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PRESENTE EN:.

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https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPO DOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=20170601&CC=W O&NR=2017089871A1&KC=A1 ELECTRONIC CIRCUIT FOR HARVESTING ENERGY FROM ULTRA-LOW POWER SOURCES The present invention relates to an electronic circuit for harvesting energy from ultra-low power sources, said circuit comprising a capacitor module (1), a microcontroller (2), two analog switches (3 and 7), an auxiliary battery module (4), a terminal (5), and an operating mode module (6). The circuit is characterised in that: at least two sources (FE) from a plurality of sources (FE) are connected to the capacitor module (1); and the microcontroller (2) transmits the RC digital signals [1.4] at the capacitor module (1) to the first set of analog switches and changes from an idle state to an active state. In addition, the microcontroller (2) is configured to: perform an energy storage step, by connecting the energy sources in parallel with the capacitors; perform a first amplification step, by reconnecting the set of capacitors in series with one another via the first set of analog switches connected in parallel, by means of a switch, with the array of auxiliary batteries that are co nnected in parallel with one another; perform a first step of transferring energy from the capacitors to the auxiliary batteries; perform a second energy amplification step, by reconnecting the array of batteries connected in series with one another via the second set of analog switches; perform a second step of transferring the energy amplified by the auxiliary batteries by means of a switch, by means of which the auxiliary batteries connected in series with one another are connected in parallel with a main external battery, transferring the energy to same.
机译:https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPO DOC&II = 0&ND = 3&adjacent = true&locale = en_EP&FT = D&date = 20170601&CC = W O&NR = 2017089871A1&KC = A1用于从超低电量中获取能量的电子电路本发明涉及一种用于从超低功率源收集能量的电子电路,所述电路包括电容器模块(1),微控制器(2),两个模拟开关(3和7),辅助电池模块(4),端子(5)和操作模式模块(6)。该电路的特征在于:来自多个源(FE)的至少两个源(FE)连接到电容器模块(1);微控制器(2)将电容器模块(1)上的RC数字信号[1.4]传输到第一组模拟开关,并从空闲状态变为活动状态。另外,微控制器(2)被配置为:通过将能量源与电容器并联连接来执行能量存储步骤;通过第一组模拟开关通过第一组模拟开关将彼此串联的一组电容器彼此重新连接,以执行第一放大步骤,所述第一组模拟开关借助于开关与彼此并联连接的一组辅助电池;执行将能量从电容器转移到辅助电池的第一步;通过经由第二组模拟开关将彼此串联连接的电池阵列重新连接来执行第二能量放大步骤;执行第二步骤,通过开关传递由辅助电池放大的能量,借助该开关,彼此串联连接的辅助电池与主外部电池并联连接,从而将能量传递给主外部电池。

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