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Scheelite Coupled Photodiode X-Ray Sensor Designing and Characterization

机译:硅藻土耦合光电二极管X射线传感器设计和表征

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Efficient detection of un-attenuated and attenuated x-rays intensities is crucial to reconstruct 3D volume in a Computed Tomography (CT) machine employed for Non-Destructive Testing. In this study, an x-ray sensor is developed and characterized to be used with an existing X-ray Io device by evaluating its linearity and operating range. The sensor is developed by using Photodiode BPX61 from Siemens coupled with Sheelite (Calcium Tungstate [CaWO4]) scintillator. Sheelite illuminate by exposure of x-rays and BPX61 converts illuminated light into relative current signal. The current signal is amplified and for further processing transmitted to x-ray Io device virtual instrument which consist of a PIC microcontroller and a Personal Computer (PC). As the x-ray intensity depend upon x-ray tube voltage and current, the linearity and operating range of developed sensor is evaluated by performing special experiments in which the two quantities (tube voltage and current) are accreting one at a time while keeping the other constant. Using normalized values obtained from Oscilloscope and HyperTerminal measurements, the conversion time error is observed and reduced thus increasing linear and operating regions.
机译:未衰减和衰减的x射线的强度的有效检测是重建用于无损检测中使用的计算机断层扫描(CT)机3D体积至关重要。在这项研究中,X射线传感器的开发和表征,以与通过评估其线性度和操作范围内的现有的X射线IO设备一起使用。该传感器是通过使用光电二极管BPX61从西门子加上白钨矿(钨酸钙[粉CaWO4])闪烁体显影。通过X射线和BPX61转换曝光白钨矿照射照明光到相电流信号。电流信号被放大并用于传输到其由PIC微控制器和个人计算机(PC)的x射线IO设备虚拟仪器进一步处理。作为X射线强度取决于X射线管电压和电流,线性和发达传感器的操作范围通过执行其中两个量(管电压和电流)被一次吸积一个同时保持特别的实验评价其他不变。使用来自示波器和超级终端测量获得的归一化值,观察,并减少了转换时间误差从而提高线性和操作区域。

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