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    • 1. 发明申请
    • 振動型発電装置、電源モジュール
    • 振动发电机装置和电源模块
    • WO2014069483A1
    • 2014-05-08
    • PCT/JP2013/079318
    • 2013-10-29
    • 旭硝子株式会社
    • 服部 泰濱谷 芳樹
    • H02N1/06H02M7/08
    • H02N1/08H02M7/08H02M2001/0051Y02B70/1491
    •  振動型発電装置、および該振動型発電装置を備えた電源モジュールの提供。 複数の静電誘導型発電素子(110 1 ~110 n )と、前記複数の静電誘導型発電素子の各発電出力を合成する合成部(120)とを備える振動型発電装置(100)であり、前記複数の静電誘導型発電素子のそれぞれは、固定電極と、前記固定電極に対し相対運動可能に対向配置された可動電極と、前記固定電極に対向する前記可動電極の一面、または前記可動電極に対向する前記固定電極の一面に形成されたエレクトレットとを備える。
    • 提供了一种振动发生器装置和设置有振动发生器装置的电源模块。 振动发生器装置(100)具有:多个静电感应发电机元件(1101-110n); 以及组合所述多个静电感应发电机元件的所生成的输出的组合单元(120)。 多个静电感应发电机元件中的每一个设置有:固定电极; 以能够相对运动的方式面对固定电极的移动电极; 以及驻极体,其形成在所述移动电极的面向所述固定电极的一个表面或者所述固定电极的面对所述移动电极的一个表面。
    • 3. 发明申请
    • METHOD AND MICRO POWER GENERATOR FOR GENERATING ELECTRICAL POWER FROM LOW FREQUENCY VIBRATIONAL ENERGY
    • 用于从低频振动能量产生电力的方法和微型发电机
    • WO2005069959A2
    • 2005-08-04
    • PCT/US2005001974
    • 2005-01-21
    • UNIV MICHIGANKULAH HALUKNAJAFI KHALIL
    • KULAH HALUKNAJAFI KHALIL
    • H01L41/113H02K35/02H02N1/06
    • H02K35/02H01L41/1136H02N1/06H02N2/186
    • A method and a micro power generator for generating electrical power from low frequency, vibrational energy includes a frequency up-conversion process. The generator is preferably an electromagnetic, vibration-to-electrical power generator which can efficiently scavenge energy from low frequency external vibrations. The generator up-converts low frequency environmental vibrations to a much higher frequency through a mechanical frequency up-converter, and hence provides efficient energy conversion even at low frequencies. This mechanical frequency up-conversion process can be realized in a number of ways. A magnetic method is described as an example. After frequency up-conversion, voltage is induced on coils mounted on resonators by electromagnetic induction. Due to the movement of the coils on their respective resonating cantilevers with respect to the magnet, voltage is generated on the coils and energy conversion is realized.
    • 一种用于从低频产生电力的方法和微型发电机,振动能量包括上变频过程。 该发电机优选地是一种能够有效地清除低频外部振动的能量的电磁振动 - 电力发电机。 发电机通过机械上变频器将低频环境振动上变频到更高的频率,因此即使在低频下也能提供有效的能量转换。 这种机械上变频过程可以以多种方式实现。 以磁性方法为例进行说明。 升频转换后,通过电磁感应对安装在谐振器上的线圈产生电压。 由于线圈相对于磁体在它们各自的谐振悬臂上移动,所以在线圈上产生电压并实现能量转换。
    • 8. 发明申请
    • BATTERY CHARGER FOR PORTABLE ELECTRONIC DEVICES AND PORTABLE ELECTRONIC DEVICE USING THE SAME
    • 用于便携式电子设备的电池充电器和使用该电子设备的便携式电子设备
    • WO2017105654A1
    • 2017-06-22
    • PCT/US2016/059946
    • 2016-11-01
    • OLAH, Laslo
    • OLAH, LasloSOKOLOVSKII, Grigorii
    • H02N1/06H02N1/08F02B63/04
    • H02J7/0027H02J7/0042H02J7/0044H02J7/0052H02J7/007H02J7/32H02J7/34H02N1/04H04B1/3816H04M1/0262Y02B40/90
    • A battery charger (10) for portable electronic devices and a portable electronic device (12) are disclosed. In one embodiment, a battery charger housing (30) forms a portion of an outer device shell (16) or a protective case cover (26). Capacitors (62, 64) are located within the battery charger housing (30) that include opposing spaced plates (66, 68, 70, 72) having contact segments (74, 76, 78, 80) thereon. An output power increasing, electrically resistive fluid (82) is held within and partially fills an enclosed chamber (60) that is boundaried by the contact segments (74, 76, 78, 80). In response to movement of the portable electronic device (12), induced relative motion between the output power increasing, electrically resistive fluid (82) and contact segments (74, 76, 78, 80) varies the fluid-contact segment contact within the enclosed chamber (60), thereby inversely alternating the capacitance between the pair of capacitors (62, 64) and triboelectrically generating an electrical charge. An electronic circuit, which is coupled to the opposing spaced plates (66, 68, 70, 72), is configured to transfer the electrical charge to a battery (14) associated with the portable electronic device (12).
    • 公开了一种用于便携式电子设备的电池充电器(10)和便携式电子设备(12)。 在一个实施例中,电池充电器外壳(30)形成外部装置外壳(16)或保护外壳盖(26)的一部分。 电容器(62,64)位于电池充电器壳体(30)内,其包括在其上具有接触段(74,76,78,80)的相对隔开的板(66,68,70,72)。 输出功率增加的电阻流体(82)被保持在并且部分填充由接触段(74,76,78,80)界定的封闭室(60)。 响应于便携式电子设备(12)的移动,输出功率增加的电阻性流体(82)和接触段(74,76,78,80)之间的诱发相对运动改变封闭内的流体接触段接触 由此使该对电容器(62,64)之间的电容反向交替并摩擦生成电荷。 耦合到相对隔开的板(66,68,70,72)的电子电路被配置成将电荷传输到与便携式电子设备(12)相关联的电池(14)。
    • 9. 发明申请
    • REACTIVE POWER COMPENSATION CIRCUIT
    • 无功功率补偿电路
    • WO2009107066A2
    • 2009-09-03
    • PCT/IB2009050746
    • 2009-02-25
    • ELSPEC ENGINEERING LTDNISENBLAT POL
    • NISENBLAT POL
    • H02N1/06
    • H02J3/1828Y02E40/30
    • A compensation circuitry for providing reactive power to a network includes an inductance means and a capacitor means associated with switching appliances and with a controlling mechanism. The compensation circuitry is used for delivering reactive power compensation to electrical networks of either low or high voltage. The inductance means and the capacitor means are connected serially, thereby bringing the circuitry to a virtual gain selected from a group consisting of virtual inductance gain (VIG) or virtual capacitance gain (VCG), and wherein the virtual gain selected from the group is above the absolute value of 1.5.
    • 用于向网络提供无功功率的补偿电路包括与开关电器和控制机构相关的电感装置和电容器装置。 补偿电路用于向低压或高压电网输送无功补偿。 电感装置和电容器装置串联连接,从而使电路成为从由虚拟电感增益(VIG)或虚拟电容增益(VCG)组成的组中选择的虚拟增益,并且其中从该组中选择的虚拟增益在以上 1.5的绝对值。