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Performance of front-end mixed-signal ASIC for onboard CCD cameras

机译:车载CCD摄像机前端混合信号ASIC的性能。

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We report on the development status of the readout ASIC for an onboard X-ray CCD camera. The quick low-noise readout is essential for the pile-up free imaging spectroscopy with the future highly sensitive telescope. The dedicated ASIC for ASTRO-H/SXI has sufficient noise performance only at the slow pixel rate of 68 kHz. Then we have been developing the upgraded ASIC with the fourth-order ΔΣ modulators. Upgrading the order of the modulator enables us to oversample the CCD signals less times so that we. The digitized pulse height is a serial bit stream that is decrypted with a decimation filter. The weighting coefficient of the filter is optimized to maximize the signal-to-noise ratio by a simulation. We present the performances such as the input equivalent noise (IEN), gain, effective signal range. The digitized pulse height data are successfully obtained in the first functional test up to 625 kHz. IEN is almost the same as that obtained with the chip for ASTRO-H/SXI. The residuals from the gain function is about 0.1%, which is better than that of the conventional ASIC by a factor of two. Assuming that the gain of the CCD is the same as that for ASTRO-H, the effective range is 30 keV in the case of the maximum gain. By changing the gain it can manage the signal charges of 100 ke-. These results will be fed back to the optimization of the pulse height decrypting filter.
机译:我们报告了车载X射线CCD相机的读出ASIC的开发状况。快速的低噪声读数对于使用未来的高灵敏度望远镜的无堆积成像光谱学至关重要。仅在68 kHz的慢像素速率下,用于ASTRO-H / SXI的专用ASIC才具有足够的噪声性能。然后,我们一直在开发具有四阶ΔΣ调制器的升级版ASIC。提升调制器的阶数使我们能够以更少的次数对CCD信号进行过采样,从而获得更好的效果。数字化脉冲高度是一个串行比特流,使用抽取滤波器解密。通过仿真优化滤波器的加权系数,以最大化信噪比。我们介绍了诸如输入等效噪声(IEN),增益,有效信号范围之类的性能。在最高625 kHz的第一次功能测试中成功获得了数字化的脉冲高度数据。 IEN与ASTRO-H / SXI芯片获得的IEN几乎相同。增益函数的残差约为0.1%,比传统ASIC的残差好两倍。假设CCD的增益与ASTRO-H相同,则在最大增益的情况下有效范围为30 keV。通过改变增益,它可以管理100 ke-的信号电荷。这些结果将反馈给脉冲高度解密滤波器的优化。

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