COMPARISON OF HIGH-FREQUENCY CAPABILITIES OF DOMESTIC 90 NM AND 180 NM CMOS TECHNOLOGIES ON THE EXAMPLE OF DESIGN A QUADRATURE DEMODULATOR MIXING BLOCK, "Электронная техника. Серия 3. Микроэлектроника"

Author:

Kalyonov A.D.1,Losev V.V.2,Nedashkovskiy L,V.1,Chaplygin Y.A.2

Affiliation:

1. MIET; JSC PROGRESS MRI

2. MIET

Abstract

The paper presents the results of designing the mixing core of a quadrature demodulator for 90 nm and 180 nm CMOS technologies. The results of simulation the frequency response of the designed block are presented. According to this example, preliminary conclusions on the feasibility of using these technologies for the development of high-frequency products are drawn.

Publisher

Akademizdatcenter Nauka

Reference6 articles.

1. Kalyonov A.D., Nedashkovskiy L.V., Drozdetsky M.G., Losev V.V., Chaplygin Yu.A. Development of a single-chip transmitting module with a built-in frequency synthesizer // Electronics: science, technology, business. 2022. No. 8/22. pp. 76–81.

2. Pun K.-P. et al. Circuit Design for Wireless Communications. Improved Techniques for Image Rejection in Wideband Quadrature Receivers. Boston, Dordrecht, London: Kluwer Academic Publishers, 2003. P. 207.

3. Losev V.V., Nedashkovskiy L.V., Shabardin R.S. Methodology for designing the heterodyne path of microwave quadrature modulators and demodulators with adjustable imbalance // Electronic technology. Series 3: Microelectronics. 2021. No. 2 (182). pp. 5–9.

4. Krupkina T.Yu., Losev V.V., Nedashkovskiy L.V., Chaplygin Yu.A. Investigation of Methods for the Suppression of the Parasitic Components in the Spectrum of the Output Signal of a Microwave-Quadrature Modulator // Russian Microelectronics, 2021, Vol. 50, No. 7. pp. 543–548.

5. Shelepin N.A. Features of technology and design of VLSI SRAM components with a technological level of 90 nm for on-board space equipment // Electronic technology. Series 3: Microelectronics. 2020. No. 2 (178). pp. 5–8.

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