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A directly converting high-resolution intra-oral X-ray imaging sensor

机译:直接转换的高分辨率口腔内X射线成像传感器

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A digital intra-oral X-ray imaging sensor with an active area of 3.6 x 2.9 cm(2) and consisting of six charge-integrating CMOS signal readout circuits bump bonded to one high-resistivity silicon pixel detector has been developed and tested. The pixel size is 35 mum. The X-rays entering the sensor window are converted directly to electrical charge in the depleted detector material yielding minimum lateral signal spread and maximum image sharpness. The signal charge is collected on the gates of the input field effect transistors of the CMOS signal readout circuits. The analog signal readout is performed by multiplexing in the current mode independent of the signal charge collection enabling multiple readout cycles with negligible dead time and thus imaging with wide dynamic range. Since no intermediate conversion material of X-rays to visible light is needed, the sensor structure is very compact. The analog image signals are guided from the sensor output through a thin cable to signal processing, AD conversion and memory circuitry, which is realized as an intermediate electronic unit between the sensor and the computer. This unit controls the sensor, collects the data and transfers it via one of the standard computer buses for image processing, display and storage. The overall sensor design and operation are described and experimental MTF, SNR and DQE data are presented together with X-ray images. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 6]
机译:已经开发并测试了一种有效面积为3.6 x 2.9 cm(2)的数字口内X射线成像传感器,该传感器由凸点结合到一个高电阻率硅像素检测器的六个电荷积分CMOS信号读出电路组成。像素大小为35毫米。进入传感器窗口的X射线在耗尽的检测器材料中直接转换为电荷,从而产生最小的横向信号散布和最大的图像清晰度。信号电荷收集在CMOS信号读出电路的输入场效应晶体管的栅极上。通过以与信号电荷收集无关的电流模式进行多路复用来执行模拟信号读取,从而可以使死区时间可以忽略的多个读取周期,从而实现宽动态范围的成像。由于不需要将X射线转换为可见光的中间材料,因此传感器结构非常紧凑。模拟图像信号通过细电缆从传感器输出引导到信号处理,AD转换和存储电路,这些电路被实现为传感器和计算机之间的中间电子单元。该单元控制传感器,收集数据并通过标准计算机总线之一传输数据,以进行图像处理,显示和存储。描述了整个传感器的设计和操作,并提供了实验性MTF,SNR和DQE数据以及X射线图像。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:6]

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