Microelectronics, Volume. 51, Issue 3, 368(2021)
Optimization Design of a LS-Band VCO Based on Response Surface Modeling
[1] [1] WONG K L, CHEN Y H, LI W Y. Conjoined ultra-wideband (2,300-6,000 MHz) dual antennas for LTE HB/WiFi/5G multi-input multi-output operation in the fifth-generation tablet device [J]. Microwave & Opt Technol Lett, 2019, 61(8): 1958-1963.
[4] [4] LEE T H, ALI H. Oscillator phase noise: a tutorial [J]. IEEE J Sol Sta Circ, 2000, 35(3): 326-336.
[5] [5] IOTTI L, ANDREA M, FRANCESCO S. Insights into phase-noise scaling in switch-coupled multi-core LC VCOs for E-band adaptive modulation links [J]. IEEE J Sol Sta Circ, 2017, 52(7): 1703-1718.
[6] [6] BHAT A, NAGENDRA K. Low 1/f3 phase noise quadrature LC VCOs [J]. IEEE Trans Circ & Syst I: Regu Pap, 2018, 65(7): 2127-2138.
[7] [7] HATI M K, BHATTACHARYYA T K. A fast automatic frequency and amplitude control LC-VCO circuit with noise filtering technique for a fractional-N PLL frequency synthesizer [J]. Microelec J, 2016, 52: 134-146.
[8] [8] MARTINS R, LOURENCO N, HORTA N, et al. Many-objective sizing optimization of a class-C/D VCO for ultralow-power IoT and ultralow-phase-noise cellular applications [J]. IEEE Trans VLSI Syst, 2019, 27(1): 69-82.
[9] [9] ITALIA A, IPPOLITO C M, PALMISANO G. A 1-mW 1.13-1.9 GHz CMOS LC VCO using shunt-connected switched-coupled inductors [J]. IEEE Trans Circ & Syst I: Regu Pap, 2012, 59(6): 1145-1155.
[10] [10] ALI M, MEHRDAD S B, EHSAN A. A 2.4 GHz VCO with FOM of 190 dBc/Hz at 10 kHz-to-2 MHz offset frequencies in 0.13 μm CMOS using an ISF manipulation technique [C] // IEEE ISSCC. San Francisco, CA, USA. 2015: 1-3.
[11] [11] ISHAK M H H, FARZAD I, AZIZ M S A, et al. Optimization of 3D IC stacking chip on molded encapsulation process: a response surface methodology approach [J]. Int J Advan Manufactur Technol, 2019, 103(1-4): 1139-1153.
[12] [12] BARMUTA P, GUSTAVO A, FRANCESCO F, et al. Large-signal modeling of on-wafer microwave transistors based on response surface methodology [C] // IEEE MTT-S Int Microwave Symp. Phoenix, AZ, USA. 2015: 1-4.
[13] [13] LIU B, CHEN G, YANG B, et al. Routable and matched layout styles for analog module generation [J]. ACM Trans Des Automat Elec Syst, 2018, 23(4): 1-17.
[14] [14] ANDRE I K, JOHN A C. Response surfaces: designs and analyses [M]. 2nd Edition. New York: CRC Press, Taylor & Francis Group, 2018.
[16] [16] YU F, QIANG T, WANG W Z, et al. A 2.7 GHz low phase noise LC-QVCO using the gate-modulated coupling technique [J]. Wireless Personal Commun, 2016, 86(2): 671-681.
[17] [17] IKEDA S, LEE S, ITO H. A 0.5 V 5.96-GHz PLL with amplitude-regulated current-reuse VCO [J]. IEEE Microwave & Wireless Compon Lett, 2017, 27(3): 302-304.
[18] [18] ALBITTAR I F I, HAKAN D, MEHMET T O. A novel biasing technique for low phase noise voltage controlled oscillators [J]. Microelec J, 2018, 72: 120-125.
[19] [19] KIM J, PARK J, KIM J G. A low phase noise multi-band LC VCO using a switched differential inductor [J]. IEICE Elec Expr, 2018, 15(7): 20180155.
[20] [20] ZOU W, ZOU X C, REN D M, et al. 2.49-4.91 GHz wideband VCO with optimised 8-shaped inductor [J]. Elec Lett, 2019, 55(1): 55-56.
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DUAN Wenjuan, LIU Bo, ZHANG Jincan, MENG Qingduan. Optimization Design of a LS-Band VCO Based on Response Surface Modeling[J]. Microelectronics, 2021, 51(3): 368
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Received: Jul. 13, 2020
Accepted: --
Published Online: Mar. 11, 2022
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