Duran Ivan, Hronová Olena, Stöckel Jan, Sentkerestiová Jana, Havlicek Josef
Association EURATOM/IPP.CR, Institute of Plasma Physics AS CR, v. v. i., Za Slovankou 3, 182 00 Praha 8, Czech Republic.
Rev Sci Instrum. 2008 Oct;79(10):10F123. doi: 10.1063/1.2971209.
We have performed the first tests of "integrated" Hall sensors (IHSs) in a tokamak in-vessel environment. IHS combines the sensing element together with the complex electronic circuitry on a single small chip. The on-chip integrated circuits provide stabilization of the supply voltage, output amplification, noise suppression, and elimination of temperature dependencies. Eight IHSs of A1322LUA type produced by Allegro MicroSystems, Inc. were mounted on a stainless steel ring symmetrically encircling the CASTOR plasmas in poloidal direction 10 mm outside the limiter radius. IHSs were oriented such that they measure the horizontal and vertical magnetic fields. We found out that these sensors qualify for in-vessel use of small to middle sized fusion devices where the radiation is not an issue and the temperature below 150 degrees C can be guaranteed. The main advantages over the traditional pickup coils are the smaller size and more straightforward interpretation of output without the need of rather cumbersome integration and drift removal procedure associated with the use of inductive loops. We successfully exploited the sensors for determination of vertical plasma displacement on CASTOR. This new diagnostic helped us to shed more light into long term observed discrepancy on CASTOR between vertical plasma displacement as deduced by standard magnetic and by nonmagnetic diagnostics (Langmuir probes, bolometers).
我们在托卡马克装置的内部环境中对“集成”霍尔传感器(IHS)进行了首次测试。IHS将传感元件与复杂的电子电路集成在一个小芯片上。片上集成电路可实现电源电压稳定、输出放大、噪声抑制以及消除温度依赖性。由 Allegro MicroSystems, Inc. 生产的八个 A1322LUA 型 IHS 被安装在一个不锈钢环上,该环在极向方向上对称环绕 CASTOR 等离子体,位于限制器半径外 10 毫米处。IHS 的定向方式使其能够测量水平和垂直磁场。我们发现,这些传感器适用于中小型聚变装置的内部使用,在这些装置中辐射不是问题,并且可以保证温度低于 150 摄氏度。与传统拾波线圈相比,其主要优点是尺寸更小,输出的解释更直接,无需与使用感应线圈相关的相当繁琐的积分和漂移消除程序。我们成功地利用这些传感器确定了 CASTOR 上的垂直等离子体位移。这种新的诊断方法帮助我们更清楚地了解了长期以来在 CASTOR 上标准磁诊断和非磁诊断(朗缪尔探针、测辐射热计)推导的垂直等离子体位移之间观察到的差异。