TY - GEN
T1 - Full-wave analysis of radiation effect of microstrip transmission lines
AU - Pan, George
AU - Tan, Jilin
PY - 1993
Y1 - 1993
N2 - In this paper, a full-wave analysis of microstrip transmission line discontinuities has been presented. The reflection, transmission coefficients and power loss due to radiation and surface waves are evaluated for open-ended transmission lines, gap and floating line dicontinuities. It was an intuitive common sense that radiation is not a major issue if the dimension of interest is much smaller than the wavelengths of the operating clock rates. On the contrary, we found that the radiated power from a floating line of about 3.7 mm can exceed 13% of the input power, if the floating line is under resonance at about 14.7 GHz.
AB - In this paper, a full-wave analysis of microstrip transmission line discontinuities has been presented. The reflection, transmission coefficients and power loss due to radiation and surface waves are evaluated for open-ended transmission lines, gap and floating line dicontinuities. It was an intuitive common sense that radiation is not a major issue if the dimension of interest is much smaller than the wavelengths of the operating clock rates. On the contrary, we found that the radiated power from a floating line of about 3.7 mm can exceed 13% of the input power, if the floating line is under resonance at about 14.7 GHz.
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M3 - Conference contribution
AN - SCOPUS:0027853295
SN - 0780312465
T3 - AP-S International Symposium (Digest) (IEEE Antennas and Propagation Society)
SP - 626
EP - 629
BT - AP-S International Symposium (Digest) (IEEE Antennas and Propagation Society)
A2 - Anon, null
PB - Publ by IEEE
T2 - Proceedings of the IEEE 1993 International Symposium Digest of Antennas and Propagation
Y2 - 28 June 1993 through 2 July 1993
ER -