SMC Corporation of America
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To use a floating joint to connect the cylinder rod to a driven body, secure it in place by applying a torque that is appropriate for the thread size. Also, if there is a risk of loosening during operation, take measures to prevent loosening, such as using a locking pin or thread adhesive.

To use a floating joint to connect the cylinder rod to a driven body, secure it in place by applying a torque that is appropriate for the thread size. Also, if there is a risk of loosening during operation, take measures to prevent loosening, such as using a locking pin or thread adhesive.

Compact Rotary Actuator Rack-and-Pinion Type/Sizes: 10, 15, 20, 30, 40 Series CRQ2 Compact Rotary Actuator Rack-and-Pinion Type/Sizes: 10, 15, 20, 30, 40 Series CRQ2 Piping can be installed from one end Body can be used as a flange Compact design saves mounting space Uses internal cushioning 10, 15 : Rubber bumper 20, 30, 40: Air cushion 10: 17mm 15: 20mm 20: 29mm 30: 33mm 40: 37mm 2 auto

Bore size (mm) 25 32 40 Type MY-S25A MY-S32A Side support A DMY-S25B MY-S32B Side support B For details about dimensions, etc., refer to page 718.

Selection conditions Mounting: Vertical Maximum speed: 500 mm/s Overhang L: 40 mm Load mass m: 0.1 kg 1 Mass m (kg) 20 16 10 0.1 6 Refer to Graph c based on vertical mounting and a speed of 500 mm/s. In Graph c, find the intersection of a 40 mm overhang L and load mass m of 0.1 kg, which results in a determination of 16.

2.5 to 6 6 to 20 20 to 40 40 to 63 63 to 100 AS13l1F AS13l1F AS23l1F AS33l1F AS43l1F / 1 8, / 1 4 / 1 4, / 3 8 / 1 2 Elbow (Metal Body) M5 6 to 20 20 to 32 20 to 40 40 to 63 63 to 100 AS12l1 AS22l1 AS22l1 AS32l1 AS42l1 / 1 8 4.1-7 / 1 4 / 3 8 / 1 2 In-line 6 to 20 20 to 32 20 to 40 40 to 63 63 to 100 AS1001F AS2001F AS2051F AS3001F AS4001F 4.1-9 Dual Speed Controller 6 to 20 20 to 32 20

Selection conditions Mounting: Horizontal Max. speed: 500 mm/s Load eccentricity: 50 mm Overhang: 30 mm Load weight: 0.1 kg Max. speed: 500 mm/s Overhang: 40 mm Load weight: 0.1 kg Refer to Graph (3) based on vertical mounting and a speed of 500 mm/s. In Graph (3), find the intersection of a 40 mm overhang and load weight of 0.1 kg, which results in a determination of 20.

With external pilot specification (Pitch) P = 24 25 (6) 40 24 20 11 13.7 E 3/5 E 3/5 E 3 E 3 4 A 4 A 4 A 4 A 4 A 4 A A 4 A 4 A 4 A 4 14.5 35.8 35 (43.9) 58.3 74.8 P 1 P 1 B 2 B 2 B 2 B 2 B 2 P 1 P 1 B 2 B 2 B 2 B 2 B 2 One-touch fitting [1(P), 3/5(E) port] Applicable tubing O.D.: 12 N11 One-touch fitting [4(A), 2(B) port] Applicable tubing O.D.: 8, N9 10, N11 12 (Lateral connector entry)

Calculate the moment of inertia for A and B separately as shown in the figures on the right. A part B part Procedure Calculation Calculation example 1. Check the operating conditions, dimensions of attachment, etc. Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.

Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b 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 c B part e f d 2.

depth N 2 x M5 Thread depth N Terminal part Faston connector 250 Series 23 K K 11 9 6.5 J H H J 15 (mm) Conduit Faston type Dimensions Size Port size A B B1 C D E F P H J Q R Q R K N 1 1/8 1/8 1/4 3/8 1/8 1/4 3/8 14 14 19 22 14 19 22 30 30 40 48 30 40 48 15 15 20 24 15 20 24 62.5 73.5 72 75 78 76.5 79.5 30 35 35 35 40 40 40 9 9 9 20 22 22 22 24.5 24.5 24.5 8 8 9 14 8 9 14 15 15 22.2 19 15

LP-01 ML1C LC-01 25 32 40 Series Mounting position A B ML1C 177.5 128.5 152.5 123.5 147.5 172.5 D-M5 D-M5W D-M5T Lead wire cap Lead wire clamp Auto switch 14 11 Lead Wire Clamp/Lead Wire Cap (Option) 22 22 B A Lead wire clamp Lead wire cap Series LC-01 LP-01 ML1C (mm) 25 32 40 Mounting position Series A B 124.8 148.8 173.8 ML1C 113.2 137.2 162.2 Minimum Stroke for Auto Switch Mounting Operating

Apparent power (VA) Volt-ampere is the product of voltage (V) and current (A). Power dissipation (W): For AC , W = V/A cos. For DC, W = V/A. (Note) cos shows power factor. cos = 0.6 2. Surge voltage A high voltage which is momentarily generated in the shut-off unit by shutting off the power. 3.

(Resin, Carbon steel) J 20 14 32 20 50 32 63 40 63 40 80 Bore size (mm) Easy maintenance is possible with a shock absorber that can be removed simply by loosening the bolts and shock absorber fixing screw from the stopper.

(Resin, Carbon steel) J 20 14 32 20 50 32 63 40 63 40 80 Bore size (mm) Easy maintenance is possible with a shock absorber that can be removed simply by loosening the bolts and shock absorber fixing screw from the stopper.

Local Area: (800) 258-9200-www.stevenengineering.com 6H9 +0.030 7 (Hexagon socket head taper thread plug) 0 48 98 72 41 8 Operating port Rc 1/8 25 40 40 40 (Y) (Y) 10 Operating direction (B) 6H9 +0.030 depth 5.5 0 41 160 (Hexagon socket head taper thread plug) 10.5 Operating direction (B) (A) 9.5 11 24 24 16 12.5 A 30.5 60 50 32.5 A Cross section AA Z 5-M6 x 1 thread depth 12 4 x H G depth

SI unit output No. 0 1 2 3 4 5 6 7 8 9 SI unit output No. 0 1 2 3 4 5 6 7 A B A B B A Void A Void A A B A B B A A A SY Double Double Double Double Double SI unit SI unit Single Single Single Single Single SYJ Stations 1 2 3 4 5 Stations 1 2 3 4 5 Single/Double mixed wiring (Option) Double wiring (Standard) SX SC applicable to SYSBUS Wire System (OMRON) SD applicable to Satellite I/O Link

For a 10 orifice (VXS23/Port size 1/4), P 0.05 MPa The optimum size for a pressure differential of P 0.2 MPa and a flow of 50 L/min will be the VXS23 (10 orifice, port size 3/8). 500 400 VXS26 25 Cv = 12 300 VXS25 20 Cv = 9.2 200 VXS24 15 Cv = 5.3 Flow rate Q [L/min] 100 VXS23 Port size 3/8 10 Cv = 2.8 VXS23 Port size 1/4 10 Cv = 2.4 50 40 30 25 20 10 0.01 0.02 0.03 0.04 0.05 0.1 0.2 0.3

SOL. location A B A B A B A B () A B () () 0 1 2 3 4 5 6 Double Double Single SI unit A side B side 3 position A B A B B A B A B A VQC Double Double Single SI unit A side B side 3 position Stations 1 2 3 4 5 SQ The places of asterisk are not used. 3 position uses two stations for wiring.

MA Finger A B C D1 to 1.5 Attachment 1 to 1.5 Finger insertion groove A Lubrication/MHR2, MHR3 Opening/closing direction Max. tightening torque Nm Warning Cross direction Pin insertion hole Model Applicable bolt Attachment -10 -15 -20 -30 -10 -15 This product should be used without lubrication.