Performance Analysis and Simulation of Spiral and Active Inductor in 90nm CMOS Technology

被引:0
作者
Sayem, Ahmed S. [1 ]
Rashid, Sakera [1 ]
Akter, Sohely [1 ]
Faruqe, Omar [1 ]
Hossam-E-Haider, Md [1 ]
机构
[1] MIST, Dept EECE, Dhaka 1216, Bangladesh
来源
2018 4TH INTERNATIONAL CONFERENCE ON ELECTRICAL ENGINEERING AND INFORMATION & COMMUNICATION TECHNOLOGY (ICEEICT) | 2018年
关键词
Spiral Inductor; Active Inductor; Quality Factor; Self-Resonant Frequency; Phase Noise; PHASE-NOISE; DESIGN; VCO;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents compendium analysis, simulation and comparison of conventional spiral/passive inductor and active inductor in 90nm CMOS process. Spiral inductor is a passive element, a coil of wire, follows several drawbacks regarding silicon area consumption, quality factor, and inductance. However, an innovative approach which replicates the behaviors exhibited by the spiral inductor with some additional key features is active inductor. This research paper narrates several comparative features which define the figure of merit and recapitulates the findings based on established references models and proper simulations. Considering the drawbacks such as greater silicon area consumption, low and fixed inductance and quality factor shown by spiral inductor, the active inductor outdoes the spiral inductor. The simulation results demonstrate how the inductance can be made tunable by the regulating parameters such as capacitance, transconductance of the implemented transconductor which also pave the way to tune the quality factor. Nonetheless, active inductor has two major drawbacks regarding phase noise and dc power consumption aided by active elements used in this topology. After all, for the purpose of application based implementations of active inductor, some basic performance parameters and controlling parameters that affect the performance parameters have been summarized.
引用
收藏
页码:570 / 575
页数:6
相关论文
共 31 条
  • [1] [Anonymous], 2007, INT TECHNOLOGY ROADM
  • [2] [Anonymous], 2004, COMMUNICATIONS ENG
  • [3] On the design of RF spiral inductors on silicon
    Burghartz, JN
    Rejaei, B
    [J]. IEEE TRANSACTIONS ON ELECTRON DEVICES, 2003, 50 (03) : 718 - 729
  • [4] RF circuit design aspects of spiral inductors on silicon
    Burghartz, JN
    Edelstein, DC
    Soyuer, M
    Ainspan, HA
    Jenkins, KA
    [J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 1998, 33 (12) : 2028 - 2034
  • [5] A symmetrical 6-GHz fully integrated cascode coupling CMOS LC quadrature VCO
    Chang, JH
    Kim, CK
    [J]. IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2005, 15 (10) : 670 - 672
  • [6] A low-phase noise LC-QVCO in CMOS technology
    Choi, HC
    Shin, SB
    Lee, SG
    [J]. IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2004, 14 (11) : 540 - 542
  • [7] Design of an optimised 2.5 GHz CMOS differential LC oscillator
    Dehghani, R
    Atarodi, SM
    [J]. IEE PROCEEDINGS-MICROWAVES ANTENNAS AND PROPAGATION, 2004, 151 (02) : 167 - 172
  • [8] Ghorbel I., 2011, ICM, P1
  • [9] A low-phase-noise 5-GHz CMOS quadrature VCO using superharmonic coupling
    Gierkink, SLJ
    Levantino, S
    Frye, RC
    Samori, C
    Boccuzzi, V
    [J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2003, 38 (07) : 1148 - 1154
  • [10] Haobijam Genemala, 2016, DESIGN ANAL SPIRAL I