SMC Corporation of America
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Search Results "MGCLB25-250-R"

Mounting: Basic Style, Bore Size: 25mm, Port Thread: 20 & 25 Bore: M5 x0.8, 32-50 Bore: Rc Thread, Stroke: 150mm, Option: Rear Plate, Auto Switch: C73C--Reed, DC Volt >5 <24, LED, Connector, Lead Wire or Prewired Connector: 3m, Number: -, Speed Control Type: -, Applicable Tubing: -, Suffix: -

Mounting: Basic Style, Bore Size: 25mm, Port Thread: 20 & 25 Bore: M5 x0.8, 32-50 Bore: Rc Thread, Stroke: 500mm, Option: Rear Plate, Auto Switch: H7C--Solid State, Gen. Purpose, 2 Wire, Connector, Lead Wire or Prewired Connector: 3m, Number: -, Speed Control Type: -, Applicable Tubing: -, Suffix: -

Mounting: Basic Style, Bore Size: 25mm, Port Thread: 20 & 25 Bore: M5 x0.8, 32-50 Bore: Rc Thread, Stroke: 500mm, Option: Rear Plate, Auto Switch: B53--Reed, DC Volt >5 <24, LED, Lead Wire, Lead Wire or Prewired Connector: 3m, Number: -, Speed Control Type: -, Applicable Tubing: -, Suffix: -

Mounting: Basic Style, Bore Size: 25mm, Port Thread: 20 & 25 Bore: M5 x0.8, 32-50 Bore: Rc Thread, Stroke: 150mm, Option: Rear Plate, Auto Switch: C73C--Reed, DC Volt >5 <24, LED, Connector, Lead Wire or Prewired Connector: 5m, Number: -, Speed Control Type: -, Applicable Tubing: -, Suffix: -

Mounting: Basic Style, Bore Size: 25mm, Port Thread: 20 & 25 Bore: M5 x0.8, 32-50 Bore: Rc Thread, Stroke: 200mm, Option: Rear Plate, Auto Switch: H7B--Solid State, Gen. Purpose, 2 Wire, Lead Wire, Lead Wire or Prewired Connector: 3m, Number: -, Speed Control Type: -, Applicable Tubing: -, Suffix: -

(36) 29 (24) -23No.PF-OMP0001CN-F [] 2 [F 0] 2 F0 F1 F99 2 -24No.PF-OMP0001CN-F [F 0][rEF] [rEF] [Anr] 26 1 [ L] L/min [Uni] [oU1] OUT1 [HYS] [1ot] OUT1 [1_P] [ 250] 250 L/min(PFMB7501) [P_1] OUT1 [ 500] 500 L/min(PFMB7102) [F 1][oU1] [1000] 1000 L/min(PFMB7202) 28 [ 25] 25 L/min(PFMB7501) [H_1] OUT1 [ 50] 50 L/min(PFMB7102) [100] 100 L/min(PFMB7202) [CoL] OUT1 [SoG] ONOFF [oU2

(37) 30 (25) -24No.PF-OMS0001CN-A [] 2 [F 0] 2 F99 F1 F0 2 -25No.PF-OMS0001CN-A () () [F 0] [ rEF] [ ANR] 27 [ Uni] 1 [ L] L/min [ oU1] OUT1 [ HYS] [ 1ot] OUT1 [ 1_P] [ 250] 250 L/min(PFMC7501) [ P_1] OUT1 [ 500] 500 L/min(PFMC7102) 29 [F 1] [ 1000] 1000 L/min(PFMC7202) [ 25] 25 L/min(PFMC7501) [ H_1] OUT1 [ 50] 50 L/min(PFMC7102) [ 100] 100 L/min(PFMC7202) [ CoL] OUT1 [SoG]

R Repeatability Reproducibility of the display or analogue output value, when the measured quantity is repeatedly increased and decreased. Response time Time from when the target flow is applied until the flow reaches 90% of the set value. -13No.PF-OMN0012-H Terms Meaning S Set flow range The range of ON/OFF threshold values that can be set for those products with a switch output.

] LEKFS40 Series Stroke[mm] 150 200 250 300 350 400 450 500 600 700 800 900 1000 1100 1200 Product weight[kg] 5.5 5.8 6.1 6.4 6.7 7.0 7.3 7.6 8.2 8.8 9.4 10.0 10.6 11.2 11.8 0.53 Additional weight with lock[kg] 4 - 2How to order L E K F S 32 G A 300 R1 CDH7T Motor type Size Lead[mm] Motor mounting position Symbol LEKFS25 LEKFS32 LEKFS40 Nil In-line 25 32 40 High performance R Right side parallel

N.O. 125 VAC 15 15 4 2 10 10 4 2 250 VAC 15 15 3 1.5 10 10 3 1.5 8 VDC 15 15 3 1.5 15 15 5 2.5 15 15 3 1.5 10 10 5 2.5 14 VDC 30 VDC 3 6 6 1.5 5 5 5 2.5 125 VDC 0.5 0.5 0.3 0.3 0.05 0.05 0.05 0.05 250 VDC 0.25 0.25 0.2 0.2 0.03 0.03 0.03 0.03 16-12-6 2 Paddle Style Flow Switch Series IF3 Fluid and Ambient Temperature Range Enclosure Open type Using indoors away from water drop.

N.O. 125 VAC 15 15 4 2 10 10 4 2 250 VAC 15 15 3 1.5 10 10 3 1.5 8 VDC 15 15 3 1.5 15 15 5 2.5 15 15 3 1.5 10 10 5 2.5 14 VDC 30 VDC 3 6 6 1.5 5 5 5 2.5 125 VDC 0.5 0.5 0.3 0.3 0.05 0.05 0.05 0.05 250 VDC 0.25 0.25 0.2 0.2 0.03 0.03 0.03 0.03 16-12-6 Paddle Style Flow Switch Series IF3 Fluid and Ambient Temperature Range Enclosure Open type Using indoors away from water drop.

CNG MNB With air cushion: CLG1BA CNA CNS CLS CLQ MLGP RLQ Component Parts MLU Material Note Description Material Note Description Rolled steel Rolled steel Carbon tool steel No. q w e r t y u i o !

Bit: 7 0 Byte 1 Offset Baud rate (Communication speed) (bit/s) 500 k 250 k 125 k 50 k 20 k 10 k 1 M 800 k Bit: 7 0 Byte 2 Offset Max. bus cable length (m) 25 50 100 250 500 1000 2000 5000 Power supply wiring Power supply connector Bit: 7 0 Byte 3 Offset M12 5-pin plug B-code (reverse) Bit No. 0 2 4 6 0 0 4 6 No. Description Function Output No.

Material Note Description Body Needle Bottom cover Handle Component Parts Chromated Aluminum alloy Brass Aluminum alloy Zinc alloy q w e r No. Description Material Note Body Valve guide Check valve Needle Handle Chromated Chromated Rubber lining Chromated Black painted Aluminum alloy Aluminum alloy Brass Brass Carbon steel q w e r t AS Replacement Parts ASP No. Description Part no.

(A) 2 0.7MPa 0.15MPa 1.8 (0.1) 10HZ 3 (R) 1 (P) 3 (R) 1 (P) Refer to Best Pneumatics (1) Page 2.2-1 Mist Separator Series AM Specifications Models Model Compressed air 1.0MPa 0.05MPa Fluid AM150 AM250 Maximum operating pressure Rated flow rate l/min (ANR) 300 750 Note 1) Series AM separates and removes the oil mist in compressed air which is troublesome for ordinary filters, and removes fine

IFW520 125 VAC 10 to 20 25 1.5 or less 5 5 1.5 0.7 4 4 2.5 1.3 IFW550 250 VAC 20 to 50 60 3 or less 5 5 1 0.5 4 4 1.5 0.8 Note) Hysteresis is the flow rate that is necessary for moving the microswitch from the operation position (ON signal) to the return position (OFF signal). 8 VDC 7 5 3 3 5 4 3 3 5 5 3 3 4 4 3 3 14 VDC 30 VDC 5 5 3 3 4 4 3 3 125 VDC 0.4 0.4 0.1 0.1 0.4 0.4 0.1 0.1 250 VDC

(A) 2 23 (AR) (A) 2 Refer to Best Pneumatics No. 1 for further details. 3 (R) 1 (P) 3 (R) 1 (P) Regulator Series AR Model Specifications Model AR20 Port size 1/8, 1/4 AR25 1/4, 3/8 AR30 1/4, 3/8 AR40 AR20 AR25 AR30 AR40 Model Proof pressure 1.5 MPa 1.0 MPa 0.05 to 0.85 MPa 1/4, 3/8, 1/2 Max. operating pressure Pressure gauge port size 1/8 1/4 Set pressure range Ambient and 5 to 60C (No freezing

Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.

Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.