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首页> 外文期刊>IEEE Transactions on Nuclear Science >Medipix2: A 64-k pixel readout chip with 55-/spl mu/m square elements working in single photon counting mode
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Medipix2: A 64-k pixel readout chip with 55-/spl mu/m square elements working in single photon counting mode

机译:Medipix2:64 k像素读出芯片,具有55- / splμ/ m正方形元素,在单光子计数模式下工作

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摘要

The Medipix2 chip is a pixel-detector readout chip consisting of 256 /spl times/ 256 identical elements, each working in single photon counting mode for positive or negative input charge signals. Each pixel cell contains around 500 transistors and occupies a total surface area of 55 /spl mu/m /spl times/ 55 /spl mu/m. A 20-/spl mu/m wide octagonal opening connects the detector and the preamplifier input via bump bonding. The preamplifier feedback provides compensation for detector leakage current on a pixel by pixel basis. Two identical pulse height discriminators are used to create a pulse if the preamplifier output falls within a defined energy window. These digital pulses are then counted with a 13-b pseudorandom counter. The counter logic, based in a shift register, also behaves as the input-output register for the pixel. Each cell also has an 8-b configuration register which allows masking, test-enabling and 3-b individual threshold adjust for each discriminator. The chip can be configured in serial mode and readout either serially or in parallel. The chip is designed and manufactured in a 6-metal 0.25-/spl mu/m CMOS technology. First measurements show an electronic pixel noise of 140 e~ root mean square (rms) and an unadjusted threshold variation around 360 e~ rms.
机译:Medipix2芯片是一种像素检测器读出芯片,由256个/ spl次/ 256个相同的元件组成,每个元件以单光子计数模式工作,用于正或负输入电荷信号。每个像素单元包含大约500个晶体管,并且总表面积为55 / spl mu / m / spl乘以55 / spl mu / m。 20-splμm/ m的八角形开口通过凸点键合连接检测器和前置放大器输入。前置放大器反馈以像素为单位对检测器泄漏电流进行补偿。如果前置放大器的输出落在定义的能量窗口内,则使用两个相同的脉冲高度鉴别器来创建脉冲。然后使用13位伪随机计数器对这些数字脉冲进行计数。基于移位寄存器的计数器逻辑还充当像素的输入输出寄存器。每个单元还具有一个8位配置寄存器,该寄存器允许对每个鉴别器进行屏蔽,测试使能和3位单个阈值调整。该芯片可以配置为串行模式,可以串行或并行读出。该芯片采用6金属0.25- / spl mu / m CMOS技术进行设计和制造。首次测量显示出140 e-均方根(rms)的电子像素噪声和360 e- rms左右的未经调整的阈值变化。

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