Advancing X-Ray Camera Front-End Electronics Architecture through the AXIS-TAP Technology Platform
Abstract
Advancing time-domain soft X-ray astronomy demands focal plane readout electronics capable of high-speed digitization with low noise while maintaining spectral fidelity across multiple detector channels. The Advanced X-ray Imaging Satellite (AXIS), a NASA Probe-class mission concept, provided the driving requirements and heritage for developing a generalized high-speed (>=5 fps) camera Front-End Electronics (FEE) architecture applicable to future soft X-ray missions. The FEE architecture defines a modular, dual-box redundant configuration to operate a focal plane of four 16-channel CCDs, with functional partitioning for power distribution, thermal management, mechanism control, and image data acquisition and transmission to the spacecraft. To validate the core signal chain architecture, particularly the analog-to-digital conversion, FPGA-based processing, and Ethernet data transmission, a dedicated technology demonstrator, AXIS-TAP (ADC Testing and Acquisition Platform), has been designed and is currently in fabrication. AXIS-TAP employs commercial equivalents of radiation-tolerant components (FPGA, ADCs, Ethernet PHY) and interfaces directly with the STA Archon benchtop readout system, enabling simultaneous image acquisition from both systems to validate that the flight-like architecture achieves equivalent or superior noise performance. This paper presents the FEE architectural framework, the AXIS-TAP demonstrator design, and the design principles that enable scalability to future soft X-ray missions with similar detector requirements. Performance validation results will be reported upon completion of AXIS-TAP system integration and testing.
Cite
@article{arxiv.2607.26002,
title = {Advancing X-Ray Camera Front-End Electronics Architecture through the AXIS-TAP Technology Platform},
author = {Jill Juneau and Declan O'Neill and Peter Orel and Eric Miller and Sven Herrmann and Gregory Prigozhin and Robert Goeke and Elio Angile and Mark Bautz and Steven Allen and Tanmoy Chattopadhyay and Kevan Donlon and Michelle Gabutti and Catherine E Grant and Beverly LaMarr and Christopher Leitz and Glenn Morri and Abigail Y. Pan and Tonya Peshel and Artem Poliszczuk and Haley Stueber and Keith Warner},
journal= {arXiv preprint arXiv:2607.26002},
year = {2026}
}
Comments
8 pages, 9 figures, Submitted to SPIE 2026 Astronomical Telescopes + Instrumentation