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發(fā)那科310I系統(tǒng)的有沒有人用過(guò)啊,?

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1#
發(fā)表于 2014-1-14 13:51:48 | 只看該作者 回帖獎(jiǎng)勵(lì) |倒序?yàn)g覽 |閱讀模式
發(fā)那科310I系統(tǒng)的有沒有人用過(guò)啊?誰(shuí)有編程手冊(cè),?好多指令不太懂啊~~求大神
2#
發(fā)表于 2014-1-14 18:56:56 | 只看該作者
30i\31i吧

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有300i、310i,、320i都有,,310i好像是觸摸屏的了和30i,、31i基本操作一樣,與0I有所區(qū)別  詳情 回復(fù) 發(fā)表于 2014-1-14 19:32
3#
發(fā)表于 2014-1-14 19:32:47 | 只看該作者
gongfei2419 發(fā)表于 2014-1-14 18:56 " y) t& m# a4 z, A: j( b' F4 `
30i\31i吧
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有300i,、310i,、320i都有,310i好像是觸摸屏的了和30i,、31i基本操作一樣,,與0I有所區(qū)別
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4#
發(fā)表于 2014-1-15 11:59:44 | 只看該作者
GE FANUC 310i SERIES CONTROL
% U' v; n+ j, M& ?& y1 p6 a. `PREPARATORY FUNCTION
( _. y& S! ?' j; _The preparatory function codes are used to establish modes of operation. The following G codes are listed in their numeric sequence and also by group. In any group, one G code will cancel the other. The * denotes the default code when power is applied to the control." i: o1 q- ^/ C9 B7 _) M
; ?8 E. ~1 {8 ~4 J2 K
Up to five G codes may be programmed on one line. If a line contains conflicting G codes, such as G00 G01, the last one read will control, but not in all cases.5 M3 |% |5 n% K, H0 Z. u1 |! ~
CODE     GROUP  DESCRIPTION                               MODAL   STD./OPT
1 D+ d" [) n! P  q( t/ sCODE                                      GROUP DESCRIPTION MODAL STD./OPT
1 ^* q' G0 m3 Z3 i4 |2 `G00 01 Point to point positioning YES Standard
5 S% f. C' U$ [& Y; OG01*  01 Linear interpolation YES Standard0 U2 M/ P4 i( ^
G02  01 Circular interpolation-CW Arc YES Standard
# _2 \+ x% U! u2 [- S" FG03  01 Circular interpolation-CCW Arc YES Standard1 k" R9 ~0 J) Z+ z! ]" j
G04  00 Dwell NO Standard
. d2 P/ J$ ?9 l- X2 rG09 00 Deceleration NO Standard0 m, [! H; x0 w, y; R1 N
G10  00 Programmable data input mode SOME Optional3 ?4 e4 `* @) m" Y
G11 00 Programmable data input mode cancel YES Optional) a/ z* A- E) a& `; b
G10.6 00 Tool retract and recover NO Optional2 L9 M; k9 C1 K2 ]( D4 ~2 J6 N
G12.1 26 Polar coordinate interpolation  YES  Optional
5 X5 P- J/ G- r. T5 {7 J! ]0 tG13.1* 26 Polar coordinate interpolation cancel YES Optional
/ ]5 ~! a3 X$ Y  }, g/ Z1 BG18* 16 ZX plane selection YES Standard
% X. k& i4 k4 {- Z/ QG19 16 YZ plane selection YES Standard
+ K! Z: ]: I/ q. o( zG20 01 Turning cycle YES Standard
4 B% G5 J# W+ V/ T) h8 O8 |; `& `; DG21 01 Threading cycle YES Standard- `# U/ Q8 @) h( T& N- w  }$ _
G24 01 Facing cycle YES Standard
' K/ [5 a! I3 @7 d0 zG22 04 Stored stroke check ON YES Optional
6 i+ ~7 Q. g( ^1 dG23 04 Stored stroke check Off YES Optional* H' {( a3 |) M* U0 a5 Y" P
G27 00 Reference point return check NO Standard1 I. u6 R$ v9 e5 ~  }, Q* T
G28 00 Reference point return  NO Standard6 R5 c/ _6 {8 \" V: l1 a8 p9 ?: G
G29 00 Return from reference point  NO Standard! E! Z' L0 V. z6 r# Q% F
G30 00 2nd, 3rd & 4th reference point return NO Optional
4 B5 r, `! Q* x2 GG30.1 00 Floating reference point return NO Optional& d# Z0 G) c7 K  [5 c
G31 00 Skip function  NO Optional
6 M0 p2 ~+ E! I  L  [7 t2 rG33 01 Thread cutting, constant lead YES Standard  _- p* e1 h6 ?1 |& Q% o: b
G40* 07 Tool nose radius compensation cancel YES Standard6 ?& V1 B2 E1 r  `+ o2 {
G41 07 Tool nose radius compensation Left YES Standard
3 e7 q% t2 @4 N& r! y. H8 KG42 07 Tool nose radius compensation Right YES Standard$ u* I" Z2 ~, P& p2 A- H7 I
G43.7 23 Tool offset compensation (extended tool selection) YES Optional
2 W3 o! g" V3 e* }0 B3 hG52 00 Local coordinate system shift YES 2 axis only- H$ p( Z/ n& u) S+ i
G53 00 Machine coordinate system selection NO Standard5 G- p7 a7 q' C$ ~, a! w
G54 14 Work coordinate system 1 selection YES Standard; H; T4 O0 ]" [# U% Q
G55 14 Work coordinate system 2 selection YES Standard
4 @4 t  ?# N" e: D7 [2 |( RCODE                                      GROUP DESCRIPTION MODAL STD./OPT$ R+ h* I. w! k8 p) a
G56 14 Work coordinate system 3 selection YES Standard# N3 P# @  f: z; j
G57 14 Work coordinate system 4 selection YES Standard1 h- R  g& K5 |% k/ U
G58 14 Work coordinate system 5 selection YES Standard
, Q; A2 \/ P1 p/ n$ FG59 14 Work coordinate system 6 selection YES Standard9 G+ |4 p4 \" l( k4 _1 I! }6 X
G61 15 Exact stop mode YES Standard
* R: r4 x4 N( R$ G) KG62 15 Automatic corner override YES Standard8 _' g7 V& Q+ U- e+ P" c3 H. I
G64* 15 Cutting mode YES Standard
1 v; `" p$ l* b7 t4 P5 ~G65 00 Marco call NO Optional
# [+ Q0 W. [3 ^0 t" }1 N" I( A1 vG66 12 Macro mode call A YES Optional& E$ _! e! i# x8 x% f" d) q% B
G67* 12 Macro mode call cancel YES Optional) Y* i) E  p% n0 e4 a3 `
G68 13 Balance cutting YES Optional
6 x. i) A: S# s/ t. W& RG69 13 Cancel balance cutting YES Optional9 b' P) B' L3 o4 d/ o
G70 06 Inch programming YES Standard
3 f4 d0 Y# N% J* K- nG71 06 Metric programming  YES Standard
3 e' z" J" i6 O' \9 ]G72 00 Finishing cycle YES Optional) ^8 I, {: a- z1 g( `
G73 00 Stock removal-turning YES Optional
$ V3 z4 ^, m3 mG74 00 Stock removal-facing YES Optional; E; Z, M1 c2 {2 @" c' T
G75 00 Pattern repeat YES Optional( X0 d& Y6 z! n3 l1 k4 L
G76 00 Peck drilling in Z axis YES Optional! E& h5 E. o7 O( F
G77 00 Grooving-X axis YES Optional' ]1 m# d3 t) A" J6 a
G78 00 Threading cycle YES Optional
. b8 s! ^; {; B4 Z2 rG80* 09 Canned cycle cancel YES Optional
7 z7 l/ i% T. ~. k2 ^G83 09 Face drilling cycle YES Optional
0 N- Z! C  U4 i# Q3 k* K3 @G84 09 Face tapping cycle YES Optional- j1 ~" I! V' b
G85 09 Face boring cycle YES Optional4 X5 ?" @. q5 x$ O7 u5 k
G87 09 Side drilling cycle YES Optional
1 w8 b7 b3 k8 \* wG88 09 Side tapping cycle YES Optional
8 e$ N+ n" ?2 g* H3 h, Z5 f3 L' eG89 09 Side boring cycle YES Optional
3 p1 V, N# Q( [( Z1 z* r1 P* mG90* 03 Absolute dimension input YES Standard
+ w0 ]! G1 F0 ]/ Q1 `G91 03 Incremental dimension input YES Standard
! K3 D- Y% F$ U. @& L! k( D! EG92 00 Work change/ maximum table speed NO Standard) z; Q5 N+ Q0 t) O2 k8 O+ M
G94 05 Inches (MM) per minute feedrate YES Standard
6 x# b& j9 E! a4 v- a, OG95* 05 Inches (MM) per table revolution YES Standard( B- W+ b, b9 b) W2 o
G96 02 Constant surface speed YES Standard
- m# H: y* g5 v" t8 ~5 ?$ qG97* 02 Direct rpm YES Standard
  G% }; N( G* N; dG98* 10 Canned cycle initial level return YES Optional
& [$ b& ]9 \0 e  uG99 10 Canned cycle R point level return YES Optional

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