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本帖最后由 xbin 于 2014-9-2 12:59 编辑 2 K6 ]) _. e( }! \; x: r: f- n
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不能点击打开,但是按F1打开。其实也就是在线帮助。内容如下:
3 p" I4 s; \7 B5 B+ p3 Ynctape_full
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( E% j7 T6 J9 Y! MDialog Box | Procedures9 S" D0 v- ]2 [# O! x+ C
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Generates customized NC drill output files that reflect the parameters you set in the NC Parameters Dialog Box using the ncdrill param command.( X! e: C3 J7 S1 _" ]9 o
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If you choose Enhanced Excellon format on the NC Parameters dialog box, NC Drill generates a header in its output file that more fully uses the Excellon commands. The header starts with M48 and ends with % and lists tool specifications, the appropriate INCH/METRIC command appears, and LZ/TZ as required for padding the leading or trailing zeros in the data section. The Tnn tool-diameter specification codes expand to a TnnC.xxx format to specify the required router bit size.
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. O/ ]( ?3 H6 T9 y/ ~) p( MIn output files generated for same-size holes with identical plating but different tolerances, a different tool code is used.1 l' i: Q' |/ x: [; u
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NC Drill output only applies to (circular) drill holes; use the ncroute command for slot holes. You can also run this command in batch mode using the nctape command.
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For additional information, see the Preparing Manufacturing Data user guide in your documentation set.. |3 M5 m) g8 ^! A
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Menu Path. [# g. o+ o5 j+ t- i
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Manufacture - NC - NC Drill' P d6 r) x0 r; n! M6 n7 |5 N! j$ g
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NC Drill Dialog Box) C- `9 W; E4 Y/ d& W: ?# b
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Root File Name4 P, l: D4 j9 u5 z9 I; l5 f
Enter a base filename for output text files before any appended extension. If you do not specify a filename extension, .drl is the default, which you can change by setting the ext_drill environment variable in the User Preferences Editor, available by choosing Setup - User Preferences (enved command).The filename defaults to <design name>-<l1>-<l2>.drl, where <l1> and <l2> are the two drilled layers.9 _8 i9 [: v# v6 I7 W
When you choose to generate separate files for plated and non-plated holes, non-plated filenames are <design name>-np-<l1>-<l2>.drl.
( q, q' B% z2 q# f* {) AHoles defined on the Padstack Designer with Non-standard Drill types of Laser, Plasma, Punch, and Other output to separate files named <design name>-laser, <design name>-plasma, <design name>-punch, <design name>-other. For example, for non-plated holes that use non-standard drilling, the filename is <design name>-laser-np-1-2.drl.- n' ?$ F% ~/ Z m& b; Y# [
The naming conventions for backdrill files are drill-bd-top-<l2>.drl and drill-bd-bottom-<l2>.drl; for By Layer files, drill-bl-<l1>-<l2>.) D' g3 |2 |: ]1 ]+ C- ^$ @
Scale Factor
8 G' M; V+ h3 p1 M5 ~Indicates the value by which all drill locations in the output drill files are multiplied, to scale the X and Y drill locations.0 c. M' r. Y" e
Tool Sequence
7 t: d7 S8 T% P/ P, w2 OSpecifies whether the tool sequence starts with the smallest drill size and increases, or with the largest drill size and decreases. The default is Increasing., \2 O! |9 L7 L4 v( b
Auto Tool Select
5 |; g1 T$ n- j) s% J' bInserts Tnn tool-select codes into the data portion of the Excellon-format output file, instead of M00 stop codes for manual tool changing. Tnn codes automatically generate in sequence (for example, T01, T02, … Tnn).3 B. I7 B. F& b* z1 n' `
Tnn tool-diameter specification codes only append to the tool-select code in the header portion of the Excellon-format output file, expanding to a TnnC.xxx format to specify the required router bit size, if you enabled Enhanced Excellon Format in the NC Parameters dialog box. For example, T01C.045 specifies that Tool 1 has a 45-mil diameter.
- J1 y* o7 _# s" J2 f% J4 DYou can also opt to associate specific tool sizes with specific Tnn tool codes in an nc_tools.txt file, which is used if it exists; otherwise, NC Drill automatically determines the appropriate tools the design needs and assigns tool codes to them.
# {6 [& \% l4 d9 ^An nc_tools_auto.txt file is created for reference. A warning message appears when an nc_tools.txt file is not found.
% ~3 X+ d1 T" M7 _+ k/ BSeparate Files for Plated/Non-plated holes" @: g* m* o1 W
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Choose to generate separate files for plated and non-plated holes.! H6 d$ O2 C, D% S, z9 ]
Repeat Codes
7 E/ G# l' t6 n L, ISpecifies whether your drill supports repeat codes. Enabled by default.5 h$ ^) ?/ [- g
Optimize Drill Head Travel4 j) @$ V/ \* h: e
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Choose to optimize drill travel on the NC Drill output files.- Q& E- L$ \8 R3 r
Drilling) a4 ]; l3 A7 J4 J
Each execution of this command generates one of the following drill output files, depending on which you have chosen. Layer Pair and By Layer drill-output files are mutually exclusive. Generating one type removes the other if it exists in the design.
% s! h* d& B1 n& }2 kLayer Pair
) s& R* h8 |: L0 ?1 gChoose to generate drill output files that represent the holes to drill according to combinations of layer pairs.
$ S% m8 ^: t ^, FFor example, for a four-layer board using thru via technology, this option represents the via that spans layers one through four as existing on the layer pair "1-4."
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Choose to generate multiple drill output files that represent each hole to drill for each via as existing between one entry layer and one exit layer, typically used to meet microvia technology requirements.
% @/ w W" R0 L% T5 s5 eFor example, for a four-layer board, this option represents the via that spans layers one through four as existing on layer "1-2," layer "2-3," and layer "3-4" and displays it in three different drill output files. Note that no output appears for layer "1-4." An <n> layer board therefore always has one fewer drill output files than the total number of layers, or <n-1>, because a hole starting on one layer has to at least appear on the next layer as well, and a hole never appears on only one layer.
& t( o+ K# l( L) {4 x$ lDrill
6 `1 X% |8 _- {: fClick to generate output files.
- N& c4 C" K/ [NC Parameters3 n* t5 W; B# O' u# {$ j
Click to access the NC Parameters Dialog Box dialog box.! i5 v5 L4 V% r! x! ~8 u
Close9 S: l; ^* P! d" I7 R: ^9 p, b! y5 s( Q2 w
Click to save changes and exit the dialog box.
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Click to close the dialog box without generating an output file.! @6 D5 B- q+ \
View Log+ G& @9 R# Q+ s0 ]7 Q
Click to view details concerning the nctape.log file, including tool number information.
' I8 W) m4 h. k7 S& R6 [. VProcedures
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Preparing to Create Drill File Output# H- [) T1 U& q1 n8 S9 R8 ?) |
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+ L% A B. _. n* b- ~# NRun the ncdrill param command.
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1 S3 c- K" v! p- z4 WComplete the NC Parameters Dialog Box., i& R2 f* Y1 b8 |8 e' q( B
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Click Close." j, M( O5 V6 n) ~* d
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/ I+ ]3 l% o5 F- BIf necessary, create nc_tools.txt and nc_exclude.txt files.& x4 {! g# }+ ?$ a1 n3 }0 M( [
For additional information, see the Preparing Manufacturing Data user guide in your documentation set.; c, J; `+ E, F: [
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$ ] ~* {8 c* BContinue with the appropriate instructions, starting with step 2:7 J0 ?/ v4 I' k3 x( e3 }. ?0 P
' ~$ t$ P1 m6 z: q* mGenerating Drill File Output with the User Interface below
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4 a9 ~' g! m- F) c2 dGenerating Drill File Output in Batch Mode' T3 G4 k) }- m0 i1 `7 y. K
Generating Drill File Output with the User Interface
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Follow the instructions in Preparing to Create Drill File Output above." p' B% @5 x' t( N8 n
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. T6 V" F9 e# q3 b* BRun the nctape_full command.+ o: d1 b ^& s$ a: T3 P" l
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: j) c& N! P& ^In the NC Drill dialog box, enter the Scale Factor.
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Click Drill. The tool creates the output files using the name you specified in the Parameter File field of the NC Parameters Dialog Box.
8 b7 n' Q Q `* v' \# \The following message appears in the console window prompt:
/ u; W1 Q1 S9 |4 p1 Ynctape completed successfully - use Viewlog to review the log file.1 L" \/ r. n/ k0 e$ J9 f+ }" I( p
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5 R9 m: Y% Z4 Y/ d( Q& q7 N) |Click Close.
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Verify the results with the explot command.
" K7 n0 F( [1 w/ ~1 H; c$ m$ `1 {Using an output file from the nctape command (the .drl extension is optional), explot generates two files, outputfile.plt and outputfile.ctl. You can use the outputfile.plt file to drive a penplotter.
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9 J/ `! R* @3 ?/ a6 H" aGenerating an NCdrill file in Enhanced Excellon format+ j! @: j" I, E( Y( Q5 ?( D
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Choose Manufacture - NC - NC Drill.
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Click NC Parameters. The NC Parameters dialog box appears. m( h# P- j( I+ o; t
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Enable Enhanced Excellon format to generate a header in the NC Drill and NC Route output files that uses Excellon commands to a greater extent. The header starts with M48, lists the appropriate units (INCH or METRIC), and the Tnn tool-diameter specification codes expand to TnnC.xxx format to specify the required router bit size and end with %.. t; O6 u A4 P
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Click Close to save the settings.
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2 Y9 K9 J1 d. G: wEnable Auto Tool Select in the NC Drill dialog box to insert Tnn tool-select codes into the data portion of the Excellon-format output file, instead of M00 stop codes for manual tool changing. Tnn codes automatically generate in sequence (for example, T01, T02, ... Tnn).
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3 o( l% f! B# c6 rClick Drill.3 u* U) R6 p; P+ H0 |/ o+ C
You can also associate specific tool sizes with specific Tnn tool codes in an nc_tools.txt file, which is used if it exists; otherwise, NC Drill automatically determines the appropriate tools the design needs and assigns tool codes to them. An nc_tools_auto.txt file is created for reference. A warning message appears when an nc_tools.txt file is not found in the ncdrill.log. |
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