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Measurements of Si Hybrid CMOS X-Ray Detector Characteristics

机译:Si混合CMOS X射线探测器特性的测量

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The recent development of active pixel sensors as X-Ray focal plane arrays will place them in contention with CCDs on future satellite missions. Penn State University (PSU) is working with Teledyne Imaging Sensors (TIS) to develop X-Ray Hybrid CMOS devices (HCDs), a type of active pixel sensor with fast frame rates, adaptable readout timing and geometry, low power consumption, and inherent radiation hardness. CCDs have been used with great success on the current generation of X-Ray telescopes (e.g. Chandra, XMM, Suzaku, and Swift). However, their bucket-brigade readout architecture, which transfers charge across the chip with discrete component readout electronics, results in clockrate limited readout speeds that cause pileup (saturation) of bright sources and an inherent susceptibility to radiation induced displacement damage that limits mission lifetime. In contrast, HCDs read pixels through the detector substrate with low power, on-chip readout integrated circuits. Faster frame rates, achieved with adaptable readout timing and geometry, will allow the next generation's larger effective area telescopes to observe brighter sources free of pileup. In HCDs, radiation damaged lattice sites affect a single pixel instead of an entire row. The PSU X-ray group is currently testing 4 Teledyne HCDs, with low cross-talk CTIA devices in development. We will report laboratory measurements of HCD readnoise, interpixel-capacitance and its impact on event selection, linearity, and energy resolution as a function of energy.
机译:有源像素传感器作为X射线焦平面阵列的最新发展将使其在未来的卫星任务中与CCD竞争。宾夕法尼亚州立大学(PSU)正在与Teledyne成像传感器(TIS)合作开发X射线混合CMOS器件(HCD),这是一种有源像素传感器,具有快速的帧速率,自适应的读出时序和几何形状,低功耗和固有特性辐射硬度。 CCD已在当前的X射线望远镜(例如Chandra,XMM,Suzaku和Swift)中获得了巨大的成功。但是,他们的桶式旅读出架构通过分立的组件读出电子器件在芯片上转移电荷,导致时钟速率受限制的读出速度导致明亮光源的堆积(饱和),并固有地易受辐射引起的位移损坏,从而限制了任务寿命。相反,HCD使用低功耗,片上读出集成电路通过检测器基板读取像素。借助合适的读出定时和几何结构,可以实现更快的帧频,从而使下一代更大的有效面积望远镜能够观察到更明亮的光源,而不会出现堆积现象。在HCD中,辐射损坏的晶格位点影响单个像素而不是整个行。 PSU X射线小组目前正在测试具有低串扰CTIA设备的4种Teledyne HCD。我们将报告HCD噪声,像素间电容及其对事件选择,线性和能量分辨率与能量的关系的实验室测量值。

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