Дослідження температурної нестабільності в активних НВЧ фільтрах та методи її зменшення
Вантажиться...
Дата
Назва журналу
Номер ISSN
Назва тому
Анотація
The article presents a study of methods for reducing temperature instability in active microwave filters. The analysis of the effect of temperature on the parameters of an active microwave filter is carried out. The results of experimental studies of the temperature characteristics of microwave filters are also presented. When designing digital systems, especially mod-ern ones that operate with a clock frequency or that use a radio channel in the microwave and microwave range, there is usually a problem of increasing the reliability or reducing the overall size while maintaining high electrical parameters. Re-quirements for miniaturization of microwave equipment, the task is to create filter circuits that are suitable for integrated production. Unlike low-frequency active filters, when constructing microwave filters, it is necessary to take into account the inertial properties of transistors. Therefore, studies of various stripe active microwave filter circuits exploit reactive phenom-ena in the transistor. The possibility of their temperature and dynamic stabilization by changing the emitter current of a bipo-lar transistor is shown. Various circuit solutions for the implementation of this method are proposed. As experimental studies have shown, with increasing temperature, there is a decrease in the filter transfer coefficient at the quasi-resonant frequen-cy. Experimental studies have shown that in order to stabilize the transfer coefficient of temperature rise, an increase in the emitter current is necessary, which can be achieved by a general increase in the supply voltage. Thus, for thermal stabiliza-tion of the frequency response of the microwave filter, it is necessary to regulate the current of the transistor emitter simultaneously with the temperature change. The magnitude of the emitter current adjustment when the temperature changes from –60 °C to +100 °C is 3—4 orders of magnitude for low-power silicon transistors.
Опис
УДК
Тип документа
Мова
ISSN
Бібліографічний опис
Дослідження температурної нестабільності в активних НВЧ фільтрах та методи її зменшення [Текст] / О. В. Осадчук, Я. О. Осадчук, С. В. Ліхашорський // Вісник Вінницького політехнічного інституту. – 2021. – № 3. – С. 127-133.
Схвалення
Рецензія
Доповнено
Цитується в
Список використаної літератури (4)
- R. L. Kubena, et al., “Next Generation Quartz Oscillators and Filters for VHF-UHF Systems,” in 2006 IEEE MTT-S In-ternational Microwave Symposium Digest, 2006, pp. 668-671, https://doi.org/10.1109/MWSYM.2006.249703 .
- D. Chang, F. Stratton, R. Kubena, and R. Joyc, “Optimized DRIE Etching of Ultra-Small Quartz Resonators,” in Pro-ceedings of the 2003 IEEE International Frequency Control Symposium, pp. 829-832, 2003.
- F. P. Stratton, et all., “A MEMS-based Quartz Resonator Technology for GHz Applications” in Proceedings of the 2004 IEEE International Frequency Control Symposium, pp. 27-34, 2004.
- A. V. Osadchuk, V. S. Osadchuk, and I. O. Osadchuk, “Modern world tendencies in the development of science. Chapters 19. Gas concentration transducers with frequency output signal based on reactive properties of semiconductor structures with negative differential resistance,” vol. 2. Publishshed by Sciemcee Pablishing. LP22772, 20-22 Wenlock Road, London, Unit-ed Kingdom, 2019, pp. 271-285.