KJ-01.02.Instruction Manual.REV.02.pdf - 第216页
6 − 12 (2) Lead leng th sett ing rang e Component ty pe Input range Bottom side Right side T op side Left side Remarks Alum inum elect rolytic capacit or 1.5 ~ 15.0m m ○ ― ― ― The top side and bot tom side are handled as…

6 − 11
6.2.2.2 Allowable input value range for each component type
(1) Allowable lead/ball pitch setting range
Component type Lead (ball) pitch
Aluminum electrolytic capacitor ―
GaAsFET ―
SOP 0.3~1.27mm
HSOP 0.3~1.27mm
SOJ 1.27mm
QFP 0.3~1.27mm
QFJ(PLCC) 1.27mm
BQFP(PQFP) 0.3~1.27mm
TSOP 0.3~1.27mm
TSOP2 0.3~1.27mm
BGA 1.0~3.0mm
FBGA 0.5~2.0mm
CONN 0.3~2.54mm
CON2 0.3~2.54mm
CONZ 0.3~2.54mm
J-lead socket 1.0~1.27mm
Gull-wing socket 1.0~1.27mm
Socket with a bumper 1.0~1.27mm
Outline-to-be-recognized
component
―
Table 6.2.2.2.1 Lead/ball pitch setting range
Note: “
―
“ indicates that any value cannot be entered as a pitch.

6 − 12
(2) Lead length setting range
Component type Input range
Bottom
side
Right
side
Top
side
Left
side
Remarks
Aluminum electrolytic
capacitor
1.5~15.0mm ○ ― ― ― The top side and bottom side are
handled as the same side.
GaAsFET 1.0~15.0mm ○ ○ ― ― Set a value for each side.
SOP 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side.
HSOP 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side.
SOJ 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side.
QFP 0.3~3.0mm ○ ― ― ― The value entered for the bottom side
represents values of all other sides.
QFJ(PLCC) 0.3~3.0mm ○ ― ― ― The value entered for the bottom side
represents values of all other sides.
BQFP(PQFP) 0.3~3.0mm ○ ― ― ― The value entered for the bottom side
represents values of all other sides.
TSOP 0.3~3.0mm ― ○ ― ― The left side and the right side are
handled as the same side.
TSOP2 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side.
BGA ― ― ― ― ― Set a value for the top side only.
FBGA ― ― ― ― ―
CONN 0.3~3.0mm ― ― ○ ― Set a value for the top side only.
CON2 0.3~3.0mm ○ ― ○ ― Set the top side and the bottom side
respectively.
CONZ 0.3~3.0mm ○ ― ○ ― Set the top side and the bottom side
respectively.
J-lead socket 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side
Gull-wing socket 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side
Socket with a bumper 0.3~3.0mm ○ ― ― ― The top side and bottom side are
handled as the same side
Outline-to-be-recogniz
ed component
― ― ― ― ―
Table 6.2.2.2.2 Lead length setting range

6 − 13
(3) Lead width/Ball diameter setting range
Component type Input range
Bottom
side
Right
side
Top
side
Left
side
Remarks
Aluminum electrolytic
capacitor
0.5~1.5mm ○ ― ― ― The top side and bottom side are
handled as the same side.
GaAsFET 0.5~1.5mm ○ ○ ― ― Set a value for each side.
SOP ― ― ― ―
HSOP ― ― ― ―
SOJ ― ― ― ―
QFP ― ― ― ―
QFJ(PLCC) ― ― ― ―
BQFP(PQFP) ― ― ― ―
TSOP ― ― ― ―
TSOP2 ― ― ― ―
BGA 0.5~1.0mm ○ ― ― ― Set the diameter of a ball located on
each side to the bottom side.
FBGA 0.2~0.63mm ○ ― ― ―
CONN ― ― ― ―
CON2 ― ― ― ―
CONZ ― ― ― ―
J-lead socket ― ― ― ―
Gull-wing socket ― ― ― ―
Socket with a bumper ― ― ― ―
Outline-to-be-recogniz
ed component
― ― ― ―
Table 6.2.2.2.3 Lead width/ball diameter setting range
(4) Number of leads/balls setting range
Component type Input range
Bottom
side
Right
side
Top
side
Left
side
Remarks
Aluminum electrolytic
capacitor
― ― ― ― ―
GaAsFET ― ― ― ― ―
SOP 7~128 ○ ― ○ ― Set the number of leads to the
corresponding side.
HSOP 7~128 ○ ― ○ ―
SOJ 7~128 ○ ― ○ ―
QFP 7~128 ○ ○ ○ ○
QFJ(PLCC) 7~128 ○ ○ ○ ○
BQFP(PQFP) 7~128 ○ ○ ○ ○
TSOP 7~128 ― ○ ― ○
TSOP2 7~128 ○ ― ○ ―
BGA *1 4~51 ○ ○ ○ ○
FBGA *1 4~51 ○ ○ ○ ○
CONN *2 2~128 ― ― ○ ―
CON2 *2 2~128 ○ ― ○ ―
CONZ *2 2~128 ○ ― ○ ―
J-lead socket 7~128 ○ ○ ○ ○
Gull-wing socket 7~128 ○ ○ ○ ○
Socket with a bumper 7~128 ○ ○ ○ ○
Outline-to-be-recogniz
ed component
― ― ― ― ―
Table 6.2.2.2.4 Number of leads setting range
*1 For a staggered type of BGA component whose ball pitch is 2.00 or more, the input
range is from 4 to 25.
*2 If the number of leads is less four, the system cannot guarantee the placement
precision.