SMC Corporation of America
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Search Results "HECR010-A2-P"

Rated Pressure Range: -0.1 to 1 MPa, Piping: URJ1/4, Rear Ported, Input/Output: NPN Open Collector 2 Outputs, Analog Current Output, Auto-Shift, Option 1: Initial Value PSI, Option 2: None, Option 3: Operating Manual Booklet, X Options: Lead Wire Length 3m

Rated Pressure Range: -0.1 to 1 MPa, Piping: URJ1/4, Rear Ported, Input/Output: NPN Open Collector 2 Outputs, Analog Current Output, Auto-Shift, Option 1: Initial Value PSI, Option 2: None, Option 3: Operating Manual Booklet, X Options: Wetted Parts: Stainless Steel 316L

Rated Pressure Range: -100 to 100 kPa, Piping: URJ1/4, Rear Ported, Input/Output: PNP Open Collector 2 Outputs, Analog Voltage Output, Auto-Shift, Option 1: Initial Value PSI, Option 2: None, Option 3: Operating Manual Boklet, X Options: Wetted Parts: Stainless Steel 316L

Rated Pressure Range: -100 to 100 kPa, Piping: URJ1/4, Rear Ported, Input/Output: PNP Open Collector 1 Output, Option 1: Fixed SI Unit, Option 2: None, Option 3: Operating Manual Boklet, X Options: Wetted Parts: Stainless Steel 316L

Rated Pressure Range: -100 to 100 kPa, Piping: URJ1/4, Rear Ported, Input/Output: NPN Open Collector 2 Outputs, Analog Voltage Output, Auto-Shift, Option 1: Initial Value PSI, Option 2: None, Option 3: Operating Manual Boklet, X Options: Wetted Parts: Stainless Steel 316L

L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] Time [s] T = T1 + T2 + T3 + T4 [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.

L1 A1 L3 A3 Mp Mr Static moment Dynamic moment My W W W L2 A2 L3 A3 L1 A1 Mp Mr My W W W W Mey Mep We We L3 A3 L2 A2 W Note) It is not necessary to consider load factor when using this device vertically perpendicular.

Time [s] LEC SS-T T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] LEC Y T2: Constant speed time can be found from the following equation.

SMC Pneumatics, Inc. 12 Series ASIII1F-T Dimensions (mm) 1in=25.4mm L2 Inch sizes L3 Applicable tubing O.D. d D1 M1 L6 D2 L1 D4 L4 H (width across flats) D3 D4 A1 L5 A2 L6 T Inch sizes A1 A2 L3 L4 L5 L6 D2 D3 D4 L1 L2 Model H D1 d T M1 ASD230F-U10/32-01T 8.4 1/8" 17.5 29.4 12.9 ASD230F-U10/32-03T 9.3 5/32" 30.7 31 0.7 9.6 10 4.5 11.7 8 10-32UNF 28.4 7.8 ASD230F-U10/32-05T 23.3 35.2 11.4 3

W W Mey Mep We We L3 A3 L2 A2 Note) Static moment : Moment by gravity Kinetic moment : Moment by stopper collision Max.allowable load:W max.

THERMO CON, RACK MOUNT, OTHERS, HEC THERMO CONTROLLER, 1X, HEC OTHER SIZE(MISC./OTHER)

L6 ASV AK VCHC T ASR ASQ Metric Size d Model H D1 D2 D3 D4 L1 L2 L3 L4 L5 L6 A1 A2 M1 T Weight (g) 17 ASD230F-M5-04D ASD230F-M5-06D ASD330F-01-06SD ASD330F-01-08SD ASD430F-02-06SD ASD430F-02-08SD ASD430F-02-10SD ASD530F-02-06SD ASD530F-02-08SD ASD530F-02-10SD ASD530F-02-12SD ASD530F-03-06SD ASD530F-03-08SD ASD530F-03-10SD ASD530F-03-12SD ASD630F-04-10SD ASD630F-04-12SD 4 9.3 29.4 17.5

Find the allowable static moment Ma (Nm). 2 = 0.23/9.14 = 0.025 Find the load factor 2 of the static moment. 2 = M/Ma 3-3 Load factor of dynamic moment Pitching Examine Mep. (30 + 17) Mep = 1/3 x 8.4 x 9.8 x = 1.3 1000 We = 4/100 x 0.5 x 420 = 8.4 A2 = 17 Meap = 1 x 0.7 x 9.14 = 6.40 K = 1 = 0.7 Mpmax = 9.14 3 = 1.3/6.40 = 0.20 (Ln + An) Me = 1/3 We x 9.8 1000 Find the dynamic moment Me

T1 = V/a1 = 1000/2500 = 0.4 [s], T1 T2 T3 T4 11LEJS T3 = V/a2 = 1000/2500 = 0.4 [s] L: Stroke [mm](Operating condition) V: Speed [mm/s](Operating condition) a1: Acceleration [mm/s2](Operating condition) a2: Deceleration [mm/s2](Operating condition) T = T1 + T2 + T3 + T4 [s] L 0.5V(T1 + T3) V 25AT2 = T1: Acceleration time and T3: Deceleration time can be obtained by the following equation

[V] A B C 0-101 kPa 0 -101 kPa 10.1 kPa -100100 kPa -100 kPa 100 kPa 01 MPa 0 1 MPa -0.1 MPa 0500 kPa 0 500 kPa -50 kPa -13No.PS-OMG0005CN-E PSE5601 PSE56N01 02 N02 PSE56-C01 A B PSE56-01 8.2 R1/8 PSE56-02 12 R1/4 PSE56-N01 9.2 NPT1/8 PSE56-N02 12.2 NPT1/4 PSE56-A2 PSE56-C01 Rc1/8 PSE56-A2 15.5 URJ1/4 PSE56-B2 9.5 TSJ1/4 PSE56-B2 ZS-31-X D E F G H I ZS-31-X188 20 9 R1/8 R1/8 14 1.5

A1,A2 32 200 S3 32 200 S3 200 to 230VAC LECSA2 A2 200 to 230VAC LECSA2 A2 Both side D Both side D 40 400 S4 40 400 S4 100 to 120VAC 100 to 120VAC LECSB1 LECSB1 B1 B1 25 100 S6 25 100 S6 Motor option 32 200 S7 AC servo motor (Absolute encoder 32 200 S7 AC servo motor (Absolute encoder LECSB2 LECSB2 200 to 230VAC B2 200 to 230VAC B2 B1,B2 B1,B2 Without lock Nil Without lock Nil 400 400 40