HS50_advance_level 1_20200522_221201 (1) - 第311页

\Min_Vak_Abst\ 300, \Kub_Vak_Schwellwert\ 6000, \Nkub_Vak_Schwellwert\ 2000, \Zul_Undichtigkeit\ 7000, \Zul_Verschmutzung\ 2000, \Pipetten_Messprofil\ 1 nozzle could be measured in comp. Senso r ] \Pipettenart\ 904, for …

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\Max_Beschl_X \ 4900,
Maximum acceleration X axis
\Max_Beschl_Y \ 3300,
Maximum acceleration Y axis
\Max_Beschl_Z_nach_oben \ 11250,
Maximum acceleration Z axis downwards
\Max_Beschl_Z_nach_unten\ 11250,
Maximum acceleration Z axis upwards
\Max_Beschl_D \ 5750,
Maximum acceleration DP- axi
s
\Max_Beschl_S \ 1100
Maximum acceleration Star- axis
]
\Kopf-Typ\ 5,
...than for gantry 2 ....
\Kopfhoehe\ -22300,
\Max_Beschl_X \ 4900,
\Max_Beschl_Y \ 3300,
\Max_Beschl_Z_nach_oben \ 11250,
\Max_Beschl_Z_nach_unten\ 11250,
\Max_Beschl_D \ 5750,
\Max_Beschl_S \ 1100
]
\Kopf-Typ\ 5,
...than for gantry 3 ....
\Kopfhoehe\ -22300,
\Max_Beschl_X \ 4900,
\Max_Beschl_Y \ 3300,
\Max_Beschl_Z_nach_oben \ 11250,
\Max_Beschl_Z_nach_unten\ 11250,
\Max_Beschl_D \ 5750,
\Max_Beschl_S \ 1100
]
\Kopf-Typ\ 5,
...and for gantry 4.
\Kopfhoehe\ -22300,
\Max_Beschl_X \ 4900,
\Max_Beschl_Y \ 3300,
\Max_Beschl_Z_nach_oben \ 11250,
\Max_Beschl_Z_nach_unten\ 11250,
\Max_Beschl_D \ 5750,
\Max_Beschl_S \ 1100
|
data seperator Data Bloc
\Maschinenpositionen\
machine position
s
\Warteposition-Portal1-(HS50=4)X\ 700000,
Warting position X gantry1 in BB1 (HS50 is 4)
\Warteposition-Portal1-(HS50=4)Y\ 1570000,
Warting position Y gantry1 in BB1 (HS50 is 4)
\Warteposition-Portal2-(HS50=1)X\ 700000,
Warting position X gantry2 in BB1 (HS50 is 1)
\Warteposition-Portal2-(HS50=1)Y\ 330000,
Warting position Y gantry2 in BB1 (HS50 is 1)
\Bestueck-Nest-X\ 788000,
PCB-reference corner (working area BB 1) X-coordinat
e
\Bestueck-Nest-Y\ 722000,
PCB-reference corner (working area BB 1) Y-coordinat
e
\Warteposition-Portal3-(HS50=3)X\ 1300000,
Warting position gantry 3 reserved for HS5X X
\Warteposition-Portal3-(HS50=3)Y\ 1570000,
Warting position gantry 3 reserved for HS5X Y
\Warteposition-Portal4-(HS50=2)X\ 1300000,
Warting position gantry 4 reserved for HS5X X
\Warteposition-Portal4-(HS50=2)Y\ 330000,
Warting position gantry 4 reserved for HS5X Y
\Bestueck-Nest-2-X\ 1623000,
PCB-reference corner (working area BB 2) X-coordinat
e
\Bestueck-Nest-2-Y\ 722000,
PCB-reference corner (working area BB 2) Y-coordinat
e
\Delta_Stopper_BB1T1_x\ 0,
position difference X for Stopper Transport 1 BB1 always 0
\Delta_Stopper_BB1T2_x\ 0,
position difference X for Stopper Transport 2 BB1 always 0
\Delta_Stopper_BB2T1_x\ 0,
position difference X for Stopper Transport 1 BB2 (long board option)
\Delta_Stopper_BB2T2_x\ 0
position difference X for Stopper Transport 2 BB2
|
data seperator Data Bloc
\Pipettenarten\
all type of nozzles for this machine at this SW
\Pipettenart\ 901,
nozzle code X0X mean ceramic nozzle
s
\Pipettenlaenge\ 16000,
nozzle length over all in µm
\Max_Vak_Wert_Offen\ 10000,
Max. vacuum value closed (theoretical max. vacuum) in 1/10 mbar
\Min_Vak_Abst\ 550,
Minimum vacuum distance open / closed nozzle in 1/10 mba
r
\Kub_Vak_Schwellwert\ 6000,
(cubic vacuum threshold) NOT anymore used
!
\Nkub_Vak_Schwellwert\ 2000,
NON cubic vacuum threshold of this nozzle type in % of the measured
vacuum distance
\Zul_Undichtigkeit\ 7000,
NOT use
d
\Zul_Verschmutzung\ 2000,
NOT use
d
\Pipetten_Messprofil\ 1
To measure in comp.-sensor (0 not to measure at comp. sensor)!!!!
precondition: with standard sleeves. New in 503
]
Data seperator of the identical data blocs
\Pipettenart\ 902,
0201 nozzle (round contact surface to component
)
\Pipettenlaenge\ 16500,
\Max_Vak_Wert_Offen\ 10000,
Edition 1.0 2 ideal_HS_503_e.xls ideal_HS SD EA 1 S GC Training
\Min_Vak_Abst\ 300,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
nozzle could be measured in comp. Senso
r
]
\Pipettenart\ 904,
for component´s from 0603 to 120
6
\Pipettenlaenge\ 15000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1200,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 905,
\Pipettenlaenge\ 14000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1200,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 906,
nozzle for 0201 (oval contact surface to the component
)
\Pipettenlaenge\ 16500,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 100,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 3000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 911,
nozzle code X1X mean plastic nozzle
s
\Pipettenlaenge\ 16000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 550,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 913,
for heavy compnent´s in the sive of 1206 chips. The contact surface is
larger than at XX4 nozzle types
\Pipettenlaenge\ 14000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1400,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 914,
\Pipettenlaenge\ 15000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1200,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
Edition 1.0 3 ideal_HS_503_e.xls ideal_HS SD EA 1 S GC Training
\Pipettenart\ 915,
\Pipettenlaenge\ 14000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 2000,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 1
]
\Pipettenart\ 917,
\Pipettenlaenge\ 12000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 2000,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 4000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 0
nozzle to short not to measure in the component sensor!
!
]
\Pipettenart\ 918,
\Pipettenlaenge\ 11000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1500,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 0
nozzle to short not to measure in the component sensor!
!
]
\Pipettenart\ 919,
\Pipettenlaenge\ 11000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1500,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 0
nozzle to short not to measure in the component sensor!
!
]
\Pipettenart\ 920,
nozzle code X2X for 'special standard nozzle
s
\Pipettenlaenge\ 12500,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 2000,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 4000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 0
nozzle to short not to measure in the component sensor!
!
]
\Pipettenart\ 921,
short nozzle with the same contact surface to comp. as the 920 have.
\Pipettenlaenge\ 9000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 2000,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 4000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
\Pipetten_Messprofil\ 0
]
\Pipettenart\ 923,
Mini-Melf nozzl
e
\Pipettenlaenge\ 15000,
\Max_Vak_Wert_Offen\ 10000,
\Min_Vak_Abst\ 1200,
\Kub_Vak_Schwellwert\ 6000,
\Nkub_Vak_Schwellwert\ 2000,
\Zul_Undichtigkeit\ 7000,
\Zul_Verschmutzung\ 2000,
Edition 1.0 4 ideal_HS_503_e.xls ideal_HS SD EA 1 S GC Training