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Development of the analog ASIC for multi-channel readout X-ray CCD camera

机译:用于多通道读出X射线CCD相机的模拟ASIC的开发

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摘要

We report on the performance of an analog application-specific integrated circuit (ASIC) developed aiming for the front-end electronics of the X-ray CCD camera system onboard the next X-ray astronomical satellite,ASTRO-H. It has four identical channels that simultaneously process the CCD signals. Distinctive capability of analog-to-digital conversion enables us to construct a CCD camera body that outputs only digital signals. As the result of the front-end electronics test,it works properly with low input noise of < 30 μV at the pixel rate below 100 kHz. The power consumption is sufficiently low of ~ 150 mW/chip. The input signal range of ± 20 mV covers the effective energy range of the typical X-ray photon counting CCD (up to 20 keV). The integrated non-linearity is 0.2% that is similar as those of the conventional CCDs in orbit. We also performed a radiation tolerance test against the total ionizing dose (TID) effect and the single event effect. The irradiation test using 60Co and proton beam showed that the ASIC has the sufficient tolerance against TID up to 200 krad,which absolutely exceeds the expected amount of dose during the period of operating in a low-inclination low-earth orbit. The irradiation of Fe ions with the fluence of 5.2 x 108 Ion/cm2 resulted in no single event latchup (SEL),although there were some possible single event upsets. The threshold against SEL is higher than 1.68 MeVcm2/mg,which is sufficiently high enough that the SEL event should not be one of major causes of instrument downtime in orbit.
机译:我们报告了针对下一代X射线天文卫星ASTRO-H上的X射线CCD相机系统的前端电子设备开发的模拟专用集成电路(ASIC)的性能。它具有四个相同的通道,可同时处理CCD信号。模数转换的独特能力使我们能够构建仅输出数字信号的CCD相机机身。作为前端电子测试的结果,它可以在低于100 kHz的像素速率下,在<30μV的低输入噪声下正常工作。功耗足够低至每芯片约150 mW。 ±20 mV的输入信号范围覆盖了典型X射线光子计数CCD的有效能量范围(最高20 keV)。积分非线性为0.2%,与在轨常规CCD相似。我们还针对总电离剂量(TID)效应和单事件效应进行了辐射耐受性测试。使用60Co和质子束的辐照测试表明,ASIC在200 krad以下的TID具有足够的耐受性,这绝对超出了在低倾角低地球轨道上运行期间的预期剂量。通量为5.2 x 108 Ion / cm2的Fe离子辐照不会导致单事件闩锁(SEL),尽管存在一些可能的单事件扰动。 SEL的阈值高于1.68 MeVcm2 / mg,该阈值足够高,SEL事件不应成为仪器在轨停机时间的主要原因之一。

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    Department of Earth and Space Science,Graduate School of Science,Osaka University,1 -1 Machikaneyama,Toyonaka,Osaka 560-0043,Japan;

    Department of Space and Integrated Defense Systems,Mitsubishi Heavy Industries Ltd.,1200 Higashi Tanaka,Komaki,Aichi 485-8561,Japan;

    Department of Space and Integrated Defense Systems,Mitsubishi Heavy Industries Ltd.,1200 Higashi Tanaka,Komaki,Aichi 485-8561,Japan;

    Department of Earth and Space Science,Graduate School of Science,Osaka University,1 -1 Machikaneyama,Toyonaka,Osaka 560-0043,Japan;

    Department of Earth and Space Science,Graduate School of Science,Osaka University,1 -1 Machikaneyama,Toyonaka,Osaka 560-0043,Japan;

    Noqsi Aerospace Ltd.,2822 South Nova Road,Pine,CO 80470,USA;

    The Institute of Space and Astronautical Science,Japan Aerospace Exploration Agency,3-1-1 Yoshinodai,Chuo-ku,Sagamihara,Kanagawa 252-5210,japan;

    The Earth Observation Research Center,Japan Aerospace Exploration Agency,Tsukuba Space Center,2-1-1 Sengen,Tsukuba,Ibaraki 305-8505,Japan;

    National Institute for Radiological Sciences (NIRS),Anagawa 4-9-1,Inage-ku,Chiba-shi,Chiba 263-8555,Japan;

    National Institute for Radiological Sciences (NIRS),Anagawa 4-9-1,Inage-ku,Chiba-shi,Chiba 263-8555,Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    x-ray; asic; ccd camera;

    机译:X射线;ASIC;CCD相机;

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