PROJ
ItM?nyA ON 67
3kR- WgVF, CCW
w2{k0MW CORE 6
VPN@q<BV yWzvE:!) DSEARCH 3 QUIET
u"T5m SYSTEM
PNc200`v4_ ID 4P_ASPHERIC
^|\ *i OBB 0 35 0.5 !.285
fvit+ UNI MM
w-/bLg[L?$ !WAVL CDF ! use visual wavelengths at C, d, and F lines
2gt08\
g-^CuXic WA1 .6562800 .5875600 .5460700 .4861300 .4358400
_9n.ir5YX CORDER 3 1 5 2 4
SF_kap%JM WT1 9.00000 15.0000 16.0000 10.0000 7.00000
wCmwH=O END
8(3vNuyP Q|5wz]!5Y( GOALS ! define the goals here
!Z=`Wk5 ELEMENTS 5 ! we want a four-element lens with a cover glass
[*}[W6
3v BACK 0.6 1 ! ask for 0.4 mm back focus distance
FNc[2sI FNUM 2.4 10 ! ask for F/2.7, weight of 10
?5B}ZMW THSTART .3 ! global search use thicknesses 0.1 mm
9!9 Gpi RSTART 50 ! and starting radius of 50 mm
c"O\fX ASPH 2 ! allow four aspheric terms: CC, 4th, 6th, and 8th power
|{9"n<JW O)9T|,
U delay 9999 ! these runs are fast, so don’t ask to continue on timeout
@Wx_4LOhf ANNEAL 10 1 Q ! anneal each case, temp 10 degrees, cool 1, including quick
a S<JsB Quick
|AFF*]e S SNAP 5 ! redraw PAD screen every five passes
HwU \[f STOP FIRST ! put the stop in front
;7m>40W STOP Fix ! and keep it there
$wN'mY QUICK 20 20 ! run quick mode 20 passes, then real mode 20
W
8E<P y NGRID 6 ! 6x6 grid of rays in pupil
7FMHz.ZRE TOPD ! correct both transverse aberrations and OPDs, For Mobile
).ugMuk FOV 0 .2 .4 .6 .8 1 ! correct six field points
=_ rn8 FWT 5 4 3 2 1 1 ! with these weights
sS-5W-&P{T COVER .3 1.51872 64 ! the cover glass will be 0.3 mm thick with this GLM
PKjA@+ PLASTIC 4 1 3 5 7 ! the four elements will be plastic
zb;'}l;+ END ! end of goals section
cOUO_xp( <M$hj6.tn SPEC PANT ! special PANT section starts here
q!AS}rV RDR .001 ! these are tiny lenses, reduce derivative increments
{g @
*jo& TLIMIT 3 .1 ! limits on thicknesses and spaces
w:umr# SLIMIT 5 .1
" g_\W END ! end of PANT section
Zb9@U: \ 5T SPECIAL AANT
I)Y$?" Skip
XD|&{/O ! start of special AANT section; these go into the merit fn.
JGO>X|T
ACC 1.5 ! center thickness no more than 1.5 mm