RAS PhysicsРадиотехника и электроника Journal of Communications Technology and Electronics

  • ISSN (Print) 0033-8494
  • ISSN (Online) 3034-5901

Noise figure analysis of receiver based on current-driven mixer

PII
10.31857/S0033849424110092-1
DOI
10.31857/S0033849424110092
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 69 / Issue number 11
Pages
1110-1120
Abstract
An analysis of the noise characteristics of the receiver based on a current-driven passive mixer is presented, taking into account the noise of the following blocks: the low-noise amplifier at input of the mixer, the mixer itself, and the transimpedance amplifier at output of the mixer. The noise at the output of the receiver, which is generated by the listed groups of noise sources, is analyzed. The noise figure of the receiver and its optimal (minimum) value are found taking into account the influence of parasitic capacitances of the switches of the mixer. The calculation results are confirmed by the simulation results.
Keywords
коэффициент шума приемный тракт малошумящий усилитель пассивный смеситель с управлением по току трансимпедансный усилитель спектральная плотность средней мощности шума
Date of publication
12.11.2024
Year of publication
2024
Number of purchasers
0
Views
57

References

  1. 1. Terrovitis M. A., Mayer R. G. // IEEE J. Solid-State Circuits. 1999. V. 34. № 6. P. 772.
  2. 2. Darabi H., Abidi A. A. // IEEE Trans. 2000. V. SSC-35. № 1. P. 15.
  3. 3. Kоротков А. С. // Микроэлектроника. 2011. Т. 40. № 2. С. 128.
  4. 4. Qi G., Shao H., Mak P. I. // IEEE J. Solid-State Circuits. 2020. V. 55. № 12. P. 3387.
  5. 5. Yang D., Andrew C., Molnar A. // IEEE Trans. 2015. V. CS-I-62. № 11. P. 2759.
  6. 6. Lenka M. K., Banerjee G. // IEEE Trans. 2019. V. VLSI-27. № 5. P. 993.
  7. 7. Shams N., Nabki F. // IEEE Trans. 2023. V. VLSI-31. № 3. P. 369.
  8. 8. Chehrazi S., Mirzaei A., Abidi A. A. // IEEE Trans. 2010. V. CS-I-57. № 2. P. 332.
  9. 9. Чан Т. Д., Коротков А. С. // РЭ. ٢٠٢٤. Т. 69. № 3. С. 288.
  10. 10. Коротков А. С., Чан Т. Д. // РЭ. ٢٠٢٣. Т. 68. № 1. С. 83.
  11. 11. Mirzaei A., Darabi D., Leete J. C. et al. // IEEE J. Solid-State Circuits. 2009. V. 44. № 10. P. 2678.
  12. 12. Korotkov A. S., Tran T. D. // Proc. 2023 Int. Conf. Electrical Engineering and Photonics. St. Petersburg. 19–20 Oct. N.Y.: IEEE, 2023. P. 22.
  13. 13. Nguyen T. K., Kim C. H., Ihm G. J. et al. // IEEE Trans. 2004. V. MTT-52. № 5. P. 1433.
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