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CERN Document Server Pronađeno je 33 zapisa  1 - 10slijedećikraj  idi na zapis: Pretraživanje je potrajalo 0.54 sekundi 
1.
Design of a Radiation-Tolerant Bandgap Voltage Reference for HEP applications / Traversi, Gianluca (Bergamo U., Ingengneria Dept. ; INFN, Pavia) ; Gaioni, Luigi (Bergamo U., Ingengneria Dept. ; INFN, Pavia) ; Ballabriga, Rafael (CERN) ; Ceresa, Davide (CERN) ; Michelis, Stefano (CERN)
This work discusses the design of a bandgap voltage reference circuit to be operated in harsh radiation environments. [...]
2022. - 3 p.
2.
DRD 7: Proposal for an R&D Collaboration on Electronics and On-Detector Processing / Baudot, Jerome (Centre National de la Recherche Scientifique (FR)) ; French, Marcus Julian (Science and Technology Facilities Council STFC (GB)) ; Kluit, Ruud (Nikhef National institute for subatomic physics (NL)) ; Rivetti, Angelo (Universita e INFN Torino (IT)) ; Simon, Frank (KIT - Karlsruhe Institute of Technology (DE)) ; Vasey, Francois (CERN) ; Barbero, Marlon Benoit (Centre National de la Recherche Scientifique (FR)) ; Baron, Sophie (CERN) ; Borghello, Giulio (CERN) ; Caselle, Michele (KIT - Karlsruhe Institute of Technology (DE)) et al.
The undersigned institutes intend to form a new CERN DRD collaboration to develop future electronic systems and technologies for particle physics detectors. [...]
CERN-DRDC-2024-012 ; DRDC-P-DRD7.
- 2024.
DRD7 Proposal
3. Virtual prototyping of pixel detectors with PixESL framework in High Energy Physics
Reference: Poster-2024-1155
Keywords:  SystemC  high-level architectural modelling  readout system  High Energy Physics  LHCb VeLo upgrade II
Created: 2024. -1 p
Creator(s): Dhaliwal, Jashandeep; Brambilla, Francesco Enrico; Ceresa, Davide; Esposito, Stefano; Kloukinas, Kostas

PixESL pioneers a virtual prototyping framework for future particle detectors in high-energy physics. Developed at CERN under the EP R&D Work-Package 5, this framework enables high-level abstraction, simulating the full detector chain from particle interaction to data packet readout. It facilitates early optimization of chip and system architecture, which is critical for meeting experiment specifications. PixESL models crucial components such as analog front-end, digital circuitry, and data readout networks, empowering designers to analyze interactions and optimize performance. Leveraging SystemC, PixESL offers rapid simulation runtime and above-RTL abstraction, presenting a pivotal tool for advancing particle detector design and verification.

Related links:
EP R&D Day
© CERN Geneva

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4.
Annual Report 2023 and Phase-I Closeout / Aglieri Rinella, Gianluca
This report summarises the activities of the CERN strategic R&D programme on technologies for future experiments during the year 2023, and highlights the achievements of the programme during its first phase 2020-2023..
CERN-EP-RDET-2024-001 - 208.

5.
Radiation-Tolerant SoC and Application-Specific Processors for On-Detector Programmability and Data Processing in Future High-Energy Physics Experiments / Andorno, Marco (CERN) ; Caratelli, Alessandro (CERN) ; Ceresa, Davide (CERN) ; Dhaliwal, Jashandeep (CERN) ; Kloukinas, Kostas (CERN) ; Nookala, Anvesh (CERN) ; Pejasinovic, Risto (CERN)
The High Energy Physics (HEP) community faces new challenges in designing modern ASICs due to their increasing size and complexity, as well as the use of advanced semiconductor fabrication processes. This has led to a need for a more abstract design methodology that emphasizes the use of modular design techniques and programmable components to speed up the design and verification process. [...]
2023 - 5 p. - Published in : 10.1109/MOCAST57943.2023.10176589
In : MOCAST 2023, Athens, Greece, 28 - 30 Jun 2023
6. Pix-ESL: a SystemC framework for architectural modelling of readout systems in HEP
Reference: Poster-2023-1107
Keywords:  SystemC  architectural modelling  readout system  High Energy Physics  Velopix2
Created: 2023. -1 p
Creator(s): Dhaliwal, Jashandeep; Brambilla, Francesco Enrico; Ceresa, Davide; Esposito, Stefano

The high cost of prototyping at advanced technology nodes, as well as the complexity of future detectors, necessitate the use of a system design technique widely used in industry: design space exploration through high-level architecture studies to establish precise and optimal requirements. This work presents Pix-ESL: a programmable SystemC framework for simulating the readout chain from the front-end chips to the detector back-end. The model is transaction accurate, comprises an event generator and connects with real-world physics events, and provides metrics such as readout efficiency, latency, and average queue occupancy. This contribution outlines the framework's structure as well as a case study based on Velopix2.

Related links:
7th Barcelona Techno Week - Course on semiconductor radiation detectors
© CERN Geneva

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7.
Annual Report 2022 / Aglieri, Gianluca
This report summarises the activities and main achievements of the CERN strategic R&D programme on technologies for future experiments during the year 2022
CERN-EP-RDET-2023-002 - 100.

8.
Generic Analog 8 Bit DAC IP Block in 28nm CMOS for the High Energy Physics Community / Piller, Markus (CERN ; Graz, Tech. U.) ; Ballabriga, Rafael (CERN) ; Bandi, Franco Nahuel (CERN) ; Borghello, Giulio (CERN) ; Ceresa, Davide (CERN) ; Pejasinovic, Risto (CERN) ; Sriskaran, Viros (CERN) ; Michalowska-Forsyth, Alicja (Graz, Tech. U.) ; Deutschmann, Bernd (Graz, Tech. U.)
The High Energy Physics (HEP) microelectronic design community is leading a CMOS technology change from Application Specific Integrated Circuit (ASIC) designs in 130nm and 65nm to 28nm for the future upgrades of the High Luminosity Large Hadron Collider (LHC). The technology change to a newer and one of the last planar bulk technologies allows benefiting from advances like higher intrinsic density and speed. [...]
2022 - 4 p. - Published in : 10.1109/Austrochip56145.2022.9940783
9.
Extension of the R&D Programme on Technologies for Future Experiments / Joram, Christian
we have conceived an extension of the R&D programme covering the period 2024 to 2028, i.e [...]
CERN-EP-RDET-2023-001 -

10.
Strategic R&D Programme on Technologies for Future Experiments - Annual Report 2021 / Aglieri Rinella, Gianluca
This report summarises the activities and main achievements of the CERN strategic R&D programme on technologies for future experiments during the year 2021..
CERN-EP-RDET-2022-006 - 126.


10.17181/CERN-EP-RDET-2022-006

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