The CBM detector and electronics systems are reported as mature, with series production underway and key performance-validated through beam tests at mCBM and deployments in STAR, HADES, and E16.
Prototype Design of a Timing and Fast Control system in the CBM Experiment
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abstract
The Compressed Baryonic Matter (CBM) experiment is designed to handle interaction rates of up to 10 MHz and up to 1 TB/s of raw data generated. With triggerless streaming data acquisition in the experiment and beam intensity fluctuations, it is expected that occasional data bursts will surpass bandwidth capabilities of the Data Acquisition System (DAQ) system. In order to preserve integrity of event data, the bandwidth of DAQ must be throttled in an organised way with minimum information loss. The Timing and Fast Control (TFC) system provides a latency-optimised datapath for throttling commands and distributes a system clock together with a global timestamp. This paper describes a prototype design of the system with focus on synchronisation and its evaluation.
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Detectors and Electronics for the CBM experiment at FAIR
The CBM detector and electronics systems are reported as mature, with series production underway and key performance-validated through beam tests at mCBM and deployments in STAR, HADES, and E16.