A 7-9 GHz I/Q Up-Conversion Mixer Employing a Linear Voltage-to-Current Converting Baseband Input Stage for 5G New Radio Cellular Applications

  • Park, Beomyu
  • Lee, Donggu
  • Lee, Jeongwoo
  • Han, Junghwan
  • Kwon, Kuduck
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초록

This work presents a 7-9 GHz in-phase/quadrature (I/Q) direct up-conversion mixer employing a linear voltage-to-current converting baseband input stage for 5G new radio frequency range 2 cellular applications. The proposed baseband stage improves both the large-signal handling capability and small-signal linearity at the input stage of the mixer. The designed double-balanced I/Q up-conversion mixer, which is based on Gilbert-cell mixer, consists of a voltage-to-current converting input stage, switching stages, and an RLC tank. Simulated in a 40-nm CMOS process, the up-conversion mixer achieves a conversion gain of 5 dB, input-referred third-order intercept point of 9.6 dBm, and input 1-dB gain compression point of -0.8 dBm. It draws a DC bias current of 15.8 mA from a nominal supply voltage of 1.1 V, and the active area is 0.129 mm(2).

키워드

5Gcurrent mirror-based baseband stageGilbert-cell mixerintermediate frequency (IF)linearizationmillimeter-wave (mmWave)new radio (NR)transmitterup-conversion mixer
제목
A 7-9 GHz I/Q Up-Conversion Mixer Employing a Linear Voltage-to-Current Converting Baseband Input Stage for 5G New Radio Cellular Applications
저자
Park, BeomyuLee, DongguLee, JeongwooHan, JunghwanKwon, Kuduck
DOI
10.1142/S0218126622501432
발행일
2022-05-30
유형
Article
저널명
Journal of Circuits, Systems and Computers
31
08