Wykaz publikacji wybranego autora

Piotr Kmon, dr hab. inż., prof. AGH

profesor nadzwyczajny

Wydział Elektrotechniki, Automatyki, Informatyki i Inżynierii Biomedycznej
WEAIiIB-kmie, Katedra Metrologii i Elektroniki


  • 2023

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / automatyka, elektronika, elektrotechnika i technologie kosmiczne


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / automatyka, elektronika i elektrotechnika


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / elektronika


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-2588-6763 połącz konto z ORCID

ResearcherID: ABG-9774-2020

Scopus: 25649354500

PBN: 5e70922b878c28a04739115c

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • 23552-channel IC for single photon counting pixel detectors with 75 $\mu m$ pitch, ENC of 89 $e^{-}$ rms, 19 $e^{-}$ rms offset spread and 3\% rms gain spread
2
  • 256-channel reconfigurable system for recording the electrophysiological activity of a neural tissue in vitro
3
  • 32k channel readout IC for single photon counting pixel detectors with 75$\mu$m pitch, dead time of 85 ns, 9 ${e^{-}rms}$ offset spread and 2\% rms gain spread
4
  • 32k channels readout IC for single photon counting detectors with 75 $\mu$ pitch, ENC of 123 $e^{-}$ rms, 9$e^{-}$ rms offset spread and 2\% rms gain spread
5
  • 4 Gbps Scalable Low-Voltage Signaling (SLVS) transceiver for pixel radiation detectors
6
  • 8 b 10 MS/s differential SAR ADC in 28 nm CMOS for precise energy measurement
7
  • 8-bit low-power, low-area SAR ADC for biomedical multichannel integrated recording system in CMOS 40nm
8
  • A 50 MHz, 46 $\mu$W, 0.28\% accuracy, 67 ppm$/^\circ$C relaxation oscillator in 40nm CMOS process for multichannel integrated biomedical recording system
9
  • A bidirectional 64-channel neurochip for recording and stimulation neural network activity
10
  • A complete 256-channel reconfigurable system for in vitro neurobiological experiments
11
  • A family of integrated circuits in submicron technology for in vivo and in vitro high density MEA experiments
12
  • A pixel readout chip in 40 nm CMOS process for high count rate imaging systems with minimization of charge sharing effects
13
  • Active feedback with leakage current compensation for charge sensitive amplifier used in hybrid pixel detector
14
  • An algorithm of an X-ray hit allocation to a single pixel in a cluster and its test-circuit implementation
15
  • An effective multilevel offset correction technique for single photon counting pixel detectors
16
  • Analog pixel front-end for VIPIC-large detector
17
  • ASICs in nanometer and 3D technologies for readout of hybrid pixel detectors
18
  • Automated, adaptive, fast reset circuit for wide-energy range detector front-end
19
  • Automated, adaptive, fast reset circuit for wide-energy range detector front-end
20
  • Challenges in QCD matter physics - the scientific programme of the Compressed Baryonic Matter experiment at FAIR
21
  • Characterization of seamless CdTe photon counting X-Ray detector
22
  • Characterization results of the first small pixel high rate (SPHIRD) pixel detector prototypes
23
  • Comparative analysis of the readout front-end electronics implemented in deep submicron technologies
24
  • Comparision of two different architectures of multichannel readout ASICs for neurobiological experiments
25
  • Design and measurements of 64-channel ASIC for neural signal recording