FANUC Series 0i-MODEL F. For Lathe System OPERATOR'S MANUAL (B-64604EN-1/01) - page 24

 

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FANUC Series 0i-MODEL F. For Lathe System OPERATOR'S MANUAL (B-64604EN-1/01) - page 24

 

 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 365 - 

 

 

#1  LRP

 Positioning (G00) 

0:  Positioning is performed with non-linear type positioning so that the tool moves 

along each axis independently at rapid traverse.   

1:  Positioning is performed with linear interpolation so that the tool moves in a straight 

line. 

When using 3-dimensional coordinate system conversion, set this parameter to 1. 
 

 

#4  RF0

  When cutting feedrate override is 0% during rapid traverse, 

0:  The machine tool does not stop moving. 
1:  The machine tool stops moving. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

1403 

 

RTV 

  

ROC 

    

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#4  ROC

  In the threading cycles G92 and G76, rapid traverse override for retraction after threading 

is finished is: 
0: Effective 
1:  Not effective (Override of 100%) 
 

 

#7  RTV

  Rapid traverse override while the tool is retracting in threading 

0:  Rapid traverse override is effective. 
1:  Rapid traverse override is not effective. 
 

1420 

 

Rapid traverse rate for each axis 

 

 

[Input type]  Parameter input 

 

[Data type]  Real axis 

 

[Unit of data]  mm/min, inch/min, degree/min (machine unit) 

[Min. unit of data] Depend on the increment system of the applied axis 
[Valid data range]  Refer to the standard parameter setting table (C) 

(When the increment system is IS-B, 0.0 to +999000.0) 
Set the rapid traverse rate when the rapid traverse override is 100% for each axis. 
 

1466 

 

Feedrate for retraction in threading cycle G92 or G76 

 

 

[Input type]  Parameter input 

 

[Data type]  Real path 

 

[Unit of data]  mm/min, inch/min (machine unit) 

[Min. unit of data] Depend on the increment system of the reference axis 
[Valid data range]  Refer to the standard parameter setting table (C) 

(When the increment system is IS-B, 0.0 to +999000.0) 
When threading cycle G92 or G76 is specified, retraction is performed after threading. 
Set a feedrate for this retraction. 
 

 

WARNING 

 

When the manual handle interruption is valid, set the same value 
as the parameter No.1430 to the parameter No.1466. 

 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 366 - 

NOTE 

 

When this parameter is set to 0 or bit 1 (CFR) of parameter No. 
1611 is set to 1, the rapid traverse rate set in parameter No. 1420 
is used. 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

1610 

 

      

CTBx 

CTLx 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit axis 

 

 

#0  CTLx

  Acceleration/deceleration in cutting feed or dry run during cutting feed 

0:  Exponential acceleration/deceleration is applied. 
1:  Linear acceleration/deceleration after interpolation is applied. 
 

 

#1  CTBx

  Acceleration/deceleration in cutting feed or dry run during cutting feed 

0:  Exponential acceleration/deceleration or linear acceleration/ deceleration is applied.   

(depending on the setting in bit 0 (CTLx) of parameter No. 1610) 

1:  Bell-shaped acceleration/deceleration is applied. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

1611 

 

       

CFR 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  CFR

  For retraction after threading in the threading cycles G92 and G76: 

0:  The type of acceleration/deceleration after interpolation for threading is used 

together with the threading time constant (parameter No. 1626) and FL rate 
(parameter No. 1627). 

1:  The type of acceleration/deceleration after interpolation for rapid traverse is used 

together with the rapid traverse time constant. 

 

NOTE 

 

If this parameter is set to 1, a check is made before a retraction to 
see that the specified feedrate has become 0 (the delay in 
acceleration/deceleration has become 0). For retraction, the rapid 
traverse rate (parameter No. 1420) is used, regardless of the 
setting of parameter No. 1466. When this parameter is set to 0, 
parameter No. 1466 is used as the feedrate for retraction. As 
acceleration/deceleration used for retraction, only 
acceleration/deceleration after interpolation is used. Rapid traverse 
acceleration/deceleration before interpolation and optimum torque 
acceleration/deceleration are disabled. 

 

1626 

 

Acceleration/deceleration time constant in threading cycles for each axis 

 

 

[Input type]  Parameter input 

 

[Data type]  Word axis 

 

[Unit of data]  msec 

[Valid data range]  0 to 4000 

Set a time constant for acceleration/deceleration after interpolation in the threading cycles 
G92 and G76 for each axis. 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 367 - 

 

1627 

 

FL rate for acceleration/deceleration in threading cycles for each axis 

 

 

[Input type]  Parameter input 

 

[Data type]  Real axis 

 

[Unit of data]  mm/min, inch/min, degree/min (machine unit) 

[Min. unit of data] Depend on the increment system of the applied axis 
[Valid data range]  Refer to the standard parameter setting table (C) 

(When the increment system is IS-B, 0.0 to +999000.0) 
Set an FL rate for acceleration/deceleration after interpolation in the threading cycles G92 
and G76 for each axis. Set 0 at all times except in a special case.   

 

3032 

 

Allowable number of digits for the T code 

 

 

[Input type]  Parameter input 

 

[Data type]  Byte path 

[Valid data range]  1 to 8 

Set the allowable numbers of digits for the T code. 
When 0 is set, the allowable number of digits is assumed to be 8. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3115 

 

 

 APLx  

 

 

 

 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit axis 

 

 

#5  APLx

  When the active offset value modification mode based on manual feed is selected, the 

relative position display is automatically: 
0: Not 

preset. 

1: Preset. 
Use this parameter when returning a modified offset value to the original value before 
modification in the active offset value modification mode based on manual feed. The 
offset value can be returned to the original value by making a movement on the axis by 
manual feed so that the relative position display (counter) indicates the position 0. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3290 

 

   GO2      GOF 

WOF 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  WOF

  Setting the tool offset value (tool wear offset) by MDI key input is: 

0: Not 

disabled. 

1:  Disabled. (With parameters Nos. 3294 and 3295, set the offset number range in 

which updating the setting is to be disabled.) 

 

NOTE 

 

The tool offset set in the parameter WOF is followed even if 
geometric compensation and wear compensation are not specified. 

 

 

#1  GOF

  Setting the tool geometry offset value by MDI key input is: 

0: Not 

disabled. 

1:  Disabled. (With parameters Nos. 3294 and 3295, set the offset number range in 

which updating the setting is to be disabled.) 

 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 368 - 

 

#5  GO2

  Setting the second geometric tool offset value by MDI key input is: 

0: Disabled. 
1: Not 

disabled. 

 

3294 

 

Start number of tool offset values whose input by MDI is disabled 

 

3295 

 

Number of tool offset values (from the start number) whose input by MDI is disabled 

 

 

[Input type]  Parameter input 

 

[Data type]  Word path 

[Valid data range]  0 to 999 

When the modification of tool offset values by MDI key input is to be disabled using bits 
0 (WOF) and 1 (GOF) of parameter No. 3290, parameters Nos. 3294 and 3295 are used to 
set the range where such modification is disabled. In parameter No. 3294, set the offset 
number of the start of tool offset values whose modification is disabled. In parameter No. 
3295, set the number of such values. In the following cases, however, none of the tool 
offset values may be modified: 

When 0 or a negative value is set in parameter No. 3294 

When 0 or a negative value is set in parameter No. 3295 

When a value greater than the maximum tool offset number is set in parameter No. 
3294 

In the following case, a modification to the values ranging from the value set in parameter 
No. 3294 to the maximum tool offset number is disabled: 

When the value of parameter No. 3294 added to the value of parameter No. 3295 
exceeds the maximum tool offset number 

When the offset value of a prohibited number is input through the MDI unit, the warning 
"WRITE PROTECT" is issued. 

 

[Example] When the following parameter settings are made, modifications to both of the tool 

geometry offset values and tool wear offset values corresponding to offset numbers 51 to 
60 are disabled: 

Bit 1 (GOF) of parameter No. 3290 = 1 (to disable tool geometry offset value 
modification) 

Bit 0 (WOF) of parameter No. 3290 = 1 (to disable tool wear offset value 
modification) 

Parameter No. 3294 = 51 

Parameter No. 3295 = 10 

 

If the setting of bit 0 (WOF) of parameter No. 3290 is set to 0 without modifying the 
other parameter settings above, tool geometry offset value modification only is 
disabled, and tool wear offset value modification is enabled.   

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3401 

 

GSC 

GSB 

     

DPI 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  DPI

  When a decimal point is omitted in an address that can include a decimal point 

0:  The least input increment is assumed. (Normal decimal point input) 
1:  The unit of mm, inches, degree, or second is assumed. (Pocket calculator type 

decimal point input) 

 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 369 - 

 

#6  GSB

  The G code system is set. 

 

#7  GSC

   

GSC GSB 

code 

G code system A 

G code system B 

G code system C 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3402 

 

G23 

CLR    G91    G01 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  G01

  G01 Mode entered when the power is turned on or when the control is cleared 

0:  G00 mode (positioning) 
1:  G01 mode (linear interpolation) 
 

 

#3  G91

  When the power is turned on or when the control is cleared   

0:  G90 mode (absolute programming) 
1:  G91 mode (incremental programming) 
 

 

#6  CLR

 Reset button on the MDI unit, external reset signal, reset and rewind signal, and 

emergency stop signal 
0:  Cause reset state. 
1:  Cause clear state. 
For the reset and clear states, refer to Appendix, "SETTINGS AT POWER-ON, IN THE 
CLEAR STATE, OR IN THE RESET STATE" in the OPERATOR’S MANUAL 
(Common to Lathe System/Machining Center System). 
 

 

#7  G23

  When the power is turned on 

0:  G22 mode (stored stroke check on) 
1:  G23 mode (stored stroke check off) 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3405 

  

  DDP CCR  G36 

 

 

 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#3  G36

  As a G code to be used with the automatic tool offset function is: 

0:  G36/G37 is used. 
1:  G37.1/G37.2/G37.3 is used. 
 

NOTE 

 

If it is necessary to perform circular threading (counterclockwise), 
set this parameter to 1. 

 

 

#4  CCR

  Addresses used for chamfering 

0:  Address is “I”, “J”, or “K”. 

In direct drawing dimension programming, addresses “,C”, “,R”, and “,A” (with 
comma) are used in stead of “C”, “R”, and “A”. 

1:  Address is “C”. 

Addresses used for direct drawing dimension programming are “C”, “R”, and “A” 
without comma. 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 370 - 

 

NOTE 

 

If this bit (CCR) is set to 0, the function for changing the 
compensation direction by specifying I, J, or K in a G01 block in the 
cutter compensation/ tool nose radius compensation mode cannot 
be used. 

 

If this bit (CCR) is set to 1 when address C is used as an axis 
name, the chamfer function cannot be used. 

 

 

#5  DDP

  Angle commands by direct drawing dimension programming 

0: Normal 

specification 

1:  A supplementary angle is given. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3453 

 

       

CRD 

 

 

[Input type]  Setting input 

 

[Data type]  Bit path 

 

 

#0  CRD

  If the functions of chamfering or corner R and direct drawing dimension programming 

are both enabled, 
0:  Chamfering or corner R is enabled. 
1:  Direct drawing dimension programming is enabled. 
Specify which function is used when both the chamfering/corner R function and the 
drawing dimension programming function are enabled. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

3458 

 

CRC 

       

 

 

[Input type]  Setting input 

 

[Data type]  Bit path 

 

 

#7  CRC

  In Direct drawing dimension programming function, when a minus value is commanded 

as a chamfering value / corner R value: 
0:  Alarm PS0055, “MISSING MOVE VALUE IN CHF/CNR” is issued. 
1:  Alarm is not issued. A minus value is converted to a plus value. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5001 

 

 

EVO 

      

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#6  EVO

  If a tool compensation value modification is made for tool length compensation A or tool 

length compensation B in the offset mode (G43 or G44): 
0:  The new value becomes valid in a block where G43, G44, or an H code is specified 

next. 

1:  The new value becomes valid in a block where buffering is performed next. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5002  WNP  LWM  LGC  LGT  ETC  LWT  LGN 

 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 371 - 

 

 

#1  LGN

  Geometry offset number of tool offset   

0:  Is the same as wear offset number 
1:  Specifies the geometry offset number by the tool selection number 
 

NOTE 

 

This parameter is valid when the tool geometry/wear compensation 
is enabled (bit 6 (NGW) of parameter No.8136 is 0). 

 

 

#2  LWT

  Tool wear compensation is performed by: 

0:  Moving the tool. 
1:  Shifting the coordinate system. 
 

NOTE 

 

This parameter is valid when the tool geometry/wear compensation 
is enabled (bit 6 (NGW) of parameter No.8136 is 0). 

 

 

#3  ETC

  When a T-code command is two digits or shorter, the T code is: 

0: Not 

extended. 

1: Extended. 
When this parameter is 1, two-digit or shorter T-code commands are extended. 
(Three-digit or longer T-code commands are not extended.) The value after extension is 
determined by the setting of the number of digits in the offset number in T-code 
commands (parameter No. 5028). 
 

Parameter No. 

5028

 

Number of digits after 

extension 

Sample extension 

Extended to two digits 

Before extension: T1 

 After extension: T11 

Extended to four digits 

Before extension: T1 

 After extension: T0101 

3 or greater 

Not extended 

 
[Example] 

 

Parameter No. 5028 : 2 

 

Parameter No. 3032 : 4 (Allowable number of digits in T code)

 

Before extension

After extension 

T1 

T0101 (1-digit command is extended to 4 digits.) 

T12 

T1212 (2-digit command is extended to 4 digits.) 

T112 

T112 (Not extended) 

T1122 

T1122 (Not extended) 

 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 372 - 

NOTE 

1  The setting of the allowable number of digits in T code (parameter 

No. 3032) indicates the number of digits in a specified command 
(before being extended). If the number of digits in the command 
exceeds the allowable number of digits in T code, the alarm 
PS0003, "TOO MANY DIGIT" is issued. 

2  This parameter is dedicated to the lathe system. Tool change is 

available with the turret type setting (bit 3 (TCT) of parameter No. 
5040 = 0). 

3  If the number of digits in the offset number in a T-code command 

(parameter No. 5028) is set to 0, the value after extension is 
determined by the number of digits in the number of tool 
compensation values (parameter No. 5024). 

4  Common variable #149 for calling a T-code macro is set to the 

pre-extension value. 

 

 

#4  LGT

  Tool geometry compensation 

0:  Compensated by the shift of the coordinate system 
1:  Compensated by the tool movement 
 

NOTE 

 

This parameter is valid when the tool geometry/wear compensation 
is enabled (bit 6 (NGW) of parameter No.8136 is 0). 

 

 

#5  LGC

 When tool geometry compensation is based on coordinate shifting, the tool geometry 

offset is: 
0:  Not canceled by a command with offset number 0. 
1:  Canceled by a command with offset number 0. 
 

NOTE 

 

This parameter is valid when the tool geometry/wear compensation 
is enabled (bit 6 (NGW) of parameter No.8136 is 0). 

 

 

#6  LWM

  Tool offset operation based on tool movement is performed: 

0:  In a block where a T code is specified. 
1:  Together with a command for movement along an axis. 
 

 

#7  WNP

 Imaginary tool tip number used for tool nose radius compensation, when the tool 

geometry/wear compensation function is equipped, is the number specified by: 
0:  Geometry offset number   
1:  Wear offset number 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5003 

 

TGC 

     

SUV 

SUP 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 373 - 

 

#0  SUP

 

 

 

#1  SUV

  These bits are used to specify the type of startup/cancellation of tool radius - tool nose 

radius compensation. 

SUV SUP Type 

Operation 

0 0 

Type 

A compensation vector perpendicular to the block next to the startup block or 
the block preceding the cancellation block is output. 

 

 

0 1 

Type 

A compensation vector perpendicular to the startup block or cancellation block 
and an intersection vector are output. 

 

 

1 0 

Type 

When the startup block or cancellation block specifies no movement operation, 
the tool is shifted by the cutter compensation amount in a direction 
perpendicular to the block next to the startup or the block before cancellation 
block.  
 

 

When the block specifies movement operation, the type is set according to the 
SUP setting; if SUP is 0, type A is set, and if SUP is 1, type B is set. 

 

NOTE 

 

When SUV,SUP = 0,1 (type B), an operation equivalent to that of 
FS16

i

-T is performed. 

 

 

#7  TGC

  A tool geometry offset based on a coordinate shift is: 

0:  Not canceled by reset. 
1:  Canceled by reset. 
 

NOTE 

 

This parameter is valid when the tool geometry/wear compensation 
is enabled (bit 6 (NGW) of parameter No.8136 is 0). 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5004 

 

    

TS1 

   

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

Tool nose radius center path / 
Tool center path 

 
Programmed path 

N1

N2 

G41

N2 

N3 

Intersection point 

Shift 

G41

 

Tool nose radius center path / 
Tool center path 

N1

N2 

Intersection point

 

G41

Programmed path

 

Programmed path

 

Tool nose radius center path / 
Tool center path

 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 374 - 

 

#3  TS1

 For touch sensor contact detection with the function for direct input of offset value 

measured B: 
0:  Four-contact input is used. 
1:  One-contact input is used. 
 

NOTE 

 

For the machining center system, set TS1 to 1. 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5005 

 

   QNI    PRC    

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#2  PRC

  For direct input of a tool offset value or workpiece coordinate system shift amount:   

0:  The position record signal PRC <Gn040.6> is not used. 
1:  The position record signal PRC <Gn040.6> is used. 
 

 

#5  QNI

  With the tool length measurement function or the function for direct input of offset value 

measured B, a tool compensation number is selected by: 
0:  Operation through the MDI unit by the operator (selection based on cursor 

operation). 

1:  Signal input from the PMC. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5006 

 

    

LVC 

   

 

 

[Input type]  Parameter input 

 [Data 

type] 

Bit 
 

 

#3  LVC

 A tool offset (geometry/wear) based on a tool movement and wear offset based on a 

coordinate shift are: 
0:  Not canceled by reset. 
1:  Canceled by reset. 
 

 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5008 

 

    

CNV 

 

CNC 

 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#1  CNC

 

 

 

#3  CNV

  These bits are used to select an interference check method in the tool radius - tool nose 

radius compensation mode. 

CNV CNC 

Operation 

Interference check is enabled. The direction and the angle of an arc are checked.

Interference check is enabled. Only the angle of an arc is checked. 

Interference check is disabled. 

For the operation taken when the interference check shows the occurrence of an reference 
(overcutting) , see the description of bit 5 (CAV) of parameter No. 19607. 
 

NOTE 

 

Checking of only the direction cannot be set. 

 

 B-64604EN-1/01

 APPENDIX 

A.PARAMETERS

 

- 375 - 

5010 

 

Limit for ignoring the small movement resulting from tool radius - tool nose radius compensation 

 

 

[Input type]  Setting input 

 

[Data type]  Real path 

 

[Unit of data]  mm, inch (input unit) 

[Min. unit of data] Depend on the increment system of the reference axis 
[Valid data range]  9 digit of minimum unit of data (refer to standard parameter setting table (A))   

(When the increment system is IS-B, -999999.999 to +999999.999) 
When the tool moves around a corner in cutter compensation or tool nose radius 
compensation mode, the limit for ignoring the small travel amount resulting from 
compensation is set. This limit eliminates the interruption of buffering caused by the 
small travel amount generated at the corner and any change in feedrate due to the 
interruption. 

Even if 

Δ

V

x

 

 

Δ

V

limit

 and   

Δ

V

Y

 

 

Δ

V

limit

, vector to 

single-block stop point 
remains. 

Tool center path 

Programmed path 

If 

Δ

V

x

 

 

Δ

V

limit

 and 

Δ

V

Y

 

Δ

V

limit

this vector is ignored. 

S

 

Δ

V

Y

Δ

V

x

r

r

N1 

N2

Δ

V

limit

 is determined depending on the setting in parameter No. 5010. 

 

 

5020 

 

Tool offset number used with the function for direct input of offset value measured B 

 

 

[Input type]  Parameter input 

 

[Data type]  Word path 

[Valid data range]  0 to number of tool compensation values 

Set a tool offset number used with the function for direct input of offset value measured B 
(when a workpiece coordinate system shift amount is set). (Set the tool offset number 
corresponding to a tool under measurement beforehand.) This parameter is valid when 
automatic tool offset number selection is not performed (when bit 5 (QNI) of parameter 
No. 5005 is set to 0). 
 

5024 

 

Number of tool compensation values 

 

NOTE 

 

When this parameter is set, the power must be turned off before 
operation is continued. 

 

 

[Input type]  Parameter input 

 

[Data type]  Word path 

[Valid data range]  0 to 999 

Set the maximum allowable number of tool compensation values used for each path. 

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 APPENDIX 

 B-64604EN-1/01

 

- 376 - 

Ensure that the total number of values set in parameter No. 5024 for the individual paths 
is within the number of compensation values usable in the entire system. The number of 
compensation values usable in the entire system depends on the option configuration. 
If the total number of values set in parameter No. 5024 for the individual paths exceeds 
the number of compensation values usable in the entire system, or 0 is set in parameter 
No. 5024 for all paths, the number of compensation values usable for each path is a value 
obtained by dividing the number of compensation values usable in the entire system by 
the number of paths. 
Tool compensation values as many as the number of compensation values used for each 
path are displayed on the screen. If tool compensation numbers more than the number of 
compensation values usable for each path are specified, an alarm is issued. 
For example, 200 tool compensation sets are used, 120 sets may be allocated to path 1, 80 
sets to path 2. All of 200 sets need not be used. 
 

5028 

 

Number of digits of an offset number used with a T code command 

 

 

[Input type]  Parameter input 

 

[Data type]  Byte path 

[Valid data range]  0 to 4 

Specify the number of digits of a T code portion that is used for a tool offset number 
(wear offset number when the tool geometry/wear compensation function is used). 
When 0 is set, the number of digits is determined by the number of tool compensation 
values. 
When the number of tool compensation values is 1 to 9: Lower 1 digit 
When the number of tool compensation values is 10 to 99: Lower 2 digits 
When the number of tool compensation values is 100 to 999: Lower 3 digits 

 

[Example] When an offset number is specified using the lower 2 digits of a T code, set 2 in 

parameter No. 5028. 
Txxxxxx yy 
xxxxxx : Tool selection 
yy : Tool offset number 
 
In tool management function, set 4 in this parameter to set 4-digit number in parameter 
No.13265. 
 

NOTE 

 

A value longer than the setting of parameter No. 3032 (allowable 
number of digits of a T code) cannot be set. 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5040 

 

NO4 

  

TLG 

TCT 

   

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#3  TCT

  The tool change method is based on:   

0:  Turret rotation. (Tool change operation is performed with a T command only.) 

With a T command, an auxiliary function and tool offset operation are performed. 

1:  Automatic tool changer (ATC). 

(Tool change operation is performed with an M command (such as M06)). 
With a T command, an auxiliary function only is performed. 

This parameter is valid with a lathe system only. 
 

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 APPENDIX 

A.PARAMETERS

 

- 377 - 

 WARNING 

 

Before changing the setting of this parameter, cancel the offset. If 
the setting is changed while the offset is applied, the subsequent 
offset operation may not be performed correctly or an alarm 
PS0368, “OFFSET REMAIN AT OFFSET COMMAND” occurs. 

 

 

#4  TLG

  When tool change operation is performed with the automatic tool changer (when bit 3 

(TCT) of parameter No. 5040 is set to 1), tool offset operation is specified by: 
0: G43.7. 

At this time, G43 and G44 function as G codes for tool length compensation. 

1: G43. 

At this time, G43.7 and G44.7 function as G codes for tool length compensation. 

 

 

#7  NO4

  4th axis offset function is: 

0: Used. 
1: Not 

used. 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5042 

 

    

OFE 

OFD 

OFC 

OFA 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

NOTE 

 

When this parameter is set, the power must be turned off before 
operation is continued. 

 

 

#0  OFA

 

 

 

#1  OFC

 

 

 

#2  OFD

 

 

 

#3  OFE

  These bits are used to specify the increment system and valid data range of a tool offset 

value. 

For metric input 

OFE OFD OFC

 

OFA Unit

 

Valid data range

 

0 0 0 1 

0.01mm 

±

9999.99mm 

0 0 0 0 

0.001mm 

±

9999.999mm 

0 0 1 0 

0.0001mm 

±

9999.9999mm 

0 1 0 0 

0.00001mm 

±

9999.99999mm 

1 0 0

 

0 0.000001mm

 

±

999.999999mm

 

 

For inch input 

OFE OFD OFC

 

OFA Unit

 

Valid data range

 

0 0 0 1 

0.001inch 

±

999.999inch 

0 0 0 0 

0.0001inch 

±

999.9999inch 

0 0 1 0 

0.00001inch 

±

999.99999inch 

0 1 0 0 

0.000001inch 

±

999.999999inch 

1 0 0

 

0 0.0000001inch

 

±

99.9999999inch

 

 

5044 

 

Axis number for which 4th-axis offset is used 

 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 378 - 

NOTE 

 

When this parameter is set, the power must be turned off before 
operation is continued. 

 

 

[Input type]  Parameter input 

 

[Data type]  Byte path 

[Valid data range]  0, 1 to number of controlled axes 

Set the number of an axis for which the 4th-axis offset is used. 
When a value ranging from 1 to the number of controlled axes is set in this parameter, the 
4th-axis offset is applied to the set axis number. If 0 or a value beyond the valid data 
range is set, the 4th-axis offset is not used. For the basic two axes X and Z, the standard 
tool offsets are used, so the 4th-axis offset cannot be used. When the axis set for the 
Y-axis offset function is set in this parameter, the Y-axis offset is used for the axis, and 
the 4th-axis offset is not used. 
 

5045 

 

Axis number for which 5th-axis offset is used 

 

NOTE 

 

When this parameter is set, the power must be turned off before 
operation is continued. 

 

 

[Input type]  Parameter input 

 

[Data type]  Byte path 

[Valid data range]  0, 1 to number of controlled axes 

Set the number of an axis for which the 5th-axis offset is used. 
When a value ranging from 1 to the number of controlled axes is set in this parameter, the 
5th-axis offset is applied to the set axis number. If 0 or a value beyond the valid data 
range is set, the 5th-axis offset is not used. For the basic two axes X and Z, the standard 
tool offsets are used, so the 5th-axis offset cannot be used. When the axis set for the 
Y-axis offset function is set in this parameter, the Y-axis offset is used for the axis, and 
the 5th-axis offset is not used. 
When settings are made so that both the 5th-axis offset and 4th-axis offset apply to the 
same axis, only the 4th-axis offset is used, and the 5th-axis offset is not used. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5101 

 

     

RTR 

 

FXY 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  FXY

  The drilling axis in the drilling canned cycle is: 

0:  In case of the Drilling canned cycle: 

 

Z-axis at all times. 

1:  Axis selected by the program 
 

NOTE 

 

This parameter is valid only for the drilling canned cycle in the 
Series 10/11 format. 

 

 

#2  RTR

  G83 and G87 

0:  Specify a high-speed peck drilling cycle 
1:  Specify a peck drilling cycle 
 

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 APPENDIX 

A.PARAMETERS

 

- 379 - 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5102  RDI  RAB 

 

 

F16  QSR 

 

 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#2  QSR

  Before a multiple repetitive canned cycle (G70 to G73) is started, a check to see if the 

program contains a block that has the sequence number specified in address Q is: 
0: Not 

made. 

1: Made. 
When 1 is set in this parameter and the sequence number specified in address Q is not 
found, the alarm PS0063, “THE BLOCK OF A SPECIFIED SEQUENCE NUMBER IS 
NOT FOUND” is issued and the canned cycle is not executed. 
 

 

#3  F16

  When the Series 10/11 format is used (with bit 1 (FCV) of parameter No.0001 set to 1), a 

canned drilling cycle is specified using : 
0:  Series 15 format 
1:  Series 16 format. However, the number of repetitions is specified using address L. 
 

 

#6  RAB

  When a canned drilling cycle using the Series 10/11 format is specified (with bit 1 (FCV) 

of parameter No. 0001 set to 1 and bit 3 (F16) of parameter No. 5102 set to 0), address R 
specifies: 
0: Increment 

command. 

1:  Absolute command with G code system A. With G code system B or C, G90 and 

G91 are followed. 

 

 

#7  RDI

  When a canned drilling cycle using the Series 10/11 format is specified (with bit 1 (FCV) 

of parameter No. 0001 set to 1 and bit 3 (F16) of parameter No. 5102 set to 0), address R 
is based on:   
0: Radius 

specification. 

1:  Diameter/radius specification of the drilling axis. 
 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5104 

 

 

PCT 

   

FCK 

  

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#2  FCK

  In a multiple repetitive canned cycle (G71, G72), the machining profile is: 

0: Not 

checked. 

1: Checked. 
The target figure specified by G71 or G72 is checked for the following before machining 
operation: 
 

If the start point of the canned cycle is less than the maximum value of the 
machining profile even when the plus sign is specified for a finishing allowance, the 
alarm PS0322, “FINISHING SHAPE WHICH OVER OF STARTING POINT” is 
issued. 

If the start point of the canned cycle is greater than the minimum value of the 
machining profile even when the minus sign is specified for a finishing allowance, 
the alarm PS0322 is issued. 

If an unmonotonous command of type I is specified for the axis in the cutting 
direction, the alarm PS0064, “THE FINISHING SHAPE IS NOT A 
MONOTONOUS CHANGE(FIRST AXES)” or PS0329, “THE FINISHING 
SHAPE IS NOTA MONOTONOUS CHANGE(SECOND AXES)” is issued. 

A.PARAMETERS

 APPENDIX 

 B-64604EN-1/01

 

- 380 - 

If an unmonotonous command is specified for the axis in the roughing direction, the 
alarm PS0064 or PS0329 is issued. 

If the program does not include a block that has a sequence number specified by 
address Q, the alarm PS0063, “THE BLOCK OF A SPECIFIED SEQUENCE 
NUMBER IS NOT FOUND” is issued. This check is made, regardless of bit 2 
(QSR) of parameter No. 5102. 

If a command (G41/G42) on the blank side in tool nose radius compensation is 
inadequate, the alarm PS0328, “ILLEGAL WORK POSITION IS IN THE TOOL 
NOSE RADIUS COMPENSATION” is issued. 

 

 

#6  PCT

  A Q command in a tapping cycle is: 

0: Disabled. 
1:  Enabled.((High-speed) peck tapping cycle is assumed.) 
 
When this parameter is set and the depth of cut for each time is specified with address Q 
in a tapping cycle command, a peck tapping cycle is assumed. 
In a peck tapping cycle, either a high-speed peck tapping cycle or a peck tapping cycle 
can be selected by bit 5 (PCP) of parameter No. 5200. 
Even when this parameter is set to 1, if Q is not specified or Q0 is specified, normal 
tapping is performed. 
 

NOTE 

1  Set also parameter No. 5213. 
2  In rigid tapping, the Q command is valid regardless of the setting of 

this parameter. 

 

 

 

#7 #6 #5 #4 #3 #2 #1 #0 

5105 

 

    

M5T 

RF2 

RF1 

SBC 

 

 

[Input type]  Parameter input 

 

[Data type]  Bit path 

 

 

#0  SBC

  In a drilling canned cycle, chamfer cycle, or corner rounding cycle: 

0:  A single block stop is not performed. 
1:  A single block stop is performed.   
 

 

#1  RF1

  In a multiple repetitive canned cycle (G71, G72) of type I, roughing is: 

0: Performed. 
1: Not 

performed. 

 

NOTE 

 

When a roughing allowance (

Δ

i/

Δ

k) is specified using the Series 

10/11 program format, roughing is performed, regardless of the 
setting of this parameter. 

 

 

#2  RF2

  In a multiple repetitive canned cycle (G71, G72) of type II, roughing is: 

0: Performed. 
1: Not 

performed. 

 

 

 

 

 

 

 

 

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