12 12 12 33 50 67 82 NN 2 2 2 2 3 4 5 6 7 H 45 45 45 55 35 35 35 38 40 G 22 22 22 22 20 26 32 40 30 N 4 4 4 4 6 6 6 8 8 HA 45 45 45 55 35 70 70 76 80 NA 2 2 2 2 2 2 4 4 4 FF 40 40 40 50 35 60 70 75 80 GA 22 22 22 22 55 61 102 154 190 KA 162 218 258 13-/22-MXS25L-10 13-/22-MXS25L-20 13-/22-MXS25L-30 13-/22-MXS25L-40 13-/22-MXS25L-50 13-/22-MXS25L-75 13-/22-MXS25L-100 13-/22-MXS25L-125 13-
with switches only) Brown Black Blue Brown Brown Load Black Blue Relay Black Blue Load Switch 1 Load Switch 1 Switch 1 Relay contact Brown Black Blue Brown Black Blue Brown Black Blue Switch 2 Switch 2 Relay Switch 2 The indicator lights will light up when both switches are turned ON. 2-wire 2-wire with 2-switch AND connection 2-wire with 2-switch OR connection When two switches are connected
M(Maximum allowable moment)(Nm) Allowable load F(N) = L x 10-3 0.68 Allowable load F = 30 x 10-3 = 22.7 (N) (Unit converted invariable number) Load f = 10 (N) 22.7 (N) Therefore, it can be used. 4 Low Profile Air Gripper Series MHF2 How to Order MHF 2 12 F9B D Number of auto switches Number of fingers 2 2 finger Nil S 2 pcs. 1 pc.
(EX245-EA2-1) No. 1 SI ON/OFF 2 3 4 SI 5 . 11 11 No.EX-OMU0020CN 2. . 2-1 EX245 DC24 V 1 msec IP65 CE RoHS AC500 V1 FE DC500 V10 M FE -1050 -2060 35%85%RH 1057 Hz0.75 mm p-p 57150 Hz49 m/s 2 XYZ 2 2 XYZ 3 () 147 m/s 12 No.EX-OMU0020CN 3. 3.1. 8 VQC4000 7 2 x M5 ( = 1.5 Nm) 2 x M5 (SI = 1.5 Nm) 4 x M* . 3-1 13 No.EX-OMU0020CN 3.1.1.
PRODUCT SPECIFICATIONS S E R I E S I P 5 0 0 0 / I P 5 1 0 0 IP5000 (Linear) IP5100 (Rotary) SERIES 20 100 psi SUPPLY PRESSURE STROKE SENSITIVITY LINEARITY HYSTERESIS 0.4" 3.4" 60 100 degrees WITHIN 0.1% F.S. WITHIN 0.5% F.S. WITHIN 1% F.S. WITHIN 0.75% F.S. WITHIN 1% F.S. WITHIN 2% F.S. WITHIN 0.5% F.S.
2 t u !1 !3 @2 q $4 #3 #1 #0 @1 $2 !7 @5 #8 #6 #4 @6 @7 @8 @4 Auto switch $1 #5 #9 #8 #2 @3 !9 $0 $2 !1 !8 !6 #7 !0 @9 A @0 !5 A !
80 85 90 95 100 105 60 65 70 75 80 85 73 78 83 88 93 98 16 to 25 Relief port 2 x M5 x 0.8 2 x P through M5 x 0.8 R QA Q GC GB E MM GA D J C 2.8 A Width across flats L 2 x P through A1 H E 4 x T counterbore 0.5 B S Z (mm) S Z A A1 GB P Q QA R T B C D E GA GC H J L MM Bore size 5 30 40 50 5 10 15 20 25 30 40 50 10 15 20 25 20 16 12 11 5.5 4.5 9 4 4.5 2 16 12 26 20 40 32 8 6 30 27 M6 x 1.0
Function selection mode Measurement mode Press the button for 2 s or longer Tube After maintenance is complete, perform appropriate functional inspections and leak tests. Stop operation if the equipment does not function properly or there is a leakage of fluid. When leakage occurs from parts other than the piping, the product might be faulty.
1 I.{ 50 114 139 13 100 10 t 15 5 9 5.5 v 74 4.5 AMG25O 3/8 '152 13 1 1 3 6 10 '| 69 n '12 4 84 a 5 2 n Ai/lc350 1/2 144 16 145 s s '10 198 m 2 14 7 80 100 g 2.3 ANtG450 314 205 19 147 106 106 JO s 10 14 88 1 1 0 3.2 AMG55O 239 200 10 257 100 s 10 't6 102 130 m 10 4.5 AIVG&5O 1 112 291 c 253 r60 160 10 364 150 .10 20 1 1 s 136 180 4.5 2 48 a 348 220 ?
D Bore size (mm) A Piping port (1) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) (2) 20 25 B D 32 View from piston rod end 40 (2) (2) (2) (2) (2) (2) C 50 63 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Operating Range
The kinetic energy can be calculated using the formula below. 2 1 = I E E: Kinetic energy [ J ] 2 I: Moment of inertia [ 2 m kg ] : Angular speed [ s rad ] There is a threshold of kinetic energy that a rotary actuator allows. Therefore, by finding the moment of inertia, it is possible to find the threshold value of the rotation time.
in X, Y, Z directions, 2 hours each 490m/s in X, Y, Z directions, 3 times each 1.3kg (without lead wire) Equivalent to IP65 2.0kg (without lead wire) 1.1kg (without lead wire) 1 1/2 2 1 Note 1) For the type with unit switching function [The type without the unit switching function will have a fixed SI unit (l/min, or l, m or m x 10).]
+ 02 1/4 V 03 3/8 V 04 1/2 V 06 3/4 V 10 1 V + e Port size 1(P), 2(A) a Mounting Nil Without mounting option V V V V B With bracket V V V V + Option b Pressure gauge Nil Without pressure gauge V V V V G Round type pressure gauge (with limit indicator) V V V V + r c Silencer Nil Without silencer V V V V S Silencer (Built-in) V V V V + 1 100 VAC V V V V 2 200 VAC V V V V 3 110 VAC [115
fitting 1(P): Male thread 2(A): One-touch fitting 1(P): One-touch fitting 2(A): Male thread 1(P): Male thread 2(A): Male thread 2(A) 2(A) 2(A) 2(A) Applicable tubing O.D.
OFF time adjustment dial ON time adjustment dial OFF ON 6 4 3 2 2 1 8 4 0.5 10 5 0.5 min s Ball valve Strainer is built in here Strainer cap Strainer 13.3 Maintenance IDFA60/70/80/90 Series 13-2 IDX-OM-V020 Chapter 14 Inspection record Chapter 14 Inspection record 14.1 Inspection record We recommend keeping the inspection record for maintenance or service. Product No.
Therefore, use a meter-in type speed controller to adjust the finger opening and closing speed. 4 Angular Air Gripper Series MHC2-6/MHCA2-6 How to Order MHC D F9PV 6 2 6 2 A D MHC Short body (Auto switch not attachable) Number of auto switches Number of fingers 2 2 finger Nil S 2 pcs. 1 pc.
(mm) Effective area (mm2) Connection thread R(PT) S (Width across flats) 2(A)3(R) Weight (g) Bracket ass'y No.
:GR-S-010(10g):GR-L-005(5g) 14 3-3. 2 (MHF2-8D2MHF2-12D20D) 1. 2. 8:12:R 1620:C ABC 3. (8:) (12 ) :GR-S-010(10g):GR-L-005(5g)GR-L-010(10g) 8 2 12 2.5 16 3 20 4 B C C 8 A 12 0.9 16 C MHF2-8D2 20 1.3 MHF2-12D* R MHF2-8D2 8 1.5 12 2 16 2.5 20 3 12 15 3-4. /1 MHF2-8DMHF2-8D1 1 16 2 17 3 18 4 19 5 20 NBR 6 21 NBR 7 8 A 9 B 10 C 11 12 13 14 15 MHF2-8D
List part numbers of the installed valve and option in required station location separately under manifold part number. 4-2-7 8 Series V100 Common SUP/Common EXH Type S41 How to Order Applicable solenoid valve Note) VV100 S41 05 M5 V114V114AV124V124AStations 2 port size 02 M5 M5 x 0.8 2 stations 2 Applicable blank plate assembly V100-77-1A 1 20 20 stations 3 2 1 port M5 x 0.8 3 port M5 x
2 3 4 6 5 0 1 2 3 4 5 Flow velocity (m/s) Flow velocity (m/s) Calculating the Flow Velocity v = 21.2 x Q/d2 (Symbol) v: flow velocity (m/s) Q: flow rate (L/min) d: piping inner diameter (mm) 626