Title :
Design and Analysis of Vertical Nanoparticles-Magnetic-Cored Inductors for RF ICs
Author :
Zao Ni ; Jing Zhan ; Qiang Fang ; Xin Wang ; Zitao Shi ; Yi Yang ; Tian-Ling Ren ; Wang, Aiping ; Yuhua Cheng ; Jianjun Gao ; Xinxin Li ; Chen Yang
Author_Institution :
State Key Lab. of Transducer Technol., Shanghai Inst. of Microsyst. & Inf. Technol., Shanghai, China
Abstract :
We report the design and analysis of the first vertical magnetic-cored inductors in CMOS backend for radio-frequency (RF) ICs, which includes theoretical and experimental studies of device architecture, equivalent circuit model with parameter extraction technique, process development, and device characterization. Vertical magnetic cores with multiple-layer stacked-spiral structures are designed to realize compact inductive devices in RF ICs. A CMOS-compatible post-CMOS backend process module (CMOS +) and optimized high-permeability nanoparticles are utilized to achieve a high inductance-to-coil-area ratio (L-density) in gigahertz range. The prototype six-layer inductors with NiZnCu ferrite nanoparticles-magnetic-core were fabricated in a commercial foundry 0.18-μm six-metal RF CMOS technology. A high L-density of over 700 nH/mm2 to multigigahertz was obtained, with an 80% chip size reduction from the reference planar magnetic inductors. An equivalent circuit model with parameter extraction technique is developed to analyze magnetic enhancement effects. This work demonstrates the potential of design and integration of compact high-performance vertical magnetic-cored inductive devices into CMOS backend for high-quality and low-cost RF systems-on-a-chip.
Keywords :
CMOS integrated circuits; equivalent circuits; inductors; magnetic cores; magnetic devices; nanoparticles; radiofrequency integrated circuits; system-on-chip; CMOS-compatible post-CMOS backend process module; RF IC; chip size reduction; commercial foundry six-metal RF CMOS technology; compact high-performance vertical magnetic-cored inductive devices; compact inductive devices; equivalent circuit model; ferrite nanoparticle-magnetic-core; high-permeability nanoparticles; high-quality RF system-on-a-chip; low-cost RF system-on-a-chip; magnetic enhancement effects; parameter extraction technique; radiofrequency integrated circuit; reference planar magnetic inductors; six-layer inductors; size 0.18 mum; vertical magnetic cores; vertical nanoparticle-magnetic-cored inductor design; Coils; Inductors; Magnetic cores; Magnetic domains; Magnetic resonance; Radio frequency; Spirals; CMOS; equivalent circuit; inductor; nanoparticles; radio frequency (RF); vertical magnetic core;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2013.2245418