AS22l1FG-02-03(S)A 5/32" 8.2 AS22l1FG-02-07(S)A 1/4" 11.2 23.4 32.7 (32.8) 18 (18) AS22l1FG-02-09(S)A 5/16" 13.2 23.9 33.2 (33.3) 14.2 18 (19) AS22l1FG-02-11(S)A 3/8" 15.5 26.4 35.7 (35.8) 15.6 19 (20) AS32l1FG-02-07(S)A 1/4" 1/4 19 11.2 16.6 21.8 32.1 36.4 50 48.4 44.5 42.9 13.3 40 (40) AS32l1FG-02-09(S)A 5/16" 13.2 22.7 33 14.2 41 (41) AS32l1FG-02-11(S)A 3/8" 15.5 26.7 37 35.9 15.6 AS32l1FG
I.D. 1 8 1 4 1 8 1 4 3 8 1 8 1 4 3 8 1 8 1 4 3 8 1 4 3 8 1 2 1 4 3 8 1 2 1 4 3 8 1 2 1 4 3 8 1 2 10 17 19 17 19 20 18 21 20 18 21 20 22 21 25 22 21 25 23 22 25 23 22 25 21 25 22 27 38 30 32 39 31 32 37 38 44 66 38 43 65 53 53 68 51 52 67 KFL04-01 KFL04-02 KFL06-01 KFL06-02 KFL06-03 KFL08U-01 KFL08U-02 KFL08U-03 KFL08N-01 KFL08N-02 KFL08N-03 KFL10U-02 KFL10U-03 KFL10U-04 KFL10N-02 KFL10N-03
1 2 3 5 8 0 0 0 1 1 3 5 8 16 27 53 84 1 0 0 1 1 0 ZF ZP SP ZCUK Add or deduct the mass shown in the table on the left for order materials.
I.D. 1 2 3 1 2 3 1 L 210 280 265 D 18 TCU0425B-1 TCU0425B-2 TCU0425B-3 TCU0604B-1 TCU0604B-2 TCU0604B-3 TCU0805B-1 52 35 22 54 27 17 41 1.5 4 2.5 28 1 2 1.5 1 2 24 325 6 4 37 305 330 8 31 5 Burst Pressure Characteristics Chart 725 Burst pressure psi 580 Burst pressure 435 290 145 Max. operating pressure 0 4 32 68 Operating temperature F 104 140 TUB-10 Polyurethane Coil Tubing (Metric) continued
-J80F J 1) Si MHSJ3-J40S MHSJ3-J50S MHSJ3-J63S MHSJ3-J80S 1CRFKMSi 212131415 1 24 MHSH3, MHSHJ3 1625 3280 1 10 1625 11 2 3280: 12 C 3 A 13 NBR 4 14 NBR 5 A 15 NBR 6 A 16 NBR 7 17 NBR 8 18 NBR 9 MHSH3-16D MHSH3-20D MHSH3-25D MHSH3-32D MHSHJ3-32D NBR MHSH16-PS MHSH20-PS MHSH25-PS MHSH32-PS 2) 13,14,15,16,17,18 1) CR MHSHJ3-J32 19 1) FKM MHSHJ3-J32F (A) 1) Si MHSHJ3-J32S
8 ~ ~ ~ 7 (Ch7 output) Idle value 0: clear, 1: ON -98No.EX-OMX1011 Configuration format (EX600-DY#E/F) EX600-DY#E/F (15 byte) Byte Bit Parameter Setting value 0..3 Unit No. 0..8 0 4..7 Parameter type 1 1 0..7 Unit ID EX600-DY#E: 18 (Hex) EX600-DY#F: 1A (Hex) Unit parameter 0 Reserved 0 1 Monitor short circuit (out) 0: disable, 1: enable 2 2 Reserved 0 3 Restart after output load short circuit
RX RX RX RX RX RX RX RX (n+2)8 (n+2)9 (n+2)7 (n+2)6 (n+2)5 (n+2)4 (n+2)3 (n+2)2 Point table No. output 3 (PT2) RX(n+2)4 0 0 0 0 0 0 1 0 1 1 0 0 0 0 0 2 0 0 Point table No. output 4 (PT3) RX(n+2)5 1 1 0 0 0 0 0 3 0 0 1 4 0 0 0 0 0 0 Point table No. output 5 (PT4) RX(n+2)6 Point table No. output 6 (PT5) RX(n+2)7 1 1 1 1 1 254 1 1 0 1 255 1 1 1 1 1 1 1 Point table No. output 7 (PT6) RX(n+2)8
Regenerative error (Note 1) (Note 1) (Note 1) Alarms AL.31 1 0 1 Overspeed AL.32 1 0 0 Overcurrent AL.33 0 0 1 Overvoltage AL.35 1 0 1 Command pulse frequency alarm AL.37 0 0 0 Parameter error AL.45 0 1 1 Main circuit device overheat (Note 1) (Note 1) (Note 1) AL.46 0 1 1 Servo motor overheat (Note 1) (Note 1) (Note 1) AL.47 0 1 1 Cooling fan alarm AL.50 0 1 1 Overload 1 (Note 1) (Note 1)
Composite Center of Gravity Calculation m1 = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525 kg 1 m1 X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5 mm 1 m1 Y = x (mn x yn) 1 6.525 = (0.88 x 0 + 4.35 x 0 + 0.795 x 111 + 0.5 x 210) = 29.6 mm 1 m1 Z = x (mn x zn) 1 6.525 = (0.88 x 5 + 4.35 x 42.5 + 0.795 x 42.5 + 0.5 x 42.5) = 37.4 mm 4.
E = mV 2 1 Formula (1) : Kinetic energy : Load mass : Speed Figure 1. Linear motion E m V Rotary actuator I = mr m: Mass (kg) (However, the weight of the L section is ignored) E= I Formula (2) 2 1 = mr 2 1 This indicates the moment of inertia with respect to the rotation axis of a mass "m" which is a distance "r" from the rotational axis.
Standard Specifications Weight Table (g) Mounting (male thread) Vacuum entry (female thread) Vertical Vacuum entry direction Pad diameter (mm) Mounting M5 x 0.8 Vacuum entry Connection Male thread 20 M8 x 1 Female thread 10 to 16 M8 x 1 24 M10 x 1 20 to 32 10 to 16 M10 x 1 Pad diameter (mm) 55 M14 x 1 M5 x 0.8 40, 50 20 to 32 M14 x 1 40, 50 Ball joint rotation 15 Pad Types Pad type Ball joint
1 !2 !3 !4 !5 !6 !7 !8 !
Selection Step 1. Pad selection 1-A Theoretical lifting force 1-B Calculation method: Pad diameter 2.
Minimum Stroke for Auto Switch Mounting [mm] Auto switch model Number of auto switches Bore size 12 (10 x 2) 16 (12 x 2) 20 (16 x 2) 25 (20 x 2) 32 (25 x 2) 40 (32 x 2) 50 (40 x 2) 63 (45 x 2) 80 (56 x 2) 100 (71 x 2) D-M9V 1 5 2 5 D-M9 1 5 Note 1) 5 2 10 Note 1) 10 D-M9W 1 5 Note 2) 2 10 Note 2) 10 D-M9WV D-M9AV 1 5 Note 2) 2 10 D-M9A 1 5 Note 2) 2 10 Note 2) Note 1) Confirm that it is possible
E = mV 2 1 Formula (1) : Kinetic energy : Load mass : Speed Figure 1. Linear motion E m V Rotary actuator I = mr m: Mass (kg) (However, the weight of the L section is ignored) E= I Formula (2) 2 1 = mr 2 1 This indicates the moment of inertia with respect to the rotation axis of a mass "m" which is a distance "r" from the rotational axis.
Pin description PF2A7H-(-M) 68 69 1 DC(+) 2 Analog output 3 DC() Accumulated pulse output wiring examples 4 OUT1 4-I thread with depth J 40 Max. 30V 80mA or less OUT1 Black Load H 0V Blue 50msec PF2A7H-(-M) 28 29 B C D E F G H I J A Model Brown PF2A703H PF2A706H PF2A712H 55 160 40 92 67 55 Rc 1, NPT 1, G 1 36 M5 x 0.8 8 OUT1 80mA Load Black 65 180 45 104 79 65 Rc 11/2, NPT 11/2, G 11/2 Rc
Pin description PF2A7H-(-M) 68 69 1 DC(+) 2 Analog output 3 DC() Accumulated pulse output wiring examples 4 OUT1 4-I thread with depth J 40 Max. 30V 80mA or less OUT1 Black Load H 0V Blue 50msec PF2A7H-(-M) 28 29 B C D E F G H I J A Model Brown PF2A703H PF2A706H PF2A712H 55 160 40 92 67 55 Rc 1, NPT 1, G 1 36 M5 x 0.8 8 OUT1 80mA Load Black 65 180 45 104 79 65 Rc 11/2, NPT 11/2, G 11/2 Rc
JIS B 8370: JIS B 8361: JIS B 9960-1: -(1 :) JIS B 8433-1993: *2 : : : 1, 2 3 1 2 3 4 -3No.EX-OMN0037CN-A / 1 1.5 *3) *3) 1 1 () -4No.EX-OMN0037CN-A () () () () -5No.EX-OMN0037CN-A / , () * UL UL1310 Class2 0V -6No.EX-OMN0037CN-A * IP67 / *() ,, SI SI SI * IP67 M12M8 -7No.EX-OMN0037CN-A CE , * 20-23 PLC PLC * -8No.EX-OMN0037CN-A SI 1 SI 32 10 SI SI ON/OFF PNP NPN