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authordmcmahill <dmcmahill>2002-03-13 12:42:59 +0000
committerdmcmahill <dmcmahill>2002-03-13 12:42:59 +0000
commitdf0c6251ba52b8135a5f9d2e1f156f4a73d2427a (patch)
treee7288f1a2f1402eb27d5f86b50effe09ea1253fd /cad/atlc/PLIST
parent50731b76b7bad9468fbebd7865abe815622d021d (diff)
downloadpkgsrc-df0c6251ba52b8135a5f9d2e1f156f4a73d2427a.tar.gz
import of atlc-2.32
------ Atlc is a finite difference programme that is used to calculate the properties of a two-conductor electrical transmission line of arbitrary cross section. It is used whenever there are no analytical formula known, yet you still require an answer. It can calculate: The impedance Zo (in Ohms) The capacitance per unit length (pF/m) The inductance per unit length (nF/m) The velocity of propogation v (m/s) The velocity factor, v/c, which is dimensionless. A bitmap file (usually with the extension .bmp or .BMP) of the cross section of the transmission line is drawn in a graphics package such as The Gimp and then analyzed using Atlc.
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+@comment $NetBSD: PLIST,v 1.1.1.1 2002/03/13 12:42:59 dmcmahill Exp $
+bin/atlc
+bin/circ_in_circ
+bin/circ_in_rect
+bin/readbin
+bin/rect_cen_in_rect
+bin/rect_in_circ
+bin/rect_in_rect
+man/man1/atlc.1
+man/man1/circ_in_circ.1
+man/man1/circ_in_rect.1
+man/man1/readbin.1
+man/man1/rect_cen_in_rect.1
+man/man1/rect_in_rect.1
+share/examples/atlc/aliased.bmp
+share/examples/atlc/coax-500-100.bmp
+share/examples/atlc/coax-500-200.bmp
+share/examples/atlc/coax-500-25.bmp
+share/examples/atlc/coax-500-400.bmp
+share/examples/atlc/coax-500-50.bmp
+share/examples/atlc/coax2.bmp
+share/examples/atlc/coax2.E.bmp
+share/examples/atlc/coax2.E.bin
+share/examples/atlc/coax2.Ex.bmp
+share/examples/atlc/coax2.Ex.bin
+share/examples/atlc/coax2.Ey.bmp
+share/examples/atlc/coax2.Ey.bin
+share/examples/atlc/coax2.V.bmp
+share/examples/atlc/coax2.V.bin
+share/examples/atlc/ground-negative-short.bmp
+share/examples/atlc/not-aliased.bmp
+share/examples/atlc/not-aliased.E.bmp
+share/examples/atlc/not-aliased.Ex.bmp
+share/examples/atlc/not-aliased.Ey.bmp
+share/examples/atlc/not-aliased.V.bmp
+share/examples/atlc/off-centre.E.bmp
+share/examples/atlc/off-centre.Ex.bmp
+share/examples/atlc/off-centre.Ey.bmp
+share/examples/atlc/off-centre.V.bmp
+share/examples/atlc/off-centre-coax.bmp
+share/examples/atlc/positive-ground-short.bmp
+share/examples/atlc/positive-negative-short.bmp
+share/examples/atlc/twin-wire.bmp
+share/examples/atlc/twin-wire2.bmp
+share/examples/atlc/twin-wire2.E.bmp
+share/examples/atlc/twin-wire2.Ex.bmp
+share/examples/atlc/twin-wire2.Ey.bmp
+share/examples/atlc/twin-wire2.V.bmp
+share/examples/atlc/ushape.bmp
+share/examples/atlc/ushape.E.bmp
+share/examples/atlc/ushape.Ex.bmp
+share/examples/atlc/ushape.Ey.bmp
+share/examples/atlc/ushape.V.bmp
+share/examples/atlc/very-odd.bmp
+share/examples/atlc/very-odd.E.bmp
+share/examples/atlc/very-odd.Ex.bmp
+share/examples/atlc/very-odd.Ey.bmp
+share/examples/atlc/very-odd.V.bmp
+@dirrm share/examples/atlc