Load Load Load Load Load 1.2 k N.C. 7.3 k Auto shift input (Yellow) DC (+) Sensor input: +1 to 5 VDC DC () CH1_OUT1 (Black) Pressure is applied to a pressure sensor during the reset operation (a zero point adjustment) as follows: When compound pressure is used: 2.5% F.S. or more. When pressure other than compound pressure is used: 5% F.S. or more.
0; "50 Z r 30 100 29.3 29 \\ , , \ \ \ . :1, lJ lo: l0.2kgfcm ~ 20 a With air CUShion High ktnetic energy generated by a large lOad and high speed operatIOn can be absorbed by compressing air at the stroke end thus prevenllJl9 shock and VIbration beng transmitted Ie the machne.
63 35 32 27 38 20 16.5 32 2 14 14 58 11 45 59 72 M10 x 1.5 depth 16 to 1400 80 40 37 32 50 25 19 40 3 20 20 71 13 53.5 68 89 M10 x 1.5 depth 22 to 1500 100 40 37 41 60 30 20 50 3 20 20 71 16 64.5 79 110 M12 x 1.75 depth 22 Bore size (mm) K KA MM MO NA P RF S TA TC TDH9 TE TF TG WL ZZ 20 +0.08 0 5 6 M8 x 1.25 15 24 1/8 11 81 11 M5 x 0.8 8 4 0.5 5.5 15 118 25 5.5 8 M10 x 1.25 15 29 1/8 11
Main port 1, 2 Pilot port 12(P1), 10(P2) A B K C D E F H J Note) Model 1 8 1 4 1 4 VNC5-32A VNC6-40A VNC7-50A 1 4 1 2 1 1 2 105 120 140 211.5 (213.5) 229 (231) 252 (254) 77 96 113 55 63 74 53 60 74 26.5 30 37 120.5 137 160 20 24 24 129.5 147 170 Note) ( ): CE-compliant product (-Q) 622 A Coolant Valve: Air Operated/External Pilot Solenoid VNC Series Flange Type/Port size: 32F, 40F, 50F Pg9
Lube Unit/ALDU600-06 to 10, ALDU900-12 to 20 Float switch mounting position Mounting thread M12 R 3.2 S 40 Q IN P M N M L A B C E E F G K J (Bracket mounting dimensions) H D S Bracket (Option) Panel (Option) 6 x 17 A B C D E F G H J K L M N P Q R S Model Port size ALDU600-06 ALDU600-10 ALDU900-12 ALDU900-14 ALDU900-20 289 291.2 453 453 476 24.5 13.6 51 45.5 14.5 69.5 78.2 89 94.5 102.5 4
With the expansion of its international network, SMC has earned a solid reputation as reliable international brand, and has exceeded the goal of 20% global market share.
Example 2) Obtain the saturated steam flow rate when P1 = 0.8 [MPa] and P = 0.008 [MPa] with a solenoid valve with a Kv = 0.05 [m3/h]. Read off Q0 when P1 is 0.8 and P is 0.008 in Graph (2), the reading is 20 kg/h. Therefore, the flow rate is calculated as the formula: Q = 0.05/1 x 20 = 1 [kg/h]. 231 VXS Series Flow Rate Characteristics Note) Use this graph as a guide.
Dimensions 2 x 3.5 through Indication light 24.3 37 27 4.8 4.4 10.7 7.3 25 37 9 3000 15 11.7 10.4 2-M3 x 0.5 depth 4 With bracket A 37 27 40.9 68 25 38.5 4.2 11.6 69.5 7 20 1.6 A View ZS-30-A Bracket 2 Pressure Sensor Controller Series PSE300 How to Order Input/Output specifications Unit specifications 0 1 2 3 4 5 NPN2 output + 1-5 V output NPN2 output + 4-20 mA output NPN2 output + Auto
B C GA H1 FF GL F GD D E E GC M BB J BL C CC D EE GB K AA AL Bore size (mm) Without rod boot With rod boot 40 50 63 80 100 25 to 850 25 to 700 45 30 10 10 10 54 32 26 11 22 20 44 16 11 15 6 27 71.5 60 42 22 21 150.5 8 M8 x 1.25 25 to 800 25 to 650 50 35 12 13 10 59 40 27 11 27 21 52 20 10 17 9 32 80.5 70 46 24 28.5 162.5 11 M8 x 1.25 25 to 800 25 to 650 60 35 15 18 10 67 40 26 27 23 64 20
Over current 20 Three times the rated current or more is flowing into the driver unit. Over load 21 The driver unit continuously received a current exceeding the rated current for a prescribed time or longer. Over speed 22 The controller exceeded the maximum operational speed. Abnormal driver temperature 24 A temperature increase of the driver unit activated the temperature sensor.
62 to 1000 to 1000 to 700 to 500 to 1000 LJ1H102PH-K 24 66 to 400 104 110 LJ1H102NH-K 28 70 to 400 LJ1H202PA-K 34 76 to 500 106 112 LJ1H202NA-K 38 80 to 500 LJ1H102PB-K 26 68 to 600 145 104 110 LJ1H102NB-K 30 72 to 600 LJ1H202PF-K 32 74 to 250 106 112 LJ1H202NF-K 36 78 to 250 LJ1H303PA-K 40 82 to 500 108 114 LJ1H303NA-K 42 84 to 500 Page Standard stroke (mm) and Speed (mm/s) Nonstandard
ARP No load voltage [V peak] Max. current rating [A] 0 to 20 [V] 5.0 IR-A 100 IR Over 20 [V] to 30 [V] Peak voltage 2) A circuit using max. 30 [Vrms] or less (42.4 [V peak]), which is powered by UL1310 or UL1585 compatible Class-2 power supply. 4.
N 0.5MPa 0.5MPa 40 40 0.4MPa 0.4MPa F 0.3MPa 0.3MPa 20 20 0.2MPa 0.2MPa 0 0 10 10 20 20 30 30 40 40 Gripping point L mm Gripping point L mm MHS2-25D MHS2-25D 100 100 F Internal gripping Pressure 0.6MPa Pressure 0.6MPa 80 80 Gripping force N Gripping force N 0.5MPa 0.5MPa 60 60 Note: 1N = 0.2248lbf 1in = 25.4mm 1MPa = 145psi 0.4MPa 0.4MPa 40 40 0.3MPa 0.3MPa 0.2MPa 0.2MPa 20 20 0 0 10 10
H 2-P Port size 2-P A B H 2-M Port size 2-M Thread depth N L L K K Conduit terminal: T F (Q) 34 25 U R C G (PF) 1/2 E B A H D 2-P Port size (S) 2-M L K N.C.
Content 40 50 63 A set of above nos. 20 and 25. Seal kits consist of a set of items 20 and 25, which can be ordered using the seal kit number for each bore size. 5 Non-rotating Double Power Cylinder with Front End Lock Series MGZ 40, 50, 63 How to Order MGZ 100 40 R Z73 With End Lock Number of auto switches Mounting 2 pcs. 1 pc.
DB, E dimensions MLGPL (ball bushing)/A, DB, E dimensions A E A E Bore size (mm) Bore size (mm) DB st50 50
Series REAL Size: 10, 15, 20, 25, 32, 40 To ensure a permanent path. When smoother operation is required, even with an eccentric load. Stable operation is possible even with an eccentric load, through the use of a ball bushing. Series REAH Size: 10, 15, 20, 25, 32 The use of a linear guide makes possible a large load, large moment and high precision.
1/4 R 1/4 R 1/4 R 1/4 14 14 14 14 20 20 20 20 14 14 14 14 D 2 A Connection thread H1 L1 Copper extension nozzle: KNL (mm) Model Nozzle size D Outside diameter L1 Outside diameter KNL3-06-150 KNL3-06-200 KNL6-06-150 KNL6-06-200 1.5 2 1.5 2 6 6 6 6 300 300 600 600 D L1 Note) When a copper extension nozzle is ordered separately, a self-align fitting will also be required for connection with
H 2-P Port size 2-P A B H 2-M Port size 2-M Thread depth N L L K K Conduit terminal: T F (Q) 34 25 U R C G (PF) 1/2 E B A H D 2-P Port size (S) 2-M L K N.C.
Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 2 Calculate corrected air flow by using A or B and C. Corrected air flow = (Air flow) (Data A x Data C) Corrected air flow = (Air flow) (Data B x Data C) 3 Select a model having an air flow capacity that is higher than the corrected air flow.