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J. Lehnert

Publications -  14
Citations -  379

J. Lehnert is an academic researcher. The author has contributed to research in topics: Application-specific integrated circuit & Data acquisition. The author has an hindex of 6, co-authored 13 publications receiving 261 citations.

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Journal ArticleDOI

Challenges in QCD matter physics --The scientific programme of the Compressed Baryonic Matter experiment at FAIR

T. O. Ablyazimov, +602 more
TL;DR: The Compressed Baryonic Matter (CBM) experiment at FAIR will play a unique role in the exploration of the QCD phase diagram in the region of high net-baryon densities, because it is designed to run at unprecedented interaction rates.
Journal ArticleDOI

Characterization of the STS/MUCH-XYTER2, a 128-channel time and amplitude measurement IC for gas and silicon microstrip sensors

TL;DR: The STS/MUCH-XYTER2 (or SMX2) is a 128-channel prototype ASIC for silicon strip detectors and gas electron multiplier (GEM) detectors in the Compressed Baryonic Matter (CBM) experiment as mentioned in this paper.
Journal ArticleDOI

A protocol for hit and control synchronous transfer for the front-end electronics at the CBM experiment

TL;DR: This paper presents the protocol design addressing the DAQ system requirements, simplifying the ASIC's back-end design and its adaptation for the STS and MUCH detector's conditions and a specific link synchronization technique, hit data bandwidth optimization and time synchronization method for the self-triggered front-end chip.
Journal ArticleDOI

GBT based readout in the CBM experiment

TL;DR: The paper describes the GBT based readout concept in CBM, emphasizing the common features among systems, and presents a common CBM readout board that provides full GBT functionality for all systems.
Proceedings ArticleDOI

The GBT-based readout concept for the silicon tracking system of the CBM experiment

TL;DR: In this paper, the authors present the readout concept for the Silicon Tracking System (STS) of the CBM experiment at FAIR, which is designed to handle interaction rates up to 10 MHz with hundreds of tracks in fixed target heavy ion collisions of up to 35 AGeV.