Modeling of High-Q Conical Inductors and MOM Capacitors for Millimeter- Wave Applications

被引:6
作者
Jeyaraman, Sathyasree [1 ]
Vanukuru, Venkata Narayana Rao [2 ]
Nair, Deleep [3 ]
Chakravorty, Anjan [3 ]
机构
[1] VIT Chennai, Sch Elect Engn, Chennai 600127, Tamil Nadu, India
[2] GLOBALFOUNDRIES, Bengaluru 560045, India
[3] IIT Madras, Dept Elect Engn, Chennai 600036, Tamil Nadu, India
关键词
Inductors; Integrated circuit modeling; Metals; Capacitors; Capacitance; Method of moments; Proximity effects; Bandpass filter (BPF); capacitive coupling; CMOS; conical inductors; metal-oxide-metal (MOM) capacitor; quality factor; radio frequency integrated circuits; spiral inductor; substrate model; SPIRAL INDUCTORS; DESIGN;
D O I
10.1109/TED.2020.3029236
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Conical inductors and metal-oxide-metal (MOM) capacitors are shown to have higher quality factor (Q) characteristics at millimeter wave (mm-wave) frequencies over conventional inductors and nitride MIM capacitors. In this work, Physics-based analytical models are developed for conical inductors and MOM capacitors usable at mm-wave frequencies. The linear voltage profile along the turns of the conical inductor is taken into account for capacitance calculation which is critical in accurately predicting Q-values. Two RL networks coupled by capacitors are proposed to capture the frequency-dependent characteristics of the MOM capacitor. The lumped elements in both these device models are frequency independent and can be calculated using layout and process parameters. The proposed models for conical inductors and MOM capacitors are verified with electromagnetic (EM) simulations till 100 GHz. A prototype 60-GHz bandpass filter (BPF) is fabricated using 0.18 mu m RF-silicon on insulator (SOI) technology to validate the accuracy of the developed compact models. BPF simulation results using the proposed models are shown to be in excellent agreement with those produced with EM simulations and silicon measurements.
引用
收藏
页码:5646 / 5652
页数:7
相关论文
共 29 条
[11]   Cu/Co Multilayer-Based High Signal Integrity and Low RF Loss Conductors for 5G/Millimeter Wave Applications [J].
Hwangbo, Seahee ;
Rahimi, Arian ;
Yoon, Yong-Kyu .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2018, 66 (08) :3773-3780
[12]   An approach for the calculation of magnetic field within square spiral inductors at low frequency [J].
Ibrahim, NM ;
Kuhn, WB .
INTERNATIONAL JOURNAL OF NUMERICAL MODELLING-ELECTRONIC NETWORKS DEVICES AND FIELDS, 2002, 15 (04) :339-354
[13]   Compact Modeling of Series Stacked Tapered Spiral Inductors [J].
Jeyaraman, Sathyasree ;
Vanukuru, Venkata ;
Nair, Deleep ;
Chakravorty, Anjan .
2019 IEEE 19TH TOPICAL MEETING ON SILICON MONOLITHIC INTEGRATED CIRCUITS IN RF SYSTEMS (SIRF), 2019, :578-580
[14]  
Kim S, 1996, IEEE MTT-S, P1815, DOI 10.1109/MWSYM.1996.512297
[15]   Study of 3-D Printed Conical Inductors for Broadband RF Applications [J].
Lopez-Villegas, J. M. ;
Vidal, N. ;
Sieiro, J. ;
Salas, Arnau ;
Medina, B. ;
Ramos, Francisco M. .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2018, 66 (08) :3597-3602
[16]   Optimized Toroidal Inductors Versus Planar Spiral Inductors in Multilayered Technologies [J].
Lopez-Villegas, J. M. ;
Vidal, N. ;
del Alamo, Jesus A. .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2017, 65 (02) :423-431
[17]   Improvement of the quality factor of RF integrated inductors by layout optimization [J].
López-Villegas, JM ;
Samitier, J ;
Cané, C ;
Losantos, P ;
Bausells, J .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2000, 48 (01) :76-83
[18]  
Mohan S.S., 2000, THESIS
[19]   CAD MODELS OF LUMPED ELEMENTS ON GAAS UP TO 18 GHZ [J].
PETTENPAUL, E ;
KAPUSTA, H ;
WEISGERBER, A ;
MAMPE, H ;
LUGINSLAND, J ;
WOLFF, I .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 1988, 36 (02) :294-304
[20]   Laser-Assisted Additive Manufacturing of mm-Wave Lumped Passive Elements [J].
Ramirez, Ramiro A. ;
Rojas-Nastrucci, Eduardo A. ;
Weller, Thomas M. .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2018, 66 (12) :5462-5471