Project detail
Využití nových poznatků z mikro- a nanotechnologií pro komplexní elektronické obvody a senzoriku
Duration: 1.3.2017 — 29.2.2020
Funding resources
Vysoké učení technické v Brně - Vnitřní projekty VUT
On the project
Hlavním záměrem projektu je analýza současného stavu v oblasti moderních mikro- a nanotechnologií a možnosti jejich využití k návrhu a realizaci komplexních elektronických obvodů resp. různých typů senzorů a v senzorických aplikacích. Projekt je rozdělen na tři oblasti výzkumu. První je zaměřena na využití moderních technologií a materiálů pro mikro- a nanoelektroniku. Druhou je návrh, analýza a realizace elektronických resp. integrovaných obvodů pro speciální aplikace. Třetí je návrh a výroba speciálních senzorů (nano, chemo a biosenzory).
Mark
FEKT-S-17-3934
Default language
Czech
People responsible
Háze Jiří, doc. Ing., Ph.D. - principal person responsible
Boušek Jaroslav, prof. Ing., CSc. - fellow researcher
Dvořák Vojtěch, Ing., Ph.D. - fellow researcher
Eliáš Josef, Ing. - fellow researcher
Fujcik Lukáš, doc. Ing., Ph.D. - fellow researcher
Hrubý Lukáš, Ing. - fellow researcher
Hubálek Jaromír, prof. Ing., Ph.D. - fellow researcher
Chmela Ondřej, Ing., Ph.D. - fellow researcher
Jelínek Michal, Ing., Ph.D. - fellow researcher
Mojrová Barbora, Ing., Ph.D. - fellow researcher
Novák Lukáš, Ing. - fellow researcher
Prítel Pavol, Ing. - fellow researcher
Skácel Josef, Ing. - fellow researcher
Somer Jakub, Ing., PhD. - fellow researcher
Svoboda Ondřej, Ing. - fellow researcher
Szendiuch Ivan, doc. Ing., CSc. - fellow researcher
Šteffan Pavel, doc. Ing., Ph.D. - fellow researcher
Urban František, doc. Ing., CSc. - fellow researcher
Vala Martin, Ing. - fellow researcher
Veverka David, Ing. - fellow researcher
Units
Department of Microelectronics
- responsible department (1.8.2017 - not assigned)
Department of Microelectronics
- internal (1.1.2017 - 31.12.2019)
Faculty of Electrical Engineering and Communication
- beneficiary (1.1.2017 - 31.12.2019)
Results
AKBARI, M.; MAWLOOD HUSSEIN S.; HASHIM Y.; KHATEB, F.; KEA-TIONG, T. A Rail-to-Rail Transconductance Amplifier Based on Current Generator Circuits. IEEE TRANSACTIONS ON VERY LARGE SCALE INTEGRATION (VLSI) SYSTEMS, 2023, vol. 31, no. 10, p. 1624-1628. ISSN: 1557-9999.
Detail
KHATEB, F.; KUMNGERN, M.; KULEJ, T.; STOPJAKOVÁ, V.; PSYCHALINOS, C. 0.3-V, 357.4-nW Voltage-Mode First-Order Analog Filter Using a Multiple-Input VDDDA. IEEE Access, 2023, vol. 11, no. 1, p. 96636-96647. ISSN: 2169-3536.
Detail
ELIÁŠ, J.; KOČÍ, L.; HOLÍK, M.; HELÁN, R.; URBAN, F. Zpracování a vyhodnocování optického signálu z vláknových prvků. LA57. Brno: Ústav pĜístrojové techniky AV ýR, v.v.i., 2017. ISBN: 978-80-87441-21-3.
Detail
HELÁN, R.; SOMER, J.; URBAN, F.; URBAN, F. Apodizace FBG dynamickým předepnutím vlákna. Sborník příspěvků multioborové konference LASER58. Brno: Ústav pĜístrojové techniky AV ýR, v.v.i., 2018. s. 21-23. ISBN: 978-80-87441-25-1.
Detail
KUMNGERN, M.; KHATEB, F.; KULEJ, T.; ŠTEFFAN, P. 0.3-V Voltage-Mode Versatile First-Order Analog Filter Using Multiple-Input DDTAs. SENSORS, 2023, vol. 23, no. 13, p. 1-16. ISSN: 1424-8220.
Detail
KUMNGERN, M.; JONGCHANACHAVAWAT, W.; PHATSORNSIRI, P.; WONGPROMMOON, N.; KHATEB, F.; KULEJ, T. Current-Mode First-Order Versatile Filter Using Translinear Current Conveyors with Controlled Current Gain. Electronics (MDPI), 2023, vol. 12, no. 13, p. 1-20. ISSN: 2079-9292.
Detail
JAIKLA, W.; SANGYAEM, S.; SUPAVARASUWAT, P.; KHATEB, F.; MINAEI, S.; KULEJ, T.; SUWANJAN, P. Reconfigurable Voltage-Mode First-Order Multifunction Filter Employing Second-Generation Voltage Conveyor (VCII) With Complete Standard Functions and Electronically Controllable Modification. IEEE Access, 2023, vol. 11, no. 1, p. 56152-56169. ISSN: 2169-3536.
Detail
KUMNGERN, M.; KULEJ, T.; KHATEB, F. 31.3 nW, 0.5 V Bulk-Driven OTA for Biosignal Processing. IEEE Access, 2023, vol. 11, no. 1, p. 56516-56525. ISSN: 2169-3536.
Detail
KHATEB, F.; KUMNGERN, M.; KULEJ, T. 0.5-V Nano-Power Voltage-Mode First-Order Universal Filter Based on Multiple-Input OTA. IEEE Access, 2023, vol. 11, no. 1, p. 49806-49818. ISSN: 2169-3536.
Detail
KHATEB, F.; KUMNGERN, M.; KULEJ, T.; KUMAR RANJAN, R. 0.5 V Multiple-Input Multiple-Output Differential Difference Transconductance Amplifier and Its Applications to Shadow Filter and Oscillator. IEEE Access, 2023, vol. 11, no. 3, p. 31212-31227. ISSN: 2169-3536.
Detail
KHATEB, F.; KUMNGERN, M.; KULEJ, T.; YAVARI, M. 0.5-V Nano-Power Shadow Sinusoidal Oscillator Using Bulk-Driven Multiple-Input Operational Transconductance Amplifier. SENSORS, 2023, vol. 23, no. 4, p. 1-15. ISSN: 1424-8220.
Detail
KUMNGERN, M.; KHATEB, F.; KULEJ, T. Shadow Filters Using Multiple-Input Differential Difference Transconductance Amplifiers. SENSORS, 2023, vol. 23, no. 3, p. 1-18. ISSN: 1424-8220.
Detail
TASNEEM, S.; SHARMA, P.; KUMAR RANJAN, R.; KHATEB, F. Electronically Tunable Memristor Emulator Implemented Using a Single Active Element and Its Application in Adaptive Learning. SENSORS, 2023, vol. 23, no. 3, p. 1-17. ISSN: 1424-8220.
Detail
KUMNGERN, M.; KHATEB, F.; KULEJ, T. 0.5 V Universal Filter and Quadrature Oscillator Based on Multiple-Input DDTA. IEEE Access, 2023, vol. 11, no. 1, p. 9957-9966. ISSN: 2169-3536.
Detail
KULEJ, T.; KUMNGERN, M.; KHATEB, F.; ARBET, D. 0.5 V Versatile Voltage- and Transconductance-Mode Analog Filter Using Differential Difference Transconductance Amplifier. SENSORS, 2023, vol. 23, no. 2, p. 1-16. ISSN: 1424-8220.
Detail
PHATSORNSIRI, P; TORTEANCHAI, U.; RATTANASUTTIKAN, M.; JONGCHANACHAVAWAT, W.; KUMNGERN, M.; KHATEB, F. 1.2 v Differential Difference Current Conveyor Using MIGD MOST Technique. In 19th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology, ECTI-CON 2022. Prachuap Khiri Khan, Thailand: IEEE, 2022. p. 1-4. ISBN: 978-166-548-584-5.
Detail
AKBARI, M.; MAWLOOD HUSSEIN S.; HASHIM Y.; KHATEB, F.; KULEJ, T.; KEA-TIONG, T. Implementation of a Multipath Fully Differential OTA in 0.18-mu m CMOS Process. IEEE TRANSACTIONS ON VERY LARGE SCALE INTEGRATION (VLSI) SYSTEMS, 2023, vol. 31, no. 1, p. 147-151. ISSN: 1557-9999.
Detail
KHATEB, F.; KUMNGERN, M.; KULEJ, T.; AKBARI, M.; STOPJAKOVÁ, V. 0.5 V, nW-Range Universal Filter Based on Multiple-Input Transconductor for Biosignals Processing. SENSORS, 2022, vol. 22, no. 22, p. 1-12. ISSN: 1424-8220.
Detail
Kumngern, M.; Khateb, F.; Phatsornsiri, P.; Jongchanachavawat, W. et al. 1.2 V differential difference current conveyor using MIGD MOST technique and its applications. AEU - International Journal of Electronics and Communications, 2023, vol. 158, no. JAN 2023, p. 1-13. ISSN: 1434-8411.
Detail
KHATEB, F.; KULEJ, T.; AKBARI, M.; KEA-TIONG, T. A 0.5-V Multiple-Input Bulk-Driven OTA in 0.18-mu m CMOS. IEEE Trans. on VLSI Systems., 2022, vol. 30, no. 11, p. 1739-1747. ISSN: 1063-8210.
Detail
Responsibility: Háze Jiří, doc. Ing., Ph.D.