0.5 to 4 30 30 0.5 to 4 Y 2 L2 2 11.5 to 22 L1-2 X 5 W2 = 13.5 to 30 0.5 to 5 40 40 0.5 to 5 Y 4.5 L2 2 15.5 to 30 L1-2 X 5.5 11-2-32 32 Simple Specials Series CRB2 Simple Specials Series CRB2 Axial: Top (Long shaft side) Symbol: A47 Machine a keyway into the long shaft.
0.5 to 4 30 30 0.5 to 4 Y 2 L2 2 11.5 to 22 L1-2 X 5 W2 = 13.5 to 30 0.5 to 5 40 40 0.5 to 5 Y 4.5 L2 2 15.5 to 30 L1-2 X 5.5 11-2-32 32 Simple Specials Series CRB2 Simple Specials Series CRB2 Axial: Top (Long shaft side) Symbol: A47 Machine a keyway into the long shaft.
]() [] PLC RWw RWw bit ( )ON, 0 OFF 1 () 2 OFFONRWr0bit5: ALARM 3 OFF ON 4 5 *2 6 *1 ON 11 7 *2 0 8 *2 9 *2 A *2 RWw0,bit5F: 17.CC-Link B *2 C (P.77) D 1 *1 E 2 *1 F *1 0 OFF ON 1 17 () 8F 1:ABS() 2:INC() *1 RWw0,bit4F: 2 2 F0 L 11.1 (P.47) )RWw0,bit6:ON655.37 [mm](65537d =00010001h) RWw2=0001h (2 ) RWw3=0001h (2 ) (2 ) 3 F0 H *2 RWw0,bit4F: 70 L 11.1 (P.47) )RWw0
Direct mount type End lock Standard 1 3 3 1 2 Double rod Air Cylinder Direct mount type 10-/1121-/221 3 3 1 2 CA2 Air Cylinder Standard 10113 1 2 CUJ Mini-free Mount Cylinder 10-/1121-/221 3 3 1 2 CDU Free Mount Cylinder 10-/1121-/221 2 3 1 2 CQS Compact Cylinder 10-/1121-/221 2 3 1 2 CQ2 10113 1 2 REC Sine Cylinder Note) 11-/1221-/221 3 1 2 CXSJ 3, 4 Dual Rod Cylinder Note) 10-/11-/1221
6 e u @4 @0 @1 @2 w !4 !2 !0!1 !3 !
-* LE-CP-*-*-S USB MOT JXC-W1-1 CI 2) () 120.3 120.3 mm mm 200 200 mm/s mm/s <> 100 500 100 500 1 1 200 1000 200 1000 2 2 50 200 50 200 3 3 2) AWG20 (0.5mm USB JXC-W1-2 -USB DC24V M PWR JXC-W1 2) C PWR DC24V 2) () <> 1.5m () 2) AWG16 (1.25mm JXC-C1 1) 2)PLCDC24V 12.
Connector wiring diagram (mixed wiring) Connector type manifold 6 A 4 A 3 A 1 A 5 B 2 B Output 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 The use of multi-pin connectors to replace wiring inside manifold blocks provides flexibility when adding stations or changing
Yaxis [Axis speed calculation] Composite travel distance = Target position 1 2 Z Z Y Y X X 2 2 2 Composite speed 1 2 1 2 (X2, Y2, Z2) Xaxis speed = ( 1 2 X X / Composite travel distance) Composite speed Y axis speed = ( 1 2 Y Y / Composite travel distance) Composite speed Z axis speed = ( 1 2 Z Z / Composite travel distance) X axis Composite speed Current position (X1, Y1, Z1) Z
(170mm ) (j)No.2 AREA OFF(130mm ) (k)BUSY OFFINP ON(No.2 ) -50mm No.1 (.200mm 1: 150mm 2: 250mm No.2 .100mm 1: 130mm 2: 170mm No.1 No.2 No.
[Setting example] (1) Axis 1: 1, Axis 2: 2, Axis 3: 2, Axis 4:3 The order of returning starts from Axis 1, then Axis 2 and 3, and then Axis 4. ORIG order 1 to 4 X (2) Axis 1: 1, Axis 2: 1, Axis 3: 1, Axis 4:1 Four axes return simultaneously. Caution Simultaneous return to origin of 4 axes is not synchronous. Adapter file version Fixed value This is a fixed value for this controller.
Note 2) Refer to Best Pneumatics No. 2-1 for lead wire lengths.
Storoke +2 Storoke +2 Storoke +2 Storoke(-) -2 -2 -2 -2 Maximum speed 500 250 1000* 500 250 1200* 500 250 500 500 250 Maximum acceleration/ deceleration 3000 3000 3000 3000 Basic parameter default Default In position 0.50 0.50 0.50 0.50 ORIG offset 0.00 0.00 0.00 0.00 Max force 100 100 100 100 Para protect 1 1 1 1 Enable SW 2 2 2 2 Unit name Part no. of each product W-AREA1 0.00 0.00 0.00
5 5 DHCP mode Note 2) 2 5 6 Unused : : : 9 9 9 Note 1) The mode to set IP address by DHCP server.
Access Size Name Semantics of Value 100 Get 2 101 Get 2 102 Get 4 103 Get 2 104 Get 2 105 Get 4 106 Get 1 1 107 Get 1 2 108 Get 1 3 109 Get 1 4 110 Get/Set 2 111 Get/Set 2 112 Get/Set 1 113 Get/Set 2 114 Get/Set 2 115 Get/Set 4 116 Get/Set 2 117 Get/Set 2 118 Get/Set 2 119 Get/Set 2 120 Get/Set 2 121 Get/Set 4 1 122 Get/Set 4 2 123 Get/Set 4 124 Get/Set 1 IO *1 Polled
(A) Rubber seal 2 4 FPG 3 5 1 (R2) (R1)(P) Available for 7-6 and 7-8 only A02 VS7 1 Sub-plate Size 1 2 3 Specifications Size 1 Size 2 Piping specifications Weight (kg) Model Size 3 Piping direction Port size for 3(R2), 5(R1) Port size for 1(P), 2(B), 4(A) Port size VS7-1-A02 VS7-1-A03 VS7-1-B02 VS7-1-B03 VS7-2-A03 VS7-2-A04 VS7-2-A06 VS7-2-B03 VS7-2-B04 VS7-2-B06 VS7-3-A04 VS7-3-A06 VS7
) 12 With filter (80 mesh) 23 15 , 8 1 4 1 48 (P, A, R port) 5-4-8 1 3 Port Air Operated Valve Series VZA200/400 Specifications SA Fluid Air 1 2 1 2 VZA4 2, 4 4 1 2 1 2 VZA2 2, 2 4 1 2 1 2 VZA4 2, 4 4 1 2 1 2 VA Operating pressure range (MPa) 0.1 to 1.0 0.15 to 1.0 VZA2 2, 2 4 0.1 to 1.0 0.15 to 1.0 SA Pilot pressure range (MPa) Impact/Vibration resistance (m/s2) Note) 150/50 VA Operating
Alarm was generated in order of (1) -> (5) 6030h (1) 0-7 Alarm 1 6030h (2) 0-7 Alarm 2 Alarm 1 (Latest) (1) (2) (3) (4) (5) 6030h Alarm 2 0 (1) (2) (3) (4) (3) 0-7 Alarm 3 Alarm 3 0 0 (1) (2) (3) Alarm 4 0 0 0 (1) (2) (1) to (5) in the table indicate the alarm codes which are generated. 6030h Refer to 15.2.
Movement mode 1: ABS (Absolute) 2: INC (Relative) (7, 10) 2-7.
Connector wiring diagram (mixed wiring) Connector type manifold 6 A 4 A 3 A 1 A 5 B 2 B Output 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 The use of multi-pin connectors to replace wiring inside manifold blocks provides flexibility when adding stations or changing