根据沿着x轴,y轴和y轴的加速度来确定下落运动; 以及发送单元,用于发送关于下降动作的消息。

    METHOD OF CREATING ANESTHETIC CONSCIOUSNESS INDEX WITH ARTIFICIAL NEURAL NETWORK
    165.
    发明申请
    METHOD OF CREATING ANESTHETIC CONSCIOUSNESS INDEX WITH ARTIFICIAL NEURAL NETWORK 审中-公开
    用人造神经网络创建神经连贯指数的方法

    公开(公告)号:US20150164413A1

    公开(公告)日:2015-06-18

    申请号:US14566926

    申请日:2014-12-11

    CPC classification number: A61B5/4821 A61B3/113 A61B5/0476 A61B5/11 A61B5/7203

    Abstract: A method of creating an anesthetic consciousness index with an artificial neural network includes, obtaining physiological signals, including electroencephalographic signals and eye movement signals, from subjects during a physiological signal monitoring process; filtering noise out of the physiological signals by empirical mode decomposition (EMD); calculating sample entropy values of the noise-removed physiological signals; obtaining sample entropy value sets of the physiological signals; repeating the aforesaid steps to effectuate measurement, noise-filtering, and sample entropy value calculation of the subjects' physiological signals and thus obtain a sample entropy value set; and applying an artificial neural network in conducting regression analysis of the sample entropy value set and a set of levels of consciousness measured with a physiological signal monitor during the physiological signal monitoring process, thereby creating the anesthetic consciousness index model for evaluating the level of consciousness of an anesthetized patient during the physiological signal monitoring process.

    Abstract translation: 利用人造神经网络创建麻醉意识指数的方法包括在生理信号监测过程中从受试者获得包括脑电信号和眼运动信号的生理信号; 通过经验模式分解(EMD)对生理信号进行滤波; 计算噪声消除的生理信号的样本熵值; 获取生理信号的样本熵值集; 重复上述步骤以实现受试者生理信号的测量,噪声滤波和样本熵值计算,从而获得样本熵值集合; 以及在生理信号监测过程中应用人造神经网络进行样本熵值集的回归分析和用生理信号监测器测量的一组意识水平,由此创建用于评估意识水平的意识水平的麻醉意识指数模型 在生理信号监测过程中麻醉患者。

    HOUSEHOLD ENERGY MANAGEMENT AND DISPATCHING SYSTEM

    公开(公告)号:US20240305098A1

    公开(公告)日:2024-09-12

    申请号:US18117482

    申请日:2023-03-06

    CPC classification number: H02J3/02 H02J2203/10 H02J2300/20 H02J2310/12

    Abstract: A household energy management and dispatching system includes: a power generation device, converters, an energy storage device, an energy management controller, local servers and a cloud server. Each of the converters is electrically connected to the power generation device, an electricity grid, the energy storage device and the energy management controller, configured to receive a power generation electrical energy or a utility power, and transmitted to the energy storage device and a load. Each of the local servers is electrically connected to each of the converters and configured to read an electrical energy information, a utility power information and an energy storage information. The cloud server is electrically connected to the local servers. The local servers perform an edge computing analysis to obtain an edge information according to the above information. The system is used to provide a buffer to stabilize the grid and power dispatching.

    CONTROL SYSTEM AND METHOD FOR USING ENERGY STORAGE IN CONTRACT CAPACITY USERS

    公开(公告)号:US20230208141A1

    公开(公告)日:2023-06-29

    申请号:US17564247

    申请日:2021-12-29

    CPC classification number: H02J3/32 H02J3/003

    Abstract: A control method for using a battery for energy storage for contract capacity users includes, turning on a demand controller, starting output power calculation and battery power supply control, measuring a power consumption time interval set by a utility company as a cycle time, obtaining a power value that a load can use every minute, measuring and calculating an output power of a utility power output once a minute, and accumulating the output power according to time and comparing it with an accumulative usable contract capacity. When accumulative output power of the utility power output is greater than accumulative usable contract capacity and voltage of the battery is higher than a preset lower limit, start the battery to supply power to the load and when the voltage of the battery is lower than the preset lower limit, the battery will not supply power to the load.

    ADJUSTABLE FLUID MACHINING FIXTURE
    170.
    发明公开

    公开(公告)号:US20230201982A1

    公开(公告)日:2023-06-29

    申请号:US18084580

    申请日:2022-12-20

    CPC classification number: B23Q3/062 B23Q2703/10

    Abstract: An adjustable fluid machining fixture according to the present disclosure includes a base, having a clamping fixing seat which is used to clamp a workpiece to be machined; at least two guide blocks, disposed above the base and enveloping the workpiece to be machined once assembled to each other, each of the guide blocks provided with a fluid groove on one surface facing the workpiece to be machined, the respective fluid grooves of the guide blocks forming a fluid machining space once the guide blocks are assembled to each other; and at least two limiting units, disposed above the base, the limiting units used to fix the guide blocks and adjust fixed positions of the guide blocks on the base.

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