Experimental and theoretical study of parasitic leakage/resonance in a K/Ka-band MMIC package

Jong Gwan Yook, Linda P B Katehi, Rainee N. Simons, Kurt Shalkhauser

Research output: Contribution to journalConference article

Abstract

In this paper, electromagnetic leakage and spurious resonances in a K/Ka-band (18 - 40 GHz) MMIC hermetic package designed for a phase shifter chip are studied using the finite element method (FEM) and the numerical simulation results are compared with measured data. Both in measured and calculated data several spurious resonances are observed in the 18 to 24 GHz region and the origin of this phenomenon is identified by virtue of the modeling capability of the FEM.

Original languageEnglish
Pages (from-to)223-226
Number of pages4
JournalIEEE MTT-S International Microwave Symposium Digest
Volume1
Publication statusPublished - 1996 Jan 1

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Monolithic microwave integrated circuits
finite element method
leakage
Finite element method
Phase shifters
chips
electromagnetism
Computer simulation
simulation

All Science Journal Classification (ASJC) codes

  • Electrical and Electronic Engineering
  • Condensed Matter Physics

Cite this

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abstract = "In this paper, electromagnetic leakage and spurious resonances in a K/Ka-band (18 - 40 GHz) MMIC hermetic package designed for a phase shifter chip are studied using the finite element method (FEM) and the numerical simulation results are compared with measured data. Both in measured and calculated data several spurious resonances are observed in the 18 to 24 GHz region and the origin of this phenomenon is identified by virtue of the modeling capability of the FEM.",
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Experimental and theoretical study of parasitic leakage/resonance in a K/Ka-band MMIC package. / Yook, Jong Gwan; Katehi, Linda P B; Simons, Rainee N.; Shalkhauser, Kurt.

In: IEEE MTT-S International Microwave Symposium Digest, Vol. 1, 01.01.1996, p. 223-226.

Research output: Contribution to journalConference article

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AU - Simons, Rainee N.

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N2 - In this paper, electromagnetic leakage and spurious resonances in a K/Ka-band (18 - 40 GHz) MMIC hermetic package designed for a phase shifter chip are studied using the finite element method (FEM) and the numerical simulation results are compared with measured data. Both in measured and calculated data several spurious resonances are observed in the 18 to 24 GHz region and the origin of this phenomenon is identified by virtue of the modeling capability of the FEM.

AB - In this paper, electromagnetic leakage and spurious resonances in a K/Ka-band (18 - 40 GHz) MMIC hermetic package designed for a phase shifter chip are studied using the finite element method (FEM) and the numerical simulation results are compared with measured data. Both in measured and calculated data several spurious resonances are observed in the 18 to 24 GHz region and the origin of this phenomenon is identified by virtue of the modeling capability of the FEM.

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