Andrea Ferrario
COMSOL Employee
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Posted:
1 decade ago
2013年7月5日 GMT-4 10:34
Dear Frédéric,
The External I vs U features work (from the point of view of the circuit) as voltage sources, whose value depends on the applied current, so you cannot put them directly in parallel. The solution is typically to add a very small resistance in series.
Best regards,
--
Andrea Ferrario
Electromagnetics Group
COMSOL AB
Dear Frédéric,
The External I vs U features work (from the point of view of the circuit) as voltage sources, whose value depends on the applied current, so you cannot put them directly in parallel. The solution is typically to add a very small resistance in series.
Best regards,
--
Andrea Ferrario
Electromagnetics Group
COMSOL AB
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Posted:
1 decade ago
2013年7月5日 GMT-4 10:48
Thanks a lot! Now everything is working fine.
Best regards,
Frédéric Maes
Thanks a lot! Now everything is working fine.
Best regards,
Frédéric Maes
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Posted:
1 decade ago
2013年7月11日 GMT-4 09:25
Hello Andrea,
Thanks again for the previous reply but I have a few other questions.
After using your tip (adding a small load to the induced circuit) I wondered if COMSOL takes into account the resistance of the inducing coil and of the induced coil ? If this is the case then it wouldn't be necessary to add the small load to the secondary circuit.
Another thing I noticed is that when I try to measure the impedance of the induced coil after a simulation (a load is in series with the induced coil), COMSOL evaluates the impedance of the coil as being the negative of the load ( for example if the load is 10 ohm then the impedance of the induced coil is (-10ohm). Is there an explanation to this?
Finally, set aside the electrical circuit, is there another way to evaluate certain coil parameters (impedance,induced current, emf) in the induced coil (for this I'm working in the frequency domain) ?
Thank you in advance,
Frédéric Maes
Hello Andrea,
Thanks again for the previous reply but I have a few other questions.
After using your tip (adding a small load to the induced circuit) I wondered if COMSOL takes into account the resistance of the inducing coil and of the induced coil ? If this is the case then it wouldn't be necessary to add the small load to the secondary circuit.
Another thing I noticed is that when I try to measure the impedance of the induced coil after a simulation (a load is in series with the induced coil), COMSOL evaluates the impedance of the coil as being the negative of the load ( for example if the load is 10 ohm then the impedance of the induced coil is (-10ohm). Is there an explanation to this?
Finally, set aside the electrical circuit, is there another way to evaluate certain coil parameters (impedance,induced current, emf) in the induced coil (for this I'm working in the frequency domain) ?
Thank you in advance,
Frédéric Maes
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Posted:
1 decade ago
2013年7月15日 GMT-4 16:03
hey Frédéric and Andrea,
i have the same problem in building the transformer could you please tell me where did you add the small resistance.
V/R
Abdul
hey Frédéric and Andrea,
i have the same problem in building the transformer could you please tell me where did you add the small resistance.
V/R
Abdul
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Posted:
1 decade ago
2013年11月18日 GMT-5 08:24
Hello
I have the same problem even after insertig the mentioned resistors can you please attach your model, so that I can compare the procedures to my model
Thanks in advance
Hello
I have the same problem even after insertig the mentioned resistors can you please attach your model, so that I can compare the procedures to my model
Thanks in advance
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Posted:
8 years ago
2016年6月21日 GMT-4 01:52
Greetings!
I am building an O core transformer and when I compute the results i got an error i.e.lambda is not defined.Please help me out in solving the problem.Kindly any help will be appreciated.
Thanks
Pratibha
Greetings!
I am building an O core transformer and when I compute the results i got an error i.e.lambda is not defined.Please help me out in solving the problem.Kindly any help will be appreciated.
Thanks
Pratibha