X-ray performance of a customized large-format scientifc CMOS detector
Qinyu Wu, Zhenqing Jia, Wenxin Wang, Zhixing Ling, Chen Zhang,, Shuangnan Zhang, and Weimin Yuan

TL;DR
This paper presents a new large-format scientific CMOS detector optimized for X-ray detection, demonstrating high energy resolution, low noise, and broad energy response suitable for advanced X-ray imaging and spectroscopy.
Contribution
The work introduces a novel high-speed, large-format sCMOS sensor with improved epitaxial thickness and performance metrics, marking a significant advancement over previous models.
Findings
Dark current below 10 e/pixel/s at 20°C
Energy resolution of 180.1 eV at 5.90 keV
Response to X-ray photons from 500 eV to 37 keV
Abstract
In recent years, the performance of Scientifc Complementary Metal Oxide Semiconductor (sCMOS) sensors has been improved signifcantly. Compared with CCD sensors, sCMOS sensors have various advantages, making them potentially better devices for optical and X-ray detection, especially in time-domain astronomy. After a series of tests of sCMOS sensors, we proposed a new dedicated high-speed, large-format X-ray detector in 2016 cooperating with Gpixel Inc. This new sCMOS sensor has a physical size of 6 cm by 6 cm, with an array of 4096 by 4096 pixels and a pixel size of 15 um. The frame rate is 20.1 fps under current condition and can be boosted to a maximum value around 100 fps. The epitaxial thickness is increased to 10 um compared to the previous sCMOS product. We show the results of its frst taped-out product in this work. The dark current of this sCMOS is lower than 10 e/pixel/s at 20C,…
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Taxonomy
TopicsCCD and CMOS Imaging Sensors · Particle Detector Development and Performance · Radiation Detection and Scintillator Technologies
