标题: 晶片式奈米镍柱铁芯螺旋电感之研究
The Study of On-Chip Spiral Inductors with Nickel Nanorods Core
作者: 许名伽
Ming-Chieh Hsu
郑裕庭
Yu-Ting Cheng
电子研究所
关键字: 奈米镍柱;铁磁共振;阳极氧化铝;电感值;品质因数;Ni nanorod;ferromagnetic resonance;anodic alumina oxide;inductance;Q-factor
公开日期: 2007
摘要: 在此篇论文中,我们使用奈米镍柱应用于高频螺旋电感,利用空间中相对磁导率的提升来增加电感值,以达到无线通讯应用晶片面积微小化的目标。直径70nm,高度1μm 的奈米镍柱是利用沉积在矽基板上的阳极氧化铝模板以无电镀方法所制成,规则的奈米镍柱阵列被高电阻率的阳极氧化铝模板所分隔,有效的避免了电感在高频应用时所产生在磁性材料的涡电流损耗。在本实验设计中,奈米镍柱以两种方式来应用于螺旋电感,观察奈米镍柱铁芯受到电感不均匀的磁场磁化下,所得到的奈米镍柱铁芯电感高频特性。最后,已完成的三圈半奈米镍柱铁芯螺旋电感的高频特性被量测由0.1GHz到20GHz,电感值约有3 % 的增加在3GHz,且持续到达6.9GHz为止,奈米镍柱铁芯电感的品质因数为14在1.1GHz。
In this thesis, we fabricated RF spiral inductors via the incorporation of Ni nanorods, the inductance can be increased due to the relative permeability enhancement in the space. The smaller size of the inductor can reduce the wireless communication application chip area and cost down. The Ni nanorods with 70nm diameter and 1μm long were electroplated in anodic alumina oxide (AAO) template on silicon substrate. The regular Ni nanorod arrays are isolated in AAO template which can effectively avoid the eddy current loss in the layer of the magnetic materials. In this experiment, we designed two type spiral inductors with Ni nanorods core and made a study of their high frequency characteristics in non-uniform magnetic field that are induced the inductors. On-chip magnetic spiral inductors with Ni nanorod arrays core have been fabricated and characterized up to 20GHz. The 3.5 turns inductor with Ni nanorods core of inductance enhancement over the air core value is ~3% at 3GHz and until the frequency up to 6.9 GHz, the quality factor Q is 14 at 1.1GHz.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009511586
http://hdl.handle.net/11536/38115
显示于类别:Thesis