Difference between revisions of "Geometry (44 MeV LINAC exit port)"
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==Kicker angle and displacements on the wall== | ==Kicker angle and displacements on the wall== | ||
− | <math>\Delta_1 = 286\ cm | + | <math>\Delta_1 = 286\ cm\ \tan(\Theta_C) = 3.34\ cm</math> <br> |
<math>x_1^2+x_1^2 = 3.34^2\ cm \ \ \Rightarrow\ \ x = 2.36\ cm</math><br> | <math>x_1^2+x_1^2 = 3.34^2\ cm \ \ \Rightarrow\ \ x = 2.36\ cm</math><br> | ||
<math>\Delta = 2.36\ cm \ \ \Rightarrow\ \ \tan^{-1}\left(\frac{2.36}{286}\right) = 0.47\ ^o</math><br> | <math>\Delta = 2.36\ cm \ \ \Rightarrow\ \ \tan^{-1}\left(\frac{2.36}{286}\right) = 0.47\ ^o</math><br> |
Revision as of 22:13, 20 June 2010
90 exit port geometry
Off-axis collimation geometry
Critical and kicker angle
Kicker angle and displacements on the wall
Vacuum pipe location ( )
collimator location
1) center position:
(wall 1)
(wall 2)
2) collimator diameter:
(wall 1)
(wall 2)
collimator critical angle
from triangle
:
minimal distance from the wall
from triangle FAB:
Vacuum pipe location ( )
collimator location
1) center position:
(wall 1)
(wall 2)
2) collimator diameter:
(wall 1)
(wall 2)
collimator critical angle
from triangle
:
minimal distance from the wall
from triangle FAB:
Funny pictures...
how it looks ( , pipe 3")
how it looks 1 ( , pipe 3")
how it looks 2 ( , pipe 3")
how it looks 4 ( , pipe (2 1/2)" and then pipe 4")
need to adjust to converter position
how it looks 5 ( , box 3"x4" and then pipe 4")
need to adjust to converter position