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SPHIRD-Single Photon Counting Pixel Readout ASIC With Pulse Pile-Up Compensation Methods., , , , , , и . IEEE Trans. Circuits Syst. II Express Briefs, 70 (9): 3248-3252 (сентября 2023)Highly Configurable 100 Channel Recording and Stimulating Integrated Circuit for Biomedical Experiments.. Sensors, 21 (24): 8482 (2021)A 50 MHz, 46 μW, 0.28% Accuracy, 67 ppm/°C Relaxation Oscillator in 40nm CMOS Process for Multichannel Integrated Biomedical Recording System., и . MIXDES, стр. 68-72. IEEE, (2022)Continuous-Time Discriminator Design in CMOS 28 nm Process., и . MIXDES, стр. 186-189. IEEE, (2019)Design of system-on-chip in 180 nm technology for multi-channel wireless recording of the nerve tissue electrical activity., , , , , и . MIXDES, стр. 267-271. IEEE, (2014)Ultra fast X-ray detection systems in nanometer and 3D technologies., , , , , , , , , и 2 other автор(ы). MIXDES, стр. 38-41. IEEE, (2014)Active Feedbacks Comparative Analysis for Charge Sensitive Amplifiers Designed in CMOS 40 nm., , и . MIXDES, стр. 78-82. IEEE, (2020)Digitally assisted neural recording and spike detection multichannel integrated circuit designed in 180 nm CMOS technology.. Microelectron. J., 45 (9): 1187-1193 (2014)Characterization of Seamless CdTe Photon Counting X-Ray Detector., , , , , , , , , и . IEEE Trans. Instrum. Meas., (2021)Energy Efficient Low-Noise Multichannel Neural Amplifier in Submicron CMOS Process., и . IEEE Trans. Circuits Syst. I Regul. Pap., 60-I (7): 1764-1775 (2013)