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how to set even- and odd-mode excitation in hfss

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babyang

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transmission line even mode odd mode

Hi ,everyone

using hfss,how to set even- and odd-mode excitation for coupled microstrip lines?

looking forward to your replies!

babyang
 

site:www.edaboard.com even and odd

pay attention to this thread




It is a subject that comes up regularly on this site. Search on CPW for more details.
 

odd mode excitation

I saw your e-mail.

Have you looked over the threads in the forum?

There are also useful books by Simon and by Waddel describing various transmission line structures.

Your best bet is to look into those.
 

hfss calculate odd mode impedance

oh,azulykit
the main problem is I cannot use HFSS to get the even-mode and odd-mode impedance and S-parameters I wanted after trying many times,so I am undecided about my model's setup.

I need some more details for designing in HFSS ..

regards

Added after 6 minutes:

oh,azulykit
the main problem is I cannot use HFSS to get the even-mode and odd-mode impedance and S-parameters I wanted after trying many times,so I am undecided about my model's setup.

I need some more details for designing in HFSS ..

regards

Added after 10 minutes:

oh,azulykit
the main problem is I cannot use HFSS to get the even-mode and odd-mode impedance and S-parameters I wanted after trying many times,so I am undecided about my model's setup.

I need some more details for designing in HFSS ..

regards
 

even odd mode scattering parameters

@babyang,

attach your model, let me see if i can help...
 

odd mode hfss

Azulykit said:
I saw your e-mail.

Have you looked over the threads in the forum?

There are also useful books by Simon and by Waddel describing various transmission line structures.

Your best bet is to look into those.

Can u please write the name of the book or any other recommended tutorial.
 

(1) Choosing the driven terminal (not driven modal);
(2) draw two terminal lines when setting the waveports;
(3) after simulation, you can get the differential impedance Zdiff and common impedance Zcomm. Then the even mode impedance Zeven = 2*Zcomm, the odd mode impedance Zodd = 0.5*Zdiff.
 

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