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Bipolar programmable current supply for superconducting nuclear magnetic resonance magnets

机译:用于超导核磁共振磁体的双极可编程电流源

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摘要

In high resolution continuous-wave nuclear magnetic resonance(NMR) work well-reproducible, linear sweeps of current are needed. We have developed a microcontroller based programmable current supply, tested with superconducting magnets with inductance of 10 mH and 10 H. We achieved a resolution and noise of 4 ppm. The supply has an internal sweep with programmable ramping rate and a possibility for remote operation from a computer with either GPIB or RS232 interface. It is based on an 18-bit D/A converter. The maximum output current is ±10 A, the sweep rate can be set between 1 μA/s–140 mA/s, and the maximum output voltage is ±2.5 V. In work at ultralow temperatures, especially in superconducting quantum interference device NMR, all rf interference to the experiment should be avoided. One of the sources of this kind of unwanted input is the digital switching noise of fast logic devices. We discuss this problem in the context of our design.
机译:在高分辨率连续波核磁共振(NMR)工作中,可很好再现的是,需要线性扫描电流。我们开发了基于微控制器的可编程电流源,并用电感为10 mH和10 H的超导磁体进行了测试。我们实现了4 ppm的分辨率和噪声。该电源具有内部扫描和可编程的斜坡速率,并且可以从具有GPIB或RS232接口的计算机进行远程操作。它基于一个18位D / A转换器。最大输出电流为±10 A,扫描速率可以在1μA/ s–140 mA / s之间设置,最大输出电压为±2.5V。在超低温下工作,尤其是在超导量子干涉仪NMR中,应避免所有射频干扰实验。这种不需要的输入的来源之一是快速逻辑器件的数字开关噪声。我们在设计中讨论这个问题。

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