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A new complementary symmetrical structure of using dual magnetic cores for open loop Hall-Effect current sensors

机译:用于开环霍尔效应电流传感器的双磁芯的新互补对称结构

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In this paper, a new complementary symmetrical structure of using dual magnetic cores for open loop Hall-Effect current sensors is proposed to reduce the influence of the position change of primary current carrying conductor, which cannot be compensated in signal processing circuit. Magnetic field simulations by using Ansoft Maxwell are made to evaluate the influence from the magnetic fields of the core air gap, as the conductor changes its position inside the core. Both simulation and the testing results show that the influence is obviously reduced by a dual cores structure, and the accuracy of open loop Hall-Effect current sensor is improved to +-0.5%.
机译:在本文中,提出了一种用于开环霍尔效应电流传感器的双磁芯的新的互补对称结构,以减少初级电流承载导体的位置变化的影响,这在信号处理电路中不能补偿。通过使用ANSoft Maxwell的磁场模拟来评估芯气隙的磁场的影响,因为导体改变其在芯内的位置。仿真和测试结果都表明,通过双芯结构明显降低了影响,开放环霍尔效应电流传感器的精度得到改善为+ -0.5%。

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