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Soft X-ray Imager (SXI) onboard the NeXT satellite

机译:NeXT卫星上的软X射线成像仪(SXI)

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We give overview and the current status of the development of the Soft X-ray Imager (SXI) onboard the NeXT satellite. SXI is an X-ray CCD camera placed at the focal plane detector of the Soft X-ray Telescopes for Imaging (SXT-I) onboard NeXT. The pixel size and the format of the CCD is 24 x 24μm (IA) and 2048 x 2048 x 2 (IA+FS). Currently, we have been developing two types of CCD as candidates for SXI, in parallel. The one is front illumination type CCD with moderate thickness of the depletion layer (70 ~ 100μm) as a baseline plan. The other one is the goal plan, in which we develop back illumination type CCD with a thick depletion layer (200 ~ 300μm). For the baseline plan, we successfully developed the proto model 'CCD-NeXT1' with the pixel size of 12μm x 12μm and the CCD size of 24mm x 48mm. The depletion layer of the CCD has reached 75 ~ 85μm. The goal plan is realized by introduction of a new type of CCD 'P-channel CCD', which collects holes in stead of electrons in the common 'N-channel CCD'. By processing a test model of P-channel CCD we have confirmed high quantum efficiency above 10 keV with an equivalent depletion layer of 300μm. A back illumination type of P-channel CCD with a depletion layer of 200μm with aluminum coating for optical blocking has been also successfully developed. We have been also developing a thermo-electric cooler (TEC) with the function of the mechanically support of the CCD wafer without standoff insulators, for the purpose of the reduction of thermal input to the CCD through the standoff insulators. We have been considering the sensor housing and the onboard electronics for the CCD clocking, readout and digital processing of the frame date.
机译:我们概述了NeXT卫星上的软X射线成像仪(SXI)的发展现状。 SXI是X射线CCD相机,位于NeXT机载成像用软X射线望远镜(SXT-I)的焦平面检测器上。 CCD的像素大小和格式为24 x24μm(IA)和2048 x 2048 x 2(IA + FS)。目前,我们正在并行开发两种类型的CCD作为SXI的候选产品。一种是前照明型CCD,其基线厚度为中等厚度的耗尽层(70〜100μm)。另一个是目标计划,其中我们开发了具有厚耗尽层(200〜300μm)的背照式CCD。对于基线计划,我们成功开发了原型模型“ CCD-NeXT1”,其像素尺寸为12μmx12μm,CCD尺寸为24mm x 48mm。 CCD的耗尽层已达到75〜85μm。通过引入一种新型的CCD“ P通道CCD”来实现目标计划,该CCD在普通的“ N通道CCD”中代替电子来收集空穴。通过处理P通道CCD的测试模型,我们已经确认了10 keV以上的高量子效率以及300μm的等效耗尽层。还已经成功开发了具有200μm耗尽层和铝涂层的用于光学阻挡的P沟道CCD背照式。我们还开发了一种热电冷却器(TEC),其功能是对不带绝缘子的CCD晶片进行机械支撑,目的是减少通过绝缘子向CCD输入的热量。我们一直在考虑将传感器外壳和车载电子设备用于CCD时钟,帧日期的读出和数字处理。

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