Publication | Open Access
The GBT-SCA, a radiation tolerant ASIC for detector control and monitoring applications in HEP experiments
92
Citations
3
References
2015
Year
Monitoring ApplicationsEngineeringDevice IntegrationComputer ArchitectureLhc ExperimentsMixed-signal Integrated CircuitAsic ImplementationPhotonic Integrated CircuitInstrumentationRadiation ImagingHealth SciencesPhotonicsElectrical EngineeringRadiation DetectionPhysicsComputer EngineeringSynchrotron RadiationMicroelectronicsReadout DataFuture UpgradesVlsi ArchitectureRadiation Tolerant AsicDetector ControlDetector PhysicOptoelectronics
The future upgrades of the LHC experiments will increase the beam luminosity leading to a corresponding growth of the amounts of data to be treated by the data acquisition systems. To address these needs, the GBT (Giga-Bit Transceiver optical link [1,2]) architecture was developed to provide the simultaneous transfer of readout data, timing and trigger signals as well as slow control and monitoring data. The GBT-SCA ASIC, part of the GBT chip-set, has the purpose to distribute control and monitoring signals to the on-detector front-end electronics and perform monitoring operations of detector environmental parameters. In order to meet the requirements of different front-end ASICs used in the experiments, it provides various user-configurable interfaces capable to perform simultaneous operations. It is designed employing radiation tolerant design techniques to ensure robustness against SEUs and TID radiation effects and is implemented in a commercial 130 nm CMOS technology. This work presents the GBT-SCA architecture, the ASIC interfaces, the data transfer protocol, and its integration with the GBT optical link.
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