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        <title>Unofficial <br> FEMM <br> documentation <br> by Dr Stan Zurek</title>
        <link>https://www.femm.drsz.pl/</link>
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        <title>Start</title>
        <link>https://www.femm.drsz.pl/doku.php/start?rev=1745915971&amp;do=diff</link>
        <description>Start

This website is devoted to gathering extended documentation on the FEMM - Finite Element Magnetics Method. It is a finite-element modelling software created by Dr David Meeker and kindly released for free use to anyone, under the Aladdin Free Public License.

The Unofficial FEMM documentation website.

	*  [FEMM 4.2 - User's Manual, Oct 25, 2015]
		*  FEMM 4.2 - User's Manual, Oct 25, 2015 (extracted to</description>
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        <title>LUA scripting tips - [Rounding in LUA] </title>
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        <description>LUA scripting tips

This page contains tips for using Lua 4.0 with FEMM 4.2. Some of these are documented in FEMM help file (User's manual) but some are not.

Full LUA 4.0 documentation: &lt;http://www.lua.org/manual/4.0/&gt;

Comments

To insert a comment use two hyphens, at the beginning of a line or at the end of command:</description>
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        <title>Power loss in windings</title>
        <link>https://www.femm.drsz.pl/doku.php/power_loss_in_windings?rev=1718470801&amp;do=diff</link>
        <description>Power loss in windings

In FEMM the windings can be represented by explicit wires (each wire drawn separately, each representing single turn) or as a bulk (with number of turns N specified for the whole block).

 Windings can be represented by a number of turns</description>
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        <title>3-phase currents</title>
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        <description>3-phase currents

All currents in FEEM are peak, so for RMS the values have to be scaled accordingly.

In order to set up a 3-phase system of currents, with the same value of 1 A peak for each phase, and phase angles as indicated, the following strings should be entered in the appropriate current definition in FEMM magnetic model, with</description>
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        <title>Combined radiation and convection boundaries</title>
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        <description>Combined radiation and convection boundaries

In FEMM it is not possible to assign two types of boundaries simultaneously to the same surface. However, it is possible to do some tricks such that an equivalent problem can be define in which both of these types of boundaries can be combined to give a very similar effect. The whole method is described in detail in this paper:</description>
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        <title>Rainbow colours</title>
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        <description>Rainbow colours

Colours of the “color plot” are defined in the text file (use Notepad to edit):

C:\femm42\bin\femmview.cfg
  Original    Examples of other configurations    Color and Grey scale    (Grey scale can be set to colour too)        

&lt;Color00&gt; = 255	0	255
&lt;Color01&gt; = 255	37	195
&lt;Color02&gt; = 255	69	147
&lt;Color03&gt; = 255	98	108
&lt;Color04&gt; = 255	123	76
&lt;Color05&gt; = 255	148	51
&lt;Color06&gt; = 255	171	31
&lt;Color07&gt; = 255	194	16
&lt;Color08&gt; = 255	217	6
&lt;Color09&gt; = 255	242	1
&lt;Color10&gt; = 242	255	1
&lt;Colo…</description>
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        <title>Simple HEAT FLOW simulation in FEMM - step-by-step tutorial - [Step 7 - transient heat problem] </title>
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        <description>Simple HEAT FLOW simulation in FEMM - step-by-step tutorial

This tutorial shows a very simple problem for HEAT FLOW coupled with MAGNETIC simulation.

Step 1 - set up magnetic solver

Open FEMM and start new problem,  menu &gt; File &gt; New .

Select Magnetics problem</description>
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