Computer-aided generation of nonlinear reduced-order dynamic macromodels - I: Non-stress-stiffened case

被引:105
作者
Gabbay, LD [1 ]
Mehner, JE [1 ]
Senturia, SD [1 ]
机构
[1] MIT, Microsyst Technol Labs, Cambridge, MA 02139 USA
关键词
basis-function methods; computer-aided design; electrostatic actuation; energy methods; macromodels; modal analysis; reduced-order models;
D O I
10.1109/84.846707
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
Reduced-order dynamic macromodels are an effective way to capture device behavior for rapid circuit and system simulation. In this paper, we report the successful implementation of a methodology for automatically generating reduced-order nonlinear dynamic macromodels from three-dimensional (3-D) physical simulations for the conservative-energy-domain behavior of electrostatically actuated microelectromechanical systems (MEMS) devices. These models are created with a syntax that is directly usable in circuit- and system-level simulators for complete MEMS system design. This method has been applied to several examples of electrostatically actuated microstructures: a suspended clamped beam, with and without residual stress, using both symmetric and asymmetric positions of the actuation electrode, and an elastically supported plate with an eccentric electrode and unequal springs, producing tilting when actuated. When compared to 3-D simulations, this method proves to be accurate for non-stress-stiffened motions, displacements for which the gradient of the strain energy due to bending is much larger than the corresponding gradient of the strain energy due to stretching of the neutral surface. In typical MEMS structures, this corresponds to displacements less than the element thickness. At larger displacements, the method must be modified to account for stress stiffening, which is the subject of part two of this paper.
引用
收藏
页码:262 / 269
页数:8
相关论文
共 16 条
[1]  
ANANTHASURESH GK, 1996, ASME DYNAMIC SYSTEMS, V59, P401
[2]  
GABBAY L, 1998, THESIS MIT CAMBRIDGE
[3]  
GOLDSTEIN H, 1981, CC/ENG TECH APPL SCI, P16
[4]  
Haus H.A., 1989, ELECTROMAGNETIC FIEL
[5]  
Hung E.S., 1997, P 1997 INT C SOL STA, P1101
[6]   Generating efficient dynamical models for microelectromechanical systems from a few finite-element simulation runs [J].
Hung, ES ;
Senturia, SD .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 1999, 8 (03) :280-289
[7]  
Mehner JE, 2000, J MICROELECTROMECH S, V9, P270, DOI 10.1109/84.846708
[8]  
MEINOROVITCH L, 1967, ANAL METHODS VIBRATI
[9]   FASTCAP - A MULTIPOLE ACCELERATED 3-D CAPACITANCE EXTRACTION PROGRAM [J].
NABORS, K ;
WHITE, J .
IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 1991, 10 (11) :1447-1459
[10]  
PRESS WH, 1995, NUMERICAL RECIPES C, P681