3/4 2.02 1 1/8 3/4 1/2 1/2 9/16 0.3 1/4-28 2 3/8 3/8 1.26 1.1 0.62 0.62 1 3/4 5 1.71 3 5/8 2.36 4 3/4 1.43 CA2 200 (2) 5/8 7/16-20 3/8 .75 3/4 2.6 1 1/8 3/4 1/2 1/2 2 1/2 9/16 0.3 5/16-24 3/8 1.06 3/8 1.26 0.62 3/4 0.62 1 5 1.71 3 5/8 2.4 4 3/4 1.84 250 (2.5) 5/8 7/16-20 3/8 .75 3/4 3.1 1 1/8 3/4 1/2 1/2 9/16 5/16-24 3 0 3/8 3/8 1.30 1.06 0.62 0.62 1 7/8 5 1.75 3 3/4 2.48 4 7/8 2.19 CS1
5/8 7/16-20 3/8 3/4 1.43 CA2 200 (2) 3/4 1.06 0.3 2 1/2 1 0.62 0.62 1.26 3/8 3/8 5/16-24 4 3/4 9/16 2.4 1/2 3 5/8 1/2 1.71 3/4 5 1 1/8 2.6 .75 5/8 7/16-20 3/8 3/4 1.84 250 (2.5) 1 7/8 0.62 0.62 1.06 1.30 3/8 0 3/8 3 5/16-24 4 7/8 9/16 2.48 1/2 3 3/4 1/2 1.75 3/4 5 1 1/8 3.1 .75 5/8 7/16-20 3/8 3/4 2.19 CS1 325 (3.25) 1 3/8 0.87 1.05 1.57 5/8 1/2 3 3/4 3/8-24 5 53/64 7/8 2.72 5/8 4 1/4 3/
40 40 40 40 40 Suction flow rate Suction flow rate 20 20 20 20 20 20 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0 0 0 0 0 10 20 30 40 50 5 10 15 20 25 Supply pressure (MPa) Suction flow rate (l/min(ANR)) Supply pressure (MPa) Suction flow rate (l/min(ANR)) How to Read Flow Characteristics Graph The flow rate characteristics indicate the relationship between the vacuum pressure
Bore size CJ2 series Pressure 0.5 MPa Load factor 50% Stroke 60 mm CM2 series Pressure 0.5 MPa Load factor 50% Stroke 300 mm MB, CA2 series Pressure 0.5 MPa Load factor 50% Stroke 500 mm Average speed (mm/s) Series 6 10 16 20 25 32 40 40 50 63 80 100 800 700 600 500 400 300 200 100 0 Perpendicular, upward actuation Horizontal actuation VQ1101 Port size: 6 One-touch fitting 800 700 600 500
40 0.6 Outlet pressure [MPa] B EB 37 19 37 0.5 Note 1) Set the pressure within the operating pressure range of the valve.
Panel Display cover Display cover Panel nut 14-4-40 23 Series ARM10 Regulator Single Unit Type 5. Unit representation 4.
Panel Display cover Display cover Panel nut 14-4-40 23 Series ARM10 Regulator Single Unit Type 5. Unit representation 4.
VQZ3000 VFS VS 0.7 0.9 VS7 Bore size (mm) Cylinder speed (mm/s) Base mounted (With sub-plate) Cv Series CJ2 Series CM2 Series CA1 6 10 16 20 25 32 40 40 50 63 80 100 150 300 VQZ1000 Body width 10 450 0.3 V V V 600 750 150 300 VQZ2000 Body width 15 0.6 450 V 600 V V 750 150 300 VQZ3000 Body width 18 0.9 450 V V V V V 600 750 Cylinder speed marked with can be controlled by speed controller
85.5 18 198.5 211.5 237.5 248 19 209 222 250 260.5 20 219.5 232.5 262.5 273 13 146 159 187.5 198 14 156.5 169.5 200 210.5 15 167 180 200 210.5 16 177.5 190.5 212.5 223 17 188 201 225 235.5 10 114.5 127.5 150 160.5 11 125 138 162.5 173 12 135.5 148.5 175 185.5 5 62 75 100 110.5 6 72.5 85.5 112.5 123 7 83 96 125 135.5 8 93.5 106.5 137.5 148 9 104 117 137.5 148 3 41 54 75 85.5 4 51.5 64.5 87.5
mA Load current 40 mA or less 0.8 V or less 4 V or less Internal voltage drop 100 A or less at 24 VDC 0.8 mA or less Leakage current Red LED lights when ON.
E s .9 6 5 o 25 50 75 Inpul siqnal (%F.s.) l 25 50 75 Inpul signal (%F.S.)
30 Set pressure (kPa) 54.5 40 55.0 50 Set point 60 55.5 70 56.0 80 56.5 90 100 0 20 40 60 80 100 120 57.0 100 95 90 85 80 75 70 65 60 Flow rate (l/min (ANR)) VAC side pressure (kPa) IRV3000 IRV3000 0 53.0 10 53.5 20 54.0 SET side pressure (kPa) 30 Set pressure (kPa) 54.5 40 55.0 50 Set point 60 55.5 70 56.0 80 56.5 90 57.0 100 95 90 85 80 75 70 65 60 100 0 20 40 60 80 100 120 140 160 VAC
PBT Material 30 40 0.5 g Weight 30 6.5 (R) 2 4.5 1 16 4 11 745 ARM10F Series Made to Order Specifications: Please contact SMC for detailed dimensions, specifications and lead times.
VQ1000 (VV5Q17)-Plug Lead Unit, Cassette Type (F, P, T, S kit) . 3 3 4 9 10 10 11 12 12 14 16 18 20 22 28 30 32 32 33 34 34 35 36 61 62 64 65 67 68 70 36 37 38 38 40 44 48 52 56 74 74 75 76 76 78 80 82 84 86 89 92 94 96 97 100 104 104 106 108 110 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-
Drain cock Oil bowl B' C C Drain cock Drain guide (A) (B) Rc , NPT, G Mounting bracket Port size Model C B A Drain piping F G H J K L B' D E 6 6 1/4 female thread M3 x 0.5 1 4 2.3 15 12 20 50 73 AMC220 40 56 88 100 22 Depth 8 Body size A B C M3 x 0.5 71 88 101 101 121 55 63 83 96 96 116 1 4 3 8 , 56 75 102 118 135 153 AMC320 75 120.5 140.5 2.3 15 20 30 50 123.5 24 55 2 3 5 6 8 9 Depth
(n-2) Same 5s+50(n-2) n=1,2,3,4,, 75+so(n-2) n=2,4,6,8.., B0+50(n-2) 1=2,4,6,4... s0+50(n-2) n=2.4.6.8... with 1 1 0 80 90 40 rr3.5 49 55.5 42 50 B I (O) 10(6.5 7 1 . 5 84.1 92.5 't!
(n-2) Same 5s+50(n-2) n=1,2,3,4,, 75+so(n-2) n=2,4,6,8.., B0+50(n-2) 1=2,4,6,4... s0+50(n-2) n=2.4.6.8... with 1 1 0 80 90 40 rr3.5 49 55.5 42 50 B I (O) 10(6.5 7 1 . 5 84.1 92.5 't!
to 525 75 to 525 +0.75 to +5.25 V 0..20 mA 0 to 2100 0 to 2100 +0.00 to +21.00 mA 4..20 mA 300 to 2100 300 to 2100 +3.00 to +21.00 mA 1: Follow the methods below when assigning the user set upper and lower limit by E.O.
Wireless system configuration example 75 6.1. Flow chart for using the wireless system (Refer to Step 2) 75 6.2. System Construction Example 76 6.3.
Wireless system configuration example 75 6.1. Flow chart for using the wireless system (Refer to Step 2) 75 6.2. System Construction Example 76 6.3. Preparation 78 6.4. (1) Input and output size of the wireless slave 82 6.5.