SMC Corporation of America
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Search Results "11-CDJ2B10-15"

H A 30 ZPNA-M22 34.6 Bolts Dimensions (mm) A 11 d M3 x 0.5 12 7 M4 x 0.7 B 5.5 L 8 8 10 15 8.5 M5 x 0.8 13-11-82

Description Material Aluminum alloy Stopper B Motor 1 10 Sensor plate Direct acting guide 2 11 Chromated Mild steel Coupling 3 Resin/Alloy steel Aluminum alloy 12 Nut Alloy steel Magnet Rolled screw 4 13 Bumper Body Rubber Anodized 5 14 Aluminum alloy Resin Motor cover Anodized Aluminum alloy Table 6 15 Anodized Aluminum alloy End plate Photo micro sensor 7 16 Anodized Aluminum alloy

84 25 38 80 60 MGP 52 30 120 27 M8 125 65 9 9 100 84 136 120 13 15 89 32 46 95 70 75, 100 125, 150 200, 250 300 60 35 135 32 M8 140 75 9 9 108 92 150 134 13 15 94 32 50 105 80 MGQ 70 40 160 37 M8 165 85 12 9 125 110 176 160 16 18 107 38 60 125 95 45 194 42 M10 200 95 12 11 135 115 210 190 82.5 19 23 142 50 75 150 115 MGG Bore (mm) Z Y X W WH W V U T S R Q O P MGC 20 25 32 40 50 140 80 30

15 32 20 19 M5 8 1/4, 3/8 VCL31 24 (25) 59 (66) 46 57 60 54.5 48.5 101 57 68 104 30 50 86 36.5 13.5 15 32 25 23 M5 8 1/2 26 (26.5) 64.5 (71.5) 48 62.5 62 60 50.5 103 62.5 70 107 22 45 90 41 11 17 36 22.5 23 M5 8 1/4, 3/8 VCL41 26 (26.5) 66.5 (73.5) 48 64.5 62 62 50.5 103 64.5 70 111.5 30 50 94 41 13.5 17 36 25 23 M5 8 1/2 26 (26.5) 70 (77) 48 68 62 65.5 50.5 103 68 70 119 35 60 102 41 17.5

Note Main parts 14, 15, 16, 17 MHCA6-PS Seal kit 7 Angular Air Gripper Series MHC2-6/MHCA2-6 Dimensions MHC2-6 4-M2 x 0.4 through (Attachment mounting threads) Attachment mounting limiting range 16 11 2-M3 x 0.5 through Prepared hole dia. 2.6 through 5 2.5 4.8 2 2 When closed 10 When open 30 4 2.5 14 20 12 4 6 10 0.05 Auto switch mounting groove dimensions 36 +0.022 0 7H8 depth 1.5 (48)

11 75 52 72 29 9 XLC-63-2 88 212 100 55 11 87 95 70 76 33 9 XLC-80-2 90 257 117 65 11 114 110 83 104 39 9 13 XL-OMV0007 6.

holes) P 19 35 P Pg.7 2-Rc(PT) 1/8 (ports P) A A A 11 20 26 49 Approx. 300 (lead wire length) 1 P = 19 13.5 L2 5.5 L1 47.5 11 5 n-Rc(PT) 1/8, M5 x 0.8 (port A) 19 35 n-Rc(PT) 1/8 (port R) 47.5 11 R R P = 19 19 L: Dimension table n: Stations n L 1 38 27 2 57 46 3 76 65 4 95 84 5 114 103 6 133 122 7 152 141 8 171 160 9 190 179 10 209 198 11 228 217 12 247 236 13 266 255 14 285 274 15 304 293

A B C D E Fn Fd G H J XLG-16-2 40 108 38 20 30 17 44 19 XLG-25-2 50 121 48 27 12 40 26 44 21 XLG-40-2 65 171 66 39 11 55 41 67 29 12 XL-OMV0003 5-3.Dimensions Size 50, 63, 80 E C C E E (KF flange) (K flange) Fd Fn D K J H B A G A Unit: (mm) Model A B C D E Fn Fd G H J K XLG-50-2 70 185 79 46 11 75 52 72 29 9 XLG-63-2 88 212 100 55 11 87 95 70 76 33 9 XLG-80-2 90 257 117 65 11 114 110 83

, 20 0.08 0.06 0.06 ST 5, 10 0.06 ST 15, 20 0.04 0.04 ST 15, 20 0.04 ST 5, 10 0.02 0.02 0.02 ST 5, 10 0.00 0 5 10 15 0.00 0 5 10 15 0.00 0 5 10 15 Load [N] Load [N] Load [N] MXZ16 MXZ16 MXZ16 0.15 0.15 0.15 Table displacement [mm] Table displacement [mm] Table displacement [mm] ST 25, 30 ST 25, 30 ST 25, 30 ST 15, 20 0.10 0.10 0.10 ST 15, 20 ST 15, 20 ST 5, 10 0.05 0.05 0.05 ST 5, 10 ST 5

Bit number Value meaning 31 (MSB) X do not care 0 Device does not generate SYNC message 30 1 Device generate SYNC message 0 11 bit ID (CAN 2.0A) 29 1 29 bit ID (CAN 2.0B) 0 if bit 29 = 0 28 to 11 X If bit 29 = 1: bits 28 to 11 of 29-bit-SYNC-COB-ID 10 to 0 (LSB) X bits 10 to 0 of SYNC-COB-ID : The default values when the SI unit is supplied. Bits 29 to 11 are fixed (not changeable).

First find the ratio of the discharge rate for fresh water when viscosity is 15 mPas from the graph to the left. It is determined to be 48%. 2. Next, the viscosity of 15 mPas and the discharge rate of 200 l/min in the required specification example are converted to the discharge rate for fresh water.

20 25 30 35 40 45 0 5 10 15 20 25 30 35 40 45 [50 Hz] Circulating fluid temperature [C] [60 Hz] Circulating fluid temperature [C] 012 018 024 A W HRS -20 (Single-phase 200 to 230 VAC) 1000 1000 Ambient 40C Ambient 32C Ambient 25C Ambient 40C 800 800 600 600 Ambient 32C 400 400 Ambient 5C Ambient 20C Ambient 25C Ambient 5C Ambient 20C 200 200 0 5 10 15 20 25 30 35 40 45 0 5 10 15 20 25 30

Description Even number 0 to 14 Odd number 1 to 15 1 Power supply (24 VDC) 2 (Input) 3 Power supply (0 V) 4.

Status Condition 0 No supply voltage SP Status of solenoid power supply 1 Supply voltage OK 0 Short circuit DI Status of sensor power supply 1 Normal Output area mapping Output data MSB LSB MSB LSB Offset (word) 15 8 7 0 0 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 1 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 -28No.EX-OMK0004-B Output No. assignment Combinations of output data and valve

Accessories to supply valve/ release valve Model Accessories ZB1-VQ110UMounting screws (M1.7 x 15); 2pcs. ZB1-VQ110U-B Mounting screws (M1.7 x 22); 2pcs. ZB1-VQ110LMounting screws (M1.7 x 22); 2pcs. ZB1-VQ120UMounting screws (M1.7 x 15); 2pcs. ZB1-VQ120U-B Mounting screws (M1.7 x 22); 2pcs. ZB1-VQ110Mounting screws (M1.7 x 15); 2pcs.

Company Bs PLC I/O card Connector pin assignment (pin layout) Company As PLC I/O card Connector pin assignment (pin layout) Change of PLC manufacturers (Company A to Company B) + + + + 2F 2E 2D 2C 2B 2A 11 13 15 17 19 1B 1D 1F 21 23 25 27 29 2B 2D 2F 29 28 27 26 25 24 23 22 21 20 + + 19 18 17 16 15 14 13 12 11 10 + + 1F 1E 1D 1C 1B 1A 10 12 14 16 18 1A 1C 1E 20 22 24 26 28 2A 2C 2E General

Terminal block arrangement 11 6-2. Wiring of sensor input part 11 6-3. Wiring of control signal input part 12 6-4. Wiring of output part 12 6-5. Wiring of RS-232C 12 6-6. Noise countermeasures 13 Chapter 7: Setting and Counter operation 7-1. Modes and setting items 14 7-1-1. Mode types and functions 14 7-1-2. Mode switching procedure 14 7-1-3. Setting of function mode 15 7-1-4.

10 13 162 10.5 28 170 23 14 172.5 180.5 up to 500 10 13 171 11 28 184 23 14 182 195 up to 600 14 17 194 15 40 206 30 20 209 221 up to 600 14 17 194 15 40 206 30 20 209 221 U up to 750 22 26 246 23 60 264 42 30 269 287 CX L RR up to 750 22 26 246 23 60 264 42 30 269 287 Z + Stroke CZ ZZ + Stroke Center trunnion(T)/Locking at head end (Hl) Hl Rl/ Wl (mm) Port Cushion valve Stroke range Bore

n-M3 0.5 2 (OUT) port Dimensions Formulas: L1 = n 7.2 + 8.8, L2 = n 7.2 + 14.8, n: Stations (maximum 20 stations) n L 12 95.2 101.2 19 145.6 151.6 2 23.2 29.2 3 30.4 36.4 4 37.6 43.6 5 44.8 50.8 6 52 58 7 59.2 65.2 8 66.4 72.4 9 73.6 79.6 10 80.8 86.8 11 88 94 13 102.4 108.4 14 109.6 115.6 15 116.8 122.8 16 124 130 17 131.2 137.2 18 138.4 144.4 20 152.8 158.8 L1 L2 10 3 Port Solenoid