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Forward-current optimization

机译:正向电流优化

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摘要

At the start of the New Year it's good to look forward with an optimistic attitude in general, still with a realistic eye for anything that occurred in the past year that's "subject to improvement". Along that line, here's a tentative analysis of the forward current I_F. In 2016 the electromotive force (emf) known as V_(Elektor) and traditionally caused by Elektor Magazine's learn - design - share cycle will rise. We do it by stacking up a few more voltage sources such as the Elektor newsletter, Business TV and Business Magazine, Store, TV, experts, and (breaking news!) our new Aachen, Germany facility. The resulting, higher EMF we hope will increase the peak current I_(Reader(pk)) through individual loads and even cause the odd spark on a few dusty ones. Back-emf is also appreciated if channeled through our forums and on elektor-labs.com although we have suppression devices in place at critical locations. Admittedly, more output current is only possible if we strive to keep the internal resistance R_(i(Elektor)) as low as possible. Fortunately Elektor's load R_(Reader(tot)) is extremely dynamic and even capable of feeding back energy into the circuit - thank you all for that these past 40 years!
机译:新年伊始,最好以乐观的态度展望未来,但仍要现实地看待过去一年中发生的任何“有待改善的事情”。沿着这条线,这里是对正向电流I_F的初步分析。在2016年,电动势(emf)被称为V_(Elektor),传统上由Elektor Magazine的学习-设计-共享周期将增加。我们通过堆叠更多的电压源来做到这一点,例如Elektor时事通讯,商业电视和商业杂志,商店,电视,专家,以及(最新新闻!)我们在德国亚琛的新工厂。我们希望由此产生的较高的EMF将增加单个负载上的峰值电流I_(Reader(pk)),甚至在一些多尘的负载上引起奇数火花。如果通过我们的论坛和elektor-labs.com进行传播,反电动势也将受到赞赏,尽管我们在关键位置安装了抑制装置。诚然,只有努力保持内部电阻R_(i(Elektor))尽可能低,才可能有更大的输出电流。幸运的是,Elektor的负载R_(Reader(tot))非常动态,甚至能够将能量反馈到电路中-谢谢您过去40年的努力!

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