Typical Header Variables
* e/ L9 @6 N, h" [* I* b/ F1 D" j | [/tr] |
Variable $ K3 q3 Q" z- {8 u' @" l4 O1 I( ^
| Use 0 D' |1 v) {5 G) v9 N9 F6 w( Q8 j
|
||PART_NAME|| $ t4 f" \; m3 [7 x: o
| Name file name (ELT file)
2 V4 K m& K; }8 o7 L2 Q5 u! S |
||XML_DOC_PATH|| 5 \' e: T/ d8 `3 L8 ?2 p
| Path (ELT file) ; P; \( t' }* m1 f7 Q& ]
|
||XML_REP_PROG_NUMBER|| - J' r3 e* W1 b0 v( f, {
| program number - q7 f* }' b% Y
|
||XML_REP_PROG_COMMENT|| - s# A: A* S* ?! c6 R2 N
| program comment
1 Y7 Y Z5 [0 e7 ^ |
||DATE_SDD|| , o9 _1 S/ {, O3 L
| Date - Day
+ f1 F2 c. F& S4 H |
||DATE_SMM||
e$ d4 a6 m) w4 |+ d7 r# O- p1 A | Date- Month ) e6 F) }4 a5 J/ b" `. |: l- M+ y
|
||DATE_SYY|| o! ?; y% F s7 g$ @
| Date - Year $ v+ o! h7 h. Z% N
|
||PART_NAME|| . {" n- r5 o$ }4 f# g
| User Name
7 y! n c. ]! I |
+ K" z' h1 ], H8 q) r! D: M; H+ O
| ) C7 t# s4 B$ J' E3 i, g# x% L
|
Typical Body Variables 0 n* o- l: a9 | B( h- r
| [/tr] |
Variable
0 ?; `0 r. n( Z, L& z0 x | Use
, m% z2 M2 K) e" i5 Q* ] |
||TP_NAME|| * e' G; a! n3 q6 k- \+ T. B
| TP Name
; c) A5 b# E3 ~( x+ Z$ I |
||TP_COMMENT|| 2 M+ e: N1 t7 s; F/ D7 g& e( g
| TP Comment 6 R3 W) I6 A9 V9 _" t1 b
|
||PROC_NAME|| 4 z l0 n6 K6 m/ ?0 v5 b- ?. V
| Procedure Name (short) % P8 y; b8 @, y, C3 L' g
|
||PROC_LONGNAME|| / i7 U2 Z& Y1 ?5 { w' D: Z R) f
| Procedure Name (long) / \' D4 S) P2 j0 }
|
||PROC_UCSNAME|| / ?! _! V9 S, s8 x
| Procedure -BKS
7 D; p7 g4 a4 |9 _' C$ S |
||PROC_COMMENT|| # B8 Q% t0 g! ?
| Procedure Comment ; m9 I# K3 w4 i3 v
|
||XML_CLEAR_PLANE|| $ [$ c5 [/ q q5 b" l& ?$ |
| Clearance Plane " J4 `! i% r7 p, G- ]# q
|
||SPIN_SPEED|| + S0 X, R, c* S1 n2 c: l
| Spindle Speed
$ s/ a, O2 G5 s8 O7 o' \: R |
||MCH_FEED||
: [- F( D3 g$ d# C" T | Machine Feed
* I9 `; `; V% o7 [4 u* ?" A y |
||XML_SURF_OFF|| # b1 s7 X0 F0 h
| Surface Offset (general) ( A1 S# ^. f5 t0 Z! W
|
||XML_SURF_TOL||
9 G E8 ]; G- ?) }4 T9 K6 J) K | Surface Tolerance $ M; V% h6 U4 ]
|
||XML_H_STEP|| ( v4 M; ]+ f1 s- d
| Horizontal Step
% F% s% i" W5 j ] |
||XML_V_STEP||
7 @5 }: Z o+ X7 T- K# ^ | Vertical Step(general)
6 r; e, C! }" l7 }" @0 U: L: `+ T |
||XML_ELECTRODE|| & q1 D9 _& H6 e. D! ]
| Electrode Machining (Yes/No)
5 F0 l% G5 i, I& }4 O7 u+ s/ _ |
||XML_ELEC_SPARK_3D_GAP||
6 y$ g$ r3 b: Y. g* L | Spark Gap + 3D Orbit
- _( O, t% N2 D4 ?$ b$ o! t |
||XML_ELEC_PLAN_GAP|| : _( G. `6 S# A+ n' g6 c
| Orbit Planar Gap
, w3 [8 S' ~2 [; t |
||CYC_PECK||
5 _ T% Y- a7 C, s. {4 H, u" y% X | Drill Cycle Peck
4 v' w9 d/ L* p% i; | F |
||CYC_DWELL|| 9 a" Y6 t8 J' ]7 B. J
| Drill Cycle Dwell . \9 r. |2 {" q$ {* k( _' F
|
||CYCLE_1...12|| 2 C% v- W, c3 [# ?5 H4 |7 B
| Drill Cycle 5 I8 W' ~+ F& h F8 ~8 A
|
||TOOL_NAME||
' ?; a _9 w) y- g* R x | Tool Name " c7 ^9 K2 ~7 z
|
||TOOL_CMNT||
/ P, \6 U% ?8 q, A8 H h | Tool Comment - ?8 f6 A3 R* g; O
|
||E_TOL_TYPE||
: S, `, J N; b3 S( s4 x8 N [& b w | Tool Type (see below)
: N2 E7 b& B3 Y% }: G |
||DIAMETER_|| * w: e% z- V) H0 S3 G* D
| Tool Diameter
$ q# X$ }6 ~! d5 f3 m |
||TOOL_RAD|| . X& \% _, _. t) G1 h
| Tool Radius
& A$ l, K, q C8 h0 d. F |
||TOOL_NUM|| , k0 F g+ d% [; G" k0 ]
| Magazine Number ' i: v2 O) t6 A9 o$ s6 }
|
||TEETH_NUM|| + R/ o# |4 ?( C& @2 v4 ~
| Number of Teeth
, x/ Y1 f; B1 Q' H' ?$ I |
||CLEAR_LENG||
9 Y0 Z9 w- Q% r1 c5 C | Clear Length 8 r8 U' \$ R( {& g: ?8 o9 Z
|
||CUT_LENGTH|| ) c* v1 h" ^! C* i7 e% E8 _
| Cutting Length
}% U2 M+ j% b2 r/ n. a |
||XML_MIN_CLEAR_LEN|| - h' `, W: V. T) P( q( e1 g9 W% t
| Minimum Clear Length
$ N: t7 K3 U; X# J% B |
||TOOL_TOTAL_LENGTH||
! y' q0 _' L8 J | Total Tool Length
V$ Y9 b M1 b% c" q! V |
||CON_ANG||
2 R: K9 I- e% y3 \$ [# I | Tool Conic Angle
1 n8 K3 t/ `8 r% k/ G& H6 T |
||TOOL_ANGLE||
; L$ q* k' f/ ^9 V* r4 h | Tool Tip Angle
$ Z7 M# h6 k# A0 s |
||SHANK_CON|| 8 s1 H! k8 n% ?# I. G
| Spindle Conic height
0 m) d$ d+ P3 g- N" w5 [8 D) O2 U |
||SHANK_TOT||
/ G( T2 R. D* z& z | Shank Total height. 4 {& N) r6 `; y+ ?
|
||SHANK_BOT||
9 _- u& Y0 Q+ e8 F | Shank Bottom radius
# i3 I0 l8 k& j7 Q9 M0 K |
||SHANK_TOP|| ' n8 A% u4 Z9 N; L+ J
| Shank Top radius : i9 U2 D8 ^+ }. K a4 _5 D/ g, l0 l
|
||HOLD_CON01|| 5 D+ O# w. `* J j4 `8 N
| Holder Conic height (holders 1 to 10)
5 o; a) R; Q. w% W( G/ G |
||HOLD_TOT01|| 8 y$ \) D+ m( x# o! \" _" v# X
| Holder Total height (holders 1 to 10)
3 V. t, i H9 z1 O3 b: `. B" ~ |
||HOLD_TOP01||
+ K3 K; v/ z. o" \2 C4 Y | Holder Top radius (holders 1 to 10)
8 ~) n: U! H6 r, @% H! G: W |
||HOLD_BOT01|| . s/ p0 x5 D+ J* U; |
| Holder Bottom radius (holders 1 to 10) ' {0 q' S$ s7 G
|
||X_MAX|| 9 l$ K6 P& }# U* G
| Maximum X " @; x: b$ s4 k
|
||X_MIN|| ' M7 r8 n7 F0 C8 a. ], g
| Minimum X 3 K0 K. j: g' ? M9 D
|
||Y_MAX|| + }* | X9 T: r
| Maximum Y - }$ V! t# w, k4 q! m
|
||Y_MIN|| - d; ~. K% h( Z; \; _
| Minimum Y
) t; H9 l& u2 H9 y/ X' v |
||Z_MAX||
# F0 A+ M1 }) \ | Maximum Z
3 K& T; b% H; D; B |
||Z_MIN|| . L9 A; L+ e: ]# B1 @ J
| Minimum Z 6 Z. d# ]- q* l! b8 D0 A
|
||AIR_TIME||
1 K6 t7 |5 J$ [. N% R6 q L* ] | Rapid Motion Time
7 r/ w2 c# H" S- W6 q |
||FEED_TIME|| / T8 b1 r. y" ?- Y Q0 i; {
| Cutting Motion Time 8 i* R- F0 F- X
|
||TOTAL_TIME|| . x6 l, s3 m$ y/ ~
| Air Feed Time
U% [ _' d) a3 x: H& i/ N7 P. {$ r |