Current-to-frequency converter based on oscillistor effect
- Authors: Cheredov A.I.1, Shchelkanov A.V.1
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Affiliations:
- Omsk State Technical University
- Issue: Vol 192, No 4 (2024)
- Pages: 134-138
- Section: ELECTRONICS, PHOTONICS, INSTRUMENT ENGINEERING AND CONNECTION
- URL: https://bakhtiniada.ru/1813-8225/article/view/279204
- DOI: https://doi.org/10.25206/1813-8225-2024-192-134-138
- EDN: https://elibrary.ru/IXAXOD
- ID: 279204
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Abstract
The possibility of direct current measuring converters construction measuring converted direct current, realizing straightdirect current-to-frequency conversion of current into frequency of alternating current or voltage is considered. An oscillistor made of electronic germanium is used as an element realizing this conversion. The dependences of frequency on current obtained in the course of theoretical and experimental studies are given. The device of the current-frequency converter is shown and its characteristics are given.
About the authors
Aleksandr I. Cheredov
Omsk State Technical University
Author for correspondence.
Email: shchelkanov@omgtu.ru
SPIN-code: 6957-1660
Candidate of Technical Sciences, Associate Professor, Associate Professor of Radio Engineering Devices and Diagnostic Systems Department
Russian Federation, OmskAndrey V. Shchelkanov
Omsk State Technical University
Email: shchelkanov@omgtu.ru
ORCID iD: 0000-0002-1354-8708
SPIN-code: 2564-1461
Scopus Author ID: 56447045400
ResearcherId: P-9053-2015
Senior Lecturer of Radio Engineering Devices and Diagnostic Systems Department
Russian Federation, OmskReferences
- Li W., Liu L., Shi R. [et al.]. Acoustoelectric Voltage Sensor Based on S0 Mode Lamb Wave Resonator with Millivolt Resolution // 2023 IEEE International Ultrasonics Symposium (IUS), Montreal, QC, Canada. 2023. P. 1–4. doi: 10.1109/IUS51837.2023.10306502. (In Engl.).
- Malyshev I. V., Osadchiy E. N. Primeneniye sil′nykh postoyannykh magnitnykh i elektricheskikh poley dlya sozdaniya novykh ob′′yemnykh poluprovodnikovykh preobrazovatel′nykh uzlov [The use of strong constant magnetic and electric fields to create a new type of bulk semiconductor converter units] // Izvestiya Yuzhnogo federal′nogo universiteta. Tekhnicheskiye nauki. Izvestiya SFedU. Engineering Sciences. 2019. No. 6 (208). P. 70–85. (In Russ.).
- Gliksman M. Instabilities of a cylindrical electron-hole plasma in a magnetic field // Physical Review. 1961. Vol. 124. P. 1655–1664. doi: 10.1103/PhysRev.124.1655. (In Engl.).
- Ivanov Yu. L., Ryvkin M. Vozniknoveniye kolebaniy toka v obraztsakh germaniya, pomeshchennykh v elektricheskoye i prodol′noye magnitnoye pole [Occurrence of current oscillations in germanium samples placed in an electric and longitudinal magnetic field] // Zhurnal tekhnicheskoy fiziki. Journal of Technical Physics. 1958. Vol. 28. P. 54–56. (In Russ.).
- Vladimirov V. V., Volkov A. F., Meylikhov E. Z. Plazma poluprovodnikov [Semiconductor plasma]. Moscow, 1979. 254 p. (In Russ.).
- Cheredov A. I., Shchelkanov A. V., Akhmedzhanov R. A., Korenev E. O. Magnetically sensitive converter of the magnetic field gradient based on oscillistor // Dynamics of Systems, Mechanisms and Machines (Dynamics). 2017. P. 1–3. doi: 10.1109/Dynamics.2017.8239443. (In Engl.).
- Shchelkanov A. V., Cheredov A. I. Oscillistor-based force sensor // Journal of Physics: Conference Series. 2020. Vol. 1546. 012002. doi: 10.1088/1742-6596/1546/1/012002. (In Russ.).
- Gaman V. I., Drobot P. N. Oscillistor sensors with a frequency output based on a silicon structures // Electronic Instrument Engineering Proceedings. APEIE-98. 1998. Vol. 1. P. 133–135. doi: 10.1109/APEIE.1998.768930. (In Engl.).
- Drobot P. N., Drobot D. A. Ostsillistornyye sensory s chastotnym vykhodom [Oscillistor sensors with a frequency output] // Yuzhno-sibirskiy nauchnyy vestnik. South-Siberian Scientific Bulletin. 2012. No. 1. P. 120–123. EDN: PAGHTH. (In Russ.).
- Hurwitz С. Е., McWhorter A. L. Growing helical density waves in a semiconductor plasmas // Physical Review Letters. 1964. Vol. 134 (4A). P. 1033–1050. doi: 10.1103/PhysRev.134.A1033. (In Engl.).
- Vikulin I. M., Lyuze L. L., Presnov V. A. Chastota vintovoy nestabil′nosti v ostsillistorakh [Frequency of helical instability in oscillistors] // Fizika i tekhnika poluprovodnikov. Fizika i Tekhnika Poluprovodnikov. 1968. Vol. 2, no. 8. P. 1138–1143. (In Russ.).
- Lampert M., Mark P. Inzhektsionnyye toki v tverdykh telakh [Current Injection in Solids]. Moscow, 1973. 416 p. (In Russ.).
- Cheredov A. I., Shchelkanov A. V. Angular displacement sensor based on oscillistor effect // Journal of Physics: Conference Series. 2021. Vol. 1901. Р. 012104-1-012104-7. doi: 10.1088/1742-6596/1901/1/012104. (In Engl.).
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